mirror of
https://github.com/go-gitea/gitea
synced 2024-11-09 03:21:45 +01:00
d95102d650
## Bug in Gitea I ran into this bug when I accidentally used the wrong redirect URL for the oauth2 provider when using mssql. But the oauth2 provider still got added. Most of the time, we use `Delete(&some{id: some.id})` or `In(condition).Delete(&some{})`, which specify the conditions. But the function uses `Delete(source)` when `source.Cfg` is a `TEXT` field and not empty. This will cause xorm `Delete` function not working in mssql.61ff91f960/models/auth/source.go (L234-L240)
## Reason Because the `TEXT` field can not be compared in mssql, xorm doesn't support it according to [this PR](https://gitea.com/xorm/xorm/pulls/2062) [related code](b23798dc98/internal/statements/statement.go (L552-L558)
) in xorm ```go if statement.dialect.URI().DBType == schemas.MSSQL && (col.SQLType.Name == schemas.Text || col.SQLType.IsBlob() || col.SQLType.Name == schemas.TimeStampz) { if utils.IsValueZero(fieldValue) { continue } return nil, fmt.Errorf("column %s is a TEXT type with data %#v which cannot be as compare condition", col.Name, fieldValue.Interface()) } } ``` When using the `Delete` function in xorm, the non-empty fields will auto-set as conditions(perhaps some special fields are not?). If `TEXT` field is not empty, xorm will return an error. I only found this usage after searching, but maybe there is something I missing. --------- Co-authored-by: delvh <dev.lh@web.de>
408 lines
10 KiB
Go
408 lines
10 KiB
Go
// Copyright 2014 The Gogs Authors. All rights reserved.
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// Copyright 2019 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package auth
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import (
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"context"
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"fmt"
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"reflect"
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"code.gitea.io/gitea/models/db"
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"code.gitea.io/gitea/modules/log"
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"code.gitea.io/gitea/modules/timeutil"
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"code.gitea.io/gitea/modules/util"
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"xorm.io/builder"
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"xorm.io/xorm"
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"xorm.io/xorm/convert"
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)
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// Type represents an login type.
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type Type int
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// Note: new type must append to the end of list to maintain compatibility.
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const (
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NoType Type = iota
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Plain // 1
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LDAP // 2
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SMTP // 3
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PAM // 4
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DLDAP // 5
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OAuth2 // 6
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SSPI // 7
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)
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// String returns the string name of the LoginType
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func (typ Type) String() string {
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return Names[typ]
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}
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// Int returns the int value of the LoginType
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func (typ Type) Int() int {
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return int(typ)
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}
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// Names contains the name of LoginType values.
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var Names = map[Type]string{
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LDAP: "LDAP (via BindDN)",
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DLDAP: "LDAP (simple auth)", // Via direct bind
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SMTP: "SMTP",
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PAM: "PAM",
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OAuth2: "OAuth2",
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SSPI: "SPNEGO with SSPI",
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}
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// Config represents login config as far as the db is concerned
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type Config interface {
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convert.Conversion
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}
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// SkipVerifiable configurations provide a IsSkipVerify to check if SkipVerify is set
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type SkipVerifiable interface {
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IsSkipVerify() bool
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}
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// HasTLSer configurations provide a HasTLS to check if TLS can be enabled
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type HasTLSer interface {
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HasTLS() bool
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}
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// UseTLSer configurations provide a HasTLS to check if TLS is enabled
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type UseTLSer interface {
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UseTLS() bool
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}
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// SSHKeyProvider configurations provide ProvidesSSHKeys to check if they provide SSHKeys
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type SSHKeyProvider interface {
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ProvidesSSHKeys() bool
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}
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// RegisterableSource configurations provide RegisterSource which needs to be run on creation
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type RegisterableSource interface {
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RegisterSource() error
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UnregisterSource() error
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}
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var registeredConfigs = map[Type]func() Config{}
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// RegisterTypeConfig register a config for a provided type
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func RegisterTypeConfig(typ Type, exemplar Config) {
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if reflect.TypeOf(exemplar).Kind() == reflect.Ptr {
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// Pointer:
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registeredConfigs[typ] = func() Config {
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return reflect.New(reflect.ValueOf(exemplar).Elem().Type()).Interface().(Config)
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}
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return
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}
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// Not a Pointer
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registeredConfigs[typ] = func() Config {
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return reflect.New(reflect.TypeOf(exemplar)).Elem().Interface().(Config)
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}
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}
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// SourceSettable configurations can have their authSource set on them
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type SourceSettable interface {
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SetAuthSource(*Source)
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}
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// Source represents an external way for authorizing users.
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type Source struct {
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ID int64 `xorm:"pk autoincr"`
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Type Type
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Name string `xorm:"UNIQUE"`
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IsActive bool `xorm:"INDEX NOT NULL DEFAULT false"`
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IsSyncEnabled bool `xorm:"INDEX NOT NULL DEFAULT false"`
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Cfg convert.Conversion `xorm:"TEXT"`
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CreatedUnix timeutil.TimeStamp `xorm:"INDEX created"`
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UpdatedUnix timeutil.TimeStamp `xorm:"INDEX updated"`
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}
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// TableName xorm will read the table name from this method
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func (Source) TableName() string {
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return "login_source"
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}
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func init() {
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db.RegisterModel(new(Source))
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}
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// BeforeSet is invoked from XORM before setting the value of a field of this object.
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func (source *Source) BeforeSet(colName string, val xorm.Cell) {
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if colName == "type" {
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typ := Type(db.Cell2Int64(val))
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constructor, ok := registeredConfigs[typ]
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if !ok {
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return
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}
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source.Cfg = constructor()
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if settable, ok := source.Cfg.(SourceSettable); ok {
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settable.SetAuthSource(source)
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}
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}
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}
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// TypeName return name of this login source type.
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func (source *Source) TypeName() string {
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return Names[source.Type]
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}
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// IsLDAP returns true of this source is of the LDAP type.
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func (source *Source) IsLDAP() bool {
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return source.Type == LDAP
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}
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// IsDLDAP returns true of this source is of the DLDAP type.
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func (source *Source) IsDLDAP() bool {
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return source.Type == DLDAP
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}
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// IsSMTP returns true of this source is of the SMTP type.
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func (source *Source) IsSMTP() bool {
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return source.Type == SMTP
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}
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// IsPAM returns true of this source is of the PAM type.
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func (source *Source) IsPAM() bool {
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return source.Type == PAM
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}
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// IsOAuth2 returns true of this source is of the OAuth2 type.
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func (source *Source) IsOAuth2() bool {
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return source.Type == OAuth2
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}
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// IsSSPI returns true of this source is of the SSPI type.
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func (source *Source) IsSSPI() bool {
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return source.Type == SSPI
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}
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// HasTLS returns true of this source supports TLS.
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func (source *Source) HasTLS() bool {
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hasTLSer, ok := source.Cfg.(HasTLSer)
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return ok && hasTLSer.HasTLS()
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}
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// UseTLS returns true of this source is configured to use TLS.
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func (source *Source) UseTLS() bool {
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useTLSer, ok := source.Cfg.(UseTLSer)
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return ok && useTLSer.UseTLS()
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}
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// SkipVerify returns true if this source is configured to skip SSL
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// verification.
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func (source *Source) SkipVerify() bool {
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skipVerifiable, ok := source.Cfg.(SkipVerifiable)
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return ok && skipVerifiable.IsSkipVerify()
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}
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// CreateSource inserts a AuthSource in the DB if not already
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// existing with the given name.
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func CreateSource(ctx context.Context, source *Source) error {
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has, err := db.GetEngine(ctx).Where("name=?", source.Name).Exist(new(Source))
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if err != nil {
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return err
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} else if has {
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return ErrSourceAlreadyExist{source.Name}
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}
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// Synchronization is only available with LDAP for now
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if !source.IsLDAP() {
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source.IsSyncEnabled = false
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}
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_, err = db.GetEngine(ctx).Insert(source)
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if err != nil {
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return err
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}
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if !source.IsActive {
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return nil
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}
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if settable, ok := source.Cfg.(SourceSettable); ok {
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settable.SetAuthSource(source)
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}
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registerableSource, ok := source.Cfg.(RegisterableSource)
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if !ok {
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return nil
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}
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err = registerableSource.RegisterSource()
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if err != nil {
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// remove the AuthSource in case of errors while registering configuration
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if _, err := db.GetEngine(ctx).ID(source.ID).Delete(new(Source)); err != nil {
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log.Error("CreateSource: Error while wrapOpenIDConnectInitializeError: %v", err)
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}
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}
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return err
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}
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type FindSourcesOptions struct {
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IsActive util.OptionalBool
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LoginType Type
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}
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func (opts FindSourcesOptions) ToConds() builder.Cond {
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conds := builder.NewCond()
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if !opts.IsActive.IsNone() {
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conds = conds.And(builder.Eq{"is_active": opts.IsActive.IsTrue()})
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}
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if opts.LoginType != NoType {
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conds = conds.And(builder.Eq{"`type`": opts.LoginType})
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}
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return conds
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}
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// FindSources returns a slice of login sources found in DB according to given conditions.
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func FindSources(ctx context.Context, opts FindSourcesOptions) ([]*Source, error) {
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auths := make([]*Source, 0, 6)
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return auths, db.GetEngine(ctx).Where(opts.ToConds()).Find(&auths)
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}
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// IsSSPIEnabled returns true if there is at least one activated login
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// source of type LoginSSPI
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func IsSSPIEnabled(ctx context.Context) bool {
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if !db.HasEngine {
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return false
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}
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sources, err := FindSources(ctx, FindSourcesOptions{
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IsActive: util.OptionalBoolTrue,
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LoginType: SSPI,
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})
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if err != nil {
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log.Error("ActiveSources: %v", err)
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return false
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}
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return len(sources) > 0
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}
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// GetSourceByID returns login source by given ID.
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func GetSourceByID(ctx context.Context, id int64) (*Source, error) {
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source := new(Source)
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if id == 0 {
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source.Cfg = registeredConfigs[NoType]()
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// Set this source to active
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// FIXME: allow disabling of db based password authentication in future
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source.IsActive = true
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return source, nil
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}
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has, err := db.GetEngine(ctx).ID(id).Get(source)
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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, ErrSourceNotExist{id}
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}
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return source, nil
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}
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// UpdateSource updates a Source record in DB.
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func UpdateSource(ctx context.Context, source *Source) error {
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var originalSource *Source
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if source.IsOAuth2() {
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// keep track of the original values so we can restore in case of errors while registering OAuth2 providers
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var err error
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if originalSource, err = GetSourceByID(ctx, source.ID); err != nil {
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return err
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}
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}
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has, err := db.GetEngine(ctx).Where("name=? AND id!=?", source.Name, source.ID).Exist(new(Source))
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if err != nil {
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return err
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} else if has {
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return ErrSourceAlreadyExist{source.Name}
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}
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_, err = db.GetEngine(ctx).ID(source.ID).AllCols().Update(source)
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if err != nil {
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return err
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}
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if !source.IsActive {
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return nil
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}
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if settable, ok := source.Cfg.(SourceSettable); ok {
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settable.SetAuthSource(source)
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}
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registerableSource, ok := source.Cfg.(RegisterableSource)
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if !ok {
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return nil
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}
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err = registerableSource.RegisterSource()
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if err != nil {
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// restore original values since we cannot update the provider it self
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if _, err := db.GetEngine(ctx).ID(source.ID).AllCols().Update(originalSource); err != nil {
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log.Error("UpdateSource: Error while wrapOpenIDConnectInitializeError: %v", err)
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}
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}
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return err
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}
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// CountSources returns number of login sources.
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func CountSources(ctx context.Context, opts FindSourcesOptions) int64 {
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count, _ := db.GetEngine(ctx).Where(opts.ToConds()).Count(new(Source))
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return count
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}
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// ErrSourceNotExist represents a "SourceNotExist" kind of error.
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type ErrSourceNotExist struct {
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ID int64
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}
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// IsErrSourceNotExist checks if an error is a ErrSourceNotExist.
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func IsErrSourceNotExist(err error) bool {
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_, ok := err.(ErrSourceNotExist)
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return ok
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}
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func (err ErrSourceNotExist) Error() string {
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return fmt.Sprintf("login source does not exist [id: %d]", err.ID)
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}
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// Unwrap unwraps this as a ErrNotExist err
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func (err ErrSourceNotExist) Unwrap() error {
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return util.ErrNotExist
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}
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// ErrSourceAlreadyExist represents a "SourceAlreadyExist" kind of error.
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type ErrSourceAlreadyExist struct {
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Name string
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}
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// IsErrSourceAlreadyExist checks if an error is a ErrSourceAlreadyExist.
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func IsErrSourceAlreadyExist(err error) bool {
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_, ok := err.(ErrSourceAlreadyExist)
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return ok
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}
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func (err ErrSourceAlreadyExist) Error() string {
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return fmt.Sprintf("login source already exists [name: %s]", err.Name)
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}
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// Unwrap unwraps this as a ErrExist err
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func (err ErrSourceAlreadyExist) Unwrap() error {
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return util.ErrAlreadyExist
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}
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// ErrSourceInUse represents a "SourceInUse" kind of error.
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type ErrSourceInUse struct {
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ID int64
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}
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// IsErrSourceInUse checks if an error is a ErrSourceInUse.
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func IsErrSourceInUse(err error) bool {
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_, ok := err.(ErrSourceInUse)
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return ok
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}
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func (err ErrSourceInUse) Error() string {
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return fmt.Sprintf("login source is still used by some users [id: %d]", err.ID)
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}
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