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use ;
use Deserializer;
use Serializer;
use Token;
use Debug;
/// Runs both `assert_ser_tokens` and `assert_de_tokens`.
///
/// ```edition2021
/// # use serde_derive::{Deserialize, Serialize};
/// # use serde_test::{assert_tokens, Token};
/// #
/// #[derive(Serialize, Deserialize, PartialEq, Debug)]
/// struct S {
/// a: u8,
/// b: u8,
/// }
///
/// let s = S { a: 0, b: 0 };
/// assert_tokens(
/// &s,
/// &[
/// Token::Struct { name: "S", len: 2 },
/// Token::Str("a"),
/// Token::U8(0),
/// Token::Str("b"),
/// Token::U8(0),
/// Token::StructEnd,
/// ],
/// );
/// ```
/// Asserts that `value` serializes to the given `tokens`.
///
/// ```edition2021
/// # use serde_derive::{Deserialize, Serialize};
/// # use serde_test::{assert_ser_tokens, Token};
/// #
/// #[derive(Serialize, Deserialize, PartialEq, Debug)]
/// struct S {
/// a: u8,
/// b: u8,
/// }
///
/// let s = S { a: 0, b: 0 };
/// assert_ser_tokens(
/// &s,
/// &[
/// Token::Struct { name: "S", len: 2 },
/// Token::Str("a"),
/// Token::U8(0),
/// Token::Str("b"),
/// Token::U8(0),
/// Token::StructEnd,
/// ],
/// );
/// ```
Sized>
where
T: Serialize,
/// Asserts that `value` serializes to the given `tokens`, and then yields
/// `error`.
///
/// ```edition2021
/// use serde_derive::Serialize;
/// use serde_test::{assert_ser_tokens_error, Token};
/// use std::sync::{Arc, Mutex};
/// use std::thread;
///
/// #[derive(Serialize)]
/// struct Example {
/// lock: Arc<Mutex<u32>>,
/// }
///
/// fn main() {
/// let example = Example {
/// lock: Arc::new(Mutex::new(0)),
/// };
/// let lock = example.lock.clone();
///
/// let thread = thread::spawn(move || {
/// // This thread will acquire the mutex first, unwrapping the result
/// // of `lock` because the lock has not been poisoned.
/// let _guard = lock.lock().unwrap();
///
/// // This panic while holding the lock (`_guard` is in scope) will
/// // poison the mutex.
/// panic!()
/// });
/// thread.join();
///
/// let expected = &[
/// Token::Struct {
/// name: "Example",
/// len: 1,
/// },
/// Token::Str("lock"),
/// ];
/// let error = "lock poison error while serializing";
/// assert_ser_tokens_error(&example, expected, error);
/// }
/// ```
Sized>
where
T: Serialize,
/// Asserts that the given `tokens` deserialize into `value`.
///
/// ```edition2021
/// # use serde_derive::{Deserialize, Serialize};
/// # use serde_test::{assert_de_tokens, Token};
/// #
/// #[derive(Serialize, Deserialize, PartialEq, Debug)]
/// struct S {
/// a: u8,
/// b: u8,
/// }
///
/// let s = S { a: 0, b: 0 };
/// assert_de_tokens(
/// &s,
/// &[
/// Token::Struct { name: "S", len: 2 },
/// Token::Str("a"),
/// Token::U8(0),
/// Token::Str("b"),
/// Token::U8(0),
/// Token::StructEnd,
/// ],
/// );
/// ```
/// Asserts that the given `tokens` yield `error` when deserializing.
///
/// ```edition2021
/// # use serde_derive::{Deserialize, Serialize};
/// # use serde_test::{assert_de_tokens_error, Token};
/// #
/// #[derive(Serialize, Deserialize, PartialEq, Debug)]
/// #[serde(deny_unknown_fields)]
/// struct S {
/// a: u8,
/// b: u8,
/// }
///
/// assert_de_tokens_error::<S>(
/// &[
/// Token::Struct { name: "S", len: 2 },
/// Token::Str("x"),
/// ],
/// "unknown field `x`, expected `a` or `b`",
/// );
/// ```