//@ts-nocheck
import { BinaryReader, BinaryWriter } from "../../../binary";
import { bytesFromBase64, base64FromBytes } from "../../../helpers";
import { GlobalDecoderRegistry } from "../../../registry";
function createBasePubKey() {
return {
key: new Uint8Array()
};
}
export const PubKey = {
typeUrl: "/cosmos.crypto.secp256k1.PubKey",
aminoType: "tendermint/PubKeySecp256k1",
is(o) {
return o && (o.$typeUrl === PubKey.typeUrl || o.key instanceof Uint8Array || typeof o.key === "string");
},
isSDK(o) {
return o && (o.$typeUrl === PubKey.typeUrl || o.key instanceof Uint8Array || typeof o.key === "string");
},
isAmino(o) {
return o && (o.$typeUrl === PubKey.typeUrl || o.key instanceof Uint8Array || typeof o.key === "string");
},
encode(message, writer = BinaryWriter.create()) {
if (message.key.length !== 0) {
writer.uint32(10).bytes(message.key);
}
return writer;
},
decode(input, length) {
const reader = input instanceof BinaryReader ? input : new BinaryReader(input);
let end = length === undefined ? reader.len : reader.pos + length;
const message = createBasePubKey();
while (reader.pos < end) {
const tag = reader.uint32();
switch (tag >>> 3) {
case 1:
message.key = reader.bytes();
break;
default:
reader.skipType(tag & 7);
break;
}
}
return message;
},
fromPartial(object) {
const message = createBasePubKey();
message.key = object.key ?? new Uint8Array();
return message;
},
fromAmino(object) {
const message = createBasePubKey();
if (object.key !== undefined && object.key !== null) {
message.key = bytesFromBase64(object.key);
}
return message;
},
toAmino(message) {
const obj = {};
obj.key = message.key ? base64FromBytes(message.key) : undefined;
return obj;
},
fromAminoMsg(object) {
return PubKey.fromAmino(object.value);
},
toAminoMsg(message) {
return {
type: "tendermint/PubKeySecp256k1",
value: PubKey.toAmino(message)
};
},
fromProtoMsg(message) {
return PubKey.decode(message.value);
},
toProto(message) {
return PubKey.encode(message).finish();
},
toProtoMsg(message) {
return {
typeUrl: "/cosmos.crypto.secp256k1.PubKey",
value: PubKey.encode(message).finish()
};
}
};
GlobalDecoderRegistry.register(PubKey.typeUrl, PubKey);
GlobalDecoderRegistry.registerAminoProtoMapping(PubKey.aminoType, PubKey.typeUrl);
function createBasePrivKey() {
return {
key: new Uint8Array()
};
}
export const PrivKey = {
typeUrl: "/cosmos.crypto.secp256k1.PrivKey",
aminoType: "tendermint/PrivKeySecp256k1",
is(o) {
return o && (o.$typeUrl === PrivKey.typeUrl || o.key instanceof Uint8Array || typeof o.key === "string");
},
isSDK(o) {
return o && (o.$typeUrl === PrivKey.typeUrl || o.key instanceof Uint8Array || typeof o.key === "string");
},
isAmino(o) {
return o && (o.$typeUrl === PrivKey.typeUrl || o.key instanceof Uint8Array || typeof o.key === "string");
},
encode(message, writer = BinaryWriter.create()) {
if (message.key.length !== 0) {
writer.uint32(10).bytes(message.key);
}
return writer;
},
decode(input, length) {
const reader = input instanceof BinaryReader ? input : new BinaryReader(input);
let end = length === undefined ? reader.len : reader.pos + length;
const message = createBasePrivKey();
while (reader.pos < end) {
const tag = reader.uint32();
switch (tag >>> 3) {
case 1:
message.key = reader.bytes();
break;
default:
reader.skipType(tag & 7);
break;
}
}
return message;
},
fromPartial(object) {
const message = createBasePrivKey();
message.key = object.key ?? new Uint8Array();
return message;
},
fromAmino(object) {
const message = createBasePrivKey();
if (object.key !== undefined && object.key !== null) {
message.key = bytesFromBase64(object.key);
}
return message;
},
toAmino(message) {
const obj = {};
obj.key = message.key ? base64FromBytes(message.key) : undefined;
return obj;
},
fromAminoMsg(object) {
return PrivKey.fromAmino(object.value);
},
toAminoMsg(message) {
return {
type: "tendermint/PrivKeySecp256k1",
value: PrivKey.toAmino(message)
};
},
fromProtoMsg(message) {
return PrivKey.decode(message.value);
},
toProto(message) {
return PrivKey.encode(message).finish();
},
toProtoMsg(message) {
return {
typeUrl: "/cosmos.crypto.secp256k1.PrivKey",
value: PrivKey.encode(message).finish()
};
}
};
GlobalDecoderRegistry.register(PrivKey.typeUrl, PrivKey);
GlobalDecoderRegistry.registerAminoProtoMapping(PrivKey.aminoType, PrivKey.typeUrl);