mirror of
https://github.com/go-gitea/gitea.git
synced 2024-11-23 18:38:54 +08:00
de484e86bc
This PR adds the support for scopes of access tokens, mimicking the design of GitHub OAuth scopes. The changes of the core logic are in `models/auth` that `AccessToken` struct will have a `Scope` field. The normalized (no duplication of scope), comma-separated scope string will be stored in `access_token` table in the database. In `services/auth`, the scope will be stored in context, which will be used by `reqToken` middleware in API calls. Only OAuth2 tokens will have granular token scopes, while others like BasicAuth will default to scope `all`. A large amount of work happens in `routers/api/v1/api.go` and the corresponding `tests/integration` tests, that is adding necessary scopes to each of the API calls as they fit. - [x] Add `Scope` field to `AccessToken` - [x] Add access control to all API endpoints - [x] Update frontend & backend for when creating tokens - [x] Add a database migration for `scope` column (enable 'all' access to past tokens) I'm aiming to complete it before Gitea 1.19 release. Fixes #4300
329 lines
9.7 KiB
Go
329 lines
9.7 KiB
Go
// Copyright 2022 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package integration
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import (
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"context"
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"errors"
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"fmt"
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"net/url"
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"os"
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"path/filepath"
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"reflect"
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"strings"
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"testing"
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auth_model "code.gitea.io/gitea/models/auth"
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repo_model "code.gitea.io/gitea/models/repo"
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"code.gitea.io/gitea/models/unittest"
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user_model "code.gitea.io/gitea/models/user"
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base "code.gitea.io/gitea/modules/migration"
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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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"code.gitea.io/gitea/services/migrations"
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"github.com/stretchr/testify/assert"
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"gopkg.in/yaml.v3"
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)
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func TestDumpRestore(t *testing.T) {
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onGiteaRun(t, func(t *testing.T, u *url.URL) {
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AllowLocalNetworks := setting.Migrations.AllowLocalNetworks
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setting.Migrations.AllowLocalNetworks = true
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AppVer := setting.AppVer
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// Gitea SDK (go-sdk) need to parse the AppVer from server response, so we must set it to a valid version string.
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setting.AppVer = "1.16.0"
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defer func() {
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setting.Migrations.AllowLocalNetworks = AllowLocalNetworks
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setting.AppVer = AppVer
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}()
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assert.NoError(t, migrations.Init())
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reponame := "repo1"
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basePath, err := os.MkdirTemp("", reponame)
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assert.NoError(t, err)
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defer util.RemoveAll(basePath)
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repo := unittest.AssertExistsAndLoadBean(t, &repo_model.Repository{Name: reponame})
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repoOwner := unittest.AssertExistsAndLoadBean(t, &user_model.User{ID: repo.OwnerID})
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session := loginUser(t, repoOwner.Name)
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token := getTokenForLoggedInUser(t, session, auth_model.AccessTokenScopeRepo)
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//
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// Phase 1: dump repo1 from the Gitea instance to the filesystem
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//
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ctx := context.Background()
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opts := migrations.MigrateOptions{
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GitServiceType: structs.GiteaService,
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Issues: true,
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PullRequests: true,
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Labels: true,
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Milestones: true,
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Comments: true,
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AuthToken: token,
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CloneAddr: repo.CloneLink().HTTPS,
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RepoName: reponame,
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}
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err = migrations.DumpRepository(ctx, basePath, repoOwner.Name, opts)
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assert.NoError(t, err)
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//
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// Verify desired side effects of the dump
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//
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d := filepath.Join(basePath, repo.OwnerName, repo.Name)
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for _, f := range []string{"repo.yml", "topic.yml", "label.yml", "milestone.yml", "issue.yml"} {
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assert.FileExists(t, filepath.Join(d, f))
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}
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//
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// Phase 2: restore from the filesystem to the Gitea instance in restoredrepo
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//
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newreponame := "restored"
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err = migrations.RestoreRepository(ctx, d, repo.OwnerName, newreponame, []string{
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"labels", "issues", "comments", "milestones", "pull_requests",
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}, false)
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assert.NoError(t, err)
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newrepo := unittest.AssertExistsAndLoadBean(t, &repo_model.Repository{Name: newreponame})
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//
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// Phase 3: dump restored from the Gitea instance to the filesystem
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//
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opts.RepoName = newreponame
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opts.CloneAddr = newrepo.CloneLink().HTTPS
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err = migrations.DumpRepository(ctx, basePath, repoOwner.Name, opts)
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assert.NoError(t, err)
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//
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// Verify the dump of restored is the same as the dump of repo1
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//
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comparator := &compareDump{
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t: t,
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basePath: basePath,
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}
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comparator.assertEquals(repo, newrepo)
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})
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}
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type compareDump struct {
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t *testing.T
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basePath string
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repoBefore *repo_model.Repository
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dirBefore string
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repoAfter *repo_model.Repository
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dirAfter string
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}
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type compareField struct {
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before interface{}
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after interface{}
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ignore bool
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transform func(string) string
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nested *compareFields
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}
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type compareFields map[string]compareField
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func (c *compareDump) replaceRepoName(original string) string {
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return strings.ReplaceAll(original, c.repoBefore.Name, c.repoAfter.Name)
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}
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func (c *compareDump) assertEquals(repoBefore, repoAfter *repo_model.Repository) {
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c.repoBefore = repoBefore
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c.dirBefore = filepath.Join(c.basePath, repoBefore.OwnerName, repoBefore.Name)
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c.repoAfter = repoAfter
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c.dirAfter = filepath.Join(c.basePath, repoAfter.OwnerName, repoAfter.Name)
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//
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// base.Repository
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//
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_ = c.assertEqual("repo.yml", base.Repository{}, compareFields{
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"Name": {
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before: c.repoBefore.Name,
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after: c.repoAfter.Name,
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},
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"CloneURL": {transform: c.replaceRepoName},
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"OriginalURL": {transform: c.replaceRepoName},
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})
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//
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// base.Label
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//
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labels, ok := c.assertEqual("label.yml", []base.Label{}, compareFields{}).([]*base.Label)
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assert.True(c.t, ok)
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assert.GreaterOrEqual(c.t, len(labels), 1)
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//
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// base.Milestone
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//
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milestones, ok := c.assertEqual("milestone.yml", []base.Milestone{}, compareFields{
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"Updated": {ignore: true}, // the database updates that field independently
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}).([]*base.Milestone)
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assert.True(c.t, ok)
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assert.GreaterOrEqual(c.t, len(milestones), 1)
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//
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// base.Issue and the associated comments
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//
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issues, ok := c.assertEqual("issue.yml", []base.Issue{}, compareFields{
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"Assignees": {ignore: true}, // not implemented yet
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}).([]*base.Issue)
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assert.True(c.t, ok)
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assert.GreaterOrEqual(c.t, len(issues), 1)
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for _, issue := range issues {
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filename := filepath.Join("comments", fmt.Sprintf("%d.yml", issue.Number))
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comments, ok := c.assertEqual(filename, []base.Comment{}, compareFields{
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"Index": {ignore: true},
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}).([]*base.Comment)
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assert.True(c.t, ok)
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for _, comment := range comments {
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assert.EqualValues(c.t, issue.Number, comment.IssueIndex)
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}
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}
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//
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// base.PullRequest and the associated comments
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//
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comparePullRequestBranch := &compareFields{
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"RepoName": {
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before: c.repoBefore.Name,
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after: c.repoAfter.Name,
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},
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"CloneURL": {transform: c.replaceRepoName},
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}
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prs, ok := c.assertEqual("pull_request.yml", []base.PullRequest{}, compareFields{
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"Assignees": {ignore: true}, // not implemented yet
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"Head": {nested: comparePullRequestBranch},
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"Base": {nested: comparePullRequestBranch},
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"Labels": {ignore: true}, // because org labels are not handled properly
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}).([]*base.PullRequest)
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assert.True(c.t, ok)
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assert.GreaterOrEqual(c.t, len(prs), 1)
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for _, pr := range prs {
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filename := filepath.Join("comments", fmt.Sprintf("%d.yml", pr.Number))
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comments, ok := c.assertEqual(filename, []base.Comment{}, compareFields{}).([]*base.Comment)
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assert.True(c.t, ok)
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for _, comment := range comments {
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assert.EqualValues(c.t, pr.Number, comment.IssueIndex)
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}
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}
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}
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func (c *compareDump) assertLoadYAMLFiles(beforeFilename, afterFilename string, before, after interface{}) {
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_, beforeErr := os.Stat(beforeFilename)
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_, afterErr := os.Stat(afterFilename)
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assert.EqualValues(c.t, errors.Is(beforeErr, os.ErrNotExist), errors.Is(afterErr, os.ErrNotExist))
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if errors.Is(beforeErr, os.ErrNotExist) {
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return
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}
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beforeBytes, err := os.ReadFile(beforeFilename)
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assert.NoError(c.t, err)
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assert.NoError(c.t, yaml.Unmarshal(beforeBytes, before))
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afterBytes, err := os.ReadFile(afterFilename)
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assert.NoError(c.t, err)
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assert.NoError(c.t, yaml.Unmarshal(afterBytes, after))
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}
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func (c *compareDump) assertLoadFiles(beforeFilename, afterFilename string, t reflect.Type) (before, after reflect.Value) {
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var beforePtr, afterPtr reflect.Value
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if t.Kind() == reflect.Slice {
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//
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// Given []Something{} create afterPtr, beforePtr []*Something{}
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//
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sliceType := reflect.SliceOf(reflect.PtrTo(t.Elem()))
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beforeSlice := reflect.MakeSlice(sliceType, 0, 10)
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beforePtr = reflect.New(beforeSlice.Type())
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beforePtr.Elem().Set(beforeSlice)
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afterSlice := reflect.MakeSlice(sliceType, 0, 10)
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afterPtr = reflect.New(afterSlice.Type())
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afterPtr.Elem().Set(afterSlice)
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} else {
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//
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// Given Something{} create afterPtr, beforePtr *Something{}
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//
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beforePtr = reflect.New(t)
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afterPtr = reflect.New(t)
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}
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c.assertLoadYAMLFiles(beforeFilename, afterFilename, beforePtr.Interface(), afterPtr.Interface())
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return beforePtr.Elem(), afterPtr.Elem()
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}
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func (c *compareDump) assertEqual(filename string, kind interface{}, fields compareFields) (i interface{}) {
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beforeFilename := filepath.Join(c.dirBefore, filename)
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afterFilename := filepath.Join(c.dirAfter, filename)
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typeOf := reflect.TypeOf(kind)
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before, after := c.assertLoadFiles(beforeFilename, afterFilename, typeOf)
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if typeOf.Kind() == reflect.Slice {
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i = c.assertEqualSlices(before, after, fields)
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} else {
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i = c.assertEqualValues(before, after, fields)
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}
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return i
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}
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func (c *compareDump) assertEqualSlices(before, after reflect.Value, fields compareFields) interface{} {
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assert.EqualValues(c.t, before.Len(), after.Len())
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if before.Len() == after.Len() {
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for i := 0; i < before.Len(); i++ {
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_ = c.assertEqualValues(
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reflect.Indirect(before.Index(i).Elem()),
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reflect.Indirect(after.Index(i).Elem()),
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fields)
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}
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}
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return after.Interface()
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}
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func (c *compareDump) assertEqualValues(before, after reflect.Value, fields compareFields) interface{} {
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for _, field := range reflect.VisibleFields(before.Type()) {
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bf := before.FieldByName(field.Name)
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bi := bf.Interface()
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af := after.FieldByName(field.Name)
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ai := af.Interface()
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if compare, ok := fields[field.Name]; ok {
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if compare.ignore == true {
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//
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// Ignore
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//
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continue
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}
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if compare.transform != nil {
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//
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// Transform these strings before comparing them
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//
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bs, ok := bi.(string)
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assert.True(c.t, ok)
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as, ok := ai.(string)
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assert.True(c.t, ok)
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assert.EqualValues(c.t, compare.transform(bs), compare.transform(as))
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continue
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}
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if compare.before != nil && compare.after != nil {
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//
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// The fields are expected to have different values
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//
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assert.EqualValues(c.t, compare.before, bi)
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assert.EqualValues(c.t, compare.after, ai)
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continue
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}
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if compare.nested != nil {
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//
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// The fields are a struct, recurse
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//
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c.assertEqualValues(bf, af, *compare.nested)
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continue
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}
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}
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assert.EqualValues(c.t, bi, ai)
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}
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return after.Interface()
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}
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