--- name: dispatch description: > Submit .agent-tasks.json to the control plane in dependency-ordered waves. Records cp_task_ids atomically. Use after /decompose to fire a task batch at the CP. user_invocable: true allowed-tools: Read, Write, Bash(python3 *), Bash(scripts/dispatch-task *), Bash(scripts/wait-for-tasks *), Bash(ls *), Bash(date *), Bash(cat *) --- # /dispatch Skill dispatch You are dispatching a batch of tasks to the agent-runtimes control plane. ## Pre-gathered context ### Task file !`cat .agent-tasks.json 2>/dev/null || echo "NO_TASK_FILE"` ### Available templates !`ls task-templates/ 2>/dev/null || echo "NO_TEMPLATES_DIR"` ### Current date !`date +%Y-%m-%dT%H:%M:%S` --- ## Instructions Parse `$ARGUMENTS` for flags: - `--wait-wave` → block until each wave reaches a terminal state before submitting the next - `--continue-on-failure` → submit the next wave even if the current wave had failures (only relevant with `--wait-wave`) - `--as-manifest` → translate `.agent-tasks.json` to a `POST /manifests` payload and print to stdout; do NOT submit tasks ### Step 1: Check task file exists If the pre-gathered task file output is `NO_TASK_FILE`, say: ``` No .agent-tasks.json found. Run /decompose to create one. ``` Stop. ### Step 2: Validate token file (DS-10) Run: ```bash python3 -c " import os, stat, sys, json path = os.path.expanduser('~/.config/agent-runtimes/tokens.json') parent = os.path.dirname(path) errors = [] if not os.path.exists(path): errors.append({'type': 'token_missing', 'detail': f'Token file not found at {path}. Run \"scripts/dispatch-task --login\" to obtain a token.'}) else: mode = stat.S_IMODE(os.stat(path).st_mode) if mode != 0o600: errors.append({'type': 'token_perms', 'detail': f'Token file mode is {oct(mode)}; expected 0600. Run \"chmod 600 {path}\".'}) if os.path.isdir(parent): dmode = stat.S_IMODE(os.stat(parent).st_mode) if dmode != 0o700: errors.append({'type': 'dir_perms', 'detail': f'Token directory mode is {oct(dmode)}; expected 0700. Run \"chmod 700 {parent}\".'}) if errors: print(json.dumps({'type': 'validation_error', 'errors': errors}, indent=2)) sys.exit(1) print('ok') " ``` If the output is not `ok`, display the error JSON and stop. Do not attempt any submissions. ### Step 3: Parse and validate .agent-tasks.json (DS-1, DS-2) Run: ```bash python3 -c " import json, sys, os with open('.agent-tasks.json') as f: data = json.load(f) errors = [] # Check top-level structure required_top = {'params', 'tasks'} known_top = {'params', 'tasks'} unknown_keys = set(data.keys()) - known_top if unknown_keys: errors.append({'field': '', 'reason': f'Unknown top-level key(s): {sorted(unknown_keys)}'}) # Validate params params = data.get('params', {}) for field in ['repo_url', 'agent_repo_url', 'project_id']: if not params.get(field): errors.append({'field': f'params.{field}', 'reason': 'Required field missing or empty'}) # Check for userinfo in URLs (DS-6) import urllib.parse for url_field in ['repo_url', 'agent_repo_url']: url = params.get(url_field, '') try: p = urllib.parse.urlparse(url) if p.password or (p.username and '@' in url): errors.append({'field': f'params.{url_field}', 'reason': f'{url_field} contains userinfo. Pass credentials via SSH keys or env vars, not URL userinfo.'}) except Exception: pass # Validate tasks array tasks = data.get('tasks', []) if not isinstance(tasks, list) or len(tasks) == 0: errors.append({'field': 'tasks', 'reason': 'Must be a non-empty array'}) # Validate each task task_ids = set() for i, task in enumerate(tasks): prefix = f'tasks[{i}]' for field in ['id', 'name', 'prompt']: if not task.get(field): errors.append({'field': f'{prefix}.{field}', 'reason': 'Required field missing or empty'}) tid = task.get('id', '') if tid: if tid in task_ids: errors.append({'field': f'{prefix}.id', 'reason': f'Duplicate task id: {tid!r}'}) task_ids.add(tid) if not task.get('template') and not task.get('model'): errors.append({'field': f'{prefix}.template/model', 'reason': 'One of template or model is required'}) if task.get('template') and task.get('model'): errors.append({'field': f'{prefix}.template/model', 'reason': 'Only one of template or model is allowed, not both'}) if not isinstance(task.get('depends_on', []), list): errors.append({'field': f'{prefix}.depends_on', 'reason': 'Must be an array'}) # Validate depends_on references for task in tasks: for dep in task.get('depends_on', []): if dep not in task_ids: errors.append({'field': f'tasks[{task[\"id\"]}].depends_on', 'reason': f'Unknown task id reference: {dep!r}'}) # Validate templates exist (DS-7) templates_dir = 'task-templates' if os.path.isdir(templates_dir): valid_templates = {f.replace('.yaml', '') for f in os.listdir(templates_dir) if f.endswith('.yaml')} for task in tasks: tmpl = task.get('template') if tmpl and tmpl not in valid_templates: errors.append({'field': f'tasks[{task.get(\"id\",\"?\")}].template', 'reason': f'Unknown template {tmpl!r}. Valid: {sorted(valid_templates)}'}) if errors: print(json.dumps({'type': 'validation_error', 'title': 'Validation failed', 'invalid-params': errors}, indent=2)) sys.exit(1) print('ok') " ``` If not `ok`, display the error JSON and stop. ### Step 3b: --as-manifest translation (DS-13) If `$ARGUMENTS` contains `--as-manifest`, run: ```bash python3 -c " import json, sys RESERVED_KEYS = {'manifest_id', 'workflow_id', 'definition_version'} with open('.agent-tasks.json') as f: data = json.load(f) params = data.get('params', {}) # Check reserved keys (MN-31) reserved_found = set(params.keys()) & RESERVED_KEYS if reserved_found: for k in reserved_found: print(json.dumps({'type': 'validation_error', 'detail': f'params contains reserved key {k!r}. CP injects this automatically (MN-31).'}), file=sys.stderr) sys.exit(1) # Build manifest nodes = [] for task in data.get('tasks', []): node = { 'node_id': task['id'], 'prompt': task['prompt'], 'depends_on': task.get('depends_on', []), } if task.get('template'): node['template'] = task['template'] if task.get('model'): node['model'] = task['model'] nodes.append(node) manifest = { 'definition_version': 1, 'params': params, 'nodes': nodes, } print(json.dumps(manifest, indent=2)) " ``` Print the output and stop. Do not submit any tasks. ### Step 4: Build wave structure Run: ```bash python3 -c " import json, sys with open('.agent-tasks.json') as f: data = json.load(f) tasks = data['tasks'] task_map = {t['id']: t for t in tasks} # Topological sort into waves waves = [] resolved = set() remaining = set(t['id'] for t in tasks) while remaining: wave = [] for tid in list(remaining): task = task_map[tid] deps = set(task.get('depends_on', [])) if deps.issubset(resolved): wave.append(tid) if not wave: print(json.dumps({'error': 'Circular dependency detected in tasks'}), file=sys.stderr) sys.exit(1) waves.append(sorted(wave)) for tid in wave: resolved.add(tid) remaining.discard(tid) # Output wave assignments result = {} for wave_num, wave_ids in enumerate(waves, 1): for tid in wave_ids: result[tid] = wave_num print(json.dumps({'waves': waves, 'wave_for_task': result})) " ``` Store the wave structure. Present it to the user as: ``` Wave 1: Wave 2: (depends on wave 1) ... ``` ### Step 5: Check CP_URL Use `CP_URL` from the environment if set. Default: `https://agents.oreillyit.nz/api` ### Step 6: Submit tasks wave by wave For each wave in order: **6a. Identify tasks to submit in this wave:** - Skip tasks where `cp_task_id` is already set (non-null) — these are already submitted (DS-11) - But first verify each already-submitted task still exists on the CP: ```bash scripts/dispatch-task status 2>&1 ``` If any returns 404: print structured error and stop: ``` Recorded cp_task_id '' for task '' returned 404 from CP. Clear cp_task_id in .agent-tasks.json to re-submit. ``` **6b. Submit each remaining task in the wave:** For each task, build the dispatch-task command: ```bash CP_URL= scripts/dispatch-task \ --name "" \ --project-id "" \ --prompt "" \ [--template "" | --model ""] \ --template-param "repo_url=" \ --template-param "agent_repo_url=" ``` Run the submission. Capture stdout — it contains the returned `cp_task_id` (UUID on its own line, or JSON). **6c. Extract cp_task_id from output:** Parse the dispatch-task output to extract the task UUID. Look for a UUID pattern: `[0-9a-f-]{36}`. **6d. Record cp_task_id atomically (DS-3):** After each successful submission, atomically update `.agent-tasks.json`: ```bash python3 -c " import json, os, tempfile with open('.agent-tasks.json') as f: data = json.load(f) for task in data['tasks']: if task['id'] == '': task['cp_task_id'] = '' break # Atomic write: tempfile + rename (DS-3) with tempfile.NamedTemporaryFile(mode='w', dir='.', delete=False, suffix='.tmp') as tf: json.dump(data, tf, indent=2) tmpname = tf.name os.rename(tmpname, '.agent-tasks.json') print('recorded') " ``` **6e. If submission fails (non-zero exit from dispatch-task):** - Record the per-task error: `Task '' submission failed: ` - Continue with the rest of the wave (DS-5) - Set an overall failure flag (exit 1 at end) **6f. If --wait-wave flag is set (DS-4):** After submitting all tasks in the wave, collect all cp_task_ids for this wave and run: ```bash CP_URL= scripts/wait-for-tasks ... ``` If wait-for-tasks exits non-zero (any task failed/cancelled/timed_out): - Report the failure: show which tasks failed - Unless `--continue-on-failure` is set, **stop here** and do not submit the next wave - Exit 1 ### Step 7: Print monitoring command (DS-8) After all waves are submitted, print: ``` Run: CP_URL= scripts/agent-monitor --login --filter "project=" --filter "age<2h" ``` ### Step 8: Final exit - If any submission failed → exit 1 - If `--wait-wave` and any wave task reached a non-success terminal state → exit 1 - Otherwise → exit 0 --- ## Error output format All errors are printed as JSON to stderr: ```json { "type": "https://agent-runtimes.oreillyit.nz/errors/dispatch-validation", "title": "Validation failed", "detail": "...", "invalid-params": [{"name": "field", "reason": "reason"}] } ```