use crate::Error;
use serde::ser::Impossible;
pub(crate) struct MapKeySerializer;
const fn key_must_be_a_string() -> Error {
Error::KeyMustBeAString
}
impl serde::Serializer for MapKeySerializer {
type Ok = String;
type Error = Error;
type SerializeSeq = Impossible<Self::Ok, Self::Error>;
type SerializeTuple = Impossible<Self::Ok, Self::Error>;
type SerializeTupleStruct = Impossible<Self::Ok, Self::Error>;
type SerializeTupleVariant = Impossible<Self::Ok, Self::Error>;
type SerializeMap = Impossible<Self::Ok, Self::Error>;
type SerializeStruct = Impossible<Self::Ok, Self::Error>;
type SerializeStructVariant = Impossible<Self::Ok, Self::Error>;
fn serialize_unit_variant(
self,
_name: &'static str,
_variant_index: u32,
variant: &'static str,
) -> Result<String, Error> {
Ok(variant.to_owned())
}
fn serialize_newtype_struct<T>(self, _name: &'static str, value: &T) -> Result<String, Error>
where
T: ?Sized + serde::Serialize,
{
value.serialize(self)
}
fn serialize_bool(self, _value: bool) -> Result<String, Error> {
Err(key_must_be_a_string())
}
fn serialize_i8(self, value: i8) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_i16(self, value: i16) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_i32(self, value: i32) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_i64(self, value: i64) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_u8(self, value: u8) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_u16(self, value: u16) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_u32(self, value: u32) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_u64(self, value: u64) -> Result<String, Error> {
Ok(itoa::Buffer::new().format(value).to_owned())
}
fn serialize_f32(self, _value: f32) -> Result<String, Error> {
Err(key_must_be_a_string())
}
fn serialize_f64(self, _value: f64) -> Result<String, Error> {
Err(key_must_be_a_string())
}
fn serialize_char(self, value: char) -> Result<String, Error> {
Ok(String::from(value))
}
fn serialize_str(self, value: &str) -> Result<String, Error> {
Ok(value.to_owned())
}
fn serialize_bytes(self, _value: &[u8]) -> Result<String, Error> {
Err(key_must_be_a_string())
}
fn serialize_unit(self) -> Result<String, Error> {
Err(key_must_be_a_string())
}
fn serialize_unit_struct(self, _name: &'static str) -> Result<String, Error> {
Err(key_must_be_a_string())
}
fn serialize_newtype_variant<T>(
self,
_name: &'static str,
_variant_index: u32,
_variant: &'static str,
_value: &T,
) -> Result<String, Error>
where
T: ?Sized + serde::Serialize,
{
Err(key_must_be_a_string())
}
fn serialize_none(self) -> Result<String, Error> {
Err(key_must_be_a_string())
}
fn serialize_some<T>(self, _value: &T) -> Result<String, Error>
where
T: ?Sized + serde::Serialize,
{
Err(key_must_be_a_string())
}
fn serialize_seq(self, _len: Option<usize>) -> Result<Self::SerializeSeq, Error> {
Err(key_must_be_a_string())
}
fn serialize_tuple(self, _len: usize) -> Result<Self::SerializeTuple, Error> {
Err(key_must_be_a_string())
}
fn serialize_tuple_struct(
self,
_name: &'static str,
_len: usize,
) -> Result<Self::SerializeTupleStruct, Error> {
Err(key_must_be_a_string())
}
fn serialize_tuple_variant(
self,
_name: &'static str,
_variant_index: u32,
_variant: &'static str,
_len: usize,
) -> Result<Self::SerializeTupleVariant, Error> {
Err(key_must_be_a_string())
}
fn serialize_map(self, _len: Option<usize>) -> Result<Self::SerializeMap, Error> {
Err(key_must_be_a_string())
}
fn serialize_struct(
self,
_name: &'static str,
_len: usize,
) -> Result<Self::SerializeStruct, Error> {
Err(key_must_be_a_string())
}
fn serialize_struct_variant(
self,
_name: &'static str,
_variant_index: u32,
_variant: &'static str,
_len: usize,
) -> Result<Self::SerializeStructVariant, Error> {
Err(key_must_be_a_string())
}
fn collect_str<T>(self, value: &T) -> Result<String, Error>
where
T: ?Sized + std::fmt::Display,
{
Ok(value.to_string())
}
}