mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-11-25 00:48:19 +00:00
202 lines
9.1 KiB
Protocol Buffer
202 lines
9.1 KiB
Protocol Buffer
syntax = "proto2";
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package hw.trezor.messages.nem;
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// Sugar for easier handling in Java
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option java_package = "com.satoshilabs.trezor.lib.protobuf";
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option java_outer_classname = "TrezorMessageNem";
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/**
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* Request: Ask device for NEM address corresponding to address_n path
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* @start
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* @next NEMAddress
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* @next Failure
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*/
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message NEMGetAddress {
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repeated uint32 address_n = 1; // BIP-32 path to derive the key from master node
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optional uint32 network = 2 [default=0x68]; // Network ID (0x68 = Mainnet, 0x98 = Testnet, 0x60 = Mijin)
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optional bool show_display = 3; // Optionally show on display before sending the result
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optional bool chunkify = 4; // display the address in chunks of 4 characters
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}
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/**
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* Response: Contains NEM address derived from device private seed
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* @end
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*/
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message NEMAddress {
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required string address = 1; // NEM address in Base32 encoding
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}
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/**
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* Request: Ask device to sign transaction
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* @start
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* @next NEMSignedTx
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* @next Failure
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*/
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message NEMSignTx {
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required NEMTransactionCommon transaction = 1; // Common part of transaction
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optional NEMTransactionCommon multisig = 2; // Common part of inner transaction for multisig transactions
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optional NEMTransfer transfer = 3; // Transfer transaction part
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optional bool cosigning = 4; // Whether cosigning or initiating the multisig transaction
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optional NEMProvisionNamespace provision_namespace = 5; // Provision namespace part
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optional NEMMosaicCreation mosaic_creation = 6; // Mosaic definition creation part
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optional NEMMosaicSupplyChange supply_change = 7; // Mosaic supply change part
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optional NEMAggregateModification aggregate_modification = 8; // Aggregate modification part
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optional NEMImportanceTransfer importance_transfer = 9; // Importance transfer part
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optional bool chunkify = 10; // display the address in chunks of 4 characters
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/**
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* Structure representing the common part for NEM transactions
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*/
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message NEMTransactionCommon {
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repeated uint32 address_n = 1; // BIP-32 path to derive the key from master node
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optional uint32 network = 2 [default=0x68]; // Network ID (0x68 = Mainnet, 0x98 = Testnet, 0x60 = Mijin)
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required uint32 timestamp = 3; // Number of seconds elapsed since the creation of the nemesis block
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required uint64 fee = 4; // Fee for the transaction
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required uint32 deadline = 5; // Deadline of the transaction
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optional bytes signer = 6; // Public key of the account (for multisig transactions)
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}
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/**
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* Structure representing the transfer transaction part for NEM transactions
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*/
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message NEMTransfer {
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required string recipient = 1; // Address of the recipient
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required uint64 amount = 2; // Amount of micro NEM that is transferred
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optional bytes payload = 3; // Actual message data (unencrypted)
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optional bytes public_key = 4; // Public key of the recipient (for encrypted payloads)
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repeated NEMMosaic mosaics = 5; // Attached mosaics
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/**
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* Structure representing the mosaic attachment for NEM transfer transactions
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*/
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message NEMMosaic {
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required string namespace = 1; // Fully qualified name of the namespace
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required string mosaic = 2; // Name of the mosaic definition
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required uint64 quantity = 3; // Mosaic quantity, always given in smallest units
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}
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}
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/**
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* Structure representing the provision namespace part for NEM transactions
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*/
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message NEMProvisionNamespace {
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required string namespace = 1; // New part concatenated to the parent
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optional string parent = 2; // Parent namespace (for child namespaces)
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required string sink = 3; // Rental fee sink address
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required uint64 fee = 4; // Rental fee
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}
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/**
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* Structure representing the mosaic definition creation part for NEM transactions
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*/
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message NEMMosaicCreation {
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required NEMMosaicDefinition definition = 1; // Mosaic definition
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required string sink = 2; // Creation fee sink address
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required uint64 fee = 3; // Creation fee
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/**
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* Structure representing a mosaic definition
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*/
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message NEMMosaicDefinition {
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optional string name = 1; // User-friendly name of the mosaic (for whitelisted mosaics)
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optional string ticker = 2; // Ticker of the mosaic (for whitelisted mosaics)
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required string namespace = 3; // Fully qualified name of the namespace
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required string mosaic = 4; // Name of the mosaic definition
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optional uint32 divisibility = 5; // Number of decimal places that a mosaic can be divided into
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optional NEMMosaicLevy levy = 6; // Levy type
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optional uint64 fee = 7; // Levy fee (interpretation depends on levy type)
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optional string levy_address = 8; // Levy address
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optional string levy_namespace = 9; // Fully qualified name of the namespace of the levy mosaic
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optional string levy_mosaic = 10; // Name of the levy mosaic
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optional uint64 supply = 11; // Initial supply to create, always given in entire units
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optional bool mutable_supply = 12; // Mutable supply
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optional bool transferable = 13; // Mosaic allows transfers among accounts other than the creator
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required string description = 14; // Mosaic description
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repeated uint32 networks = 15; // Networks that the mosaic is valid on (for whitelisted mosaics)
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/**
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* Type of levy which will be used for mosaic
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*/
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enum NEMMosaicLevy {
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MosaicLevy_Absolute = 1;
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MosaicLevy_Percentile = 2;
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}
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}
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}
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/**
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* Structure representing the mosaic supply change part for NEM transactions
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*/
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message NEMMosaicSupplyChange {
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required string namespace = 1; // Fully qualified name of the namespace
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required string mosaic = 2; // Name of the mosaic definition
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required NEMSupplyChangeType type = 3; // Type of supply change
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required uint64 delta = 4; // Supply delta
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/**
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* Type of supply change which will be applied to mosaic
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*/
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enum NEMSupplyChangeType {
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SupplyChange_Increase = 1;
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SupplyChange_Decrease = 2;
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}
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}
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/**
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* Structure representing the aggregate modification part for NEM transactions
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*/
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message NEMAggregateModification {
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repeated NEMCosignatoryModification modifications = 1; // Cosignatory modifications
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optional sint32 relative_change = 2; // Relative change of the minimum cosignatories
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/**
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* Structure representing the cosignatory modification for aggregate modification transactions
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*/
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message NEMCosignatoryModification {
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required NEMModificationType type = 1; // Type of cosignatory modification
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required bytes public_key = 2; // Public key of the cosignatory
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/**
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* Type of cosignatory modification
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*/
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enum NEMModificationType {
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CosignatoryModification_Add = 1;
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CosignatoryModification_Delete = 2;
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}
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}
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}
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/**
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* Structure representing the importance transfer part for NEM transactions
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*/
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message NEMImportanceTransfer {
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required NEMImportanceTransferMode mode = 1; // Mode of importance transfer
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required bytes public_key = 2; // Public key of the remote account
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/**
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* Mode of importance transfer
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*/
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enum NEMImportanceTransferMode {
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ImportanceTransfer_Activate = 1;
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ImportanceTransfer_Deactivate = 2;
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}
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}
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}
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/**
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* Response: Contains NEM transaction data and signature
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* @end
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*/
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message NEMSignedTx {
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required bytes data = 1; // Transaction data
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required bytes signature = 2; // Signature for the transaction
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}
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/**
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* Request: Ask device to decrypt NEM transaction payload
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* @start
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* @next NEMDecryptedMessage
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* @next Failure
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*/
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message NEMDecryptMessage {
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repeated uint32 address_n = 1; // BIP-32 path to derive the key from master node
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optional uint32 network = 2; // Network ID (0x68 = Mainnet, 0x98 = Testnet, 0x60 = Mijin)
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optional bytes public_key = 3; // Public key of the other party
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optional bytes payload = 4; // Actual message data (encrypted)
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}
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/**
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* Response: Contains decrypted NEM transaction payload
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* @end
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*/
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message NEMDecryptedMessage {
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required bytes payload = 1; // Actual message data (unencrypted)
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}
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