#![allow(unknown_lints)]
#![allow(clippy::all)]
#![allow(unused_attributes)]
#![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(unused_imports)]
#![allow(unused_results)]
#[derive(PartialEq,Clone,Default)]
pub struct Blob {
raw_size: ::std::option::Option<i32>,
pub data: ::std::option::Option<Blob_oneof_data>,
pub unknown_fields: ::protobuf::UnknownFields,
pub cached_size: ::protobuf::CachedSize,
}
impl<'a> ::std::default::Default for &'a Blob {
fn default() -> &'a Blob {
<Blob as ::protobuf::Message>::default_instance()
}
}
#[derive(Clone,PartialEq,Debug)]
pub enum Blob_oneof_data {
raw(::std::vec::Vec<u8>),
zlib_data(::std::vec::Vec<u8>),
lzma_data(::std::vec::Vec<u8>),
OBSOLETE_bzip2_data(::std::vec::Vec<u8>),
lz4_data(::std::vec::Vec<u8>),
zstd_data(::std::vec::Vec<u8>),
}
impl Blob {
pub fn new() -> Blob {
::std::default::Default::default()
}
pub fn get_raw_size(&self) -> i32 {
self.raw_size.unwrap_or(0)
}
pub fn clear_raw_size(&mut self) {
self.raw_size = ::std::option::Option::None;
}
pub fn has_raw_size(&self) -> bool {
self.raw_size.is_some()
}
pub fn set_raw_size(&mut self, v: i32) {
self.raw_size = ::std::option::Option::Some(v);
}
pub fn get_raw(&self) -> &[u8] {
match self.data {
::std::option::Option::Some(Blob_oneof_data::raw(ref v)) => v,
_ => &[],
}
}
pub fn clear_raw(&mut self) {
self.data = ::std::option::Option::None;
}
pub fn has_raw(&self) -> bool {
match self.data {
::std::option::Option::Some(Blob_oneof_data::raw(..)) => true,
_ => false,
}
}
pub fn set_raw(&mut self, v: ::std::vec::Vec<u8>) {
self.data = ::std::option::Option::Some(Blob_oneof_data::raw(v))
}
pub fn mut_raw(&mut self) -> &mut ::std::vec::Vec<u8> {
if let ::std::option::Option::Some(Blob_oneof_data::raw(_)) = self.data {
} else {
self.data = ::std::option::Option::Some(Blob_oneof_data::raw(::std::vec::Vec::new()));
}
match self.data {
::std::option::Option::Some(Blob_oneof_data::raw(ref mut v)) => v,
_ => panic!(),
}
}
pub fn take_raw(&mut self) -> ::std::vec::Vec<u8> {
if self.has_raw() {
match self.data.take() {
::std::option::Option::Some(Blob_oneof_data::raw(v)) => v,
_ => panic!(),
}
} else {
::std::vec::Vec::new()
}
}
pub fn get_zlib_data(&self) -> &[u8] {
match self.data {
::std::option::Option::Some(Blob_oneof_data::zlib_data(ref v)) => v,
_ => &[],
}
}
pub fn clear_zlib_data(&mut self) {
self.data = ::std::option::Option::None;
}
pub fn has_zlib_data(&self) -> bool {
match self.data {
::std::option::Option::Some(Blob_oneof_data::zlib_data(..)) => true,
_ => false,
}
}
pub fn set_zlib_data(&mut self, v: ::std::vec::Vec<u8>) {
self.data = ::std::option::Option::Some(Blob_oneof_data::zlib_data(v))
}
pub fn mut_zlib_data(&mut self) -> &mut ::std::vec::Vec<u8> {
if let ::std::option::Option::Some(Blob_oneof_data::zlib_data(_)) = self.data {
} else {
self.data = ::std::option::Option::Some(Blob_oneof_data::zlib_data(::std::vec::Vec::new()));
}
match self.data {
::std::option::Option::Some(Blob_oneof_data::zlib_data(ref mut v)) => v,
_ => panic!(),
}
}
pub fn take_zlib_data(&mut self) -> ::std::vec::Vec<u8> {
if self.has_zlib_data() {
match self.data.take() {
::std::option::Option::Some(Blob_oneof_data::zlib_data(v)) => v,
_ => panic!(),
}
} else {
::std::vec::Vec::new()
}
}
pub fn get_lzma_data(&self) -> &[u8] {
match self.data {
::std::option::Option::Some(Blob_oneof_data::lzma_data(ref v)) => v,
_ => &[],
}
}
pub fn clear_lzma_data(&mut self) {
self.data = ::std::option::Option::None;
}
pub fn has_lzma_data(&self) -> bool {
match self.data {
::std::option::Option::Some(Blob_oneof_data::lzma_data(..)) => true,
_ => false,
}
}
pub fn set_lzma_data(&mut self, v: ::std::vec::Vec<u8>) {
self.data = ::std::option::Option::Some(Blob_oneof_data::lzma_data(v))
}
pub fn mut_lzma_data(&mut self) -> &mut ::std::vec::Vec<u8> {
if let ::std::option::Option::Some(Blob_oneof_data::lzma_data(_)) = self.data {
} else {
self.data = ::std::option::Option::Some(Blob_oneof_data::lzma_data(::std::vec::Vec::new()));
}
match self.data {
::std::option::Option::Some(Blob_oneof_data::lzma_data(ref mut v)) => v,
_ => panic!(),
}
}
pub fn take_lzma_data(&mut self) -> ::std::vec::Vec<u8> {
if self.has_lzma_data() {
match self.data.take() {
::std::option::Option::Some(Blob_oneof_data::lzma_data(v)) => v,
_ => panic!(),
}
} else {
::std::vec::Vec::new()
}
}
pub fn get_OBSOLETE_bzip2_data(&self) -> &[u8] {
match self.data {
::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(ref v)) => v,
_ => &[],
}
}
pub fn clear_OBSOLETE_bzip2_data(&mut self) {
self.data = ::std::option::Option::None;
}
pub fn has_OBSOLETE_bzip2_data(&self) -> bool {
match self.data {
::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(..)) => true,
_ => false,
}
}
pub fn set_OBSOLETE_bzip2_data(&mut self, v: ::std::vec::Vec<u8>) {
self.data = ::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(v))
}
pub fn mut_OBSOLETE_bzip2_data(&mut self) -> &mut ::std::vec::Vec<u8> {
if let ::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(_)) = self.data {
} else {
self.data = ::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(::std::vec::Vec::new()));
}
match self.data {
::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(ref mut v)) => v,
_ => panic!(),
}
}
pub fn take_OBSOLETE_bzip2_data(&mut self) -> ::std::vec::Vec<u8> {
if self.has_OBSOLETE_bzip2_data() {
match self.data.take() {
::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(v)) => v,
_ => panic!(),
}
} else {
::std::vec::Vec::new()
}
}
pub fn get_lz4_data(&self) -> &[u8] {
match self.data {
::std::option::Option::Some(Blob_oneof_data::lz4_data(ref v)) => v,
_ => &[],
}
}
pub fn clear_lz4_data(&mut self) {
self.data = ::std::option::Option::None;
}
pub fn has_lz4_data(&self) -> bool {
match self.data {
::std::option::Option::Some(Blob_oneof_data::lz4_data(..)) => true,
_ => false,
}
}
pub fn set_lz4_data(&mut self, v: ::std::vec::Vec<u8>) {
self.data = ::std::option::Option::Some(Blob_oneof_data::lz4_data(v))
}
pub fn mut_lz4_data(&mut self) -> &mut ::std::vec::Vec<u8> {
if let ::std::option::Option::Some(Blob_oneof_data::lz4_data(_)) = self.data {
} else {
self.data = ::std::option::Option::Some(Blob_oneof_data::lz4_data(::std::vec::Vec::new()));
}
match self.data {
::std::option::Option::Some(Blob_oneof_data::lz4_data(ref mut v)) => v,
_ => panic!(),
}
}
pub fn take_lz4_data(&mut self) -> ::std::vec::Vec<u8> {
if self.has_lz4_data() {
match self.data.take() {
::std::option::Option::Some(Blob_oneof_data::lz4_data(v)) => v,
_ => panic!(),
}
} else {
::std::vec::Vec::new()
}
}
pub fn get_zstd_data(&self) -> &[u8] {
match self.data {
::std::option::Option::Some(Blob_oneof_data::zstd_data(ref v)) => v,
_ => &[],
}
}
pub fn clear_zstd_data(&mut self) {
self.data = ::std::option::Option::None;
}
pub fn has_zstd_data(&self) -> bool {
match self.data {
::std::option::Option::Some(Blob_oneof_data::zstd_data(..)) => true,
_ => false,
}
}
pub fn set_zstd_data(&mut self, v: ::std::vec::Vec<u8>) {
self.data = ::std::option::Option::Some(Blob_oneof_data::zstd_data(v))
}
pub fn mut_zstd_data(&mut self) -> &mut ::std::vec::Vec<u8> {
if let ::std::option::Option::Some(Blob_oneof_data::zstd_data(_)) = self.data {
} else {
self.data = ::std::option::Option::Some(Blob_oneof_data::zstd_data(::std::vec::Vec::new()));
}
match self.data {
::std::option::Option::Some(Blob_oneof_data::zstd_data(ref mut v)) => v,
_ => panic!(),
}
}
pub fn take_zstd_data(&mut self) -> ::std::vec::Vec<u8> {
if self.has_zstd_data() {
match self.data.take() {
::std::option::Option::Some(Blob_oneof_data::zstd_data(v)) => v,
_ => panic!(),
}
} else {
::std::vec::Vec::new()
}
}
}
impl ::protobuf::Message for Blob {
fn is_initialized(&self) -> bool {
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 {
2 => {
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.raw_size = ::std::option::Option::Some(tmp);
},
1 => {
if wire_type != ::protobuf::wire_format::WireTypeLengthDelimited {
return ::std::result::Result::Err(::protobuf::rt::unexpected_wire_type(wire_type));
}
self.data = ::std::option::Option::Some(Blob_oneof_data::raw(is.read_bytes()?));
},
3 => {
if wire_type != ::protobuf::wire_format::WireTypeLengthDelimited {
return ::std::result::Result::Err(::protobuf::rt::unexpected_wire_type(wire_type));
}
self.data = ::std::option::Option::Some(Blob_oneof_data::zlib_data(is.read_bytes()?));
},
4 => {
if wire_type != ::protobuf::wire_format::WireTypeLengthDelimited {
return ::std::result::Result::Err(::protobuf::rt::unexpected_wire_type(wire_type));
}
self.data = ::std::option::Option::Some(Blob_oneof_data::lzma_data(is.read_bytes()?));
},
5 => {
if wire_type != ::protobuf::wire_format::WireTypeLengthDelimited {
return ::std::result::Result::Err(::protobuf::rt::unexpected_wire_type(wire_type));
}
self.data = ::std::option::Option::Some(Blob_oneof_data::OBSOLETE_bzip2_data(is.read_bytes()?));
},
6 => {
if wire_type != ::protobuf::wire_format::WireTypeLengthDelimited {
return ::std::result::Result::Err(::protobuf::rt::unexpected_wire_type(wire_type));
}
self.data = ::std::option::Option::Some(Blob_oneof_data::lz4_data(is.read_bytes()?));
},
7 => {
if wire_type != ::protobuf::wire_format::WireTypeLengthDelimited {
return ::std::result::Result::Err(::protobuf::rt::unexpected_wire_type(wire_type));
}
self.data = ::std::option::Option::Some(Blob_oneof_data::zstd_data(is.read_bytes()?));
},
_ => {
::protobuf::rt::read_unknown_or_skip_group(field_number, wire_type, is, self.mut_unknown_fields())?;
},
};
}
::std::result::Result::Ok(())
}
#[allow(unused_variables)]
fn compute_size(&self) -> u32 {
let mut my_size = 0;
if let Some(v) = self.raw_size {
my_size += ::protobuf::rt::value_size(2, v, ::protobuf::wire_format::WireTypeVarint);
}
if let ::std::option::Option::Some(ref v) = self.data {
match v {
&Blob_oneof_data::raw(ref v) => {
my_size += ::protobuf::rt::bytes_size(1, &v);
},
&Blob_oneof_data::zlib_data(ref v) => {
my_size += ::protobuf::rt::bytes_size(3, &v);
},
&Blob_oneof_data::lzma_data(ref v) => {
my_size += ::protobuf::rt::bytes_size(4, &v);
},
&Blob_oneof_data::OBSOLETE_bzip2_data(ref v) => {
my_size += ::protobuf::rt::bytes_size(5, &v);
},
&Blob_oneof_data::lz4_data(ref v) => {
my_size += ::protobuf::rt::bytes_size(6, &v);
},
&Blob_oneof_data::zstd_data(ref v) => {
my_size += ::protobuf::rt::bytes_size(7, &v);
},
};
}
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 let Some(v) = self.raw_size {
os.write_int32(2, v)?;
}
if let ::std::option::Option::Some(ref v) = self.data {
match v {
&Blob_oneof_data::raw(ref v) => {
os.write_bytes(1, v)?;
},
&Blob_oneof_data::zlib_data(ref v) => {
os.write_bytes(3, v)?;
},
&Blob_oneof_data::lzma_data(ref v) => {
os.write_bytes(4, v)?;
},
&Blob_oneof_data::OBSOLETE_bzip2_data(ref v) => {
os.write_bytes(5, v)?;
},
&Blob_oneof_data::lz4_data(ref v) => {
os.write_bytes(6, v)?;
},
&Blob_oneof_data::zstd_data(ref v) => {
os.write_bytes(7, v)?;
},
};
}
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) -> &dyn (::std::any::Any) {
self as &dyn (::std::any::Any)
}
fn as_any_mut(&mut self) -> &mut dyn (::std::any::Any) {
self as &mut dyn (::std::any::Any)
}
fn into_any(self: ::std::boxed::Box<Self>) -> ::std::boxed::Box<dyn (::std::any::Any)> {
self
}
fn descriptor(&self) -> &'static ::protobuf::reflect::MessageDescriptor {
Self::descriptor_static()
}
fn new() -> Blob {
Blob::new()
}
fn descriptor_static() -> &'static ::protobuf::reflect::MessageDescriptor {
static descriptor: ::protobuf::rt::LazyV2<::protobuf::reflect::MessageDescriptor> = ::protobuf::rt::LazyV2::INIT;
descriptor.get(|| {
let mut fields = ::std::vec::Vec::new();
fields.push(::protobuf::reflect::accessor::make_option_accessor::<_, ::protobuf::types::ProtobufTypeInt32>(
"raw_size",
|m: &Blob| { &m.raw_size },
|m: &mut Blob| { &mut m.raw_size },
));
fields.push(::protobuf::reflect::accessor::make_singular_bytes_accessor::<_>(
"raw",
Blob::has_raw,
Blob::get_raw,
));
fields.push(::protobuf::reflect::accessor::make_singular_bytes_accessor::<_>(
"zlib_data",
Blob::has_zlib_data,
Blob::get_zlib_data,
));
fields.push(::protobuf::reflect::accessor::make_singular_bytes_accessor::<_>(
"lzma_data",
Blob::has_lzma_data,
Blob::get_lzma_data,
));
fields.push(::protobuf::reflect::accessor::make_singular_bytes_accessor::<_>(
"OBSOLETE_bzip2_data",
Blob::has_OBSOLETE_bzip2_data,
Blob::get_OBSOLETE_bzip2_data,
));
fields.push(::protobuf::reflect::accessor::make_singular_bytes_accessor::<_>(
"lz4_data",
Blob::has_lz4_data,
Blob::get_lz4_data,
));
fields.push(::protobuf::reflect::accessor::make_singular_bytes_accessor::<_>(
"zstd_data",
Blob::has_zstd_data,
Blob::get_zstd_data,
));
::protobuf::reflect::MessageDescriptor::new_pb_name::<Blob>(
"Blob",
fields,
file_descriptor_proto()
)
})
}
fn default_instance() -> &'static Blob {
static instance: ::protobuf::rt::LazyV2<Blob> = ::protobuf::rt::LazyV2::INIT;
instance.get(Blob::new)
}
}
impl ::protobuf::Clear for Blob {
fn clear(&mut self) {
self.raw_size = ::std::option::Option::None;
self.data = ::std::option::Option::None;
self.data = ::std::option::Option::None;
self.data = ::std::option::Option::None;
self.data = ::std::option::Option::None;
self.data = ::std::option::Option::None;
self.data = ::std::option::Option::None;
self.unknown_fields.clear();
}
}
impl ::std::fmt::Debug for Blob {
fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> ::std::fmt::Result {
::protobuf::text_format::fmt(self, f)
}
}
impl ::protobuf::reflect::ProtobufValue for Blob {
fn as_ref(&self) -> ::protobuf::reflect::ReflectValueRef {
::protobuf::reflect::ReflectValueRef::Message(self)
}
}
#[derive(PartialEq,Clone,Default)]
pub struct BlobHeader {
field_type: ::protobuf::SingularField<::std::string::String>,
indexdata: ::protobuf::SingularField<::std::vec::Vec<u8>>,
datasize: ::std::option::Option<i32>,
pub unknown_fields: ::protobuf::UnknownFields,
pub cached_size: ::protobuf::CachedSize,
}
impl<'a> ::std::default::Default for &'a BlobHeader {
fn default() -> &'a BlobHeader {
<BlobHeader as ::protobuf::Message>::default_instance()
}
}
impl BlobHeader {
pub fn new() -> BlobHeader {
::std::default::Default::default()
}
pub fn get_field_type(&self) -> &str {
match self.field_type.as_ref() {
Some(v) => &v,
None => "",
}
}
pub fn clear_field_type(&mut self) {
self.field_type.clear();
}
pub fn has_field_type(&self) -> bool {
self.field_type.is_some()
}
pub fn set_field_type(&mut self, v: ::std::string::String) {
self.field_type = ::protobuf::SingularField::some(v);
}
pub fn mut_field_type(&mut self) -> &mut ::std::string::String {
if self.field_type.is_none() {
self.field_type.set_default();
}
self.field_type.as_mut().unwrap()
}
pub fn take_field_type(&mut self) -> ::std::string::String {
self.field_type.take().unwrap_or_else(|| ::std::string::String::new())
}
pub fn get_indexdata(&self) -> &[u8] {
match self.indexdata.as_ref() {
Some(v) => &v,
None => &[],
}
}
pub fn clear_indexdata(&mut self) {
self.indexdata.clear();
}
pub fn has_indexdata(&self) -> bool {
self.indexdata.is_some()
}
pub fn set_indexdata(&mut self, v: ::std::vec::Vec<u8>) {
self.indexdata = ::protobuf::SingularField::some(v);
}
pub fn mut_indexdata(&mut self) -> &mut ::std::vec::Vec<u8> {
if self.indexdata.is_none() {
self.indexdata.set_default();
}
self.indexdata.as_mut().unwrap()
}
pub fn take_indexdata(&mut self) -> ::std::vec::Vec<u8> {
self.indexdata.take().unwrap_or_else(|| ::std::vec::Vec::new())
}
pub fn get_datasize(&self) -> i32 {
self.datasize.unwrap_or(0)
}
pub fn clear_datasize(&mut self) {
self.datasize = ::std::option::Option::None;
}
pub fn has_datasize(&self) -> bool {
self.datasize.is_some()
}
pub fn set_datasize(&mut self, v: i32) {
self.datasize = ::std::option::Option::Some(v);
}
}
impl ::protobuf::Message for BlobHeader {
fn is_initialized(&self) -> bool {
if self.field_type.is_none() {
return false;
}
if self.datasize.is_none() {
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_string_into(wire_type, is, &mut self.field_type)?;
},
2 => {
::protobuf::rt::read_singular_bytes_into(wire_type, is, &mut self.indexdata)?;
},
3 => {
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.datasize = ::std::option::Option::Some(tmp);
},
_ => {
::protobuf::rt::read_unknown_or_skip_group(field_number, wire_type, is, self.mut_unknown_fields())?;
},
};
}
::std::result::Result::Ok(())
}
#[allow(unused_variables)]
fn compute_size(&self) -> u32 {
let mut my_size = 0;
if let Some(ref v) = self.field_type.as_ref() {
my_size += ::protobuf::rt::string_size(1, &v);
}
if let Some(ref v) = self.indexdata.as_ref() {
my_size += ::protobuf::rt::bytes_size(2, &v);
}
if let Some(v) = self.datasize {
my_size += ::protobuf::rt::value_size(3, v, ::protobuf::wire_format::WireTypeVarint);
}
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 let Some(ref v) = self.field_type.as_ref() {
os.write_string(1, &v)?;
}
if let Some(ref v) = self.indexdata.as_ref() {
os.write_bytes(2, &v)?;
}
if let Some(v) = self.datasize {
os.write_int32(3, v)?;
}
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) -> &dyn (::std::any::Any) {
self as &dyn (::std::any::Any)
}
fn as_any_mut(&mut self) -> &mut dyn (::std::any::Any) {
self as &mut dyn (::std::any::Any)
}
fn into_any(self: ::std::boxed::Box<Self>) -> ::std::boxed::Box<dyn (::std::any::Any)> {
self
}
fn descriptor(&self) -> &'static ::protobuf::reflect::MessageDescriptor {
Self::descriptor_static()
}
fn new() -> BlobHeader {
BlobHeader::new()
}
fn descriptor_static() -> &'static ::protobuf::reflect::MessageDescriptor {
static descriptor: ::protobuf::rt::LazyV2<::protobuf::reflect::MessageDescriptor> = ::protobuf::rt::LazyV2::INIT;
descriptor.get(|| {
let mut fields = ::std::vec::Vec::new();
fields.push(::protobuf::reflect::accessor::make_singular_field_accessor::<_, ::protobuf::types::ProtobufTypeString>(
"type",
|m: &BlobHeader| { &m.field_type },
|m: &mut BlobHeader| { &mut m.field_type },
));
fields.push(::protobuf::reflect::accessor::make_singular_field_accessor::<_, ::protobuf::types::ProtobufTypeBytes>(
"indexdata",
|m: &BlobHeader| { &m.indexdata },
|m: &mut BlobHeader| { &mut m.indexdata },
));
fields.push(::protobuf::reflect::accessor::make_option_accessor::<_, ::protobuf::types::ProtobufTypeInt32>(
"datasize",
|m: &BlobHeader| { &m.datasize },
|m: &mut BlobHeader| { &mut m.datasize },
));
::protobuf::reflect::MessageDescriptor::new_pb_name::<BlobHeader>(
"BlobHeader",
fields,
file_descriptor_proto()
)
})
}
fn default_instance() -> &'static BlobHeader {
static instance: ::protobuf::rt::LazyV2<BlobHeader> = ::protobuf::rt::LazyV2::INIT;
instance.get(BlobHeader::new)
}
}
impl ::protobuf::Clear for BlobHeader {
fn clear(&mut self) {
self.field_type.clear();
self.indexdata.clear();
self.datasize = ::std::option::Option::None;
self.unknown_fields.clear();
}
}
impl ::std::fmt::Debug for BlobHeader {
fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> ::std::fmt::Result {
::protobuf::text_format::fmt(self, f)
}
}
impl ::protobuf::reflect::ProtobufValue for BlobHeader {
fn as_ref(&self) -> ::protobuf::reflect::ReflectValueRef {
::protobuf::reflect::ReflectValueRef::Message(self)
}
}
static file_descriptor_proto_data: &'static [u8] = b"\
\n\x10fileformat.proto\x12\x06OSMPBF\"\xfb\x01\n\x04Blob\x12\x1b\n\x08ra\
w_size\x18\x02\x20\x01(\x05R\x07rawSizeB\0\x12\x14\n\x03raw\x18\x01\x20\
\x01(\x0cH\0R\x03rawB\0\x12\x1f\n\tzlib_data\x18\x03\x20\x01(\x0cH\0R\
\x08zlibDataB\0\x12\x1f\n\tlzma_data\x18\x04\x20\x01(\x0cH\0R\x08lzmaDat\
aB\0\x124\n\x13OBSOLETE_bzip2_data\x18\x05\x20\x01(\x0cH\0R\x11OBSOLETEB\
zip2DataB\x02\x18\x01\x12\x1d\n\x08lz4_data\x18\x06\x20\x01(\x0cH\0R\x07\
lz4DataB\0\x12\x1f\n\tzstd_data\x18\x07\x20\x01(\x0cH\0R\x08zstdDataB\0B\
\x06\n\x04data:\0\"b\n\nBlobHeader\x12\x14\n\x04type\x18\x01\x20\x02(\tR\
\x04typeB\0\x12\x1e\n\tindexdata\x18\x02\x20\x01(\x0cR\tindexdataB\0\x12\
\x1c\n\x08datasize\x18\x03\x20\x02(\x05R\x08datasizeB\0:\0B\0b\x06proto2\
";
static file_descriptor_proto_lazy: ::protobuf::rt::LazyV2<::protobuf::descriptor::FileDescriptorProto> = ::protobuf::rt::LazyV2::INIT;
fn parse_descriptor_proto() -> ::protobuf::descriptor::FileDescriptorProto {
::protobuf::Message::parse_from_bytes(file_descriptor_proto_data).unwrap()
}
pub fn file_descriptor_proto() -> &'static ::protobuf::descriptor::FileDescriptorProto {
file_descriptor_proto_lazy.get(|| {
parse_descriptor_proto()
})
}