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workflow-lite-execute

Lightweight execution engine - multi-mode input, task grouping, batch execution, chain to workflow-lite-test-review

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Repositorio
catlog22/Claude-Code-Workflow
Última actividad en el origen
14 de mayo de 2026 a las 15:44
Idioma detectado de SKILL.md
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2131
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166

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SKILL.md
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name
workflow-lite-execute
description
Lightweight execution engine - multi-mode input, task grouping, batch execution, chain to workflow-lite-test-review
allowed-tools
Skill, Agent, AskUserQuestion, TodoWrite, Read, Write, Edit, Bash, Glob, Grep
# Workflow-Lite-Execute Execution engine for workflow-lite-plan handoff and standalone task execution. --- ## Usage ``` <input> Task description string, or path to file (required) ``` | Flag | Description | |------|-------------| | `--in-memory` | Mode 1: Use executionContext from workflow-lite-plan handoff (via Skill({ skill: "workflow-lite-execute", args: "--in-memory" }) | ## Input Modes ### Mode 1: In-Memory Plan **Trigger**: `--in-memory` flag or `executionContext` global variable available **Input Source**: `executionContext` global variable set by workflow-lite-plan **Behavior**: Skip execution method/code review selection (already chosen in LP-Phase 4), directly proceed with full context (exploration, clarifications, plan artifacts all available) > **Note**: LP-Phase 4 is the single confirmation gate. Mode 1 invocation means user already approved — no further prompts. ### Mode 2: Prompt Description **Trigger**: User calls with task description string (e.g., "Add unit tests for auth module") **Behavior**: Store prompt as `originalUserInput` → create simple execution plan → run `selectExecutionOptions()` → proceed ### Mode 3: File Content **Trigger**: User calls with file path (ends with .md/.json/.txt) ```javascript fileContent = Read(filePath) try { jsonData = JSON.parse(fileContent) // plan.json detection: two-layer format with task_ids[] if (jsonData.summary && jsonData.approach && jsonData.task_ids) { planObject = jsonData originalUserInput = jsonData.summary isPlanJson = true const planDir = filePath.replace(/[/\\][^/\\]+$/, '') planObject._loadedTasks = loadTaskFiles(planDir, jsonData.task_ids) } else { originalUserInput = fileContent isPlanJson = false } } catch { originalUserInput = fileContent isPlanJson = false } ``` - `isPlanJson === true`: Use `planObject` directly → run `selectExecutionOptions()` - `isPlanJson === false`: Treat as prompt (same as Mode 2) ### User Selection (Mode 2/3 shared) ```javascript function selectExecutionOptions() { // autoYes: set by -y flag (standalone only; Mode 1 never reaches here) const autoYes = workflowPreferences?.autoYes ?? false if (autoYes) { return { execution_method: "Auto", code_review_tool: "Skip", convergence_review_tool: "Skip" } } return AskUserQuestion({ questions: [ { question: "Select execution method:", header: "Execution", multiSelect: false, options: [ { label: "Agent", description: "@code-developer agent" }, { label: "Codex", description: "codex CLI tool" }, { label: "Auto", description: "Auto-select based on complexity" } ] }, { question: "Code review after execution? (runs here in lite-execute)", header: "Code Review", multiSelect: false, options: [ { label: "Gemini Review", description: "Gemini CLI: git diff quality review" }, { label: "Codex Review", description: "Codex CLI: prompt-based code quality review (--mode analysis)" }, { label: "Agent Review", description: "@code-reviewer agent" }, { label: "Skip", description: "No code review" } ] }, { question: "Convergence review in workflow-lite-test-review phase?", header: "Convergence Review", multiSelect: false, options: [ { label: "Agent", description: "Agent: verify convergence criteria" }, { label: "Gemini", description: "Gemini CLI: convergence verification" }, { label: "Codex", description: "Codex CLI: convergence verification" }, { label: "Skip", description: "Skip convergence review, run tests only" } ] } ] }) } ``` ## Execution Steps ### Step 1: Initialize & Echo Strategy ```javascript previousExecutionResults = [] // Mode 1: echo strategy for transparency if (executionContext) { console.log(` Execution Strategy (from lite-plan): Method: ${executionContext.executionMethod} Code Review: ${executionContext.codeReviewTool} Convergence Review: ${executionContext.convergenceReviewTool} Tasks: ${getTasks(executionContext.planObject).length} Complexity: ${executionContext.planObject.complexity} ${executionContext.executorAssignments ? ` Assignments: ${JSON.stringify(executionContext.executorAssignments)}` : ''} `) } // Helper: load .task/*.json files (two-layer format) function loadTaskFiles(planDir, taskIds) { return taskIds.map(id => JSON.parse(Read(`${planDir}/.task/${id}.json`))) } function getTasks(planObject) { return planObject._loadedTasks || [] } ``` ### Step 2: Task Grouping & Batch Creation ```javascript // Dependency extraction: explicit depends_on only (no file/keyword inference) function extractDependencies(tasks) { const taskIdToIndex = {} tasks.forEach((t, i) => { taskIdToIndex[t.id] = i }) return tasks.map((task, i) => { const deps = (task.depends_on || []) .map(depId => taskIdToIndex[depId]) .filter(idx => idx !== undefined && idx < i) return { ...task, taskIndex: i, dependencies: deps } }) } // Executor resolution: executorAssignments[taskId] > executionMethod > Auto fallback function getTaskExecutor(task) { const assignments = executionContext?.executorAssignments || {} if (assignments[task.id]) return assignments[task.id].executor // 'gemini' | 'codex' | 'agent' const method = executionContext?.executionMethod || 'Auto' if (method === 'Agent') return 'agent' if (method === 'Codex') return 'codex' return planObject.complexity === 'Low' ? 'agent' : 'codex' // Auto fallback } function groupTasksByExecutor(tasks) { const groups = { gemini: [], codex: [], agent: [] } tasks.forEach(task => { groups[getTaskExecutor(task)].push(task) }) return groups } // Batch creation: independent → per-executor parallel, dependent → sequential phases function createExecutionCalls(tasks, executionMethod) { const tasksWithDeps = extractDependencies(tasks) const processed = new Set() const calls = [] // Phase 1: Independent tasks → per-executor parallel batches const independentTasks = tasksWithDeps.filter(t => t.dependencies.length === 0) if (independentTasks.length > 0) { const executorGroups = groupTasksByExecutor(independentTasks) let parallelIndex = 1 for (const [executor, tasks] of Object.entries(executorGroups)) { if (tasks.length === 0) continue tasks.forEach(t => processed.add(t.taskIndex)) calls.push({ method: executionMethod, executor, executionType: "parallel", groupId: `P${parallelIndex++}`, taskSummary: tasks.map(t => t.title).join(' | '), tasks }) } } // Phase 2+: Dependent tasks → respect dependency order let sequentialIndex = 1 let remaining = tasksWithDeps.filter(t => !processed.has(t.taskIndex)) while (remaining.length > 0) { let ready = remaining.filter(t => t.dependencies.every(d => processed.has(d))) if (ready.length === 0) { console.warn('Circular dependency detected, forcing remaining'); ready = [...remaining] } if (ready.length > 1) { const executorGroups = groupTasksByExecutor(ready) for (const [executor, tasks] of Object.entries(executorGroups)) { if (tasks.length === 0) continue tasks.forEach(t => processed.add(t.taskIndex)) calls.push({ method: executionMethod, executor, executionType: "parallel", groupId: `P${calls.length + 1}`, taskSummary: tasks.map(t => t.title).join(' | '), tasks }) } } else { ready.forEach(t => processed.add(t.taskIndex)) calls.push({ method: executionMethod, executor: getTaskExecutor(ready[0]), executionType: "sequential", groupId: `S${sequentialIndex++}`, taskSummary: ready[0].title, tasks: ready }) } remaining = remaining.filter(t => !processed.has(t.taskIndex)) } return calls } executionCalls = createExecutionCalls(getTasks(planObject), executionMethod).map(c => ({ ...c, id: `[${c.groupId}]` })) TodoWrite({ todos: executionCalls.map((c, i) => ({ content: `${c.executionType === "parallel" ? "⚡" : `→ [${i+1}/${executionCalls.filter(x=>x.executionType==="sequential").length}]`} ${c.id} [${c.executor}] ${c.tasks.map(t=>t.id).join(', ')}`, status: "pending", activeForm: `Waiting: ${c.tasks.length} task(s) via ${c.executor}` })) }) ``` ### Step 3: Launch Execution & Track Progress > **CHECKPOINT**: Verify Phase 2 execution protocol (Step 3-5) is in active memory. If only a summary remains, re-read `phases/02-lite-execute.md` now. **Batch Routing** (by `batch.executor` field): ```javascript function executeBatch(batch) { const executor = batch.executor || getTaskExecutor(batch.tasks[0]) const sessionId = executionContext?.session?.id || 'standalone' const fixedId = `${sessionId}-${batch.groupId}` if (executor === 'agent') { return Agent({ subagent_type: "code-developer", run_in_background: false, description: batch.taskSummary, prompt: buildExecutionPrompt(batch) }) } else { // CLI execution (codex/gemini): background with fixed ID const tool = executor // 'codex' | 'gemini' const mode = executor === 'gemini' ? 'analysis' : 'write' const previousCliId = batch.resumeFromCliId || null const cmd = previousCliId ? `ccw cli -p "${buildExecutionPrompt(batch)}" --tool ${tool} --mode ${mode} --id ${fixedId} --resume ${previousCliId}` : `ccw cli -p "${buildExecutionPrompt(batch)}" --tool ${tool} --mode ${mode} --id ${fixedId}` return Bash(cmd, { run_in_background: true }) // STOP - wait for task hook callback } } ``` **Parallel execution rules**: - Each batch = one independent CLI instance or Agent call - Parallel = multiple Bash(run_in_background=true) or multiple Agent() in single message - Never merge independent tasks into one CLI prompt - Agent: run_in_background=false, but multiple Agent() calls can be concurrent in single message **Execution Flow**: Parallel batches concurrently → Sequential batches in order ```javascript const parallel = executionCalls.filter(c => c.executionType === "parallel") const sequential = executionCalls.filter(c => c.executionType === "sequential") // Phase 1: All parallel batches (single message, multiple tool calls) if (parallel.length > 0) { TodoWrite({ todos: executionCalls.map(c => ({ status: c.executionType === "parallel" ? "in_progress" : "pending", activeForm: c.executionType === "parallel" ? `Running [${c.executor}]: ${c.tasks.map(t=>t.id).join(', ')}` : `Blocked by parallel phase` })) }) parallelResults = await Promise.all(parallel.map(c => executeBatch(c))) previousExecutionResults.push(...parallelResults) TodoWrite({ todos: executionCalls.map(c => ({ status: parallel.includes(c) ? "completed" : "pending", activeForm: parallel.includes(c) ? `Done [${c.executor}]` : `Ready` })) }) } // Phase 2: Sequential batches one by one for (const call of sequential) { TodoWrite({ todos: executionCalls.map(c => ({ status: c === call ? "in_progress" : (c.status === "completed" ? "completed" : "pending"), activeForm: c === call ? `Running [${c.executor}]: ${c.tasks.map(t=>t.id).join(', ')}` : undefined
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