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							169 lines
						
					
					
						
							5.2 KiB
						
					
					
				// Copyright 2021 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 user
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import (
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	"fmt"
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	"strings"
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	"code.gitea.io/gitea/models/db"
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	"code.gitea.io/gitea/modules/setting"
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	"code.gitea.io/gitea/modules/structs"
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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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)
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// SearchUserOptions contains the options for searching
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type SearchUserOptions struct {
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	db.ListOptions
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	Keyword       string
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	Type          UserType
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	UID           int64
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	OrderBy       db.SearchOrderBy
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	Visible       []structs.VisibleType
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	Actor         *User // The user doing the search
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	SearchByEmail bool  // Search by email as well as username/full name
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	IsActive           util.OptionalBool
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	IsAdmin            util.OptionalBool
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	IsRestricted       util.OptionalBool
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	IsTwoFactorEnabled util.OptionalBool
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	IsProhibitLogin    util.OptionalBool
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}
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func (opts *SearchUserOptions) toSearchQueryBase() *xorm.Session {
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	var cond builder.Cond = builder.Eq{"type": opts.Type}
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	if len(opts.Keyword) > 0 {
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		lowerKeyword := strings.ToLower(opts.Keyword)
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		keywordCond := builder.Or(
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			builder.Like{"lower_name", lowerKeyword},
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			builder.Like{"LOWER(full_name)", lowerKeyword},
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		)
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		if opts.SearchByEmail {
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			keywordCond = keywordCond.Or(builder.Like{"LOWER(email)", lowerKeyword})
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		}
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		cond = cond.And(keywordCond)
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	}
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	// If visibility filtered
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	if len(opts.Visible) > 0 {
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		cond = cond.And(builder.In("visibility", opts.Visible))
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	}
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	if opts.Actor != nil {
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		var exprCond builder.Cond = builder.Expr("org_user.org_id = `user`.id")
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		// If Admin - they see all users!
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		if !opts.Actor.IsAdmin {
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			// Force visibility for privacy
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			var accessCond builder.Cond
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			if !opts.Actor.IsRestricted {
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				accessCond = builder.Or(
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					builder.In("id", builder.Select("org_id").From("org_user").LeftJoin("`user`", exprCond).Where(builder.And(builder.Eq{"uid": opts.Actor.ID}, builder.Eq{"visibility": structs.VisibleTypePrivate}))),
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					builder.In("visibility", structs.VisibleTypePublic, structs.VisibleTypeLimited))
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			} else {
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				// restricted users only see orgs they are a member of
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				accessCond = builder.In("id", builder.Select("org_id").From("org_user").LeftJoin("`user`", exprCond).Where(builder.And(builder.Eq{"uid": opts.Actor.ID})))
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			}
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			// Don't forget about self
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			accessCond = accessCond.Or(builder.Eq{"id": opts.Actor.ID})
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			cond = cond.And(accessCond)
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		}
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	} else {
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		// Force visibility for privacy
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		// Not logged in - only public users
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		cond = cond.And(builder.In("visibility", structs.VisibleTypePublic))
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	}
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	if opts.UID > 0 {
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		cond = cond.And(builder.Eq{"id": opts.UID})
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	}
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	if !opts.IsActive.IsNone() {
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		cond = cond.And(builder.Eq{"is_active": opts.IsActive.IsTrue()})
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	}
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	if !opts.IsAdmin.IsNone() {
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		cond = cond.And(builder.Eq{"is_admin": opts.IsAdmin.IsTrue()})
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	}
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	if !opts.IsRestricted.IsNone() {
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		cond = cond.And(builder.Eq{"is_restricted": opts.IsRestricted.IsTrue()})
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	}
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	if !opts.IsProhibitLogin.IsNone() {
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		cond = cond.And(builder.Eq{"prohibit_login": opts.IsProhibitLogin.IsTrue()})
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	}
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	e := db.GetEngine(db.DefaultContext)
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	if opts.IsTwoFactorEnabled.IsNone() {
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		return e.Where(cond)
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	}
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	// 2fa filter uses LEFT JOIN to check whether a user has a 2fa record
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	// While using LEFT JOIN, sometimes the performance might not be good, but it won't be a problem now, such SQL is seldom executed.
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	// There are some possible methods to refactor this SQL in future when we really need to optimize the performance (but not now):
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	// (1) add a column in user table (2) add a setting value in user_setting table (3) use search engines (bleve/elasticsearch)
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	if opts.IsTwoFactorEnabled.IsTrue() {
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		cond = cond.And(builder.Expr("two_factor.uid IS NOT NULL"))
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	} else {
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		cond = cond.And(builder.Expr("two_factor.uid IS NULL"))
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	}
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	return e.Join("LEFT OUTER", "two_factor", "two_factor.uid = `user`.id").
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		Where(cond)
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}
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// SearchUsers takes options i.e. keyword and part of user name to search,
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// it returns results in given range and number of total results.
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func SearchUsers(opts *SearchUserOptions) (users []*User, _ int64, _ error) {
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	sessCount := opts.toSearchQueryBase()
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	defer sessCount.Close()
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	count, err := sessCount.Count(new(User))
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	if err != nil {
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		return nil, 0, fmt.Errorf("Count: %v", err)
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	}
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	if len(opts.OrderBy) == 0 {
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		opts.OrderBy = db.SearchOrderByAlphabetically
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	}
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	sessQuery := opts.toSearchQueryBase().OrderBy(opts.OrderBy.String())
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	defer sessQuery.Close()
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	if opts.Page != 0 {
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		sessQuery = db.SetSessionPagination(sessQuery, opts)
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	}
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	// the sql may contain JOIN, so we must only select User related columns
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	sessQuery = sessQuery.Select("`user`.*")
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	users = make([]*User, 0, opts.PageSize)
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	return users, count, sessQuery.Find(&users)
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}
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// IterateUser iterate users
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func IterateUser(f func(user *User) error) error {
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	var start int
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	batchSize := setting.Database.IterateBufferSize
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	for {
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		users := make([]*User, 0, batchSize)
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		if err := db.GetEngine(db.DefaultContext).Limit(batchSize, start).Find(&users); err != nil {
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			return err
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		}
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		if len(users) == 0 {
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			return nil
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		}
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		start += len(users)
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		for _, user := range users {
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			if err := f(user); err != nil {
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				return err
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			}
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		}
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	}
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}
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