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https://codeberg.org/forgejo/forgejo
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bf41958c16
Backport #20878 The go crypto library does not pad keyIDs to 16 characters with preceding zeroes. This is a somewhat confusing thing for most users who expect these to have preceding zeroes. This PR prefixes any sub 16 length KeyID with preceding zeroes and removes preceding zeroes from KeyIDs inputted on the API. Fix #20876 Signed-off-by: Andrew Thornton <art27@cantab.net>
279 lines
8.1 KiB
Go
279 lines
8.1 KiB
Go
// Copyright 2017 The Gitea Authors. All rights reserved.
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// Use of this source code is governed by a MIT-style
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// license that can be found in the LICENSE file.
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package asymkey
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import (
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"context"
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"fmt"
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"strings"
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"time"
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"code.gitea.io/gitea/models/db"
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user_model "code.gitea.io/gitea/models/user"
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"code.gitea.io/gitea/modules/log"
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"code.gitea.io/gitea/modules/timeutil"
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"github.com/keybase/go-crypto/openpgp"
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"github.com/keybase/go-crypto/openpgp/packet"
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"xorm.io/xorm"
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)
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// __________________ ________ ____ __.
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// / _____/\______ \/ _____/ | |/ _|____ ___.__.
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// / \ ___ | ___/ \ ___ | <_/ __ < | |
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// \ \_\ \| | \ \_\ \ | | \ ___/\___ |
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// \______ /|____| \______ / |____|__ \___ > ____|
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// \/ \/ \/ \/\/
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// GPGKey represents a GPG key.
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type GPGKey struct {
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ID int64 `xorm:"pk autoincr"`
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OwnerID int64 `xorm:"INDEX NOT NULL"`
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KeyID string `xorm:"INDEX CHAR(16) NOT NULL"`
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PrimaryKeyID string `xorm:"CHAR(16)"`
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Content string `xorm:"MEDIUMTEXT NOT NULL"`
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CreatedUnix timeutil.TimeStamp `xorm:"created"`
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ExpiredUnix timeutil.TimeStamp
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AddedUnix timeutil.TimeStamp
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SubsKey []*GPGKey `xorm:"-"`
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Emails []*user_model.EmailAddress
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Verified bool `xorm:"NOT NULL DEFAULT false"`
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CanSign bool
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CanEncryptComms bool
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CanEncryptStorage bool
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CanCertify bool
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}
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func init() {
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db.RegisterModel(new(GPGKey))
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}
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// BeforeInsert will be invoked by XORM before inserting a record
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func (key *GPGKey) BeforeInsert() {
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key.AddedUnix = timeutil.TimeStampNow()
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}
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// AfterLoad is invoked from XORM after setting the values of all fields of this object.
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func (key *GPGKey) AfterLoad(session *xorm.Session) {
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err := session.Where("primary_key_id=?", key.KeyID).Find(&key.SubsKey)
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if err != nil {
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log.Error("Find Sub GPGkeys[%s]: %v", key.KeyID, err)
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}
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}
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// PaddedKeyID show KeyID padded to 16 characters
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func (key *GPGKey) PaddedKeyID() string {
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if len(key.KeyID) > 15 {
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return key.KeyID
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}
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zeros := "0000000000000000"
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return zeros[0:16-len(key.KeyID)] + key.KeyID
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}
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// ListGPGKeys returns a list of public keys belongs to given user.
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func ListGPGKeys(ctx context.Context, uid int64, listOptions db.ListOptions) ([]*GPGKey, error) {
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sess := db.GetEngine(ctx).Table(&GPGKey{}).Where("owner_id=? AND primary_key_id=''", uid)
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if listOptions.Page != 0 {
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sess = db.SetSessionPagination(sess, &listOptions)
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}
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keys := make([]*GPGKey, 0, 2)
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return keys, sess.Find(&keys)
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}
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// CountUserGPGKeys return number of gpg keys a user own
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func CountUserGPGKeys(userID int64) (int64, error) {
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return db.GetEngine(db.DefaultContext).Where("owner_id=? AND primary_key_id=''", userID).Count(&GPGKey{})
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}
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// GetGPGKeyByID returns public key by given ID.
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func GetGPGKeyByID(keyID int64) (*GPGKey, error) {
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key := new(GPGKey)
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has, err := db.GetEngine(db.DefaultContext).ID(keyID).Get(key)
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if err != nil {
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return nil, err
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} else if !has {
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return nil, ErrGPGKeyNotExist{keyID}
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}
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return key, nil
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}
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// GetGPGKeysByKeyID returns public key by given ID.
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func GetGPGKeysByKeyID(keyID string) ([]*GPGKey, error) {
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keys := make([]*GPGKey, 0, 1)
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return keys, db.GetEngine(db.DefaultContext).Where("key_id=?", keyID).Find(&keys)
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}
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// GPGKeyToEntity retrieve the imported key and the traducted entity
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func GPGKeyToEntity(k *GPGKey) (*openpgp.Entity, error) {
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impKey, err := GetGPGImportByKeyID(k.KeyID)
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if err != nil {
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return nil, err
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}
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keys, err := checkArmoredGPGKeyString(impKey.Content)
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if err != nil {
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return nil, err
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}
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return keys[0], err
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}
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// parseSubGPGKey parse a sub Key
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func parseSubGPGKey(ownerID int64, primaryID string, pubkey *packet.PublicKey, expiry time.Time) (*GPGKey, error) {
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content, err := base64EncPubKey(pubkey)
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if err != nil {
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return nil, err
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}
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return &GPGKey{
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OwnerID: ownerID,
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KeyID: pubkey.KeyIdString(),
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PrimaryKeyID: primaryID,
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Content: content,
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CreatedUnix: timeutil.TimeStamp(pubkey.CreationTime.Unix()),
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ExpiredUnix: timeutil.TimeStamp(expiry.Unix()),
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CanSign: pubkey.CanSign(),
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CanEncryptComms: pubkey.PubKeyAlgo.CanEncrypt(),
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CanEncryptStorage: pubkey.PubKeyAlgo.CanEncrypt(),
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CanCertify: pubkey.PubKeyAlgo.CanSign(),
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}, nil
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}
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// parseGPGKey parse a PrimaryKey entity (primary key + subs keys + self-signature)
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func parseGPGKey(ownerID int64, e *openpgp.Entity, verified bool) (*GPGKey, error) {
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pubkey := e.PrimaryKey
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expiry := getExpiryTime(e)
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// Parse Subkeys
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subkeys := make([]*GPGKey, len(e.Subkeys))
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for i, k := range e.Subkeys {
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subs, err := parseSubGPGKey(ownerID, pubkey.KeyIdString(), k.PublicKey, expiry)
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if err != nil {
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return nil, ErrGPGKeyParsing{ParseError: err}
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}
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subkeys[i] = subs
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}
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// Check emails
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userEmails, err := user_model.GetEmailAddresses(ownerID)
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if err != nil {
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return nil, err
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}
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emails := make([]*user_model.EmailAddress, 0, len(e.Identities))
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for _, ident := range e.Identities {
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if ident.Revocation != nil {
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continue
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}
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email := strings.ToLower(strings.TrimSpace(ident.UserId.Email))
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for _, e := range userEmails {
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if e.IsActivated && e.LowerEmail == email {
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emails = append(emails, e)
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break
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}
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}
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}
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if !verified {
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// In the case no email as been found
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if len(emails) == 0 {
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failedEmails := make([]string, 0, len(e.Identities))
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for _, ident := range e.Identities {
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failedEmails = append(failedEmails, ident.UserId.Email)
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}
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return nil, ErrGPGNoEmailFound{failedEmails, e.PrimaryKey.KeyIdString()}
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}
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}
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content, err := base64EncPubKey(pubkey)
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if err != nil {
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return nil, err
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}
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return &GPGKey{
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OwnerID: ownerID,
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KeyID: pubkey.KeyIdString(),
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PrimaryKeyID: "",
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Content: content,
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CreatedUnix: timeutil.TimeStamp(pubkey.CreationTime.Unix()),
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ExpiredUnix: timeutil.TimeStamp(expiry.Unix()),
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Emails: emails,
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SubsKey: subkeys,
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Verified: verified,
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CanSign: pubkey.CanSign(),
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CanEncryptComms: pubkey.PubKeyAlgo.CanEncrypt(),
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CanEncryptStorage: pubkey.PubKeyAlgo.CanEncrypt(),
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CanCertify: pubkey.PubKeyAlgo.CanSign(),
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}, nil
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}
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// deleteGPGKey does the actual key deletion
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func deleteGPGKey(ctx context.Context, keyID string) (int64, error) {
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if keyID == "" {
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return 0, fmt.Errorf("empty KeyId forbidden") // Should never happen but just to be sure
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}
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// Delete imported key
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n, err := db.GetEngine(ctx).Where("key_id=?", keyID).Delete(new(GPGKeyImport))
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if err != nil {
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return n, err
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}
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return db.GetEngine(ctx).Where("key_id=?", keyID).Or("primary_key_id=?", keyID).Delete(new(GPGKey))
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}
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// DeleteGPGKey deletes GPG key information in database.
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func DeleteGPGKey(doer *user_model.User, id int64) (err error) {
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key, err := GetGPGKeyByID(id)
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if err != nil {
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if IsErrGPGKeyNotExist(err) {
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return nil
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}
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return fmt.Errorf("GetPublicKeyByID: %v", err)
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}
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// Check if user has access to delete this key.
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if !doer.IsAdmin && doer.ID != key.OwnerID {
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return ErrGPGKeyAccessDenied{doer.ID, key.ID}
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}
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ctx, committer, err := db.TxContext()
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if err != nil {
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return err
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}
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defer committer.Close()
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if _, err = deleteGPGKey(ctx, key.KeyID); err != nil {
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return err
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}
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return committer.Commit()
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}
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func checkKeyEmails(email string, keys ...*GPGKey) (bool, string) {
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uid := int64(0)
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var userEmails []*user_model.EmailAddress
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var user *user_model.User
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for _, key := range keys {
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for _, e := range key.Emails {
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if e.IsActivated && (email == "" || strings.EqualFold(e.Email, email)) {
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return true, e.Email
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}
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}
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if key.Verified && key.OwnerID != 0 {
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if uid != key.OwnerID {
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userEmails, _ = user_model.GetEmailAddresses(key.OwnerID)
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uid = key.OwnerID
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user = &user_model.User{ID: uid}
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_, _ = user_model.GetUser(user)
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}
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for _, e := range userEmails {
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if e.IsActivated && (email == "" || strings.EqualFold(e.Email, email)) {
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return true, e.Email
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}
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}
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if user.KeepEmailPrivate && strings.EqualFold(email, user.GetEmail()) {
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return true, user.GetEmail()
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}
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}
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}
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return false, email
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}
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