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https://github.com/nspcc-dev/neo-go.git
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3a93977b7b
If an oracle node is resynchronized from the genesis the service receives all requests from all blocks via AddRequests() invoked from the native contract. Almost all of them are long obsolete and need to be removed, native oracle contract will try to do that with RemoveRequests() calls, but they won't change anything. So queue up all "initial" requests in special map and manage it directly before the module is Run() which happens after synchronization completion. Then process any requests that are still active and work with new blocks as usual.
290 lines
7.3 KiB
Go
290 lines
7.3 KiB
Go
package oracle
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import (
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"context"
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"errors"
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"mime"
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"net/http"
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"net/url"
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"time"
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"github.com/nspcc-dev/neo-go/pkg/core/state"
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"github.com/nspcc-dev/neo-go/pkg/core/storage"
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"github.com/nspcc-dev/neo-go/pkg/core/transaction"
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"github.com/nspcc-dev/neo-go/pkg/crypto/keys"
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"github.com/nspcc-dev/neo-go/pkg/services/oracle/neofs"
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"go.uber.org/zap"
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)
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const defaultMaxConcurrentRequests = 10
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type request struct {
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ID uint64
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Req *state.OracleRequest
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}
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func (o *Oracle) runRequestWorker() {
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for {
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select {
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case <-o.close:
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return
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case req := <-o.requestCh:
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acc := o.getAccount()
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if acc == nil {
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continue
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}
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err := o.processRequest(acc.PrivateKey(), req)
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if err != nil {
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o.Log.Debug("can't process request", zap.Uint64("id", req.ID), zap.Error(err))
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}
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}
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}
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}
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// RemoveRequests removes all data associated with requests
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// which have been processed by oracle contract.
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func (o *Oracle) RemoveRequests(ids []uint64) {
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o.respMtx.Lock()
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defer o.respMtx.Unlock()
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if !o.running {
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for _, id := range ids {
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delete(o.pending, id)
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}
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} else {
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for _, id := range ids {
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delete(o.responses, id)
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}
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}
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}
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// AddRequests saves all requests in-fly for further processing.
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func (o *Oracle) AddRequests(reqs map[uint64]*state.OracleRequest) {
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if len(reqs) == 0 {
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return
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}
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o.respMtx.Lock()
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if !o.running {
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for id, r := range reqs {
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o.pending[id] = r
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}
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o.respMtx.Unlock()
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return
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}
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o.respMtx.Unlock()
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select {
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case o.requestMap <- reqs:
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default:
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select {
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case old := <-o.requestMap:
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for id, r := range old {
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reqs[id] = r
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}
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default:
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}
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o.requestMap <- reqs
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}
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}
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// ProcessRequestsInternal processes provided requests synchronously.
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func (o *Oracle) ProcessRequestsInternal(reqs map[uint64]*state.OracleRequest) {
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acc := o.getAccount()
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if acc == nil {
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return
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}
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// Process actual requests.
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for id, req := range reqs {
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if err := o.processRequest(acc.PrivateKey(), request{ID: id, Req: req}); err != nil {
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o.Log.Debug("can't process request", zap.Error(err))
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}
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}
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}
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func (o *Oracle) processRequest(priv *keys.PrivateKey, req request) error {
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if req.Req == nil {
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o.processFailedRequest(priv, req)
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return nil
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}
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incTx := o.getResponse(req.ID, true)
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if incTx == nil {
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return nil
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}
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resp := &transaction.OracleResponse{ID: req.ID}
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u, err := url.ParseRequestURI(req.Req.URL)
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if err != nil {
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o.Log.Warn("malformed oracle request", zap.String("url", req.Req.URL), zap.Error(err))
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resp.Code = transaction.ProtocolNotSupported
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} else {
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switch u.Scheme {
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case "https":
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if !o.MainCfg.AllowPrivateHost {
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err = o.URIValidator(u)
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if err != nil {
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o.Log.Warn("forbidden oracle request", zap.String("url", req.Req.URL))
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resp.Code = transaction.Forbidden
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break
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}
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}
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httpReq, err := http.NewRequest("GET", req.Req.URL, nil)
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if err != nil {
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o.Log.Warn("failed to create http request", zap.String("url", req.Req.URL), zap.Error(err))
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resp.Code = transaction.Error
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break
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}
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httpReq.Header.Set("User-Agent", "NeoOracleService/3.0")
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httpReq.Header.Set("Content-Type", "application/json")
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r, err := o.Client.Do(httpReq)
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if err != nil {
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o.Log.Warn("oracle request failed", zap.String("url", req.Req.URL), zap.Error(err))
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resp.Code = transaction.Error
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break
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}
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switch r.StatusCode {
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case http.StatusOK:
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if !checkMediaType(r.Header.Get("Content-Type"), o.MainCfg.AllowedContentTypes) {
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resp.Code = transaction.ContentTypeNotSupported
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break
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}
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result, err := readResponse(r.Body, transaction.MaxOracleResultSize)
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if err != nil {
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if errors.Is(err, ErrResponseTooLarge) {
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resp.Code = transaction.ResponseTooLarge
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} else {
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resp.Code = transaction.Error
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}
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o.Log.Warn("failed to read data for oracle request", zap.String("url", req.Req.URL), zap.Error(err))
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break
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}
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resp.Code, resp.Result = filterRequest(result, req.Req)
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case http.StatusForbidden:
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resp.Code = transaction.Forbidden
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case http.StatusNotFound:
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resp.Code = transaction.NotFound
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case http.StatusRequestTimeout:
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resp.Code = transaction.Timeout
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default:
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resp.Code = transaction.Error
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}
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case neofs.URIScheme:
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ctx, cancel := context.WithTimeout(context.Background(), o.MainCfg.NeoFS.Timeout)
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defer cancel()
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index := (int(req.ID) + incTx.attempts) % len(o.MainCfg.NeoFS.Nodes)
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res, err := neofs.Get(ctx, priv, u, o.MainCfg.NeoFS.Nodes[index])
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if err != nil {
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o.Log.Warn("oracle request failed", zap.String("url", req.Req.URL), zap.Error(err))
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resp.Code = transaction.Error
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} else {
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resp.Code, resp.Result = filterRequest(res, req.Req)
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}
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default:
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resp.Code = transaction.ProtocolNotSupported
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o.Log.Warn("unknown oracle request scheme", zap.String("url", req.Req.URL))
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}
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}
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o.Log.Debug("oracle request processed", zap.String("url", req.Req.URL), zap.Int("code", int(resp.Code)), zap.String("result", string(resp.Result)))
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currentHeight := o.Chain.BlockHeight()
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vubInc := o.Chain.GetConfig().MaxValidUntilBlockIncrement
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_, h, err := o.Chain.GetTransaction(req.Req.OriginalTxID)
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if err != nil {
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if !errors.Is(err, storage.ErrKeyNotFound) {
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return err
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}
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// The only reason tx can be not found is if it wasn't yet persisted from DAO.
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h = currentHeight
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}
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h += vubInc // Main tx is only valid for RequestHeight + ValidUntilBlock.
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tx, err := o.CreateResponseTx(int64(req.Req.GasForResponse), h, resp)
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if err != nil {
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return err
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}
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for h <= currentHeight { // Backup tx must be valid in any event.
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h += vubInc
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}
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backupTx, err := o.CreateResponseTx(int64(req.Req.GasForResponse), h, &transaction.OracleResponse{
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ID: req.ID,
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Code: transaction.ConsensusUnreachable,
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})
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if err != nil {
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return err
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}
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incTx.Lock()
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incTx.request = req.Req
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incTx.tx = tx
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incTx.backupTx = backupTx
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incTx.reverifyTx(o.Network)
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txSig := priv.SignHashable(uint32(o.Network), tx)
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incTx.addResponse(priv.PublicKey(), txSig, false)
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backupSig := priv.SignHashable(uint32(o.Network), backupTx)
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incTx.addResponse(priv.PublicKey(), backupSig, true)
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readyTx, ready := incTx.finalize(o.getOracleNodes(), false)
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if ready {
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ready = !incTx.isSent
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incTx.isSent = true
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}
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incTx.time = time.Now()
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incTx.attempts++
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incTx.Unlock()
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o.getBroadcaster().SendResponse(priv, resp, txSig)
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if ready {
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o.getOnTransaction()(readyTx)
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}
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return nil
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}
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func (o *Oracle) processFailedRequest(priv *keys.PrivateKey, req request) {
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// Request is being processed again.
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incTx := o.getResponse(req.ID, false)
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if incTx == nil {
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// Request was processed by other oracle nodes.
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return
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} else if incTx.isSent {
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// Tx was sent but not yet persisted. Try to pool it again.
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o.getOnTransaction()(incTx.tx)
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return
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}
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// Don't process request again, fallback to backup tx.
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incTx.Lock()
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readyTx, ready := incTx.finalize(o.getOracleNodes(), true)
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if ready {
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ready = !incTx.isSent
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incTx.isSent = true
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}
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incTx.time = time.Now()
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incTx.attempts++
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txSig := incTx.backupSigs[string(priv.PublicKey().Bytes())].sig
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incTx.Unlock()
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o.getBroadcaster().SendResponse(priv, getFailedResponse(req.ID), txSig)
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if ready {
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o.getOnTransaction()(readyTx)
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}
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}
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func checkMediaType(hdr string, allowed []string) bool {
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if len(allowed) == 0 {
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return true
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}
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typ, _, err := mime.ParseMediaType(hdr)
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if err != nil {
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return false
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}
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for _, ct := range allowed {
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if ct == typ {
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return true
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}
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}
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return false
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}
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