#![allow(deprecated)]
use super::DecodeError as SerdeDecodeError;
use super::de_borrowed::borrow_decode_from_slice;
use crate::config::Config;
use crate::de::Decode;
use crate::de::Decoder;
use crate::de::DecoderImpl;
use crate::de::read::Reader;
use crate::error::DecodeError;
use serde::de::DeserializeOwned;
use serde::de::DeserializeSeed;
use serde::de::Deserializer;
use serde::de::EnumAccess;
use serde::de::IntoDeserializer;
use serde::de::MapAccess;
use serde::de::SeqAccess;
use serde::de::VariantAccess;
use serde::de::Visitor;
#[cfg(feature = "std")]
use crate::features::IoReader;
pub struct OwnedSerdeDecoder<DE: Decoder> {
pub(crate) de: DE,
}
impl<DE: Decoder> OwnedSerdeDecoder<DE> {
pub fn as_deserializer<'a>(
&'a mut self
) -> impl for<'de> serde::Deserializer<'de, Error = DecodeError> + 'a {
SerdeDecoder { de: &mut self.de }
}
}
#[cfg(feature = "std")]
impl<'r, C: Config, R: std::io::Read> OwnedSerdeDecoder<DecoderImpl<IoReader<&'r mut R>, C, ()>> {
pub const fn from_std_read(
src: &'r mut R,
config: C,
) -> Self {
let reader = IoReader::new(src);
let decoder = DecoderImpl::new(reader, config, ());
Self { de: decoder }
}
}
impl<C: Config, R: Reader> OwnedSerdeDecoder<DecoderImpl<R, C, ()>> {
pub const fn from_reader(
reader: R,
config: C,
) -> Self {
let decoder = DecoderImpl::new(reader, config, ());
Self { de: decoder }
}
}
pub fn decode_from_slice<D, C>(
slice: &[u8],
config: C,
) -> Result<(D, usize), DecodeError>
where
D: DeserializeOwned,
C: Config,
{
borrow_decode_from_slice(slice, config)
}
#[cfg(feature = "std")]
#[cfg_attr(docsrs, doc(cfg(feature = "std")))]
pub fn decode_from_std_read<'r, D: DeserializeOwned, C: Config, R: std::io::Read>(
src: &'r mut R,
config: C,
) -> Result<D, DecodeError> {
let mut serde_decoder =
OwnedSerdeDecoder::<DecoderImpl<IoReader<&'r mut R>, C, ()>>::from_std_read(src, config);
D::deserialize(serde_decoder.as_deserializer())
}
pub fn decode_from_reader<D: DeserializeOwned, R: Reader, C: Config>(
reader: R,
config: C,
) -> Result<D, DecodeError> {
let mut serde_decoder = OwnedSerdeDecoder::<DecoderImpl<R, C, ()>>::from_reader(reader, config);
D::deserialize(serde_decoder.as_deserializer())
}
#[cfg(feature = "std")]
#[cfg_attr(docsrs, doc(cfg(feature = "std")))]
pub fn seed_decode_from_std_read<'de, 'r, D, C, R>(
seed: D,
src: &'r mut R,
config: C,
) -> Result<D::Value, DecodeError>
where
D: DeserializeSeed<'de>,
C: Config,
R: std::io::Read,
{
let mut serde_decoder =
OwnedSerdeDecoder::<DecoderImpl<IoReader<&'r mut R>, C, ()>>::from_std_read(src, config);
seed.deserialize(serde_decoder.as_deserializer())
}
pub(super) struct SerdeDecoder<'a, DE: Decoder> {
pub(super) de: &'a mut DE,
}
impl<'de, DE: Decoder> Deserializer<'de> for SerdeDecoder<'_, DE> {
type Error = DecodeError;
serde::serde_if_integer128! {
fn deserialize_i128<V>(mut self, visitor: V) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_i128(Decode::decode(&mut self.de)?)
}
}
serde::serde_if_integer128! {
fn deserialize_u128<V>(mut self, visitor: V) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_u128(Decode::decode(&mut self.de)?)
}
}
fn deserialize_any<V>(
self,
_: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
Err(SerdeDecodeError::AnyNotSupported.into())
}
fn deserialize_bool<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_bool(Decode::decode(&mut self.de)?)
}
fn deserialize_i8<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_i8(Decode::decode(&mut self.de)?)
}
fn deserialize_i16<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_i16(Decode::decode(&mut self.de)?)
}
fn deserialize_i32<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_i32(Decode::decode(&mut self.de)?)
}
fn deserialize_i64<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_i64(Decode::decode(&mut self.de)?)
}
fn deserialize_u8<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_u8(Decode::decode(&mut self.de)?)
}
fn deserialize_u16<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_u16(Decode::decode(&mut self.de)?)
}
fn deserialize_u32<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_u32(Decode::decode(&mut self.de)?)
}
fn deserialize_u64<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_u64(Decode::decode(&mut self.de)?)
}
fn deserialize_f32<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_f32(Decode::decode(&mut self.de)?)
}
fn deserialize_f64<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_f64(Decode::decode(&mut self.de)?)
}
fn deserialize_char<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_char(Decode::decode(&mut self.de)?)
}
#[cfg(feature = "alloc")]
fn deserialize_str<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_string(Decode::decode(&mut self.de)?)
}
#[cfg(not(feature = "alloc"))]
fn deserialize_str<V>(
self,
_: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
Err(SerdeDecodeError::CannotBorrowOwnedData.into())
}
#[cfg(feature = "alloc")]
fn deserialize_string<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_string(Decode::decode(&mut self.de)?)
}
#[cfg(not(feature = "alloc"))]
fn deserialize_string<V>(
self,
_: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
Err(SerdeDecodeError::CannotAllocate.into())
}
#[cfg(feature = "alloc")]
fn deserialize_bytes<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_byte_buf(Decode::decode(&mut self.de)?)
}
#[cfg(not(feature = "alloc"))]
fn deserialize_bytes<V>(
self,
_visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
Err(SerdeDecodeError::CannotBorrowOwnedData.into())
}
#[cfg(feature = "alloc")]
fn deserialize_byte_buf<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_byte_buf(Decode::decode(&mut self.de)?)
}
#[cfg(not(feature = "alloc"))]
fn deserialize_byte_buf<V>(
self,
_: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
Err(SerdeDecodeError::CannotAllocate.into())
}
fn deserialize_option<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
let variant = crate::de::decode_option_variant(&mut self.de, "Option<T>")?;
if variant.is_some() {
visitor.visit_some(self)
} else {
visitor.visit_none()
}
}
fn deserialize_unit<V>(
self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_unit()
}
fn deserialize_unit_struct<V>(
self,
_name: &'static str,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_unit()
}
fn deserialize_newtype_struct<V>(
self,
_name: &'static str,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_newtype_struct(self)
}
fn deserialize_seq<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
let len = usize::decode(&mut self.de)?;
self.deserialize_tuple(len, visitor)
}
fn deserialize_tuple<V>(
mut self,
len: usize,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
struct Access<'a, 'b, DE: Decoder> {
deserializer: &'a mut SerdeDecoder<'b, DE>,
len: usize,
}
impl<'de, 'a, 'b: 'a, DE: Decoder + 'b> SeqAccess<'de> for Access<'a, 'b, DE> {
type Error = DecodeError;
fn next_element_seed<T>(
&mut self,
seed: T,
) -> Result<Option<T::Value>, DecodeError>
where
T: DeserializeSeed<'de>,
{
if self.len > 0 {
self.len -= 1;
let value = match DeserializeSeed::deserialize(
seed,
SerdeDecoder {
de: self.deserializer.de,
},
) {
| Ok(v) => v,
| Err(DecodeError::UnexpectedEnd { .. }) => return Ok(None),
| Err(e) => return Err(e),
};
Ok(Some(value))
} else {
Ok(None)
}
}
fn size_hint(&self) -> Option<usize> {
Some(self.len)
}
}
visitor.visit_seq(Access {
deserializer: &mut self,
len,
})
}
fn deserialize_tuple_struct<V>(
self,
_name: &'static str,
len: usize,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
self.deserialize_tuple(len, visitor)
}
fn deserialize_map<V>(
mut self,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
struct Access<'a, 'b, DE: Decoder> {
deserializer: &'a mut SerdeDecoder<'b, DE>,
len: usize,
}
impl<'de, 'a, 'b: 'a, DE: Decoder + 'b> MapAccess<'de> for Access<'a, 'b, DE> {
type Error = DecodeError;
fn next_key_seed<K>(
&mut self,
seed: K,
) -> Result<Option<K::Value>, DecodeError>
where
K: DeserializeSeed<'de>,
{
if self.len > 0 {
self.len -= 1;
let key = DeserializeSeed::deserialize(
seed,
SerdeDecoder {
de: self.deserializer.de,
},
)?;
Ok(Some(key))
} else {
Ok(None)
}
}
fn next_value_seed<V>(
&mut self,
seed: V,
) -> Result<V::Value, DecodeError>
where
V: DeserializeSeed<'de>,
{
let value = DeserializeSeed::deserialize(
seed,
SerdeDecoder {
de: self.deserializer.de,
},
)?;
Ok(value)
}
fn size_hint(&self) -> Option<usize> {
Some(self.len)
}
}
let len = usize::decode(&mut self.de)?;
visitor.visit_map(Access {
deserializer: &mut self,
len,
})
}
fn deserialize_struct<V>(
self,
_name: &'static str,
fields: &'static [&'static str],
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
self.deserialize_tuple(fields.len(), visitor)
}
fn deserialize_enum<V>(
self,
_name: &'static str,
_variants: &'static [&'static str],
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
visitor.visit_enum(self)
}
fn deserialize_identifier<V>(
self,
_visitor: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
Err(SerdeDecodeError::IdentifierNotSupported.into())
}
fn deserialize_ignored_any<V>(
self,
_: V,
) -> Result<V::Value, Self::Error>
where
V: serde::de::Visitor<'de>,
{
Err(SerdeDecodeError::IgnoredAnyNotSupported.into())
}
fn is_human_readable(&self) -> bool {
false
}
}
impl<'de, DE: Decoder> EnumAccess<'de> for SerdeDecoder<'_, DE> {
type Error = DecodeError;
type Variant = Self;
fn variant_seed<V>(
mut self,
seed: V,
) -> Result<(V::Value, Self::Variant), Self::Error>
where
V: DeserializeSeed<'de>,
{
let idx = u32::decode(&mut self.de)?;
let val = seed.deserialize(idx.into_deserializer())?;
Ok((val, self))
}
}
impl<'de, DE: Decoder> VariantAccess<'de> for SerdeDecoder<'_, DE> {
type Error = DecodeError;
fn unit_variant(self) -> Result<(), Self::Error> {
Ok(())
}
fn newtype_variant_seed<T>(
self,
seed: T,
) -> Result<T::Value, Self::Error>
where
T: DeserializeSeed<'de>,
{
DeserializeSeed::deserialize(seed, self)
}
fn tuple_variant<V>(
self,
len: usize,
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: Visitor<'de>,
{
Deserializer::deserialize_tuple(self, len, visitor)
}
fn struct_variant<V>(
self,
fields: &'static [&'static str],
visitor: V,
) -> Result<V::Value, Self::Error>
where
V: Visitor<'de>,
{
Deserializer::deserialize_tuple(self, fields.len(), visitor)
}
}