Implements collectible usernames, official verification workflows, and third-party bot verification after maintainer protocol and migration review. The composite activity/moderation rating remains an admin-only read model; Telegram Stars Rating wire fields stay unset pending a dedicated official-semantics implementation. Reviewed-Head: 2796345775ea0f908fb7734601e5e1dee4b653b9 Original-Head: fa082b892fd5180c9c9bc53c81c21cf5d250a75b Co-authored-by: Egor Egorov <business.egor.sg@gmail.com>
651 lines
23 KiB
Go
651 lines
23 KiB
Go
package domain
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import (
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"errors"
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"net"
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"net/url"
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"strings"
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"time"
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"unicode/utf8"
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)
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// Official platform verification.
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//
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// This is the badge official clients render from user#b1b8cc83 verified:flags.17
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// and channel#d49f34c6 verified:flags.7 (layer 228). It is deliberately NOT the
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// third-party mechanism built on botVerification#f93cd45c /
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// bots.setCustomVerification#8b89dfbd / bot_verification_icon, where an outside
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// organisation attaches its own icon. The two must never be conflated: an
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// application reviewed here flips the platform flag on the peer record and
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// nothing else.
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//
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// Applications are filed through the built-in @verifybot and decided in the
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// admin panel. The application record is the durable audit subject: it is never
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// deleted, only moved through its status machine.
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// Verification target kinds. A verification subject is always a public presence:
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// a bot, a public channel or a public supergroup. Ordinary user accounts are
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// excluded unless the operator opts in via configuration.
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type VerificationTargetType string
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const (
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VerificationTargetBot VerificationTargetType = "bot"
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VerificationTargetChannel VerificationTargetType = "channel"
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VerificationTargetSupergroup VerificationTargetType = "supergroup"
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VerificationTargetUser VerificationTargetType = "user"
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)
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// Valid reports whether the target type is modelled.
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func (t VerificationTargetType) Valid() bool {
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switch t {
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case VerificationTargetBot, VerificationTargetChannel, VerificationTargetSupergroup, VerificationTargetUser:
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return true
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default:
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return false
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}
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}
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// PeerType maps the target kind onto the peer namespace that holds it: bots and
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// users live in the user namespace, channels and supergroups in the channel one.
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func (t VerificationTargetType) PeerType() PeerType {
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switch t {
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case VerificationTargetChannel, VerificationTargetSupergroup:
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return PeerTypeChannel
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default:
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return PeerTypeUser
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}
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}
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// VerificationStatus is the application lifecycle.
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//
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// draft -- being filled in through the bot dialog, not yet visible to review
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// submitted -- awaiting a reviewer
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// in_review -- claimed by a reviewer
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// approved -- decided in favour; the target carries the platform flag
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// rejected -- decided against, with a mandatory reason
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// cancelled -- withdrawn by the applicant
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type VerificationStatus string
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const (
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VerificationStatusDraft VerificationStatus = "draft"
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VerificationStatusSubmitted VerificationStatus = "submitted"
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VerificationStatusInReview VerificationStatus = "in_review"
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VerificationStatusApproved VerificationStatus = "approved"
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VerificationStatusRejected VerificationStatus = "rejected"
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VerificationStatusCancelled VerificationStatus = "cancelled"
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)
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// Valid reports whether the status is modelled.
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func (s VerificationStatus) Valid() bool {
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switch s {
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case VerificationStatusDraft, VerificationStatusSubmitted, VerificationStatusInReview,
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VerificationStatusApproved, VerificationStatusRejected, VerificationStatusCancelled:
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return true
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default:
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return false
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}
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}
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// Active reports whether the application still occupies its target. Exactly one
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// active application per target is allowed, which the store enforces with a
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// partial unique index over these statuses.
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func (s VerificationStatus) Active() bool {
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switch s {
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case VerificationStatusDraft, VerificationStatusSubmitted, VerificationStatusInReview:
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return true
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default:
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return false
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}
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}
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// Decided reports whether a reviewer has closed the application.
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func (s VerificationStatus) Decided() bool {
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return s == VerificationStatusApproved || s == VerificationStatusRejected
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}
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// CanTransitionVerificationStatus is the single source of truth for the status
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// machine. Both the bot dialog and the review API validate against it, so an
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// operator cannot drive an application into a state the applicant path forbids.
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func CanTransitionVerificationStatus(from, to VerificationStatus) bool {
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if !from.Valid() || !to.Valid() || from == to {
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return false
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}
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switch from {
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case VerificationStatusDraft:
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return to == VerificationStatusSubmitted || to == VerificationStatusCancelled
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case VerificationStatusSubmitted:
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return to == VerificationStatusInReview || to == VerificationStatusApproved ||
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to == VerificationStatusRejected || to == VerificationStatusCancelled
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case VerificationStatusInReview:
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return to == VerificationStatusApproved || to == VerificationStatusRejected ||
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to == VerificationStatusSubmitted || to == VerificationStatusCancelled
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default:
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// Decided and cancelled applications are terminal: history is kept, a new
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// attempt is a new application.
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return false
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}
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}
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// Field bounds. They are enforced in the domain so the bot dialog, the admin API
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// and both store backends reject the same inputs, and they mirror the CHECK
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// constraints on verification_applications.
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const (
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MaxVerificationCategoryLength = 64
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MaxVerificationDescriptionLength = 1024
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MinVerificationDescriptionLength = 40
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MaxVerificationCommentLength = 1024
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MaxVerificationURLLength = 512
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MaxVerificationSocialLinks = 10
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MaxVerificationPressLinks = 10
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// MinVerificationPressLinks is the official bar: independent coverage is what
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// distinguishes a verifiable public presence from a self-declared one.
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MinVerificationPressLinks = 2
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MaxVerificationReasonLength = 1024
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MaxVerificationNoteLength = 2048
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MaxVerificationTitleLength = 256
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MaxVerificationReviewerLength = 128
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MaxVerificationCorrelationLen = 128
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MaxVerificationEventPayloadSize = 8192
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)
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// VerificationCategories is the closed set of project categories offered by the
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// bot. A closed set keeps the review queue groupable and keeps free text out of
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// a field the panel filters on.
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var VerificationCategories = []string{
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"media",
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"government",
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"company",
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"brand",
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"sport",
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"culture",
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"education",
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"nonprofit",
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"public_figure",
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"service",
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"other",
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}
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// ValidVerificationCategory reports whether the category is offered.
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func ValidVerificationCategory(category string) bool {
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for _, item := range VerificationCategories {
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if item == category {
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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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var (
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// ErrVerificationApplicationNotFound reports a missing application.
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ErrVerificationApplicationNotFound = errors.New("verification application not found")
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// ErrVerificationApplicationExists reports an active application already
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// occupying the target.
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ErrVerificationApplicationExists = errors.New("verification application already active for target")
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// ErrVerificationApplicationInvalid rejects a malformed application.
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ErrVerificationApplicationInvalid = errors.New("verification application invalid")
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// ErrVerificationStatusInvalid rejects an impossible status transition.
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ErrVerificationStatusInvalid = errors.New("verification status transition invalid")
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// ErrVerificationVersionConflict reports a lost optimistic-locking race, which
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// is what two reviewers deciding at once must produce for the loser.
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ErrVerificationVersionConflict = errors.New("verification application changed concurrently")
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// ErrVerificationTargetInvalid rejects a target that cannot be verified.
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ErrVerificationTargetInvalid = errors.New("verification target invalid")
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// ErrVerificationTargetNotPublic rejects a target without a public username.
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ErrVerificationTargetNotPublic = errors.New("verification target has no public username")
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// ErrVerificationTargetAlreadyVerified rejects a target that already carries
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// the platform flag.
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ErrVerificationTargetAlreadyVerified = errors.New("verification target already verified")
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// ErrVerificationTargetRestricted rejects a scam/fake/frozen/deleted target.
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ErrVerificationTargetRestricted = errors.New("verification target restricted")
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// ErrVerificationTargetSystem rejects a built-in system entity.
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ErrVerificationTargetSystem = errors.New("verification target is a system entity")
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// ErrVerificationNotOwner reports that the applicant does not control the
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// target.
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ErrVerificationNotOwner = errors.New("applicant does not control verification target")
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// ErrVerificationReasonRequired reports a rejection or revocation without a
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// reason, which the audit trail must never contain.
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ErrVerificationReasonRequired = errors.New("verification decision reason required")
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// ErrVerificationCooldown reports a re-application filed before the
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// configured cooldown after a rejection has elapsed.
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ErrVerificationCooldown = errors.New("verification re-application cooldown active")
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// ErrVerificationRateLimited reports too many applications in the window.
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ErrVerificationRateLimited = errors.New("verification rate limit exceeded")
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// ErrVerificationURLInvalid rejects a link that is not a plain http(s) URL to
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// a public host.
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ErrVerificationURLInvalid = errors.New("verification link invalid")
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// ErrVerificationUserTargetsDisabled reports that plain user accounts are not
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// accepted by this deployment.
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ErrVerificationUserTargetsDisabled = errors.New("verification of user accounts is disabled")
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)
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// VerificationApplication is the persistent application record.
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//
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// The target is addressed by its stable peer id; TargetTitle and TargetUsername
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// are a snapshot for the review UI and audit trail, because a username can move
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// between peers and a title can change after submission.
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type VerificationApplication struct {
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ID int64
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ApplicantUserID int64
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TargetType VerificationTargetType
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TargetID int64
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TargetTitle string
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TargetUsername string
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TargetAccessHash int64
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Category string
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Description string
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OfficialWebsite string
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SocialLinks []string
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PressLinks []string
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AdditionalNote string
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Status VerificationStatus
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CreatedAt time.Time
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UpdatedAt time.Time
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SubmittedAt time.Time
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ReviewedAt time.Time
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ReviewerAdminID string
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DecisionReason string
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InternalNote string
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CorrelationID string
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// Version is the optimistic-locking token. Every mutation submits the version
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// it read and the store refuses a stale one, which is how two reviewers
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// deciding the same application at the same time produce exactly one decision.
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Version int64
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}
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// Target returns the peer the application is about.
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func (a VerificationApplication) Target() Peer {
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return Peer{Type: a.TargetType.PeerType(), ID: a.TargetID}
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}
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// Editable reports whether the applicant may still change the payload.
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func (a VerificationApplication) Editable() bool {
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return a.Status == VerificationStatusDraft
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}
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// VerificationApplicationEventKind is one entry of the immutable per-application
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// history rendered in the panel.
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type VerificationApplicationEventKind string
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const (
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VerificationEventCreated VerificationApplicationEventKind = "created"
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VerificationEventUpdated VerificationApplicationEventKind = "updated"
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VerificationEventSubmitted VerificationApplicationEventKind = "submitted"
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VerificationEventClaimed VerificationApplicationEventKind = "claimed"
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VerificationEventApproved VerificationApplicationEventKind = "approved"
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VerificationEventRejected VerificationApplicationEventKind = "rejected"
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VerificationEventCancelled VerificationApplicationEventKind = "cancelled"
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VerificationEventRevoked VerificationApplicationEventKind = "revoked"
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VerificationEventNotified VerificationApplicationEventKind = "notified"
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)
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// Valid reports whether the event kind is modelled.
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func (k VerificationApplicationEventKind) Valid() bool {
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switch k {
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case VerificationEventCreated, VerificationEventUpdated, VerificationEventSubmitted,
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VerificationEventClaimed, VerificationEventApproved, VerificationEventRejected,
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VerificationEventCancelled, VerificationEventRevoked, VerificationEventNotified:
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return true
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default:
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return false
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}
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}
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// VerificationApplicationEvent is an append-only history row. Actor is the admin
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// identity for review actions and empty for applicant-driven ones, which are
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// attributed by ApplicantUserID on the application itself.
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type VerificationApplicationEvent struct {
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ID int64
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ApplicationID int64
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Kind VerificationApplicationEventKind
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FromStatus VerificationStatus
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ToStatus VerificationStatus
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Actor string
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Reason string
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Note string
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CorrelationID string
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CreatedAt time.Time
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}
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// VerificationTarget is a candidate the applicant controls, as offered by the
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// bot's target picker.
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type VerificationTarget struct {
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Type VerificationTargetType
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ID int64
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Title string
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Username string
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AccessHash int64
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Verified bool
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// Eligible is false when the target cannot be filed right now; Reason carries
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// the domain error for the bot to explain why.
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Eligible bool
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Reason string
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}
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// VerificationDraftInput is the applicant-supplied payload collected by the bot.
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type VerificationDraftInput struct {
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Category string
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Description string
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OfficialWebsite string
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SocialLinks []string
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PressLinks []string
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AdditionalNote string
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}
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// Normalize trims the payload and drops empty links. It is applied before
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// validation so a trailing newline from a chat message is not an error.
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func (in VerificationDraftInput) Normalize() VerificationDraftInput {
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out := VerificationDraftInput{
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Category: strings.TrimSpace(in.Category),
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Description: strings.TrimSpace(in.Description),
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OfficialWebsite: strings.TrimSpace(in.OfficialWebsite),
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AdditionalNote: strings.TrimSpace(in.AdditionalNote),
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}
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out.SocialLinks = normalizeVerificationLinks(in.SocialLinks)
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out.PressLinks = normalizeVerificationLinks(in.PressLinks)
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return out
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}
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func normalizeVerificationLinks(links []string) []string {
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out := make([]string, 0, len(links))
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seen := make(map[string]struct{}, len(links))
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for _, link := range links {
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link = strings.TrimSpace(link)
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if link == "" {
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continue
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}
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key := strings.ToLower(link)
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if _, dup := seen[key]; dup {
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continue
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}
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seen[key] = struct{}{}
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out = append(out, link)
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}
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return out
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}
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// ValidateDraft checks a partially filled draft: every present field must be
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// well formed, but nothing is required yet. The bot uses it per step.
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func (in VerificationDraftInput) ValidateDraft() error {
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in = in.Normalize()
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if in.Category != "" && !ValidVerificationCategory(in.Category) {
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return ErrVerificationApplicationInvalid
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}
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if utf8.RuneCountInString(in.Description) > MaxVerificationDescriptionLength {
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return ErrVerificationApplicationInvalid
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}
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if utf8.RuneCountInString(in.AdditionalNote) > MaxVerificationCommentLength {
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return ErrVerificationApplicationInvalid
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}
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if in.OfficialWebsite != "" {
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if err := ValidateVerificationURL(in.OfficialWebsite); err != nil {
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return err
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}
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}
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if len(in.SocialLinks) > MaxVerificationSocialLinks || len(in.PressLinks) > MaxVerificationPressLinks {
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return ErrVerificationApplicationInvalid
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}
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for _, link := range append(append([]string(nil), in.SocialLinks...), in.PressLinks...) {
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if err := ValidateVerificationURL(link); err != nil {
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return err
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}
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}
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return nil
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}
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// ValidateForSubmission checks a complete application. Everything the official
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// process requires must be present: category, a real description, a website, and
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// at least MinVerificationPressLinks independent press links.
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func (in VerificationDraftInput) ValidateForSubmission() error {
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in = in.Normalize()
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if err := in.ValidateDraft(); err != nil {
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return err
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}
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if !ValidVerificationCategory(in.Category) {
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return ErrVerificationApplicationInvalid
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}
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if utf8.RuneCountInString(in.Description) < MinVerificationDescriptionLength {
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return ErrVerificationApplicationInvalid
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}
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if in.OfficialWebsite == "" {
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return ErrVerificationApplicationInvalid
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}
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if len(in.PressLinks) < MinVerificationPressLinks {
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return ErrVerificationApplicationInvalid
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}
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return nil
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}
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// ValidateVerificationURL accepts only a plain http(s) URL naming a public host.
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//
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// The server never fetches these links, and this check is what keeps that
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// decision safe to revisit: credentials, non-web schemes, loopback, link-local,
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// private and other reserved address space are all refused, so a link can never
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// become an SSRF probe against the deployment's own network, and the admin panel
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// only ever renders an absolute external URL.
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func ValidateVerificationURL(raw string) error {
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raw = strings.TrimSpace(raw)
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if raw == "" || len(raw) > MaxVerificationURLLength {
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return ErrVerificationURLInvalid
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}
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if strings.ContainsAny(raw, " \t\r\n<>\"'\\") {
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return ErrVerificationURLInvalid
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}
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parsed, err := url.Parse(raw)
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if err != nil {
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return ErrVerificationURLInvalid
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}
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switch strings.ToLower(parsed.Scheme) {
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case "http", "https":
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default:
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return ErrVerificationURLInvalid
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}
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if parsed.User != nil {
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// user:password@host would be rendered as a credential-bearing link.
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return ErrVerificationURLInvalid
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}
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host := parsed.Hostname()
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if host == "" {
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return ErrVerificationURLInvalid
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}
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if err := validateVerificationHost(host); err != nil {
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return err
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}
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if port := parsed.Port(); port != "" {
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switch port {
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case "80", "443":
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default:
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// A non-standard port on a "public site" link is a smell and would be
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// the first thing an SSRF attempt reaches for.
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return ErrVerificationURLInvalid
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}
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}
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return nil
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}
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func validateVerificationHost(host string) error {
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lower := strings.ToLower(host)
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if lower == "localhost" || strings.HasSuffix(lower, ".localhost") ||
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strings.HasSuffix(lower, ".local") || strings.HasSuffix(lower, ".internal") ||
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strings.HasSuffix(lower, ".onion") {
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return ErrVerificationURLInvalid
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}
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if ip := net.ParseIP(host); ip != nil {
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if !publicVerificationIP(ip) {
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return ErrVerificationURLInvalid
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}
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return nil
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}
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// A registered name must look like a real domain: at least one dot, no
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// underscores, no trailing dot-only labels.
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if !strings.Contains(lower, ".") {
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return ErrVerificationURLInvalid
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}
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for _, label := range strings.Split(strings.TrimSuffix(lower, "."), ".") {
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if label == "" || len(label) > 63 {
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return ErrVerificationURLInvalid
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}
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for i := 0; i < len(label); i++ {
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c := label[i]
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switch {
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case c >= 'a' && c <= 'z':
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case c >= '0' && c <= '9':
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case c == '-' && i != 0 && i != len(label)-1:
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default:
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return ErrVerificationURLInvalid
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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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// publicVerificationIP reports whether an IP literal is globally routable.
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func publicVerificationIP(ip net.IP) bool {
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if ip.IsLoopback() || ip.IsUnspecified() || ip.IsLinkLocalUnicast() ||
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ip.IsLinkLocalMulticast() || ip.IsInterfaceLocalMulticast() ||
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ip.IsMulticast() || ip.IsPrivate() {
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return false
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}
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if v4 := ip.To4(); v4 != nil {
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switch {
|
|
case v4[0] == 100 && v4[1]&0xc0 == 64: // 100.64.0.0/10 CGNAT
|
|
return false
|
|
case v4[0] == 192 && v4[1] == 0 && v4[2] == 0: // 192.0.0.0/24
|
|
return false
|
|
case v4[0] == 192 && v4[1] == 0 && v4[2] == 2: // TEST-NET-1
|
|
return false
|
|
case v4[0] == 198 && v4[1] == 51 && v4[2] == 100: // TEST-NET-2
|
|
return false
|
|
case v4[0] == 203 && v4[1] == 0 && v4[2] == 113: // TEST-NET-3
|
|
return false
|
|
case v4[0] == 198 && v4[1]&0xfe == 18: // 198.18.0.0/15 benchmarking
|
|
return false
|
|
case v4[0] >= 240: // 240.0.0.0/4 reserved, 255.255.255.255 broadcast
|
|
return false
|
|
}
|
|
return true
|
|
}
|
|
// IPv6: refuse unique-local, documentation, and v4-mapped forms that would
|
|
// smuggle a private v4 address past the checks above.
|
|
if len(ip) == net.IPv6len {
|
|
if ip[0]&0xfe == 0xfc { // fc00::/7
|
|
return false
|
|
}
|
|
if ip[0] == 0x20 && ip[1] == 0x01 && ip[2] == 0x0d && ip[3] == 0xb8 { // 2001:db8::/32
|
|
return false
|
|
}
|
|
}
|
|
return true
|
|
}
|
|
|
|
// SubmitVerificationApplicationRequest is the applicant-side submission.
|
|
type SubmitVerificationApplicationRequest struct {
|
|
ApplicantUserID int64
|
|
TargetType VerificationTargetType
|
|
TargetID int64
|
|
TargetTitle string
|
|
TargetUsername string
|
|
Draft VerificationDraftInput
|
|
CorrelationID string
|
|
}
|
|
|
|
// Validate checks the request shape without touching the target state, which is
|
|
// the service's job.
|
|
func (r SubmitVerificationApplicationRequest) Validate() error {
|
|
if r.ApplicantUserID <= 0 || r.TargetID <= 0 || !r.TargetType.Valid() {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
if utf8.RuneCountInString(r.TargetTitle) > MaxVerificationTitleLength {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
if len(r.CorrelationID) > MaxVerificationCorrelationLen {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
return r.Draft.ValidateForSubmission()
|
|
}
|
|
|
|
// VerificationDecision is a reviewer's action on one application.
|
|
type VerificationDecision struct {
|
|
ApplicationID int64
|
|
// Version is the value the reviewer read; a mismatch is a concurrent decision.
|
|
Version int64
|
|
Reviewer string
|
|
Reason string
|
|
InternalNote string
|
|
CorrelationID string
|
|
}
|
|
|
|
// Validate checks a decision that does not require a reason.
|
|
func (d VerificationDecision) Validate() error {
|
|
if d.ApplicationID <= 0 || d.Version <= 0 {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
if strings.TrimSpace(d.Reviewer) == "" || len(d.Reviewer) > MaxVerificationReviewerLength {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
if utf8.RuneCountInString(d.Reason) > MaxVerificationReasonLength ||
|
|
utf8.RuneCountInString(d.InternalNote) > MaxVerificationNoteLength {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
if len(d.CorrelationID) > MaxVerificationCorrelationLen {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// ValidateWithReason checks a decision that must carry one: rejection and
|
|
// revocation are never recorded without a stated reason.
|
|
func (d VerificationDecision) ValidateWithReason() error {
|
|
if err := d.Validate(); err != nil {
|
|
return err
|
|
}
|
|
if strings.TrimSpace(d.Reason) == "" {
|
|
return ErrVerificationReasonRequired
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// VerificationApplicationFilter bounds a review-queue query.
|
|
type VerificationApplicationFilter struct {
|
|
Statuses []VerificationStatus
|
|
TargetType VerificationTargetType
|
|
Reviewer string
|
|
// Query matches an application id, a peer id or a username.
|
|
Query string
|
|
CreatedAt time.Time
|
|
Until time.Time
|
|
BeforeID int64
|
|
Limit int
|
|
}
|
|
|
|
// VerificationStatusCounts is the queue summary shown above the list.
|
|
type VerificationStatusCounts map[VerificationStatus]int64
|
|
|
|
// VerificationRevocation removes the platform flag from a previously approved
|
|
// target. It is modelled separately from a rejection: the application stays
|
|
// approved as history, and the revocation is its own audit event.
|
|
type VerificationRevocation struct {
|
|
TargetType VerificationTargetType
|
|
TargetID int64
|
|
Reviewer string
|
|
Reason string
|
|
InternalNote string
|
|
CorrelationID string
|
|
}
|
|
|
|
// Validate checks the revocation shape; a reason is mandatory.
|
|
func (r VerificationRevocation) Validate() error {
|
|
if r.TargetID <= 0 || !r.TargetType.Valid() {
|
|
return ErrVerificationTargetInvalid
|
|
}
|
|
if strings.TrimSpace(r.Reviewer) == "" || len(r.Reviewer) > MaxVerificationReviewerLength {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
if strings.TrimSpace(r.Reason) == "" {
|
|
return ErrVerificationReasonRequired
|
|
}
|
|
if utf8.RuneCountInString(r.Reason) > MaxVerificationReasonLength ||
|
|
utf8.RuneCountInString(r.InternalNote) > MaxVerificationNoteLength {
|
|
return ErrVerificationApplicationInvalid
|
|
}
|
|
return nil
|
|
}
|