package types
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import (
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"bytes"
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"errors"
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"fmt"
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"io"
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"strings"
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"time"
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wire "github.com/tendermint/go-wire"
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"github.com/tendermint/go-wire/data"
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cmn "github.com/tendermint/tmlibs/common"
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"github.com/tendermint/tmlibs/merkle"
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)
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// Block defines the atomic unit of a Tendermint blockchain.
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// TODO: add Version byte
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type Block struct {
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*Header `json:"header"`
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*Data `json:"data"`
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LastCommit *Commit `json:"last_commit"`
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}
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// MakeBlock returns a new block with an empty header, except what can be computed from itself.
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// It populates the same set of fields validated by ValidateBasic
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func MakeBlock(height int64, txs []Tx, commit *Commit) *Block {
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block := &Block{
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Header: &Header{
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Height: height,
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Time: time.Now(),
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NumTxs: int64(len(txs)),
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},
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LastCommit: commit,
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Data: &Data{
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Txs: txs,
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},
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}
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block.FillHeader()
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return block
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}
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// ValidateBasic performs basic validation that doesn't involve state data.
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// It checks the internal consistency of the block.
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func (b *Block) ValidateBasic() error {
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newTxs := int64(len(b.Data.Txs))
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if b.NumTxs != newTxs {
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return fmt.Errorf("Wrong Block.Header.NumTxs. Expected %v, got %v", newTxs, b.NumTxs)
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}
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if !bytes.Equal(b.LastCommitHash, b.LastCommit.Hash()) {
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return fmt.Errorf("Wrong Block.Header.LastCommitHash. Expected %v, got %v", b.LastCommitHash, b.LastCommit.Hash())
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}
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if b.Header.Height != 1 {
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if err := b.LastCommit.ValidateBasic(); err != nil {
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return err
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}
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}
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if !bytes.Equal(b.DataHash, b.Data.Hash()) {
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return fmt.Errorf("Wrong Block.Header.DataHash. Expected %v, got %v", b.DataHash, b.Data.Hash())
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}
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return nil
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}
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// FillHeader fills in any remaining header fields that are a function of the block data
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func (b *Block) FillHeader() {
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if b.LastCommitHash == nil {
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b.LastCommitHash = b.LastCommit.Hash()
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}
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if b.DataHash == nil {
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b.DataHash = b.Data.Hash()
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}
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}
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// Hash computes and returns the block hash.
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// If the block is incomplete, block hash is nil for safety.
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func (b *Block) Hash() data.Bytes {
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// fmt.Println(">>", b.Data)
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if b == nil || b.Header == nil || b.Data == nil || b.LastCommit == nil {
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return nil
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}
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b.FillHeader()
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return b.Header.Hash()
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}
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// MakePartSet returns a PartSet containing parts of a serialized block.
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// This is the form in which the block is gossipped to peers.
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func (b *Block) MakePartSet(partSize int) *PartSet {
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return NewPartSetFromData(wire.BinaryBytes(b), partSize)
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}
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// HashesTo is a convenience function that checks if a block hashes to the given argument.
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// A nil block never hashes to anything, and nothing hashes to a nil hash.
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func (b *Block) HashesTo(hash []byte) bool {
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if len(hash) == 0 {
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return false
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}
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if b == nil {
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return false
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}
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return bytes.Equal(b.Hash(), hash)
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}
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// String returns a string representation of the block
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func (b *Block) String() string {
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return b.StringIndented("")
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}
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// StringIndented returns a string representation of the block
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func (b *Block) StringIndented(indent string) string {
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if b == nil {
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return "nil-Block"
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}
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return fmt.Sprintf(`Block{
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%s %v
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%s %v
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%s %v
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%s}#%v`,
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indent, b.Header.StringIndented(indent+" "),
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indent, b.Data.StringIndented(indent+" "),
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indent, b.LastCommit.StringIndented(indent+" "),
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indent, b.Hash())
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}
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// StringShort returns a shortened string representation of the block
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func (b *Block) StringShort() string {
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if b == nil {
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return "nil-Block"
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} else {
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return fmt.Sprintf("Block#%v", b.Hash())
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}
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}
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//-----------------------------------------------------------------------------
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// Header defines the structure of a Tendermint block header
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// TODO: limit header size
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type Header struct {
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// basic block info
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ChainID string `json:"chain_id"`
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Height int64 `json:"height"`
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Time time.Time `json:"time"`
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NumTxs int64 `json:"num_txs"`
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// prev block info
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LastBlockID BlockID `json:"last_block_id"`
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TotalTxs int64 `json:"total_txs"`
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// hashes of block data
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LastCommitHash data.Bytes `json:"last_commit_hash"` // commit from validators from the last block
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DataHash data.Bytes `json:"data_hash"` // transactions
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// hashes from the app output from the prev block
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ValidatorsHash data.Bytes `json:"validators_hash"` // validators for the current block
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ConsensusHash data.Bytes `json:"consensus_hash"` // consensus params for current block
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AppHash data.Bytes `json:"app_hash"` // state after txs from the previous block
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LastResultsHash data.Bytes `json:"last_results_hash"` // root hash of all results from the txs from the previous block
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}
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// Hash returns the hash of the header.
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// Returns nil if ValidatorHash is missing.
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func (h *Header) Hash() data.Bytes {
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if len(h.ValidatorsHash) == 0 {
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return nil
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}
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return merkle.SimpleHashFromMap(map[string]interface{}{
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"ChainID": h.ChainID,
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"Height": h.Height,
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"Time": h.Time,
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"NumTxs": h.NumTxs,
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"TotalTxs": h.TotalTxs,
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"LastBlockID": h.LastBlockID,
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"LastCommit": h.LastCommitHash,
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"Data": h.DataHash,
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"Validators": h.ValidatorsHash,
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"App": h.AppHash,
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"Consensus": h.ConsensusHash,
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"Results": h.LastResultsHash,
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})
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}
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// StringIndented returns a string representation of the header
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func (h *Header) StringIndented(indent string) string {
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if h == nil {
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return "nil-Header"
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}
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return fmt.Sprintf(`Header{
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%s ChainID: %v
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%s Height: %v
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%s Time: %v
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%s NumTxs: %v
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%s TotalTxs: %v
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%s LastBlockID: %v
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%s LastCommit: %v
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%s Data: %v
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%s Validators: %v
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%s App: %v
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%s Conensus: %v
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%s Results: %v
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%s}#%v`,
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indent, h.ChainID,
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indent, h.Height,
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indent, h.Time,
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indent, h.NumTxs,
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indent, h.TotalTxs,
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indent, h.LastBlockID,
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indent, h.LastCommitHash,
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indent, h.DataHash,
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indent, h.ValidatorsHash,
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indent, h.AppHash,
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indent, h.ConsensusHash,
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indent, h.LastResultsHash,
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indent, h.Hash())
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}
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//-------------------------------------
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// Commit contains the evidence that a block was committed by a set of validators.
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// NOTE: Commit is empty for height 1, but never nil.
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type Commit struct {
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// NOTE: The Precommits are in order of address to preserve the bonded ValidatorSet order.
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// Any peer with a block can gossip precommits by index with a peer without recalculating the
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// active ValidatorSet.
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BlockID BlockID `json:"blockID"`
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Precommits []*Vote `json:"precommits"`
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// Volatile
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firstPrecommit *Vote
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hash data.Bytes
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bitArray *cmn.BitArray
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}
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// FirstPrecommit returns the first non-nil precommit in the commit
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func (commit *Commit) FirstPrecommit() *Vote {
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if len(commit.Precommits) == 0 {
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return nil
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}
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if commit.firstPrecommit != nil {
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return commit.firstPrecommit
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}
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for _, precommit := range commit.Precommits {
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if precommit != nil {
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commit.firstPrecommit = precommit
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return precommit
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}
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}
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return nil
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}
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// Height returns the height of the commit
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func (commit *Commit) Height() int64 {
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if len(commit.Precommits) == 0 {
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return 0
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}
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return commit.FirstPrecommit().Height
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}
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// Round returns the round of the commit
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func (commit *Commit) Round() int {
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if len(commit.Precommits) == 0 {
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return 0
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}
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return commit.FirstPrecommit().Round
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}
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// Type returns the vote type of the commit, which is always VoteTypePrecommit
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func (commit *Commit) Type() byte {
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return VoteTypePrecommit
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}
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// Size returns the number of votes in the commit
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func (commit *Commit) Size() int {
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if commit == nil {
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return 0
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}
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return len(commit.Precommits)
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}
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// BitArray returns a BitArray of which validators voted in this commit
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func (commit *Commit) BitArray() *cmn.BitArray {
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if commit.bitArray == nil {
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commit.bitArray = cmn.NewBitArray(len(commit.Precommits))
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for i, precommit := range commit.Precommits {
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// TODO: need to check the BlockID otherwise we could be counting conflicts,
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// not just the one with +2/3 !
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commit.bitArray.SetIndex(i, precommit != nil)
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}
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}
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return commit.bitArray
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}
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// GetByIndex returns the vote corresponding to a given validator index
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func (commit *Commit) GetByIndex(index int) *Vote {
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return commit.Precommits[index]
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}
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// IsCommit returns true if there is at least one vote
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func (commit *Commit) IsCommit() bool {
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return len(commit.Precommits) != 0
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}
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// ValidateBasic performs basic validation that doesn't involve state data.
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func (commit *Commit) ValidateBasic() error {
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if commit.BlockID.IsZero() {
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return errors.New("Commit cannot be for nil block")
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}
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if len(commit.Precommits) == 0 {
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return errors.New("No precommits in commit")
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}
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height, round := commit.Height(), commit.Round()
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// validate the precommits
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for _, precommit := range commit.Precommits {
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// It's OK for precommits to be missing.
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if precommit == nil {
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continue
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}
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// Ensure that all votes are precommits
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if precommit.Type != VoteTypePrecommit {
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return fmt.Errorf("Invalid commit vote. Expected precommit, got %v",
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precommit.Type)
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}
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// Ensure that all heights are the same
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if precommit.Height != height {
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return fmt.Errorf("Invalid commit precommit height. Expected %v, got %v",
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height, precommit.Height)
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}
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// Ensure that all rounds are the same
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if precommit.Round != round {
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return fmt.Errorf("Invalid commit precommit round. Expected %v, got %v",
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round, precommit.Round)
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}
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}
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return nil
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}
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// Hash returns the hash of the commit
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func (commit *Commit) Hash() data.Bytes {
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if commit.hash == nil {
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bs := make([]interface{}, len(commit.Precommits))
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for i, precommit := range commit.Precommits {
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bs[i] = precommit
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}
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commit.hash = merkle.SimpleHashFromBinaries(bs)
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}
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return commit.hash
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}
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// StringIndented returns a string representation of the commit
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func (commit *Commit) StringIndented(indent string) string {
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if commit == nil {
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return "nil-Commit"
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}
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precommitStrings := make([]string, len(commit.Precommits))
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for i, precommit := range commit.Precommits {
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precommitStrings[i] = precommit.String()
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}
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return fmt.Sprintf(`Commit{
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%s BlockID: %v
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%s Precommits: %v
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%s}#%v`,
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indent, commit.BlockID,
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indent, strings.Join(precommitStrings, "\n"+indent+" "),
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indent, commit.hash)
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}
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//-----------------------------------------------------------------------------
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// SignedHeader is a header along with the commits that prove it
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type SignedHeader struct {
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Header *Header `json:"header"`
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Commit *Commit `json:"commit"`
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}
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//-----------------------------------------------------------------------------
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// Data contains the set of transactions included in the block
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type Data struct {
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// Txs that will be applied by state @ block.Height+1.
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// NOTE: not all txs here are valid. We're just agreeing on the order first.
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// This means that block.AppHash does not include these txs.
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Txs Txs `json:"txs"`
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// Volatile
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hash data.Bytes
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}
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// Hash returns the hash of the data
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func (data *Data) Hash() data.Bytes {
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if data.hash == nil {
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data.hash = data.Txs.Hash() // NOTE: leaves of merkle tree are TxIDs
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}
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return data.hash
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}
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// StringIndented returns a string representation of the transactions
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func (data *Data) StringIndented(indent string) string {
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if data == nil {
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return "nil-Data"
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}
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txStrings := make([]string, cmn.MinInt(len(data.Txs), 21))
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for i, tx := range data.Txs {
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if i == 20 {
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txStrings[i] = fmt.Sprintf("... (%v total)", len(data.Txs))
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break
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}
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txStrings[i] = fmt.Sprintf("Tx:%v", tx)
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}
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return fmt.Sprintf(`Data{
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%s %v
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%s}#%v`,
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indent, strings.Join(txStrings, "\n"+indent+" "),
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indent, data.hash)
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}
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//--------------------------------------------------------------------------------
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// BlockID defines the unique ID of a block as its Hash and its PartSetHeader
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type BlockID struct {
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Hash data.Bytes `json:"hash"`
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PartsHeader PartSetHeader `json:"parts"`
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}
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// IsZero returns true if this is the BlockID for a nil-block
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func (blockID BlockID) IsZero() bool {
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return len(blockID.Hash) == 0 && blockID.PartsHeader.IsZero()
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}
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// Equals returns true if the BlockID matches the given BlockID
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func (blockID BlockID) Equals(other BlockID) bool {
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return bytes.Equal(blockID.Hash, other.Hash) &&
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blockID.PartsHeader.Equals(other.PartsHeader)
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}
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// Key returns a machine-readable string representation of the BlockID
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func (blockID BlockID) Key() string {
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return string(blockID.Hash) + string(wire.BinaryBytes(blockID.PartsHeader))
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}
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// WriteSignBytes writes the canonical bytes of the BlockID to the given writer for digital signing
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func (blockID BlockID) WriteSignBytes(w io.Writer, n *int, err *error) {
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if blockID.IsZero() {
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wire.WriteTo([]byte("null"), w, n, err)
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} else {
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wire.WriteJSON(CanonicalBlockID(blockID), w, n, err)
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}
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}
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// String returns a human readable string representation of the BlockID
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func (blockID BlockID) String() string {
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return fmt.Sprintf(`%v:%v`, blockID.Hash, blockID.PartsHeader)
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}
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