kacrab-protocol 0.1.1

Kafka wire protocol types — generated from upstream message schemas by `kacrab-codegen`.
Documentation
//! Generated from VoteResponse.json - DO NOT EDIT
#![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 VoteResponseData {
    /// The top level error code.
    pub error_code: i16,
    /// The results for each topic.
    pub topics: Vec<TopicData>,
    /// Endpoints for all current-leaders enumerated in PartitionData.
    pub node_endpoints: Vec<NodeEndpoint>,
    pub _unknown_tagged_fields: Vec<RawTaggedField>,
}
impl Default for VoteResponseData {
    fn default() -> Self {
        Self {
            error_code: 0_i16,
            topics: Vec::new(),
            node_endpoints: Vec::new(),
            _unknown_tagged_fields: Vec::new(),
        }
    }
}
impl VoteResponseData {
    pub fn with_error_code(mut self, value: i16) -> Self {
        self.error_code = value;
        self
    }
    pub fn with_topics(mut self, value: Vec<TopicData>) -> Self {
        self.topics = value;
        self
    }
    pub fn with_node_endpoints(mut self, value: Vec<NodeEndpoint>) -> Self {
        self.node_endpoints = value;
        self
    }
    pub fn read(buf: &mut Bytes, version: i16) -> Result<Self> {
        if version < 0 || version > 2 {
            return Err(UnsupportedVersion::new(52, version).into());
        }
        let error_code;
        let topics;
        let mut node_endpoints = Vec::new();
        let mut _unknown_tagged_fields: Vec<RawTaggedField> = Vec::new();
        error_code = read_i16(buf)?;
        topics = {
            let len = read_compact_array_length(buf)?;
            let mut arr = Vec::with_capacity(array_read_capacity(len, (buf).len()));
            for _ in 0..len {
                arr.push(TopicData::read(buf, version)?);
            }
            arr
        };
        let tagged_fields = read_tagged_fields(buf)?;
        for field in &tagged_fields {
            match field.tag {
                0 => {
                    if version >= 1 {
                        let mut tag_buf = field.data.clone();
                        node_endpoints = {
                            let len = read_compact_array_length(&mut tag_buf)?;
                            let mut arr =
                                Vec::with_capacity(array_read_capacity(len, (&mut tag_buf).len()));
                            for _ in 0..len {
                                arr.push(NodeEndpoint::read(&mut tag_buf, version)?);
                            }
                            arr
                        };
                    }
                },
                _ => {
                    _unknown_tagged_fields.push(field.clone());
                },
            }
        }
        Ok(Self {
            error_code,
            topics,
            node_endpoints,
            _unknown_tagged_fields,
        })
    }
    pub fn write(&self, buf: &mut BytesMut, version: i16) -> Result<()> {
        if version < 0 || version > 2 {
            return Err(UnsupportedVersion::new(52, version).into());
        }
        write_i16(buf, self.error_code);
        write_compact_array_length(buf, self.topics.len() as i32);
        for el in &self.topics {
            el.write(buf, version)?;
        }
        let mut known_tagged_fields: Vec<RawTaggedField> = Vec::new();
        if version >= 1 && !self.node_endpoints.is_empty() {
            let mut tag_buf = BytesMut::new();
            write_compact_array_length(&mut tag_buf, self.node_endpoints.len() as i32);
            for el in &self.node_endpoints {
                el.write(&mut tag_buf, version)?;
            }
            known_tagged_fields.push(RawTaggedField {
                tag: 0,
                data: tag_buf.freeze(),
            });
        }
        let mut all_tags = known_tagged_fields;
        all_tags.extend(self._unknown_tagged_fields.iter().cloned());
        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 > 2 {
            return Err(UnsupportedVersion::new(52, version).into());
        }
        let mut len: usize = 0;
        len += 2;
        len += compact_array_length_len(self.topics.len() as i32);
        for el in &self.topics {
            len += el.encoded_len(version)?;
        }
        let mut known_tagged_fields: Vec<RawTaggedField> = Vec::new();
        if version >= 1 && !self.node_endpoints.is_empty() {
            let mut tag_buf = BytesMut::new();
            write_compact_array_length(&mut tag_buf, self.node_endpoints.len() as i32);
            for el in &self.node_endpoints {
                el.write(&mut tag_buf, version)?;
            }
            known_tagged_fields.push(RawTaggedField {
                tag: 0,
                data: tag_buf.freeze(),
            });
        }
        let mut all_tags = known_tagged_fields;
        all_tags.extend(self._unknown_tagged_fields.iter().cloned());
        all_tags.sort_by_key(|f| f.tag);
        len += tagged_fields_len(&all_tags)?;
        Ok(len)
    }
}
#[derive(Debug, Clone, PartialEq)]
pub struct TopicData {
    /// The topic name.
    pub topic_name: KafkaString,
    /// The results for each partition.
    pub partitions: Vec<PartitionData>,
    pub _unknown_tagged_fields: Vec<RawTaggedField>,
}
impl Default for TopicData {
    fn default() -> Self {
        Self {
            topic_name: KafkaString::default(),
            partitions: Vec::new(),
            _unknown_tagged_fields: Vec::new(),
        }
    }
}
impl TopicData {
    pub fn with_topic_name(mut self, value: KafkaString) -> Self {
        self.topic_name = value;
        self
    }
    pub fn with_partitions(mut self, value: Vec<PartitionData>) -> Self {
        self.partitions = value;
        self
    }
    pub fn read(buf: &mut Bytes, version: i16) -> Result<Self> {
        let topic_name;
        let partitions;
        let mut _unknown_tagged_fields: Vec<RawTaggedField> = Vec::new();
        topic_name = read_compact_string(buf)?;
        partitions = {
            let len = read_compact_array_length(buf)?;
            let mut arr = Vec::with_capacity(array_read_capacity(len, (buf).len()));
            for _ in 0..len {
                arr.push(PartitionData::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 {
            topic_name,
            partitions,
            _unknown_tagged_fields,
        })
    }
    pub fn write(&self, buf: &mut BytesMut, version: i16) -> Result<()> {
        write_compact_string(buf, &self.topic_name)?;
        write_compact_array_length(buf, self.partitions.len() as i32);
        for el in &self.partitions {
            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> {
        let mut len: usize = 0;
        len += compact_string_len(&self.topic_name)?;
        len += compact_array_length_len(self.partitions.len() as i32);
        for el in &self.partitions {
            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 PartitionData {
    /// The partition index.
    pub partition_index: i32,
    /// The partition level error code.
    pub error_code: i16,
    /// The ID of the current leader or -1 if the leader is unknown.
    pub leader_id: i32,
    /// The latest known leader epoch.
    pub leader_epoch: i32,
    /// True if the vote was granted and false otherwise.
    pub vote_granted: bool,
    pub _unknown_tagged_fields: Vec<RawTaggedField>,
}
impl Default for PartitionData {
    fn default() -> Self {
        Self {
            partition_index: 0_i32,
            error_code: 0_i16,
            leader_id: 0_i32,
            leader_epoch: 0_i32,
            vote_granted: false,
            _unknown_tagged_fields: Vec::new(),
        }
    }
}
impl PartitionData {
    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_leader_id(mut self, value: i32) -> Self {
        self.leader_id = value;
        self
    }
    pub fn with_leader_epoch(mut self, value: i32) -> Self {
        self.leader_epoch = value;
        self
    }
    pub fn with_vote_granted(mut self, value: bool) -> Self {
        self.vote_granted = value;
        self
    }
    pub fn read(buf: &mut Bytes, _version: i16) -> Result<Self> {
        let partition_index;
        let error_code;
        let leader_id;
        let leader_epoch;
        let vote_granted;
        let mut _unknown_tagged_fields: Vec<RawTaggedField> = Vec::new();
        partition_index = read_i32(buf)?;
        error_code = read_i16(buf)?;
        leader_id = read_i32(buf)?;
        leader_epoch = read_i32(buf)?;
        vote_granted = read_bool(buf)?;
        let tagged_fields = read_tagged_fields(buf)?;
        for field in &tagged_fields {
            match field.tag {
                _ => {
                    _unknown_tagged_fields.push(field.clone());
                },
            }
        }
        Ok(Self {
            partition_index,
            error_code,
            leader_id,
            leader_epoch,
            vote_granted,
            _unknown_tagged_fields,
        })
    }
    pub fn write(&self, buf: &mut BytesMut, _version: i16) -> Result<()> {
        write_i32(buf, self.partition_index);
        write_i16(buf, self.error_code);
        write_i32(buf, self.leader_id);
        write_i32(buf, self.leader_epoch);
        write_bool(buf, self.vote_granted);
        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 += 4;
        len += 2;
        len += 4;
        len += 4;
        len += 1;
        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 NodeEndpoint {
    /// The ID of the associated node.
    pub node_id: i32,
    /// The node's hostname.
    pub host: KafkaString,
    /// The node's port.
    pub port: u16,
    pub _unknown_tagged_fields: Vec<RawTaggedField>,
}
impl Default for NodeEndpoint {
    fn default() -> Self {
        Self {
            node_id: 0_i32,
            host: KafkaString::default(),
            port: 0_u16,
            _unknown_tagged_fields: Vec::new(),
        }
    }
}
impl NodeEndpoint {
    pub fn with_node_id(mut self, value: i32) -> Self {
        self.node_id = 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 read(buf: &mut Bytes, _version: i16) -> Result<Self> {
        let node_id;
        let host;
        let port;
        let mut _unknown_tagged_fields: Vec<RawTaggedField> = Vec::new();
        node_id = read_i32(buf)?;
        host = read_compact_string(buf)?;
        port = read_u16(buf)?;
        let tagged_fields = read_tagged_fields(buf)?;
        for field in &tagged_fields {
            match field.tag {
                _ => {
                    _unknown_tagged_fields.push(field.clone());
                },
            }
        }
        Ok(Self {
            node_id,
            host,
            port,
            _unknown_tagged_fields,
        })
    }
    pub fn write(&self, buf: &mut BytesMut, _version: i16) -> Result<()> {
        write_i32(buf, self.node_id);
        write_compact_string(buf, &self.host)?;
        write_u16(buf, self.port);
        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 += 4;
        len += compact_string_len(&self.host)?;
        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)
    }
}