mirror of
https://github.com/go-gitea/gitea
synced 2024-11-08 03:04:29 +00:00
bd820aa9c5
To avoid duplicated load of the same data in an HTTP request, we can set a context cache to do that. i.e. Some pages may load a user from a database with the same id in different areas on the same page. But the code is hidden in two different deep logic. How should we share the user? As a result of this PR, now if both entry functions accept `context.Context` as the first parameter and we just need to refactor `GetUserByID` to reuse the user from the context cache. Then it will not be loaded twice on an HTTP request. But of course, sometimes we would like to reload an object from the database, that's why `RemoveContextData` is also exposed. The core context cache is here. It defines a new context ```go type cacheContext struct { ctx context.Context data map[any]map[any]any lock sync.RWMutex } var cacheContextKey = struct{}{} func WithCacheContext(ctx context.Context) context.Context { return context.WithValue(ctx, cacheContextKey, &cacheContext{ ctx: ctx, data: make(map[any]map[any]any), }) } ``` Then you can use the below 4 methods to read/write/del the data within the same context. ```go func GetContextData(ctx context.Context, tp, key any) any func SetContextData(ctx context.Context, tp, key, value any) func RemoveContextData(ctx context.Context, tp, key any) func GetWithContextCache[T any](ctx context.Context, cacheGroupKey string, cacheTargetID any, f func() (T, error)) (T, error) ``` Then let's take a look at how `system.GetString` implement it. ```go func GetSetting(ctx context.Context, key string) (string, error) { return cache.GetWithContextCache(ctx, contextCacheKey, key, func() (string, error) { return cache.GetString(genSettingCacheKey(key), func() (string, error) { res, err := GetSettingNoCache(ctx, key) if err != nil { return "", err } return res.SettingValue, nil }) }) } ``` First, it will check if context data include the setting object with the key. If not, it will query from the global cache which may be memory or a Redis cache. If not, it will get the object from the database. In the end, if the object gets from the global cache or database, it will be set into the context cache. An object stored in the context cache will only be destroyed after the context disappeared.
432 lines
14 KiB
Go
432 lines
14 KiB
Go
// Copyright 2015 The Gogs Authors. All rights reserved.
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// Copyright 2018 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package convert
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import (
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"context"
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"fmt"
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"strconv"
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"strings"
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"time"
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asymkey_model "code.gitea.io/gitea/models/asymkey"
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"code.gitea.io/gitea/models/auth"
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"code.gitea.io/gitea/models/db"
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git_model "code.gitea.io/gitea/models/git"
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issues_model "code.gitea.io/gitea/models/issues"
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"code.gitea.io/gitea/models/organization"
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"code.gitea.io/gitea/models/perm"
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access_model "code.gitea.io/gitea/models/perm/access"
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repo_model "code.gitea.io/gitea/models/repo"
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"code.gitea.io/gitea/models/unit"
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user_model "code.gitea.io/gitea/models/user"
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"code.gitea.io/gitea/modules/git"
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"code.gitea.io/gitea/modules/log"
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api "code.gitea.io/gitea/modules/structs"
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"code.gitea.io/gitea/modules/util"
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"code.gitea.io/gitea/services/gitdiff"
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)
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// ToEmail convert models.EmailAddress to api.Email
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func ToEmail(email *user_model.EmailAddress) *api.Email {
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return &api.Email{
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Email: email.Email,
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Verified: email.IsActivated,
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Primary: email.IsPrimary,
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}
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}
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// ToBranch convert a git.Commit and git.Branch to an api.Branch
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func ToBranch(ctx context.Context, repo *repo_model.Repository, b *git.Branch, c *git.Commit, bp *git_model.ProtectedBranch, user *user_model.User, isRepoAdmin bool) (*api.Branch, error) {
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if bp == nil {
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var hasPerm bool
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var canPush bool
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var err error
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if user != nil {
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hasPerm, err = access_model.HasAccessUnit(db.DefaultContext, user, repo, unit.TypeCode, perm.AccessModeWrite)
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if err != nil {
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return nil, err
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}
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perms, err := access_model.GetUserRepoPermission(db.DefaultContext, repo, user)
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if err != nil {
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return nil, err
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}
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canPush = issues_model.CanMaintainerWriteToBranch(perms, b.Name, user)
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}
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return &api.Branch{
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Name: b.Name,
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Commit: ToPayloadCommit(ctx, repo, c),
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Protected: false,
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RequiredApprovals: 0,
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EnableStatusCheck: false,
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StatusCheckContexts: []string{},
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UserCanPush: canPush,
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UserCanMerge: hasPerm,
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}, nil
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}
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branch := &api.Branch{
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Name: b.Name,
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Commit: ToPayloadCommit(ctx, repo, c),
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Protected: true,
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RequiredApprovals: bp.RequiredApprovals,
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EnableStatusCheck: bp.EnableStatusCheck,
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StatusCheckContexts: bp.StatusCheckContexts,
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}
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if isRepoAdmin {
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branch.EffectiveBranchProtectionName = bp.RuleName
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}
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if user != nil {
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permission, err := access_model.GetUserRepoPermission(db.DefaultContext, repo, user)
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if err != nil {
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return nil, err
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}
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bp.Repo = repo
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branch.UserCanPush = bp.CanUserPush(db.DefaultContext, user)
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branch.UserCanMerge = git_model.IsUserMergeWhitelisted(db.DefaultContext, bp, user.ID, permission)
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}
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return branch, nil
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}
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// ToBranchProtection convert a ProtectedBranch to api.BranchProtection
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func ToBranchProtection(bp *git_model.ProtectedBranch) *api.BranchProtection {
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pushWhitelistUsernames, err := user_model.GetUserNamesByIDs(bp.WhitelistUserIDs)
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if err != nil {
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log.Error("GetUserNamesByIDs (WhitelistUserIDs): %v", err)
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}
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mergeWhitelistUsernames, err := user_model.GetUserNamesByIDs(bp.MergeWhitelistUserIDs)
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if err != nil {
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log.Error("GetUserNamesByIDs (MergeWhitelistUserIDs): %v", err)
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}
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approvalsWhitelistUsernames, err := user_model.GetUserNamesByIDs(bp.ApprovalsWhitelistUserIDs)
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if err != nil {
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log.Error("GetUserNamesByIDs (ApprovalsWhitelistUserIDs): %v", err)
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}
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pushWhitelistTeams, err := organization.GetTeamNamesByID(bp.WhitelistTeamIDs)
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if err != nil {
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log.Error("GetTeamNamesByID (WhitelistTeamIDs): %v", err)
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}
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mergeWhitelistTeams, err := organization.GetTeamNamesByID(bp.MergeWhitelistTeamIDs)
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if err != nil {
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log.Error("GetTeamNamesByID (MergeWhitelistTeamIDs): %v", err)
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}
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approvalsWhitelistTeams, err := organization.GetTeamNamesByID(bp.ApprovalsWhitelistTeamIDs)
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if err != nil {
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log.Error("GetTeamNamesByID (ApprovalsWhitelistTeamIDs): %v", err)
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}
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branchName := ""
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if !git_model.IsRuleNameSpecial(bp.RuleName) {
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branchName = bp.RuleName
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}
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return &api.BranchProtection{
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BranchName: branchName,
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RuleName: bp.RuleName,
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EnablePush: bp.CanPush,
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EnablePushWhitelist: bp.EnableWhitelist,
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PushWhitelistUsernames: pushWhitelistUsernames,
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PushWhitelistTeams: pushWhitelistTeams,
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PushWhitelistDeployKeys: bp.WhitelistDeployKeys,
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EnableMergeWhitelist: bp.EnableMergeWhitelist,
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MergeWhitelistUsernames: mergeWhitelistUsernames,
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MergeWhitelistTeams: mergeWhitelistTeams,
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EnableStatusCheck: bp.EnableStatusCheck,
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StatusCheckContexts: bp.StatusCheckContexts,
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RequiredApprovals: bp.RequiredApprovals,
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EnableApprovalsWhitelist: bp.EnableApprovalsWhitelist,
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ApprovalsWhitelistUsernames: approvalsWhitelistUsernames,
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ApprovalsWhitelistTeams: approvalsWhitelistTeams,
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BlockOnRejectedReviews: bp.BlockOnRejectedReviews,
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BlockOnOfficialReviewRequests: bp.BlockOnOfficialReviewRequests,
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BlockOnOutdatedBranch: bp.BlockOnOutdatedBranch,
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DismissStaleApprovals: bp.DismissStaleApprovals,
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RequireSignedCommits: bp.RequireSignedCommits,
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ProtectedFilePatterns: bp.ProtectedFilePatterns,
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UnprotectedFilePatterns: bp.UnprotectedFilePatterns,
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Created: bp.CreatedUnix.AsTime(),
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Updated: bp.UpdatedUnix.AsTime(),
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}
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}
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// ToTag convert a git.Tag to an api.Tag
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func ToTag(repo *repo_model.Repository, t *git.Tag) *api.Tag {
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return &api.Tag{
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Name: t.Name,
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Message: strings.TrimSpace(t.Message),
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ID: t.ID.String(),
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Commit: ToCommitMeta(repo, t),
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ZipballURL: util.URLJoin(repo.HTMLURL(), "archive", t.Name+".zip"),
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TarballURL: util.URLJoin(repo.HTMLURL(), "archive", t.Name+".tar.gz"),
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}
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}
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// ToVerification convert a git.Commit.Signature to an api.PayloadCommitVerification
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func ToVerification(ctx context.Context, c *git.Commit) *api.PayloadCommitVerification {
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verif := asymkey_model.ParseCommitWithSignature(ctx, c)
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commitVerification := &api.PayloadCommitVerification{
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Verified: verif.Verified,
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Reason: verif.Reason,
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}
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if c.Signature != nil {
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commitVerification.Signature = c.Signature.Signature
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commitVerification.Payload = c.Signature.Payload
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}
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if verif.SigningUser != nil {
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commitVerification.Signer = &api.PayloadUser{
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Name: verif.SigningUser.Name,
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Email: verif.SigningUser.Email,
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}
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}
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return commitVerification
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}
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// ToPublicKey convert asymkey_model.PublicKey to api.PublicKey
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func ToPublicKey(apiLink string, key *asymkey_model.PublicKey) *api.PublicKey {
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return &api.PublicKey{
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ID: key.ID,
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Key: key.Content,
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URL: fmt.Sprintf("%s%d", apiLink, key.ID),
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Title: key.Name,
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Fingerprint: key.Fingerprint,
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Created: key.CreatedUnix.AsTime(),
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}
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}
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// ToGPGKey converts models.GPGKey to api.GPGKey
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func ToGPGKey(key *asymkey_model.GPGKey) *api.GPGKey {
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subkeys := make([]*api.GPGKey, len(key.SubsKey))
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for id, k := range key.SubsKey {
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subkeys[id] = &api.GPGKey{
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ID: k.ID,
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PrimaryKeyID: k.PrimaryKeyID,
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KeyID: k.KeyID,
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PublicKey: k.Content,
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Created: k.CreatedUnix.AsTime(),
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Expires: k.ExpiredUnix.AsTime(),
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CanSign: k.CanSign,
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CanEncryptComms: k.CanEncryptComms,
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CanEncryptStorage: k.CanEncryptStorage,
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CanCertify: k.CanSign,
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Verified: k.Verified,
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}
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}
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emails := make([]*api.GPGKeyEmail, len(key.Emails))
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for i, e := range key.Emails {
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emails[i] = ToGPGKeyEmail(e)
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}
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return &api.GPGKey{
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ID: key.ID,
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PrimaryKeyID: key.PrimaryKeyID,
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KeyID: key.KeyID,
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PublicKey: key.Content,
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Created: key.CreatedUnix.AsTime(),
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Expires: key.ExpiredUnix.AsTime(),
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Emails: emails,
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SubsKey: subkeys,
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CanSign: key.CanSign,
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CanEncryptComms: key.CanEncryptComms,
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CanEncryptStorage: key.CanEncryptStorage,
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CanCertify: key.CanSign,
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Verified: key.Verified,
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}
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}
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// ToGPGKeyEmail convert models.EmailAddress to api.GPGKeyEmail
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func ToGPGKeyEmail(email *user_model.EmailAddress) *api.GPGKeyEmail {
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return &api.GPGKeyEmail{
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Email: email.Email,
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Verified: email.IsActivated,
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}
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}
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// ToGitHook convert git.Hook to api.GitHook
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func ToGitHook(h *git.Hook) *api.GitHook {
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return &api.GitHook{
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Name: h.Name(),
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IsActive: h.IsActive,
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Content: h.Content,
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}
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}
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// ToDeployKey convert asymkey_model.DeployKey to api.DeployKey
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func ToDeployKey(apiLink string, key *asymkey_model.DeployKey) *api.DeployKey {
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return &api.DeployKey{
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ID: key.ID,
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KeyID: key.KeyID,
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Key: key.Content,
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Fingerprint: key.Fingerprint,
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URL: fmt.Sprintf("%s%d", apiLink, key.ID),
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Title: key.Name,
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Created: key.CreatedUnix.AsTime(),
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ReadOnly: key.Mode == perm.AccessModeRead, // All deploy keys are read-only.
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}
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}
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// ToOrganization convert user_model.User to api.Organization
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func ToOrganization(ctx context.Context, org *organization.Organization) *api.Organization {
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return &api.Organization{
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ID: org.ID,
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AvatarURL: org.AsUser().AvatarLink(ctx),
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Name: org.Name,
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UserName: org.Name,
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FullName: org.FullName,
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Description: org.Description,
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Website: org.Website,
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Location: org.Location,
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Visibility: org.Visibility.String(),
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RepoAdminChangeTeamAccess: org.RepoAdminChangeTeamAccess,
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}
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}
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// ToTeam convert models.Team to api.Team
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func ToTeam(ctx context.Context, team *organization.Team, loadOrg ...bool) (*api.Team, error) {
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teams, err := ToTeams(ctx, []*organization.Team{team}, len(loadOrg) != 0 && loadOrg[0])
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if err != nil || len(teams) == 0 {
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return nil, err
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}
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return teams[0], nil
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}
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// ToTeams convert models.Team list to api.Team list
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func ToTeams(ctx context.Context, teams []*organization.Team, loadOrgs bool) ([]*api.Team, error) {
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if len(teams) == 0 || teams[0] == nil {
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return nil, nil
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}
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cache := make(map[int64]*api.Organization)
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apiTeams := make([]*api.Team, len(teams))
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for i := range teams {
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if err := teams[i].GetUnits(); err != nil {
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return nil, err
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}
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apiTeams[i] = &api.Team{
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ID: teams[i].ID,
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Name: teams[i].Name,
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Description: teams[i].Description,
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IncludesAllRepositories: teams[i].IncludesAllRepositories,
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CanCreateOrgRepo: teams[i].CanCreateOrgRepo,
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Permission: teams[i].AccessMode.String(),
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Units: teams[i].GetUnitNames(),
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UnitsMap: teams[i].GetUnitsMap(),
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}
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if loadOrgs {
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apiOrg, ok := cache[teams[i].OrgID]
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if !ok {
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org, err := organization.GetOrgByID(db.DefaultContext, teams[i].OrgID)
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if err != nil {
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return nil, err
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}
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apiOrg = ToOrganization(ctx, org)
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cache[teams[i].OrgID] = apiOrg
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}
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apiTeams[i].Organization = apiOrg
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}
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}
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return apiTeams, nil
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}
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// ToAnnotatedTag convert git.Tag to api.AnnotatedTag
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func ToAnnotatedTag(ctx context.Context, repo *repo_model.Repository, t *git.Tag, c *git.Commit) *api.AnnotatedTag {
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return &api.AnnotatedTag{
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Tag: t.Name,
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SHA: t.ID.String(),
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Object: ToAnnotatedTagObject(repo, c),
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Message: t.Message,
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URL: util.URLJoin(repo.APIURL(), "git/tags", t.ID.String()),
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Tagger: ToCommitUser(t.Tagger),
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Verification: ToVerification(ctx, c),
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}
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}
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// ToAnnotatedTagObject convert a git.Commit to an api.AnnotatedTagObject
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func ToAnnotatedTagObject(repo *repo_model.Repository, commit *git.Commit) *api.AnnotatedTagObject {
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return &api.AnnotatedTagObject{
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SHA: commit.ID.String(),
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Type: string(git.ObjectCommit),
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URL: util.URLJoin(repo.APIURL(), "git/commits", commit.ID.String()),
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}
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}
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// ToTopicResponse convert from models.Topic to api.TopicResponse
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func ToTopicResponse(topic *repo_model.Topic) *api.TopicResponse {
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return &api.TopicResponse{
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ID: topic.ID,
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Name: topic.Name,
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RepoCount: topic.RepoCount,
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Created: topic.CreatedUnix.AsTime(),
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Updated: topic.UpdatedUnix.AsTime(),
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}
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}
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// ToOAuth2Application convert from auth.OAuth2Application to api.OAuth2Application
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func ToOAuth2Application(app *auth.OAuth2Application) *api.OAuth2Application {
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return &api.OAuth2Application{
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ID: app.ID,
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Name: app.Name,
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ClientID: app.ClientID,
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ClientSecret: app.ClientSecret,
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ConfidentialClient: app.ConfidentialClient,
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RedirectURIs: app.RedirectURIs,
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Created: app.CreatedUnix.AsTime(),
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}
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}
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// ToLFSLock convert a LFSLock to api.LFSLock
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func ToLFSLock(ctx context.Context, l *git_model.LFSLock) *api.LFSLock {
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u, err := user_model.GetUserByID(ctx, l.OwnerID)
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if err != nil {
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return nil
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}
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return &api.LFSLock{
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ID: strconv.FormatInt(l.ID, 10),
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Path: l.Path,
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LockedAt: l.Created.Round(time.Second),
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Owner: &api.LFSLockOwner{
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Name: u.Name,
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},
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}
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}
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// ToChangedFile convert a gitdiff.DiffFile to api.ChangedFile
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func ToChangedFile(f *gitdiff.DiffFile, repo *repo_model.Repository, commit string) *api.ChangedFile {
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status := "changed"
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if f.IsDeleted {
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status = "deleted"
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} else if f.IsCreated {
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status = "added"
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} else if f.IsRenamed && f.Type == gitdiff.DiffFileCopy {
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status = "copied"
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} else if f.IsRenamed && f.Type == gitdiff.DiffFileRename {
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status = "renamed"
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} else if f.Addition == 0 && f.Deletion == 0 {
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status = "unchanged"
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}
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file := &api.ChangedFile{
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Filename: f.GetDiffFileName(),
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Status: status,
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Additions: f.Addition,
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Deletions: f.Deletion,
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Changes: f.Addition + f.Deletion,
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HTMLURL: fmt.Sprint(repo.HTMLURL(), "/src/commit/", commit, "/", util.PathEscapeSegments(f.GetDiffFileName())),
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ContentsURL: fmt.Sprint(repo.APIURL(), "/contents/", util.PathEscapeSegments(f.GetDiffFileName()), "?ref=", commit),
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RawURL: fmt.Sprint(repo.HTMLURL(), "/raw/commit/", commit, "/", util.PathEscapeSegments(f.GetDiffFileName())),
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}
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if status == "rename" {
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file.PreviousFilename = f.OldName
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}
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return file
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}
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