mirror of
https://github.com/fluencelabs/rust-libp2p
synced 2025-06-23 23:01:33 +00:00
Replace protobuf crate with prost! (#1390)
* Replace protobuf crate with prost! * Add copyright headers to build.rs files. * kad: Fix error when mapping connection types. Co-Authored-By: Pierre Krieger <pierre.krieger1708@gmail.com> * Fix more mapping mistakes. Co-authored-by: Pierre Krieger <pierre.krieger1708@gmail.com>
This commit is contained in:
committed by
Pierre Krieger
parent
9d2df148cd
commit
680c467f7e
@ -149,62 +149,67 @@ impl PublicKey {
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/// Encode the public key into a protobuf structure for storage or
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/// exchange with other nodes.
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pub fn into_protobuf_encoding(self) -> Vec<u8> {
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use protobuf::Message;
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let mut public_key = keys_proto::PublicKey::new();
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match self {
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PublicKey::Ed25519(key) => {
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public_key.set_Type(keys_proto::KeyType::Ed25519);
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public_key.set_Data(key.encode().to_vec());
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},
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use prost::Message;
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let public_key = match self {
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PublicKey::Ed25519(key) =>
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keys_proto::PublicKey {
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r#type: keys_proto::KeyType::Ed25519 as i32,
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data: key.encode().to_vec()
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},
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#[cfg(not(any(target_os = "emscripten", target_os = "unknown")))]
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PublicKey::Rsa(key) => {
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public_key.set_Type(keys_proto::KeyType::RSA);
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public_key.set_Data(key.encode_x509());
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},
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PublicKey::Rsa(key) =>
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keys_proto::PublicKey {
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r#type: keys_proto::KeyType::Rsa as i32,
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data: key.encode_x509()
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},
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#[cfg(feature = "secp256k1")]
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PublicKey::Secp256k1(key) => {
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public_key.set_Type(keys_proto::KeyType::Secp256k1);
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public_key.set_Data(key.encode().to_vec());
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},
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PublicKey::Secp256k1(key) =>
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keys_proto::PublicKey {
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r#type: keys_proto::KeyType::Secp256k1 as i32,
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data: key.encode().to_vec()
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}
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};
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public_key
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.write_to_bytes()
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.expect("Encoding public key into protobuf failed.")
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let mut buf = Vec::with_capacity(public_key.encoded_len());
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public_key.encode(&mut buf).expect("Vec<u8> provides capacity as needed");
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buf
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}
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/// Decode a public key from a protobuf structure, e.g. read from storage
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/// or received from another node.
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pub fn from_protobuf_encoding(bytes: &[u8]) -> Result<PublicKey, DecodingError> {
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use prost::Message;
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#[allow(unused_mut)] // Due to conditional compilation.
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let mut pubkey = protobuf::parse_from_bytes::<keys_proto::PublicKey>(bytes)
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let mut pubkey = keys_proto::PublicKey::decode(bytes)
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.map_err(|e| DecodingError::new("Protobuf").source(e))?;
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match pubkey.get_Type() {
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let key_type = keys_proto::KeyType::from_i32(pubkey.r#type)
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.ok_or_else(|| DecodingError::new(format!("unknown key type: {}", pubkey.r#type)))?;
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match key_type {
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keys_proto::KeyType::Ed25519 => {
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ed25519::PublicKey::decode(pubkey.get_Data())
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.map(PublicKey::Ed25519)
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ed25519::PublicKey::decode(&pubkey.data).map(PublicKey::Ed25519)
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},
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#[cfg(not(any(target_os = "emscripten", target_os = "unknown")))]
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keys_proto::KeyType::RSA => {
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rsa::PublicKey::decode_x509(&pubkey.take_Data())
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.map(PublicKey::Rsa)
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keys_proto::KeyType::Rsa => {
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rsa::PublicKey::decode_x509(&pubkey.data).map(PublicKey::Rsa)
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}
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#[cfg(any(target_os = "emscripten", target_os = "unknown"))]
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keys_proto::KeyType::RSA => {
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keys_proto::KeyType::Rsa => {
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log::debug!("support for RSA was disabled at compile-time");
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Err(DecodingError::new("Unsupported"))
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},
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#[cfg(feature = "secp256k1")]
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keys_proto::KeyType::Secp256k1 => {
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secp256k1::PublicKey::decode(pubkey.get_Data())
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.map(PublicKey::Secp256k1)
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secp256k1::PublicKey::decode(&pubkey.data).map(PublicKey::Secp256k1)
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}
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#[cfg(not(feature = "secp256k1"))]
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keys_proto::KeyType::Secp256k1 => {
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log::debug!("support for secp256k1 was disabled at compile-time");
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Err("Unsupported".to_string().into())
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},
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}
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}
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}
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@ -1,5 +1,7 @@
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syntax = "proto2";
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package keys_proto;
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enum KeyType {
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RSA = 0;
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Ed25519 = 1;
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@ -14,4 +16,4 @@ message PublicKey {
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message PrivateKey {
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required KeyType Type = 1;
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required bytes Data = 2;
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}
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}
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@ -1,574 +0,0 @@
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// This file is generated by rust-protobuf 2.8.1. Do not edit
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// @generated
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// https://github.com/Manishearth/rust-clippy/issues/702
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#![allow(unknown_lints)]
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#![allow(clippy::all)]
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#![cfg_attr(rustfmt, rustfmt_skip)]
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#![allow(box_pointers)]
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#![allow(dead_code)]
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#![allow(missing_docs)]
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#![allow(non_camel_case_types)]
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#![allow(non_snake_case)]
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#![allow(non_upper_case_globals)]
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#![allow(trivial_casts)]
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#![allow(unsafe_code)]
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#![allow(unused_imports)]
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#![allow(unused_results)]
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//! Generated file from `src/keys.proto`
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use protobuf::Message as Message_imported_for_functions;
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use protobuf::ProtobufEnum as ProtobufEnum_imported_for_functions;
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/// Generated files are compatible only with the same version
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/// of protobuf runtime.
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const _PROTOBUF_VERSION_CHECK: () = ::protobuf::VERSION_2_8_1;
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#[derive(PartialEq,Clone,Default)]
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pub struct PublicKey {
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// message fields
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Type: ::std::option::Option<KeyType>,
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Data: ::protobuf::SingularField<::std::vec::Vec<u8>>,
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// special fields
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pub unknown_fields: ::protobuf::UnknownFields,
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pub cached_size: ::protobuf::CachedSize,
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}
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impl<'a> ::std::default::Default for &'a PublicKey {
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fn default() -> &'a PublicKey {
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<PublicKey as ::protobuf::Message>::default_instance()
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}
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}
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impl PublicKey {
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pub fn new() -> PublicKey {
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::std::default::Default::default()
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}
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// required .KeyType Type = 1;
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pub fn get_Type(&self) -> KeyType {
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self.Type.unwrap_or(KeyType::RSA)
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}
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pub fn clear_Type(&mut self) {
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self.Type = ::std::option::Option::None;
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}
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pub fn has_Type(&self) -> bool {
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self.Type.is_some()
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}
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// Param is passed by value, moved
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pub fn set_Type(&mut self, v: KeyType) {
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self.Type = ::std::option::Option::Some(v);
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}
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// required bytes Data = 2;
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pub fn get_Data(&self) -> &[u8] {
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match self.Data.as_ref() {
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Some(v) => &v,
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None => &[],
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}
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}
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pub fn clear_Data(&mut self) {
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self.Data.clear();
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}
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pub fn has_Data(&self) -> bool {
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self.Data.is_some()
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}
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// Param is passed by value, moved
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pub fn set_Data(&mut self, v: ::std::vec::Vec<u8>) {
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self.Data = ::protobuf::SingularField::some(v);
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}
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// Mutable pointer to the field.
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// If field is not initialized, it is initialized with default value first.
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pub fn mut_Data(&mut self) -> &mut ::std::vec::Vec<u8> {
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if self.Data.is_none() {
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self.Data.set_default();
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}
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self.Data.as_mut().unwrap()
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}
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// Take field
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pub fn take_Data(&mut self) -> ::std::vec::Vec<u8> {
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self.Data.take().unwrap_or_else(|| ::std::vec::Vec::new())
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}
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}
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impl ::protobuf::Message for PublicKey {
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fn is_initialized(&self) -> bool {
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if self.Type.is_none() {
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return false;
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}
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if self.Data.is_none() {
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return false;
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}
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true
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}
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fn merge_from(&mut self, is: &mut ::protobuf::CodedInputStream<'_>) -> ::protobuf::ProtobufResult<()> {
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while !is.eof()? {
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let (field_number, wire_type) = is.read_tag_unpack()?;
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match field_number {
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1 => {
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::protobuf::rt::read_proto2_enum_with_unknown_fields_into(wire_type, is, &mut self.Type, 1, &mut self.unknown_fields)?
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},
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2 => {
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::protobuf::rt::read_singular_bytes_into(wire_type, is, &mut self.Data)?;
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},
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_ => {
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::protobuf::rt::read_unknown_or_skip_group(field_number, wire_type, is, self.mut_unknown_fields())?;
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},
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};
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}
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::std::result::Result::Ok(())
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}
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// Compute sizes of nested messages
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#[allow(unused_variables)]
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fn compute_size(&self) -> u32 {
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let mut my_size = 0;
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if let Some(v) = self.Type {
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my_size += ::protobuf::rt::enum_size(1, v);
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}
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if let Some(ref v) = self.Data.as_ref() {
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my_size += ::protobuf::rt::bytes_size(2, &v);
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}
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my_size += ::protobuf::rt::unknown_fields_size(self.get_unknown_fields());
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self.cached_size.set(my_size);
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my_size
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}
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fn write_to_with_cached_sizes(&self, os: &mut ::protobuf::CodedOutputStream<'_>) -> ::protobuf::ProtobufResult<()> {
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if let Some(v) = self.Type {
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os.write_enum(1, v.value())?;
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}
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if let Some(ref v) = self.Data.as_ref() {
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os.write_bytes(2, &v)?;
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}
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os.write_unknown_fields(self.get_unknown_fields())?;
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::std::result::Result::Ok(())
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}
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fn get_cached_size(&self) -> u32 {
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self.cached_size.get()
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}
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fn get_unknown_fields(&self) -> &::protobuf::UnknownFields {
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&self.unknown_fields
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}
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fn mut_unknown_fields(&mut self) -> &mut ::protobuf::UnknownFields {
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&mut self.unknown_fields
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}
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fn as_any(&self) -> &dyn (::std::any::Any) {
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self as &dyn (::std::any::Any)
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}
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fn as_any_mut(&mut self) -> &mut dyn (::std::any::Any) {
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self as &mut dyn (::std::any::Any)
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}
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fn into_any(self: Box<Self>) -> ::std::boxed::Box<dyn (::std::any::Any)> {
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self
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}
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fn descriptor(&self) -> &'static ::protobuf::reflect::MessageDescriptor {
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Self::descriptor_static()
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}
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fn new() -> PublicKey {
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PublicKey::new()
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}
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fn descriptor_static() -> &'static ::protobuf::reflect::MessageDescriptor {
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static mut descriptor: ::protobuf::lazy::Lazy<::protobuf::reflect::MessageDescriptor> = ::protobuf::lazy::Lazy {
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lock: ::protobuf::lazy::ONCE_INIT,
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ptr: 0 as *const ::protobuf::reflect::MessageDescriptor,
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};
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unsafe {
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descriptor.get(|| {
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let mut fields = ::std::vec::Vec::new();
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fields.push(::protobuf::reflect::accessor::make_option_accessor::<_, ::protobuf::types::ProtobufTypeEnum<KeyType>>(
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"Type",
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|m: &PublicKey| { &m.Type },
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|m: &mut PublicKey| { &mut m.Type },
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));
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fields.push(::protobuf::reflect::accessor::make_singular_field_accessor::<_, ::protobuf::types::ProtobufTypeBytes>(
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"Data",
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|m: &PublicKey| { &m.Data },
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|m: &mut PublicKey| { &mut m.Data },
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));
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::protobuf::reflect::MessageDescriptor::new::<PublicKey>(
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"PublicKey",
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fields,
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file_descriptor_proto()
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)
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})
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}
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}
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fn default_instance() -> &'static PublicKey {
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static mut instance: ::protobuf::lazy::Lazy<PublicKey> = ::protobuf::lazy::Lazy {
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lock: ::protobuf::lazy::ONCE_INIT,
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ptr: 0 as *const PublicKey,
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};
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unsafe {
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instance.get(PublicKey::new)
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}
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}
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}
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impl ::protobuf::Clear for PublicKey {
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fn clear(&mut self) {
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self.Type = ::std::option::Option::None;
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self.Data.clear();
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self.unknown_fields.clear();
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}
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}
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impl ::std::fmt::Debug for PublicKey {
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fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> ::std::fmt::Result {
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::protobuf::text_format::fmt(self, f)
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}
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}
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impl ::protobuf::reflect::ProtobufValue for PublicKey {
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fn as_ref(&self) -> ::protobuf::reflect::ProtobufValueRef {
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::protobuf::reflect::ProtobufValueRef::Message(self)
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}
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}
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#[derive(PartialEq,Clone,Default)]
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pub struct PrivateKey {
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// message fields
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Type: ::std::option::Option<KeyType>,
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Data: ::protobuf::SingularField<::std::vec::Vec<u8>>,
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// special fields
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pub unknown_fields: ::protobuf::UnknownFields,
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pub cached_size: ::protobuf::CachedSize,
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}
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impl<'a> ::std::default::Default for &'a PrivateKey {
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fn default() -> &'a PrivateKey {
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<PrivateKey as ::protobuf::Message>::default_instance()
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}
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}
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impl PrivateKey {
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pub fn new() -> PrivateKey {
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::std::default::Default::default()
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}
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// required .KeyType Type = 1;
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pub fn get_Type(&self) -> KeyType {
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self.Type.unwrap_or(KeyType::RSA)
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}
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pub fn clear_Type(&mut self) {
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self.Type = ::std::option::Option::None;
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}
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pub fn has_Type(&self) -> bool {
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self.Type.is_some()
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}
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// Param is passed by value, moved
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pub fn set_Type(&mut self, v: KeyType) {
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self.Type = ::std::option::Option::Some(v);
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}
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// required bytes Data = 2;
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pub fn get_Data(&self) -> &[u8] {
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match self.Data.as_ref() {
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Some(v) => &v,
|
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None => &[],
|
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}
|
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}
|
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pub fn clear_Data(&mut self) {
|
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self.Data.clear();
|
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}
|
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|
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pub fn has_Data(&self) -> bool {
|
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self.Data.is_some()
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}
|
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|
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// Param is passed by value, moved
|
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pub fn set_Data(&mut self, v: ::std::vec::Vec<u8>) {
|
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self.Data = ::protobuf::SingularField::some(v);
|
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}
|
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|
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// Mutable pointer to the field.
|
||||
// If field is not initialized, it is initialized with default value first.
|
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pub fn mut_Data(&mut self) -> &mut ::std::vec::Vec<u8> {
|
||||
if self.Data.is_none() {
|
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self.Data.set_default();
|
||||
}
|
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self.Data.as_mut().unwrap()
|
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}
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||||
|
||||
// Take field
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pub fn take_Data(&mut self) -> ::std::vec::Vec<u8> {
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self.Data.take().unwrap_or_else(|| ::std::vec::Vec::new())
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}
|
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}
|
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impl ::protobuf::Message for PrivateKey {
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fn is_initialized(&self) -> bool {
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if self.Type.is_none() {
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return false;
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||||
}
|
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if self.Data.is_none() {
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return false;
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}
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true
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}
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fn merge_from(&mut self, is: &mut ::protobuf::CodedInputStream<'_>) -> ::protobuf::ProtobufResult<()> {
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while !is.eof()? {
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let (field_number, wire_type) = is.read_tag_unpack()?;
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match field_number {
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1 => {
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::protobuf::rt::read_proto2_enum_with_unknown_fields_into(wire_type, is, &mut self.Type, 1, &mut self.unknown_fields)?
|
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},
|
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2 => {
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::protobuf::rt::read_singular_bytes_into(wire_type, is, &mut self.Data)?;
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},
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_ => {
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::protobuf::rt::read_unknown_or_skip_group(field_number, wire_type, is, self.mut_unknown_fields())?;
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},
|
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};
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}
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::std::result::Result::Ok(())
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}
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||||
// Compute sizes of nested messages
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||||
#[allow(unused_variables)]
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||||
fn compute_size(&self) -> u32 {
|
||||
let mut my_size = 0;
|
||||
if let Some(v) = self.Type {
|
||||
my_size += ::protobuf::rt::enum_size(1, v);
|
||||
}
|
||||
if let Some(ref v) = self.Data.as_ref() {
|
||||
my_size += ::protobuf::rt::bytes_size(2, &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.Type {
|
||||
os.write_enum(1, v.value())?;
|
||||
}
|
||||
if let Some(ref v) = self.Data.as_ref() {
|
||||
os.write_bytes(2, &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: Box<Self>) -> ::std::boxed::Box<dyn (::std::any::Any)> {
|
||||
self
|
||||
}
|
||||
|
||||
fn descriptor(&self) -> &'static ::protobuf::reflect::MessageDescriptor {
|
||||
Self::descriptor_static()
|
||||
}
|
||||
|
||||
fn new() -> PrivateKey {
|
||||
PrivateKey::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_option_accessor::<_, ::protobuf::types::ProtobufTypeEnum<KeyType>>(
|
||||
"Type",
|
||||
|m: &PrivateKey| { &m.Type },
|
||||
|m: &mut PrivateKey| { &mut m.Type },
|
||||
));
|
||||
fields.push(::protobuf::reflect::accessor::make_singular_field_accessor::<_, ::protobuf::types::ProtobufTypeBytes>(
|
||||
"Data",
|
||||
|m: &PrivateKey| { &m.Data },
|
||||
|m: &mut PrivateKey| { &mut m.Data },
|
||||
));
|
||||
::protobuf::reflect::MessageDescriptor::new::<PrivateKey>(
|
||||
"PrivateKey",
|
||||
fields,
|
||||
file_descriptor_proto()
|
||||
)
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
fn default_instance() -> &'static PrivateKey {
|
||||
static mut instance: ::protobuf::lazy::Lazy<PrivateKey> = ::protobuf::lazy::Lazy {
|
||||
lock: ::protobuf::lazy::ONCE_INIT,
|
||||
ptr: 0 as *const PrivateKey,
|
||||
};
|
||||
unsafe {
|
||||
instance.get(PrivateKey::new)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
impl ::protobuf::Clear for PrivateKey {
|
||||
fn clear(&mut self) {
|
||||
self.Type = ::std::option::Option::None;
|
||||
self.Data.clear();
|
||||
self.unknown_fields.clear();
|
||||
}
|
||||
}
|
||||
|
||||
impl ::std::fmt::Debug for PrivateKey {
|
||||
fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> ::std::fmt::Result {
|
||||
::protobuf::text_format::fmt(self, f)
|
||||
}
|
||||
}
|
||||
|
||||
impl ::protobuf::reflect::ProtobufValue for PrivateKey {
|
||||
fn as_ref(&self) -> ::protobuf::reflect::ProtobufValueRef {
|
||||
::protobuf::reflect::ProtobufValueRef::Message(self)
|
||||
}
|
||||
}
|
||||
|
||||
#[derive(Clone,PartialEq,Eq,Debug,Hash)]
|
||||
pub enum KeyType {
|
||||
RSA = 0,
|
||||
Ed25519 = 1,
|
||||
Secp256k1 = 2,
|
||||
}
|
||||
|
||||
impl ::protobuf::ProtobufEnum for KeyType {
|
||||
fn value(&self) -> i32 {
|
||||
*self as i32
|
||||
}
|
||||
|
||||
fn from_i32(value: i32) -> ::std::option::Option<KeyType> {
|
||||
match value {
|
||||
0 => ::std::option::Option::Some(KeyType::RSA),
|
||||
1 => ::std::option::Option::Some(KeyType::Ed25519),
|
||||
2 => ::std::option::Option::Some(KeyType::Secp256k1),
|
||||
_ => ::std::option::Option::None
|
||||
}
|
||||
}
|
||||
|
||||
fn values() -> &'static [Self] {
|
||||
static values: &'static [KeyType] = &[
|
||||
KeyType::RSA,
|
||||
KeyType::Ed25519,
|
||||
KeyType::Secp256k1,
|
||||
];
|
||||
values
|
||||
}
|
||||
|
||||
fn enum_descriptor_static() -> &'static ::protobuf::reflect::EnumDescriptor {
|
||||
static mut descriptor: ::protobuf::lazy::Lazy<::protobuf::reflect::EnumDescriptor> = ::protobuf::lazy::Lazy {
|
||||
lock: ::protobuf::lazy::ONCE_INIT,
|
||||
ptr: 0 as *const ::protobuf::reflect::EnumDescriptor,
|
||||
};
|
||||
unsafe {
|
||||
descriptor.get(|| {
|
||||
::protobuf::reflect::EnumDescriptor::new("KeyType", file_descriptor_proto())
|
||||
})
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
impl ::std::marker::Copy for KeyType {
|
||||
}
|
||||
|
||||
impl ::std::default::Default for KeyType {
|
||||
fn default() -> Self {
|
||||
KeyType::RSA
|
||||
}
|
||||
}
|
||||
|
||||
impl ::protobuf::reflect::ProtobufValue for KeyType {
|
||||
fn as_ref(&self) -> ::protobuf::reflect::ProtobufValueRef {
|
||||
::protobuf::reflect::ProtobufValueRef::Enum(self.descriptor())
|
||||
}
|
||||
}
|
||||
|
||||
static file_descriptor_proto_data: &'static [u8] = b"\
|
||||
\n\x0esrc/keys.proto\"=\n\tPublicKey\x12\x1c\n\x04Type\x18\x01\x20\x02(\
|
||||
\x0e2\x08.KeyTypeR\x04Type\x12\x12\n\x04Data\x18\x02\x20\x02(\x0cR\x04Da\
|
||||
ta\">\n\nPrivateKey\x12\x1c\n\x04Type\x18\x01\x20\x02(\x0e2\x08.KeyTypeR\
|
||||
\x04Type\x12\x12\n\x04Data\x18\x02\x20\x02(\x0cR\x04Data*.\n\x07KeyType\
|
||||
\x12\x07\n\x03RSA\x10\0\x12\x0b\n\x07Ed25519\x10\x01\x12\r\n\tSecp256k1\
|
||||
\x10\x02J\xe9\x03\n\x06\x12\x04\0\0\x10\x01\n\x08\n\x01\x0c\x12\x03\0\0\
|
||||
\x12\n\n\n\x02\x05\0\x12\x04\x02\0\x06\x01\n\n\n\x03\x05\0\x01\x12\x03\
|
||||
\x02\x05\x0c\n\x0b\n\x04\x05\0\x02\0\x12\x03\x03\x02\n\n\x0c\n\x05\x05\0\
|
||||
\x02\0\x01\x12\x03\x03\x02\x05\n\x0c\n\x05\x05\0\x02\0\x02\x12\x03\x03\
|
||||
\x08\t\n\x0b\n\x04\x05\0\x02\x01\x12\x03\x04\x02\x0e\n\x0c\n\x05\x05\0\
|
||||
\x02\x01\x01\x12\x03\x04\x02\t\n\x0c\n\x05\x05\0\x02\x01\x02\x12\x03\x04\
|
||||
\x0c\r\n\x0b\n\x04\x05\0\x02\x02\x12\x03\x05\x02\x10\n\x0c\n\x05\x05\0\
|
||||
\x02\x02\x01\x12\x03\x05\x02\x0b\n\x0c\n\x05\x05\0\x02\x02\x02\x12\x03\
|
||||
\x05\x0e\x0f\n\n\n\x02\x04\0\x12\x04\x08\0\x0b\x01\n\n\n\x03\x04\0\x01\
|
||||
\x12\x03\x08\x08\x11\n\x0b\n\x04\x04\0\x02\0\x12\x03\t\x02\x1c\n\x0c\n\
|
||||
\x05\x04\0\x02\0\x04\x12\x03\t\x02\n\n\x0c\n\x05\x04\0\x02\0\x06\x12\x03\
|
||||
\t\x0b\x12\n\x0c\n\x05\x04\0\x02\0\x01\x12\x03\t\x13\x17\n\x0c\n\x05\x04\
|
||||
\0\x02\0\x03\x12\x03\t\x1a\x1b\n\x0b\n\x04\x04\0\x02\x01\x12\x03\n\x02\
|
||||
\x1a\n\x0c\n\x05\x04\0\x02\x01\x04\x12\x03\n\x02\n\n\x0c\n\x05\x04\0\x02\
|
||||
\x01\x05\x12\x03\n\x0b\x10\n\x0c\n\x05\x04\0\x02\x01\x01\x12\x03\n\x11\
|
||||
\x15\n\x0c\n\x05\x04\0\x02\x01\x03\x12\x03\n\x18\x19\n\n\n\x02\x04\x01\
|
||||
\x12\x04\r\0\x10\x01\n\n\n\x03\x04\x01\x01\x12\x03\r\x08\x12\n\x0b\n\x04\
|
||||
\x04\x01\x02\0\x12\x03\x0e\x02\x1c\n\x0c\n\x05\x04\x01\x02\0\x04\x12\x03\
|
||||
\x0e\x02\n\n\x0c\n\x05\x04\x01\x02\0\x06\x12\x03\x0e\x0b\x12\n\x0c\n\x05\
|
||||
\x04\x01\x02\0\x01\x12\x03\x0e\x13\x17\n\x0c\n\x05\x04\x01\x02\0\x03\x12\
|
||||
\x03\x0e\x1a\x1b\n\x0b\n\x04\x04\x01\x02\x01\x12\x03\x0f\x02\x1a\n\x0c\n\
|
||||
\x05\x04\x01\x02\x01\x04\x12\x03\x0f\x02\n\n\x0c\n\x05\x04\x01\x02\x01\
|
||||
\x05\x12\x03\x0f\x0b\x10\n\x0c\n\x05\x04\x01\x02\x01\x01\x12\x03\x0f\x11\
|
||||
\x15\n\x0c\n\x05\x04\x01\x02\x01\x03\x12\x03\x0f\x18\x19\
|
||||
";
|
||||
|
||||
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()
|
||||
})
|
||||
}
|
||||
}
|
@ -35,11 +35,14 @@
|
||||
//! define how to upgrade each individual substream to use a protocol.
|
||||
//! See the `upgrade` module.
|
||||
|
||||
mod keys_proto {
|
||||
include!(concat!(env!("OUT_DIR"), "/keys_proto.rs"));
|
||||
}
|
||||
|
||||
/// Multi-address re-export.
|
||||
pub use multiaddr;
|
||||
pub type Negotiated<T> = futures::compat::Compat01As03<multistream_select::Negotiated<futures::compat::Compat<T>>>;
|
||||
|
||||
mod keys_proto;
|
||||
mod peer_id;
|
||||
mod translation;
|
||||
|
||||
|
Reference in New Issue
Block a user