use super::Value;
use crate::lib::iter::FromIterator;
use crate::lib::*;
use crate::map::Map;
use crate::number::Number;
#[cfg(feature = "arbitrary_precision")]
use serde::serde_if_integer128;
macro_rules! from_integer {
($($ty:ident)*) => {
$(
impl From<$ty> for Value {
fn from(n: $ty) -> Self {
Value::Number(n.into())
}
}
)*
};
}
from_integer! {
i8 i16 i32 i64 isize
u8 u16 u32 u64 usize
}
#[cfg(feature = "arbitrary_precision")]
serde_if_integer128! {
from_integer! {
i128 u128
}
}
impl From<f32> for Value {
fn from(f: f32) -> Self {
From::from(f as f64)
}
}
impl From<f64> for Value {
fn from(f: f64) -> Self {
Number::from_f64(f).map_or(Value::Null, Value::Number)
}
}
impl From<bool> for Value {
fn from(f: bool) -> Self {
Value::Bool(f)
}
}
impl From<String> for Value {
fn from(f: String) -> Self {
Value::String(f)
}
}
impl<'a> From<&'a str> for Value {
fn from(f: &str) -> Self {
Value::String(f.to_string())
}
}
impl<'a> From<Cow<'a, str>> for Value {
fn from(f: Cow<'a, str>) -> Self {
Value::String(f.into_owned())
}
}
impl From<Number> for Value {
fn from(f: Number) -> Self {
Value::Number(f)
}
}
impl From<Map<String, Value>> for Value {
fn from(f: Map<String, Value>) -> Self {
Value::Object(f)
}
}
impl<T: Into<Value>> From<Vec<T>> for Value {
fn from(f: Vec<T>) -> Self {
Value::Array(f.into_iter().map(Into::into).collect())
}
}
impl<'a, T: Clone + Into<Value>> From<&'a [T]> for Value {
fn from(f: &'a [T]) -> Self {
Value::Array(f.iter().cloned().map(Into::into).collect())
}
}
impl<T: Into<Value>> FromIterator<T> for Value {
fn from_iter<I: IntoIterator<Item = T>>(iter: I) -> Self {
Value::Array(iter.into_iter().map(Into::into).collect())
}
}
impl<K: Into<String>, V: Into<Value>> FromIterator<(K, V)> for Value {
fn from_iter<I: IntoIterator<Item = (K, V)>>(iter: I) -> Self {
Value::Object(
iter.into_iter()
.map(|(k, v)| (k.into(), v.into()))
.collect(),
)
}
}
impl From<()> for Value {
fn from((): ()) -> Self {
Value::Null
}
}