370 lines
11 KiB
Go
370 lines
11 KiB
Go
package lpmessage
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import (
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"bytes"
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"context"
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"time"
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"github.com/google/uuid"
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"github.com/ipfs/go-cid"
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logging "github.com/ipfs/go-log/v2"
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"go.uber.org/multierr"
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"golang.org/x/xerrors"
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"github.com/filecoin-project/go-address"
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"github.com/filecoin-project/go-state-types/big"
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"github.com/filecoin-project/lotus/api"
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"github.com/filecoin-project/lotus/chain/types"
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"github.com/filecoin-project/lotus/lib/harmony/harmonydb"
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"github.com/filecoin-project/lotus/lib/harmony/harmonytask"
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"github.com/filecoin-project/lotus/lib/harmony/resources"
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"github.com/filecoin-project/lotus/lib/promise"
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)
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var log = logging.Logger("lpmessage")
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type SenderAPI interface {
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StateAccountKey(ctx context.Context, addr address.Address, tsk types.TipSetKey) (address.Address, error)
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GasEstimateMessageGas(ctx context.Context, msg *types.Message, spec *api.MessageSendSpec, tsk types.TipSetKey) (*types.Message, error)
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WalletBalance(ctx context.Context, addr address.Address) (big.Int, error)
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MpoolGetNonce(context.Context, address.Address) (uint64, error)
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MpoolPush(context.Context, *types.SignedMessage) (cid.Cid, error)
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}
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type SignerAPI interface {
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WalletSignMessage(context.Context, address.Address, *types.Message) (*types.SignedMessage, error)
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}
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// Sender abstracts away highly-available message sending with coordination through
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// HarmonyDB. It make sure that nonces are assigned transactionally, and that
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// messages are correctly broadcasted to the network. It ensures that messages
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// are sent serially, and that failures to send don't cause nonce gaps.
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type Sender struct {
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api SenderAPI
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sendTask *SendTask
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db *harmonydb.DB
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}
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type SendTask struct {
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sendTF promise.Promise[harmonytask.AddTaskFunc]
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api SenderAPI
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signer SignerAPI
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db *harmonydb.DB
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}
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func (s *SendTask) Do(taskID harmonytask.TaskID, stillOwned func() bool) (done bool, err error) {
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ctx := context.TODO()
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// get message from db
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var dbMsg struct {
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FromKey string `db:"from_key"`
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ToAddr string `db:"to_addr"`
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UnsignedData []byte `db:"unsigned_data"`
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UnsignedCid string `db:"unsigned_cid"`
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// may not be null if we have somehow already signed but failed to send this message
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Nonce *uint64 `db:"nonce"`
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SignedData []byte `db:"signed_data"`
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}
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err = s.db.QueryRow(ctx, `select from_key, nonce, to_addr, unsigned_data, unsigned_cid from message_sends where id = $1`, taskID).Scan(&dbMsg)
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if err != nil {
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return false, xerrors.Errorf("getting message from db: %w", err)
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}
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// deserialize the message
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var msg types.Message
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err = msg.UnmarshalCBOR(bytes.NewReader(dbMsg.UnsignedData))
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if err != nil {
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return false, xerrors.Errorf("unmarshaling unsigned db message: %w", err)
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}
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// get db send lock
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for {
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// check if we still own the task
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if !stillOwned() {
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return false, xerrors.Errorf("lost ownership of task")
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}
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// try to acquire lock
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cn, err := s.db.Exec(ctx, `INSERT INTO message_send_locks (from_key, task_id, claimed_at) VALUES ($1, $2, CURRENT_TIMESTAMP)
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ON CONFLICT (from_key) DO UPDATE SET task_id = EXCLUDED.task_id, claimed_at = CURRENT_TIMESTAMP WHERE message_send_locks.task_id = $2;`, dbMsg.FromKey, taskID)
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if err != nil {
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return false, xerrors.Errorf("acquiring send lock: %w", err)
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}
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if cn == 1 {
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// we got the lock
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break
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}
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// we didn't get the lock, wait a bit and try again
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log.Infow("waiting for send lock", "task_id", taskID, "from", dbMsg.FromKey)
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time.Sleep(100 * time.Millisecond)
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}
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// defer release db send lock
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defer func() {
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_, err := s.db.Exec(ctx, `delete from message_send_locks where from_key = $1 and task_id = $2`, dbMsg.FromKey, taskID)
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if err != nil {
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log.Errorw("releasing send lock", "task_id", taskID, "from", dbMsg.FromKey, "error", err)
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// make sure harmony retries this task so that we eventually release this lock
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done = false
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err = multierr.Append(err, xerrors.Errorf("releasing send lock: %w", err))
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}
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}()
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// assign nonce IF NOT ASSIGNED (max(api.MpoolGetNonce, db nonce+1))
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var sigMsg *types.SignedMessage
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if dbMsg.Nonce == nil {
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msgNonce, err := s.api.MpoolGetNonce(ctx, msg.From)
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if err != nil {
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return false, xerrors.Errorf("getting nonce from mpool: %w", err)
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}
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// get nonce from db
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var dbNonce *uint64
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r := s.db.QueryRow(ctx, `select max(nonce) from message_sends where from_key = $1 and send_success = true`, msg.From.String())
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if err := r.Scan(&dbNonce); err != nil {
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return false, xerrors.Errorf("getting nonce from db: %w", err)
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}
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if dbNonce != nil && *dbNonce+1 > msgNonce {
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msgNonce = *dbNonce + 1
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}
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msg.Nonce = msgNonce
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// sign message
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sigMsg, err = s.signer.WalletSignMessage(ctx, msg.From, &msg)
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if err != nil {
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return false, xerrors.Errorf("signing message: %w", err)
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}
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data, err := sigMsg.Serialize()
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if err != nil {
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return false, xerrors.Errorf("serializing message: %w", err)
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}
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jsonBytes, err := sigMsg.MarshalJSON()
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if err != nil {
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return false, xerrors.Errorf("marshaling message: %w", err)
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}
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// write to db
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n, err := s.db.Exec(ctx, `update message_sends set nonce = $1, signed_data = $2, signed_json = $3, signed_cid = $4 where send_task_id = $5`,
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msg.Nonce, data, string(jsonBytes), sigMsg.Cid().String(), taskID)
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if err != nil {
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return false, xerrors.Errorf("updating db record: %w", err)
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}
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if n != 1 {
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log.Errorw("updating db record: expected 1 row to be affected, got %d", n)
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return false, xerrors.Errorf("updating db record: expected 1 row to be affected, got %d", n)
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}
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} else {
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// Note: this handles an unlikely edge-case:
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// We have previously signed the message but either failed to send it or failed to update the db
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// note that when that happens the likely cause is the provider process losing its db connection
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// or getting killed before it can update the db. In that case the message lock will still be held
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// so it will be safe to rebroadcast the signed message
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// deserialize the signed message
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sigMsg = new(types.SignedMessage)
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err = sigMsg.UnmarshalCBOR(bytes.NewReader(dbMsg.SignedData))
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if err != nil {
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return false, xerrors.Errorf("unmarshaling signed db message: %w", err)
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}
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}
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// send!
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_, err = s.api.MpoolPush(ctx, sigMsg)
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// persist send result
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var sendSuccess = err == nil
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var sendError string
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if err != nil {
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sendError = err.Error()
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}
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_, err = s.db.Exec(ctx, `update message_sends set send_success = $1, send_error = $2, send_time = CURRENT_TIMESTAMP where send_task_id = $3`, sendSuccess, sendError, taskID)
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if err != nil {
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return false, xerrors.Errorf("updating db record: %w", err)
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}
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return true, nil
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}
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func (s *SendTask) CanAccept(ids []harmonytask.TaskID, engine *harmonytask.TaskEngine) (*harmonytask.TaskID, error) {
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if len(ids) == 0 {
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// probably can't happen, but panicking is bad
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return nil, nil
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}
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if s.signer == nil {
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// can't sign messages here
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return nil, nil
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}
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return &ids[0], nil
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}
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func (s *SendTask) TypeDetails() harmonytask.TaskTypeDetails {
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return harmonytask.TaskTypeDetails{
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Max: 1024,
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Name: "SendMessage",
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Cost: resources.Resources{
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Cpu: 0,
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Gpu: 0,
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Ram: 1 << 20,
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},
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MaxFailures: 1000,
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Follows: nil,
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}
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}
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func (s *SendTask) Adder(taskFunc harmonytask.AddTaskFunc) {
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s.sendTF.Set(taskFunc)
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}
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var _ harmonytask.TaskInterface = &SendTask{}
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// NewSender creates a new Sender.
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func NewSender(api SenderAPI, signer SignerAPI, db *harmonydb.DB) (*Sender, *SendTask) {
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st := &SendTask{
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api: api,
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signer: signer,
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db: db,
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}
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return &Sender{
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api: api,
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db: db,
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sendTask: st,
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}, st
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}
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// Send atomically assigns a nonce, signs, and pushes a message
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// to mempool.
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// maxFee is only used when GasFeeCap/GasPremium fields aren't specified
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//
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// When maxFee is set to 0, Send will guess appropriate fee
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// based on current chain conditions
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//
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// Send behaves much like fullnodeApi.MpoolPushMessage, but it coordinates
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// through HarmonyDB, making it safe to broadcast messages from multiple independent
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// API nodes
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//
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// Send is also currently more strict about required parameters than MpoolPushMessage
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func (s *Sender) Send(ctx context.Context, msg *types.Message, mss *api.MessageSendSpec, reason string) (cid.Cid, error) {
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if mss == nil {
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return cid.Undef, xerrors.Errorf("MessageSendSpec cannot be nil")
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}
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if (mss.MsgUuid != uuid.UUID{}) {
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return cid.Undef, xerrors.Errorf("MessageSendSpec.MsgUuid must be zero")
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}
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fromA, err := s.api.StateAccountKey(ctx, msg.From, types.EmptyTSK)
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if err != nil {
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return cid.Undef, xerrors.Errorf("getting key address: %w", err)
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}
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msg.From = fromA
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if msg.Nonce != 0 {
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return cid.Undef, xerrors.Errorf("Send expects message nonce to be 0, was %d", msg.Nonce)
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}
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msg, err = s.api.GasEstimateMessageGas(ctx, msg, mss, types.EmptyTSK)
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if err != nil {
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return cid.Undef, xerrors.Errorf("GasEstimateMessageGas error: %w", err)
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}
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b, err := s.api.WalletBalance(ctx, msg.From)
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if err != nil {
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return cid.Undef, xerrors.Errorf("mpool push: getting origin balance: %w", err)
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}
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requiredFunds := big.Add(msg.Value, msg.RequiredFunds())
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if b.LessThan(requiredFunds) {
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return cid.Undef, xerrors.Errorf("mpool push: not enough funds: %s < %s", b, requiredFunds)
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}
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// push the task
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taskAdder := s.sendTask.sendTF.Val(ctx)
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unsBytes := new(bytes.Buffer)
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err = msg.MarshalCBOR(unsBytes)
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if err != nil {
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return cid.Undef, xerrors.Errorf("marshaling message: %w", err)
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}
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taskAdder(func(id harmonytask.TaskID, tx *harmonydb.Tx) (shouldCommit bool, seriousError error) {
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_, err := tx.Exec(`insert into message_sends (from_key, to_addr, send_reason, unsigned_data, unsigned_cid, send_task_id) values ($1, $2, $3, $4, $5, $6)`,
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msg.From.String(), msg.To.String(), reason, unsBytes.Bytes(), msg.Cid().String(), id)
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if err != nil {
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return false, xerrors.Errorf("inserting message into db: %w", err)
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}
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return true, nil
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})
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// wait for exec
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var (
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pollInterval = 50 * time.Millisecond
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pollIntervalMul = 2
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maxPollInterval = 5 * time.Second
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pollLoops = 0
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sigCid cid.Cid
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sendErr error
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)
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for {
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time.Sleep(pollInterval)
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pollLoops++
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pollInterval *= time.Duration(pollIntervalMul)
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if pollInterval > maxPollInterval {
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pollInterval = maxPollInterval
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}
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var err error
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var sigCidStr, sendError string
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var sendSuccess *bool
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err = s.db.QueryRow(ctx, `select signed_cid, send_success, send_error from message_sends where send_task_id = $1`, taskAdder).Scan(&sigCidStr, &sendSuccess, &sendError)
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if err != nil {
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return cid.Undef, xerrors.Errorf("getting cid for task: %w", err)
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}
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if sendSuccess == nil {
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continue
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}
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if !*sendSuccess {
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sendErr = xerrors.Errorf("send error: %s", sendError)
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} else {
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sigCid, err = cid.Parse(sigCidStr)
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if err != nil {
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return cid.Undef, xerrors.Errorf("parsing signed cid: %w", err)
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}
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}
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break
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}
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log.Infow("sent message", "cid", sigCid, "task_id", taskAdder, "send_error", sendErr, "poll_loops", pollLoops)
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return sigCid, sendErr
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}
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