lotus/chain/gen/mining.go

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package gen
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import (
"context"
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amt "github.com/filecoin-project/go-amt-ipld/v2"
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"github.com/filecoin-project/specs-actors/actors/crypto"
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cid "github.com/ipfs/go-cid"
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cbor "github.com/ipfs/go-ipld-cbor"
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cbg "github.com/whyrusleeping/cbor-gen"
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"golang.org/x/xerrors"
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"github.com/filecoin-project/lotus/api"
"github.com/filecoin-project/lotus/chain/state"
"github.com/filecoin-project/lotus/chain/stmgr"
"github.com/filecoin-project/lotus/chain/types"
"github.com/filecoin-project/lotus/chain/vm"
"github.com/filecoin-project/lotus/chain/wallet"
"github.com/filecoin-project/lotus/lib/sigs/bls"
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)
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func MinerCreateBlock(ctx context.Context, sm *stmgr.StateManager, w *wallet.Wallet, bt *api.BlockTemplate) (*types.FullBlock, error) {
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pts, err := sm.ChainStore().LoadTipSet(bt.Parents)
if err != nil {
return nil, xerrors.Errorf("failed to load parent tipset: %w", err)
}
st, recpts, err := sm.TipSetState(ctx, pts)
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if err != nil {
return nil, xerrors.Errorf("failed to load tipset state: %w", err)
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}
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worker, err := stmgr.GetMinerWorkerRaw(ctx, sm, st, bt.Miner)
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if err != nil {
return nil, xerrors.Errorf("failed to get miner worker: %w", err)
}
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next := &types.BlockHeader{
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Miner: bt.Miner,
Parents: bt.Parents.Cids(),
Ticket: bt.Ticket,
ElectionProof: bt.Eproof,
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BeaconEntries: bt.BeaconValues,
Height: bt.Epoch,
Timestamp: bt.Timestamp,
WinPoStProof: bt.WinningPoStProof,
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ParentStateRoot: st,
ParentMessageReceipts: recpts,
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}
var blsMessages []*types.Message
var secpkMessages []*types.SignedMessage
var blsMsgCids, secpkMsgCids []cid.Cid
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var blsSigs []crypto.Signature
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for _, msg := range bt.Messages {
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if msg.Signature.Type == crypto.SigTypeBLS {
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blsSigs = append(blsSigs, msg.Signature)
blsMessages = append(blsMessages, &msg.Message)
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c, err := sm.ChainStore().PutMessage(&msg.Message)
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if err != nil {
return nil, err
}
blsMsgCids = append(blsMsgCids, c)
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} else {
c, err := sm.ChainStore().PutMessage(msg)
if err != nil {
return nil, err
}
secpkMsgCids = append(secpkMsgCids, c)
secpkMessages = append(secpkMessages, msg)
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}
}
bs := cbor.NewCborStore(sm.ChainStore().Blockstore())
blsmsgroot, err := amt.FromArray(ctx, bs, toIfArr(blsMsgCids))
if err != nil {
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return nil, xerrors.Errorf("building bls amt: %w", err)
}
secpkmsgroot, err := amt.FromArray(ctx, bs, toIfArr(secpkMsgCids))
if err != nil {
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return nil, xerrors.Errorf("building secpk amt: %w", err)
}
mmcid, err := bs.Put(ctx, &types.MsgMeta{
BlsMessages: blsmsgroot,
SecpkMessages: secpkmsgroot,
})
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if err != nil {
return nil, err
}
next.Messages = mmcid
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aggSig, err := aggregateSignatures(blsSigs)
if err != nil {
return nil, err
}
next.BLSAggregate = aggSig
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pweight, err := sm.ChainStore().Weight(ctx, pts)
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if err != nil {
return nil, err
}
next.ParentWeight = pweight
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cst := cbor.NewCborStore(sm.ChainStore().Blockstore())
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tree, err := state.LoadStateTree(cst, st)
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if err != nil {
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return nil, xerrors.Errorf("failed to load state tree: %w", err)
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}
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waddr, err := vm.ResolveToKeyAddr(tree, cst, worker)
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if err != nil {
return nil, xerrors.Errorf("failed to resolve miner address to key address: %w", err)
}
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nosigbytes, err := next.SigningBytes()
if err != nil {
return nil, xerrors.Errorf("failed to get signing bytes for block: %w", err)
}
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sig, err := w.Sign(ctx, waddr, nosigbytes)
if err != nil {
return nil, xerrors.Errorf("failed to sign new block: %w", err)
}
next.BlockSig = sig
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fullBlock := &types.FullBlock{
Header: next,
BlsMessages: blsMessages,
SecpkMessages: secpkMessages,
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}
return fullBlock, nil
}
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func aggregateSignatures(sigs []crypto.Signature) (*crypto.Signature, error) {
sigsS := make([][]byte, len(sigs))
for i := 0; i < len(sigs); i++ {
sigsS[i] = sigs[i].Data
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}
aggregator := new(bls.AggregateSignature).AggregateCompressed(sigsS)
if aggregator == nil {
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if len(sigs) > 0 {
return nil, xerrors.Errorf("bls.Aggregate returned nil with %d signatures", len(sigs))
}
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// Note: for blst this condition should not happen - nil should not
// be returned
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return &crypto.Signature{
Type: crypto.SigTypeBLS,
Data: new(bls.Signature).Compress(),
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}, nil
}
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aggSigAff := aggregator.ToAffine()
if aggSigAff == nil {
return &crypto.Signature{
Type: crypto.SigTypeBLS,
Data: new(bls.Signature).Compress(),
}, nil
}
aggSig := aggSigAff.Compress()
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return &crypto.Signature{
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Type: crypto.SigTypeBLS,
Data: aggSig,
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}, nil
}
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func toIfArr(cids []cid.Cid) []cbg.CBORMarshaler {
out := make([]cbg.CBORMarshaler, 0, len(cids))
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for _, c := range cids {
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oc := cbg.CborCid(c)
out = append(out, &oc)
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}
return out
}