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Openspec verify change

Skill knvpk/Agentic/.claude/skills/openspec-verify-change

Verify implementation matches change artifacts. Use when the user wants to validate that implementation is complete, correct, and coherent before archiving.From its SKILL.md

Install
npx -y skills add knvpk/Agentic --skill openspec-verify-change

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SKILL.md

6.4 KB, ~1.4k tokens by cl100k_base, as published. Nobody here has run it

Verify that an implementation matches the change artifacts (specs, tasks, design).

Input: Optionally specify a change name. If omitted, check if it can be inferred from conversation context. If vague or ambiguous you MUST prompt for available changes.

Steps

  1. If no change name provided, prompt for selection

    Run openspec list --json to get available changes. Use the AskUserQuestion tool to let the user select.

    Show changes that have implementation tasks (tasks artifact exists). Include the schema used for each change if available. Mark changes with incomplete tasks as "(In Progress)".

    IMPORTANT: Do NOT guess or auto-select a change. Always let the user choose.

  2. Check status to understand the schema

    openspec status --change "<name>" --json
    

    Parse the JSON to understand:

    • schemaName: The workflow being used (e.g., "spec-driven")
    • Which artifacts exist for this change
  3. Get the change directory and load artifacts

    openspec instructions apply --change "<name>" --json
    

    This returns the change directory and contextFiles (artifact ID -> array of concrete file paths). Read all available artifacts from contextFiles.

  4. Initialize verification report structure

    Create a report structure with three dimensions:

    • Completeness: Track tasks and spec coverage
    • Correctness: Track requirement implementation and scenario coverage
    • Coherence: Track design adherence and pattern consistency

    Each dimension can have CRITICAL, WARNING, or SUGGESTION issues.

  5. Verify Completeness

    Task Completion:

    • If contextFiles.tasks exists, read every file path in it
    • Parse checkboxes: - [ ] (incomplete) vs - [x] (complete)
    • Count complete vs total tasks
    • If incomplete tasks exist:
      • Add CRITICAL issue for each incomplete task
      • Recommendation: "Complete task: <description>" or "Mark as done if already implemented"

    Spec Coverage:

    • If delta specs exist in openspec/changes/<name>/specs/:
      • Extract all requirements (marked with "### Requirement:")
      • For each requirement:
        • Search codebase for keywords related to the requirement
        • Assess if implementation likely exists
      • If requirements appear unimplemented:
        • Add CRITICAL issue: "Requirement not found: <requirement name>"
        • Recommendation: "Implement requirement X: <description>"
  6. Verify Correctness

    Requirement Implementation Mapping:

    • For each requirement from delta specs:
      • Search codebase for implementation evidence
      • If found, note file paths and line ranges
      • Assess if implementation matches requirement intent
      • If divergence detected:
        • Add WARNING: "Implementation may diverge from spec: <details>"
        • Recommendation: "Review <file>:<lines> against requirement X"

    Scenario Coverage:

    • For each scenario in delta specs (marked with "#### Scenario:"):
      • Check if conditions are handled in code
      • Check if tests exist covering the scenario
      • If scenario appears uncovered:
        • Add WARNING: "Scenario not covered: <scenario name>"
        • Recommendation: "Add test or implementation for scenario: <description>"
  7. Verify Coherence

    Design Adherence:

    • If contextFiles.design exists:
      • Extract key decisions (look for sections like "Decision:", "Approach:", "Architecture:")
      • Verify implementation follows those decisions
      • If contradiction detected:
        • Add WARNING: "Design decision not followed: <decision>"
        • Recommendation: "Update implementation or revise design.md to match reality"
    • If no design.md: Skip design adherence check, note "No design.md to verify against"

    Code Pattern Consistency:

    • Review new code for consistency with project patterns
    • Check file naming, directory structure, coding style
    • If significant deviations found:
      • Add SUGGESTION: "Code pattern deviation: <details>"
      • Recommendation: "Consider following project pattern: <example>"
  8. Generate Verification Report

    Summary Scorecard:

    ## Verification Report: <change-name>
    
    ### Summary
    | Dimension    | Status           |
    |--------------|------------------|
    | Completeness | X/Y tasks, N reqs|
    | Correctness  | M/N reqs covered |
    | Coherence    | Followed/Issues  |
    

    Issues by Priority:

    1. CRITICAL (Must fix before archive):

      • Incomplete tasks
      • Missing requirement implementations
      • Each with specific, actionable recommendation
    2. WARNING (Should fix):

      • Spec/design divergences
      • Missing scenario coverage
      • Each with specific recommendation
    3. SUGGESTION (Nice to fix):

      • Pattern inconsistencies
      • Minor improvements
      • Each with specific recommendation

    Final Assessment:

    • If CRITICAL issues: "X critical issue(s) found. Fix before archiving."
    • If only warnings: "No critical issues. Y warning(s) to consider. Ready for archive (with noted improvements)."
    • If all clear: "All checks passed. Ready for archive."

Verification Heuristics

  • Completeness: Focus on objective checklist items (checkboxes, requirements list)
  • Correctness: Use keyword search, file path analysis, reasonable inference - don't require perfect certainty
  • Coherence: Look for glaring inconsistencies, don't nitpick style
  • False Positives: When uncertain, prefer SUGGESTION over WARNING, WARNING over CRITICAL
  • Actionability: Every issue must have a specific recommendation with file/line references where applicable

Graceful Degradation

  • If only tasks.md exists: verify task completion only, skip spec/design checks
  • If tasks + specs exist: verify completeness and correctness, skip design
  • If full artifacts: verify all three dimensions
  • Always note which checks were skipped and why

Output Format

Use clear markdown with:

  • Table for summary scorecard
  • Grouped lists for issues (CRITICAL/WARNING/SUGGESTION)
  • Code references in format: file.ts:123
  • Specific, actionable recommendations
  • No vague suggestions like "consider reviewing"

What ships with it

Read from the repository

Just SKILL.md. No reference files, no scripts.

Gives 0 of the 12 instructions most quality gates skills give in ~1.4k tokens

Counted across 1,195 of the 2,094 authors here whose files we hold, read 2026-08-07

  • Read the output and check the exit codein 54 of 1195, across 14 files
  • Verify requirements using a line-by-line checklistin 53 of 1195, across 12 files
  • Identify the verification command proving the claimin 51 of 1195, across 12 files
  • Run the full verification commandin 50 of 1195, across 11 files
  • Verify output confirms the claimin 49 of 1195, across 12 files
  • Check version control diff after agent delegationin 46 of 1195, across 6 files
  • State claim with evidencein 44 of 1195, across 4 files
  • Run the test suitein 33 of 1195, across 26 files
  • Keep state in memory by defaultin 27 of 1195, across 6 files
  • Make prototype runnable with one commandin 26 of 1195, across 5 files
  • Produce a verification reportin 25 of 1195, across 14 files
  • Detect the package manager from lockfilesin 24 of 1195, across 5 files

Said here and by no other author read

  • prompt user to select a change if not provided
  • run openspec list to get available changes
  • run openspec status to understand the schema
  • run openspec instructions apply to load artifacts
  • verify correctness of requirement and scenario implementation
  • verify coherence with design decisions and project patterns

Grouped from the skills themselves: near-identical wordings counted once, and counted by distinct author, so one author publishing three of these counts once. Length counted with cl100k_base; the agent that loads this file may tokenize it differently.

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