pub(super) mod opt;
use crate::err::Error;
use crate::value::serde::ser;
use crate::Output;
use serde::ser::Error as _;
use serde::ser::Impossible;
use serde::ser::Serialize;
pub(super) struct Serializer;
impl ser::Serializer for Serializer {
type Ok = Output;
type Error = Error;
type SerializeSeq = Impossible<Output, Error>;
type SerializeTuple = Impossible<Output, Error>;
type SerializeTupleStruct = Impossible<Output, Error>;
type SerializeTupleVariant = Impossible<Output, Error>;
type SerializeMap = Impossible<Output, Error>;
type SerializeStruct = Impossible<Output, Error>;
type SerializeStructVariant = Impossible<Output, Error>;
const EXPECTED: &'static str = "an enum `Output`";
fn serialize_unit_variant(
self,
name: &'static str,
_variant_index: u32,
variant: &'static str,
) -> Result<Self::Ok, Error> {
match variant {
"None" => Ok(Output::None),
"Null" => Ok(Output::Null),
"Diff" => Ok(Output::Diff),
"After" => Ok(Output::After),
"Before" => Ok(Output::Before),
variant => Err(Error::custom(format!("unexpected unit variant `{name}::{variant}`"))),
}
}
#[inline]
fn serialize_newtype_variant<T>(
self,
name: &'static str,
_variant_index: u32,
variant: &'static str,
value: &T,
) -> Result<Self::Ok, Error>
where
T: ?Sized + Serialize,
{
match variant {
"Fields" => Ok(Output::Fields(value.serialize(ser::fields::Serializer.wrap())?)),
variant => {
Err(Error::custom(format!("unexpected newtype variant `{name}::{variant}`")))
}
}
}
}
#[cfg(test)]
mod tests {
use super::*;
use ser::Serializer as _;
use serde::Serialize;
#[test]
fn none() {
let output = Output::None;
let serialized = output.serialize(Serializer.wrap()).unwrap();
assert_eq!(output, serialized);
}
#[test]
fn null() {
let output = Output::Null;
let serialized = output.serialize(Serializer.wrap()).unwrap();
assert_eq!(output, serialized);
}
#[test]
fn diff() {
let output = Output::Diff;
let serialized = output.serialize(Serializer.wrap()).unwrap();
assert_eq!(output, serialized);
}
#[test]
fn after() {
let output = Output::After;
let serialized = output.serialize(Serializer.wrap()).unwrap();
assert_eq!(output, serialized);
}
#[test]
fn before() {
let output = Output::Before;
let serialized = output.serialize(Serializer.wrap()).unwrap();
assert_eq!(output, serialized);
}
#[test]
fn fields() {
let output = Output::Fields(Default::default());
let serialized = output.serialize(Serializer.wrap()).unwrap();
assert_eq!(output, serialized);
}
}