#![allow(unused)]
use std::borrow::Borrow;
use std::collections::BTreeMap;
use anyhow::{bail, Result};
use bytes::Bytes;
use uuid::Uuid;
use crate::protocol::{
buf::{ByteBuf, ByteBufMut},
compute_unknown_tagged_fields_size, types, write_unknown_tagged_fields, Decodable, Decoder,
Encodable, Encoder, HeaderVersion, Message, StrBytes, VersionRange,
};
#[non_exhaustive]
#[derive(Debug, Clone, PartialEq)]
pub struct LeaderAndIsrPartitionError {
pub topic_name: super::TopicName,
pub partition_index: i32,
pub error_code: i16,
pub unknown_tagged_fields: BTreeMap<i32, Bytes>,
}
impl LeaderAndIsrPartitionError {
pub fn with_topic_name(mut self, value: super::TopicName) -> Self {
self.topic_name = value;
self
}
pub fn with_partition_index(mut self, value: i32) -> Self {
self.partition_index = value;
self
}
pub fn with_error_code(mut self, value: i16) -> Self {
self.error_code = value;
self
}
pub fn with_unknown_tagged_fields(mut self, value: BTreeMap<i32, Bytes>) -> Self {
self.unknown_tagged_fields = value;
self
}
pub fn with_unknown_tagged_field(mut self, key: i32, value: Bytes) -> Self {
self.unknown_tagged_fields.insert(key, value);
self
}
}
#[cfg(feature = "broker")]
impl Encodable for LeaderAndIsrPartitionError {
fn encode<B: ByteBufMut>(&self, buf: &mut B, version: i16) -> Result<()> {
if version <= 4 {
if version >= 4 {
types::CompactString.encode(buf, &self.topic_name)?;
} else {
types::String.encode(buf, &self.topic_name)?;
}
}
types::Int32.encode(buf, &self.partition_index)?;
types::Int16.encode(buf, &self.error_code)?;
if version >= 4 {
let num_tagged_fields = self.unknown_tagged_fields.len();
if num_tagged_fields > std::u32::MAX as usize {
bail!(
"Too many tagged fields to encode ({} fields)",
num_tagged_fields
);
}
types::UnsignedVarInt.encode(buf, num_tagged_fields as u32)?;
write_unknown_tagged_fields(buf, 0.., &self.unknown_tagged_fields)?;
}
Ok(())
}
fn compute_size(&self, version: i16) -> Result<usize> {
let mut total_size = 0;
if version <= 4 {
if version >= 4 {
total_size += types::CompactString.compute_size(&self.topic_name)?;
} else {
total_size += types::String.compute_size(&self.topic_name)?;
}
}
total_size += types::Int32.compute_size(&self.partition_index)?;
total_size += types::Int16.compute_size(&self.error_code)?;
if version >= 4 {
let num_tagged_fields = self.unknown_tagged_fields.len();
if num_tagged_fields > std::u32::MAX as usize {
bail!(
"Too many tagged fields to encode ({} fields)",
num_tagged_fields
);
}
total_size += types::UnsignedVarInt.compute_size(num_tagged_fields as u32)?;
total_size += compute_unknown_tagged_fields_size(&self.unknown_tagged_fields)?;
}
Ok(total_size)
}
}
#[cfg(feature = "client")]
impl Decodable for LeaderAndIsrPartitionError {
fn decode<B: ByteBuf>(buf: &mut B, version: i16) -> Result<Self> {
let topic_name = if version <= 4 {
if version >= 4 {
types::CompactString.decode(buf)?
} else {
types::String.decode(buf)?
}
} else {
Default::default()
};
let partition_index = types::Int32.decode(buf)?;
let error_code = types::Int16.decode(buf)?;
let mut unknown_tagged_fields = BTreeMap::new();
if version >= 4 {
let num_tagged_fields = types::UnsignedVarInt.decode(buf)?;
for _ in 0..num_tagged_fields {
let tag: u32 = types::UnsignedVarInt.decode(buf)?;
let size: u32 = types::UnsignedVarInt.decode(buf)?;
let unknown_value = buf.try_get_bytes(size as usize)?;
unknown_tagged_fields.insert(tag as i32, unknown_value);
}
}
Ok(Self {
topic_name,
partition_index,
error_code,
unknown_tagged_fields,
})
}
}
impl Default for LeaderAndIsrPartitionError {
fn default() -> Self {
Self {
topic_name: Default::default(),
partition_index: 0,
error_code: 0,
unknown_tagged_fields: BTreeMap::new(),
}
}
}
impl Message for LeaderAndIsrPartitionError {
const VERSIONS: VersionRange = VersionRange { min: 0, max: 7 };
const DEPRECATED_VERSIONS: Option<VersionRange> = None;
}
#[non_exhaustive]
#[derive(Debug, Clone, PartialEq)]
pub struct LeaderAndIsrResponse {
pub error_code: i16,
pub partition_errors: Vec<LeaderAndIsrPartitionError>,
pub topics: Vec<LeaderAndIsrTopicError>,
pub unknown_tagged_fields: BTreeMap<i32, Bytes>,
}
impl LeaderAndIsrResponse {
pub fn with_error_code(mut self, value: i16) -> Self {
self.error_code = value;
self
}
pub fn with_partition_errors(mut self, value: Vec<LeaderAndIsrPartitionError>) -> Self {
self.partition_errors = value;
self
}
pub fn with_topics(mut self, value: Vec<LeaderAndIsrTopicError>) -> Self {
self.topics = value;
self
}
pub fn with_unknown_tagged_fields(mut self, value: BTreeMap<i32, Bytes>) -> Self {
self.unknown_tagged_fields = value;
self
}
pub fn with_unknown_tagged_field(mut self, key: i32, value: Bytes) -> Self {
self.unknown_tagged_fields.insert(key, value);
self
}
}
#[cfg(feature = "broker")]
impl Encodable for LeaderAndIsrResponse {
fn encode<B: ByteBufMut>(&self, buf: &mut B, version: i16) -> Result<()> {
types::Int16.encode(buf, &self.error_code)?;
if version <= 4 {
if version >= 4 {
types::CompactArray(types::Struct { version })
.encode(buf, &self.partition_errors)?;
} else {
types::Array(types::Struct { version }).encode(buf, &self.partition_errors)?;
}
} else {
if !self.partition_errors.is_empty() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 5 {
types::CompactArray(types::Struct { version }).encode(buf, &self.topics)?;
} else {
if !self.topics.is_empty() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 4 {
let num_tagged_fields = self.unknown_tagged_fields.len();
if num_tagged_fields > std::u32::MAX as usize {
bail!(
"Too many tagged fields to encode ({} fields)",
num_tagged_fields
);
}
types::UnsignedVarInt.encode(buf, num_tagged_fields as u32)?;
write_unknown_tagged_fields(buf, 0.., &self.unknown_tagged_fields)?;
}
Ok(())
}
fn compute_size(&self, version: i16) -> Result<usize> {
let mut total_size = 0;
total_size += types::Int16.compute_size(&self.error_code)?;
if version <= 4 {
if version >= 4 {
total_size += types::CompactArray(types::Struct { version })
.compute_size(&self.partition_errors)?;
} else {
total_size +=
types::Array(types::Struct { version }).compute_size(&self.partition_errors)?;
}
} else {
if !self.partition_errors.is_empty() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 5 {
total_size +=
types::CompactArray(types::Struct { version }).compute_size(&self.topics)?;
} else {
if !self.topics.is_empty() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 4 {
let num_tagged_fields = self.unknown_tagged_fields.len();
if num_tagged_fields > std::u32::MAX as usize {
bail!(
"Too many tagged fields to encode ({} fields)",
num_tagged_fields
);
}
total_size += types::UnsignedVarInt.compute_size(num_tagged_fields as u32)?;
total_size += compute_unknown_tagged_fields_size(&self.unknown_tagged_fields)?;
}
Ok(total_size)
}
}
#[cfg(feature = "client")]
impl Decodable for LeaderAndIsrResponse {
fn decode<B: ByteBuf>(buf: &mut B, version: i16) -> Result<Self> {
let error_code = types::Int16.decode(buf)?;
let partition_errors = if version <= 4 {
if version >= 4 {
types::CompactArray(types::Struct { version }).decode(buf)?
} else {
types::Array(types::Struct { version }).decode(buf)?
}
} else {
Default::default()
};
let topics = if version >= 5 {
types::CompactArray(types::Struct { version }).decode(buf)?
} else {
Default::default()
};
let mut unknown_tagged_fields = BTreeMap::new();
if version >= 4 {
let num_tagged_fields = types::UnsignedVarInt.decode(buf)?;
for _ in 0..num_tagged_fields {
let tag: u32 = types::UnsignedVarInt.decode(buf)?;
let size: u32 = types::UnsignedVarInt.decode(buf)?;
let unknown_value = buf.try_get_bytes(size as usize)?;
unknown_tagged_fields.insert(tag as i32, unknown_value);
}
}
Ok(Self {
error_code,
partition_errors,
topics,
unknown_tagged_fields,
})
}
}
impl Default for LeaderAndIsrResponse {
fn default() -> Self {
Self {
error_code: 0,
partition_errors: Default::default(),
topics: Default::default(),
unknown_tagged_fields: BTreeMap::new(),
}
}
}
impl Message for LeaderAndIsrResponse {
const VERSIONS: VersionRange = VersionRange { min: 0, max: 7 };
const DEPRECATED_VERSIONS: Option<VersionRange> = None;
}
#[non_exhaustive]
#[derive(Debug, Clone, PartialEq)]
pub struct LeaderAndIsrTopicError {
pub topic_id: Uuid,
pub partition_errors: Vec<LeaderAndIsrPartitionError>,
pub unknown_tagged_fields: BTreeMap<i32, Bytes>,
}
impl LeaderAndIsrTopicError {
pub fn with_topic_id(mut self, value: Uuid) -> Self {
self.topic_id = value;
self
}
pub fn with_partition_errors(mut self, value: Vec<LeaderAndIsrPartitionError>) -> Self {
self.partition_errors = value;
self
}
pub fn with_unknown_tagged_fields(mut self, value: BTreeMap<i32, Bytes>) -> Self {
self.unknown_tagged_fields = value;
self
}
pub fn with_unknown_tagged_field(mut self, key: i32, value: Bytes) -> Self {
self.unknown_tagged_fields.insert(key, value);
self
}
}
#[cfg(feature = "broker")]
impl Encodable for LeaderAndIsrTopicError {
fn encode<B: ByteBufMut>(&self, buf: &mut B, version: i16) -> Result<()> {
if version >= 5 {
types::Uuid.encode(buf, &self.topic_id)?;
} else {
if &self.topic_id != &Uuid::nil() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 5 {
types::CompactArray(types::Struct { version }).encode(buf, &self.partition_errors)?;
} else {
if !self.partition_errors.is_empty() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 4 {
let num_tagged_fields = self.unknown_tagged_fields.len();
if num_tagged_fields > std::u32::MAX as usize {
bail!(
"Too many tagged fields to encode ({} fields)",
num_tagged_fields
);
}
types::UnsignedVarInt.encode(buf, num_tagged_fields as u32)?;
write_unknown_tagged_fields(buf, 0.., &self.unknown_tagged_fields)?;
}
Ok(())
}
fn compute_size(&self, version: i16) -> Result<usize> {
let mut total_size = 0;
if version >= 5 {
total_size += types::Uuid.compute_size(&self.topic_id)?;
} else {
if &self.topic_id != &Uuid::nil() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 5 {
total_size += types::CompactArray(types::Struct { version })
.compute_size(&self.partition_errors)?;
} else {
if !self.partition_errors.is_empty() {
bail!("A field is set that is not available on the selected protocol version");
}
}
if version >= 4 {
let num_tagged_fields = self.unknown_tagged_fields.len();
if num_tagged_fields > std::u32::MAX as usize {
bail!(
"Too many tagged fields to encode ({} fields)",
num_tagged_fields
);
}
total_size += types::UnsignedVarInt.compute_size(num_tagged_fields as u32)?;
total_size += compute_unknown_tagged_fields_size(&self.unknown_tagged_fields)?;
}
Ok(total_size)
}
}
#[cfg(feature = "client")]
impl Decodable for LeaderAndIsrTopicError {
fn decode<B: ByteBuf>(buf: &mut B, version: i16) -> Result<Self> {
let topic_id = if version >= 5 {
types::Uuid.decode(buf)?
} else {
Uuid::nil()
};
let partition_errors = if version >= 5 {
types::CompactArray(types::Struct { version }).decode(buf)?
} else {
Default::default()
};
let mut unknown_tagged_fields = BTreeMap::new();
if version >= 4 {
let num_tagged_fields = types::UnsignedVarInt.decode(buf)?;
for _ in 0..num_tagged_fields {
let tag: u32 = types::UnsignedVarInt.decode(buf)?;
let size: u32 = types::UnsignedVarInt.decode(buf)?;
let unknown_value = buf.try_get_bytes(size as usize)?;
unknown_tagged_fields.insert(tag as i32, unknown_value);
}
}
Ok(Self {
topic_id,
partition_errors,
unknown_tagged_fields,
})
}
}
impl Default for LeaderAndIsrTopicError {
fn default() -> Self {
Self {
topic_id: Uuid::nil(),
partition_errors: Default::default(),
unknown_tagged_fields: BTreeMap::new(),
}
}
}
impl Message for LeaderAndIsrTopicError {
const VERSIONS: VersionRange = VersionRange { min: 0, max: 7 };
const DEPRECATED_VERSIONS: Option<VersionRange> = None;
}
impl HeaderVersion for LeaderAndIsrResponse {
fn header_version(version: i16) -> i16 {
if version >= 4 {
1
} else {
0
}
}
}