use serde::{ser, Serialize};
use crate::parser::{TrailingComma};
use std::fmt;
use crate::utils::{escape_double_quoted};
#[derive(Debug)]
pub enum SerdeJSON5Error {
Custom(String),
}
impl std::error::Error for SerdeJSON5Error {}
impl fmt::Display for SerdeJSON5Error {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
match self {
SerdeJSON5Error::Custom(msg) => write!(f, "{msg}"),
}
}
}
impl ser::Error for SerdeJSON5Error {
fn custom<T: fmt::Display>(msg: T) -> Self {
SerdeJSON5Error::Custom(msg.to_string())
}
}
use crate::parser::FormatConfiguration;
pub struct Serializer {
output: String,
style: FormatConfiguration
}
type Result<T> = std::result::Result<T, SerdeJSON5Error>;
pub fn to_string<T>(value: &T) -> Result<String>
where
T: Serialize,
{
let mut serializer = Serializer {
output: String::new(),
style: FormatConfiguration::default()
};
value.serialize(&mut serializer)?;
Ok(serializer.output)
}
pub fn to_string_formatted<T>(value: &T, style: FormatConfiguration) -> Result<String>
where
T: Serialize
{
let mut serializer = Serializer {
output: String::new(),
style
};
value.serialize(&mut serializer)?;
Ok(serializer.output)
}
impl ser::Serializer for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
type SerializeSeq = Self;
type SerializeTuple = Self;
type SerializeTupleStruct = Self;
type SerializeTupleVariant = Self;
type SerializeMap = Self;
type SerializeStruct = Self;
type SerializeStructVariant = Self;
fn serialize_bool(self, v: bool) -> Result<()> {
self.output += if v { "true" } else { "false" };
Ok(())
}
fn serialize_i8(self, v: i8) -> Result<()> {
self.serialize_i64(i64::from(v))
}
fn serialize_i16(self, v: i16) -> Result<()> {
self.serialize_i64(i64::from(v))
}
fn serialize_i32(self, v: i32) -> Result<()> {
self.serialize_i64(i64::from(v))
}
fn serialize_i64(self, v: i64) -> Result<()> {
self.output += &v.to_string();
Ok(())
}
fn serialize_u8(self, v: u8) -> Result<()> {
self.serialize_u64(u64::from(v))
}
fn serialize_u16(self, v: u16) -> Result<()> {
self.serialize_u64(u64::from(v))
}
fn serialize_u32(self, v: u32) -> Result<()> {
self.serialize_u64(u64::from(v))
}
fn serialize_u64(self, v: u64) -> Result<()> {
self.output += &v.to_string();
Ok(())
}
fn serialize_f32(self, v: f32) -> Result<()> {
self.serialize_f64(f64::from(v))
}
fn serialize_f64(self, v: f64) -> Result<()> {
self.output += &v.to_string();
Ok(())
}
fn serialize_char(self, v: char) -> Result<()> {
self.serialize_str(&v.to_string())
}
fn serialize_str(self, v: &str) -> Result<()> {
self.output += "\"";
self.output += escape_double_quoted(v).as_str();
self.output += "\"";
Ok(())
}
fn serialize_bytes(self, v: &[u8]) -> Result<()> {
use serde::ser::SerializeSeq;
let mut seq = self.serialize_seq(Some(v.len()))?;
for byte in v {
seq.serialize_element(byte)?;
}
seq.end()
}
fn serialize_none(self) -> Result<()> {
self.serialize_unit()
}
fn serialize_some<T>(self, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
value.serialize(self)
}
fn serialize_unit(self) -> Result<()> {
self.output += "null";
Ok(())
}
fn serialize_unit_struct(self, _name: &'static str) -> Result<()> {
self.serialize_unit()
}
fn serialize_unit_variant(
self,
_name: &'static str,
_variant_index: u32,
variant: &'static str,
) -> Result<()> {
self.serialize_str(variant)
}
fn serialize_newtype_struct<T>(
self,
_name: &'static str,
value: &T,
) -> Result<()>
where
T: ?Sized + Serialize,
{
value.serialize(self)
}
fn serialize_newtype_variant<T>(
self,
_name: &'static str,
_variant_index: u32,
variant: &'static str,
value: &T,
) -> Result<()>
where
T: ?Sized + Serialize,
{
self.output.push('{');
variant.serialize(&mut *self)?;
self.output.push_str(self.style.key_separator.as_str());
value.serialize(&mut *self)?;
self.output.push('}');
Ok(())
}
fn serialize_seq(self, _len: Option<usize>) -> Result<Self::SerializeSeq> {
self.output += "[";
Ok(self)
}
fn serialize_tuple(self, len: usize) -> Result<Self::SerializeTuple> {
self.serialize_seq(Some(len))
}
fn serialize_tuple_struct(
self,
_name: &'static str,
len: usize,
) -> Result<Self::SerializeTupleStruct> {
self.serialize_seq(Some(len))
}
fn serialize_tuple_variant(
self,
_name: &'static str,
_variant_index: u32,
variant: &'static str,
_len: usize,
) -> Result<Self::SerializeTupleVariant> {
self.output.push('{');
variant.serialize(&mut *self)?;
self.output.push_str(format!("{}[", self.style.key_separator).as_str());
Ok(self)
}
fn serialize_map(self, _len: Option<usize>) -> Result<Self::SerializeMap> {
self.output.push('{');
Ok(self)
}
fn serialize_struct(
self,
_name: &'static str,
len: usize,
) -> Result<Self::SerializeStruct> {
self.serialize_map(Some(len))
}
fn serialize_struct_variant(
self,
_name: &'static str,
_variant_index: u32,
variant: &'static str,
_len: usize,
) -> Result<Self::SerializeStructVariant> {
self.output.push('{');
variant.serialize(&mut *self)?;
self.output.push_str(format!("{}{{", self.style.key_separator).as_str());
Ok(self)
}
}
impl ser::SerializeSeq for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
fn serialize_element<T>(&mut self, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
if !self.output.ends_with('[') {
match self.style.indent {
Some(_) => {
self.output.reserve(self.style.current_indent.len() + 2);
self.output += ",\n";
self.output.push_str(self.style.current_indent.as_str());
}
None => {
self.output.push_str(self.style.item_separator.as_str())
}
}
} else if let Some(ident) = self.style.indent {
self.output.push('\n');
self.style.current_indent.reserve(ident);
for _ in 0 .. ident {
self.style.current_indent.push(' ');
}
self.output.push_str(self.style.current_indent.as_str());
}
value.serialize(&mut **self)
}
fn end(self) -> Result<()> {
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push(']');
Ok(())
}
}
impl ser::SerializeTuple for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
fn serialize_element<T>(&mut self, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
if !self.output.ends_with('[') {
match self.style.indent {
Some(_) => {
self.output.reserve(self.style.current_indent.len() + 2);
self.output += ",\n";
self.output.push_str(self.style.current_indent.as_str());
}
None => {
self.output.push_str(self.style.item_separator.as_str())
}
}
} else if let Some(ident) = self.style.indent {
self.output.push('\n');
self.style.current_indent.reserve(ident);
for _ in 0 .. ident {
self.style.current_indent.push(' ');
}
self.output.push_str(self.style.current_indent.as_str());
}
value.serialize(&mut **self)
}
fn end(self) -> Result<()> {
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push(']');
Ok(())
}
}
impl ser::SerializeTupleStruct for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
fn serialize_field<T>(&mut self, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
if !self.output.ends_with('[') {
match self.style.indent {
Some(_) => {
self.output.reserve(self.style.current_indent.len() + 2);
self.output += ",\n";
self.output.push_str(self.style.current_indent.as_str());
}
None => {
self.output.push_str(self.style.item_separator.as_str())
}
}
} else if let Some(ident) = self.style.indent {
self.output.push('\n');
self.style.current_indent.reserve(ident);
for _ in 0 .. ident {
self.style.current_indent.push(' ');
}
self.output.push_str(self.style.current_indent.as_str());
}
value.serialize(&mut **self)
}
fn end(self) -> Result<()> {
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push(']');
Ok(())
}
}
impl ser::SerializeTupleVariant for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
fn serialize_field<T>(&mut self, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
if !self.output.ends_with('[') {
match self.style.indent {
Some(_) => {
self.output.reserve(self.style.current_indent.len() + 2);
self.output += ",\n";
self.output.push_str(self.style.current_indent.as_str());
}
None => {
self.output.push_str(self.style.item_separator.as_str())
}
}
} else if let Some(ident) = self.style.indent {
self.output.push('\n');
self.style.current_indent.reserve(ident);
for _ in 0 .. ident {
self.style.current_indent.push(' ');
}
self.output.push_str(self.style.current_indent.as_str());
}
value.serialize(&mut **self)
}
fn end(self) -> Result<()> {
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push(']');
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push('}');
Ok(())
}
}
impl ser::SerializeMap for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
fn serialize_key<T>(&mut self, key: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
if !self.output.ends_with('{') {
match self.style.indent {
Some(_) => {
self.output.reserve(self.style.current_indent.len() + 2);
self.output += ",\n";
self.output.push_str(self.style.current_indent.as_str());
}
None => {
self.output.push_str(self.style.item_separator.as_str())
}
}
} else if let Some(ident) = self.style.indent {
self.output.push('\n');
self.style.current_indent.reserve(ident);
for _ in 0 .. ident {
self.style.current_indent.push(' ');
}
self.output.push_str(self.style.current_indent.as_str());
}
key.serialize(&mut **self)
}
fn serialize_value<T>(&mut self, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
self.output.push_str(self.style.key_separator.as_str());
value.serialize(&mut **self)
}
fn end(self) -> Result<()> {
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push('}');
Ok(())
}
}
impl ser::SerializeStruct for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
fn serialize_field<T>(&mut self, key: &'static str, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
if !self.output.ends_with('{') {
match self.style.indent {
Some(_) => {
self.output.reserve(self.style.current_indent.len() + 2);
self.output += ",\n";
self.output.push_str(self.style.current_indent.as_str());
}
None => {
self.output.push_str(self.style.item_separator.as_str())
}
}
} else if let Some(ident) = self.style.indent {
self.output.push('\n');
self.style.current_indent.reserve(ident);
for _ in 0 .. ident {
self.style.current_indent.push(' ');
}
self.output.push_str(self.style.current_indent.as_str());
}
key.serialize(&mut **self)?;
self.output.push_str(self.style.key_separator.as_str());
value.serialize(&mut **self)
}
fn end(self) -> Result<()> {
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push('}');
Ok(())
}
}
impl ser::SerializeStructVariant for &mut Serializer {
type Ok = ();
type Error = SerdeJSON5Error;
fn serialize_field<T>(&mut self, key: &'static str, value: &T) -> Result<()>
where
T: ?Sized + Serialize,
{
if !self.output.ends_with('{') {
match self.style.indent {
Some(_) => {
self.output.reserve(self.style.current_indent.len() + 2);
self.output += ",\n";
self.output.push_str(self.style.current_indent.as_str());
}
None => {
self.output.push_str(self.style.item_separator.as_str())
}
}
} else if let Some(ident) = self.style.indent {
self.output.push('\n');
self.style.current_indent.reserve(ident);
for _ in 0 .. ident {
self.style.current_indent.push(' ');
}
self.output.push_str(self.style.current_indent.as_str());
}
key.serialize(&mut **self)?;
self.output.push_str(self.style.key_separator.as_str());
value.serialize(&mut **self)
}
fn end(self) -> Result<()> {
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push('}');
match self.style.trailing_comma {
TrailingComma::ALL | TrailingComma::OBJECTS => {
self.output.push(',')
}
_ => {}
}
if let Some(ident) = self.style.indent {
self.style.current_indent.truncate(self.style.current_indent.len() - ident);
self.output.reserve(self.style.current_indent.len() + 1);
self.output.push('\n');
self.output.push_str(self.style.current_indent.as_str());
}
self.output.push('}');
Ok(())
}
}
#[cfg(test)]
mod tests {
use super::*;
#[derive(Serialize)]
struct Test {
int: u32,
seq: Vec<&'static str>,
}
#[test]
fn test_struct() {
let test = Test {
int: 1,
seq: vec!["a", "b"],
};
let expected = r#"{"int": 1, "seq": ["a", "b"]}"#;
assert_eq!(to_string(&test).unwrap(), expected);
}
#[test]
fn test_struct_styled() {
let test = Test {
int: 1,
seq: vec!["a", "b"],
};
let expected = r#"{
"int": 1,
"seq": [
"a",
"b",
],
}"#;
let style = FormatConfiguration::with_indent(4, TrailingComma::ALL);
assert_eq!(to_string_formatted(&test, style).unwrap(), expected);
}
#[test]
fn test_enum() {
#[derive(Serialize)]
enum E {
Unit,
Newtype(u32),
Tuple(u32, u32),
Struct { a: u32 },
}
let u = E::Unit;
let expected = r#""Unit""#;
assert_eq!(to_string(&u).unwrap(), expected);
let n = E::Newtype(1);
let expected = r#"{"Newtype": 1}"#;
assert_eq!(to_string(&n).unwrap(), expected);
let t = E::Tuple(1, 2);
let expected = r#"{"Tuple": [1, 2]}"#;
assert_eq!(to_string(&t).unwrap(), expected);
let s = E::Struct { a: 1 };
let expected = r#"{"Struct": {"a": 1}}"#;
assert_eq!(to_string(&s).unwrap(), expected);
}
}