| name | gitlab-ops |
| description | Use this skill when performing VCS operations on GitLab or GitHub repositories — creating, updating, or closing issues and MRs, applying label taxonomy, running `glab`/`gh` CLI commands, or resolving project IDs dynamically. Acts as the single source of truth for CLI command syntax and label conventions; consuming skills reference this rather than duplicating logic. Triggers: "create a GitLab issue", "list open MRs", "apply priority label", "how do I resolve the project ID", "what's the carryover issue template". <example>Context: session-end needs to file a carryover issue for an incomplete task. user: "/close" assistant: "Creating carryover issue via glab with the Carryover Template from gitlab-ops — labels: carryover, priority:high."</example> |
VCS Operations Reference
VCS Auto-Detection
Detect which VCS platform the current repo uses and select the right CLI:
REMOTE_URL=$(git remote get-url origin 2>/dev/null)
if echo "$REMOTE_URL" | grep -q "github.com"; then
VCS=github
else
VCS=gitlab
fi
Session Config overrides:
vcs: github|gitlab — force a specific platform
gitlab-host: <host> — override auto-detected GitLab host (glab reads host from git remote by default)
How Other Skills Reference This
Directive: Consuming skills MUST NOT duplicate VCS auto-detection logic or CLI command
syntax inline. This skill is the single source of truth for all VCS operations.
When a skill needs VCS operations, include this reference block in its instructions:
VCS Reference: Detect the VCS platform per the "VCS Auto-Detection" section of the gitlab-ops skill.
Use CLI commands per the "Common CLI Commands" section. For cross-project queries, see "Dynamic Project Resolution."
Canonical commands: All glab and gh command syntax — flags, output formats,
pagination options — is defined in the "Common CLI Commands" section below. Consuming
skills must reference that section rather than redefining commands. If a skill needs a
command variant not listed there, add it to this file first, then reference it.
What consuming skills should include:
- The reference block above (copy-paste it verbatim)
- Any skill-specific parameters they pass to commands (e.g., label names, issue templates)
- They should NOT include raw
glab/gh invocations or detection snippets
Dynamic Project Resolution
Never hardcode project IDs. Resolve them at runtime — and re-resolve live each session; never cache a project ID across sessions (a stale ID silently targets the wrong project on rename/fork/mirror-drift, and is the root cause behind the close-verification incident documented below).
Current project
glab repo view --output json | python3 -c "import json,sys; print(json.load(sys.stdin)['id'])"
gh repo view --json nameWithOwner -q '.nameWithOwner'
Cross-project queries
When a skill needs to reference other projects (e.g., from cross-repos in Session Config):
glab api "projects?search=<project-name>" | python3 -c "import json,sys; [print(p['id'], p['path_with_namespace']) for p in json.load(sys.stdin)]"
gh api "repos/<owner>/<name>" --jq '.full_name'
Note: Some API calls require numeric project IDs (GitLab) or owner/repo slugs (GitHub). Always resolve dynamically from the project name.
Canonical enumeration pattern
To enumerate ALL projects (or issues) in a group, a single page is never the whole result — paginate and guard against silent truncation:
page=1
while [ -n "$page" ]; do
resp=$(glab api "groups/<group-id>/projects?include_subgroups=true&per_page=100&page=$page" --include)
page=$(printf '%s\n' "$resp" | awk -F': *' 'tolower($1)=="x-next-page"{sub(/\r/,"",$2); print $2}')
done
- Follow pagination via the
x-next-page response header — loop until it comes back empty. A single-page read on a known-large group is a signal the loop stopped early, not proof the group is small.
- Dedupe by project id — subgroup traversal can surface the same project more than once.
- Silent-zero guard:
membership=true can return a misleadingly small subset (e.g. a host that only sees a handful of a group's dozens of projects). If the count looks suspiciously low relative to the known group size, retry WITHOUT membership (rely on include_subgroups=true alone) before trusting the result. A zero/one-page result on a known-large group is a probable auth/pagination bug — treat it as a bug signal, never as ground truth that "the group is actually empty."
Label Taxonomy
Taxonomy convention (decided 2026-07-05, #727): labels use the SINGLE-COLON form exclusively (priority:high, status:ready, area:vcs, type:chore, from:<agent>). The ::-scoped form (priority::high, GitLab scoped-labels) is DEPRECATED baseline-scaffold legacy and MUST NOT be introduced — this repo mirrors to GitHub, which has no scoped-label semantics (no mutual-exclusion enforcement), so :: yields zero benefit on the mirror while a migration would break every existing label reference and issue.
Priority Labels
priority:critical — blocking production or users
priority:high — important, schedule this sprint
priority:medium — plan for next sprint
priority:low — backlog, nice-to-have
Status Labels
status:ready — defined, ready to pick up
status:in-progress — actively being worked on
status:review — MR/PR created, awaiting review
status:blocked — waiting on external dependency
Area Labels
area:frontend | area:backend | area:database
area:ai | area:security | area:testing
area:ci | area:infrastructure | area:compliance
area:skills | area:vcs | area:harness
Type Labels
bug | feature | enhancement | refactor
chore | documentation | epic | discovery | carryover | broken-window
carryover — auto-created for 2×SPIRAL or FAILED agent tasks; see scripts/lib/spiral-carryover.mjs.
broken-window — knowingly-broken shipment, hard due-date, filed by session-end Phase 2.6 (#730/H5); see scripts/lib/spiral-carryover.mjs (createBrokenWindowIssue).
Provenance Labels
from:<agent> — SHOULD be applied to any issue/MR created by an automated agent (e.g. from:discovery, from:reconcile), so operators can filter agent-authored items from human-authored ones. Single-colon form, per the taxonomy convention above.
Issue Linking (blocks / is_blocked_by)
GitLab's native issue-link types blocks and is_blocked_by (glab api -X POST projects/:id/issues/:issue_iid/links -f link_type=blocks|is_blocked_by) are a Premium/Ultimate license feature. On a Free/Core-tier GitLab instance this call returns HTTP 403 — a license-gate signal, not an auth/permission failure. Do not retry with different credentials or escalate as an auth bug.
Fallback (non-Premium instances):
- Use
relates_to instead — link_type=relates_to is available on every GitLab tier (no ordering semantics, just an unscoped relation). Same API shape, only the link_type value changes:
glab api -X POST "projects/:id/issues/:issue_iid/links" \
-f target_project_id=:id -f target_issue_iid=:other_iid -f link_type=relates_to
- Document the blocking semantics in the issue body — since
relates_to carries no ordering meaning, add an explicit ordering note to both issues, e.g. ⚠ Ordering: erst #<blocker_iid>, dann dieses Issue — blocks-Link nicht verfügbar (non-Premium).
- Recognize the 403 as a license signal, not an auth error — before assuming a token/scope problem, try
relates_to on the same project pair: if relates_to succeeds where blocks/is_blocked_by 403s, the license gate — not authentication — is the cause.
GitHub has no native issue-blocking relation at all — the body-ordering-note fallback in step 2 above is the standing convention there too, regardless of license tier (see "GitHub (gh)" below).
Common CLI Commands
GitLab (glab)
glab issue list --per-page 50
glab issue list --label "status:ready" --per-page 10
glab issue list --label "priority:high" --per-page 10
glab issue list --closed --per-page 10
glab issue view <IID>
glab issue view <IID> --comments
glab issue create --title "title" --label "priority:high,status:ready"
glab issue update <IID> --label "status:in-progress"
glab issue close <IID>
glab issue note <IID> -m "Comment text"
glab mr list
glab mr create --fill --draft
glab mr merge <MR_IID>
glab pipeline list --per-page 5
glab pipeline status <ID>
glab api "projects/$(glab repo view --output json | python3 -c "import json,sys; print(json.load(sys.stdin)['id'])")/issues?state=opened&per_page=50"
glab api "projects/$(glab repo view --output json | python3 -c "import json,sys; print(json.load(sys.stdin)['id'])")/milestones?state=active"
Label update caveat (PUT-replaces, not additive): glab issue update --label (and the underlying GitLab labels API) PUT-REPLACES the entire label set — it does not add to the existing set. To change a single label you must pass the FULL desired label list, or use the dedicated add/remove operations, which are themselves unreliable across glab versions. Preferred safe pattern: use --label (adds) together with --unlabel (removes) on glab issue update when your installed glab version supports both; otherwise read the current labels first, compute the full new set, and PUT once. The same PUT-replace semantics apply to glab mr update --label.
Close verification: after glab issue close <IID>, always verify the close actually landed — re-read the issue (glab issue view <IID>) and confirm state: closed in the output. A stale/wrong project ID or a silent 404 can report local success while closing nothing; a documented incident closed 32 issues into the void this way (project ID pointed at the wrong project — see "Dynamic Project Resolution" above for the re-resolve-each-session rule that prevents it).
Commit-body close-keyword footgun: GitLab (and GitHub) auto-close an issue when a commit pushed to the default branch contains a close keyword — close/closes/closed/fix/fixes/fixed/resolve/resolves/resolved — followed by #N ANYWHERE in the commit body, not just the subject line. This fires even inside a negation ("does NOT close #N") — the platform pattern-matches the keyword + issue reference; it does not parse English negation, so the negation offers no protection. Rule: when a commit body needs to MENTION an issue without closing intent, always use a non-closing reference — refs #N, part of #N, siehe #N — never a close-keyword verb next to the number, negated or not.
-f/--raw-field vs -F/--field on glab api: -f (--raw-field) sends a literal string value with no coercion and no @file expansion. -F (--field) interprets a value starting with @ as a file to read, and coerces bare true/false/null/numeric strings to their typed form. Prefer -f for literal values — it avoids an unintended @-expansion when a value happens to start with @ (e.g. an @mention in a comment body).
GitHub (gh)
gh issue list --limit 50
gh issue list --label "status:ready" --limit 10
gh issue list --label "priority:high" --limit 10
gh issue list --state closed --limit 10
gh issue view <NUMBER>
gh issue view <NUMBER> --comments
gh issue create --title "title" --label "priority:high,status:ready"
gh issue edit <NUMBER> --add-label "status:in-progress"
gh issue close <NUMBER>
gh issue comment <NUMBER> --body "Comment text"
gh pr list --state open
gh pr create --fill --draft
gh pr merge <NUMBER>
gh run list --limit 5
gh run view <RUN_ID>
gh api "repos/{owner}/{repo}/issues?state=open&per_page=50"
gh api "repos/{owner}/{repo}/milestones?state=open"
Issue Templates
Bug Template
## Description
What happens vs. what should happen.
## Steps to Reproduce
1.
2.
## Root Cause (if known)
## Acceptance Criteria
- [ ]
Feature Template
## Goal
What should be achieved and why.
## Tasks
- [ ]
## Acceptance Criteria
- [ ]
## Session Type
[housekeeping|feature|deep]
Carryover Template (from /close)
## [Carryover] Original Task Description
### What was completed
- [completed items]
### What remains
- [ ] [remaining task 1]
- [ ] [remaining task 2]
### Context for next session
[relevant context, file paths, decisions made]
### Open Questions
_(optional — include only when unanswered questions remain in STATE.md `## Open Questions` at close; omit this section entirely otherwise)_
- [ ] [unanswered question 1] (source: W<N>/<agent>, prio: high|medium|low)
- [ ] [unanswered question 2] (source: W<N>/<agent>, prio: high|medium|low)
### Original Issue
Relates to #ORIGINAL_IID
Discovery Finding
## [Discovery] <finding title>
**Probe:** <probe_name>
**Severity:** <priority:critical|high|medium|low>
**Category:** <code|infra|ui|arch|session|audit|vault|feature>
### Finding
<description of the problem>
### Evidence
- **File:** `<file_path>`
- **Line:** <line_number>
- **Code:**
<matched_text with surrounding context>
### Impact
<why this matters — severity rationale>
### Recommended Fix
<concrete fix suggestion>
### Acceptance Criteria
- [ ] <specific, verifiable condition>
- [ ] Quality gates pass after fix
Labels: type:discovery, priority:<level>, area:<inferred>, status:ready
Template-First Enforcement (PSA-005 + #519)
Pattern 3 of the gsd Pattern Adoption (Issue #519) registers a PreToolUse hook
hooks/pre-bash-templates-first.mjs that blocks gh|glab pr|mr|issue create|new
Bash calls when the current session contains no prior Read on a matching template file.
When this matters: before you or a subagent opens an MR, PR, or issue via CLI, a
matching template must have been read in the current session:
- GitHub:
.github/PULL_REQUEST_TEMPLATE.md / .github/ISSUE_TEMPLATE*
- GitLab:
.gitlab/merge_request_templates/Default.md / .gitlab/issue_templates/*
Accepted template paths are configured in .orchestrator/policy/templates-policy.json
(versioned, operator-editable). Default behaviour:
enforcement: "block" — hook exits 2 when no prior template Read is found
- Allow-list of host-specific template globs (GitHub + GitLab by default)
bypass_patterns — list of command substrings that skip the hook (e.g. CI/bot calls)
Bypass options for the current session (when the hook blocks unexpectedly):
- Read the template first — re-run the
create call after a Read on the template
path; the hook re-evaluates and sees the Read.
- Session acknowledgement — write
.orchestrator/runtime/templates-acknowledged.json
containing { sessionId, acknowledgedAt }; the hook allows all subsequent create
calls in this session.
What the hook mechanically enforces (what this skill previously documented as convention only):
- "Template-first" for every new MR/PR/issue
- Prevents convention drift across repos by turning the documentation requirement into
a hard gate — the same shift from rule to mechanism that PSA-003 made for destructive commands
If the hook blocks incorrectly, follow this sequence:
- Read the template — retry the
create call.
- If the hook still blocks, open a bug issue against
hooks/pre-bash-templates-first.mjs
with reproduce steps (command, session ID, template path that should have matched).
Issue/MR Creation Checklist (with template-first gate active)
Read .gitlab/merge_request_templates/Default.md
Read .github/PULL_REQUEST_TEMPLATE.md
glab mr create --title "..." --description "..."
gh pr create --title "..." --body "..."
Cross-References
- Hook implementation:
hooks/pre-bash-templates-first.mjs
- Read-history helper:
hooks/_lib/transcript-history.mjs (checks session transcript for prior Reads)
- Enforcement policy:
.orchestrator/policy/templates-policy.json
- Session acknowledgement:
.orchestrator/runtime/templates-acknowledged.json
- Sister hook (destructive-command model):
hooks/pre-bash-destructive-guard.mjs
- PRD: "gsd Pattern Adoption Quick-Wins" (#519; archived in the private Meta-Vault) § Pattern 3 + § 3 Gherkin Pattern 3