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https://github.com/cloud-hypervisor/cloud-hypervisor.git
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d5f5648b37
We use cargo vendor to generate a .cargo/config file and the vendor directory. Vendoring allows us to lock our dependencies and to modify them easily from the top level Cargo.toml. We vendor all dependencies, including the crates.io ones, which allows for network isolated builds. Signed-off-by: Samuel Ortiz <sameo@linux.intel.com>
222 lines
7.4 KiB
Rust
222 lines
7.4 KiB
Rust
use std;
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use std::fmt::{self, Debug, Display};
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use std::iter::FromIterator;
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use proc_macro2::{
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Delimiter, Group, Ident, LexError, Literal, Punct, Spacing, Span, TokenStream, TokenTree,
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};
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#[cfg(feature = "printing")]
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use quote::ToTokens;
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#[cfg(feature = "parsing")]
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use buffer::Cursor;
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#[cfg(all(procmacro2_semver_exempt, feature = "parsing"))]
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use private;
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use thread::ThreadBound;
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/// The result of a Syn parser.
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pub type Result<T> = std::result::Result<T, Error>;
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/// Error returned when a Syn parser cannot parse the input tokens.
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///
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/// Refer to the [module documentation] for details about parsing in Syn.
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///
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/// [module documentation]: index.html
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///
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/// *This type is available if Syn is built with the `"parsing"` feature.*
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pub struct Error {
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// Span is implemented as an index into a thread-local interner to keep the
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// size small. It is not safe to access from a different thread. We want
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// errors to be Send and Sync to play nicely with the Failure crate, so pin
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// the span we're given to its original thread and assume it is
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// Span::call_site if accessed from any other thread.
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start_span: ThreadBound<Span>,
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end_span: ThreadBound<Span>,
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message: String,
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}
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#[cfg(test)]
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struct _Test
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where
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Error: Send + Sync;
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impl Error {
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/// Usually the [`ParseStream::error`] method will be used instead, which
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/// automatically uses the correct span from the current position of the
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/// parse stream.
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///
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/// Use `Error::new` when the error needs to be triggered on some span other
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/// than where the parse stream is currently positioned.
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///
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/// [`ParseStream::error`]: struct.ParseBuffer.html#method.error
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///
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/// # Example
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///
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/// ```edition2018
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/// use syn::{Error, Ident, LitStr, Result, Token};
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/// use syn::parse::ParseStream;
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///
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/// // Parses input that looks like `name = "string"` where the key must be
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/// // the identifier `name` and the value may be any string literal.
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/// // Returns the string literal.
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/// fn parse_name(input: ParseStream) -> Result<LitStr> {
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/// let name_token: Ident = input.parse()?;
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/// if name_token != "name" {
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/// // Trigger an error not on the current position of the stream,
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/// // but on the position of the unexpected identifier.
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/// return Err(Error::new(name_token.span(), "expected `name`"));
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/// }
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/// input.parse::<Token![=]>()?;
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/// let s: LitStr = input.parse()?;
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/// Ok(s)
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/// }
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/// ```
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pub fn new<T: Display>(span: Span, message: T) -> Self {
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Error {
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start_span: ThreadBound::new(span),
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end_span: ThreadBound::new(span),
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message: message.to_string(),
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}
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}
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/// Creates an error with the specified message spanning the given syntax
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/// tree node.
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///
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/// Unlike the `Error::new` constructor, this constructor takes an argument
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/// `tokens` which is a syntax tree node. This allows the resulting `Error`
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/// to attempt to span all tokens inside of `tokens`. While you would
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/// typically be able to use the `Spanned` trait with the above `Error::new`
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/// constructor, implementation limitations today mean that
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/// `Error::new_spanned` may provide a higher-quality error message on
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/// stable Rust.
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///
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/// When in doubt it's recommended to stick to `Error::new` (or
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/// `ParseStream::error`)!
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#[cfg(feature = "printing")]
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pub fn new_spanned<T: ToTokens, U: Display>(tokens: T, message: U) -> Self {
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let mut iter = tokens.into_token_stream().into_iter();
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let start = iter.next().map_or_else(Span::call_site, |t| t.span());
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let end = iter.last().map_or(start, |t| t.span());
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Error {
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start_span: ThreadBound::new(start),
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end_span: ThreadBound::new(end),
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message: message.to_string(),
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}
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}
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/// The source location of the error.
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///
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/// Spans are not thread-safe so this function returns `Span::call_site()`
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/// if called from a different thread than the one on which the `Error` was
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/// originally created.
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pub fn span(&self) -> Span {
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let start = match self.start_span.get() {
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Some(span) => *span,
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None => return Span::call_site(),
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};
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#[cfg(procmacro2_semver_exempt)]
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{
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let end = match self.end_span.get() {
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Some(span) => *span,
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None => return Span::call_site(),
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};
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start.join(end).unwrap_or(start)
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}
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#[cfg(not(procmacro2_semver_exempt))]
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{
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start
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}
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}
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/// Render the error as an invocation of [`compile_error!`].
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///
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/// The [`parse_macro_input!`] macro provides a convenient way to invoke
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/// this method correctly in a procedural macro.
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///
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/// [`compile_error!`]: https://doc.rust-lang.org/std/macro.compile_error.html
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/// [`parse_macro_input!`]: ../macro.parse_macro_input.html
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pub fn to_compile_error(&self) -> TokenStream {
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let start = self
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.start_span
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.get()
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.cloned()
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.unwrap_or_else(Span::call_site);
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let end = self.end_span.get().cloned().unwrap_or_else(Span::call_site);
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// compile_error!($message)
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TokenStream::from_iter(vec![
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TokenTree::Ident(Ident::new("compile_error", start)),
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TokenTree::Punct({
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let mut punct = Punct::new('!', Spacing::Alone);
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punct.set_span(start);
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punct
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}),
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TokenTree::Group({
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let mut group = Group::new(Delimiter::Brace, {
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TokenStream::from_iter(vec![TokenTree::Literal({
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let mut string = Literal::string(&self.message);
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string.set_span(end);
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string
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})])
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});
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group.set_span(end);
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group
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}),
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])
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}
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}
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#[cfg(feature = "parsing")]
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pub fn new_at<T: Display>(scope: Span, cursor: Cursor, message: T) -> Error {
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if cursor.eof() {
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Error::new(scope, format!("unexpected end of input, {}", message))
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} else {
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#[cfg(procmacro2_semver_exempt)]
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let span = private::open_span_of_group(cursor);
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#[cfg(not(procmacro2_semver_exempt))]
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let span = cursor.span();
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Error::new(span, message)
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}
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}
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impl Debug for Error {
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fn fmt(&self, formatter: &mut fmt::Formatter) -> fmt::Result {
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formatter.debug_tuple("Error").field(&self.message).finish()
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}
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}
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impl Display for Error {
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fn fmt(&self, formatter: &mut fmt::Formatter) -> fmt::Result {
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formatter.write_str(&self.message)
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}
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}
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impl Clone for Error {
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fn clone(&self) -> Self {
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let start = self
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.start_span
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.get()
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.cloned()
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.unwrap_or_else(Span::call_site);
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let end = self.end_span.get().cloned().unwrap_or_else(Span::call_site);
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Error {
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start_span: ThreadBound::new(start),
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end_span: ThreadBound::new(end),
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message: self.message.clone(),
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}
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}
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}
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impl std::error::Error for Error {
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fn description(&self) -> &str {
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"parse error"
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}
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}
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impl From<LexError> for Error {
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fn from(err: LexError) -> Self {
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Error::new(Span::call_site(), format!("{:?}", err))
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}
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}
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