mirror of
https://github.com/go-gitea/gitea.git
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before: gitrepo vs git packages after: git package fully handle all git operations by the way, use `WithRepo(repo)` instead of `WithDir(repo.Path)` to hide path details. benefits: 1. remove all unnecessary wrappers, developers no need to struggle with "which package should be used" 2. simplify code, RepositoryFacade can (will) be used everywhere, all "path" details are (will be) hidden
139 lines
4.6 KiB
Go
139 lines
4.6 KiB
Go
// Copyright 2019 The Gitea Authors.
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// All rights reserved.
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// SPDX-License-Identifier: MIT
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package pull
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import (
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"bufio"
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"context"
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"errors"
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"io"
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"strconv"
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git_model "gitea.dev/models/git"
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issues_model "gitea.dev/models/issues"
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"gitea.dev/modules/git"
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"gitea.dev/modules/git/gitcmd"
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"gitea.dev/modules/git/pipeline"
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"gitea.dev/modules/lfs"
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"gitea.dev/modules/log"
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"gitea.dev/modules/util"
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"golang.org/x/sync/errgroup"
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)
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// LFSPush pushes lfs objects referred to in new commits in the head repository from the base repository
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func LFSPush(ctx context.Context, tmpBasePath string, tmpRepo git.RepositoryFacade, mergeHeadSHA, mergeBaseSHA string, pr *issues_model.PullRequest) error {
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// Now we have to implement git-lfs push
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// git rev-list --objects --filter=blob:limit=1k HEAD --not base
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// pass blob shas in to git cat-file --batch-check (possibly unnecessary)
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// ensure only blobs and <=1k size then pass in to git cat-file --batch
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// to read each sha and check each as a pointer
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// Then if they are lfs -> add them to the baseRepo
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cmd1RevList, cmd3BathCheck, cmd5BatchContent := gitcmd.NewCommand(), gitcmd.NewCommand(), gitcmd.NewCommand()
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cmd1RevListOut, cmd1RevListClose := cmd1RevList.MakeStdoutPipe()
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defer cmd1RevListClose()
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cmd3BatchCheckIn, cmd3BatchCheckOut, cmd3BatchCheckClose := cmd3BathCheck.MakeStdinStdoutPipe()
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defer cmd3BatchCheckClose()
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cmd5BatchContentIn, cmd5BatchContentOut, cmd5BatchContentClose := cmd5BatchContent.MakeStdinStdoutPipe()
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defer cmd5BatchContentClose()
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// Create the go-routines in reverse order (update: the order is not needed any more, the pipes are properly prepared)
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wg := &errgroup.Group{}
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// 6. Take the output of cat-file --batch and check if each file in turn
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// to see if they're pointers to files in the LFS store associated with
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// the head repo and add them to the base repo if so
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wg.Go(func() error {
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return createLFSMetaObjectsFromCatFileBatch(ctx, cmd5BatchContentOut, pr)
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})
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// 5. Take the shas of the blobs and batch read them
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wg.Go(func() error {
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return pipeline.CatFileBatch(ctx, cmd5BatchContent, tmpRepo)
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})
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// 4. From the provided objects restrict to blobs <=1k
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wg.Go(func() error {
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return pipeline.BlobsLessThan1024FromCatFileBatchCheck(cmd3BatchCheckOut, cmd5BatchContentIn)
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})
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// 3. Run batch-check on the objects retrieved from rev-list
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wg.Go(func() error {
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return pipeline.CatFileBatchCheck(ctx, cmd3BathCheck, tmpBasePath)
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})
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// 2. Check each object retrieved rejecting those without names as they will be commits or trees
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wg.Go(func() error {
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return pipeline.BlobsFromRevListObjects(cmd1RevListOut, cmd3BatchCheckIn)
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})
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// 1. Run rev-list objects from mergeHead to mergeBase
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wg.Go(func() error {
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return pipeline.RevListObjects(ctx, cmd1RevList, tmpBasePath, mergeHeadSHA, mergeBaseSHA)
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})
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return wg.Wait()
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}
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func createLFSMetaObjectsFromCatFileBatch(ctx context.Context, catFileBatchReader io.ReadCloser, pr *issues_model.PullRequest) error {
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defer catFileBatchReader.Close()
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contentStore := lfs.NewContentStore()
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bufferedReader := bufio.NewReader(catFileBatchReader)
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buf := make([]byte, 1025)
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for {
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// File descriptor line: sha
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_, err := bufferedReader.ReadString(' ')
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if err != nil {
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return util.Iif(errors.Is(err, io.EOF), nil, err)
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}
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// Throw away the blob
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if _, err := bufferedReader.ReadString(' '); err != nil {
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return err
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}
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sizeStr, err := bufferedReader.ReadString('\n')
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if err != nil {
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return err
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}
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size, err := strconv.Atoi(sizeStr[:len(sizeStr)-1])
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if err != nil {
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return err
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}
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pointerBuf := buf[:size+1]
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if _, err := io.ReadFull(bufferedReader, pointerBuf); err != nil {
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return err
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}
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pointerBuf = pointerBuf[:size]
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// Now we need to check if the pointerBuf is an LFS pointer
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pointer, _ := lfs.ReadPointerFromBuffer(pointerBuf)
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if !pointer.IsValid() {
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continue
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}
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exist, _ := contentStore.Exists(pointer)
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if !exist {
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continue
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}
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// Then we need to check that this pointer is in the db
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if _, err := git_model.GetLFSMetaObjectByOid(ctx, pr.HeadRepoID, pointer.Oid); err != nil {
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if err == git_model.ErrLFSObjectNotExist {
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log.Warn("During merge of: %d in %-v, there is a pointer to LFS Oid: %s which although present in the LFS store is not associated with the head repo %-v", pr.Index, pr.BaseRepo, pointer.Oid, pr.HeadRepo)
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continue
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}
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return err
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}
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// OK we have a pointer that is associated with the head repo
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// and is actually a file in the LFS
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// Therefore it should be associated with the base repo
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if _, err := git_model.NewLFSMetaObject(ctx, pr.BaseRepoID, pointer); err != nil {
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return err
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}
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}
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}
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