mirror of
https://github.com/go-gitea/gitea
synced 2024-11-01 15:54:25 +00:00
7365b4e757
after #16069, visibility is also usefull for user, so this limit is not usefull. fix #16545
531 lines
17 KiB
Go
531 lines
17 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 models
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import (
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"fmt"
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"strings"
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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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// RepositoryListDefaultPageSize is the default number of repositories
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// to load in memory when running administrative tasks on all (or almost
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// all) of them.
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// The number should be low enough to avoid filling up all RAM with
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// repository data...
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const RepositoryListDefaultPageSize = 64
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// RepositoryList contains a list of repositories
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type RepositoryList []*Repository
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func (repos RepositoryList) Len() int {
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return len(repos)
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}
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func (repos RepositoryList) Less(i, j int) bool {
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return repos[i].FullName() < repos[j].FullName()
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}
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func (repos RepositoryList) Swap(i, j int) {
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repos[i], repos[j] = repos[j], repos[i]
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}
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// RepositoryListOfMap make list from values of map
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func RepositoryListOfMap(repoMap map[int64]*Repository) RepositoryList {
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return RepositoryList(valuesRepository(repoMap))
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}
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func (repos RepositoryList) loadAttributes(e Engine) error {
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if len(repos) == 0 {
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return nil
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}
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set := make(map[int64]struct{})
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repoIDs := make([]int64, len(repos))
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for i := range repos {
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set[repos[i].OwnerID] = struct{}{}
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repoIDs[i] = repos[i].ID
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}
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// Load owners.
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users := make(map[int64]*User, len(set))
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if err := e.
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Where("id > 0").
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In("id", keysInt64(set)).
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Find(&users); err != nil {
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return fmt.Errorf("find users: %v", err)
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}
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for i := range repos {
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repos[i].Owner = users[repos[i].OwnerID]
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}
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// Load primary language.
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stats := make(LanguageStatList, 0, len(repos))
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if err := e.
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Where("`is_primary` = ? AND `language` != ?", true, "other").
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In("`repo_id`", repoIDs).
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Find(&stats); err != nil {
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return fmt.Errorf("find primary languages: %v", err)
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}
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stats.loadAttributes()
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for i := range repos {
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for _, st := range stats {
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if st.RepoID == repos[i].ID {
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repos[i].PrimaryLanguage = st
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break
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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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// LoadAttributes loads the attributes for the given RepositoryList
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func (repos RepositoryList) LoadAttributes() error {
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return repos.loadAttributes(x)
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}
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// MirrorRepositoryList contains the mirror repositories
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type MirrorRepositoryList []*Repository
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func (repos MirrorRepositoryList) loadAttributes(e Engine) error {
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if len(repos) == 0 {
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return nil
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}
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// Load mirrors.
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repoIDs := make([]int64, 0, len(repos))
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for i := range repos {
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if !repos[i].IsMirror {
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continue
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}
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repoIDs = append(repoIDs, repos[i].ID)
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}
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mirrors := make([]*Mirror, 0, len(repoIDs))
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if err := e.
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Where("id > 0").
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In("repo_id", repoIDs).
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Find(&mirrors); err != nil {
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return fmt.Errorf("find mirrors: %v", err)
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}
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set := make(map[int64]*Mirror)
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for i := range mirrors {
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set[mirrors[i].RepoID] = mirrors[i]
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}
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for i := range repos {
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repos[i].Mirror = set[repos[i].ID]
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}
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return nil
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}
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// LoadAttributes loads the attributes for the given MirrorRepositoryList
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func (repos MirrorRepositoryList) LoadAttributes() error {
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return repos.loadAttributes(x)
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}
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// SearchRepoOptions holds the search options
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type SearchRepoOptions struct {
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ListOptions
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Actor *User
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Keyword string
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OwnerID int64
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PriorityOwnerID int64
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TeamID int64
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OrderBy SearchOrderBy
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Private bool // Include private repositories in results
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StarredByID int64
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WatchedByID int64
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AllPublic bool // Include also all public repositories of users and public organisations
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AllLimited bool // Include also all public repositories of limited organisations
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// None -> include public and private
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// True -> include just private
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// False -> include just public
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IsPrivate util.OptionalBool
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// None -> include collaborative AND non-collaborative
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// True -> include just collaborative
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// False -> include just non-collaborative
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Collaborate util.OptionalBool
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// None -> include forks AND non-forks
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// True -> include just forks
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// False -> include just non-forks
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Fork util.OptionalBool
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// None -> include templates AND non-templates
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// True -> include just templates
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// False -> include just non-templates
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Template util.OptionalBool
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// None -> include mirrors AND non-mirrors
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// True -> include just mirrors
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// False -> include just non-mirrors
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Mirror util.OptionalBool
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// None -> include archived AND non-archived
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// True -> include just archived
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// False -> include just non-archived
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Archived util.OptionalBool
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// only search topic name
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TopicOnly bool
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// include description in keyword search
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IncludeDescription bool
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// None -> include has milestones AND has no milestone
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// True -> include just has milestones
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// False -> include just has no milestone
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HasMilestones util.OptionalBool
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// LowerNames represents valid lower names to restrict to
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LowerNames []string
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}
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// SearchOrderBy is used to sort the result
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type SearchOrderBy string
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func (s SearchOrderBy) String() string {
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return string(s)
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}
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// Strings for sorting result
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const (
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SearchOrderByAlphabetically SearchOrderBy = "name ASC"
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SearchOrderByAlphabeticallyReverse SearchOrderBy = "name DESC"
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SearchOrderByLeastUpdated SearchOrderBy = "updated_unix ASC"
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SearchOrderByRecentUpdated SearchOrderBy = "updated_unix DESC"
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SearchOrderByOldest SearchOrderBy = "created_unix ASC"
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SearchOrderByNewest SearchOrderBy = "created_unix DESC"
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SearchOrderBySize SearchOrderBy = "size ASC"
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SearchOrderBySizeReverse SearchOrderBy = "size DESC"
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SearchOrderByID SearchOrderBy = "id ASC"
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SearchOrderByIDReverse SearchOrderBy = "id DESC"
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SearchOrderByStars SearchOrderBy = "num_stars ASC"
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SearchOrderByStarsReverse SearchOrderBy = "num_stars DESC"
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SearchOrderByForks SearchOrderBy = "num_forks ASC"
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SearchOrderByForksReverse SearchOrderBy = "num_forks DESC"
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)
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// SearchRepositoryCondition creates a query condition according search repository options
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func SearchRepositoryCondition(opts *SearchRepoOptions) builder.Cond {
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cond := builder.NewCond()
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if opts.Private {
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if opts.Actor != nil && !opts.Actor.IsAdmin && opts.Actor.ID != opts.OwnerID {
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// OK we're in the context of a User
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cond = cond.And(accessibleRepositoryCondition(opts.Actor))
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}
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} else {
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// Not looking at private organisations and users
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// We should be able to see all non-private repositories that
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// isn't in a private or limited organisation.
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cond = cond.And(
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builder.Eq{"is_private": false},
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builder.NotIn("owner_id", builder.Select("id").From("`user`").Where(
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builder.Or(builder.Eq{"visibility": structs.VisibleTypeLimited}, builder.Eq{"visibility": structs.VisibleTypePrivate}),
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)))
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}
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if opts.IsPrivate != util.OptionalBoolNone {
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cond = cond.And(builder.Eq{"is_private": opts.IsPrivate.IsTrue()})
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}
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if opts.Template != util.OptionalBoolNone {
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cond = cond.And(builder.Eq{"is_template": opts.Template == util.OptionalBoolTrue})
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}
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// Restrict to starred repositories
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if opts.StarredByID > 0 {
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cond = cond.And(builder.In("id", builder.Select("repo_id").From("star").Where(builder.Eq{"uid": opts.StarredByID})))
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}
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// Restrict to watched repositories
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if opts.WatchedByID > 0 {
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cond = cond.And(builder.In("id", builder.Select("repo_id").From("watch").Where(builder.Eq{"user_id": opts.WatchedByID})))
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}
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// Restrict repositories to those the OwnerID owns or contributes to as per opts.Collaborate
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if opts.OwnerID > 0 {
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accessCond := builder.NewCond()
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if opts.Collaborate != util.OptionalBoolTrue {
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accessCond = builder.Eq{"owner_id": opts.OwnerID}
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}
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if opts.Collaborate != util.OptionalBoolFalse {
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// A Collaboration is:
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collaborateCond := builder.And(
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// 1. Repository we don't own
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builder.Neq{"owner_id": opts.OwnerID},
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// 2. But we can see because of:
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builder.Or(
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// A. We have access
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builder.In("`repository`.id",
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builder.Select("`access`.repo_id").
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From("access").
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Where(builder.Eq{"`access`.user_id": opts.OwnerID})),
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// B. We are in a team for
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builder.In("`repository`.id", builder.Select("`team_repo`.repo_id").
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From("team_repo").
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Where(builder.Eq{"`team_user`.uid": opts.OwnerID}).
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Join("INNER", "team_user", "`team_user`.team_id = `team_repo`.team_id")),
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// C. Public repositories in private organizations that we are member of
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builder.And(
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builder.Eq{"`repository`.is_private": false},
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builder.In("`repository`.owner_id",
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builder.Select("`org_user`.org_id").
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From("org_user").
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Join("INNER", "`user`", "`user`.id = `org_user`.org_id").
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Where(builder.Eq{
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"`org_user`.uid": opts.OwnerID,
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"`user`.type": UserTypeOrganization,
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"`user`.visibility": structs.VisibleTypePrivate,
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})))),
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)
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if !opts.Private {
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collaborateCond = collaborateCond.And(builder.Expr("owner_id NOT IN (SELECT org_id FROM org_user WHERE org_user.uid = ? AND org_user.is_public = ?)", opts.OwnerID, false))
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}
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accessCond = accessCond.Or(collaborateCond)
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}
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if opts.AllPublic {
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accessCond = accessCond.Or(builder.Eq{"is_private": false}.And(builder.In("owner_id", builder.Select("`user`.id").From("`user`").Where(builder.Eq{"`user`.visibility": structs.VisibleTypePublic}))))
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}
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if opts.AllLimited {
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accessCond = accessCond.Or(builder.Eq{"is_private": false}.And(builder.In("owner_id", builder.Select("`user`.id").From("`user`").Where(builder.Eq{"`user`.visibility": structs.VisibleTypeLimited}))))
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}
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cond = cond.And(accessCond)
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}
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if opts.TeamID > 0 {
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cond = cond.And(builder.In("`repository`.id", builder.Select("`team_repo`.repo_id").From("team_repo").Where(builder.Eq{"`team_repo`.team_id": opts.TeamID})))
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}
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if opts.Keyword != "" {
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// separate keyword
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subQueryCond := builder.NewCond()
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for _, v := range strings.Split(opts.Keyword, ",") {
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if opts.TopicOnly {
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subQueryCond = subQueryCond.Or(builder.Eq{"topic.name": strings.ToLower(v)})
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} else {
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subQueryCond = subQueryCond.Or(builder.Like{"topic.name", strings.ToLower(v)})
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}
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}
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subQuery := builder.Select("repo_topic.repo_id").From("repo_topic").
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Join("INNER", "topic", "topic.id = repo_topic.topic_id").
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Where(subQueryCond).
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GroupBy("repo_topic.repo_id")
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keywordCond := builder.In("id", subQuery)
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if !opts.TopicOnly {
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likes := builder.NewCond()
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for _, v := range strings.Split(opts.Keyword, ",") {
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likes = likes.Or(builder.Like{"lower_name", strings.ToLower(v)})
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if opts.IncludeDescription {
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likes = likes.Or(builder.Like{"LOWER(description)", strings.ToLower(v)})
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}
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}
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keywordCond = keywordCond.Or(likes)
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}
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cond = cond.And(keywordCond)
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}
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if opts.Fork != util.OptionalBoolNone {
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cond = cond.And(builder.Eq{"is_fork": opts.Fork == util.OptionalBoolTrue})
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}
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if opts.Mirror != util.OptionalBoolNone {
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cond = cond.And(builder.Eq{"is_mirror": opts.Mirror == util.OptionalBoolTrue})
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}
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if opts.Actor != nil && opts.Actor.IsRestricted {
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cond = cond.And(accessibleRepositoryCondition(opts.Actor))
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}
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if opts.Archived != util.OptionalBoolNone {
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cond = cond.And(builder.Eq{"is_archived": opts.Archived == util.OptionalBoolTrue})
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}
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switch opts.HasMilestones {
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case util.OptionalBoolTrue:
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cond = cond.And(builder.Gt{"num_milestones": 0})
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case util.OptionalBoolFalse:
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cond = cond.And(builder.Eq{"num_milestones": 0}.Or(builder.IsNull{"num_milestones"}))
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}
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return cond
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}
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// SearchRepository returns repositories based on search options,
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// it returns results in given range and number of total results.
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func SearchRepository(opts *SearchRepoOptions) (RepositoryList, int64, error) {
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cond := SearchRepositoryCondition(opts)
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return SearchRepositoryByCondition(opts, cond, true)
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}
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// SearchRepositoryByCondition search repositories by condition
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func SearchRepositoryByCondition(opts *SearchRepoOptions, cond builder.Cond, loadAttributes bool) (RepositoryList, int64, error) {
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sess, count, err := searchRepositoryByCondition(opts, cond)
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if err != nil {
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return nil, 0, err
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}
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defer sess.Close()
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defaultSize := 50
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if opts.PageSize > 0 {
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defaultSize = opts.PageSize
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}
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repos := make(RepositoryList, 0, defaultSize)
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if err := sess.Find(&repos); err != nil {
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return nil, 0, fmt.Errorf("Repo: %v", err)
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}
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if opts.PageSize <= 0 {
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count = int64(len(repos))
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}
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if loadAttributes {
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if err := repos.loadAttributes(sess); err != nil {
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return nil, 0, fmt.Errorf("LoadAttributes: %v", err)
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}
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}
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return repos, count, nil
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}
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func searchRepositoryByCondition(opts *SearchRepoOptions, cond builder.Cond) (*xorm.Session, int64, error) {
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if opts.Page <= 0 {
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opts.Page = 1
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}
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if len(opts.OrderBy) == 0 {
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opts.OrderBy = SearchOrderByAlphabetically
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}
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if opts.PriorityOwnerID > 0 {
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opts.OrderBy = SearchOrderBy(fmt.Sprintf("CASE WHEN owner_id = %d THEN 0 ELSE owner_id END, %s", opts.PriorityOwnerID, opts.OrderBy))
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}
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sess := x.NewSession()
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var count int64
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if opts.PageSize > 0 {
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var err error
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count, err = sess.
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Where(cond).
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Count(new(Repository))
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if err != nil {
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_ = sess.Close()
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return nil, 0, fmt.Errorf("Count: %v", err)
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}
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}
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sess.Where(cond).OrderBy(opts.OrderBy.String())
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if opts.PageSize > 0 {
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sess.Limit(opts.PageSize, (opts.Page-1)*opts.PageSize)
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}
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return sess, count, nil
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}
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// accessibleRepositoryCondition takes a user a returns a condition for checking if a repository is accessible
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func accessibleRepositoryCondition(user *User) builder.Cond {
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cond := builder.NewCond()
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if user == nil || !user.IsRestricted || user.ID <= 0 {
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orgVisibilityLimit := []structs.VisibleType{structs.VisibleTypePrivate}
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if user == nil || user.ID <= 0 {
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orgVisibilityLimit = append(orgVisibilityLimit, structs.VisibleTypeLimited)
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}
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// 1. Be able to see all non-private repositories that either:
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cond = cond.Or(builder.And(
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builder.Eq{"`repository`.is_private": false},
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// 2. Aren't in an private organisation or limited organisation if we're not logged in
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builder.NotIn("`repository`.owner_id", builder.Select("id").From("`user`").Where(
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builder.And(
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builder.Eq{"type": UserTypeOrganization},
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builder.In("visibility", orgVisibilityLimit)),
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))))
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}
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if user != nil {
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cond = cond.Or(
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// 2. Be able to see all repositories that we have access to
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builder.In("`repository`.id", builder.Select("repo_id").
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From("`access`").
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Where(builder.And(
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builder.Eq{"user_id": user.ID},
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builder.Gt{"mode": int(AccessModeNone)}))),
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// 3. Repositories that we directly own
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builder.Eq{"`repository`.owner_id": user.ID},
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// 4. Be able to see all repositories that we are in a team
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builder.In("`repository`.id", builder.Select("`team_repo`.repo_id").
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From("team_repo").
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Where(builder.Eq{"`team_user`.uid": user.ID}).
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Join("INNER", "team_user", "`team_user`.team_id = `team_repo`.team_id")),
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// 5. Be able to see all public repos in private organizations that we are an org_user of
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builder.And(builder.Eq{"`repository`.is_private": false},
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builder.In("`repository`.owner_id",
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builder.Select("`org_user`.org_id").
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From("org_user").
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Where(builder.Eq{"`org_user`.uid": user.ID}))))
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}
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return cond
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}
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// SearchRepositoryByName takes keyword and part of repository name to search,
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// it returns results in given range and number of total results.
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func SearchRepositoryByName(opts *SearchRepoOptions) (RepositoryList, int64, error) {
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opts.IncludeDescription = false
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return SearchRepository(opts)
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}
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// SearchRepositoryIDs takes keyword and part of repository name to search,
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// it returns results in given range and number of total results.
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func SearchRepositoryIDs(opts *SearchRepoOptions) ([]int64, int64, error) {
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opts.IncludeDescription = false
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cond := SearchRepositoryCondition(opts)
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sess, count, err := searchRepositoryByCondition(opts, cond)
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if err != nil {
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return nil, 0, err
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}
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defer sess.Close()
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defaultSize := 50
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if opts.PageSize > 0 {
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defaultSize = opts.PageSize
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}
|
|
|
|
ids := make([]int64, 0, defaultSize)
|
|
err = sess.Select("id").Table("repository").Find(&ids)
|
|
if opts.PageSize <= 0 {
|
|
count = int64(len(ids))
|
|
}
|
|
|
|
return ids, count, err
|
|
}
|
|
|
|
// AccessibleRepoIDsQuery queries accessible repository ids. Usable as a subquery wherever repo ids need to be filtered.
|
|
func AccessibleRepoIDsQuery(user *User) *builder.Builder {
|
|
// NB: Please note this code needs to still work if user is nil
|
|
return builder.Select("id").From("repository").Where(accessibleRepositoryCondition(user))
|
|
}
|
|
|
|
// FindUserAccessibleRepoIDs find all accessible repositories' ID by user's id
|
|
func FindUserAccessibleRepoIDs(user *User) ([]int64, error) {
|
|
repoIDs := make([]int64, 0, 10)
|
|
if err := x.
|
|
Table("repository").
|
|
Cols("id").
|
|
Where(accessibleRepositoryCondition(user)).
|
|
Find(&repoIDs); err != nil {
|
|
return nil, fmt.Errorf("FindUserAccesibleRepoIDs: %v", err)
|
|
}
|
|
return repoIDs, nil
|
|
}
|