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David Tolnay360efd22018-01-04 23:35:26 -08001use proc_macro2::{Literal, Span, Term, TokenNode, TokenTree};
2use std::str;
3
4#[cfg(feature = "extra-traits")]
Alex Crichtonccbb45d2017-05-23 10:58:24 -07005use std::hash::{Hash, Hasher};
6
David Tolnay360efd22018-01-04 23:35:26 -08007ast_enum_of_structs! {
8 pub enum Lit {
9 /// A string literal (`"foo"`)
10 pub Str(LitStr #manual_extra_traits {
11 token: Literal,
12 pub span: Span,
13 }),
Alex Crichtonccbb45d2017-05-23 10:58:24 -070014
David Tolnay360efd22018-01-04 23:35:26 -080015 /// A byte string (`b"foo"`)
16 pub ByteStr(LitByteStr #manual_extra_traits {
17 token: Literal,
18 pub span: Span,
19 }),
20
21 /// A byte char (`b'f'`)
22 pub Byte(LitByte #manual_extra_traits {
23 token: Literal,
24 pub span: Span,
25 }),
26
27 /// A character literal (`'a'`)
28 pub Char(LitChar #manual_extra_traits {
29 token: Literal,
30 pub span: Span,
31 }),
32
33 /// An integer literal (`1`)
34 ///
35 /// Holds up to 64 bits of data. Use `LitVerbatim` for any larger
36 /// integer literal.
37 pub Int(LitInt #manual_extra_traits {
38 token: Literal,
39 pub span: Span,
40 }),
41
42 /// A float literal (`1f64` or `1E10f64`)
43 ///
44 /// Must be finite. May not be infinte or NaN.
45 pub Float(LitFloat #manual_extra_traits {
46 token: Literal,
47 pub span: Span,
48 }),
49
50 /// A boolean literal
51 pub Bool(LitBool #manual_extra_traits {
52 pub value: bool,
53 pub span: Span,
54 }),
55
56 pub Verbatim(LitVerbatim #manual_extra_traits {
57 pub token: Literal,
58 pub span: Span,
59 }),
60 }
Alex Crichtonccbb45d2017-05-23 10:58:24 -070061}
62
David Tolnay360efd22018-01-04 23:35:26 -080063impl LitStr {
64 pub fn new(value: &str, span: Span) -> Self {
65 LitStr {
66 token: Literal::string(value),
67 span: span,
68 }
69 }
70
71 pub fn value(&self) -> String {
72 value::parse_lit_str(&self.token.to_string())
73 }
Alex Crichtonccbb45d2017-05-23 10:58:24 -070074}
75
David Tolnay360efd22018-01-04 23:35:26 -080076impl LitByteStr {
77 pub fn new(value: &[u8], span: Span) -> Self {
78 LitByteStr {
79 token: Literal::byte_string(value),
80 span: span,
81 }
82 }
83
84 pub fn value(&self) -> Vec<u8> {
85 value::parse_lit_byte_str(&self.token.to_string())
86 }
87}
88
89impl LitByte {
90 pub fn new(value: u8, span: Span) -> Self {
91 LitByte {
92 token: Literal::byte_char(value),
93 span: span,
94 }
95 }
96
97 pub fn value(&self) -> u8 {
98 value::parse_lit_byte(&self.token.to_string())
99 }
100}
101
102impl LitChar {
103 pub fn new(value: char, span: Span) -> Self {
104 LitChar {
105 token: Literal::character(value),
106 span: span,
107 }
108 }
109
110 pub fn value(&self) -> char {
111 value::parse_lit_char(&self.token.to_string())
112 }
113}
114
115impl LitInt {
116 pub fn new(value: u64, suffix: IntSuffix, span: Span) -> Self {
117 LitInt {
118 token: match suffix {
119 IntSuffix::Isize => Literal::isize(value as isize),
120 IntSuffix::I8 => Literal::i8(value as i8),
121 IntSuffix::I16 => Literal::i16(value as i16),
122 IntSuffix::I32 => Literal::i32(value as i32),
123 IntSuffix::I64 => Literal::i64(value as i64),
124 IntSuffix::I128 => value::to_literal(&format!("{}i128", value)),
125 IntSuffix::Usize => Literal::usize(value as usize),
126 IntSuffix::U8 => Literal::u8(value as u8),
127 IntSuffix::U16 => Literal::u16(value as u16),
128 IntSuffix::U32 => Literal::u32(value as u32),
129 IntSuffix::U64 => Literal::u64(value),
130 IntSuffix::U128 => value::to_literal(&format!("{}u128", value)),
131 IntSuffix::None => Literal::integer(value as i64),
132 },
133 span: span,
134 }
135 }
136
137 pub fn value(&self) -> u64 {
138 value::parse_lit_int(&self.token.to_string()).unwrap()
139 }
140
141 pub fn suffix(&self) -> IntSuffix {
142 let value = self.token.to_string();
143 for (s, suffix) in vec![
144 ("i8", IntSuffix::I8),
145 ("i16", IntSuffix::I16),
146 ("i32", IntSuffix::I32),
147 ("i64", IntSuffix::I64),
148 ("i128", IntSuffix::I128),
149 ("isize", IntSuffix::Isize),
150 ("u8", IntSuffix::U8),
151 ("u16", IntSuffix::U16),
152 ("u32", IntSuffix::U32),
153 ("u64", IntSuffix::U64),
154 ("u128", IntSuffix::U128),
155 ("usize", IntSuffix::Usize),
156 ] {
157 if value.ends_with(s) {
158 return suffix;
159 }
160 }
161 IntSuffix::None
162 }
163}
164
165impl LitFloat {
166 pub fn new(value: f64, suffix: FloatSuffix, span: Span) -> Self {
167 LitFloat {
168 token: match suffix {
169 FloatSuffix::F32 => Literal::f32(value as f32),
170 FloatSuffix::F64 => Literal::f64(value),
171 FloatSuffix::None => Literal::float(value),
172 },
173 span: span,
174 }
175 }
176
177 pub fn value(&self) -> f64 {
178 value::parse_lit_float(&self.token.to_string())
179 }
180
181 pub fn suffix(&self) -> FloatSuffix {
182 let value = self.token.to_string();
David Tolnay61037c62018-01-05 16:21:03 -0800183 for (s, suffix) in vec![("f32", FloatSuffix::F32), ("f64", FloatSuffix::F64)] {
David Tolnay360efd22018-01-04 23:35:26 -0800184 if value.ends_with(s) {
185 return suffix;
186 }
187 }
188 FloatSuffix::None
189 }
190}
191
192macro_rules! lit_extra_traits {
193 ($ty:ident, $field:ident) => {
194 #[cfg(feature = "extra-traits")]
195 impl Eq for $ty {}
196
197 #[cfg(feature = "extra-traits")]
198 impl PartialEq for $ty {
199 fn eq(&self, other: &Self) -> bool {
200 self.$field.to_string() == other.$field.to_string()
201 }
202 }
203
204 #[cfg(feature = "extra-traits")]
205 impl Hash for $ty {
206 fn hash<H>(&self, state: &mut H)
207 where
208 H: Hasher,
209 {
210 self.$field.to_string().hash(state);
211 }
David Tolnay9c76bcb2017-12-26 23:14:59 -0500212 }
Alex Crichton62a0a592017-05-22 13:58:53 -0700213 }
David Tolnayf4bbbd92016-09-23 14:41:55 -0700214}
215
David Tolnay360efd22018-01-04 23:35:26 -0800216lit_extra_traits!(LitStr, token);
217lit_extra_traits!(LitByteStr, token);
218lit_extra_traits!(LitByte, token);
219lit_extra_traits!(LitChar, token);
220lit_extra_traits!(LitInt, token);
221lit_extra_traits!(LitFloat, token);
222lit_extra_traits!(LitBool, value);
223lit_extra_traits!(LitVerbatim, token);
224
225ast_enum! {
226 pub enum StrStyle #no_visit {
227 /// A regular string, like `"foo"`
228 Cooked,
229 /// A raw string, like `r##"foo"##`
230 ///
231 /// The unsigned integer is the number of `#` symbols used.
232 Raw(usize),
Alex Crichton62a0a592017-05-22 13:58:53 -0700233 }
David Tolnayf4bbbd92016-09-23 14:41:55 -0700234}
235
David Tolnay360efd22018-01-04 23:35:26 -0800236ast_enum! {
237 pub enum IntSuffix #no_visit {
238 I8,
239 I16,
240 I32,
241 I64,
242 I128,
243 Isize,
244 U8,
245 U16,
246 U32,
247 U64,
248 U128,
249 Usize,
250 None,
Pascal Hertleif36342c52016-10-19 10:31:42 +0200251 }
252}
253
David Tolnay360efd22018-01-04 23:35:26 -0800254ast_enum! {
255 pub enum FloatSuffix #no_visit {
256 F32,
257 F64,
258 None,
Alex Crichton2e0229c2017-05-23 09:34:50 -0700259 }
David Tolnay5fe14fc2017-01-27 16:22:08 -0800260}
261
262#[cfg(feature = "parsing")]
David Tolnayf4bbbd92016-09-23 14:41:55 -0700263pub mod parsing {
264 use super::*;
David Tolnayc5ab8c62017-12-26 16:43:39 -0500265 use synom::Synom;
266 use cursor::Cursor;
David Tolnay203557a2017-12-27 23:59:33 -0500267 use parse_error;
268 use synom::PResult;
David Tolnayf4bbbd92016-09-23 14:41:55 -0700269
Alex Crichton954046c2017-05-30 21:49:42 -0700270 impl Synom for Lit {
Michael Layzell92639a52017-06-01 00:07:44 -0400271 fn parse(input: Cursor) -> PResult<Self> {
Michael Layzell589a8f42017-06-02 19:47:01 -0400272 match input.literal() {
David Tolnay360efd22018-01-04 23:35:26 -0800273 Some((span, lit, rest)) => Ok((Lit::new(lit, span), rest)),
David Tolnay73c98de2017-12-31 15:56:56 -0500274 _ => match input.term() {
David Tolnay360efd22018-01-04 23:35:26 -0800275 Some((span, term, rest)) => Ok((
276 Lit::Bool(LitBool {
277 value: if term.as_str() == "true" {
278 true
279 } else if term.as_str() == "false" {
280 false
281 } else {
282 return parse_error();
David Tolnay51382052017-12-27 13:46:21 -0500283 },
David Tolnay360efd22018-01-04 23:35:26 -0800284 span: span,
285 }),
286 rest,
287 )),
Michael Layzell589a8f42017-06-02 19:47:01 -0400288 _ => parse_error(),
David Tolnay51382052017-12-27 13:46:21 -0500289 },
Michael Layzell589a8f42017-06-02 19:47:01 -0400290 }
David Tolnayfa0edf22016-09-23 22:58:24 -0700291 }
Sergio Benitez5680d6a2017-12-29 11:20:29 -0800292
293 fn description() -> Option<&'static str> {
294 Some("literal")
295 }
David Tolnayf4bbbd92016-09-23 14:41:55 -0700296 }
David Tolnay360efd22018-01-04 23:35:26 -0800297
298 impl_synom!(LitStr "string literal" switch!(
299 syn!(Lit),
300 Lit::Str(lit) => value!(lit)
301 |
302 _ => reject!()
303 ));
304
305 impl_synom!(LitByteStr "byte string literal" switch!(
306 syn!(Lit),
307 Lit::ByteStr(lit) => value!(lit)
308 |
309 _ => reject!()
310 ));
311
312 impl_synom!(LitByte "byte literal" switch!(
313 syn!(Lit),
314 Lit::Byte(lit) => value!(lit)
315 |
316 _ => reject!()
317 ));
318
319 impl_synom!(LitChar "character literal" switch!(
320 syn!(Lit),
321 Lit::Char(lit) => value!(lit)
322 |
323 _ => reject!()
324 ));
325
326 impl_synom!(LitInt "integer literal" switch!(
327 syn!(Lit),
328 Lit::Int(lit) => value!(lit)
329 |
330 _ => reject!()
331 ));
332
333 impl_synom!(LitFloat "floating point literal" switch!(
334 syn!(Lit),
335 Lit::Float(lit) => value!(lit)
336 |
337 _ => reject!()
338 ));
339
340 impl_synom!(LitBool "boolean literal" switch!(
341 syn!(Lit),
342 Lit::Bool(lit) => value!(lit)
343 |
344 _ => reject!()
345 ));
346
347 impl Lit {
348 pub fn new(token: Literal, span: Span) -> Self {
349 let value = token.to_string();
350
351 match value::byte(&value, 0) {
David Tolnay61037c62018-01-05 16:21:03 -0800352 b'"' | b'r' => {
353 return Lit::Str(LitStr {
David Tolnay360efd22018-01-04 23:35:26 -0800354 token: token,
355 span: span,
David Tolnay61037c62018-01-05 16:21:03 -0800356 })
David Tolnay360efd22018-01-04 23:35:26 -0800357 }
David Tolnay61037c62018-01-05 16:21:03 -0800358 b'b' => match value::byte(&value, 1) {
359 b'"' | b'r' => {
360 return Lit::ByteStr(LitByteStr {
361 token: token,
362 span: span,
363 })
364 }
365 b'\'' => {
366 return Lit::Byte(LitByte {
367 token: token,
368 span: span,
369 })
370 }
371 _ => {}
372 },
373 b'\'' => {
374 return Lit::Char(LitChar {
375 token: token,
376 span: span,
377 })
378 }
David Tolnay360efd22018-01-04 23:35:26 -0800379 b'0'...b'9' => if number_is_int(&value) {
380 return Lit::Int(LitInt {
381 token: token,
382 span: span,
383 });
384 } else if number_is_float(&value) {
385 return Lit::Float(LitFloat {
386 token: token,
387 span: span,
388 });
389 } else {
390 // number overflow
391 return Lit::Verbatim(LitVerbatim {
392 token: token,
393 span: span,
394 });
David Tolnay61037c62018-01-05 16:21:03 -0800395 },
David Tolnay360efd22018-01-04 23:35:26 -0800396 _ => if value == "true" || value == "false" {
397 return Lit::Bool(LitBool {
398 value: value == "true",
399 span: span,
400 });
David Tolnay61037c62018-01-05 16:21:03 -0800401 },
David Tolnay360efd22018-01-04 23:35:26 -0800402 }
403
404 panic!("Unrecognized literal: {}", value);
405 }
406 }
407
408 fn number_is_int(value: &str) -> bool {
409 if number_is_float(value) {
410 false
411 } else {
412 value::parse_lit_int(value).is_some()
413 }
414 }
415
416 fn number_is_float(value: &str) -> bool {
417 if value.contains('.') {
418 true
419 } else if value.starts_with("0x") || value.ends_with("size") {
420 false
421 } else {
422 value.contains('e') || value.contains('E')
423 }
424 }
David Tolnayf4bbbd92016-09-23 14:41:55 -0700425}
426
427#[cfg(feature = "printing")]
428mod printing {
429 use super::*;
David Tolnay51382052017-12-27 13:46:21 -0500430 use quote::{ToTokens, Tokens};
Alex Crichtonccbb45d2017-05-23 10:58:24 -0700431
David Tolnay360efd22018-01-04 23:35:26 -0800432 impl ToTokens for LitStr {
David Tolnayf4bbbd92016-09-23 14:41:55 -0700433 fn to_tokens(&self, tokens: &mut Tokens) {
David Tolnay360efd22018-01-04 23:35:26 -0800434 tokens.append(TokenTree {
435 span: self.span,
436 kind: TokenNode::Literal(self.token.clone()),
437 });
438 }
439 }
440
441 impl ToTokens for LitByteStr {
442 fn to_tokens(&self, tokens: &mut Tokens) {
443 tokens.append(TokenTree {
444 span: self.span,
445 kind: TokenNode::Literal(self.token.clone()),
446 });
447 }
448 }
449
450 impl ToTokens for LitByte {
451 fn to_tokens(&self, tokens: &mut Tokens) {
452 tokens.append(TokenTree {
453 span: self.span,
454 kind: TokenNode::Literal(self.token.clone()),
455 });
456 }
457 }
458
459 impl ToTokens for LitChar {
460 fn to_tokens(&self, tokens: &mut Tokens) {
461 tokens.append(TokenTree {
462 span: self.span,
463 kind: TokenNode::Literal(self.token.clone()),
464 });
465 }
466 }
467
468 impl ToTokens for LitInt {
469 fn to_tokens(&self, tokens: &mut Tokens) {
470 tokens.append(TokenTree {
471 span: self.span,
472 kind: TokenNode::Literal(self.token.clone()),
473 });
474 }
475 }
476
477 impl ToTokens for LitFloat {
478 fn to_tokens(&self, tokens: &mut Tokens) {
479 tokens.append(TokenTree {
480 span: self.span,
481 kind: TokenNode::Literal(self.token.clone()),
482 });
483 }
484 }
485
486 impl ToTokens for LitBool {
487 fn to_tokens(&self, tokens: &mut Tokens) {
488 tokens.append(TokenTree {
489 span: self.span,
David Tolnay61037c62018-01-05 16:21:03 -0800490 kind: TokenNode::Term(Term::intern(if self.value { "true" } else { "false" })),
David Tolnay360efd22018-01-04 23:35:26 -0800491 });
492 }
493 }
494
495 impl ToTokens for LitVerbatim {
496 fn to_tokens(&self, tokens: &mut Tokens) {
497 tokens.append(TokenTree {
498 span: self.span,
499 kind: TokenNode::Literal(self.token.clone()),
500 });
501 }
502 }
503}
504
505mod value {
506 use super::*;
507 use std::char;
508 use std::ops::{Index, RangeFrom};
509 use proc_macro2::TokenStream;
510
511 /// Get the byte at offset idx, or a default of `b'\0'` if we're looking
512 /// past the end of the input buffer.
513 pub fn byte<S: AsRef<[u8]> + ?Sized>(s: &S, idx: usize) -> u8 {
514 let s = s.as_ref();
515 if idx < s.len() {
516 s[idx]
517 } else {
518 0
519 }
520 }
521
522 fn next_chr(s: &str) -> char {
523 s.chars().next().unwrap_or('\0')
524 }
525
526 pub fn parse_lit_str(s: &str) -> String {
527 match byte(s, 0) {
528 b'"' => parse_lit_str_cooked(s),
529 b'r' => parse_lit_str_raw(s),
530 _ => unreachable!(),
531 }
532 }
533
534 fn parse_lit_str_cooked(mut s: &str) -> String {
535 assert_eq!(byte(s, 0), b'"');
536 s = &s[1..];
537
538 let mut out = String::new();
539 'outer: loop {
540 let ch = match byte(s, 0) {
541 b'"' => break,
542 b'\\' => {
543 let b = byte(s, 1);
544 s = &s[2..];
545 match b {
546 b'x' => {
547 let (byte, rest) = backslash_x(s);
548 s = rest;
549 assert!(byte <= 0x80, "Invalid \\x byte in string literal");
550 char::from_u32(byte as u32).unwrap()
551 }
552 b'u' => {
553 let (chr, rest) = backslash_u(&s);
554 s = rest;
555 chr
556 }
557 b'n' => '\n',
558 b'r' => '\r',
559 b't' => '\t',
560 b'\\' => '\\',
561 b'0' => '\0',
562 b'\'' => '\'',
563 b'"' => '"',
David Tolnay61037c62018-01-05 16:21:03 -0800564 b'\r' | b'\n' => loop {
565 let ch = next_chr(s);
566 if ch.is_whitespace() {
567 s = &s[ch.len_utf8()..];
568 } else {
569 continue 'outer;
David Tolnay360efd22018-01-04 23:35:26 -0800570 }
David Tolnay61037c62018-01-05 16:21:03 -0800571 },
572 b => panic!("unexpected byte {:?} after \\ character in byte literal", b),
David Tolnay360efd22018-01-04 23:35:26 -0800573 }
574 }
575 b'\r' => {
576 assert_eq!(byte(s, 1), b'\n', "Bare CR not allowed in string");
577 s = &s[2..];
578 '\n'
579 }
580 _ => {
581 let ch = next_chr(s);
582 s = &s[ch.len_utf8()..];
583 ch
584 }
585 };
586 out.push(ch);
587 }
588
589 assert_eq!(s, "\"");
590 out
591 }
592
593 fn parse_lit_str_raw(mut s: &str) -> String {
594 assert_eq!(byte(s, 0), b'r');
595 s = &s[1..];
596
597 let mut pounds = 0;
598 while byte(s, pounds) == b'#' {
599 pounds += 1;
600 }
601 assert_eq!(byte(s, pounds), b'"');
602 assert_eq!(byte(s, s.len() - pounds - 1), b'"');
603 for end in s[s.len() - pounds..].bytes() {
604 assert_eq!(end, b'#');
605 }
606
607 s[pounds + 1..s.len() - pounds - 1].to_owned()
608 }
609
610 pub fn parse_lit_byte_str(s: &str) -> Vec<u8> {
611 assert_eq!(byte(s, 0), b'b');
612 match byte(s, 1) {
613 b'"' => parse_lit_byte_str_cooked(s),
614 b'r' => parse_lit_byte_str_raw(s),
615 _ => unreachable!(),
616 }
617 }
618
619 fn parse_lit_byte_str_cooked(mut s: &str) -> Vec<u8> {
620 assert_eq!(byte(s, 0), b'b');
621 assert_eq!(byte(s, 1), b'"');
622 s = &s[2..];
623
624 // We're going to want to have slices which don't respect codepoint boundaries.
625 let mut s = s.as_bytes();
626
627 let mut out = Vec::new();
628 'outer: loop {
629 let byte = match byte(s, 0) {
630 b'"' => break,
631 b'\\' => {
632 let b = byte(s, 1);
633 s = &s[2..];
634 match b {
635 b'x' => {
636 let (b, rest) = backslash_x(s);
637 s = rest;
638 b
639 }
640 b'n' => b'\n',
641 b'r' => b'\r',
642 b't' => b'\t',
643 b'\\' => b'\\',
644 b'0' => b'\0',
645 b'\'' => b'\'',
646 b'"' => b'"',
David Tolnay61037c62018-01-05 16:21:03 -0800647 b'\r' | b'\n' => loop {
648 let byte = byte(s, 0);
649 let ch = char::from_u32(byte as u32).unwrap();
650 if ch.is_whitespace() {
651 s = &s[1..];
652 } else {
653 continue 'outer;
David Tolnay360efd22018-01-04 23:35:26 -0800654 }
David Tolnay61037c62018-01-05 16:21:03 -0800655 },
656 b => panic!("unexpected byte {:?} after \\ character in byte literal", b),
David Tolnay360efd22018-01-04 23:35:26 -0800657 }
658 }
659 b'\r' => {
660 assert_eq!(byte(s, 1), b'\n', "Bare CR not allowed in string");
661 s = &s[2..];
662 b'\n'
663 }
664 b => {
665 s = &s[1..];
666 b
667 }
668 };
669 out.push(byte);
670 }
671
672 assert_eq!(s, b"\"");
673 out
674 }
675
676 fn parse_lit_byte_str_raw(s: &str) -> Vec<u8> {
677 assert_eq!(byte(s, 0), b'b');
678 parse_lit_str_raw(&s[1..]).into_bytes()
679 }
680
681 pub fn parse_lit_byte(s: &str) -> u8 {
682 assert_eq!(byte(s, 0), b'b');
683 assert_eq!(byte(s, 1), b'\'');
684
685 // We're going to want to have slices which don't respect codepoint boundaries.
686 let mut s = s[2..].as_bytes();
687
688 let b = match byte(s, 0) {
689 b'\\' => {
690 let b = byte(s, 1);
691 s = &s[2..];
692 match b {
693 b'x' => {
694 let (b, rest) = backslash_x(s);
695 s = rest;
696 b
697 }
698 b'n' => b'\n',
699 b'r' => b'\r',
700 b't' => b'\t',
701 b'\\' => b'\\',
702 b'0' => b'\0',
703 b'\'' => b'\'',
704 b'"' => b'"',
David Tolnay61037c62018-01-05 16:21:03 -0800705 b => panic!("unexpected byte {:?} after \\ character in byte literal", b),
David Tolnay360efd22018-01-04 23:35:26 -0800706 }
707 }
708 b => {
709 s = &s[1..];
710 b
711 }
712 };
713
714 assert_eq!(byte(s, 0), b'\'');
715 b
716 }
717
718 pub fn parse_lit_char(mut s: &str) -> char {
719 assert_eq!(byte(s, 0), b'\'');
720 s = &s[1..];
721
722 let ch = match byte(s, 0) {
723 b'\\' => {
724 let b = byte(s, 1);
725 s = &s[2..];
726 match b {
727 b'x' => {
728 let (byte, rest) = backslash_x(s);
729 s = rest;
730 assert!(byte <= 0x80, "Invalid \\x byte in string literal");
731 char::from_u32(byte as u32).unwrap()
732 }
733 b'u' => {
734 let (chr, rest) = backslash_u(s);
735 s = rest;
736 chr
737 }
738 b'n' => '\n',
739 b'r' => '\r',
740 b't' => '\t',
741 b'\\' => '\\',
742 b'0' => '\0',
743 b'\'' => '\'',
744 b'"' => '"',
David Tolnay61037c62018-01-05 16:21:03 -0800745 b => panic!("unexpected byte {:?} after \\ character in byte literal", b),
David Tolnay360efd22018-01-04 23:35:26 -0800746 }
747 }
748 _ => {
749 let ch = next_chr(s);
750 s = &s[ch.len_utf8()..];
751 ch
752 }
753 };
754 assert_eq!(s, "\'", "Expected end of char literal");
755 ch
756 }
757
758 fn backslash_x<S>(s: &S) -> (u8, &S)
David Tolnay61037c62018-01-05 16:21:03 -0800759 where
760 S: Index<RangeFrom<usize>, Output = S> + AsRef<[u8]> + ?Sized,
David Tolnay360efd22018-01-04 23:35:26 -0800761 {
762 let mut ch = 0;
763 let b0 = byte(s, 0);
764 let b1 = byte(s, 1);
765 ch += 0x10 * match b0 {
766 b'0'...b'9' => b0 - b'0',
767 b'a'...b'f' => 10 + (b0 - b'a'),
768 b'A'...b'F' => 10 + (b0 - b'A'),
769 _ => panic!("unexpected non-hex character after \\x"),
770 };
771 ch += 0x1 * match b1 {
772 b'0'...b'9' => b1 - b'0',
773 b'a'...b'f' => 10 + (b1 - b'a'),
774 b'A'...b'F' => 10 + (b1 - b'A'),
775 _ => panic!("unexpected non-hex character after \\x"),
776 };
777 (ch, &s[2..])
778 }
779
780 fn backslash_u(mut s: &str) -> (char, &str) {
781 if byte(s, 0) != b'{' {
782 panic!("expected {{ after \\u");
783 }
784 s = &s[1..];
785
786 let mut ch = 0;
787 for _ in 0..6 {
788 let b = byte(s, 0);
789 match b {
790 b'0'...b'9' => {
791 ch *= 0x10;
792 ch += (b - b'0') as u32;
793 s = &s[1..];
794 }
795 b'a'...b'f' => {
796 ch *= 0x10;
797 ch += (10 + b - b'a') as u32;
798 s = &s[1..];
799 }
800 b'A'...b'F' => {
801 ch *= 0x10;
802 ch += (10 + b - b'A') as u32;
803 s = &s[1..];
804 }
805 b'}' => break,
806 _ => panic!("unexpected non-hex character after \\u"),
807 }
808 }
809 assert!(byte(s, 0) == b'}');
810 s = &s[1..];
811
812 if let Some(ch) = char::from_u32(ch) {
813 (ch, s)
814 } else {
815 panic!("character code {:x} is not a valid unicode character", ch);
816 }
817 }
818
819 pub fn parse_lit_int(mut s: &str) -> Option<u64> {
820 let base = match (byte(s, 0), byte(s, 1)) {
821 (b'0', b'x') => {
822 s = &s[2..];
823 16
824 }
825 (b'0', b'o') => {
826 s = &s[2..];
827 8
828 }
829 (b'0', b'b') => {
830 s = &s[2..];
831 2
832 }
833 (b'0'...b'9', _) => 10,
834 _ => unreachable!(),
835 };
836
837 let mut value = 0u64;
838 loop {
839 let b = byte(s, 0);
840 let digit = match b {
841 b'0'...b'9' => (b - b'0') as u64,
842 b'a'...b'f' if base > 10 => 10 + (b - b'a') as u64,
843 b'A'...b'F' if base > 10 => 10 + (b - b'A') as u64,
844 b'_' => {
845 s = &s[1..];
846 continue;
847 }
848 // NOTE: Looking at a floating point literal, we don't want to
849 // consider these integers.
850 b'.' if base == 10 => return None,
851 b'e' | b'E' if base == 10 => return None,
852 _ => break,
853 };
854
855 if digit >= base {
856 panic!("Unexpected digit {:x} out of base range", digit);
857 }
858
859 value = match value.checked_mul(base) {
860 Some(value) => value,
861 None => return None,
862 };
863 value = match value.checked_add(digit) {
864 Some(value) => value,
865 None => return None,
866 };
867 s = &s[1..];
868 }
869
870 Some(value)
871 }
872
873 pub fn parse_lit_float(input: &str) -> f64 {
874 // Rust's floating point literals are very similar to the ones parsed by
875 // the standard library, except that rust's literals can contain
876 // ignorable underscores. Let's remove those underscores.
877 let mut bytes = input.to_owned().into_bytes();
878 let mut write = 0;
879 for read in 0..bytes.len() {
880 if bytes[read] == b'_' {
881 continue; // Don't increase write
882 } else if write != read {
883 let x = bytes[read];
884 bytes[write] = x;
885 }
886 write += 1;
887 }
888 bytes.truncate(write);
889 let input = String::from_utf8(bytes).unwrap();
890 let end = input.find('f').unwrap_or(input.len());
891 input[..end].parse().unwrap()
892 }
893
894 pub fn to_literal(s: &str) -> Literal {
895 let stream = s.parse::<TokenStream>().unwrap();
896 match stream.into_iter().next().unwrap().kind {
897 TokenNode::Literal(l) => l,
898 _ => unreachable!(),
David Tolnayf17fd2f2016-10-07 23:38:08 -0700899 }
900 }
David Tolnayf4bbbd92016-09-23 14:41:55 -0700901}