mirror of
https://github.com/superseriousbusiness/gotosocial.git
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429 lines
16 KiB
Go
429 lines
16 KiB
Go
/*
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GoToSocial
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Copyright (C) 2021-2023 GoToSocial Authors admin@gotosocial.org
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU Affero General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Affero General Public License for more details.
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You should have received a copy of the GNU Affero General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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package federation
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import (
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"context"
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"errors"
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"fmt"
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"net/http"
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"net/url"
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"codeberg.org/gruf/go-kv"
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"github.com/superseriousbusiness/activity/pub"
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"github.com/superseriousbusiness/activity/streams"
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"github.com/superseriousbusiness/activity/streams/vocab"
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"github.com/superseriousbusiness/gotosocial/internal/ap"
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"github.com/superseriousbusiness/gotosocial/internal/db"
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"github.com/superseriousbusiness/gotosocial/internal/federation/dereferencing"
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"github.com/superseriousbusiness/gotosocial/internal/gtsmodel"
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"github.com/superseriousbusiness/gotosocial/internal/log"
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"github.com/superseriousbusiness/gotosocial/internal/transport"
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"github.com/superseriousbusiness/gotosocial/internal/uris"
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"github.com/superseriousbusiness/gotosocial/internal/util"
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)
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/*
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GO FED FEDERATING PROTOCOL INTERFACE
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FederatingProtocol contains behaviors an application needs to satisfy for the
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full ActivityPub S2S implementation to be supported by this library.
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It is only required if the client application wants to support the server-to-
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server, or federating, protocol.
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It is passed to the library as a dependency injection from the client
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application.
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*/
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// PostInboxRequestBodyHook callback after parsing the request body for a federated request
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// to the Actor's inbox.
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//
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// Can be used to set contextual information based on the Activity
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// received.
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//
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// Only called if the Federated Protocol is enabled.
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//
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// Warning: Neither authentication nor authorization has taken place at
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// this time. Doing anything beyond setting contextual information is
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// strongly discouraged.
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//
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// If an error is returned, it is passed back to the caller of
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// PostInbox. In this case, the DelegateActor implementation must not
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// write a response to the ResponseWriter as is expected that the caller
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// to PostInbox will do so when handling the error.
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func (f *federator) PostInboxRequestBodyHook(ctx context.Context, r *http.Request, activity pub.Activity) (context.Context, error) {
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// extract any other IRIs involved in this activity
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otherInvolvedIRIs := []*url.URL{}
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// check if the Activity itself has an 'inReplyTo'
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if replyToable, ok := activity.(ap.ReplyToable); ok {
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if inReplyToURI := ap.ExtractInReplyToURI(replyToable); inReplyToURI != nil {
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otherInvolvedIRIs = append(otherInvolvedIRIs, inReplyToURI)
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}
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}
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// now check if the Object of the Activity (usually a Note or something) has an 'inReplyTo'
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if object := activity.GetActivityStreamsObject(); object != nil {
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if replyToable, ok := object.(ap.ReplyToable); ok {
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if inReplyToURI := ap.ExtractInReplyToURI(replyToable); inReplyToURI != nil {
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otherInvolvedIRIs = append(otherInvolvedIRIs, inReplyToURI)
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}
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}
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}
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// check for Tos and CCs on Activity itself
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if addressable, ok := activity.(ap.Addressable); ok {
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if ccURIs, err := ap.ExtractCCs(addressable); err == nil {
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otherInvolvedIRIs = append(otherInvolvedIRIs, ccURIs...)
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}
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if toURIs, err := ap.ExtractTos(addressable); err == nil {
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otherInvolvedIRIs = append(otherInvolvedIRIs, toURIs...)
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}
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}
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// and on the Object itself
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if object := activity.GetActivityStreamsObject(); object != nil {
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if addressable, ok := object.(ap.Addressable); ok {
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if ccURIs, err := ap.ExtractCCs(addressable); err == nil {
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otherInvolvedIRIs = append(otherInvolvedIRIs, ccURIs...)
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}
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if toURIs, err := ap.ExtractTos(addressable); err == nil {
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otherInvolvedIRIs = append(otherInvolvedIRIs, toURIs...)
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}
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}
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}
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// remove any duplicate entries in the slice we put together
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deduped := util.UniqueURIs(otherInvolvedIRIs)
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// clean any instances of the public URI since we don't care about that in this context
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cleaned := []*url.URL{}
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for _, u := range deduped {
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if !pub.IsPublic(u.String()) {
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cleaned = append(cleaned, u)
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}
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}
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withOtherInvolvedIRIs := context.WithValue(ctx, ap.ContextOtherInvolvedIRIs, cleaned)
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return withOtherInvolvedIRIs, nil
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}
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// AuthenticatePostInbox delegates the authentication of a POST to an
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// inbox.
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//
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// If an error is returned, it is passed back to the caller of
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// PostInbox. In this case, the implementation must not write a
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// response to the ResponseWriter as is expected that the client will
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// do so when handling the error. The 'authenticated' is ignored.
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//
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// If no error is returned, but authentication or authorization fails,
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// then authenticated must be false and error nil. It is expected that
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// the implementation handles writing to the ResponseWriter in this
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// case.
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//
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// Finally, if the authentication and authorization succeeds, then
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// authenticated must be true and error nil. The request will continue
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// to be processed.
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func (f *federator) AuthenticatePostInbox(ctx context.Context, w http.ResponseWriter, r *http.Request) (context.Context, bool, error) {
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l := log.WithFields(kv.Fields{
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{"useragent", r.UserAgent()},
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{"url", r.URL.String()},
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}...)
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l.Trace("received request to authenticate")
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if !uris.IsInboxPath(r.URL) {
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return nil, false, fmt.Errorf("path %s was not an inbox path", r.URL.String())
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}
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username, err := uris.ParseInboxPath(r.URL)
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if err != nil {
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return nil, false, fmt.Errorf("could not parse path %s: %s", r.URL.String(), err)
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}
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if username == "" {
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return nil, false, errors.New("username was empty")
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}
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receivingAccount, err := f.db.GetAccountByUsernameDomain(ctx, username, "")
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if err != nil {
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return nil, false, fmt.Errorf("could not fetch receiving account with username %s: %s", username, err)
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}
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publicKeyOwnerURI, errWithCode := f.AuthenticateFederatedRequest(ctx, receivingAccount.Username)
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if errWithCode != nil {
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switch errWithCode.Code() {
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case http.StatusUnauthorized, http.StatusForbidden, http.StatusBadRequest:
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// if 400, 401, or 403, obey the interface by writing the header and bailing
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w.WriteHeader(errWithCode.Code())
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return ctx, false, nil
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case http.StatusGone:
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// if the requesting account has gone (http 410) then likely
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// inbox post was a delete, we can just write 202 and leave,
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// since we didn't know about the account anyway, so we can't
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// do any further processing
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w.WriteHeader(http.StatusAccepted)
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return ctx, false, nil
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default:
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// if not, there's been a proper error
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return ctx, false, err
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}
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}
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// authentication has passed, so add an instance entry for this instance if it hasn't been done already
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i := >smodel.Instance{}
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if err := f.db.GetWhere(ctx, []db.Where{{Key: "domain", Value: publicKeyOwnerURI.Host}}, i); err != nil {
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if err != db.ErrNoEntries {
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// there's been an actual error
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return ctx, false, fmt.Errorf("error getting requesting account with public key id %s: %s", publicKeyOwnerURI.String(), err)
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}
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// we don't have an entry for this instance yet so dereference it
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i, err = f.GetRemoteInstance(transport.WithFastfail(ctx), username, &url.URL{
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Scheme: publicKeyOwnerURI.Scheme,
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Host: publicKeyOwnerURI.Host,
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})
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if err != nil {
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return nil, false, fmt.Errorf("could not dereference new remote instance %s during AuthenticatePostInbox: %s", publicKeyOwnerURI.Host, err)
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}
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// and put it in the db
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if err := f.db.Put(ctx, i); err != nil {
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return nil, false, fmt.Errorf("error inserting newly dereferenced instance %s: %s", publicKeyOwnerURI.Host, err)
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}
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}
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requestingAccount, err := f.GetAccount(transport.WithFastfail(ctx), dereferencing.GetAccountParams{
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RequestingUsername: username,
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RemoteAccountID: publicKeyOwnerURI,
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})
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if err != nil {
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return nil, false, fmt.Errorf("couldn't get requesting account %s: %s", publicKeyOwnerURI, err)
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}
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withRequesting := context.WithValue(ctx, ap.ContextRequestingAccount, requestingAccount)
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withReceiving := context.WithValue(withRequesting, ap.ContextReceivingAccount, receivingAccount)
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return withReceiving, true, nil
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}
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// Blocked should determine whether to permit a set of actors given by
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// their ids are able to interact with this particular end user due to
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// being blocked or other application-specific logic.
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//
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// If an error is returned, it is passed back to the caller of
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// PostInbox.
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//
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// If no error is returned, but authentication or authorization fails,
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// then blocked must be true and error nil. An http.StatusForbidden
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// will be written in the wresponse.
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//
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// Finally, if the authentication and authorization succeeds, then
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// blocked must be false and error nil. The request will continue
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// to be processed.
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func (f *federator) Blocked(ctx context.Context, actorIRIs []*url.URL) (bool, error) {
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log.Debugf("entering BLOCKED function with IRI list: %+v", actorIRIs)
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// check domain blocks first for the given actor IRIs
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blocked, err := f.db.AreURIsBlocked(ctx, actorIRIs)
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if err != nil {
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return false, fmt.Errorf("error checking domain blocks of actorIRIs: %s", err)
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}
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if blocked {
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return blocked, nil
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}
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// check domain blocks for any other involved IRIs
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otherInvolvedIRIsI := ctx.Value(ap.ContextOtherInvolvedIRIs)
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otherInvolvedIRIs, ok := otherInvolvedIRIsI.([]*url.URL)
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if !ok {
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log.Error("other involved IRIs not set on request context")
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return false, errors.New("other involved IRIs not set on request context, so couldn't determine blocks")
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}
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blocked, err = f.db.AreURIsBlocked(ctx, otherInvolvedIRIs)
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if err != nil {
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return false, fmt.Errorf("error checking domain blocks of otherInvolvedIRIs: %s", err)
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}
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if blocked {
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return blocked, nil
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}
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// now check for user-level block from receiving against requesting account
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receivingAccountI := ctx.Value(ap.ContextReceivingAccount)
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receivingAccount, ok := receivingAccountI.(*gtsmodel.Account)
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if !ok {
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log.Error("receiving account not set on request context")
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return false, errors.New("receiving account not set on request context, so couldn't determine blocks")
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}
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requestingAccountI := ctx.Value(ap.ContextRequestingAccount)
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requestingAccount, ok := requestingAccountI.(*gtsmodel.Account)
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if !ok {
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log.Error("requesting account not set on request context")
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return false, errors.New("requesting account not set on request context, so couldn't determine blocks")
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}
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// the receiver shouldn't block the sender
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blocked, err = f.db.IsBlocked(ctx, receivingAccount.ID, requestingAccount.ID, false)
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if err != nil {
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return false, fmt.Errorf("error checking user-level blocks: %s", err)
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}
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if blocked {
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return blocked, nil
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}
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// get account IDs for other involved accounts
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var involvedAccountIDs []string
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for _, iri := range otherInvolvedIRIs {
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var involvedAccountID string
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if involvedStatus, err := f.db.GetStatusByURI(ctx, iri.String()); err == nil {
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involvedAccountID = involvedStatus.AccountID
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} else if involvedAccount, err := f.db.GetAccountByURI(ctx, iri.String()); err == nil {
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involvedAccountID = involvedAccount.ID
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}
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if involvedAccountID != "" {
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involvedAccountIDs = append(involvedAccountIDs, involvedAccountID)
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}
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}
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deduped := util.UniqueStrings(involvedAccountIDs)
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for _, involvedAccountID := range deduped {
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// the involved account shouldn't block whoever is making this request
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blocked, err = f.db.IsBlocked(ctx, involvedAccountID, requestingAccount.ID, false)
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if err != nil {
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return false, fmt.Errorf("error checking user-level otherInvolvedIRI blocks: %s", err)
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}
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if blocked {
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return blocked, nil
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}
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// whoever is receiving this request shouldn't block the involved account
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blocked, err = f.db.IsBlocked(ctx, receivingAccount.ID, involvedAccountID, false)
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if err != nil {
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return false, fmt.Errorf("error checking user-level otherInvolvedIRI blocks: %s", err)
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}
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if blocked {
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return blocked, nil
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}
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}
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return false, nil
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}
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// FederatingCallbacks returns the application logic that handles
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// ActivityStreams received from federating peers.
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//
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// Note that certain types of callbacks will be 'wrapped' with default
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// behaviors supported natively by the library. Other callbacks
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// compatible with streams.TypeResolver can be specified by 'other'.
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//
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// For example, setting the 'Create' field in the
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// FederatingWrappedCallbacks lets an application dependency inject
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// additional behaviors they want to take place, including the default
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// behavior supplied by this library. This is guaranteed to be compliant
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// with the ActivityPub Social protocol.
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//
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// To override the default behavior, instead supply the function in
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// 'other', which does not guarantee the application will be compliant
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// with the ActivityPub Social Protocol.
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//
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// Applications are not expected to handle every single ActivityStreams
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// type and extension. The unhandled ones are passed to DefaultCallback.
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func (f *federator) FederatingCallbacks(ctx context.Context) (wrapped pub.FederatingWrappedCallbacks, other []interface{}, err error) {
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wrapped = pub.FederatingWrappedCallbacks{
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// OnFollow determines what action to take for this particular callback
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// if a Follow Activity is handled.
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//
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// For our implementation, we always want to do nothing because we have internal logic for handling follows.
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OnFollow: pub.OnFollowDoNothing,
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}
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// override some default behaviors and trigger our own side effects
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other = []interface{}{
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func(ctx context.Context, undo vocab.ActivityStreamsUndo) error {
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return f.FederatingDB().Undo(ctx, undo)
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},
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func(ctx context.Context, accept vocab.ActivityStreamsAccept) error {
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return f.FederatingDB().Accept(ctx, accept)
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},
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func(ctx context.Context, reject vocab.ActivityStreamsReject) error {
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return f.FederatingDB().Reject(ctx, reject)
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},
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func(ctx context.Context, announce vocab.ActivityStreamsAnnounce) error {
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return f.FederatingDB().Announce(ctx, announce)
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},
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}
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return
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}
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// DefaultCallback is called for types that go-fed can deserialize but
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// are not handled by the application's callbacks returned in the
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// Callbacks method.
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//
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// Applications are not expected to handle every single ActivityStreams
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// type and extension, so the unhandled ones are passed to
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// DefaultCallback.
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func (f *federator) DefaultCallback(ctx context.Context, activity pub.Activity) error {
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l := log.WithFields(kv.Fields{
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{"aptype", activity.GetTypeName()},
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}...)
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l.Debugf("received unhandle-able activity type so ignoring it")
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return nil
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}
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// MaxInboxForwardingRecursionDepth determines how deep to search within
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// an activity to determine if inbox forwarding needs to occur.
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//
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// Zero or negative numbers indicate infinite recursion.
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func (f *federator) MaxInboxForwardingRecursionDepth(ctx context.Context) int {
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// TODO
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return 4
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}
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// MaxDeliveryRecursionDepth determines how deep to search within
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// collections owned by peers when they are targeted to receive a
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// delivery.
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//
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// Zero or negative numbers indicate infinite recursion.
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func (f *federator) MaxDeliveryRecursionDepth(ctx context.Context) int {
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// TODO
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return 4
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}
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// FilterForwarding allows the implementation to apply business logic
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// such as blocks, spam filtering, and so on to a list of potential
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// Collections and OrderedCollections of recipients when inbox
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// forwarding has been triggered.
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//
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// The activity is provided as a reference for more intelligent
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// logic to be used, but the implementation must not modify it.
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func (f *federator) FilterForwarding(ctx context.Context, potentialRecipients []*url.URL, a pub.Activity) ([]*url.URL, error) {
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// TODO
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return []*url.URL{}, nil
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}
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// GetInbox returns the OrderedCollection inbox of the actor for this
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// context. It is up to the implementation to provide the correct
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// collection for the kind of authorization given in the request.
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//
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// AuthenticateGetInbox will be called prior to this.
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//
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// Always called, regardless whether the Federated Protocol or Social
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// API is enabled.
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func (f *federator) GetInbox(ctx context.Context, r *http.Request) (vocab.ActivityStreamsOrderedCollectionPage, error) {
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// IMPLEMENTATION NOTE: For GoToSocial, we serve GETS to outboxes and inboxes through
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// the CLIENT API, not through the federation API, so we just do nothing here.
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return streams.NewActivityStreamsOrderedCollectionPage(), nil
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}
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