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David Tolnay80a914f2018-08-30 23:49:53 -07001// Copyright 2018 Syn Developers
2//
3// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
4// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
5// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
6// option. This file may not be copied, modified, or distributed
7// except according to those terms.
8
David Tolnay18c754c2018-08-21 23:26:58 -04009//! Parsing interface for parsing a token stream into a syntax tree node.
David Tolnay80a914f2018-08-30 23:49:53 -070010//!
David Tolnaye0c51762018-08-31 11:05:22 -070011//! Parsing in Syn is built on parser functions that take in a [`ParseStream`]
12//! and produce a [`Result<T>`] where `T` is some syntax tree node. Underlying
13//! these parser functions is a lower level mechanism built around the
14//! [`Cursor`] type. `Cursor` is a cheaply copyable cursor over a range of
15//! tokens in a token stream.
David Tolnay80a914f2018-08-30 23:49:53 -070016//!
David Tolnaye0c51762018-08-31 11:05:22 -070017//! [`ParseStream`]: type.ParseStream.html
18//! [`Result<T>`]: type.Result.html
David Tolnay80a914f2018-08-30 23:49:53 -070019//! [`Cursor`]: ../buffer/index.html
David Tolnay80a914f2018-08-30 23:49:53 -070020//!
David Tolnaye0c51762018-08-31 11:05:22 -070021//! The `ParseStream`-based interface is convenient for parser implementations,
22//! but not necessarily when you just have some tokens that you want to parse.
23//! For that we expose the following two entry points.
David Tolnay80a914f2018-08-30 23:49:53 -070024//!
25//! ## The `syn::parse*` functions
26//!
27//! The [`syn::parse`], [`syn::parse2`], and [`syn::parse_str`] functions serve
28//! as an entry point for parsing syntax tree nodes that can be parsed in an
29//! obvious default way. These functions can return any syntax tree node that
David Tolnay8aacee12018-08-31 09:15:15 -070030//! implements the [`Parse`] trait, which includes most types in Syn.
David Tolnay80a914f2018-08-30 23:49:53 -070031//!
32//! [`syn::parse`]: ../fn.parse.html
33//! [`syn::parse2`]: ../fn.parse2.html
34//! [`syn::parse_str`]: ../fn.parse_str.html
David Tolnay8aacee12018-08-31 09:15:15 -070035//! [`Parse`]: trait.Parse.html
David Tolnay80a914f2018-08-30 23:49:53 -070036//!
37//! ```
38//! use syn::Type;
39//!
David Tolnay8aacee12018-08-31 09:15:15 -070040//! # fn run_parser() -> Result<(), syn::parse::Error> {
David Tolnay80a914f2018-08-30 23:49:53 -070041//! let t: Type = syn::parse_str("std::collections::HashMap<String, Value>")?;
42//! # Ok(())
43//! # }
44//! #
45//! # fn main() {
46//! # run_parser().unwrap();
47//! # }
48//! ```
49//!
50//! The [`parse_quote!`] macro also uses this approach.
51//!
52//! [`parse_quote!`]: ../macro.parse_quote.html
53//!
54//! ## The `Parser` trait
55//!
56//! Some types can be parsed in several ways depending on context. For example
57//! an [`Attribute`] can be either "outer" like `#[...]` or "inner" like
58//! `#![...]` and parsing the wrong one would be a bug. Similarly [`Punctuated`]
59//! may or may not allow trailing punctuation, and parsing it the wrong way
60//! would either reject valid input or accept invalid input.
61//!
62//! [`Attribute`]: ../struct.Attribute.html
63//! [`Punctuated`]: ../punctuated/index.html
64//!
David Tolnaye0c51762018-08-31 11:05:22 -070065//! The `Parse` trait is not implemented in these cases because there is no good
David Tolnay80a914f2018-08-30 23:49:53 -070066//! behavior to consider the default.
67//!
68//! ```ignore
69//! // Can't parse `Punctuated` without knowing whether trailing punctuation
70//! // should be allowed in this context.
71//! let path: Punctuated<PathSegment, Token![::]> = syn::parse(tokens)?;
72//! ```
73//!
74//! In these cases the types provide a choice of parser functions rather than a
David Tolnaye0c51762018-08-31 11:05:22 -070075//! single `Parse` implementation, and those parser functions can be invoked
David Tolnay80a914f2018-08-30 23:49:53 -070076//! through the [`Parser`] trait.
77//!
78//! [`Parser`]: trait.Parser.html
79//!
80//! ```
David Tolnay80a914f2018-08-30 23:49:53 -070081//! # extern crate syn;
82//! #
83//! # extern crate proc_macro2;
84//! # use proc_macro2::TokenStream;
85//! #
David Tolnay3e3f7752018-08-31 09:33:59 -070086//! use syn::parse::Parser;
David Tolnay80a914f2018-08-30 23:49:53 -070087//! use syn::punctuated::Punctuated;
David Tolnay9b00f652018-09-01 10:31:02 -070088//! use syn::{Attribute, Expr, PathSegment, Token};
David Tolnay80a914f2018-08-30 23:49:53 -070089//!
David Tolnay3e3f7752018-08-31 09:33:59 -070090//! # fn run_parsers() -> Result<(), syn::parse::Error> {
David Tolnay80a914f2018-08-30 23:49:53 -070091//! # let tokens = TokenStream::new().into();
92//! // Parse a nonempty sequence of path segments separated by `::` punctuation
93//! // with no trailing punctuation.
94//! let parser = Punctuated::<PathSegment, Token![::]>::parse_separated_nonempty;
95//! let path = parser.parse(tokens)?;
96//!
97//! # let tokens = TokenStream::new().into();
98//! // Parse a possibly empty sequence of expressions terminated by commas with
99//! // an optional trailing punctuation.
100//! let parser = Punctuated::<Expr, Token![,]>::parse_terminated;
101//! let args = parser.parse(tokens)?;
102//!
103//! # let tokens = TokenStream::new().into();
104//! // Parse zero or more outer attributes but not inner attributes.
David Tolnay3e3f7752018-08-31 09:33:59 -0700105//! let parser = Attribute::parse_outer;
106//! let attrs = parser.parse(tokens)?;
David Tolnay80a914f2018-08-30 23:49:53 -0700107//! #
108//! # Ok(())
109//! # }
110//! #
111//! # fn main() {}
112//! ```
113//!
David Tolnaye0c51762018-08-31 11:05:22 -0700114//! ---
David Tolnay80a914f2018-08-30 23:49:53 -0700115//!
116//! *This module is available if Syn is built with the `"parsing"` feature.*
David Tolnay18c754c2018-08-21 23:26:58 -0400117
118use std::cell::Cell;
119use std::fmt::Display;
120use std::marker::PhantomData;
121use std::mem;
122use std::ops::Deref;
David Tolnayeafc8052018-08-25 16:33:53 -0400123use std::rc::Rc;
David Tolnay80a914f2018-08-30 23:49:53 -0700124use std::str::FromStr;
David Tolnayeafc8052018-08-25 16:33:53 -0400125
David Tolnay80a914f2018-08-30 23:49:53 -0700126#[cfg(all(
127 not(all(target_arch = "wasm32", target_os = "unknown")),
128 feature = "proc-macro"
129))]
130use proc_macro;
David Tolnayf07b3342018-09-01 11:58:11 -0700131use proc_macro2::{self, Delimiter, Group, Literal, Punct, Span, TokenStream, TokenTree};
David Tolnay18c754c2018-08-21 23:26:58 -0400132
David Tolnay80a914f2018-08-30 23:49:53 -0700133use buffer::{Cursor, TokenBuffer};
David Tolnayb6254182018-08-25 08:44:54 -0400134use error;
David Tolnay94f06632018-08-31 10:17:17 -0700135use lookahead;
136use private;
David Tolnay577d0332018-08-25 21:45:24 -0400137use punctuated::Punctuated;
David Tolnay4fb71232018-08-25 23:14:50 -0400138use token::Token;
David Tolnay18c754c2018-08-21 23:26:58 -0400139
David Tolnayb6254182018-08-25 08:44:54 -0400140pub use error::{Error, Result};
141pub use lookahead::{Lookahead1, Peek};
David Tolnay18c754c2018-08-21 23:26:58 -0400142
143/// Parsing interface implemented by all types that can be parsed in a default
144/// way from a token stream.
145pub trait Parse: Sized {
146 fn parse(input: ParseStream) -> Result<Self>;
147}
148
149/// Input to a Syn parser function.
David Tolnaya0daa482018-09-01 02:09:40 -0700150///
151/// See the methods of this type under the documentation of [`ParseBuffer`]. For
152/// an overview of parsing in Syn, refer to the [module documentation].
153///
154/// [module documentation]: index.html
David Tolnay18c754c2018-08-21 23:26:58 -0400155pub type ParseStream<'a> = &'a ParseBuffer<'a>;
156
157/// Cursor position within a buffered token stream.
David Tolnay20d29a12018-09-01 15:15:33 -0700158///
159/// This type is more commonly used through the type alias [`ParseStream`] which
160/// is an alias for `&ParseBuffer`.
161///
162/// `ParseStream` is the input type for all parser functions in Syn. They have
163/// the signature `fn(ParseStream) -> Result<T>`.
David Tolnay18c754c2018-08-21 23:26:58 -0400164pub struct ParseBuffer<'a> {
165 scope: Span,
166 cell: Cell<Cursor<'static>>,
167 marker: PhantomData<Cursor<'a>>,
David Tolnayeafc8052018-08-25 16:33:53 -0400168 unexpected: Rc<Cell<Option<Span>>>,
169}
170
171impl<'a> Drop for ParseBuffer<'a> {
172 fn drop(&mut self) {
173 if !self.is_empty() && self.unexpected.get().is_none() {
174 self.unexpected.set(Some(self.cursor().span()));
175 }
176 }
David Tolnay18c754c2018-08-21 23:26:58 -0400177}
178
David Tolnay642832f2018-09-01 13:08:10 -0700179/// Cursor state associated with speculative parsing.
180///
181/// This type is the input of the closure provided to [`ParseStream::step`].
182///
183/// [`ParseStream::step`]: struct.ParseBuffer.html#method.step
David Tolnay9bd34392018-09-01 13:19:53 -0700184///
185/// # Example
186///
187/// ```
188/// # extern crate proc_macro2;
189/// # extern crate syn;
190/// #
191/// use proc_macro2::TokenTree;
192/// use syn::parse::{ParseStream, Result};
193///
194/// // This function advances the stream past the next occurrence of `@`. If
195/// // no `@` is present in the stream, the stream position is unchanged and
196/// // an error is returned.
197/// fn skip_past_next_at(input: ParseStream) -> Result<()> {
198/// input.step(|cursor| {
199/// let mut rest = *cursor;
200/// while let Some((tt, next)) = cursor.token_tree() {
201/// match tt {
202/// TokenTree::Punct(ref punct) if punct.as_char() == '@' => {
203/// return Ok(((), next));
204/// }
205/// _ => rest = next,
206/// }
207/// }
208/// Err(cursor.error("no `@` was found after this point"))
209/// })
210/// }
211/// #
212/// # fn main() {}
213/// ```
David Tolnay18c754c2018-08-21 23:26:58 -0400214#[derive(Copy, Clone)]
215pub struct StepCursor<'c, 'a> {
216 scope: Span,
217 cursor: Cursor<'c>,
218 marker: PhantomData<fn(Cursor<'c>) -> Cursor<'a>>,
219}
220
221impl<'c, 'a> Deref for StepCursor<'c, 'a> {
222 type Target = Cursor<'c>;
223
224 fn deref(&self) -> &Self::Target {
225 &self.cursor
226 }
227}
228
229impl<'c, 'a> StepCursor<'c, 'a> {
David Tolnay642832f2018-09-01 13:08:10 -0700230 /// Triggers an error at the current position of the parse stream.
231 ///
232 /// The `ParseStream::step` invocation will return this same error without
233 /// advancing the stream state.
David Tolnay18c754c2018-08-21 23:26:58 -0400234 pub fn error<T: Display>(self, message: T) -> Error {
235 error::new_at(self.scope, self.cursor, message)
236 }
237}
238
David Tolnay6ea3fdc2018-09-01 13:30:53 -0700239impl private {
240 pub fn advance_step_cursor<'c, 'a>(proof: StepCursor<'c, 'a>, to: Cursor<'c>) -> Cursor<'a> {
241 let _ = proof;
242 unsafe { mem::transmute::<Cursor<'c>, Cursor<'a>>(to) }
243 }
244}
245
David Tolnay66cb0c42018-08-31 09:01:30 -0700246fn skip(input: ParseStream) -> bool {
David Tolnay4ac232d2018-08-31 10:18:03 -0700247 input
248 .step(|cursor| {
249 if let Some((_lifetime, rest)) = cursor.lifetime() {
250 Ok((true, rest))
251 } else if let Some((_token, rest)) = cursor.token_tree() {
252 Ok((true, rest))
253 } else {
254 Ok((false, *cursor))
255 }
256 }).unwrap()
David Tolnay66cb0c42018-08-31 09:01:30 -0700257}
258
David Tolnay10951d52018-08-31 10:27:39 -0700259impl private {
David Tolnay70f30e92018-09-01 02:04:17 -0700260 pub fn new_parse_buffer(
261 scope: Span,
262 cursor: Cursor,
263 unexpected: Rc<Cell<Option<Span>>>,
264 ) -> ParseBuffer {
David Tolnay94f06632018-08-31 10:17:17 -0700265 let extend = unsafe { mem::transmute::<Cursor, Cursor<'static>>(cursor) };
David Tolnay18c754c2018-08-21 23:26:58 -0400266 ParseBuffer {
267 scope: scope,
268 cell: Cell::new(extend),
269 marker: PhantomData,
David Tolnayeafc8052018-08-25 16:33:53 -0400270 unexpected: unexpected,
David Tolnay18c754c2018-08-21 23:26:58 -0400271 }
272 }
273
David Tolnay94f06632018-08-31 10:17:17 -0700274 pub fn get_unexpected(buffer: &ParseBuffer) -> Rc<Cell<Option<Span>>> {
275 buffer.unexpected.clone()
276 }
277}
278
279impl<'a> ParseBuffer<'a> {
David Tolnay725e1c62018-09-01 12:07:25 -0700280 /// Parses a syntax tree node of type `T`, advancing the position of our
281 /// parse stream past it.
David Tolnay18c754c2018-08-21 23:26:58 -0400282 pub fn parse<T: Parse>(&self) -> Result<T> {
283 T::parse(self)
284 }
285
David Tolnay725e1c62018-09-01 12:07:25 -0700286 /// Calls the given parser function to parse a syntax tree node of type `T`
287 /// from this stream.
David Tolnay3a515a02018-08-25 21:08:27 -0400288 pub fn call<T>(&self, function: fn(ParseStream) -> Result<T>) -> Result<T> {
289 function(self)
290 }
291
David Tolnay725e1c62018-09-01 12:07:25 -0700292 /// Looks at the next token in the parse stream to determine whether it
293 /// matches the requested type of token.
294 ///
295 /// Does not advance the position of the parse stream.
David Tolnayb77c8b62018-08-25 16:39:41 -0400296 pub fn peek<T: Peek>(&self, token: T) -> bool {
David Tolnay576779a2018-09-01 11:54:12 -0700297 let _ = token;
298 T::Token::peek(self.cursor())
David Tolnayb77c8b62018-08-25 16:39:41 -0400299 }
300
David Tolnay725e1c62018-09-01 12:07:25 -0700301 /// Looks at the second-next token in the parse stream.
David Tolnay4fb71232018-08-25 23:14:50 -0400302 pub fn peek2<T: Peek>(&self, token: T) -> bool {
David Tolnay4fb71232018-08-25 23:14:50 -0400303 let ahead = self.fork();
David Tolnay66cb0c42018-08-31 09:01:30 -0700304 skip(&ahead) && ahead.peek(token)
David Tolnay4fb71232018-08-25 23:14:50 -0400305 }
306
David Tolnay725e1c62018-09-01 12:07:25 -0700307 /// Looks at the third-next token in the parse stream.
David Tolnay4fb71232018-08-25 23:14:50 -0400308 pub fn peek3<T: Peek>(&self, token: T) -> bool {
David Tolnay4fb71232018-08-25 23:14:50 -0400309 let ahead = self.fork();
David Tolnay66cb0c42018-08-31 09:01:30 -0700310 skip(&ahead) && skip(&ahead) && ahead.peek(token)
David Tolnay4fb71232018-08-25 23:14:50 -0400311 }
312
David Tolnay725e1c62018-09-01 12:07:25 -0700313 /// Parses zero or more occurrences of `T` separated by punctuation of type
314 /// `P`, with optional trailing punctuation.
315 ///
316 /// Parsing continues until the end of this parse stream. The entire content
317 /// of this parse stream must consist of `T` and `P`.
David Tolnay0abe65b2018-09-01 14:31:43 -0700318 ///
319 /// # Example
320 ///
321 /// ```rust
322 /// # extern crate quote;
323 /// # extern crate syn;
324 /// #
325 /// # use quote::quote;
326 /// #
327 /// use syn::{parenthesized, token, Ident, Token, Type};
328 /// use syn::parse::{Parse, ParseStream, Result};
329 /// use syn::punctuated::Punctuated;
330 ///
331 /// // Parse a simplified tuple struct syntax like:
332 /// //
333 /// // struct S(A, B);
334 /// struct TupleStruct {
335 /// struct_token: Token![struct],
336 /// ident: Ident,
337 /// paren_token: token::Paren,
338 /// fields: Punctuated<Type, Token![,]>,
339 /// semi_token: Token![;],
340 /// }
341 ///
342 /// impl Parse for TupleStruct {
343 /// fn parse(input: ParseStream) -> Result<Self> {
344 /// let content;
345 /// Ok(TupleStruct {
346 /// struct_token: input.parse()?,
347 /// ident: input.parse()?,
348 /// paren_token: parenthesized!(content in input),
349 /// fields: content.parse_terminated(Type::parse)?,
350 /// semi_token: input.parse()?,
351 /// })
352 /// }
353 /// }
354 /// #
355 /// # fn main() {
356 /// # let input = quote! {
357 /// # struct S(A, B);
358 /// # };
359 /// # syn::parse2::<TupleStruct>(input).unwrap();
360 /// # }
361 /// ```
David Tolnay577d0332018-08-25 21:45:24 -0400362 pub fn parse_terminated<T, P: Parse>(
363 &self,
364 parser: fn(ParseStream) -> Result<T>,
365 ) -> Result<Punctuated<T, P>> {
David Tolnayd0f80212018-08-30 18:32:14 -0700366 Punctuated::parse_terminated_with(self, parser)
David Tolnay577d0332018-08-25 21:45:24 -0400367 }
368
David Tolnay725e1c62018-09-01 12:07:25 -0700369 /// Returns whether there are tokens remaining in this stream.
370 ///
371 /// This method returns true at the end of the content of a set of
372 /// delimiters, as well as at the very end of the complete macro input.
David Tolnaycce6b5f2018-09-01 14:24:46 -0700373 ///
374 /// # Example
375 ///
376 /// ```rust
377 /// # extern crate syn;
378 /// #
379 /// use syn::{braced, token, Ident, Item, Token};
380 /// use syn::parse::{Parse, ParseStream, Result};
381 ///
382 /// // Parses a Rust `mod m { ... }` containing zero or more items.
383 /// struct Mod {
384 /// mod_token: Token![mod],
385 /// name: Ident,
386 /// brace_token: token::Brace,
387 /// items: Vec<Item>,
388 /// }
389 ///
390 /// impl Parse for Mod {
391 /// fn parse(input: ParseStream) -> Result<Self> {
392 /// let content;
393 /// Ok(Mod {
394 /// mod_token: input.parse()?,
395 /// name: input.parse()?,
396 /// brace_token: braced!(content in input),
397 /// items: {
398 /// let mut items = Vec::new();
399 /// while !content.is_empty() {
400 /// items.push(content.parse()?);
401 /// }
402 /// items
403 /// },
404 /// })
405 /// }
406 /// }
407 /// #
408 /// # fn main() {}
David Tolnayf5d30452018-09-01 02:29:04 -0700409 pub fn is_empty(&self) -> bool {
410 self.cursor().eof()
411 }
412
David Tolnay725e1c62018-09-01 12:07:25 -0700413 /// Constructs a helper for peeking at the next token in this stream and
414 /// building an error message if it is not one of a set of expected tokens.
David Tolnay2c77e772018-09-01 14:18:46 -0700415 ///
416 /// # Example
417 ///
418 /// ```
419 /// # extern crate syn;
420 /// #
421 /// use syn::{ConstParam, Ident, Lifetime, LifetimeDef, Token, TypeParam};
422 /// use syn::parse::{Parse, ParseStream, Result};
423 ///
424 /// // A generic parameter, a single one of the comma-separated elements inside
425 /// // angle brackets in:
426 /// //
427 /// // fn f<T: Clone, 'a, 'b: 'a, const N: usize>() { ... }
428 /// //
429 /// // On invalid input, lookahead gives us a reasonable error message.
430 /// //
431 /// // error: expected one of: identifier, lifetime, `const`
432 /// // |
433 /// // 5 | fn f<!Sized>() {}
434 /// // | ^
435 /// enum GenericParam {
436 /// Type(TypeParam),
437 /// Lifetime(LifetimeDef),
438 /// Const(ConstParam),
439 /// }
440 ///
441 /// impl Parse for GenericParam {
442 /// fn parse(input: ParseStream) -> Result<Self> {
443 /// let lookahead = input.lookahead1();
444 /// if lookahead.peek(Ident) {
445 /// input.parse().map(GenericParam::Type)
446 /// } else if lookahead.peek(Lifetime) {
447 /// input.parse().map(GenericParam::Lifetime)
448 /// } else if lookahead.peek(Token![const]) {
449 /// input.parse().map(GenericParam::Const)
450 /// } else {
451 /// Err(lookahead.error())
452 /// }
453 /// }
454 /// }
455 /// #
456 /// # fn main() {}
457 /// ```
David Tolnayf5d30452018-09-01 02:29:04 -0700458 pub fn lookahead1(&self) -> Lookahead1<'a> {
459 lookahead::new(self.scope, self.cursor())
460 }
461
David Tolnay725e1c62018-09-01 12:07:25 -0700462 /// Forks a parse stream so that parsing tokens out of either the original
463 /// or the fork does not advance the position of the other.
464 ///
465 /// # Performance
466 ///
467 /// Forking a parse stream is a cheap fixed amount of work and does not
468 /// involve copying token buffers. Where you might hit performance problems
469 /// is if your macro ends up parsing a large amount of content more than
470 /// once.
471 ///
472 /// ```
473 /// # use syn::Expr;
474 /// # use syn::parse::{ParseStream, Result};
475 /// #
476 /// # fn bad(input: ParseStream) -> Result<Expr> {
477 /// // Do not do this.
478 /// if input.fork().parse::<Expr>().is_ok() {
479 /// return input.parse::<Expr>();
480 /// }
481 /// # unimplemented!()
482 /// # }
483 /// ```
484 ///
485 /// As a rule, avoid parsing an unbounded amount of tokens out of a forked
486 /// parse stream. Only use a fork when the amount of work performed against
487 /// the fork is small and bounded.
488 ///
David Tolnayec149b02018-09-01 14:17:28 -0700489 /// For a lower level but occasionally more performant way to perform
David Tolnay725e1c62018-09-01 12:07:25 -0700490 /// speculative parsing, consider using [`ParseStream::step`] instead.
491 ///
492 /// [`ParseStream::step`]: #method.step
David Tolnayec149b02018-09-01 14:17:28 -0700493 ///
494 /// # Example
495 ///
496 /// The parse implementation shown here parses possibly restricted `pub`
497 /// visibilities.
498 ///
499 /// - `pub`
500 /// - `pub(crate)`
501 /// - `pub(self)`
502 /// - `pub(super)`
503 /// - `pub(in some::path)`
504 ///
505 /// To handle the case of visibilities inside of tuple structs, the parser
506 /// needs to distinguish parentheses that specify visibility restrictions
507 /// from parentheses that form part of a tuple type.
508 ///
509 /// ```
510 /// # struct A;
511 /// # struct B;
512 /// # struct C;
513 /// #
514 /// struct S(pub(crate) A, pub (B, C));
515 /// ```
516 ///
517 /// In this example input the first tuple struct element of `S` has
518 /// `pub(crate)` visibility while the second tuple struct element has `pub`
519 /// visibility; the parentheses around `(B, C)` are part of the type rather
520 /// than part of a visibility restriction.
521 ///
522 /// The parser uses a forked parse stream to check the first token inside of
523 /// parentheses after the `pub` keyword. This is a small bounded amount of
524 /// work performed against the forked parse stream.
525 ///
526 /// ```
527 /// # extern crate syn;
528 /// #
529 /// use syn::{parenthesized, token, Ident, Path, Token};
530 /// use syn::ext::IdentExt;
531 /// use syn::parse::{Parse, ParseStream, Result};
532 ///
533 /// struct PubVisibility {
534 /// pub_token: Token![pub],
535 /// restricted: Option<Restricted>,
536 /// }
537 ///
538 /// struct Restricted {
539 /// paren_token: token::Paren,
540 /// in_token: Option<Token![in]>,
541 /// path: Path,
542 /// }
543 ///
544 /// impl Parse for PubVisibility {
545 /// fn parse(input: ParseStream) -> Result<Self> {
546 /// let pub_token: Token![pub] = input.parse()?;
547 ///
548 /// if input.peek(token::Paren) {
549 /// let ahead = input.fork();
550 /// let mut content;
551 /// parenthesized!(content in ahead);
552 ///
553 /// if content.peek(Token![crate])
554 /// || content.peek(Token![self])
555 /// || content.peek(Token![super])
556 /// {
557 /// return Ok(PubVisibility {
558 /// pub_token: pub_token,
559 /// restricted: Some(Restricted {
560 /// paren_token: parenthesized!(content in input),
561 /// in_token: None,
562 /// path: Path::from(content.call(Ident::parse_any)?),
563 /// }),
564 /// });
565 /// } else if content.peek(Token![in]) {
566 /// return Ok(PubVisibility {
567 /// pub_token: pub_token,
568 /// restricted: Some(Restricted {
569 /// paren_token: parenthesized!(content in input),
570 /// in_token: Some(content.parse()?),
571 /// path: content.call(Path::parse_mod_style)?,
572 /// }),
573 /// });
574 /// }
575 /// }
576 ///
577 /// Ok(PubVisibility {
578 /// pub_token: pub_token,
579 /// restricted: None,
580 /// })
581 /// }
582 /// }
583 /// #
584 /// # fn main() {}
585 /// ```
David Tolnayb77c8b62018-08-25 16:39:41 -0400586 pub fn fork(&self) -> Self {
David Tolnay6456a9d2018-08-26 08:11:18 -0400587 ParseBuffer {
588 scope: self.scope,
589 cell: self.cell.clone(),
590 marker: PhantomData,
591 // Not the parent's unexpected. Nothing cares whether the clone
592 // parses all the way.
593 unexpected: Rc::new(Cell::new(None)),
594 }
David Tolnayb77c8b62018-08-25 16:39:41 -0400595 }
596
David Tolnay725e1c62018-09-01 12:07:25 -0700597 /// Triggers an error at the current position of the parse stream.
David Tolnay23fce0b2018-09-01 13:50:31 -0700598 ///
599 /// # Example
600 ///
601 /// ```
602 /// # extern crate syn;
603 /// #
604 /// use syn::{Expr, Token};
605 /// use syn::parse::{Parse, ParseStream, Result};
606 ///
607 /// // Some kind of loop: `while` or `for` or `loop`.
608 /// struct Loop {
609 /// expr: Expr,
610 /// }
611 ///
612 /// impl Parse for Loop {
613 /// fn parse(input: ParseStream) -> Result<Self> {
614 /// if input.peek(Token![while])
615 /// || input.peek(Token![for])
616 /// || input.peek(Token![loop])
617 /// {
618 /// Ok(Loop {
619 /// expr: input.parse()?,
620 /// })
621 /// } else {
622 /// Err(input.error("expected some kind of loop"))
623 /// }
624 /// }
625 /// }
626 /// ```
David Tolnay4fb71232018-08-25 23:14:50 -0400627 pub fn error<T: Display>(&self, message: T) -> Error {
628 error::new_at(self.scope, self.cursor(), message)
629 }
630
David Tolnay725e1c62018-09-01 12:07:25 -0700631 /// Speculatively parses tokens from this parse stream, advancing the
632 /// position of this stream only if parsing succeeds.
David Tolnay9bd34392018-09-01 13:19:53 -0700633 ///
David Tolnayad1d1d22018-09-01 13:34:43 -0700634 /// This is a powerful low-level API used for defining the `Parse` impls of
635 /// the basic built-in token types. It is not something that will be used
636 /// widely outside of the Syn codebase.
637 ///
David Tolnay9bd34392018-09-01 13:19:53 -0700638 /// # Example
639 ///
640 /// ```
641 /// # extern crate proc_macro2;
642 /// # extern crate syn;
643 /// #
644 /// use proc_macro2::TokenTree;
645 /// use syn::parse::{ParseStream, Result};
646 ///
647 /// // This function advances the stream past the next occurrence of `@`. If
648 /// // no `@` is present in the stream, the stream position is unchanged and
649 /// // an error is returned.
650 /// fn skip_past_next_at(input: ParseStream) -> Result<()> {
651 /// input.step(|cursor| {
652 /// let mut rest = *cursor;
653 /// while let Some((tt, next)) = cursor.token_tree() {
654 /// match tt {
655 /// TokenTree::Punct(ref punct) if punct.as_char() == '@' => {
656 /// return Ok(((), next));
657 /// }
658 /// _ => rest = next,
659 /// }
660 /// }
661 /// Err(cursor.error("no `@` was found after this point"))
662 /// })
663 /// }
664 /// #
665 /// # fn main() {}
666 /// ```
David Tolnayb50c65a2018-08-30 21:14:57 -0700667 pub fn step<F, R>(&self, function: F) -> Result<R>
David Tolnay18c754c2018-08-21 23:26:58 -0400668 where
669 F: for<'c> FnOnce(StepCursor<'c, 'a>) -> Result<(R, Cursor<'c>)>,
670 {
David Tolnay6b65f852018-09-01 11:56:25 -0700671 let (node, rest) = function(StepCursor {
David Tolnay18c754c2018-08-21 23:26:58 -0400672 scope: self.scope,
673 cursor: self.cell.get(),
674 marker: PhantomData,
David Tolnay6b65f852018-09-01 11:56:25 -0700675 })?;
676 self.cell.set(rest);
677 Ok(node)
David Tolnay18c754c2018-08-21 23:26:58 -0400678 }
David Tolnayeafc8052018-08-25 16:33:53 -0400679
David Tolnay725e1c62018-09-01 12:07:25 -0700680 /// Provides low-level access to the token representation underlying this
681 /// parse stream.
682 ///
683 /// Cursors are immutable so no operations you perform against the cursor
684 /// will affect the state of this parse stream.
David Tolnayf5d30452018-09-01 02:29:04 -0700685 pub fn cursor(&self) -> Cursor<'a> {
686 self.cell.get()
687 }
688
David Tolnay94f06632018-08-31 10:17:17 -0700689 fn check_unexpected(&self) -> Result<()> {
David Tolnayeafc8052018-08-25 16:33:53 -0400690 match self.unexpected.get() {
691 Some(span) => Err(Error::new(span, "unexpected token")),
692 None => Ok(()),
693 }
694 }
David Tolnay18c754c2018-08-21 23:26:58 -0400695}
696
David Tolnaya7d69fc2018-08-26 13:30:24 -0400697impl<T: Parse> Parse for Box<T> {
698 fn parse(input: ParseStream) -> Result<Self> {
699 input.parse().map(Box::new)
700 }
701}
702
David Tolnay4fb71232018-08-25 23:14:50 -0400703impl<T: Parse + Token> Parse for Option<T> {
David Tolnay18c754c2018-08-21 23:26:58 -0400704 fn parse(input: ParseStream) -> Result<Self> {
David Tolnay00f81fd2018-09-01 10:50:12 -0700705 if T::peek(input.cursor()) {
David Tolnay4fb71232018-08-25 23:14:50 -0400706 Ok(Some(input.parse()?))
707 } else {
708 Ok(None)
David Tolnay18c754c2018-08-21 23:26:58 -0400709 }
David Tolnay18c754c2018-08-21 23:26:58 -0400710 }
711}
David Tolnay4ac232d2018-08-31 10:18:03 -0700712
David Tolnay80a914f2018-08-30 23:49:53 -0700713impl Parse for TokenStream {
714 fn parse(input: ParseStream) -> Result<Self> {
715 input.step(|cursor| Ok((cursor.token_stream(), Cursor::empty())))
716 }
717}
718
719impl Parse for TokenTree {
720 fn parse(input: ParseStream) -> Result<Self> {
721 input.step(|cursor| match cursor.token_tree() {
722 Some((tt, rest)) => Ok((tt, rest)),
723 None => Err(cursor.error("expected token tree")),
724 })
725 }
726}
727
728impl Parse for Group {
729 fn parse(input: ParseStream) -> Result<Self> {
730 input.step(|cursor| {
731 for delim in &[Delimiter::Parenthesis, Delimiter::Brace, Delimiter::Bracket] {
732 if let Some((inside, span, rest)) = cursor.group(*delim) {
733 let mut group = Group::new(*delim, inside.token_stream());
734 group.set_span(span);
735 return Ok((group, rest));
736 }
737 }
738 Err(cursor.error("expected group token"))
739 })
740 }
741}
742
743impl Parse for Punct {
744 fn parse(input: ParseStream) -> Result<Self> {
745 input.step(|cursor| match cursor.punct() {
746 Some((punct, rest)) => Ok((punct, rest)),
747 None => Err(cursor.error("expected punctuation token")),
748 })
749 }
750}
751
752impl Parse for Literal {
753 fn parse(input: ParseStream) -> Result<Self> {
754 input.step(|cursor| match cursor.literal() {
755 Some((literal, rest)) => Ok((literal, rest)),
756 None => Err(cursor.error("expected literal token")),
757 })
758 }
759}
760
761/// Parser that can parse Rust tokens into a particular syntax tree node.
762///
763/// Refer to the [module documentation] for details about parsing in Syn.
764///
765/// [module documentation]: index.html
766///
767/// *This trait is available if Syn is built with the `"parsing"` feature.*
768pub trait Parser: Sized {
769 type Output;
770
771 /// Parse a proc-macro2 token stream into the chosen syntax tree node.
772 fn parse2(self, tokens: TokenStream) -> Result<Self::Output>;
773
774 /// Parse tokens of source code into the chosen syntax tree node.
775 ///
776 /// *This method is available if Syn is built with both the `"parsing"` and
777 /// `"proc-macro"` features.*
778 #[cfg(all(
779 not(all(target_arch = "wasm32", target_os = "unknown")),
780 feature = "proc-macro"
781 ))]
782 fn parse(self, tokens: proc_macro::TokenStream) -> Result<Self::Output> {
783 self.parse2(proc_macro2::TokenStream::from(tokens))
784 }
785
786 /// Parse a string of Rust code into the chosen syntax tree node.
787 ///
788 /// # Hygiene
789 ///
790 /// Every span in the resulting syntax tree will be set to resolve at the
791 /// macro call site.
792 fn parse_str(self, s: &str) -> Result<Self::Output> {
793 self.parse2(proc_macro2::TokenStream::from_str(s)?)
794 }
795}
796
David Tolnay7b07aa12018-09-01 11:41:12 -0700797fn tokens_to_parse_buffer(tokens: &TokenBuffer) -> ParseBuffer {
798 let scope = Span::call_site();
799 let cursor = tokens.begin();
800 let unexpected = Rc::new(Cell::new(None));
801 private::new_parse_buffer(scope, cursor, unexpected)
802}
803
David Tolnay80a914f2018-08-30 23:49:53 -0700804impl<F, T> Parser for F
805where
806 F: FnOnce(ParseStream) -> Result<T>,
807{
808 type Output = T;
809
810 fn parse2(self, tokens: TokenStream) -> Result<T> {
811 let buf = TokenBuffer::new2(tokens);
David Tolnay7b07aa12018-09-01 11:41:12 -0700812 let state = tokens_to_parse_buffer(&buf);
David Tolnay80a914f2018-08-30 23:49:53 -0700813 let node = self(&state)?;
814 state.check_unexpected()?;
815 if state.is_empty() {
816 Ok(node)
817 } else {
818 Err(state.error("unexpected token"))
819 }
820 }
821}