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package hmy
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import (
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"context"
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"fmt"
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"math/big"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/bloombits"
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"github.com/ethereum/go-ethereum/event"
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"github.com/ethereum/go-ethereum/rpc"
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"github.com/harmony-one/harmony/block"
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"github.com/harmony-one/harmony/core"
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"github.com/harmony-one/harmony/core/rawdb"
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"github.com/harmony-one/harmony/core/state"
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"github.com/harmony-one/harmony/core/types"
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"github.com/harmony-one/harmony/crypto/bls"
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internal_bls "github.com/harmony-one/harmony/crypto/bls"
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internal_common "github.com/harmony-one/harmony/internal/common"
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"github.com/harmony-one/harmony/internal/params"
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"github.com/harmony-one/harmony/internal/utils"
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"github.com/harmony-one/harmony/shard"
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"github.com/harmony-one/harmony/staking/availability"
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stakingReward "github.com/harmony-one/harmony/staking/reward"
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"github.com/pkg/errors"
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)
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// ChainConfig ...
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func (hmy *Harmony) ChainConfig() *params.ChainConfig {
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return hmy.BlockChain.Config()
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}
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// GetShardState ...
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func (hmy *Harmony) GetShardState() (*shard.State, error) {
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return hmy.BlockChain.ReadShardState(hmy.BlockChain.CurrentHeader().Epoch())
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}
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// GetBlockSigners ..
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func (hmy *Harmony) GetBlockSigners(
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ctx context.Context, blockNum rpc.BlockNumber,
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) (shard.SlotList, *internal_bls.Mask, error) {
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blk, err := hmy.BlockByNumber(ctx, blockNum)
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if err != nil {
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return nil, nil, err
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}
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blockWithSigners, err := hmy.BlockByNumber(ctx, blockNum+1)
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if err != nil {
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return nil, nil, err
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}
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if blockWithSigners == nil {
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return nil, nil, fmt.Errorf("block number %v not found", blockNum+1)
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}
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committee, err := hmy.GetValidators(blk.Epoch())
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if err != nil {
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return nil, nil, err
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}
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pubKeys := make([]internal_bls.PublicKeyWrapper, len(committee.Slots))
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for i, validator := range committee.Slots {
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key, err := bls.BytesToBLSPublicKey(validator.BLSPublicKey[:])
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if err != nil {
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return nil, nil, err
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}
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pubKeys[i] = internal_bls.PublicKeyWrapper{
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Bytes: validator.BLSPublicKey,
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Object: key,
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}
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}
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mask, err := internal_bls.NewMask(pubKeys, nil)
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if err != nil {
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return nil, nil, err
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}
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err = mask.SetMask(blockWithSigners.Header().LastCommitBitmap())
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if err != nil {
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return nil, nil, err
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}
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return committee.Slots, mask, nil
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}
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// DetailedBlockSignerInfo contains all of the block singing information
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type DetailedBlockSignerInfo struct {
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// Signers are all the signers for the block
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Signers shard.SlotList
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// Committee when the block was signed.
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Committee shard.SlotList
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BlockHash common.Hash
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}
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// GetDetailedBlockSignerInfo fetches the block signer information for any non-genesis block
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func (hmy *Harmony) GetDetailedBlockSignerInfo(
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ctx context.Context, blk *types.Block,
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) (*DetailedBlockSignerInfo, error) {
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parentBlk, err := hmy.BlockByNumber(ctx, rpc.BlockNumber(blk.NumberU64()-1))
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if err != nil {
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return nil, err
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}
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parentShardState, err := hmy.BlockChain.ReadShardState(parentBlk.Epoch())
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if err != nil {
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return nil, err
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}
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committee, signers, _, err := availability.BallotResult(
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parentBlk.Header(), blk.Header(), parentShardState, blk.ShardID(),
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)
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return &DetailedBlockSignerInfo{
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Signers: signers,
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Committee: committee,
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BlockHash: blk.Hash(),
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}, nil
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}
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// PreStakingBlockRewards are the rewards for a block in the pre-staking era (epoch < staking epoch).
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type PreStakingBlockRewards map[common.Address]*big.Int
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// GetPreStakingBlockRewards for the given block number.
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// Calculated rewards are done exactly like chain.AccumulateRewardsAndCountSigs.
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func (hmy *Harmony) GetPreStakingBlockRewards(
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ctx context.Context, blk *types.Block,
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) (PreStakingBlockRewards, error) {
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if hmy.IsStakingEpoch(blk.Epoch()) {
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return nil, fmt.Errorf("block %v is in staking era", blk.Number())
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}
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if cachedReward, ok := hmy.preStakingBlockRewardsCache.Get(blk.Hash()); ok {
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return cachedReward.(PreStakingBlockRewards), nil
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}
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rewards := PreStakingBlockRewards{}
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sigInfo, err := hmy.GetDetailedBlockSignerInfo(ctx, blk)
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if err != nil {
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return nil, err
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}
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last := big.NewInt(0)
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count := big.NewInt(int64(len(sigInfo.Signers)))
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for i, slot := range sigInfo.Signers {
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rewardsForThisAddr, ok := rewards[slot.EcdsaAddress]
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if !ok {
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rewardsForThisAddr = big.NewInt(0)
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}
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cur := big.NewInt(0)
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cur.Mul(stakingReward.PreStakedBlocks, big.NewInt(int64(i+1))).Div(cur, count)
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reward := big.NewInt(0).Sub(cur, last)
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rewards[slot.EcdsaAddress] = new(big.Int).Add(reward, rewardsForThisAddr)
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last = cur
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}
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// Report tx fees of the coinbase (== leader)
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receipts, err := hmy.GetReceipts(ctx, blk.Hash())
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if err != nil {
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return nil, err
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}
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txFees := big.NewInt(0)
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for _, tx := range blk.Transactions() {
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txnHash := tx.HashByType()
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dbTx, _, _, receiptIndex := rawdb.ReadTransaction(hmy.ChainDb(), txnHash)
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if dbTx == nil {
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return nil, fmt.Errorf("could not find receipt for tx: %v", txnHash.String())
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}
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if len(receipts) <= int(receiptIndex) {
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return nil, fmt.Errorf("invalid receipt indext %v (>= num receipts: %v) for tx: %v",
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receiptIndex, len(receipts), txnHash.String())
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}
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txFee := new(big.Int).Mul(tx.GasPrice(), big.NewInt(int64(receipts[receiptIndex].GasUsed)))
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txFees = new(big.Int).Add(txFee, txFees)
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}
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for _, stx := range blk.StakingTransactions() {
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dbsTx, _, _, receiptIndex := rawdb.ReadStakingTransaction(hmy.ChainDb(), stx.Hash())
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if dbsTx == nil {
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return nil, fmt.Errorf("could not find receipt for tx: %v", stx.Hash().String())
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}
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if len(receipts) <= int(receiptIndex) {
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return nil, fmt.Errorf("invalid receipt indext %v (>= num receipts: %v) for tx: %v",
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receiptIndex, len(receipts), stx.Hash().String())
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}
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txFee := new(big.Int).Mul(stx.GasPrice(), big.NewInt(int64(receipts[receiptIndex].GasUsed)))
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txFees = new(big.Int).Add(txFee, txFees)
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}
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if amt, ok := rewards[blk.Header().Coinbase()]; ok {
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rewards[blk.Header().Coinbase()] = new(big.Int).Add(amt, txFees)
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} else {
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rewards[blk.Header().Coinbase()] = txFees
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}
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hmy.preStakingBlockRewardsCache.Add(blk.Hash(), rewards)
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return rewards, nil
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}
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// GetLatestChainHeaders ..
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func (hmy *Harmony) GetLatestChainHeaders() *block.HeaderPair {
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return &block.HeaderPair{
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BeaconHeader: hmy.BeaconChain.CurrentHeader(),
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ShardHeader: hmy.BlockChain.CurrentHeader(),
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}
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}
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// GetLastCrossLinks ..
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func (hmy *Harmony) GetLastCrossLinks() ([]*types.CrossLink, error) {
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crossLinks := []*types.CrossLink{}
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for i := uint32(1); i < shard.Schedule.InstanceForEpoch(hmy.CurrentBlock().Epoch()).NumShards(); i++ {
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link, err := hmy.BlockChain.ReadShardLastCrossLink(i)
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if err != nil {
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return nil, err
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}
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crossLinks = append(crossLinks, link)
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}
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return crossLinks, nil
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}
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// CurrentBlock ...
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func (hmy *Harmony) CurrentBlock() *types.Block {
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return types.NewBlockWithHeader(hmy.BlockChain.CurrentHeader())
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}
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// GetBlock ...
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func (hmy *Harmony) GetBlock(ctx context.Context, hash common.Hash) (*types.Block, error) {
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return hmy.BlockChain.GetBlockByHash(hash), nil
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}
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// GetCurrentBadBlocks ..
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func (hmy *Harmony) GetCurrentBadBlocks() []core.BadBlock {
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return hmy.BlockChain.BadBlocks()
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}
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// GetBalance returns balance of an given address.
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func (hmy *Harmony) GetBalance(ctx context.Context, address common.Address, blockNum rpc.BlockNumber) (*big.Int, error) {
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s, _, err := hmy.StateAndHeaderByNumber(ctx, blockNum)
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if s == nil || err != nil {
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return nil, err
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}
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return s.GetBalance(address), s.Error()
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}
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// BlockByNumber ...
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func (hmy *Harmony) BlockByNumber(ctx context.Context, blockNum rpc.BlockNumber) (*types.Block, error) {
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// Pending block is only known by the miner
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if blockNum == rpc.PendingBlockNumber {
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return nil, errors.New("not implemented")
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}
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// Otherwise resolve and return the block
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if blockNum == rpc.LatestBlockNumber {
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return hmy.BlockChain.CurrentBlock(), nil
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}
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return hmy.BlockChain.GetBlockByNumber(uint64(blockNum)), nil
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}
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// HeaderByNumber ...
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func (hmy *Harmony) HeaderByNumber(ctx context.Context, blockNum rpc.BlockNumber) (*block.Header, error) {
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// Pending block is only known by the miner
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if blockNum == rpc.PendingBlockNumber {
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return nil, errors.New("not implemented")
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}
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// Otherwise resolve and return the block
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if blockNum == rpc.LatestBlockNumber {
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return hmy.BlockChain.CurrentBlock().Header(), nil
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}
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return hmy.BlockChain.GetHeaderByNumber(uint64(blockNum)), nil
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}
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// HeaderByHash ...
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func (hmy *Harmony) HeaderByHash(ctx context.Context, blockHash common.Hash) (*block.Header, error) {
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header := hmy.BlockChain.GetHeaderByHash(blockHash)
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if header == nil {
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return nil, errors.New("Header is not found")
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}
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return header, nil
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}
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// StateAndHeaderByNumber ...
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func (hmy *Harmony) StateAndHeaderByNumber(ctx context.Context, blockNum rpc.BlockNumber) (*state.DB, *block.Header, error) {
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// Pending state is only known by the miner
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if blockNum == rpc.PendingBlockNumber {
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return nil, nil, errors.New("not implemented")
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}
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// Otherwise resolve the block number and return its state
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header, err := hmy.HeaderByNumber(ctx, blockNum)
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if header == nil || err != nil {
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return nil, nil, err
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}
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stateDb, err := hmy.BlockChain.StateAt(header.Root())
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return stateDb, header, err
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}
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// GetLeaderAddress returns the one address of the leader, given the coinbaseAddr.
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// Note that the coinbaseAddr is overloaded with the BLS pub key hash in staking era.
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func (hmy *Harmony) GetLeaderAddress(coinbaseAddr common.Address, epoch *big.Int) string {
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if hmy.IsStakingEpoch(epoch) {
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if leader, exists := hmy.leaderCache.Get(coinbaseAddr); exists {
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bech32, _ := internal_common.AddressToBech32(leader.(common.Address))
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return bech32
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}
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committee, err := hmy.GetValidators(epoch)
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if err != nil {
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return ""
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}
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for _, val := range committee.Slots {
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addr := utils.GetAddressFromBLSPubKeyBytes(val.BLSPublicKey[:])
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hmy.leaderCache.Add(addr, val.EcdsaAddress)
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if addr == coinbaseAddr {
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bech32, _ := internal_common.AddressToBech32(val.EcdsaAddress)
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return bech32
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}
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}
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return "" // Did not find matching address
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}
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bech32, _ := internal_common.AddressToBech32(coinbaseAddr)
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return bech32
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}
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// Filter related APIs
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// GetLogs ...
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func (hmy *Harmony) GetLogs(ctx context.Context, blockHash common.Hash) ([][]*types.Log, error) {
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receipts := hmy.BlockChain.GetReceiptsByHash(blockHash)
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if receipts == nil {
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return nil, errors.New("Missing receipts")
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}
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logs := make([][]*types.Log, len(receipts))
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for i, receipt := range receipts {
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logs[i] = receipt.Logs
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}
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return logs, nil
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}
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// ServiceFilter ...
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func (hmy *Harmony) ServiceFilter(ctx context.Context, session *bloombits.MatcherSession) {
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// TODO(dm): implement
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}
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// SubscribeNewTxsEvent subscribes new tx event.
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// TODO: this is not implemented or verified yet for harmony.
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func (hmy *Harmony) SubscribeNewTxsEvent(ch chan<- core.NewTxsEvent) event.Subscription {
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return hmy.TxPool.SubscribeNewTxsEvent(ch)
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}
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// SubscribeChainEvent subscribes chain event.
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// TODO: this is not implemented or verified yet for harmony.
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func (hmy *Harmony) SubscribeChainEvent(ch chan<- core.ChainEvent) event.Subscription {
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return hmy.BlockChain.SubscribeChainEvent(ch)
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}
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// SubscribeChainHeadEvent subcribes chain head event.
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// TODO: this is not implemented or verified yet for harmony.
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func (hmy *Harmony) SubscribeChainHeadEvent(ch chan<- core.ChainHeadEvent) event.Subscription {
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return hmy.BlockChain.SubscribeChainHeadEvent(ch)
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}
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// SubscribeChainSideEvent subcribes chain side event.
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// TODO: this is not implemented or verified yet for harmony.
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func (hmy *Harmony) SubscribeChainSideEvent(ch chan<- core.ChainSideEvent) event.Subscription {
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return hmy.BlockChain.SubscribeChainSideEvent(ch)
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}
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// SubscribeRemovedLogsEvent subcribes removed logs event.
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// TODO: this is not implemented or verified yet for harmony.
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func (hmy *Harmony) SubscribeRemovedLogsEvent(ch chan<- core.RemovedLogsEvent) event.Subscription {
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return hmy.BlockChain.SubscribeRemovedLogsEvent(ch)
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}
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// SubscribeLogsEvent subcribes log event.
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// TODO: this is not implemented or verified yet for harmony.
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func (hmy *Harmony) SubscribeLogsEvent(ch chan<- []*types.Log) event.Subscription {
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return hmy.BlockChain.SubscribeLogsEvent(ch)
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}
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