Files
Gitea/modules/git/repo.go
T
wxiaoguang 4d6e172a0d chore: still keep ctx in git.Repository struct for cat-file batch command (#38684)
Unfortunately, we can't completely remove the ctx from git.Repository,
because the CatFileBatch still heavily depends on a parent context.

If we remove the Repository ctx, the CatFileBatch will become a mess and
create a lot of unnecessary git processes.

http://localhost:3000/-/admin/monitor/perftrace

* Before: open a repo home, dozens of git processes (duplicate cat-file)
* After: only a few (no duplicate cat-file)
2026-07-28 17:04:22 +00:00

317 lines
8.9 KiB
Go

// Copyright 2015 The Gogs Authors. All rights reserved.
// Copyright 2017 The Gitea Authors. All rights reserved.
// SPDX-License-Identifier: MIT
package git
import (
"context"
"fmt"
"net/url"
"os"
"path"
"path/filepath"
"strconv"
"strings"
"sync"
"time"
"gitea.dev/modules/git/gitcmd"
"gitea.dev/modules/git/gitrepo"
"gitea.dev/modules/proxy"
"gitea.dev/modules/setting"
"gitea.dev/modules/util"
)
type RepositoryFacade = gitrepo.RepositoryFacade
type RepositoryBase struct {
LastCommitCache *LastCommitCache
repoFacade RepositoryFacade
tagCache *ObjectCache[*Tag]
objectFormatCache ObjectFormat
mu sync.Mutex
// Unfortunately, we can't completely remove the ctx, because CatFileBatch still heavily depends on a parent context.
// If we remove the ctx, then CatFileBatch's process management will become a mess and create a lot of unnecessary git processes.
// ref: http://localhost:3000/-/admin/monitor/perftrace
// The root problem is that some functions like "GetCommit" need to use CatFileBatch,
// if CatFileBatch accepts its own ctx, then every sub-context needs a git process.
// e.g.: open a repo home, dozens of git processes (duplicate cat-file)
// ATTENTION: this ctx is for cached cat-file process only, don't use it for other purposes.
catFileBatchCtx context.Context
catFileBatchCloser CatFileBatchCloser
catFileBatchInUse bool
}
var _ RepositoryFacade = (*Repository)(nil)
func (repo *Repository) GitRepoManagedID() string {
return repo.repoFacade.GitRepoManagedID()
}
func (repo *Repository) GitRepoLocation() string {
return repo.repoFacade.GitRepoLocation()
}
func (repo *Repository) LogString() string {
return repo.repoFacade.LogString()
}
func OpenRepository(catFileBatchCtx context.Context, repo RepositoryFacade) (*Repository, error) {
repoPath := gitrepo.RepoLocalPath(repo)
exist, err := util.IsDir(repoPath)
if err != nil {
return nil, err
}
if !exist {
return nil, util.NewNotExistErrorf("no such file or directory")
}
gitRepo := &Repository{
RepositoryBase: RepositoryBase{tagCache: newObjectCache[*Tag](), repoFacade: repo, catFileBatchCtx: catFileBatchCtx},
}
if err = openRepositoryInternal(gitRepo); err != nil {
return nil, err
}
return gitRepo, nil
}
// OpenRepositoryLocal opens a local repository that is not managed by Gitea
// If the path is relative, it will be converted to an absolute path using filepath.Abs (base on current working path)
func OpenRepositoryLocal(catFileBatchCtx context.Context, localPath string) (_ *Repository, err error) {
if !filepath.IsAbs(localPath) {
localPath, err = filepath.Abs(localPath)
if err != nil {
return nil, err
}
}
return OpenRepository(catFileBatchCtx, gitrepo.RepositoryUnmanaged(localPath))
}
func (repo *Repository) Close() error {
if repo == nil {
setting.PanicInDevOrTesting("don't close a nil repository")
return nil
}
repo.LastCommitCache = nil
repo.tagCache = nil
repo.mu.Lock()
defer repo.mu.Unlock()
if repo.catFileBatchCloser != nil {
repo.catFileBatchCloser.Close()
repo.catFileBatchCloser = nil
repo.catFileBatchInUse = false
}
return repo.closeInternal()
}
// IsRepoURLAccessible checks if given repository URL is accessible.
func IsRepoURLAccessible(ctx context.Context, url string) bool {
_, _, err := gitcmd.NewCommand("ls-remote", "-q", "-h").AddDynamicArguments(url, "HEAD").RunStdString(ctx)
return err == nil
}
// InitRepositoryLocal initializes a new Git repository.
func InitRepositoryLocal(ctx context.Context, localRepoPath string, bare bool, objectFormatName string) error {
err := os.MkdirAll(localRepoPath, os.ModePerm)
if err != nil {
return err
}
cmd := gitcmd.NewCommand("init")
if !IsValidObjectFormat(objectFormatName) {
return fmt.Errorf("invalid object format: %s", objectFormatName)
}
if DefaultFeatures().SupportHashSha256 {
cmd.AddOptionValues("--object-format", objectFormatName)
}
if bare {
cmd.AddArguments("--bare")
}
_, _, err = cmd.WithDir(localRepoPath).RunStdString(ctx)
return err
}
// IsEmpty Check if repository is empty.
func (repo *Repository) IsEmpty(ctx context.Context) (bool, error) {
stdout, _, err := gitcmd.NewCommand().
AddOptionFormat("--git-dir=%s", gitrepo.RepoLocalPath(repo)). // TODO: all git commands should use "--git-dir" or "GIT_DIR=..."
AddArguments("rev-list", "-n", "1", "--all").
WithRepo(repo).
RunStdString(ctx)
if err != nil {
if (gitcmd.IsErrorExitCode(err, 1) && err.Stderr() == "") || gitcmd.IsErrorExitCode(err, 129) {
// git 2.11 exits with 129 if the repo is empty
return true, nil
}
return true, fmt.Errorf("check empty: %w", err)
}
return strings.TrimSpace(stdout) == "", nil
}
// CloneRepoOptions options when clone a repository
type CloneRepoOptions struct {
Timeout time.Duration
Mirror bool
Bare bool
Quiet bool
Branch string
Shared bool
NoCheckout bool
Depth int
Filter string
SkipTLSVerify bool
SingleBranch bool
Env []string
}
// Clone clones original repository to target path.
func Clone(ctx context.Context, from, to string, opts CloneRepoOptions) error {
toDir := path.Dir(to)
if err := os.MkdirAll(toDir, os.ModePerm); err != nil {
return err
}
cmd := gitcmd.NewCommand().AddArguments("clone")
HandleGitCmdHTTPRedirection(cmd, from, to)
if opts.SkipTLSVerify {
cmd.AddArguments("-c", "http.sslVerify=false")
}
if opts.Mirror {
cmd.AddArguments("--mirror")
}
if opts.Bare {
cmd.AddArguments("--bare")
}
if opts.Quiet {
cmd.AddArguments("--quiet")
}
if opts.Shared {
cmd.AddArguments("-s")
}
if opts.NoCheckout {
cmd.AddArguments("--no-checkout")
}
if opts.Depth > 0 {
cmd.AddArguments("--depth").AddDynamicArguments(strconv.Itoa(opts.Depth))
}
if opts.Filter != "" {
cmd.AddArguments("--filter").AddDynamicArguments(opts.Filter)
}
if opts.SingleBranch {
cmd.AddArguments("--single-branch")
}
if len(opts.Branch) > 0 {
cmd.AddArguments("-b").AddDynamicArguments(opts.Branch)
}
cmd.AddDashesAndList(from, to)
if opts.Timeout <= 0 {
opts.Timeout = -1
}
envs := os.Environ()
if opts.Env != nil {
envs = opts.Env
} else {
u, err := url.Parse(from)
if err == nil {
envs = proxy.EnvWithProxy(u)
}
}
return cmd.
WithTimeout(opts.Timeout).
WithEnv(envs).
RunWithStderr(ctx)
}
// PushOptions options when push to remote
type PushOptions struct {
Remote string
LocalRefName string
Branch string
Force bool
ForceWithLease string
Mirror bool
Env []string
Timeout time.Duration
}
// Push pushs local commits to given remote branch.
func Push(ctx context.Context, localRepoPath string, opts PushOptions) error {
cmd := gitcmd.NewCommand("push")
if opts.ForceWithLease != "" {
cmd.AddOptionFormat("--force-with-lease=%s", opts.ForceWithLease)
} else if opts.Force {
cmd.AddArguments("-f")
}
if opts.Mirror {
cmd.AddArguments("--mirror")
}
remoteBranchArgs := []string{opts.Remote}
if len(opts.Branch) > 0 {
var refspec string
if opts.LocalRefName != "" {
refspec = fmt.Sprintf("%s:%s", opts.LocalRefName, opts.Branch)
} else {
refspec = opts.Branch
}
remoteBranchArgs = append(remoteBranchArgs, refspec)
}
cmd.AddDashesAndList(remoteBranchArgs...)
stdout, stderr, err := cmd.WithEnv(opts.Env).WithTimeout(opts.Timeout).WithDir(localRepoPath).RunStdString(ctx)
if err != nil {
if strings.Contains(stderr, "non-fast-forward") {
return &ErrPushOutOfDate{StdOut: stdout, StdErr: stderr, Err: err}
} else if strings.Contains(stderr, "! [remote rejected]") || strings.Contains(stderr, "! [rejected]") {
err := &ErrPushRejected{StdOut: stdout, StdErr: stderr, Err: err}
err.GenerateMessage()
return err
} else if strings.Contains(stderr, "matches more than one") {
return &ErrMoreThanOne{StdOut: stdout, StdErr: stderr, Err: err}
}
return fmt.Errorf("push failed: %w - %s\n%s", err, stderr, stdout)
}
return nil
}
// CatFileBatch obtains a "batch object provider" for this repository.
// It reuses an existing one if available, otherwise creates a new one.
func (repo *Repository) CatFileBatch() (_ CatFileBatch, closeFunc func(), err error) {
repo.mu.Lock()
defer repo.mu.Unlock()
// if no cached batcher, make a new managed one, and cache it
if repo.catFileBatchCloser == nil {
repo.catFileBatchCloser, err = NewBatch(repo.catFileBatchCtx, repo)
if err != nil {
repo.catFileBatchCloser = nil // otherwise it is "interface(nil)" and will cause wrong logic
return nil, nil, err
}
}
// if the cached batcher is not in use, return it
if !repo.catFileBatchInUse {
repo.catFileBatchInUse = true
return CatFileBatch(repo.catFileBatchCloser), func() {
repo.mu.Lock()
defer repo.mu.Unlock()
repo.catFileBatchInUse = false
}, nil
}
// return a temp one (won't be cached or shared)
tempBatch, err := NewBatch(repo.catFileBatchCtx, repo)
if err != nil {
return nil, nil, err
}
return tempBatch, tempBatch.Close, nil
}