helm-api 0.1.0

Helm client library for Rust
// This file is generated by rust-protobuf 2.7.0. Do not edit
// @generated

// https://github.com/Manishearth/rust-clippy/issues/702
#![allow(unknown_lints)]
#![allow(clippy::all)]

#![cfg_attr(rustfmt, rustfmt_skip)]

#![allow(box_pointers)]
#![allow(dead_code)]
#![allow(missing_docs)]
#![allow(non_camel_case_types)]
#![allow(non_snake_case)]
#![allow(non_upper_case_globals)]
#![allow(trivial_casts)]
#![allow(unsafe_code)]
#![allow(unused_imports)]
#![allow(unused_results)]
//! Generated file from `hapi/release/release.proto`

use protobuf::Message as Message_imported_for_functions;
use protobuf::ProtobufEnum as ProtobufEnum_imported_for_functions;

/// Generated files are compatible only with the same version
/// of protobuf runtime.
const _PROTOBUF_VERSION_CHECK: () = ::protobuf::VERSION_2_7_0;

#[derive(PartialEq,Clone,Default)]
pub struct Release {
    // message fields
    pub name: ::std::string::String,
    pub info: ::protobuf::SingularPtrField<super::info::Info>,
    pub chart: ::protobuf::SingularPtrField<super::chart::Chart>,
    pub config: ::protobuf::SingularPtrField<super::config::Config>,
    pub manifest: ::std::string::String,
    pub hooks: ::protobuf::RepeatedField<super::hook::Hook>,
    pub version: i32,
    pub namespace: ::std::string::String,
    // special fields
    pub unknown_fields: ::protobuf::UnknownFields,
    pub cached_size: ::protobuf::CachedSize,
}

impl<'a> ::std::default::Default for &'a Release {
    fn default() -> &'a Release {
        <Release as ::protobuf::Message>::default_instance()
    }
}

impl Release {
    pub fn new() -> Release {
        ::std::default::Default::default()
    }

    // string name = 1;


    pub fn get_name(&self) -> &str {
        &self.name
    }
    pub fn clear_name(&mut self) {
        self.name.clear();
    }

    // Param is passed by value, moved
    pub fn set_name(&mut self, v: ::std::string::String) {
        self.name = v;
    }

    // Mutable pointer to the field.
    // If field is not initialized, it is initialized with default value first.
    pub fn mut_name(&mut self) -> &mut ::std::string::String {
        &mut self.name
    }

    // Take field
    pub fn take_name(&mut self) -> ::std::string::String {
        ::std::mem::replace(&mut self.name, ::std::string::String::new())
    }

    // .hapi.release.Info info = 2;


    pub fn get_info(&self) -> &super::info::Info {
        self.info.as_ref().unwrap_or_else(|| super::info::Info::default_instance())
    }
    pub fn clear_info(&mut self) {
        self.info.clear();
    }

    pub fn has_info(&self) -> bool {
        self.info.is_some()
    }

    // Param is passed by value, moved
    pub fn set_info(&mut self, v: super::info::Info) {
        self.info = ::protobuf::SingularPtrField::some(v);
    }

    // Mutable pointer to the field.
    // If field is not initialized, it is initialized with default value first.
    pub fn mut_info(&mut self) -> &mut super::info::Info {
        if self.info.is_none() {
            self.info.set_default();
        }
        self.info.as_mut().unwrap()
    }

    // Take field
    pub fn take_info(&mut self) -> super::info::Info {
        self.info.take().unwrap_or_else(|| super::info::Info::new())
    }

    // .hapi.chart.Chart chart = 3;


    pub fn get_chart(&self) -> &super::chart::Chart {
        self.chart.as_ref().unwrap_or_else(|| super::chart::Chart::default_instance())
    }
    pub fn clear_chart(&mut self) {
        self.chart.clear();
    }

    pub fn has_chart(&self) -> bool {
        self.chart.is_some()
    }

    // Param is passed by value, moved
    pub fn set_chart(&mut self, v: super::chart::Chart) {
        self.chart = ::protobuf::SingularPtrField::some(v);
    }

    // Mutable pointer to the field.
    // If field is not initialized, it is initialized with default value first.
    pub fn mut_chart(&mut self) -> &mut super::chart::Chart {
        if self.chart.is_none() {
            self.chart.set_default();
        }
        self.chart.as_mut().unwrap()
    }

    // Take field
    pub fn take_chart(&mut self) -> super::chart::Chart {
        self.chart.take().unwrap_or_else(|| super::chart::Chart::new())
    }

    // .hapi.chart.Config config = 4;


    pub fn get_config(&self) -> &super::config::Config {
        self.config.as_ref().unwrap_or_else(|| super::config::Config::default_instance())
    }
    pub fn clear_config(&mut self) {
        self.config.clear();
    }

    pub fn has_config(&self) -> bool {
        self.config.is_some()
    }

    // Param is passed by value, moved
    pub fn set_config(&mut self, v: super::config::Config) {
        self.config = ::protobuf::SingularPtrField::some(v);
    }

    // Mutable pointer to the field.
    // If field is not initialized, it is initialized with default value first.
    pub fn mut_config(&mut self) -> &mut super::config::Config {
        if self.config.is_none() {
            self.config.set_default();
        }
        self.config.as_mut().unwrap()
    }

    // Take field
    pub fn take_config(&mut self) -> super::config::Config {
        self.config.take().unwrap_or_else(|| super::config::Config::new())
    }

    // string manifest = 5;


    pub fn get_manifest(&self) -> &str {
        &self.manifest
    }
    pub fn clear_manifest(&mut self) {
        self.manifest.clear();
    }

    // Param is passed by value, moved
    pub fn set_manifest(&mut self, v: ::std::string::String) {
        self.manifest = v;
    }

    // Mutable pointer to the field.
    // If field is not initialized, it is initialized with default value first.
    pub fn mut_manifest(&mut self) -> &mut ::std::string::String {
        &mut self.manifest
    }

    // Take field
    pub fn take_manifest(&mut self) -> ::std::string::String {
        ::std::mem::replace(&mut self.manifest, ::std::string::String::new())
    }

    // repeated .hapi.release.Hook hooks = 6;


    pub fn get_hooks(&self) -> &[super::hook::Hook] {
        &self.hooks
    }
    pub fn clear_hooks(&mut self) {
        self.hooks.clear();
    }

    // Param is passed by value, moved
    pub fn set_hooks(&mut self, v: ::protobuf::RepeatedField<super::hook::Hook>) {
        self.hooks = v;
    }

    // Mutable pointer to the field.
    pub fn mut_hooks(&mut self) -> &mut ::protobuf::RepeatedField<super::hook::Hook> {
        &mut self.hooks
    }

    // Take field
    pub fn take_hooks(&mut self) -> ::protobuf::RepeatedField<super::hook::Hook> {
        ::std::mem::replace(&mut self.hooks, ::protobuf::RepeatedField::new())
    }

    // int32 version = 7;


    pub fn get_version(&self) -> i32 {
        self.version
    }
    pub fn clear_version(&mut self) {
        self.version = 0;
    }

    // Param is passed by value, moved
    pub fn set_version(&mut self, v: i32) {
        self.version = v;
    }

    // string namespace = 8;


    pub fn get_namespace(&self) -> &str {
        &self.namespace
    }
    pub fn clear_namespace(&mut self) {
        self.namespace.clear();
    }

    // Param is passed by value, moved
    pub fn set_namespace(&mut self, v: ::std::string::String) {
        self.namespace = v;
    }

    // Mutable pointer to the field.
    // If field is not initialized, it is initialized with default value first.
    pub fn mut_namespace(&mut self) -> &mut ::std::string::String {
        &mut self.namespace
    }

    // Take field
    pub fn take_namespace(&mut self) -> ::std::string::String {
        ::std::mem::replace(&mut self.namespace, ::std::string::String::new())
    }
}

impl ::protobuf::Message for Release {
    fn is_initialized(&self) -> bool {
        for v in &self.info {
            if !v.is_initialized() {
                return false;
            }
        };
        for v in &self.chart {
            if !v.is_initialized() {
                return false;
            }
        };
        for v in &self.config {
            if !v.is_initialized() {
                return false;
            }
        };
        for v in &self.hooks {
            if !v.is_initialized() {
                return false;
            }
        };
        true
    }

    fn merge_from(&mut self, is: &mut ::protobuf::CodedInputStream) -> ::protobuf::ProtobufResult<()> {
        while !is.eof()? {
            let (field_number, wire_type) = is.read_tag_unpack()?;
            match field_number {
                1 => {
                    ::protobuf::rt::read_singular_proto3_string_into(wire_type, is, &mut self.name)?;
                },
                2 => {
                    ::protobuf::rt::read_singular_message_into(wire_type, is, &mut self.info)?;
                },
                3 => {
                    ::protobuf::rt::read_singular_message_into(wire_type, is, &mut self.chart)?;
                },
                4 => {
                    ::protobuf::rt::read_singular_message_into(wire_type, is, &mut self.config)?;
                },
                5 => {
                    ::protobuf::rt::read_singular_proto3_string_into(wire_type, is, &mut self.manifest)?;
                },
                6 => {
                    ::protobuf::rt::read_repeated_message_into(wire_type, is, &mut self.hooks)?;
                },
                7 => {
                    if wire_type != ::protobuf::wire_format::WireTypeVarint {
                        return ::std::result::Result::Err(::protobuf::rt::unexpected_wire_type(wire_type));
                    }
                    let tmp = is.read_int32()?;
                    self.version = tmp;
                },
                8 => {
                    ::protobuf::rt::read_singular_proto3_string_into(wire_type, is, &mut self.namespace)?;
                },
                _ => {
                    ::protobuf::rt::read_unknown_or_skip_group(field_number, wire_type, is, self.mut_unknown_fields())?;
                },
            };
        }
        ::std::result::Result::Ok(())
    }

    // Compute sizes of nested messages
    #[allow(unused_variables)]
    fn compute_size(&self) -> u32 {
        let mut my_size = 0;
        if !self.name.is_empty() {
            my_size += ::protobuf::rt::string_size(1, &self.name);
        }
        if let Some(ref v) = self.info.as_ref() {
            let len = v.compute_size();
            my_size += 1 + ::protobuf::rt::compute_raw_varint32_size(len) + len;
        }
        if let Some(ref v) = self.chart.as_ref() {
            let len = v.compute_size();
            my_size += 1 + ::protobuf::rt::compute_raw_varint32_size(len) + len;
        }
        if let Some(ref v) = self.config.as_ref() {
            let len = v.compute_size();
            my_size += 1 + ::protobuf::rt::compute_raw_varint32_size(len) + len;
        }
        if !self.manifest.is_empty() {
            my_size += ::protobuf::rt::string_size(5, &self.manifest);
        }
        for value in &self.hooks {
            let len = value.compute_size();
            my_size += 1 + ::protobuf::rt::compute_raw_varint32_size(len) + len;
        };
        if self.version != 0 {
            my_size += ::protobuf::rt::value_size(7, self.version, ::protobuf::wire_format::WireTypeVarint);
        }
        if !self.namespace.is_empty() {
            my_size += ::protobuf::rt::string_size(8, &self.namespace);
        }
        my_size += ::protobuf::rt::unknown_fields_size(self.get_unknown_fields());
        self.cached_size.set(my_size);
        my_size
    }

    fn write_to_with_cached_sizes(&self, os: &mut ::protobuf::CodedOutputStream) -> ::protobuf::ProtobufResult<()> {
        if !self.name.is_empty() {
            os.write_string(1, &self.name)?;
        }
        if let Some(ref v) = self.info.as_ref() {
            os.write_tag(2, ::protobuf::wire_format::WireTypeLengthDelimited)?;
            os.write_raw_varint32(v.get_cached_size())?;
            v.write_to_with_cached_sizes(os)?;
        }
        if let Some(ref v) = self.chart.as_ref() {
            os.write_tag(3, ::protobuf::wire_format::WireTypeLengthDelimited)?;
            os.write_raw_varint32(v.get_cached_size())?;
            v.write_to_with_cached_sizes(os)?;
        }
        if let Some(ref v) = self.config.as_ref() {
            os.write_tag(4, ::protobuf::wire_format::WireTypeLengthDelimited)?;
            os.write_raw_varint32(v.get_cached_size())?;
            v.write_to_with_cached_sizes(os)?;
        }
        if !self.manifest.is_empty() {
            os.write_string(5, &self.manifest)?;
        }
        for v in &self.hooks {
            os.write_tag(6, ::protobuf::wire_format::WireTypeLengthDelimited)?;
            os.write_raw_varint32(v.get_cached_size())?;
            v.write_to_with_cached_sizes(os)?;
        };
        if self.version != 0 {
            os.write_int32(7, self.version)?;
        }
        if !self.namespace.is_empty() {
            os.write_string(8, &self.namespace)?;
        }
        os.write_unknown_fields(self.get_unknown_fields())?;
        ::std::result::Result::Ok(())
    }

    fn get_cached_size(&self) -> u32 {
        self.cached_size.get()
    }

    fn get_unknown_fields(&self) -> &::protobuf::UnknownFields {
        &self.unknown_fields
    }

    fn mut_unknown_fields(&mut self) -> &mut ::protobuf::UnknownFields {
        &mut self.unknown_fields
    }

    fn as_any(&self) -> &::std::any::Any {
        self as &::std::any::Any
    }
    fn as_any_mut(&mut self) -> &mut ::std::any::Any {
        self as &mut ::std::any::Any
    }
    fn into_any(self: Box<Self>) -> ::std::boxed::Box<::std::any::Any> {
        self
    }

    fn descriptor(&self) -> &'static ::protobuf::reflect::MessageDescriptor {
        Self::descriptor_static()
    }

    fn new() -> Release {
        Release::new()
    }

    fn descriptor_static() -> &'static ::protobuf::reflect::MessageDescriptor {
        static mut descriptor: ::protobuf::lazy::Lazy<::protobuf::reflect::MessageDescriptor> = ::protobuf::lazy::Lazy {
            lock: ::protobuf::lazy::ONCE_INIT,
            ptr: 0 as *const ::protobuf::reflect::MessageDescriptor,
        };
        unsafe {
            descriptor.get(|| {
                let mut fields = ::std::vec::Vec::new();
                fields.push(::protobuf::reflect::accessor::make_simple_field_accessor::<_, ::protobuf::types::ProtobufTypeString>(
                    "name",
                    |m: &Release| { &m.name },
                    |m: &mut Release| { &mut m.name },
                ));
                fields.push(::protobuf::reflect::accessor::make_singular_ptr_field_accessor::<_, ::protobuf::types::ProtobufTypeMessage<super::info::Info>>(
                    "info",
                    |m: &Release| { &m.info },
                    |m: &mut Release| { &mut m.info },
                ));
                fields.push(::protobuf::reflect::accessor::make_singular_ptr_field_accessor::<_, ::protobuf::types::ProtobufTypeMessage<super::chart::Chart>>(
                    "chart",
                    |m: &Release| { &m.chart },
                    |m: &mut Release| { &mut m.chart },
                ));
                fields.push(::protobuf::reflect::accessor::make_singular_ptr_field_accessor::<_, ::protobuf::types::ProtobufTypeMessage<super::config::Config>>(
                    "config",
                    |m: &Release| { &m.config },
                    |m: &mut Release| { &mut m.config },
                ));
                fields.push(::protobuf::reflect::accessor::make_simple_field_accessor::<_, ::protobuf::types::ProtobufTypeString>(
                    "manifest",
                    |m: &Release| { &m.manifest },
                    |m: &mut Release| { &mut m.manifest },
                ));
                fields.push(::protobuf::reflect::accessor::make_repeated_field_accessor::<_, ::protobuf::types::ProtobufTypeMessage<super::hook::Hook>>(
                    "hooks",
                    |m: &Release| { &m.hooks },
                    |m: &mut Release| { &mut m.hooks },
                ));
                fields.push(::protobuf::reflect::accessor::make_simple_field_accessor::<_, ::protobuf::types::ProtobufTypeInt32>(
                    "version",
                    |m: &Release| { &m.version },
                    |m: &mut Release| { &mut m.version },
                ));
                fields.push(::protobuf::reflect::accessor::make_simple_field_accessor::<_, ::protobuf::types::ProtobufTypeString>(
                    "namespace",
                    |m: &Release| { &m.namespace },
                    |m: &mut Release| { &mut m.namespace },
                ));
                ::protobuf::reflect::MessageDescriptor::new::<Release>(
                    "Release",
                    fields,
                    file_descriptor_proto()
                )
            })
        }
    }

    fn default_instance() -> &'static Release {
        static mut instance: ::protobuf::lazy::Lazy<Release> = ::protobuf::lazy::Lazy {
            lock: ::protobuf::lazy::ONCE_INIT,
            ptr: 0 as *const Release,
        };
        unsafe {
            instance.get(Release::new)
        }
    }
}

impl ::protobuf::Clear for Release {
    fn clear(&mut self) {
        self.name.clear();
        self.info.clear();
        self.chart.clear();
        self.config.clear();
        self.manifest.clear();
        self.hooks.clear();
        self.version = 0;
        self.namespace.clear();
        self.unknown_fields.clear();
    }
}

impl ::std::fmt::Debug for Release {
    fn fmt(&self, f: &mut ::std::fmt::Formatter) -> ::std::fmt::Result {
        ::protobuf::text_format::fmt(self, f)
    }
}

impl ::protobuf::reflect::ProtobufValue for Release {
    fn as_ref(&self) -> ::protobuf::reflect::ProtobufValueRef {
        ::protobuf::reflect::ProtobufValueRef::Message(self)
    }
}

static file_descriptor_proto_data: &'static [u8] = b"\
    \n\x1ahapi/release/release.proto\x12\x0chapi.release\x1a\x17hapi/release\
    /hook.proto\x1a\x17hapi/release/info.proto\x1a\x17hapi/chart/config.prot\
    o\x1a\x16hapi/chart/chart.proto\"\x98\x02\n\x07Release\x12\x12\n\x04name\
    \x18\x01\x20\x01(\tR\x04name\x12&\n\x04info\x18\x02\x20\x01(\x0b2\x12.ha\
    pi.release.InfoR\x04info\x12'\n\x05chart\x18\x03\x20\x01(\x0b2\x11.hapi.\
    chart.ChartR\x05chart\x12*\n\x06config\x18\x04\x20\x01(\x0b2\x12.hapi.ch\
    art.ConfigR\x06config\x12\x1a\n\x08manifest\x18\x05\x20\x01(\tR\x08manif\
    est\x12(\n\x05hooks\x18\x06\x20\x03(\x0b2\x12.hapi.release.HookR\x05hook\
    s\x12\x18\n\x07version\x18\x07\x20\x01(\x05R\x07version\x12\x1c\n\tnames\
    pace\x18\x08\x20\x01(\tR\tnamespaceB\tZ\x07releaseb\x06proto3\
";

static mut file_descriptor_proto_lazy: ::protobuf::lazy::Lazy<::protobuf::descriptor::FileDescriptorProto> = ::protobuf::lazy::Lazy {
    lock: ::protobuf::lazy::ONCE_INIT,
    ptr: 0 as *const ::protobuf::descriptor::FileDescriptorProto,
};

fn parse_descriptor_proto() -> ::protobuf::descriptor::FileDescriptorProto {
    ::protobuf::parse_from_bytes(file_descriptor_proto_data).unwrap()
}

pub fn file_descriptor_proto() -> &'static ::protobuf::descriptor::FileDescriptorProto {
    unsafe {
        file_descriptor_proto_lazy.get(|| {
            parse_descriptor_proto()
        })
    }
}