use serde::de::{Error, MapAccess, Visitor};
use serde::{Deserialize, Deserializer, Serialize};
use serde_with::skip_serializing_none;
use std::fmt::{self, Formatter};
#[non_exhaustive]
#[skip_serializing_none]
#[derive(Clone, Debug, PartialEq, Serialize)]
pub struct LogsSchemaData {
#[serde(rename = "class_name")]
pub class_name: String,
#[serde(rename = "class_uid")]
pub class_uid: i64,
#[serde(rename = "profiles")]
pub profiles: Option<Vec<String>>,
#[serde(rename = "schema_type")]
pub schema_type: String,
#[serde(rename = "version")]
pub version: String,
#[serde(flatten)]
pub additional_properties: std::collections::BTreeMap<String, serde_json::Value>,
#[serde(skip)]
#[serde(default)]
pub(crate) _unparsed: bool,
}
impl LogsSchemaData {
pub fn new(
class_name: String,
class_uid: i64,
schema_type: String,
version: String,
) -> LogsSchemaData {
LogsSchemaData {
class_name,
class_uid,
profiles: None,
schema_type,
version,
additional_properties: std::collections::BTreeMap::new(),
_unparsed: false,
}
}
pub fn profiles(mut self, value: Vec<String>) -> Self {
self.profiles = Some(value);
self
}
pub fn additional_properties(
mut self,
value: std::collections::BTreeMap<String, serde_json::Value>,
) -> Self {
self.additional_properties = value;
self
}
}
impl<'de> Deserialize<'de> for LogsSchemaData {
fn deserialize<D>(deserializer: D) -> Result<Self, D::Error>
where
D: Deserializer<'de>,
{
struct LogsSchemaDataVisitor;
impl<'a> Visitor<'a> for LogsSchemaDataVisitor {
type Value = LogsSchemaData;
fn expecting(&self, f: &mut Formatter<'_>) -> fmt::Result {
f.write_str("a mapping")
}
fn visit_map<M>(self, mut map: M) -> Result<Self::Value, M::Error>
where
M: MapAccess<'a>,
{
let mut class_name: Option<String> = None;
let mut class_uid: Option<i64> = None;
let mut profiles: Option<Vec<String>> = None;
let mut schema_type: Option<String> = None;
let mut version: Option<String> = None;
let mut additional_properties: std::collections::BTreeMap<
String,
serde_json::Value,
> = std::collections::BTreeMap::new();
let mut _unparsed = false;
while let Some((k, v)) = map.next_entry::<String, serde_json::Value>()? {
match k.as_str() {
"class_name" => {
class_name = Some(serde_json::from_value(v).map_err(M::Error::custom)?);
}
"class_uid" => {
class_uid = Some(serde_json::from_value(v).map_err(M::Error::custom)?);
}
"profiles" => {
if v.is_null() {
continue;
}
profiles = Some(serde_json::from_value(v).map_err(M::Error::custom)?);
}
"schema_type" => {
schema_type =
Some(serde_json::from_value(v).map_err(M::Error::custom)?);
}
"version" => {
version = Some(serde_json::from_value(v).map_err(M::Error::custom)?);
}
&_ => {
if let Ok(value) = serde_json::from_value(v.clone()) {
additional_properties.insert(k, value);
}
}
}
}
let class_name = class_name.ok_or_else(|| M::Error::missing_field("class_name"))?;
let class_uid = class_uid.ok_or_else(|| M::Error::missing_field("class_uid"))?;
let schema_type =
schema_type.ok_or_else(|| M::Error::missing_field("schema_type"))?;
let version = version.ok_or_else(|| M::Error::missing_field("version"))?;
let content = LogsSchemaData {
class_name,
class_uid,
profiles,
schema_type,
version,
additional_properties,
_unparsed,
};
Ok(content)
}
}
deserializer.deserialize_any(LogsSchemaDataVisitor)
}
}