1use crate::Stmt;
2use anyhow::{Result, anyhow};
3use dynamic::Dynamic;
4use smol_str::SmolStr;
5
6use super::{Parser, ParserErr, Span, Type, try_parse};
7use num_enum::{FromPrimitive, IntoPrimitive};
8
9#[repr(i32)]
10#[derive(Debug, Clone, PartialEq, IntoPrimitive, FromPrimitive)]
11pub enum UnaryOp {
12 Neg = 0,
13 Not,
14 #[num_enum(default)]
15 Unknow = 255,
16}
17
18#[repr(i32)]
19#[derive(Debug, Clone, PartialEq, IntoPrimitive, FromPrimitive)]
20pub enum BinaryOp {
21 Add = 10,
22 Sub,
23 Mul,
24 Div,
25 Mod,
26 Shr,
27 Shl,
28 BitAnd,
29 BitOr,
30 BitXor,
31 AddAssign,
32 SubAssign,
33 MulAssign,
34 DivAssign,
35 ModAssign,
36 ShrAssign,
37 ShlAssign,
38 BitAndAssign,
39 BitOrAssign,
40 BitXorAssign,
41 Assign,
42 Eq,
43 Ne,
44 Lt,
45 Gt,
46 Le,
47 Ge,
48 And,
49 Or,
50 Idx,
51 RangeOpen,
52 RangeClose,
53 #[num_enum(default)]
54 Unknow = 255,
55}
56
57impl BinaryOp {
58 pub fn is_logic(&self) -> bool {
59 matches!(self, Self::And | Self::Or | Self::Eq | Self::Ne | Self::Lt | Self::Gt | Self::Le | Self::Ge)
60 }
61
62 pub fn is_add(&self) -> bool {
63 matches!(self, Self::Add | Self::AddAssign)
64 }
65
66 pub fn is_assign(&self) -> bool {
67 matches!(
68 self,
69 Self::AddAssign | Self::Assign | Self::DivAssign | Self::ModAssign | Self::MulAssign | Self::SubAssign | Self::BitAndAssign | Self::BitOrAssign | Self::BitXorAssign | Self::ShlAssign | Self::ShrAssign
70 )
71 }
72
73 pub fn weight(&self) -> usize {
74 match self {
75 Self::Idx => 30,
76 Self::Mul | Self::Div | Self::Mod => 20,
77 Self::Add | Self::Sub => 19,
78 Self::Shl | Self::Shr => 18,
79 Self::BitAnd => 17,
80 Self::BitXor => 16,
81 Self::BitOr => 15,
82 Self::Eq | Self::Ne | Self::Lt | Self::Gt | Self::Le | Self::Ge => 10,
83 Self::And | Self::Or => 9,
84 Self::RangeOpen | Self::RangeClose => 5,
85 _ => usize::MIN,
86 }
87 }
88}
89
90#[derive(Debug, Clone)]
91pub struct Expr {
92 pub kind: ExprKind,
93 pub span: Span,
94}
95
96#[derive(Debug, Clone, Default)]
97pub enum ExprKind {
98 #[default]
99 Null,
100 Value(Dynamic),
101 Const(usize),
102 Typed {
103 value: Box<Expr>,
104 ty: Type,
105 },
106 Unary {
107 op: UnaryOp,
108 value: Box<Expr>,
109 },
110 Binary {
111 left: Box<Expr>,
112 op: BinaryOp,
113 right: Box<Expr>,
114 },
115 Ident(SmolStr),
116 Var(u32),
117 Capture(u32),
118 Id(u32, Option<Box<Expr>>),
119 Assoc {
120 ty: Type,
121 name: SmolStr,
122 },
123 AssocId {
124 id: u32,
125 params: Vec<Type>,
126 },
127 Tuple(Vec<Expr>),
128 List(Vec<Expr>),
129 Repeat {
130 value: Box<Expr>,
131 len: Type,
132 },
133 Dict(Vec<(SmolStr, Expr)>),
134 Range {
135 start: Box<Expr>,
136 stop: Box<Expr>,
137 inclusive: bool,
138 },
139 Call {
140 obj: Box<Expr>,
141 params: Vec<Expr>,
142 },
143 Stmt(Box<Stmt>),
144 Closure {
145 args: Vec<(SmolStr, Type)>,
146 body: Box<Stmt>,
147 },
148}
149
150#[derive(Debug, thiserror::Error)]
151pub enum ExprErr {
152 #[error("{0} 不是标识符")]
153 NotIdent(SmolStr),
154 #[error("{0} 非原生类型")]
155 NotNative(SmolStr),
156 #[error("期望表达式")]
157 ExpectExpr,
158}
159
160impl Default for Expr {
161 fn default() -> Self {
162 Self::new(ExprKind::Null, Span::default())
163 }
164}
165
166impl From<Dynamic> for Expr {
167 fn from(value: Dynamic) -> Self {
168 Self::new(ExprKind::Value(value), Span::default())
169 }
170}
171
172impl Expr {
173 pub fn new(kind: ExprKind, span: Span) -> Self {
174 Self { kind, span }
175 }
176
177 pub fn with_span(mut self, span: Span) -> Self {
178 self.span = span;
179 self
180 }
181
182 pub fn is_range(&self) -> bool {
183 matches!(self.kind, ExprKind::Range { .. })
184 }
185
186 pub fn is_typed(&self) -> bool {
187 matches!(self.kind, ExprKind::Typed { .. })
188 }
189
190 pub fn get_type(&self) -> Type {
191 match &self.kind {
192 ExprKind::Typed { ty, .. } => ty.clone(),
193 ExprKind::Value(v) => v.get_type(),
194 ExprKind::Unary { value, .. } => value.get_type(),
195 ExprKind::Tuple(list) => Type::Tuple(list.iter().map(|l| l.get_type()).collect()),
196 ExprKind::Repeat { value, len } => {
197 if let Type::ConstInt(len) = len {
198 Type::Array(std::rc::Rc::new(value.get_type()), *len as u32)
199 } else {
200 Type::ArrayParam(std::rc::Rc::new(value.get_type()), std::rc::Rc::new(len.clone()))
201 }
202 }
203 ExprKind::Range { start, .. } => start.get_type(),
204 ExprKind::Stmt(stmt) => stmt.get_type().unwrap_or(Type::Any),
205 _ => Type::Any,
206 }
207 }
208
209 pub fn id(&self) -> Option<u32> {
210 if let ExprKind::Id(id, _) = &self.kind { Some(*id) } else { None }
211 }
212
213 pub fn var(&self) -> Option<u32> {
214 if let ExprKind::Var(idx) = &self.kind { Some(*idx) } else { None }
215 }
216
217 pub fn ident(&self) -> Result<&str> {
218 if let ExprKind::Ident(ident) = &self.kind { Ok(ident.as_str()) } else { Err(ExprErr::NotIdent(SmolStr::from(format!("{:?}", self))).into()) }
219 }
220
221 pub fn binary_op(&self) -> Option<BinaryOp> {
222 if let ExprKind::Binary { op, .. } = &self.kind { Some(op.clone()) } else { None }
223 }
224
225 pub fn is_idx(&self) -> bool {
226 matches!(&self.kind, ExprKind::Binary { op, .. } if *op == BinaryOp::Idx)
227 }
228
229 pub fn is_value(&self) -> bool {
230 match &self.kind {
231 ExprKind::Value(_) => true,
232 ExprKind::Typed { value, ty } => ty.is_native() && value.is_value(),
233 _ => false,
234 }
235 }
236
237 pub fn is_const(&self) -> bool {
238 matches!(self.kind, ExprKind::Const(_))
239 }
240
241 pub fn value(self) -> Result<Dynamic> {
242 match self.kind {
243 ExprKind::Value(v) => Ok(v),
244 ExprKind::Typed { value, ty } => {
245 if ty.is_native() {
246 Ok(ty.force(value.value()?)?)
247 } else {
248 Err(anyhow!("不是 Value"))
249 }
250 }
251 _ => Err(anyhow!("不是 Value")),
252 }
253 }
254
255 pub fn binary(self) -> Option<(Expr, BinaryOp, Expr)> {
256 match self.kind {
257 ExprKind::Binary { left, op, right } => Some((*left, op, *right)),
258 _ => None,
259 }
260 }
261
262 pub fn compact(&self) -> Option<Dynamic> {
263 match &self.kind {
264 ExprKind::Value(v) => Some(v.clone()),
265 ExprKind::Unary { op, value } => {
266 if value.is_value() {
267 let v = value.clone().value().unwrap();
268 match op {
269 UnaryOp::Neg => Some(-v),
270 UnaryOp::Not => Some(!v),
271 _ => None,
272 }
273 } else {
274 None
275 }
276 }
277 ExprKind::Binary { left, op, right } => {
278 if left.is_value() && right.is_value() {
279 let left = left.clone().value().unwrap();
280 let right = right.clone().value().unwrap();
281 let r = match op {
282 BinaryOp::Add | BinaryOp::AddAssign => left + right,
283 BinaryOp::Sub | BinaryOp::SubAssign => left - right,
284 BinaryOp::Mul | BinaryOp::MulAssign => left * right,
285 BinaryOp::Div | BinaryOp::DivAssign => left / right,
286 BinaryOp::Mod | BinaryOp::ModAssign => left % right,
287 BinaryOp::And => Dynamic::Bool(left.is_true() && right.is_true()),
288 BinaryOp::Or => Dynamic::Bool(left.is_true() || right.is_true()),
289 BinaryOp::Eq => Dynamic::Bool(left == right),
290 BinaryOp::Ne => Dynamic::Bool(left != right),
291 BinaryOp::Le => Dynamic::Bool(left <= right),
292 BinaryOp::Lt => Dynamic::Bool(left < right),
293 BinaryOp::Ge => Dynamic::Bool(left >= right),
294 BinaryOp::Gt => Dynamic::Bool(left > right),
295 BinaryOp::Shl | BinaryOp::ShlAssign => left << right,
296 BinaryOp::Shr | BinaryOp::ShrAssign => left >> right,
297 BinaryOp::Assign => right,
298 BinaryOp::BitAnd | BinaryOp::BitAndAssign => left & right,
299 BinaryOp::BitXor | BinaryOp::BitXorAssign => left ^ right,
300 BinaryOp::BitOr | BinaryOp::BitOrAssign => left | right,
301 BinaryOp::Idx => {
302 if let Some(idx) = right.as_int() {
303 return left.get_idx(idx as usize);
304 } else if let Ok(key) = SmolStr::try_from(right) {
305 return left.get_dynamic(&key);
306 } else {
307 return None;
308 }
309 }
310 _ => Dynamic::Null,
311 };
312 Some(r)
313 } else {
314 None
315 }
316 }
317 _ => None,
318 }
319 }
320}
321
322impl Parser {
323 fn is_dict_item_boundary(ch: u8) -> bool {
324 matches!(ch, b',' | b'}')
325 }
326
327 fn is_shorthand_field_name(name: &str) -> bool {
328 name.as_bytes().first().is_some_and(|ch| ch.is_ascii_alphabetic() || *ch == b'_')
329 }
330
331 pub(crate) fn looks_like_dict(&mut self) -> bool {
332 let save_pos = self.pos;
333 let result = (|| -> Result<bool> {
334 self.whitespace()?;
335 if self.take(b'{').is_err() {
336 return Ok(false);
337 }
338 self.whitespace()?;
339 if self.take(b'}').is_ok() {
340 return Ok(true);
341 }
342 if self.ident().is_err() && self.string().is_err() {
343 return Ok(false);
344 }
345 self.whitespace()?;
346 Ok(matches!(self.get(), Ok(b':' | b',' | b'}')))
347 })()
348 .unwrap_or(false);
349 self.pos = save_pos;
350 result
351 }
352
353 fn postfix_expr(&mut self, start: usize, mut expr: Expr) -> Result<Expr> {
354 while !self.is_eof() && [b'.', b'[', b'('].contains(&self.get()?) {
355 if self.ahead()? == b'.' && self.get()? == b'.' {
356 break;
357 }
358 if self.take(b'.').is_ok() {
359 let key_start = self.current_pos();
360 let key = self.ident()?;
361 let right = Expr::new(ExprKind::Value(Dynamic::String(key)), self.span_from(key_start));
362 let span = expr.span.merge(right.span);
363 expr = Expr::new(ExprKind::Binary { left: Box::new(expr), op: BinaryOp::Idx, right: Box::new(right) }, span);
364 } else if self.take(b'[').is_ok() {
365 let key = self.expr(None, None)?.0;
366 self.until(b']')?;
367 let span = Span::new(start, self.current_pos());
368 expr = Expr::new(ExprKind::Binary { left: Box::new(expr), op: BinaryOp::Idx, right: Box::new(key) }, span);
369 } else if self.take(b'(').is_ok() {
370 let params = crate::parse_list!(self, Vec::new(), b')', b',', self.expr(None, None)?.0);
371 expr = Expr::new(ExprKind::Call { obj: Box::new(expr), params }, Span::new(start, self.current_pos()));
372 }
373 }
374 Ok(expr.with_span(Span::new(start, self.current_pos())))
375 }
376
377 fn binary_op(&mut self) -> Option<BinaryOp> {
378 if self.just("<<=").is_ok() {
379 Some(BinaryOp::ShlAssign)
380 } else if self.just(">>=").is_ok() {
381 Some(BinaryOp::ShrAssign)
382 } else if self.just("<<").is_ok() {
383 Some(BinaryOp::Shl)
384 } else if self.just(">>").is_ok() {
385 Some(BinaryOp::Shr)
386 } else if self.just(">=").is_ok() {
387 Some(BinaryOp::Ge)
388 } else if self.just("==").is_ok() {
389 Some(BinaryOp::Eq)
390 } else if self.just("!=").is_ok() {
391 Some(BinaryOp::Ne)
392 } else if self.just("<=").is_ok() {
393 Some(BinaryOp::Le)
394 } else if self.just("&&").is_ok() {
395 Some(BinaryOp::And)
396 } else if self.just("||").is_ok() {
397 Some(BinaryOp::Or)
398 } else if self.just("+=").is_ok() {
399 Some(BinaryOp::AddAssign)
400 } else if self.just("-=").is_ok() {
401 Some(BinaryOp::SubAssign)
402 } else if self.just("*=").is_ok() {
403 Some(BinaryOp::MulAssign)
404 } else if self.just("/=").is_ok() {
405 Some(BinaryOp::DivAssign)
406 } else if self.just("%=").is_ok() {
407 Some(BinaryOp::ModAssign)
408 } else if self.just("&=").is_ok() {
409 Some(BinaryOp::BitAndAssign)
410 } else if self.just("|=").is_ok() {
411 Some(BinaryOp::BitOrAssign)
412 } else if self.just("^=").is_ok() {
413 Some(BinaryOp::BitXorAssign)
414 } else if self.just("..=").is_ok() {
415 Some(BinaryOp::RangeClose)
416 } else if self.just("..").is_ok() {
417 Some(BinaryOp::RangeOpen)
418 } else {
419 match self.get() {
420 Ok(b'+') => {
421 self.pos += 1;
422 Some(BinaryOp::Add)
423 }
424 Ok(b'-') => {
425 self.pos += 1;
426 Some(BinaryOp::Sub)
427 }
428 Ok(b'*') => {
429 self.pos += 1;
430 Some(BinaryOp::Mul)
431 }
432 Ok(b'/') => {
433 self.pos += 1;
434 Some(BinaryOp::Div)
435 }
436 Ok(b'%') => {
437 self.pos += 1;
438 Some(BinaryOp::Mod)
439 }
440 Ok(b'<') => {
441 self.pos += 1;
442 Some(BinaryOp::Lt)
443 }
444 Ok(b'>') => {
445 self.pos += 1;
446 Some(BinaryOp::Gt)
447 }
448 Ok(b'=') => {
449 self.pos += 1;
450 Some(BinaryOp::Assign)
451 }
452 Ok(b'&') => {
453 self.pos += 1;
454 Some(BinaryOp::BitAnd)
455 }
456 Ok(b'|') => {
457 self.pos += 1;
458 Some(BinaryOp::BitOr)
459 }
460 Ok(b'^') => {
461 self.pos += 1;
462 Some(BinaryOp::BitXor)
463 }
464 _ => None,
465 }
466 }
467 }
468
469 pub fn kv(&mut self) -> Result<(SmolStr, Expr)> {
470 let start = self.current_pos();
471 if let Ok(key) = self.ident() {
472 self.whitespace()?;
473 if self.take(b':').is_ok() {
474 let value = self.expr(None, None)?.0;
475 Ok((SmolStr::from(key), value))
476 } else if Self::is_shorthand_field_name(&key) && self.get().map(Self::is_dict_item_boundary).unwrap_or(false) {
477 let span = Span::new(start, start + key.len());
478 Ok((key.clone(), Expr::new(ExprKind::Ident(key), span)))
479 } else {
480 Err(anyhow!("expect ':' after field name"))
481 }
482 } else if let Ok(key) = self.string() {
483 self.until(b':')?;
484 let value = self.expr(None, None)?.0;
485 Ok((SmolStr::from(key), value))
486 } else {
487 Err(anyhow!("expect string as key"))
488 }
489 }
490
491 pub fn base_expr(&mut self, allow_struct_literal: bool) -> Result<Expr> {
492 let start = self.current_pos();
493 if let Ok(s) = self.text() {
494 Ok(Expr::new(ExprKind::Value(Dynamic::String(s)), self.span_from(start)))
495 } else if let Ok(n) = self.number() {
496 if let Ok(ty) = self.get_type() {
497 if ty.is_native() {
498 Ok(Expr::new(ExprKind::Typed { value: Box::new(Expr::new(ExprKind::Value(n), self.span_from(start))), ty }, self.span_from(start)))
499 } else {
500 Err(ExprErr::NotNative(SmolStr::from(format!("{:?}", ty))).into())
501 }
502 } else {
503 Ok(Expr::new(ExprKind::Value(n), self.span_from(start)))
504 }
505 } else if self.keyword("true").is_ok() {
506 Ok(Expr::new(ExprKind::Value(Dynamic::Bool(true)), self.span_from(start)))
507 } else if self.keyword("false").is_ok() {
508 Ok(Expr::new(ExprKind::Value(Dynamic::Bool(false)), self.span_from(start)))
509 } else if self.keyword("null").is_ok() {
510 Ok(Expr::new(ExprKind::Value(Dynamic::Null), self.span_from(start)))
511 } else if let Ok(ident) = self.ident() {
512 self.whitespace()?;
513 let save_pos = self.pos;
514 if self.take(b'<').is_ok() {
515 let typed_literal = (|| -> Result<Expr> {
516 let type_params = crate::parse_list!(self, Vec::new(), b'>', b',', self.get_type_param()?);
517 self.whitespace()?;
518 if self.just("::").is_ok() {
519 let name = self.ident()?;
520 let expr = Expr::new(ExprKind::Assoc { ty: Type::Ident { name: ident.clone(), params: type_params }, name }, self.span_from(start));
521 return self.postfix_expr(start, expr);
522 }
523 if allow_struct_literal
524 && self.looks_like_dict()
525 && let Ok(b'{') = self.get()
526 && let Ok(dict) = try_parse!(self, self.dict())
527 {
528 return Ok(Expr::new(ExprKind::Typed { value: Box::new(dict), ty: Type::Ident { name: ident.clone(), params: type_params } }, self.span_from(start)));
529 }
530 Err(ExprErr::ExpectExpr.into())
531 })();
532 if let Ok(expr) = typed_literal {
533 return Ok(expr);
534 }
535 self.pos = save_pos;
536 }
537 if allow_struct_literal
538 && self.looks_like_dict()
539 && let Ok(b'{') = self.get()
540 && let Ok(dict) = try_parse!(self, self.dict())
541 {
542 return Ok(Expr::new(ExprKind::Typed { value: Box::new(dict), ty: Type::Ident { name: ident, params: Vec::new() } }, self.span_from(start)));
543 }
544 self.postfix_expr(start, Expr::new(ExprKind::Ident(ident), self.span_from(start)))
545 } else {
546 Err(ExprErr::ExpectExpr.into())
547 }
548 }
549
550 pub(crate) fn dict(&mut self) -> Result<Expr> {
551 let start = self.current_pos();
552 self.pos += 1;
553 Ok(Expr::new(ExprKind::Dict(crate::parse_list!(self, Vec::new(), b'}', b',', self.kv()?)), self.span_from(start)))
554 }
555
556 pub fn get_expr(&mut self) -> Result<Expr> {
557 self.expr(None, None).map(|(e, _)| e)
558 }
559
560 pub fn get_expr_without_struct_literal(&mut self) -> Result<Expr> {
561 self.expr_with_min_weight(None, None, 0, false).map(|(e, _)| e)
562 }
563
564 pub fn expr(&mut self, left: Option<(Expr, bool)>, left_op: Option<BinaryOp>) -> Result<(Expr, bool)> {
565 self.expr_with_min_weight(left, left_op, 0, true)
566 }
567
568 fn expr_with_min_weight(&mut self, left: Option<(Expr, bool)>, left_op: Option<BinaryOp>, min_weight: usize, allow_struct_literal: bool) -> Result<(Expr, bool)> {
569 self.whitespace()?;
570 if self.is_eof() {
571 return left.ok_or(ParserErr::EndofInput.into());
572 }
573 let start = self.current_pos();
574 let ch = self.get()?;
575 let mut expr = if ch == b'(' {
576 let start = self.current_pos();
577 self.pos += 1;
578 let (e, _closed) = self.expr_with_min_weight(None, None, 0, true)?;
579 self.whitespace()?;
580 if self.get()? == b',' {
581 self.pos += 1;
582 let list = crate::parse_list!(self, vec![e], b')', b',', self.expr_with_min_weight(None, None, 0, true)?.0);
583 Ok((Expr::new(ExprKind::Tuple(list), Span::new(start, self.current_pos())), true))
584 } else {
585 self.until(b')')?;
586 Ok((e.with_span(Span::new(start, self.current_pos())), true))
587 }
588 } else if ch == b'!' && self.ahead().map(|a| a != b'=').unwrap_or(true) {
589 let start = self.current_pos();
590 self.pos += 1;
591 let value = self.expr_with_min_weight(None, None, BinaryOp::Mul.weight() + 1, allow_struct_literal)?.0;
592 Ok((Expr::new(ExprKind::Unary { op: UnaryOp::Not, value: Box::new(value) }, Span::new(start, self.current_pos())), false))
593 } else if ch == b'-' && self.ahead().map(|a| a != b'=').unwrap_or(true) && (left.is_none() || (left.is_some() && left_op.is_some())) {
594 let start = self.current_pos();
595 self.pos += 1;
596 let value = self.expr_with_min_weight(None, None, BinaryOp::Mul.weight() + 1, allow_struct_literal)?.0;
597 Ok((Expr::new(ExprKind::Unary { op: UnaryOp::Neg, value: Box::new(value) }, Span::new(start, self.current_pos())), false))
598 } else if ch == b'[' {
599 let start = self.current_pos();
600 self.pos += 1;
601 self.whitespace()?;
602 if self.take(b']').is_ok() {
603 Ok((Expr::new(ExprKind::List(Vec::new()), Span::new(start, self.current_pos())), false))
604 } else {
605 let first = self.expr_with_min_weight(None, None, 0, true)?.0;
606 self.whitespace()?;
607 if self.take(b';').is_ok() {
608 let len = self.get_type_param()?;
609 self.until(b']')?;
610 Ok((Expr::new(ExprKind::Repeat { value: Box::new(first), len }, Span::new(start, self.current_pos())), false))
611 } else {
612 let mut items = vec![first];
613 while self.take(b',').is_ok() {
614 self.whitespace()?;
615 if self.take(b']').is_ok() {
616 return Ok((Expr::new(ExprKind::List(items), Span::new(start, self.current_pos())), false));
617 }
618 items.push(self.expr_with_min_weight(None, None, 0, true)?.0);
619 self.whitespace()?;
620 }
621 self.until(b']')?;
622 Ok((Expr::new(ExprKind::List(items), Span::new(start, self.current_pos())), false))
623 }
624 }
625 } else if ch == b'{'
626 && (left.is_none() || left_op.is_some())
627 && let Ok(dict) = try_parse!(self, self.dict())
628 {
629 Ok((dict, false))
630 } else if left.is_none() && self.keyword("if").is_ok() {
631 let stmt = self.if_block()?;
632 Ok((Expr::new(ExprKind::Stmt(Box::new(stmt)), Span::new(start, self.current_pos())), true))
633 } else if ch == b'|' && left.is_none() {
634 let start = self.current_pos();
635 self.pos += 1;
636 let args = crate::parse_list!(self, Vec::new(), b'|', b',', self.ident_typed()?);
637 let body = Box::new(self.block()?);
638 Ok((Expr::new(ExprKind::Closure { args, body }, Span::new(start, self.current_pos())), true))
639 } else if let Some(this_op) = self.binary_op() {
640 let (left, close) = left.ok_or(anyhow!("{:?} need left value", this_op))?;
641 if this_op == BinaryOp::RangeOpen {
642 self.whitespace()?;
643 if self.get()? == b']' {
644 let span = Span::new(left.span.start, self.current_pos());
645 let stop = Expr::new(ExprKind::Value(Dynamic::Null), Span::empty(self.current_pos()));
646 return Ok((Expr::new(ExprKind::Range { start: Box::new(left), stop: Box::new(stop), inclusive: false }, span), false));
647 }
648 }
649 if this_op.weight() < min_weight {
650 self.pos = start;
651 return Ok((left, close));
652 }
653 if left_op.is_some() {
654 return Err(anyhow!("unexpected binary op {:?}", this_op));
655 }
656 return if !close && left.binary_op().map(|op| op.weight() < this_op.weight()).unwrap_or(false) {
657 let (binary_left, op, right) = left.binary().unwrap();
658 let this_weight = this_op.weight();
659 let new_right = self.expr_with_min_weight(Some((right, false)), Some(this_op), this_weight, allow_struct_literal)?.0;
660 let span = binary_left.span.merge(new_right.span);
661 let expr = Expr::new(ExprKind::Binary { left: Box::new(binary_left), op, right: Box::new(new_right) }, span);
662 self.expr_with_min_weight(Some((expr, false)), None, min_weight, allow_struct_literal)
663 } else {
664 self.expr_with_min_weight(Some((left, false)), Some(this_op), min_weight, allow_struct_literal)
665 };
666 } else if self.keyword("as").is_ok() && left.is_some() {
667 let value = left.unwrap().0;
668 let start = value.span.start;
669 let ty = self.get_type()?;
670 return Ok((Expr::new(ExprKind::Typed { value: Box::new(value), ty }, Span::new(start, self.current_pos())), false));
671 } else {
672 self.base_expr(allow_struct_literal).map(|e| (e, false))
673 };
674
675 if left.is_some() {
676 if let Some(op) = left_op {
677 let left = left.unwrap().0;
678 let right = expr?.0;
679 let span = left.span.merge(right.span);
680 expr = Ok((
681 match op {
682 BinaryOp::RangeOpen => Expr::new(ExprKind::Range { start: Box::new(left), stop: Box::new(right), inclusive: false }, span),
683 BinaryOp::RangeClose => Expr::new(ExprKind::Range { start: Box::new(left), stop: Box::new(right), inclusive: true }, span),
684 _ => Expr::new(ExprKind::Binary { left: Box::new(left), op, right: Box::new(right) }, span),
685 },
686 false,
687 ));
688 } else if expr.is_ok() {
689 return Err(anyhow!("unexpected {:?}", expr));
690 } else {
691 return Ok((left.unwrap().0, false));
692 }
693 }
694 let result = self.expr_with_min_weight(Some(expr?), None, min_weight, allow_struct_literal)?;
695 Ok(result)
696 }
697}