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package types
import (
"bytes"
"fmt"
"strings"
"sync"
acm "github.com/tendermint/tendermint/account"
. "github.com/tendermint/tendermint/common"
"github.com/tendermint/tendermint/wire"
)
// VoteSet helps collect signatures from validators at each height+round
// for a predefined vote type.
// Note that there three kinds of votes: prevotes, precommits, and commits.
// A commit of prior rounds can be added added in lieu of votes/precommits.
// NOTE: Assumes that the sum total of voting power does not exceed MaxUInt64.
type VoteSet struct {
height int
round int
type_ byte
mtx sync.Mutex
valSet *ValidatorSet
votes []*Vote // validator index -> vote
votesBitArray *BitArray // validator index -> has vote?
votesByBlock map[string]int64 // string(blockHash)+string(blockParts) -> vote sum.
totalVotes int64
maj23Hash []byte
maj23PartsHeader PartSetHeader
maj23Exists bool
}
// Constructs a new VoteSet struct used to accumulate votes for given height/round.
func NewVoteSet(height int, round int, type_ byte, valSet *ValidatorSet) *VoteSet {
if height == 0 {
PanicSanity("Cannot make VoteSet for height == 0, doesn't make sense.")
}
return &VoteSet{
height: height,
round: round,
type_: type_,
valSet: valSet,
votes: make([]*Vote, valSet.Size()),
votesBitArray: NewBitArray(valSet.Size()),
votesByBlock: make(map[string]int64),
totalVotes: 0,
}
}
func (voteSet *VoteSet) Height() int {
if voteSet == nil {
return 0
} else {
return voteSet.height
}
}
func (voteSet *VoteSet) Round() int {
if voteSet == nil {
return -1
} else {
return voteSet.round
}
}
func (voteSet *VoteSet) Type() byte {
if voteSet == nil {
return 0x00
} else {
return voteSet.type_
}
}
func (voteSet *VoteSet) Size() int {
if voteSet == nil {
return 0
} else {
return voteSet.valSet.Size()
}
}
// Returns added=true, index if vote was added
// Otherwise returns err=ErrVote[UnexpectedStep|InvalidAccount|InvalidSignature|InvalidBlockHash|ConflictingSignature]
// Duplicate votes return added=false, err=nil.
// NOTE: vote should not be mutated after adding.
func (voteSet *VoteSet) AddByIndex(valIndex int, vote *Vote) (added bool, address []byte, err error) {
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
return voteSet.addByIndex(valIndex, vote)
}
// Returns added=true, index if vote was added
// Otherwise returns err=ErrVote[UnexpectedStep|InvalidAccount|InvalidSignature|InvalidBlockHash|ConflictingSignature]
// Duplicate votes return added=false, err=nil.
// NOTE: vote should not be mutated after adding.
func (voteSet *VoteSet) AddByAddress(address []byte, vote *Vote) (added bool, index int, err error) {
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
// Ensure that signer is a validator.
valIndex, val := voteSet.valSet.GetByAddress(address)
if val == nil {
return false, 0, ErrVoteInvalidAccount
}
return voteSet.addVote(val, valIndex, vote)
}
func (voteSet *VoteSet) addByIndex(valIndex int, vote *Vote) (added bool, address []byte, err error) {
// Ensure that signer is a validator.
address, val := voteSet.valSet.GetByIndex(valIndex)
if val == nil {
return false, nil, ErrVoteInvalidAccount
}
added, _, err = voteSet.addVote(val, valIndex, vote)
return
}
func (voteSet *VoteSet) addVote(val *Validator, valIndex int, vote *Vote) (bool, int, error) {
// Make sure the step matches. (or that vote is commit && round < voteSet.round)
if (vote.Height != voteSet.height) ||
(vote.Round != voteSet.round) ||
(vote.Type != voteSet.type_) {
return false, 0, ErrVoteUnexpectedStep
}
// Check signature.
if !val.PubKey.VerifyBytes(acm.SignBytes(config.GetString("chain_id"), vote), vote.Signature) {
// Bad signature.
return false, 0, ErrVoteInvalidSignature
}
// If vote already exists, return false.
if existingVote := voteSet.votes[valIndex]; existingVote != nil {
if bytes.Equal(existingVote.BlockHash, vote.BlockHash) {
return false, valIndex, nil
} else {
return false, valIndex, &ErrVoteConflictingSignature{
VoteA: existingVote,
VoteB: vote,
}
}
}
// Add vote.
voteSet.votes[valIndex] = vote
voteSet.votesBitArray.SetIndex(valIndex, true)
blockKey := string(vote.BlockHash) + string(wire.BinaryBytes(vote.BlockPartsHeader))
totalBlockHashVotes := voteSet.votesByBlock[blockKey] + val.VotingPower
voteSet.votesByBlock[blockKey] = totalBlockHashVotes
voteSet.totalVotes += val.VotingPower
// If we just nudged it up to two thirds majority, add it.
if totalBlockHashVotes > voteSet.valSet.TotalVotingPower()*2/3 &&
(totalBlockHashVotes-val.VotingPower) <= voteSet.valSet.TotalVotingPower()*2/3 {
voteSet.maj23Hash = vote.BlockHash
voteSet.maj23PartsHeader = vote.BlockPartsHeader
voteSet.maj23Exists = true
}
return true, valIndex, nil
}
func (voteSet *VoteSet) BitArray() *BitArray {
if voteSet == nil {
return nil
}
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
return voteSet.votesBitArray.Copy()
}
func (voteSet *VoteSet) GetByIndex(valIndex int) *Vote {
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
return voteSet.votes[valIndex]
}
func (voteSet *VoteSet) GetByAddress(address []byte) *Vote {
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
valIndex, val := voteSet.valSet.GetByAddress(address)
if val == nil {
PanicSanity("GetByAddress(address) returned nil")
}
return voteSet.votes[valIndex]
}
func (voteSet *VoteSet) HasTwoThirdsMajority() bool {
if voteSet == nil {
return false
}
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
return voteSet.maj23Exists
}
func (voteSet *VoteSet) IsCommit() bool {
if voteSet == nil {
return false
}
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
return len(voteSet.maj23Hash) > 0
}
func (voteSet *VoteSet) HasTwoThirdsAny() bool {
if voteSet == nil {
return false
}
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
return voteSet.totalVotes > voteSet.valSet.TotalVotingPower()*2/3
}
// Returns either a blockhash (or nil) that received +2/3 majority.
// If there exists no such majority, returns (nil, false).
func (voteSet *VoteSet) TwoThirdsMajority() (hash []byte, parts PartSetHeader, ok bool) {
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
if voteSet.maj23Exists {
return voteSet.maj23Hash, voteSet.maj23PartsHeader, true
} else {
return nil, PartSetHeader{}, false
}
}
func (voteSet *VoteSet) String() string {
if voteSet == nil {
return "nil-VoteSet"
}
return voteSet.StringIndented("")
}
func (voteSet *VoteSet) StringIndented(indent string) string {
voteStrings := make([]string, len(voteSet.votes))
for i, vote := range voteSet.votes {
if vote == nil {
voteStrings[i] = "nil-Vote"
} else {
voteStrings[i] = vote.String()
}
}
return fmt.Sprintf(`VoteSet{
%s H:%v R:%v T:%v
%s %v
%s %v
%s}`,
indent, voteSet.height, voteSet.round, voteSet.type_,
indent, strings.Join(voteStrings, "\n"+indent+" "),
indent, voteSet.votesBitArray,
indent)
}
func (voteSet *VoteSet) StringShort() string {
if voteSet == nil {
return "nil-VoteSet"
}
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
return fmt.Sprintf(`VoteSet{H:%v R:%v T:%v +2/3:%v %v}`,
voteSet.height, voteSet.round, voteSet.type_, voteSet.maj23Exists, voteSet.votesBitArray)
}
//--------------------------------------------------------------------------------
// Validation
func (voteSet *VoteSet) MakeValidation() *Validation {
if voteSet.type_ != VoteTypePrecommit {
PanicSanity("Cannot MakeValidation() unless VoteSet.Type is VoteTypePrecommit")
}
voteSet.mtx.Lock()
defer voteSet.mtx.Unlock()
if len(voteSet.maj23Hash) == 0 {
PanicSanity("Cannot MakeValidation() unless a blockhash has +2/3")
}
precommits := make([]*Vote, voteSet.valSet.Size())
voteSet.valSet.Iterate(func(valIndex int, val *Validator) bool {
vote := voteSet.votes[valIndex]
if vote == nil {
return false
}
if !bytes.Equal(vote.BlockHash, voteSet.maj23Hash) {
return false
}
if !vote.BlockPartsHeader.Equals(voteSet.maj23PartsHeader) {
return false
}
precommits[valIndex] = vote
return false
})
return &Validation{
Precommits: precommits,
}
}
//--------------------------------------------------------------------------------
// For testing...
func RandValidator(randBonded bool, minBonded int64) (*ValidatorInfo, *Validator, *PrivValidator) {
privVal := GenPrivValidator()
_, tempFilePath := Tempfile("priv_validator_")
privVal.SetFile(tempFilePath)
bonded := minBonded
if randBonded {
bonded += int64(RandUint32())
}
valInfo := &ValidatorInfo{
Address: privVal.Address,
PubKey: privVal.PubKey,
UnbondTo: []*TxOutput{&TxOutput{
Amount: bonded,
Address: privVal.Address,
}},
FirstBondHeight: 0,
FirstBondAmount: bonded,
}
val := &Validator{
Address: valInfo.Address,
PubKey: valInfo.PubKey,
BondHeight: 0,
UnbondHeight: 0,
LastCommitHeight: 0,
VotingPower: valInfo.FirstBondAmount,
Accum: 0,
}
return valInfo, val, privVal
}