mirror of
https://github.com/superseriousbusiness/gotosocial.git
synced 2024-11-01 23:10:01 +00:00
cc48294c31
Inbox POST from federated servers now working for statuses and follow requests. Follow request client API added. Start work on federating outgoing messages. Other fixes and changes/tidying up.
305 lines
13 KiB
Go
305 lines
13 KiB
Go
/*
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GoToSocial
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Copyright (C) 2021 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 message
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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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"github.com/sirupsen/logrus"
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apimodel "github.com/superseriousbusiness/gotosocial/internal/api/model"
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"github.com/superseriousbusiness/gotosocial/internal/config"
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"github.com/superseriousbusiness/gotosocial/internal/db"
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"github.com/superseriousbusiness/gotosocial/internal/federation"
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"github.com/superseriousbusiness/gotosocial/internal/gtsmodel"
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"github.com/superseriousbusiness/gotosocial/internal/media"
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"github.com/superseriousbusiness/gotosocial/internal/oauth"
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"github.com/superseriousbusiness/gotosocial/internal/storage"
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"github.com/superseriousbusiness/gotosocial/internal/typeutils"
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)
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// Processor should be passed to api modules (see internal/apimodule/...). It is used for
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// passing messages back and forth from the client API and the federating interface, via channels.
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// It also contains logic for filtering which messages should end up where.
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// It is designed to be used asynchronously: the client API and the federating API should just be able to
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// fire messages into the processor and not wait for a reply before proceeding with other work. This allows
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// for clean distribution of messages without slowing down the client API and harming the user experience.
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type Processor interface {
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// ToClientAPI returns a channel for putting in messages that need to go to the gts client API.
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ToClientAPI() chan ToClientAPI
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// FromClientAPI returns a channel for putting messages in that come from the client api going to the processor
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FromClientAPI() chan FromClientAPI
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// ToFederator returns a channel for putting in messages that need to go to the federator (activitypub).
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ToFederator() chan ToFederator
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// FromFederator returns a channel for putting messages in that come from the federator (activitypub) going into the processor
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FromFederator() chan FromFederator
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// Start starts the Processor, reading from its channels and passing messages back and forth.
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Start() error
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// Stop stops the processor cleanly, finishing handling any remaining messages before closing down.
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Stop() error
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/*
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CLIENT API-FACING PROCESSING FUNCTIONS
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These functions are intended to be called when the API client needs an immediate (ie., synchronous) reply
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to an HTTP request. As such, they will only do the bare-minimum of work necessary to give a properly
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formed reply. For more intensive (and time-consuming) calls, where you don't require an immediate
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response, pass work to the processor using a channel instead.
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*/
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// AccountCreate processes the given form for creating a new account, returning an oauth token for that account if successful.
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AccountCreate(authed *oauth.Auth, form *apimodel.AccountCreateRequest) (*apimodel.Token, error)
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// AccountGet processes the given request for account information.
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AccountGet(authed *oauth.Auth, targetAccountID string) (*apimodel.Account, error)
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// AccountUpdate processes the update of an account with the given form
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AccountUpdate(authed *oauth.Auth, form *apimodel.UpdateCredentialsRequest) (*apimodel.Account, error)
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// AdminEmojiCreate handles the creation of a new instance emoji by an admin, using the given form.
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AdminEmojiCreate(authed *oauth.Auth, form *apimodel.EmojiCreateRequest) (*apimodel.Emoji, error)
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// AppCreate processes the creation of a new API application
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AppCreate(authed *oauth.Auth, form *apimodel.ApplicationCreateRequest) (*apimodel.Application, error)
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// FileGet handles the fetching of a media attachment file via the fileserver.
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FileGet(authed *oauth.Auth, form *apimodel.GetContentRequestForm) (*apimodel.Content, error)
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// FollowRequestsGet handles the getting of the authed account's incoming follow requests
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FollowRequestsGet(auth *oauth.Auth) ([]apimodel.Account, ErrorWithCode)
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// FollowRequestAccept handles the acceptance of a follow request from the given account ID
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FollowRequestAccept(auth *oauth.Auth, accountID string) ErrorWithCode
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// InstanceGet retrieves instance information for serving at api/v1/instance
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InstanceGet(domain string) (*apimodel.Instance, ErrorWithCode)
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// MediaCreate handles the creation of a media attachment, using the given form.
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MediaCreate(authed *oauth.Auth, form *apimodel.AttachmentRequest) (*apimodel.Attachment, error)
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// MediaGet handles the GET of a media attachment with the given ID
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MediaGet(authed *oauth.Auth, attachmentID string) (*apimodel.Attachment, ErrorWithCode)
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// MediaUpdate handles the PUT of a media attachment with the given ID and form
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MediaUpdate(authed *oauth.Auth, attachmentID string, form *apimodel.AttachmentUpdateRequest) (*apimodel.Attachment, ErrorWithCode)
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// StatusCreate processes the given form to create a new status, returning the api model representation of that status if it's OK.
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StatusCreate(authed *oauth.Auth, form *apimodel.AdvancedStatusCreateForm) (*apimodel.Status, error)
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// StatusDelete processes the delete of a given status, returning the deleted status if the delete goes through.
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StatusDelete(authed *oauth.Auth, targetStatusID string) (*apimodel.Status, error)
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// StatusFave processes the faving of a given status, returning the updated status if the fave goes through.
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StatusFave(authed *oauth.Auth, targetStatusID string) (*apimodel.Status, error)
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// StatusBoost processes the boost/reblog of a given status, returning the newly-created boost if all is well.
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StatusBoost(authed *oauth.Auth, targetStatusID string) (*apimodel.Status, ErrorWithCode)
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// StatusFavedBy returns a slice of accounts that have liked the given status, filtered according to privacy settings.
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StatusFavedBy(authed *oauth.Auth, targetStatusID string) ([]*apimodel.Account, error)
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// StatusGet gets the given status, taking account of privacy settings and blocks etc.
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StatusGet(authed *oauth.Auth, targetStatusID string) (*apimodel.Status, error)
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// StatusUnfave processes the unfaving of a given status, returning the updated status if the fave goes through.
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StatusUnfave(authed *oauth.Auth, targetStatusID string) (*apimodel.Status, error)
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/*
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FEDERATION API-FACING PROCESSING FUNCTIONS
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These functions are intended to be called when the federating client needs an immediate (ie., synchronous) reply
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to an HTTP request. As such, they will only do the bare-minimum of work necessary to give a properly
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formed reply. For more intensive (and time-consuming) calls, where you don't require an immediate
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response, pass work to the processor using a channel instead.
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*/
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// GetFediUser handles the getting of a fedi/activitypub representation of a user/account, performing appropriate authentication
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// before returning a JSON serializable interface to the caller.
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GetFediUser(requestedUsername string, request *http.Request) (interface{}, ErrorWithCode)
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// GetWebfingerAccount handles the GET for a webfinger resource. Most commonly, it will be used for returning account lookups.
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GetWebfingerAccount(requestedUsername string, request *http.Request) (*apimodel.WebfingerAccountResponse, ErrorWithCode)
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// InboxPost handles POST requests to a user's inbox for new activitypub messages.
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//
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// InboxPost returns true if the request was handled as an ActivityPub POST to an actor's inbox.
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// If false, the request was not an ActivityPub request and may still be handled by the caller in another way, such as serving a web page.
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//
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// If the error is nil, then the ResponseWriter's headers and response has already been written. If a non-nil error is returned, then no response has been written.
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//
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// If the Actor was constructed with the Federated Protocol enabled, side effects will occur.
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//
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// If the Federated Protocol is not enabled, writes the http.StatusMethodNotAllowed status code in the response. No side effects occur.
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InboxPost(ctx context.Context, w http.ResponseWriter, r *http.Request) (bool, error)
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}
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// processor just implements the Processor interface
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type processor struct {
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// federator pub.FederatingActor
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toClientAPI chan ToClientAPI
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fromClientAPI chan FromClientAPI
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toFederator chan ToFederator
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fromFederator chan FromFederator
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federator federation.Federator
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stop chan interface{}
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log *logrus.Logger
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config *config.Config
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tc typeutils.TypeConverter
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oauthServer oauth.Server
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mediaHandler media.Handler
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storage storage.Storage
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db db.DB
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}
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// NewProcessor returns a new Processor that uses the given federator and logger
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func NewProcessor(config *config.Config, tc typeutils.TypeConverter, federator federation.Federator, oauthServer oauth.Server, mediaHandler media.Handler, storage storage.Storage, db db.DB, log *logrus.Logger) Processor {
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return &processor{
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toClientAPI: make(chan ToClientAPI, 100),
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fromClientAPI: make(chan FromClientAPI, 100),
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toFederator: make(chan ToFederator, 100),
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fromFederator: make(chan FromFederator, 100),
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federator: federator,
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stop: make(chan interface{}),
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log: log,
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config: config,
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tc: tc,
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oauthServer: oauthServer,
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mediaHandler: mediaHandler,
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storage: storage,
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db: db,
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}
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}
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func (p *processor) ToClientAPI() chan ToClientAPI {
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return p.toClientAPI
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}
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func (p *processor) FromClientAPI() chan FromClientAPI {
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return p.fromClientAPI
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}
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func (p *processor) ToFederator() chan ToFederator {
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return p.toFederator
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}
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func (p *processor) FromFederator() chan FromFederator {
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return p.fromFederator
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}
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// Start starts the Processor, reading from its channels and passing messages back and forth.
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func (p *processor) Start() error {
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go func() {
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DistLoop:
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for {
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select {
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case clientMsg := <-p.toClientAPI:
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p.log.Infof("received message TO client API: %+v", clientMsg)
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case clientMsg := <-p.fromClientAPI:
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p.log.Infof("received message FROM client API: %+v", clientMsg)
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if err := p.processFromClientAPI(clientMsg); err != nil {
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p.log.Error(err)
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}
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case federatorMsg := <-p.toFederator:
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p.log.Infof("received message TO federator: %+v", federatorMsg)
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case federatorMsg := <-p.fromFederator:
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p.log.Infof("received message FROM federator: %+v", federatorMsg)
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case <-p.stop:
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break DistLoop
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}
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}
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}()
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return nil
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}
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// Stop stops the processor cleanly, finishing handling any remaining messages before closing down.
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// TODO: empty message buffer properly before stopping otherwise we'll lose federating messages.
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func (p *processor) Stop() error {
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close(p.stop)
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return nil
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}
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// ToClientAPI wraps a message that travels from the processor into the client API
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type ToClientAPI struct {
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APObjectType gtsmodel.ActivityStreamsObject
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APActivityType gtsmodel.ActivityStreamsActivity
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Activity interface{}
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}
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// FromClientAPI wraps a message that travels from client API into the processor
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type FromClientAPI struct {
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APObjectType gtsmodel.ActivityStreamsObject
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APActivityType gtsmodel.ActivityStreamsActivity
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Activity interface{}
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}
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// ToFederator wraps a message that travels from the processor into the federator
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type ToFederator struct {
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APObjectType gtsmodel.ActivityStreamsObject
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APActivityType gtsmodel.ActivityStreamsActivity
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Activity interface{}
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}
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// FromFederator wraps a message that travels from the federator into the processor
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type FromFederator struct {
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APObjectType gtsmodel.ActivityStreamsObject
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APActivityType gtsmodel.ActivityStreamsActivity
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Activity interface{}
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}
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func (p *processor) processFromClientAPI(clientMsg FromClientAPI) error {
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switch clientMsg.APObjectType {
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case gtsmodel.ActivityStreamsNote:
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status, ok := clientMsg.Activity.(*gtsmodel.Status)
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if !ok {
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return errors.New("note was not parseable as *gtsmodel.Status")
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}
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if err := p.notifyStatus(status); err != nil {
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return err
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}
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if status.VisibilityAdvanced.Federated {
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return p.federateStatus(status)
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}
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return nil
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}
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return fmt.Errorf("message type unprocessable: %+v", clientMsg)
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}
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func (p *processor) federateStatus(status *gtsmodel.Status) error {
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// derive the sending account -- it might be attached to the status already
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sendingAcct := >smodel.Account{}
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if status.GTSAccount != nil {
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sendingAcct = status.GTSAccount
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} else {
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// it wasn't attached so get it from the db instead
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if err := p.db.GetByID(status.AccountID, sendingAcct); err != nil {
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return err
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}
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}
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outboxURI, err := url.Parse(sendingAcct.OutboxURI)
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if err != nil {
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return err
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}
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// convert the status to AS format Note
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note, err := p.tc.StatusToAS(status)
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if err != nil {
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return err
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}
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_, err = p.federator.FederatingActor().Send(context.Background(), outboxURI, note)
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return err
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}
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func (p *processor) notifyStatus(status *gtsmodel.Status) error {
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return nil
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}
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