2021-04-17 10:00:07 +00:00
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syntax = "proto3";
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package cosmos.tx.v1beta1;
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import "gogoproto/gogo.proto";
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import "cosmos/crypto/multisig/v1beta1/multisig.proto";
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import "cosmos/base/v1beta1/coin.proto";
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import "cosmos/tx/signing/v1beta1/signing.proto";
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import "google/protobuf/any.proto";
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option go_package = "github.com/cosmos/cosmos-sdk/types/tx";
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// Tx is the standard type used for broadcasting transactions.
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message Tx {
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// body is the processable content of the transaction
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TxBody body = 1;
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// auth_info is the authorization related content of the transaction,
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// specifically signers, signer modes and fee
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AuthInfo auth_info = 2;
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// signatures is a list of signatures that matches the length and order of
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// AuthInfo's signer_infos to allow connecting signature meta information like
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// public key and signing mode by position.
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repeated bytes signatures = 3;
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}
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// TxRaw is a variant of Tx that pins the signer's exact binary representation
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// of body and auth_info. This is used for signing, broadcasting and
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// verification. The binary `serialize(tx: TxRaw)` is stored in Tendermint and
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// the hash `sha256(serialize(tx: TxRaw))` becomes the "txhash", commonly used
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// as the transaction ID.
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message TxRaw {
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// body_bytes is a protobuf serialization of a TxBody that matches the
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// representation in SignDoc.
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bytes body_bytes = 1;
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// auth_info_bytes is a protobuf serialization of an AuthInfo that matches the
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// representation in SignDoc.
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bytes auth_info_bytes = 2;
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// signatures is a list of signatures that matches the length and order of
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// AuthInfo's signer_infos to allow connecting signature meta information like
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// public key and signing mode by position.
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repeated bytes signatures = 3;
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}
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// SignDoc is the type used for generating sign bytes for SIGN_MODE_DIRECT.
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message SignDoc {
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// body_bytes is protobuf serialization of a TxBody that matches the
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// representation in TxRaw.
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bytes body_bytes = 1;
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// auth_info_bytes is a protobuf serialization of an AuthInfo that matches the
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// representation in TxRaw.
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bytes auth_info_bytes = 2;
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// chain_id is the unique identifier of the chain this transaction targets.
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// It prevents signed transactions from being used on another chain by an
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// attacker
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string chain_id = 3;
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// account_number is the account number of the account in state
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uint64 account_number = 4;
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}
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// TxBody is the body of a transaction that all signers sign over.
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message TxBody {
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// messages is a list of messages to be executed. The required signers of
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// those messages define the number and order of elements in AuthInfo's
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// signer_infos and Tx's signatures. Each required signer address is added to
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// the list only the first time it occurs.
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// By convention, the first required signer (usually from the first message)
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// is referred to as the primary signer and pays the fee for the whole
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// transaction.
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repeated google.protobuf.Any messages = 1;
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// memo is any arbitrary memo to be added to the transaction
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string memo = 2;
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// timeout is the block height after which this transaction will not
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// be processed by the chain
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uint64 timeout_height = 3;
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// extension_options are arbitrary options that can be added by chains
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// when the default options are not sufficient. If any of these are present
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// and can't be handled, the transaction will be rejected
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repeated google.protobuf.Any extension_options = 1023;
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// extension_options are arbitrary options that can be added by chains
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// when the default options are not sufficient. If any of these are present
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// and can't be handled, they will be ignored
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repeated google.protobuf.Any non_critical_extension_options = 2047;
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}
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// AuthInfo describes the fee and signer modes that are used to sign a
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// transaction.
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message AuthInfo {
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// signer_infos defines the signing modes for the required signers. The number
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// and order of elements must match the required signers from TxBody's
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// messages. The first element is the primary signer and the one which pays
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// the fee.
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repeated SignerInfo signer_infos = 1;
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// Fee is the fee and gas limit for the transaction. The first signer is the
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// primary signer and the one which pays the fee. The fee can be calculated
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// based on the cost of evaluating the body and doing signature verification
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// of the signers. This can be estimated via simulation.
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Fee fee = 2;
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}
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// SignerInfo describes the public key and signing mode of a single top-level
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// signer.
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message SignerInfo {
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// public_key is the public key of the signer. It is optional for accounts
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// that already exist in state. If unset, the verifier can use the required \
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// signer address for this position and lookup the public key.
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google.protobuf.Any public_key = 1;
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// mode_info describes the signing mode of the signer and is a nested
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// structure to support nested multisig pubkey's
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ModeInfo mode_info = 2;
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// sequence is the sequence of the account, which describes the
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// number of committed transactions signed by a given address. It is used to
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// prevent replay attacks.
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uint64 sequence = 3;
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}
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// ModeInfo describes the signing mode of a single or nested multisig signer.
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message ModeInfo {
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// sum is the oneof that specifies whether this represents a single or nested
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// multisig signer
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oneof sum {
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// single represents a single signer
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Single single = 1;
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// multi represents a nested multisig signer
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Multi multi = 2;
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}
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// Single is the mode info for a single signer. It is structured as a message
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// to allow for additional fields such as locale for SIGN_MODE_TEXTUAL in the
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// future
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message Single {
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// mode is the signing mode of the single signer
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cosmos.tx.signing.v1beta1.SignMode mode = 1;
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}
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// Multi is the mode info for a multisig public key
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message Multi {
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// bitarray specifies which keys within the multisig are signing
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cosmos.crypto.multisig.v1beta1.CompactBitArray bitarray = 1;
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// mode_infos is the corresponding modes of the signers of the multisig
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// which could include nested multisig public keys
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repeated ModeInfo mode_infos = 2;
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}
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}
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// Fee includes the amount of coins paid in fees and the maximum
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// gas to be used by the transaction. The ratio yields an effective "gasprice",
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// which must be above some miminum to be accepted into the mempool.
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message Fee {
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// amount is the amount of coins to be paid as a fee
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2021-04-18 15:54:18 +00:00
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repeated cosmos.base.v1beta1.Coin amount = 1
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[(gogoproto.nullable) = false, (gogoproto.castrepeated) = "github.com/cosmos/cosmos-sdk/types.Coins"];
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2021-04-17 10:00:07 +00:00
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// gas_limit is the maximum gas that can be used in transaction processing
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// before an out of gas error occurs
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uint64 gas_limit = 2;
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2021-04-18 15:54:18 +00:00
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// if unset, the first signer is responsible for paying the fees. If set, the specified account must pay the fees.
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// the payer must be a tx signer (and thus have signed this field in AuthInfo).
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// setting this field does *not* change the ordering of required signers for the transaction.
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2021-04-17 10:00:07 +00:00
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string payer = 3;
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2021-04-18 15:54:18 +00:00
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// if set, the fee payer (either the first signer or the value of the payer field) requests that a fee grant be used
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// to pay fees instead of the fee payer's own balance. If an appropriate fee grant does not exist or the chain does
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// not support fee grants, this will fail
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2021-04-17 10:00:07 +00:00
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string granter = 4;
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}
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