#![allow(
missing_docs,
clippy::all,
clippy::pedantic,
clippy::nursery,
clippy::arithmetic_side_effects,
reason = "Generated protocol modules mirror Kafka's schema shape and intentionally trade \
hand-written lint style for reproducible wire-code output."
)]
use bytes::{Bytes, BytesMut};
use crate::*;
#[derive(Debug, Clone, PartialEq)]
pub struct ControllerRegistrationRequestData {
pub controller_id: i32,
pub incarnation_id: KafkaUuid,
pub zk_migration_ready: bool,
pub listeners: Vec<Listener>,
pub features: Vec<Feature>,
pub _unknown_tagged_fields: Vec<RawTaggedField>,
}
impl Default for ControllerRegistrationRequestData {
fn default() -> Self {
Self {
controller_id: 0_i32,
incarnation_id: KafkaUuid::ZERO,
zk_migration_ready: false,
listeners: Vec::new(),
features: Vec::new(),
_unknown_tagged_fields: Vec::new(),
}
}
}
impl ControllerRegistrationRequestData {
pub fn with_controller_id(mut self, value: i32) -> Self {
self.controller_id = value;
self
}
pub fn with_incarnation_id(mut self, value: KafkaUuid) -> Self {
self.incarnation_id = value;
self
}
pub fn with_zk_migration_ready(mut self, value: bool) -> Self {
self.zk_migration_ready = value;
self
}
pub fn with_listeners(mut self, value: Vec<Listener>) -> Self {
self.listeners = value;
self
}
pub fn with_features(mut self, value: Vec<Feature>) -> Self {
self.features = value;
self
}
pub fn read(buf: &mut Bytes, version: i16) -> Result<Self> {
if version < 0 || version > 0 {
return Err(UnsupportedVersion::new(70, version).into());
}
let controller_id;
let incarnation_id;
let zk_migration_ready;
let listeners;
let features;
let mut _unknown_tagged_fields: Vec<RawTaggedField> = Vec::new();
controller_id = read_i32(buf)?;
incarnation_id = read_uuid(buf)?;
zk_migration_ready = read_bool(buf)?;
listeners = {
let len = read_compact_array_length(buf)?;
let mut arr = Vec::with_capacity(len.max(0) as usize);
for _ in 0..len {
arr.push(Listener::read(buf, version)?);
}
arr
};
features = {
let len = read_compact_array_length(buf)?;
let mut arr = Vec::with_capacity(len.max(0) as usize);
for _ in 0..len {
arr.push(Feature::read(buf, version)?);
}
arr
};
let tagged_fields = read_tagged_fields(buf)?;
for field in &tagged_fields {
match field.tag {
_ => {
_unknown_tagged_fields.push(field.clone());
},
}
}
Ok(Self {
controller_id,
incarnation_id,
zk_migration_ready,
listeners,
features,
_unknown_tagged_fields,
})
}
pub fn write(&self, buf: &mut BytesMut, version: i16) -> Result<()> {
if version < 0 || version > 0 {
return Err(UnsupportedVersion::new(70, version).into());
}
write_i32(buf, self.controller_id);
write_uuid(buf, &self.incarnation_id);
write_bool(buf, self.zk_migration_ready);
write_compact_array_length(buf, self.listeners.len() as i32);
for el in &self.listeners {
el.write(buf, version)?;
}
write_compact_array_length(buf, self.features.len() as i32);
for el in &self.features {
el.write(buf, version)?;
}
let mut all_tags: Vec<RawTaggedField> = self._unknown_tagged_fields.clone();
all_tags.sort_by_key(|f| f.tag);
write_tagged_fields(buf, &all_tags)?;
Ok(())
}
pub fn encoded_len(&self, version: i16) -> Result<usize> {
if version < 0 || version > 0 {
return Err(UnsupportedVersion::new(70, version).into());
}
let mut len: usize = 0;
len += 4;
len += 16;
len += 1;
len += compact_array_length_len(self.listeners.len() as i32);
for el in &self.listeners {
len += el.encoded_len(version)?;
}
len += compact_array_length_len(self.features.len() as i32);
for el in &self.features {
len += el.encoded_len(version)?;
}
let mut all_tags: Vec<RawTaggedField> = self._unknown_tagged_fields.clone();
all_tags.sort_by_key(|f| f.tag);
len += tagged_fields_len(&all_tags)?;
Ok(len)
}
}
#[derive(Debug, Clone, PartialEq)]
pub struct Listener {
pub name: KafkaString,
pub host: KafkaString,
pub port: u16,
pub security_protocol: i16,
pub _unknown_tagged_fields: Vec<RawTaggedField>,
}
impl Default for Listener {
fn default() -> Self {
Self {
name: KafkaString::default(),
host: KafkaString::default(),
port: 0_u16,
security_protocol: 0_i16,
_unknown_tagged_fields: Vec::new(),
}
}
}
impl Listener {
pub fn with_name(mut self, value: KafkaString) -> Self {
self.name = value;
self
}
pub fn with_host(mut self, value: KafkaString) -> Self {
self.host = value;
self
}
pub fn with_port(mut self, value: u16) -> Self {
self.port = value;
self
}
pub fn with_security_protocol(mut self, value: i16) -> Self {
self.security_protocol = value;
self
}
pub fn read(buf: &mut Bytes, _version: i16) -> Result<Self> {
let name;
let host;
let port;
let security_protocol;
let mut _unknown_tagged_fields: Vec<RawTaggedField> = Vec::new();
name = read_compact_string(buf)?;
host = read_compact_string(buf)?;
port = read_u16(buf)?;
security_protocol = read_i16(buf)?;
let tagged_fields = read_tagged_fields(buf)?;
for field in &tagged_fields {
match field.tag {
_ => {
_unknown_tagged_fields.push(field.clone());
},
}
}
Ok(Self {
name,
host,
port,
security_protocol,
_unknown_tagged_fields,
})
}
pub fn write(&self, buf: &mut BytesMut, _version: i16) -> Result<()> {
write_compact_string(buf, &self.name)?;
write_compact_string(buf, &self.host)?;
write_u16(buf, self.port);
write_i16(buf, self.security_protocol);
let mut all_tags: Vec<RawTaggedField> = self._unknown_tagged_fields.clone();
all_tags.sort_by_key(|f| f.tag);
write_tagged_fields(buf, &all_tags)?;
Ok(())
}
pub fn encoded_len(&self, _version: i16) -> Result<usize> {
let mut len: usize = 0;
len += compact_string_len(&self.name)?;
len += compact_string_len(&self.host)?;
len += 2;
len += 2;
let mut all_tags: Vec<RawTaggedField> = self._unknown_tagged_fields.clone();
all_tags.sort_by_key(|f| f.tag);
len += tagged_fields_len(&all_tags)?;
Ok(len)
}
}
#[derive(Debug, Clone, PartialEq)]
pub struct Feature {
pub name: KafkaString,
pub min_supported_version: i16,
pub max_supported_version: i16,
pub _unknown_tagged_fields: Vec<RawTaggedField>,
}
impl Default for Feature {
fn default() -> Self {
Self {
name: KafkaString::default(),
min_supported_version: 0_i16,
max_supported_version: 0_i16,
_unknown_tagged_fields: Vec::new(),
}
}
}
impl Feature {
pub fn with_name(mut self, value: KafkaString) -> Self {
self.name = value;
self
}
pub fn with_min_supported_version(mut self, value: i16) -> Self {
self.min_supported_version = value;
self
}
pub fn with_max_supported_version(mut self, value: i16) -> Self {
self.max_supported_version = value;
self
}
pub fn read(buf: &mut Bytes, _version: i16) -> Result<Self> {
let name;
let min_supported_version;
let max_supported_version;
let mut _unknown_tagged_fields: Vec<RawTaggedField> = Vec::new();
name = read_compact_string(buf)?;
min_supported_version = read_i16(buf)?;
max_supported_version = read_i16(buf)?;
let tagged_fields = read_tagged_fields(buf)?;
for field in &tagged_fields {
match field.tag {
_ => {
_unknown_tagged_fields.push(field.clone());
},
}
}
Ok(Self {
name,
min_supported_version,
max_supported_version,
_unknown_tagged_fields,
})
}
pub fn write(&self, buf: &mut BytesMut, _version: i16) -> Result<()> {
write_compact_string(buf, &self.name)?;
write_i16(buf, self.min_supported_version);
write_i16(buf, self.max_supported_version);
let mut all_tags: Vec<RawTaggedField> = self._unknown_tagged_fields.clone();
all_tags.sort_by_key(|f| f.tag);
write_tagged_fields(buf, &all_tags)?;
Ok(())
}
pub fn encoded_len(&self, _version: i16) -> Result<usize> {
let mut len: usize = 0;
len += compact_string_len(&self.name)?;
len += 2;
len += 2;
let mut all_tags: Vec<RawTaggedField> = self._unknown_tagged_fields.clone();
all_tags.sort_by_key(|f| f.tag);
len += tagged_fields_len(&all_tags)?;
Ok(len)
}
}