Files
Sameen Karim dcb5885053 Skip pushing branches with queued PRs
Detect merge queue status via the GitHub GraphQL API's mergeQueueEntry
field and temporarily skip queued branches in push, sync, and submit
commands. Unlike merged state (which is persisted permanently), queued
state is transient — held in-memory only via a json:"-" tagged field
on BranchRef. Each command run re-checks queue status from the API, so
if a PR is ejected from the queue it becomes active again on next run.

Changes:
- Add MergeQueueEntry to PullRequest GraphQL struct and PRDetails
- Add IsQueued()/IsSkipped()/QueuedBranches() to stack model
- Update ActiveBranches() family to exclude queued branches
- Skip queued branches in push, sync (rebase + push), and submit
- Add queued icon, style, and QUEUED state label in TUI view
- Add comprehensive tests for queued state handling

Closes github/pull-requests#24019

Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-04-09 08:24:36 -04:00

353 lines
10 KiB
Go

package cmd
import (
"errors"
"fmt"
"strings"
"github.com/github/gh-stack/internal/config"
"github.com/github/gh-stack/internal/git"
"github.com/github/gh-stack/internal/stack"
"github.com/spf13/cobra"
)
type syncOptions struct {
remote string
}
func SyncCmd(cfg *config.Config) *cobra.Command {
opts := &syncOptions{}
cmd := &cobra.Command{
Use: "sync",
Short: "Sync the current stack with the remote",
Long: `Fetch, rebase, push, and sync PR state for the current stack.
This command performs a safe, non-interactive synchronization:
1. Fetches the latest changes from the remote
2. Fast-forwards the trunk branch to match the remote
3. Cascade-rebases stack branches onto their updated parents
4. Pushes all branches atomically (using --force-with-lease --atomic)
5. Syncs PR state from GitHub
If a rebase conflict is detected, all branches are restored to their
original state and you are advised to run "gh stack rebase" to resolve
conflicts interactively.`,
RunE: func(cmd *cobra.Command, args []string) error {
return runSync(cfg, opts)
},
}
cmd.Flags().StringVar(&opts.remote, "remote", "", "Remote to fetch from and push to (defaults to auto-detected remote)")
return cmd
}
func runSync(cfg *config.Config, opts *syncOptions) error {
result, err := loadStack(cfg, "")
if err != nil {
return ErrNotInStack
}
gitDir := result.GitDir
sf := result.StackFile
s := result.Stack
currentBranch := result.CurrentBranch
// Resolve remote once for fetch and push
remote, err := pickRemote(cfg, currentBranch, opts.remote)
if err != nil {
if !errors.Is(err, errInterrupt) {
cfg.Errorf("%s", err)
}
return ErrSilent
}
// --- Step 1: Fetch ---
// Enable git rerere so conflict resolutions are remembered.
if err := ensureRerere(cfg); errors.Is(err, errInterrupt) {
return ErrSilent
}
if err := git.Fetch(remote); err != nil {
cfg.Warningf("Failed to fetch %s: %v", remote, err)
} else {
cfg.Successf("Fetched latest changes from %s", remote)
}
// --- Step 2: Fast-forward trunk ---
trunk := s.Trunk.Branch
trunkUpdated := false
localSHA, remoteSHA := "", ""
trunkRefs, trunkErr := git.RevParseMulti([]string{trunk, remote + "/" + trunk})
if trunkErr == nil {
localSHA, remoteSHA = trunkRefs[0], trunkRefs[1]
}
if trunkErr != nil {
cfg.Warningf("Could not compare trunk %s with remote — skipping trunk update", trunk)
} else if localSHA == remoteSHA {
cfg.Successf("Trunk %s is already up to date", trunk)
} else {
isAncestor, err := git.IsAncestor(localSHA, remoteSHA)
if err != nil {
cfg.Warningf("Could not determine fast-forward status for %s: %v", trunk, err)
} else if !isAncestor {
cfg.Warningf("Trunk %s has diverged from %s — skipping trunk update", trunk, remote)
cfg.Printf(" Local and remote %s have diverged. Resolve manually.", trunk)
} else {
// Fast-forward the trunk branch
if currentBranch == trunk {
if err := git.MergeFF(remote + "/" + trunk); err != nil {
cfg.Warningf("Failed to fast-forward %s: %v", trunk, err)
} else {
cfg.Successf("Trunk %s fast-forwarded to %s", trunk, short(remoteSHA))
trunkUpdated = true
}
} else {
if err := updateBranchRef(trunk, remoteSHA); err != nil {
cfg.Warningf("Failed to fast-forward %s: %v", trunk, err)
} else {
cfg.Successf("Trunk %s fast-forwarded to %s", trunk, short(remoteSHA))
trunkUpdated = true
}
}
}
}
// --- Step 3: Cascade rebase (only if trunk moved) ---
rebased := false
if trunkUpdated {
cfg.Printf("")
cfg.Printf("Rebasing stack ...")
// Sync PR state to detect merged PRs before rebasing.
syncStackPRs(cfg, s)
// Save original refs so we can restore on conflict
branchNames := make([]string, len(s.Branches))
for i, b := range s.Branches {
branchNames[i] = b.Branch
}
originalRefs, _ := git.RevParseMap(branchNames)
needsOnto := false
var ontoOldBase string
conflicted := false
for i, br := range s.Branches {
var base string
if i == 0 {
base = trunk
} else {
base = s.Branches[i-1].Branch
}
// Skip branches whose PRs have already been merged.
if br.IsMerged() {
ontoOldBase = originalRefs[br.Branch]
needsOnto = true
cfg.Successf("Skipping %s (PR %s merged)", br.Branch, cfg.PRLink(br.PullRequest.Number, br.PullRequest.URL))
continue
}
// Skip branches whose PRs are currently in a merge queue.
if br.IsQueued() {
ontoOldBase = originalRefs[br.Branch]
needsOnto = true
cfg.Successf("Skipping %s (PR %s queued)", br.Branch, cfg.PRLink(br.PullRequest.Number, br.PullRequest.URL))
continue
}
if needsOnto {
// Find --onto target: first non-merged/queued ancestor, or trunk.
newBase := trunk
for j := i - 1; j >= 0; j-- {
b := s.Branches[j]
if !b.IsSkipped() {
newBase = b.Branch
break
}
}
if err := git.RebaseOnto(newBase, ontoOldBase, br.Branch); err != nil {
// Conflict detected — abort and restore everything
if git.IsRebaseInProgress() {
_ = git.RebaseAbort()
}
restoreErrors := restoreBranches(originalRefs)
_ = git.CheckoutBranch(currentBranch)
cfg.Errorf("Conflict detected rebasing %s onto %s", br.Branch, newBase)
reportRestoreStatus(cfg, restoreErrors)
cfg.Printf(" Run `%s` to resolve conflicts interactively.",
cfg.ColorCyan("gh stack rebase"))
conflicted = true
break
}
cfg.Successf("Rebased %s onto %s (squash-merge detected)", br.Branch, newBase)
ontoOldBase = originalRefs[br.Branch]
} else {
var rebaseErr error
if i > 0 {
// Use --onto to replay only this branch's unique commits.
rebaseErr = git.RebaseOnto(base, originalRefs[base], br.Branch)
} else {
if err := git.CheckoutBranch(br.Branch); err != nil {
cfg.Errorf("Failed to checkout %s: %v", br.Branch, err)
conflicted = true
break
}
rebaseErr = git.Rebase(base)
}
if rebaseErr != nil {
// Conflict detected — abort and restore everything
if git.IsRebaseInProgress() {
_ = git.RebaseAbort()
}
restoreErrors := restoreBranches(originalRefs)
_ = git.CheckoutBranch(currentBranch)
cfg.Errorf("Conflict detected rebasing %s onto %s", br.Branch, base)
reportRestoreStatus(cfg, restoreErrors)
cfg.Printf(" Run `%s` to resolve conflicts interactively.",
cfg.ColorCyan("gh stack rebase"))
conflicted = true
break
}
cfg.Successf("Rebased %s onto %s", br.Branch, base)
}
}
if !conflicted {
rebased = true
_ = git.CheckoutBranch(currentBranch)
} else {
// Persist refreshed PR state even on conflict, then bail out
// before pushing or reporting success.
stack.SaveNonBlocking(gitDir, sf)
return ErrConflict
}
}
// --- Step 4: Push ---
cfg.Printf("")
branches := activeBranchNames(s)
if mergedCount := len(s.MergedBranches()); mergedCount > 0 {
cfg.Printf("Skipping %d merged %s", mergedCount, plural(mergedCount, "branch", "branches"))
}
if queuedCount := len(s.QueuedBranches()); queuedCount > 0 {
cfg.Printf("Skipping %d queued %s", queuedCount, plural(queuedCount, "branch", "branches"))
}
if len(branches) == 0 {
cfg.Printf("No active branches to push (all merged)")
} else {
// After rebase, force-with-lease is required (history rewritten).
// Without rebase, try a normal push first.
force := rebased
cfg.Printf("Pushing %d %s to %s...", len(branches), plural(len(branches), "branch", "branches"), remote)
if err := git.Push(remote, branches, force, true); err != nil {
if !force {
cfg.Warningf("Push failed — branches may need force push after rebase")
cfg.Printf(" Run `%s` to push with --force-with-lease.",
cfg.ColorCyan("gh stack push"))
} else {
cfg.Warningf("Push failed: %v", err)
cfg.Printf(" Run `%s` to retry.", cfg.ColorCyan("gh stack push"))
}
} else {
cfg.Successf("Pushed %d branches", len(branches))
}
}
// --- Step 5: Sync PR state ---
cfg.Printf("")
cfg.Printf("Syncing PRs ...")
syncStackPRs(cfg, s)
// Report PR status for each branch
for _, b := range s.Branches {
if b.IsMerged() {
continue
}
if b.IsQueued() {
cfg.Successf("PR %s (%s) — Queued", cfg.PRLink(b.PullRequest.Number, b.PullRequest.URL), b.Branch)
continue
}
if b.PullRequest != nil {
cfg.Successf("PR %s (%s) — Open", cfg.PRLink(b.PullRequest.Number, b.PullRequest.URL), b.Branch)
} else {
cfg.Warningf("%s has no PR", b.Branch)
}
}
merged := s.MergedBranches()
if len(merged) > 0 {
names := make([]string, len(merged))
for i, m := range merged {
if m.PullRequest != nil {
names[i] = fmt.Sprintf("#%d", m.PullRequest.Number)
} else {
names[i] = m.Branch
}
}
cfg.Printf("Merged: %s", strings.Join(names, ", "))
}
// --- Step 6: Update base SHAs and save ---
updateBaseSHAs(s)
if err := stack.Save(gitDir, sf); err != nil {
return handleSaveError(cfg, err)
}
cfg.Printf("")
cfg.Successf("Stack synced")
return nil
}
// updateBranchRef updates a branch ref to point to a new SHA (for branches not checked out).
func updateBranchRef(branch, sha string) error {
return git.UpdateBranchRef(branch, sha)
}
// restoreBranches resets each branch to its original SHA, collecting any errors.
func restoreBranches(originalRefs map[string]string) []string {
var errors []string
for branch, sha := range originalRefs {
if err := git.CheckoutBranch(branch); err != nil {
errors = append(errors, fmt.Sprintf("checkout %s: %s", branch, err))
continue
}
if err := git.ResetHard(sha); err != nil {
errors = append(errors, fmt.Sprintf("reset %s: %s", branch, err))
}
}
return errors
}
// reportRestoreStatus prints whether branch restoration succeeded or partially failed.
func reportRestoreStatus(cfg *config.Config, restoreErrors []string) {
if len(restoreErrors) > 0 {
cfg.Warningf("Some branches could not be fully restored:")
for _, e := range restoreErrors {
cfg.Printf(" %s", e)
}
} else {
cfg.Printf(" All branches restored to their original state.")
}
}
// short returns the first 7 characters of a SHA.
func short(sha string) string {
if len(sha) > 7 {
return sha[:7]
}
return sha
}