Files
AirCoding/AirPlan/plan.md
AirCoding 8d9c4208fa System overview design: four-model audit, repair, and regression complete
- system-overview-design.md: repaired with P0/P1/P2 gaps resolved, all 24 frozen baselines listed, error taxonomy, global ~/.air, IPC, TaskSpec/WorkerResult, PromptLayer, PermissionEngine, RuntimeEvent, state machines, capability trust, artifact naming, operations
- Four cross-verification audit reports (GPT-5, MIMO 2.5, Opus 4.7, DeepSeek V4 Pro)
- Three regression reviews (R1: initial repair closure, R2: second pass with PromptLayer L9 wording found, R3: full PromptLayer alignment verified)
- AGENTS.md, plan.md, todo.md synchronized

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
2026-05-29 15:46:26 +08:00

11 KiB
Executable File

Implementation Plan

Date: 2026-05-27 Status: Formal architecture-to-V1.0.0 Alpha plan

Read First

  1. AirPlan/AGENTS.md
  2. AirPlan/docs/analysis/requirements.md
  3. AirPlan/docs/architecture/solution-architecture.md
  4. AirPlan/docs/architecture/system-overview-design.md
  5. AirPlan/docs/architecture/c4/module.md
  6. AirPlan/docs/architecture/baselineV1.md
  7. AirPlan/docs/architecture/多模型三视角审查联合评估.md
  8. AirPlan/docs/architecture/gpt5概要设计审查.md
  9. AirPlan/docs/architecture/mimo2.5概要设计审查.md
  10. AirPlan/docs/architecture/Opus4.7概要设计审查.md
  11. AirPlan/docs/architecture/DeepSeek概要设计审查.md
  12. AirPlan/docs/architecture/概要设计修复回归审查.md
  13. AirPlan/docs/architecture/adr/
  14. AirPlan/todo.md

Goal

Build AirCoding V1.0.0 Alpha: a Linux-first Bun/TypeScript local AI coding runtime with project-local .air state, SQLite session persistence, event/domain store, scheduler/worker IPC, ToolRegistry/PermissionEngine, provider adapter boundary, complete C++ development workflow, usable plugin/capability foundation, OpenTUI/Solid ProjectionStore UI, Doctor, and release validation gates.

Architecture Baseline

Implementation must follow these canonical V1 documents:

Area Document
Requirements AirPlan/docs/analysis/requirements.md
Solution architecture AirPlan/docs/architecture/solution-architecture.md
System overview design AirPlan/docs/architecture/system-overview-design.md
C4/module view AirPlan/docs/architecture/c4/module.md
Baseline AirPlan/docs/architecture/baselineV1.md
DB schema AirPlan/docs/architecture/db-schema-v1.md
Event registry AirPlan/docs/architecture/event-registry-v1.md
Tool registry AirPlan/docs/architecture/tool-registry-v1.md
Scheduler state machine AirPlan/docs/architecture/scheduler-state-machine-v1.md
Prompt layering AirPlan/docs/architecture/prompt-layering-v1.md
Provider matrix AirPlan/docs/architecture/provider-capability-matrix-v1.md
Error taxonomy AirPlan/docs/architecture/error-taxonomy-v1.md
Artifact naming AirPlan/docs/architecture/artifact-naming-v1.md
Scope escalation AirPlan/docs/architecture/scope-escalation-v1.md
Security model AirPlan/docs/architecture/security-model-v1.md
Capability trust AirPlan/docs/architecture/capability-trust-v1.md
Platform matrix AirPlan/docs/architecture/cross-platform-matrix-v1.md
Multi-model phase-gate assessment AirPlan/docs/architecture/多模型三视角审查联合评估.md

Phase Gate Status

The P0/P1/P2 remediation and UX scope gate from AirPlan/docs/architecture/多模型三视角审查联合评估.md are complete:

  1. source-of-truth and V1.0.0 Alpha vocabulary cleanup — DONE (T-000A)
  2. public contract freeze repair — DONE (T-000B)
  3. persistence/runtime invariant repair — DONE (T-000C)
  4. UX scope decision — DONE (T-000D): all features scheduled as Alpha; VibeBox removed from main plan

System overview design has been repaired after the GPT-5, MIMO 2.5, Opus 4.7, and DeepSeek overview audits. All P0/P1 and non-decision alignment gaps were folded into system-overview-design.md; 概要设计修复回归审查.md passed the overview regression gate. Detailed design and packages/contracts implementation may proceed.

Constraints

  1. Runtime: TypeScript on Bun.
  2. Monorepo: Bun workspaces + Turborepo.
  3. TUI: @opentui/solid, @opentui/core, @opentui/keymap.
  4. IPC: NDJSON over stdio.
  5. DB: project-local SQLite per session.
  6. Internal message format: Anthropic canonical content blocks.
  7. Workers: independent Bun child processes.
  8. V1.0.0 Alpha platform: Linux x86_64 tier 1, Linux arm64/WSL2 tier 2.
  9. Execution layer must follow Claude Code-style edit/verification discipline.
  10. All side effects must pass through ToolRegistry and PermissionEngine.

Phases

Phase 0: Repository Skeleton and Contracts

Objective: create a compileable monorepo foundation and shared contract package.

Deliverables:

  • Bun workspace and Turborepo config
  • packages/contracts
  • core types for runtime, events, IPC, task, worker result, tool, artifact, provider, project, UI, error
  • baseline test/lint/typecheck commands

Validation:

bun install
bun run typecheck
bun test

Phase 1: Project and Session Storage Foundation

Objective: implement project-local .air initialization and SQLite V1 session store.

Deliverables:

  • project .air/shared and .air/local initializer
  • session ID/project ID creation
  • SQLite schema/migration V1
  • SessionStore repositories
  • EventStore transactional durable event application
  • ArtifactStore temp-write/rename/hash/DB insert

Validation:

bun test packages/runtime
bun run air -- doctor --read-only --project <fixture>
bun run air -- init <fixture>

Phase 2: ToolRegistry, PermissionEngine, Core Tools, and Capability Foundation

Objective: provide safe side-effect execution primitives and a usable plugin/capability foundation for V1.0.0 Alpha.

Deliverables:

  • ToolRegistry
  • ToolResult envelopes and tool lifecycle events
  • realpath path classifier
  • command risk analyzer
  • PermissionEngine decision records
  • filesystem, shell, git, project, artifact, context, permission, doctor core tools
  • CapabilityRegistry manifest loading/validation
  • local and built-in capability enable/disable config
  • namespaced capability tool registration
  • Doctor dependency check path for capabilities

Validation:

bun test packages/runtime --filter tool
bun test packages/runtime --filter permission

Phase 3: Provider and Context Layer

Objective: support model calls through canonical context assembly and provider capability validation.

Deliverables:

  • provider config loader
  • ProviderCapabilityMatrix implementation
  • ProviderAdapter interface
  • one Anthropic-compatible or OpenAI-compatible adapter path
  • ContextAssembler L0-L9 layering
  • omission/conflict reporting
  • provider conversion report

Validation:

bun test packages/llm
bun test packages/runtime --filter context

Real-provider smoke gated by local config:

bun run air -- provider doctor
bun run air -- provider smoke

Phase 4: Worker IPC and Scheduler V1.0.0 Alpha

Objective: run independent child workers with Scheduler state machine.

Deliverables:

  • WorkerManager process spawn/monitor
  • NDJSON IPC framing
  • Executor/Reviewer/Debugger/Compactor/ExperienceMiner process foundations
  • heartbeat and timeout handling
  • TaskGraph load/plan/dispatch/collect
  • retry budget/failure signature tracking
  • workspace create/merge events
  • restart recovery for lost/running agents

Validation:

bun test packages/runtime --filter ipc
bun test packages/runtime --filter scheduler
bun run air -- e2e worker-fixture

Phase 5: Complete C++ Development Workflow

Objective: deliver the first complete language workflow, not just build/test smoke coverage.

Deliverables:

  • packages/toolchain-cpp
  • cpp.detect
  • cpp.cmake.configure
  • cpp.build
  • cpp.test
  • cpp.static.cppcheck
  • cpp.clangd.query
  • compiler/linker/test diagnostic parser and semantic signatures
  • compile_commands generation/discovery
  • build-system conflict reporting
  • Debugger integration for failed build/test/debug evidence
  • Reviewer integration for C++ changes
  • automatic scoped repair loop for representative C++ failures
  • C++ fixture projects covering configure/build/test/static-analysis/debug/fix/review

Validation:

bun test packages/toolchain-cpp
bun run air -- fixture cpp-build-test
bun run air -- e2e cpp-fix-fixture
bun run air -- e2e cpp-debug-review-fixture

Phase 6: TUI/HUD Projection

Objective: expose runtime state through OpenTUI/Solid UI without coupling UI to DB/EventBus.

Deliverables:

  • ProjectionStore hydrate/apply APIs
  • TUI startup shell
  • session/task/agent/tool/command/artifact views
  • permission prompt UI
  • blocker report UI
  • basic HUD/statusline projection

Validation:

bun test packages/tui
bun run air -- tui-smoke --project <fixture>

Phase 7: Agent Prompt Integration and End-to-End Loop

Objective: connect Main Agent, Architecture Designer, Scheduler, workers, tools, context, and provider call path.

Deliverables:

  • built-in prompt resources
  • Main Agent request classification
  • Architecture Designer impact assessment flow
  • Executor WorkerResult loop
  • Reviewer report loop
  • Debugger failure evidence loop
  • Compactor summary loop
  • scope escalation integration

Validation:

bun run air -- e2e simple-edit-fixture
bun run air -- e2e cpp-fix-fixture

Phase 8: Release Gate and Packaging

Objective: make V1.0.0 Alpha foundation reproducible and releasable for tier-1 Linux.

Deliverables:

  • binary tarball packaging
  • resource bundle
  • release gate script
  • doctor report bundle generation
  • documentation of skipped gates/known limitations

Validation:

bun run release:check
bun run release:package

Parallelization Boundaries

Can parallelize after contracts stabilize:

  • storage/EventStore and provider/context adapter work
  • ToolRegistry/PermissionEngine and ArtifactStore
  • C++ workflow tools/debug/review fixtures and TUI ProjectionStore
  • worker foundation and Scheduler tests
  • capability manifest validation and built-in capability registration

Must serialize:

  1. packages/contracts before package implementations.
  2. DB schema before EventStore/SessionStore tests.
  3. ToolRegistry/PermissionEngine before tools and workers rely on side effects.
  4. Provider/context contract before agent prompt integration.
  5. Scheduler IPC before real worker E2E.

Validation Strategy

Minimum per-task validation appears in AirPlan/todo.md.

Release-level validation:

bun install
bun run typecheck
bun test
bun run lint
bun run air -- doctor --read-only
bun run air -- e2e worker-fixture
bun run air -- fixture cpp-build-test
bun run air -- e2e cpp-fix-fixture
bun run air -- e2e cpp-debug-review-fixture
bun run air -- capability validate --all
bun run release:check

If a validation gate cannot run, record:

why skipped
evidence available
risk
follow-up task

Static Analysis Strategy

V1.0.0 Alpha static analysis:

  • TypeScript typecheck for all packages.
  • ESLint or equivalent once repo config exists.
  • cppcheck for C++ fixture/toolchain validation.
  • Architecture/static consistency reviewed through ADR/C4 updates.

Risk Controls

Risk Control
contract churn implement contracts first and version event/tool schemas
unsafe edits enforce read-before-edit and exact edit tools
hidden side effects all tools through PermissionEngine
context overflow ContextAssembler budgets and Compactor
worker loss heartbeat, timeouts, task_attempts, restart recovery
provider mismatch capability matrix and conversion reports
evidence gaps artifact/evidence refs required in WorkerResult
platform surprises Doctor platform report and Linux tier-1 release gates