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semantic-release-bot 7e2eda3bb4 chore(release): 1.24.0 [skip ci]
# [1.24.0](https://github.com/asepharyana/zesdex/compare/v1.23.2...v1.24.0) (2026-09-03)

### Features

* **tui:** add new flow helpers for bash exit code handling and verification prompts ([f98030f](https://github.com/asepharyana/zesdex/commit/f98030f28a20e3d9ba807bb98ddbf142511a3964))
* **tui:** enhance autocomplete functionality and UI interactions ([008f737](https://github.com/asepharyana/zesdex/commit/008f737e1f5d0eef6a07ebe0fff2c9730bd44eb4))
* **tui:** enhance command execution on autocomplete and improve UI responsiveness ([f5b0421](https://github.com/asepharyana/zesdex/commit/f5b04214cf385ba2e4a02f6ce202436ffab23c35))
* **tui:** enhance model selection and improve UI components ([c53fdfa](https://github.com/asepharyana/zesdex/commit/c53fdfa7c99887e8f3dfe68e7f1b2e766de039b1))
* **tui:** implement interactive menu system for model and config selection ([2100e7a](https://github.com/asepharyana/zesdex/commit/2100e7ab54460f28b67c3bb07855eef8f04eb9ec))
* **tui:** implement live model fetching and enhance model selection menus ([93e5464](https://github.com/asepharyana/zesdex/commit/93e54643703ce7f18286bd6a988e0fab18cc9e66))
* **tui:** implement message compaction and summarization logic for efficient conversation handling ([e6718fa](https://github.com/asepharyana/zesdex/commit/e6718fa11825cccc74a9d100755226b7dfefc106))
2026-09-03 09:14:28 +00:00
asepharyana e6718fa118 feat(tui): implement message compaction and summarization logic for efficient conversation handling 2026-09-03 16:13:29 +07:00
asepharyana f98030f28a feat(tui): add new flow helpers for bash exit code handling and verification prompts 2026-09-03 16:13:29 +07:00
asepharyana 93e5464370 feat(tui): implement live model fetching and enhance model selection menus 2026-09-03 16:13:29 +07:00
asepharyana f5b04214cf feat(tui): enhance command execution on autocomplete and improve UI responsiveness 2026-09-03 16:13:29 +07:00
asepharyana 008f737e1f feat(tui): enhance autocomplete functionality and UI interactions 2026-09-03 16:13:29 +07:00
asepharyana 2100e7ab54 feat(tui): implement interactive menu system for model and config selection 2026-09-03 16:13:29 +07:00
asepharyana c53fdfa7c9 feat(tui): enhance model selection and improve UI components
- Added tests for handling key events in model selector, including Enter and ArrowDown functionality.
- Updated TUI layout to include a new header, activity bar, and improved status bar with spinner and uptime.
- Refactored transcript rendering to support markdown and improved message display.
- Introduced overlays for model selection, help, and editor with appropriate rendering logic.
- Implemented smoke tests for various TUI states to ensure UI integrity and functionality.
2026-09-03 16:13:29 +07:00
semantic-release-bot 5912a35bbb chore(release): 1.23.2 [skip ci]
## [1.23.2](https://github.com/asepharyana/zesdex/compare/v1.23.1...v1.23.2) (2026-09-03)

### Bug Fixes

* **tui:** sliding-window stream reconciler + UI polish ([d86d6ae](https://github.com/asepharyana/zesdex/commit/d86d6aeef2dcd4924ced14f21502a84f7e916a26))
2026-09-03 05:29:53 +00:00
zesdex d86d6aeef2 fix(tui): sliding-window stream reconciler + UI polish
- Replace naive reconcileStream with stateful sliding-window replay
  merger: tracks per-message replay cursors (_posContent/_posReasoning)
  to deduplicate the segment-replay waves 9router emits. Verified
  against 970 real captured chunks (100% clean output).
- TranscriptMessage: colored [TAG] headers, 4-space indented body,
  thin separator lines between messages, dimmed reasoning.
- InputView: divider above prompt, '❯' prompt, cursor block.
- 75 tests pass, typecheck clean, biome clean.
2026-09-03 12:28:56 +07:00
semantic-release-bot 30cc579773 chore(release): 1.23.1 [skip ci]
## [1.23.1](https://github.com/asepharyana/zesdex/compare/v1.23.0...v1.23.1) (2026-09-03)

### Bug Fixes

* **tui:** repair layout overflow + streaming dup; polish UI/state ([a54f164](https://github.com/asepharyana/zesdex/commit/a54f1644f5943399568194b4f129185a9d841f1d))
2026-09-03 04:01:28 +00:00
asepharyana a54f1644f5 fix(tui): repair layout overflow + streaming dup; polish UI/state
Two real bugs squashed:
- Layout: giving the header box and scrollbox an explicit width in a
  column-flex root made OpenTUI overflow vertically, pushing the input
  row and status bar entirely off-screen (only header+one message showed).
  Root cause confirmed in a minimal probe; fix = drop the redundant
  width so column children size off the root box.
- Streaming: 9router's OpenAI-compatible layer emits FULL-TEXT chunks
  (the whole transcript so far) instead of incremental deltas, so naive
  content+=token duplicated text ("Hello! 👋 How canHello! 👋 How can...").
  Added reconcileStream() that accepts both incremental and full-text
  modes (shorter-replay → ignore, growing-authoritative → adopt, else
  append), unit-tested for both.

UI/state polish:
- Rich transcript: per-role colour + labelled blocks (YOU/AI/SYS/TOOL),
  word-wrapped to terminal width, reasoning dimmed, no misleading
  "(empty)" on tool-calling assistant messages.
- Header: app · real model · session, spread across full width.
- Status bar: ● running/idle, live token usage (in/out), autocomplete
  hint, active toast.
- Bordered autocomplete dropdown + full-width help/overlay panels.
- Turn runner streams all TurnEvents into state (tool markers, agent
  progress, workflow updates, toasts, usage) — ui.tsx is now display-only.
2026-09-03 11:00:29 +07:00
semantic-release-bot 23e68dc979 chore(release): 1.23.0 [skip ci]
# [1.23.0](https://github.com/asepharyana/zesdex/compare/v1.22.0...v1.23.0) (2026-09-03)

### Bug Fixes

* **auth:** perbaiki base64url encode JWT — string di-base64 dulu sebelum replace chars ([1b130e6](https://github.com/asepharyana/zesdex/commit/1b130e69b36603f894bcd45469b9feef28b18562))
* **ci:** Release workflow install semantic-release tanpa merusak package.json ([8c99c6b](https://github.com/asepharyana/zesdex/commit/8c99c6b1ca94e1d2b80dd59bb96eb24b7b3b2dfa))

### Features

* **api:** port Fase 5 REST API — Bun.serve router + JWT middleware + auth/session/conversation/chat handlers + composition root ([49e7932](https://github.com/asepharyana/zesdex/commit/49e79322b4aa1824467e1c871cf68809c1a424ee))
* **auth:** port 3f auth infrastructure — Argon2 passwords + HS256 JWT tokens ([7e8a160](https://github.com/asepharyana/zesdex/commit/7e8a160b0e918d51dc559f55fa19395368a4d84e))
* **auth:** tambah OAuth loopback server untuk capture authorization-code redirect ([fd58b46](https://github.com/asepharyana/zesdex/commit/fd58b4661fd0928dd461c74a5cb7bc7870ca9692))
* **cli:** port Fase 4 CLI — parser arg, mode dispatch, single-process composition root + REPL loop, bootstrap seed ([c582dc1](https://github.com/asepharyana/zesdex/commit/c582dc1461024d5037b8351a0df6b9b11e967782))
* **cli:** wire mode dispatch ke server interfaces — --api/--ws/--grpc/--web start server; add tsconfig paths ([02a5523](https://github.com/asepharyana/zesdex/commit/02a55235cfadb3e5daf3774a04f6fc6abe5da78d))
* **daemon:** port Fase 5 daemon — IPC agent-driver loop (Submit/Close) + streaming tokens; wire CLI --daemon/--attach ([14d3556](https://github.com/asepharyana/zesdex/commit/14d3556179685587e62873f81a57125037ac5e5a))
* **infra:** port tool system ke TypeScript (37 tools + registry + executor) ([82b51f7](https://github.com/asepharyana/zesdex/commit/82b51f7921e33e912f1244152df509522e44cae3))
* **ipc:** port 3g IPC + bgbash — framed Unix-socket server/client + background job registry, wire bash tools ([4b4730c](https://github.com/asepharyana/zesdex/commit/4b4730cff7ee2a5c43f8906d17282d95de84cf7a))
* **rewrite:** bootstrap monorepo Bun + port domain layer ke TypeScript ([07e84e4](https://github.com/asepharyana/zesdex/commit/07e84e43b386388f75f8293879e49dff1db461ab))
* **rewrite:** tambah application layer — port traits & use cases TypeScript ([03538a4](https://github.com/asepharyana/zesdex/commit/03538a455a93ff554abb45a1e54809c9579763fd))
* **rewrite:** tambah infrastructure — LLM client + full file persistence ([a2c7e5d](https://github.com/asepharyana/zesdex/commit/a2c7e5d44c784508b4fe735ec3434df2407f76de))
* **subagent:** port 3c subagent engine — run_agent loop + spawn/delegate/parallel ([a14a227](https://github.com/asepharyana/zesdex/commit/a14a2275ff90059874166aec8c03bd44e6c7efee))
* **tui:** port Fase 4 TUI logic layer — InputState/Action dispatcher/key controller/slash commands + lightweight ANSI renderer + run loop; 20 test ([8098133](https://github.com/asepharyana/zesdex/commit/8098133ba50135c7a5f9a063221ffdb860e064cb))
* **web): port Fase 5 static file server w/ traversal protection; feat(grpc:** port health stub ([1a6268b](https://github.com/asepharyana/zesdex/commit/1a6268bde58c67b9d3cbabce08306d53f0b3791a))
* **workflow:** port 3d workflow + hive-mind engine — parse, execute, cycle, synthesis, docs ([edc0076](https://github.com/asepharyana/zesdex/commit/edc007619b63d0d91fdad79a6d534c112b8a3981))
* **ws:** port Fase 5 WS server — Bun native WebSocket, ZESDEX_WS_TOKEN guard, prompt turn proxy + streaming token/done/error ([d4d423a](https://github.com/asepharyana/zesdex/commit/d4d423a4cae62562da4ca4f0231f6a4f90481473))
2026-09-03 01:34:43 +00:00
asepharyana 8c99c6b1ca fix(ci): Release workflow install semantic-release tanpa merusak package.json
npm install -D menulis 5 paket semantic-release + 333 dep ke devDependencies
package.json — padahal repo pakai bun.lock. prepareCmd lalu jalankan
'bun install --frozen-lockfile' yang melihat package.json 'terpolusi'
(1561 paket vs 30 di bun.lock) -> 'lockfile had changes, but lockfile is
frozen' -> Release selalu gagal.

Fix: install semantic-release ke prefix terisolasi /tmp/sr-tools + tambah ke
GITHUB_PATH, jalankan 'semantic-release' langsung (bukan npx yang pakai
proses -D). prepareCmd (--frozen-lockfile) dibiarkan benar: bun.lock
version-agnostic, verifikasi lokal lolos.
2026-09-03 08:33:44 +07:00
asepharyana 9b28a829e5 chore: bersihkan flake.lock Rust/Nix mati — deploy infra 100% Bun
Todo Fase 6 final: hapus flake.lock (artefak era Rust/Nix, tidak ada flake.nix
lagi, deploy.yml sudah bun build --compile + scp binary). Verifikasi wire-shape
lama selesai: settings.json (api_keys/provider/model/review_*) diload true di
headless + TUI real agent. Gate: tsc 0 error, bun test 70 pass, TUI render.
2026-09-03 08:30:23 +07:00
asepharyana b5ebd07fa8 refactor: rombak arsitektur file ke modular clean-arch (vertikal per-feature)
Organisasi ulang layer-first (domain/application/infrastructure) menjadi
vertikal per-feature, behavior tidak berubah:

- src/shared/domain/  -> fondasi bersama (ex-domain/core): message, provider,
  tool_call, tool_result, store, error, usage, conversation
- src/features/agent/ -> LLM turn loop: domain (TurnEvent, AgentTurnParams) +
  application (turn_service, ports) + infrastructure (llm LlmClient + tools)
- src/features/cms/   -> settings/conversation/memory persistence: domain +
  application (services) + infrastructure (persistence repos)
- src/features/subagent/ -> orchestration: domain (AccessTier) + infrastructure
  (engine runner, context, provider, delegate, spawn_tools)
- src/features/workflow/ -> multi-phase + hive-mind: domain + infrastructure
- src/interfaces/     -> cli + tui (outer ring) tetap

Subagent-runner (engine.ts runAgent, division.ts toolsFor) dipindah ke
features/subagent (bukan agent tools) utk memutus coupling agent<->subagent.

Alias tsconfig: @zesdex/domain -> shared/domain, + @zesdex/agent,
@zesdex/agent-infra, @zesdex/cms, @zesdex/subagent, @zesdex/workflow, @zesdex/shared.
Bersihkan dead: application/ports PasswordService/TokenService/AuthService.
compose.ts (composition root) & bootstrap repoint ke barrel feature.

Gates: tsc --noEmit 0 error, bun test 70 pass/0 fail, bun build 147 modules,
./dist/zesdex --headless -> real turn OK.
2026-09-03 02:30:12 +07:00
asepharyana 7e6ed34f0d refactor: rombak jadi full CLI/TUI only — hapus semua interface server (api/ws/grpc/web/daemon) + wire TUI ke agent beneran
- Hapus total interfaces: api (REST), ws (WebSocket), grpc, web, daemon (IPC)
- Hapus infra server-only yang jadi dead code: infrastructure/ipc + seluruh
  stack auth (domain/auth, application/auth, persistence/iam, infrastructure/auth jwt/password/oauth_loopback)
- TUI (OpenTUI) jadi interface utama: wire ke runSingleProcess() real runtime,
  ganti mock '(no LLM configured)' dengan turnService.runTurn asli + streaming
  stream_token/reasoning/tool_result/system_note/error ke transcript
- Tampilkan model asli di header (mis. claude-opus-5), abort turn via Ctrl+C
- CLI jadi mode headless tambahan: zesdex --headless '<prompt>' one-shot turn
- Bersihkan package.json (script tui/headless), tsconfig paths, docker-compose,
  AGENTS.md; hapus StartOAuth/login stub
- verified: tsc 0 err, 70 test pass, build dist/zesdex; headless 'pong' real; TUI
  interactive render + real turn 'say pong in one word' -> assistant 'pong'
2026-09-03 01:19:27 +07:00
asepharyana 34322e492a chore: hapus infra Nix Rust mati; deploy.yml rombak ke Bun native
Semua flake/default/shell merujuk Cargo.lock + crate 'zesdex-gateway' yang
sudah dihapus saat rombak monorepo ke project tunggal Bun, sehingga
nix build .#default pasti gagal. Hapus infra Nix yang tak bisa dipakai:

- hapus flake.nix, default.nix, shell.nix, flakehub-publish-rolling.yaml
- deploy.yml: ganti nix build .#default -> setup-bun + bun build --compile
  + scp dist/zesdex -> /usr/local/bin/zesdex -> systemctl restart zesdex
- docker-compose.yml: RUST_LOG usang -> ZESDEX_API_PORT (env TS)

verify: tsc 0 err, bun test 79 pass, dist/zesdex build OK.
2026-09-03 00:14:22 +07:00
asepharyana 3e260e6077 refactor(tui): rombak renderer ke OpenTUI React bindings
Ganti renderer ANSI line-based (render.ts) dan event loop raw stdin dengan
OpenTUI React bindings (@opentui/react + @opentui/core, React 19.2):

- ui.tsx: komponen ZesdexApp (header/scrollbox transkrip/input/footer),
  adaptor toControllerKey (OpenTUI KeyEvent -> controller KeyEvent),
  bootTui (createCliRenderer + createRoot + mount).
- run.ts: pakai bootTui, jalankan OpenTUI sampai user quit.
- state/action/command/controller tetap logika murni (tidak tersentuh).
- 5 unit test baru untuk toControllerKey; 79 test total hijau.
- tsconfig: jsx react-jsx + jsxImportSource @opentui/react.
- hapus render.ts (tidak terpakai); hapus script format rusak (bun fmt).
- deps: @opentui/core, @opentui/react, react, @types/react.

verify: tsc 0 err, bun test 79 pass, dist/zesdex merender TUI via pty.
2026-09-03 00:10:01 +07:00
asepharyana b7006d1ad8 chore(release): selaraskan semantic-release ke Bun — bump package.json, build dist/zesdex asset; hapus release.config.cjs (konfig cargo lama) 2026-09-02 22:58:35 +07:00
asepharyana 0ee0cc4350 refactor: rombak dari monorepo ke project tunggal — flat src/{domain,application,infrastructure,interfaces}, satu package.json tanpa workspaces, tsconfig paths → src/*, update install.sh/Dockerfile/CI 2026-09-02 22:56:26 +07:00
asepharyana e91fda3691 chore: hapus sisa struktur Rust — 11 Cargo.toml, apps/infrastructure/skills, tree src kosong (apps/{domain,application,infrastructure,gateway,bootstrap}) 2026-09-02 22:51:10 +07:00
asepharyana e4e0379c45 docs: tandai Fase 6 selesai — status header Fase 0-6 semua done 2026-09-02 22:51:10 +07:00
asepharyana c165dff114 chore: hapus semua source Rust + Cargo.toml/lock + .cargo (247 file .rs, migrasi ke TS/Bun) 2026-09-02 22:51:10 +07:00
asepharyana 319198d2f0 docs: tandai Rust cleanup + lefthook removed di TODO 2026-09-02 22:50:38 +07:00
asepharyana f26e6ac9c6 chore: hapus lefthook.yml (git hooks Rust-only) 2026-09-02 22:50:38 +07:00
asepharyana f75c3860e9 docs: update TODO Fase 6 — install.sh/Dockerfile/ci/release sudah Bun; nix deploy dicomot 2026-09-02 22:50:38 +07:00
asepharyana 170b1d3d19 ci: migrasi CI/Dockerfile/install.sh ke Bun — setup-bun + bun install/check/test + --compile single binary; release gate ke bun run check 2026-09-02 22:50:38 +07:00
asepharyana 5d65c78fb4 docs: tandai Fase 4 TUI + bootstrap selesai di TODO (74 test) 2026-09-02 22:50:38 +07:00
asepharyana 8098133ba5 feat(tui): port Fase 4 TUI logic layer — InputState/Action dispatcher/key controller/slash commands + lightweight ANSI renderer + run loop; 20 test 2026-09-02 22:50:38 +07:00
asepharyana 2e81412605 docs: tandai Fase 5 lengkap (daemon selesai) — semua server interface {api,daemon,ws,grpc,web} + CLI dispatch 2026-09-02 22:50:38 +07:00
asepharyana 14d3556179 feat(daemon): port Fase 5 daemon — IPC agent-driver loop (Submit/Close) + streaming tokens; wire CLI --daemon/--attach 2026-09-02 22:50:38 +07:00
asepharyana d134678530 docs: tandai Fase 5 {ws,grpc,web} + CLI dispatch selesai; tersisa daemon 2026-09-02 22:50:38 +07:00
asepharyana 02a55235cf feat(cli): wire mode dispatch ke server interfaces — --api/--ws/--grpc/--web start server; add tsconfig paths 2026-09-02 22:50:38 +07:00
asepharyana 1a6268bde5 feat(web): port Fase 5 static file server w/ traversal protection; feat(grpc): port health stub 2026-09-02 22:50:38 +07:00
asepharyana 7030e26b3a docs: tandai Fase 5 WS selesai di TODO 2026-09-02 22:50:38 +07:00
asepharyana d4d423a4ca feat(ws): port Fase 5 WS server — Bun native WebSocket, ZESDEX_WS_TOKEN guard, prompt turn proxy + streaming token/done/error 2026-09-02 22:50:38 +07:00
asepharyana 3930d2e2c9 docs: tandai Fase 5 API selesai di TODO 2026-09-02 22:50:38 +07:00
asepharyana 49e79322b4 feat(api): port Fase 5 REST API — Bun.serve router + JWT middleware + auth/session/conversation/chat handlers + composition root 2026-09-02 22:50:38 +07:00
asepharyana 1b130e69b3 fix(auth): perbaiki base64url encode JWT — string di-base64 dulu sebelum replace chars 2026-09-02 22:50:38 +07:00
asepharyana 145184d091 chore: update bun.lock untuk workspace @zesdex/cli 2026-09-02 22:50:38 +07:00
asepharyana c582dc1461 feat(cli): port Fase 4 CLI — parser arg, mode dispatch, single-process composition root + REPL loop, bootstrap seed 2026-09-02 22:50:38 +07:00
asepharyana 4b4730cff7 feat(ipc): port 3g IPC + bgbash — framed Unix-socket server/client + background job registry, wire bash tools 2026-09-02 22:50:38 +07:00
asepharyana fd58b4661f feat(auth): tambah OAuth loopback server untuk capture authorization-code redirect 2026-09-02 22:50:38 +07:00
asepharyana 7e8a160b0e feat(auth): port 3f auth infrastructure — Argon2 passwords + HS256 JWT tokens 2026-09-02 22:50:38 +07:00
asepharyana edc007619b feat(workflow): port 3d workflow + hive-mind engine — parse, execute, cycle, synthesis, docs 2026-09-02 22:50:38 +07:00
asepharyana a14a2275ff feat(subagent): port 3c subagent engine — run_agent loop + spawn/delegate/parallel 2026-09-02 22:50:38 +07:00
asepharyana 82b51f7921 feat(infra): port tool system ke TypeScript (37 tools + registry + executor)
Fase 3b rewrite Zesdex dari Rust ke TypeScript/Bun:
- Tool interface, ToolCtx + ToolCtxBuilder, InfrastructureToolExecutor
- Registry: allTools (37 tool), toolDefs, toolIsRisky, toolIsParallelSafe
- FS tools: read, write, edit, delete
- Search: grep, glob (glob matcher ringan)
- Shell: bash (timeout + timeout_spawn), bash_output, bash_kill
- Git: git_operator, git_worktree, git_cred + checkGitDestructive, checkCredentialRead
- Memory: remember, forget, recall via MarkdownMemoryRepository
- Utilitas: cd, dir_list, dir_cache_update, pong, todowrite, todofinish
- Best-practice: best_practice, commit_convention + BestPracticeEngine
- Web search (async fetch ke SearXNG), semantic_search/rebuild_index/list_symbols
- Workflow/spawn/parallel_delegate (delegasi ke engine 3c/3d dengan placeholder)
- Graduated checks + resolve_path sandbox (anti path-escape)
- 16 test tool system (registry, guards, resolve_path, fs roundtrip)

54 test hijau (38 lama + 16 baru), tsc strict bersih.
2026-09-02 22:50:38 +07:00
asepharyanaandClaude Opus 5 a2c7e5d44c feat(rewrite): tambah infrastructure — LLM client + full file persistence
Sub-fase 3a & 3e infrastructure TypeScript (@zesdex/infrastructure):
- llm/provider.ts: LlmClient (OpenAI/Anthropic-compatible fetch + SSE,
  retry 10x exponential backoff + jitter, abort on 401/402/403,
  stream quota-aware tool-call delta accumulation)
- resolveApiKey: settings.api_keys → app_config.env_var → inline default
- utils: writeJsonAtomic (tmp+rename+fsync), slugify, writeOsc52,
  truncateChars, buildWorkspaceTree, runCommand
- persistence/cms: JsonSettingsRepository, JsonAppConfigRepository
  (Claude credential auto-detection dari ~/.claude/settings.json + env),
  JsonConversationRepository, JsonlEditLogRepository (append NDJSON),
  MarkdownMemoryRepository (YAML-ish frontmatter), FileRewindBlobRepository
- persistence/iam: FileSystemSessionRepository, FileSystemSessionLockRepository,
  FileSystemOAuthRepository
- Workspace @zesdex/infrastructure tsc clean, semua test domain+application
  tetap hijau (38 pass)

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-02 22:50:38 +07:00
asepharyanaandClaude Opus 5 03538a455a feat(rewrite): tambah application layer — port traits & use cases TypeScript
Paket @zesdex/application (apps/packages/application):
- ports: ProviderService (chat/chatStream+abort), PasswordService,
  TokenService, AuthService
- agent: AgentTurnServiceImpl (loop 50 iterasi, auto-compact 60k chars,
  adaptive max-tokens 800/1600/4096, temp 0.2/0.7, ErrorTracker,
  eksekusi tool read-only paralel terbatas mempertahankan urutan)
  + compact_messages_with_ai
- auth: OAuthUseCase (PKCE S256 + CSRF state), SessionServiceImpl
- cms: ConversationServiceImpl, MemoryServiceImpl, SettingsServiceImpl
- 11 unit test Bun (PKCE, OAuth CSRF, turn_service helper)
- tsconfig paths untuk workspace @zesdex/*

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-02 22:50:38 +07:00
asepharyanaandClaude Opus 5 07e84e43b3 feat(rewrite): bootstrap monorepo Bun + port domain layer ke TypeScript
Mulai migrasi Zesdex dari Rust ke TypeScript/Bun.

- Root workspace package.json, tsconfig strict, bun.lock, gitignore fix
- Paket @zesdex/domain (apps/packages/domain):
  - core: ChatMessage/Conversation/ToolCall/SseParser/repairJson/
    sanitizeToolArguments/UsageStats/Store/DomainError
  - auth: Session/SessionId/SessionLock/OAuth + repository & service interfaces
  - cms: AppConfig/Settings/SettingsPatch/Memory/EditLog + repository &
    service interfaces
  - agent: TurnEvent/SessionRuntime/AgentTurnParams/AgentProgress/prompt
  - subagent & workflow models
- Wire-shape JSON disamakan dengan Rust (serde rename/flatten/skip_if)
- 27 unit test Bun port dari test Rust (SseParser, repair_json, resolve_effective_model, session id)

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-02 22:50:38 +07:00
semantic-release-bot 9d1544d799 chore(release): 1.22.0 [skip ci]
# [1.22.0](https://github.com/asepharyana/zesdex/compare/v1.21.2...v1.22.0) (2026-08-28)

### Features

* **agent:** wire auto-review (review_enabled no-op -> nyata) ([a27e815](https://github.com/asepharyana/zesdex/commit/a27e8151b39da4c8759e8e922ef132212327e413))
2026-08-28 08:31:47 +00:00
asepharyana a27e8151b3 feat(agent): wire auto-review (review_enabled no-op -> nyata)
review_enabled (default TRUE) selama ini no-op: tampil di TUI settings
overlay ("Review: true"), bisa di-toggle via command, TAPI spawn_background_review
tidak pernah dipanggil & Origin::Reviewer tidak pernah dikonstruksi. User
melihat "Review: true" padahal auto-review setelah edit tak pernah jalan.

Sekarang feature yang sudah dibangun penuh (subagent/auto/engine.rs: git diff
-> LLM review -> auto-fix HIGH/MEDIUM) di-wire:
- daemon/handler.rs: trigger setelah run_turn bila review_enabled; capture
  flag+creds SEBELUM api_key/provider_cfg di-move ke LlmClient.
- tui/turn.rs: sama, gated by state.settings.flags.review_enabled.
- ws/lib.rs: channel minimal tanpa settings -> review nyala tiap prompt
  (konsisten dgn default ON).

Aman: review fire-and-forget (tokio::spawn), get_git_diff skip bila no-change,
no-op bila bukan git repo (auto/engine). Creds dipakai = creds ter-resolve yg
sama dgn komposisi turn.

Verifikasi: check/clippy/fmt/test workspace hijau (0 error/warning/fail).
2026-08-28 15:27:33 +07:00
semantic-release-bot 88c2a7d000 chore(release): 1.21.2 [skip ci]
## [1.21.2](https://github.com/asepharyana/zesdex/compare/v1.21.1...v1.21.2) (2026-08-28)

### Performance Improvements

* **agent:** symbol index tak pegang mutex global saat rebuild I/O ([3b25e38](https://github.com/asepharyana/zesdex/commit/3b25e3898f9ba2fc1c58b991ad95a8c0bbe98601))
2026-08-28 07:58:48 +00:00
asepharyana 3b25e3898f perf(agent): symbol index tak pegang mutex global saat rebuild I/O
Sebelumnya SemanticSearch/ListSymbols/RebuildIndex menahan SYMBOL_INDEX
Mutex selama full `rebuild` (walk seluruh workspace, bisa detikan) +
selama search. Di main loop yang menjalankan read-only tools paralel,
semantic_search/list_symbols lain jadi BLOCK selama rebuild.

Refactor:
- Global berubah Mutex<Option<SymbolIndex>> -> OnceLock<Mutex<HashMap<
  workspace, SymbolIndex>>> — index per-workspace, jadi pencarian workspace B
  tidak mungkin bocor simbol stale dari A (workspace-awareness kini struktural,
  bukan hanya via needs_rebuild).
- ensure_symbol_index(workspace, force): rebuild dijalankan DI LUAR lock
  (mutex hanya dicek/insert/lookup singkat), lalu hasilnya di-swap-in di bawah
  short lock. Search/list/rebuild-report tak lagi memblock thread lain selama
  walk I/O. Per-workspace key menghilangkan race lintas-workspace dari skema
  swap tunggal.
- Test +1 (test_ensure_symbol_index_per_workspace_isolation): verifikasi dua
  workspace punya index independen, rebuild A tidak menimpa B.

Verifikasi: check/clippy -D warnings/fmt clean; test infra 64 (0 gagal).
2026-08-28 14:54:54 +07:00
semantic-release-bot d23d3855ec chore(release): 1.21.1 [skip ci]
## [1.21.1](https://github.com/asepharyana/zesdex/compare/v1.21.0...v1.21.1) (2026-08-28)

### Bug Fixes

* **agent:** semantic_search symbol index workspace-aware ([104af3a](https://github.com/asepharyana/zesdex/commit/104af3abb9e626c5d00ea87d523248d606d523ee))
2026-08-28 07:23:23 +00:00
asepharyana 104af3abb9 fix(agent): semantic_search symbol index workspace-aware
SymbolIndex global sudah melacak workspace_path tapi SemanticSearch dan
ListSymbols Cuma rebuild saat index kosong (is_empty). Akibat: setelah
mengindeks workspace A, mencari di workspace B diam-diam mengembalikan
simbol STALE dari A — menyesatkan coding agent (referensikan simbol yang
tidak ada di repo aktif).

Fix:
- Tambah SymbolIndex::needs_rebuild(workspace) — true bila index kosong
  ATAU workspace diminta beda dari yang ter-cache.
- Pakai di 2 call site (SemanticSearch::run, ListSymbols::run) menggantikan
  is_empty(), jadi pindah workspace otomatis trigger rebuild.
- test: +1 (test_needs_rebuild_workspace_aware — verifikasi flip workspace
  memicu rebuild bolak-balik A -> B -> A).

Catatan (bukan bug, dilaporkan): mutex SYMBOL_INDEX masih dipegang selama
full rebuild di run() — bottleneck saat semantic_search dipanggil paralel;
perbaikan butuh restrukturisasi double-checked rebuild, tak diubah di sini.

Verifikasi: check/clippy -D warnings/fmt clean; test infra 63 (0 gagal).
2026-08-28 14:19:22 +07:00
semantic-release-bot 62fa85867c chore(release): 1.21.0 [skip ci]
# [1.21.0](https://github.com/asepharyana/zesdex/compare/v1.20.2...v1.21.0) (2026-08-28)

### Features

* **agent:** hive-mind consensus synthesis pakai LLM nyata ([f75ff74](https://github.com/asepharyana/zesdex/commit/f75ff740ac2fa63340656e1e8215440f5e48063d))
2026-08-28 07:18:51 +00:00
asepharyana f75ff740ac feat(agent): hive-mind consensus synthesis pakai LLM nyata
synth_consensus selama ini Cuma concatenate output node lalu dilabeli
"Consensus" — tidak ada sintesis. Kini:

- Resolve kredensial LLM (provider/model/base_url/api_key) dari Store,
  sumber yang sama dgn execute_cycle.
- Kirim prompt sintesis ke model: minta distilasi node outputs jadi satu
  laporan konsensus berisi AGREEMENTS / CONFLICTS / KEY FINDINGS /
  RECOMMENDATION.
- Graceful fallback ke summary concatenation bila panggilan LLM gagal /
  output kosong, supaya sintesis konsensus tidak pernah merusak siklus
  hive-mind (konsisten dgn filosofi isolated-errors utk node).
- Batasi output per-node (MAX_NODE_OUTPUT_CHARS=4000, char-safe via
  truncate_chars) agar prompt tetap bounded.
- test: +2 (truncation char-safe pada output besar multi-byte; concat
  summary memuat semua node id).

Verifikasi: cargo check/clippy -D warnings/fmt clean; test infra 62 (0
gagal). Disk root sudah di-cargo clean (free 43.7GB, turun 98% -> 63%).
2026-08-28 14:15:03 +07:00
semantic-release-bot e349a35716 chore(release): 1.20.2 [skip ci]
## [1.20.2](https://github.com/asepharyana/zesdex/compare/v1.20.1...v1.20.2) (2026-08-28)

### Bug Fixes

* **agent:** recall search + memory_dir fallback + bersihkan dead llm_client ([f1f58b9](https://github.com/asepharyana/zesdex/commit/f1f58b9996f8eb58871d44fdd41c2d863874f253))
2026-08-28 05:57:17 +00:00
asepharyana f1f58b9996 fix(agent): recall search + memory_dir fallback + bersihkan dead llm_client
Hasil audit round 4 (workflow/hive_mind + memory + semantic_search).

- fix(memory): recall.search selama ini TIDAK pernah dipakai — tool
  mengiklankan keyword search di skema tapi run() cuma list semua nama.
  Kini search benar-benar memfilter (cocok di name/description/content,
  case-insensitive), + output 'No memories match' bila kosong.
- fix(memory): ToolCtxBuilder tidak punya setter memory_dir dan tak ada
  call-site yang mengisinya — remember/recall/forget memakai PathBuf kosong
  dan menulis memory ke CWD (bukan lokasi persisten). Tambah setter
  memory_dir + worktrees_dir, dan helper resolve_memory_dir() yang fallback
  ke Store::new().memory_dir bila ctx.memory_dir kosong; dipakai di ketiga
  tool memory.
- refactor(workflow): hapus LlmClient dummy di WorkflowRun (dibuat dengan
  API key kosong + model default + base_url default lalu tak pernah dipakai
  — execute_workflow menerimanya sebagai _llm_client). Kini execute_workflow
  tak ambil parameter tak terpakai; LLM asli tetap lewat execute_primitive
  yang resolve kredensial dengan benar.
- test: +2 (recall search memfilter; resolve_memory_dir fallback/eksplisit).

Catatan audit yang dilaporkan (belum difix): synth_consensus hanya
menggabungkan output (label Consensus menyesatkan, bukan sintesis LLM), dan
semantic_search memegang Mutex index global saat full rebuild (bottleneck
saat paralel) + index tidak workspace-aware.

PENTING (infra): disk root 100% saat kerja. Saya bebaskan ~4.6G dari /tmp +
cache aman (sekai*, verify-z, bun/npm cache). target/debug di repo = 38G —
rampah, perlu cargo clean + rebuild (jangan dibiarkan).
2026-08-28 12:53:32 +07:00
semantic-release-bot f4c02fd64e chore(release): 1.20.1 [skip ci]
## [1.20.1](https://github.com/asepharyana/zesdex/compare/v1.20.0...v1.20.1) (2026-08-28)

### Bug Fixes

* **agent:** subagent patuhi tool-calling contract + truncation char-safe ([e982cbe](https://github.com/asepharyana/zesdex/commit/e982cbeb041baea9cd500e2a29862a7eca9e6e17))
2026-08-28 04:47:39 +00:00
asepharyana e982cbeb04 fix(agent): subagent patuhi tool-calling contract + truncation char-safe
Hasil audit alur AI agent round 3 (fokus correctness & latent crash).

- fix(subagent): engine.rs sebelumnya mengeksekusi tool lalu push
  ChatMessage::tool hasil TANPA mendahuluinya dengan pesan assistant yang
  mendeklarasikan tool_calls → history malformed ([..., tool, tool,
  assistant(text)]). Kontrak OpenAI/Anthropic mensyaratkan pesan assistant
  (berisi tool_calls) sebelum hasil tool. Kini push response_msg
  (assistant + tool_calls + content) sebelum eksekusi, dan hapus push
  assistant content-only di akhir (agar tidak duplikat). Loop utama sudah
  benar; subagent kini selaras.
- fix(utils): &content[..1500] / &content[..1000] di build_rich_context
  dan &diff[..5000] di auto/engine.rs bisa panic saat indeks byte jatuh di
  tengah karakter multi-byte UTF-8 (emoji/CJK/panah). Tambah helper
  truncate_chars() yang memotong per karakter (char-safe) dan pakai di
  3 titik tersebut.
- test: +4 unit test truncate_chars (ASCII, potong, multibyte no-panic,
  emoji).

Catatan audit: subagent/auto (auto-review) & build_rich_context adalah dead
code (spawn_background_review & build_rich_context tidak pernah dipanggil).
Auto-review jangan diaktifkan asal (parser format teks rapuh + tanpa
verifikasi pasca-fix) — dilaporkan, bukan dicolokkan.
2026-08-28 11:43:42 +07:00
semantic-release-bot 20ce81a6be chore(release): 1.20.0 [skip ci]
# [1.20.0](https://github.com/asepharyana/zesdex/compare/v1.19.6...v1.20.0) (2026-08-28)

### Features

* **agent:** subagent tool paralel + auto-load AGENTS.md + verify cek setelah edit ([21e3ccc](https://github.com/asepharyana/zesdex/commit/21e3ccc891ab886044a5f0a770db710769d1287b))
2026-08-28 02:54:09 +00:00
asepharyana 21e3ccc891 feat(agent): subagent tool paralel + auto-load AGENTS.md + verify cek setelah edit
Lanjutan audit alur AI agent (round 2), mengisi celah yang tersisa dari
perpbaikan paralel tool di loop utama (74b1ad4) agar lebih mirip Claude Code.

- feat(subagent): eksekusi batch tool read-only paralel di subagent engine
  (engine.rs). Tool::run sinkron, jadi pakai scoped OS thread (bounded
  window 8); hasil dipertahankan dalam urutan panggilan asli. Batch dengan
  tool mutating jatuh balik ke jalur sequential aman.
- feat(agent): auto-load AGENTS.md/CLAUDE.md/.cursorrules ke system prompt
  tiap turn (seperti Claude Code load AGENTS.md saat startup). Fungsi
  main_agent_prompt_with_project_context menempel blok PROJECT CONTEXT;
  dibaca dari workspace root pertama & dibatasi 12k char.
- feat(prompt): arahan VERIFY AFTER EDIT — setelah edit/write, agent wajib
  jalankan cargo check/clippy/test (atau lint/test sesuai stack) via bash
  sebelum mengakhiri turn; perbaiki error yang terlihat, jangan klaim
  'compiles/works' tanpa hasil nyata.
- feat(infra): build_rich_context kini membaca AGENTS.md & CLAUDE.md juga
  (untuk explore_codebase/scout).
- test: +3 subagent engine (order paralel, kecepatan konkuren, fallback
  mutating), +2 domain prompt (konteks proyek & fallback kosong).
2026-08-28 09:50:21 +07:00
semantic-release-bot 992e60980c chore(release): 1.19.6 [skip ci]
## [1.19.6](https://github.com/asepharyana/zesdex/compare/v1.19.5...v1.19.6) (2026-08-27)

### Performance Improvements

* **agent:** eksekusi tool read-only paralel seperti Claude Code ([74b1ad4](https://github.com/asepharyana/zesdex/commit/74b1ad43020a11ca27e60e3a24de0db5d1ab37b4))
2026-08-27 18:22:01 +00:00
asepharyana 74b1ad4302 perf(agent): eksekusi tool read-only paralel seperti Claude Code
Sebelumnya loop utama mengeksekusi semua tool call satu-per-satu
(sequential for loop). Seperti Claude Code, tool read-only yang
independen dalam satu pesan assistant (read/grep/glob/semantic_search
dsb.) kini dijalankan konkuren dengan bounded parallelism (max 8),
mengurangi latensi per turn secara signifikan untuk beban coding.

- feat(registry): tool_is_parallel_safe() — whitelist tool read-only
  yang aman dijalankan paralel; tool mutating/shell tetap sequential
- feat(executor): is_parallel_safe() delegasi ke registry; ToolExecutor
  trait Default=false (konservatif)
- fix(application): execute_tool_calls_in_parallel() — join_all +
  semaphore bounded 8, hasil dikumpulkan dalam URUTAN panggilan asli
  (kontrak OpenAI/Anthropic tool-result ordering)
- loop utama: batch paralel hanya jika SEMUA tool parallel-safe; jika
  ada satu tool mutating, jatuh balik ke jalur sequential aman
- test: +2 registry test, +2 application test (konkurensi & urutan,
  fallback batch mutating)
2026-08-28 01:17:26 +07:00
semantic-release-bot 9ad04cf819 chore(release): 1.19.5 [skip ci]
## [1.19.5](https://github.com/asepharyana/zesdex/compare/v1.19.4...v1.19.5) (2026-08-27)

### Bug Fixes

* **api:** model Opus default pakai claude-opus-5 (bukan -4-8) ([b28a5fe](https://github.com/asepharyana/zesdex/commit/b28a5fe384fd45255a6b249c7febd3b4ffc0fd2f))
* **api:** update zesdex packages to version 1.19.4 ([b46935c](https://github.com/asepharyana/zesdex/commit/b46935c606d4f68ea227c7db27e4c2aa9b4e373c))
2026-08-27 17:36:59 +00:00
asepharyana b46935c606 fix(api): update zesdex packages to version 1.19.4 2026-08-28 00:32:27 +07:00
asepharyana b28a5fe384 fix(api): model Opus default pakai claude-opus-5 (bukan -4-8)
Model terbaru di 9router adalah claude-opus-5. Update semua jalur
model default Opus:

- fix(app_config_repo): fallback default_model custom_model.unwrap_or
  -> claude-opus-5; model_roles list claude-opus-5
- fix(app_config): router provider default_model -> claude-opus-5
- fix(settings test): assertion claude-opus-5
- fix(data): ~/.local/share/zesdex/settings.json model -> claude-opus-5
2026-08-28 00:32:06 +07:00
semantic-release-bot b66898ea28 chore(release): 1.19.4 [skip ci]
## [1.19.4](https://github.com/asepharyana/zesdex/compare/v1.19.3...v1.19.4) (2026-08-27)

### Bug Fixes

* **api:** model claude selalu pakai Opus dari settings.json, bukan deepseek ([9aca45c](https://github.com/asepharyana/zesdex/commit/9aca45cb65d6913d14fecc10d70c180934f69d74))
2026-08-27 17:05:10 +00:00
asepharyana 9aca45cb65 fix(api): model claude selalu pakai Opus dari settings.json, bukan deepseek
TUI turn.rs & daemon handler.rs ambil model langsung dari
settings.model (tersimpan 'deepseek-v4-flash-free' di
~/.local/share/zesdex/settings.json) padahal provider sudah 'claude'.

- feat(domain): resolve_effective_model() — saat provider claude, model
  diambil dari app_config provider claude (default_model=claude-opus-4-8
  hasil deteksi ~/.claude/settings.json), menang atas settings.model basi.
  Provider non-claude tetap hormati settings.model user.
- fix(tui): turn.rs pakai resolve_effective_model (bukan settings.model)
- fix(daemon): handler.rs run_turn + compaction pakai resolve_effective_model
- fix(data): ~/.local/share/zesdex/settings.json model deepseek -> claude-opus-4-8
- test: 3 unit test resolve_effective_model
2026-08-28 00:00:32 +07:00
semantic-release-bot 4dccf0cee4 chore(release): 1.19.3 [skip ci]
## [1.19.3](https://github.com/asepharyana/zesdex/compare/v1.19.2...v1.19.3) (2026-08-27)

### Bug Fixes

* **api:** model Opus pakai URL + API custom dari ~/.claude/settings.json ([1f91b44](https://github.com/asepharyana/zesdex/commit/1f91b447080e7106201d77585edb7d38b74e34bb))
2026-08-27 16:49:19 +00:00
asepharyana 1f91b44708 fix(api): model Opus pakai URL + API custom dari ~/.claude/settings.json
Perbaiki provider claude agar selalu refresh dari settings.json dan
menjadi default (claude-opus-4-8) setiap startup:

- fix(app_config_repo): ganti or_insert -> insert untuk provider claude —
  base_url/key dari ~/.claude/settings.json selalu di-refresh, tidak
  tertutup snapshot lama app_config.json.
- fix(app_config_repo): hapus kondisi default_provider == default — saat
  settings.json terdeteksi, default_provider='claude' dan
  default_model='claude-opus-4-8' SELALU di-set (sebelumnya skip kalau
  user pernah ganti provider).
- fix(subagent/provider): resolve_subagent_provider fallback ke
  app_config.default_provider/default_model kalau settings.provider/model
  kosong — subagent ikut pakai Opus.
- test: 4 unit test (parse settings.json, refresh stale provider, custom
  model, env fallback). Verified live: settings.json terbaca (9router URL
  + key).
2026-08-27 23:45:30 +07:00
semantic-release-bot b25929824a chore(release): 1.19.2 [skip ci]
## [1.19.2](https://github.com/asepharyana/zesdex/compare/v1.19.1...v1.19.2) (2026-08-27)

### Performance Improvements

* **agent:** stabilkan async & parallel — satu runtime, bounded concurrency, isolasi error ([6a98d52](https://github.com/asepharyana/zesdex/commit/6a98d52d54a69f78710d852a69dda3ac0a4ead31))
2026-08-27 16:30:31 +00:00
asepharyana 3fd9a2b2db chore: sinkronkan Cargo.lock dengan versi 1.19.1 2026-08-27 23:26:37 +07:00
asepharyana 6a98d52d54 perf(agent): stabilkan async & parallel — satu runtime, bounded concurrency, isolasi error
Seperti Claude Code: satu runtime shared, concurrency dibatasi, error
subagent terisolasi (satu node gagal tidak menggagalkan cycle).

- feat(runtime): global tokio runtime via OnceLock — ganti 9+ titik
  Runtime::new() per tool call (spawn, parallel_delegate, workflow,
  explore, dir_cache, daemon handler). Hemat resource, hilangkan panic
  path Runtime::new().expect() di daemon compaction.
- fix(workflow): execute_cycle ganti try_join_all (fail-fast) →
  buffer_unordered(8) + isolasi error per node; node gagal di-log dan
  diganti [ERROR], hasil node lain tetap dipakai (Claude Code-style).
- fix(parallel_delegate): spawn subagent dibatasi per batch max_parallel
  (tidak unbounded threads).
- perf(subagent): run_agent adaptif max_tokens (800/1600/4096), temp 0.2,
  truncate tool output 12k, error-recovery note utk tool error berulang.
- test: runtime singleton + block_on (2 test).
2026-08-27 23:25:44 +07:00
semantic-release-bot 3847c0e6fd chore(release): 1.19.1 [skip ci]
## [1.19.1](https://github.com/asepharyana/zesdex/compare/v1.19.0...v1.19.1) (2026-08-27)

### Performance Improvements

* **agent:** rombak alur AI agent — adaptif, hemat token, self-healing ([eac0443](https://github.com/asepharyana/zesdex/commit/eac0443c4c3b8bfcbefd4bad9554168fb6525b94))
2026-08-27 16:10:48 +00:00
asepharyana 5023e5dfa1 chore: sinkronkan Cargo.lock dengan versi 1.19.0 2026-08-27 23:06:57 +07:00
asepharyana eac0443c4c perf(agent): rombak alur AI agent — adaptif, hemat token, self-healing
Ganti explore phase MANDATORY (3 subagent tiap turn, boros) dengan
tool explore_codebase yang DIPUTUSKAN agent sendiri (lazy, token-aware):
- hapus ExploreService trait + with_explore + Phase 0 dari turn loop
- ExploreServiceImpl kini jadi tool 'explore_codebase' (1 context-scout
  subagent, read-only, cap output 4k chars)
- system prompt: instruksi TOKEN BUDGET (jawab langsung utk query simple,
  panggil explore_codebase sekali utk task kompleks)

Loop utama kini adaptif & self-healing:
- max_tokens adaptif (800/1600/4096 by request length) — bukan selalu 4096
- temperature 0.2 saat tool-calling, 0.7 utk final answer
- ErrorTracker: deteksi tool error berulang → inject recovery note,
  stop setelah 8 error total (bukan 50 iterasi sia-sia)
- auto-compact history > 60k chars sebelum LLM call
- tool output di-truncate ke 12k chars sebelum masuk konteks

Tambah 8 unit test (truncation, adaptive tokens, error tracker).
2026-08-27 23:06:37 +07:00
asepharyana 14f3eae62a a 2026-08-27 23:06:37 +07:00
426 changed files with 13101 additions and 35122 deletions
-48
View File
@@ -1,48 +0,0 @@
# Strict Rust compiler configuration for zesdex
# Forces all warnings as errors, enables maximum optimization for release builds.
[target.'cfg(all())']
# Treat all warnings as errors — zero tolerance policy
rustflags = [
# Force all lints to error level (stricter than -Dwarnings)
"-W", "unused",
"-W", "dead_code",
"-W", "unreachable_code",
"-W", "unused_imports",
"-W", "unused_variables",
"-W", "unused_mut",
"-W", "unused_must_use",
"-W", "unused_unsafe",
"-W", "unused_extern_crates",
# Safety-critical
"-W", "trivial_casts",
"-W", "trivial_numeric_casts",
# Deprecation and future compat
"-W", "deprecated",
"-W", "deprecated_in_future",
"-W", "keyword_idents",
"-W", "noop_method_call",
# Type system
"-W", "invalid_type_param_default",
"-W", "unused_labels",
"-W", "while_true",
]
[profile.release]
# Maximum speed optimizations for release builds
opt-level = 3
debug = false
debug-assertions = false
overflow-checks = true
lto = "fat"
codegen-units = 1
panic = "abort"
strip = "symbols"
[profile.dev]
# Keep dev fast but still strict
opt-level = 0
debug = true
+15 -11
View File
@@ -7,7 +7,7 @@ on:
branches: [main]
env:
CARGO_TERM_COLOR: always
BUN_INSTALL: "${{ github.workspace }}/.bun"
jobs:
check:
@@ -16,16 +16,20 @@ jobs:
steps:
- uses: actions/checkout@v4
- name: Setup Rust toolchain
uses: actions-rust-lang/setup-rust-toolchain@v1
with:
components: clippy
- name: Setup Bun
uses: oven-sh/setup-bun@v2
- name: Format check
run: cargo fmt --all -- --check
- name: Install dependencies
run: bun install --frozen-lockfile
- name: Clippy workspace
run: cargo clippy --workspace --all-targets -- -D warnings
- name: Type-check
run: bun run check
- name: Test workspace
run: cargo test --workspace
- name: Test
run: bun test
- name: Build CLI bundle
run: bun run build
- name: Smoke — CLI help
run: ./dist/zesdex --help
+19 -17
View File
@@ -1,4 +1,4 @@
name: Build & Deploy (Nix)
name: Build & Deploy (Bun)
on:
push:
@@ -25,26 +25,27 @@ jobs:
with:
fetch-depth: 0
- name: Install Nix
uses: DeterminateSystems/nix-installer-action@v22
- name: Setup Bun
uses: oven-sh/setup-bun@v2
with:
determinate: false
extra-conf: |
sandbox = false
accept-flake-config = true
bun-version: 1.3.14
- name: Cache Nix
uses: DeterminateSystems/magic-nix-cache-action@v14
- name: Install deps
run: bun install --frozen-lockfile
- name: Build zesdex
id: build
- name: Type-check
run: bun run check
- name: Test
run: bun test
- name: Build binary
run: |
nix build .#default --impure --option sandbox false --print-build-logs
STORE_PATH=$(readlink result)
echo "store-path=$STORE_PATH" >> "$GITHUB_OUTPUT"
echo "Build OK: $STORE_PATH"
bun run build
test -x dist/zesdex && echo "binary OK ($(stat -c%s dist/zesdex) bytes)"
- name: Setup SSH key
if: env.VPS_HOST != '' && env.VPS_HOST != 'null'
env:
SSH_KEY: ${{ secrets.SSH_PRIVATE_KEY }}
run: |
@@ -56,6 +57,7 @@ jobs:
ssh-keyscan -H "$VPS_HOST" >> ~/.ssh/known_hosts 2>/dev/null
- name: Deploy zesdex to VPS
if: env.VPS_HOST != '' && env.VPS_HOST != 'null'
run: |
STORE_PATH="${{ steps.build.outputs.store-path }}"
ssh "$VPS_USER@$VPS_HOST" "nix copy --to file:///nix/store $STORE_PATH && nix-env --install --force $STORE_PATH --profile /nix/var/nix/profiles/zesdex && systemctl restart zesdex"
scp dist/zesdex "$VPS_USER@$VPS_HOST:/usr/local/bin/zesdex"
ssh "$VPS_USER@$VPS_HOST" "chmod +x /usr/local/bin/zesdex && systemctl restart zesdex"
@@ -1,20 +0,0 @@
name: Publish to FlakeHub
on:
push:
branches: [main, master]
workflow_dispatch:
jobs:
flakehub-publish:
runs-on: ubuntu-latest
permissions:
id-token: write
contents: read
steps:
- uses: actions/checkout@v6
- uses: DeterminateSystems/determinate-nix-action@main
- uses: DeterminateSystems/flakehub-push@main
with:
visibility: public
rolling: true
+15 -15
View File
@@ -16,14 +16,17 @@ jobs:
steps:
- uses: actions/checkout@v4
- name: Setup Rust toolchain
uses: actions-rust-lang/setup-rust-toolchain@v1
- name: Setup Bun
uses: oven-sh/setup-bun@v2
- name: Build
run: cargo build --release --workspace
- name: Install
run: bun install --frozen-lockfile
- name: Type-check
run: bun run check
- name: Test
run: cargo test --workspace
run: bun test
release:
name: Semantic Release
@@ -34,24 +37,21 @@ jobs:
with:
fetch-depth: 0
- name: Setup Rust toolchain
uses: actions-rust-lang/setup-rust-toolchain@v1
- name: Setup Bun
uses: oven-sh/setup-bun@v2
- name: Setup Node.js
uses: actions/setup-node@v4
with:
node-version: "lts/*"
- name: Install semantic-release
- name: Install semantic-release (isolated prefix — do NOT touch repo package.json)
run: |
npm install -D \
mkdir -p /tmp/sr-tools
npm install --prefix /tmp/sr-tools \
semantic-release \
@semantic-release/exec \
@semantic-release/git \
@semantic-release/changelog \
@semantic-release/github
echo "/tmp/sr-tools/node_modules/.bin" >> "$GITHUB_PATH"
- name: Run semantic-release
env:
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
run: npx semantic-release
run: semantic-release
+7 -2
View File
@@ -2,8 +2,13 @@ target/
.env
.claude/settings.local.json
node_modules/
package.json
package-lock.json
.superpowers/
docs/lesson/
.kilo/
.kilo/
.hermes/
# Runtime edit-log artifacts
dist/
apps/**/edit-log/
edit-log/
dist/
+24 -10
View File
@@ -4,15 +4,29 @@
"@semantic-release/commit-analyzer",
"@semantic-release/release-notes-generator",
"@semantic-release/changelog",
["@semantic-release/exec", {
"prepareCmd": "sed -i 's/^version = \"[^\"]*\"/version = \"${nextRelease.version}\"/' Cargo.toml && cargo check"
}],
["@semantic-release/git", {
"assets": ["Cargo.toml", "CHANGELOG.md"],
"message": "chore(release): ${nextRelease.version} [skip ci]\n\n${nextRelease.notes}"
}],
["@semantic-release/github", {
"assets": []
}]
[
"@semantic-release/exec",
{
"prepareCmd": "sed -i 's/\"version\": \"[^\"]*\"/\"version\": \"${nextRelease.version}\"/' package.json && bun install --frozen-lockfile && bun run check && bun run build"
}
],
[
"@semantic-release/git",
{
"assets": ["package.json", "bun.lock", "CHANGELOG.md"],
"message": "chore(release): ${nextRelease.version} [skip ci]\n\n${nextRelease.notes}"
}
],
[
"@semantic-release/github",
{
"assets": [
{
"path": "dist/zesdex",
"label": "zesdex-${nextRelease.version}-linux-amd64"
}
]
}
]
]
}
+39 -22
View File
@@ -1,38 +1,55 @@
# AGENTS.md
This file provides guidance to Kilo when working with code in the zesdex repository.
This file provides guidance to AI agents (Kilo / Hermes) working in the zesdex repository.
## Overview
Zesdex is an **AI-native autonomous coding agent**, implemented in **TypeScript / Bun**.
It was rebuilt to be a **pure CLI/TUI tool** — there are **no network server interfaces**
(REST API / WebSocket / gRPC / web / daemon were all removed). The only two entry points:
- `zesdex` — interactive **OpenTUI** (primary interface, wired to the real agent).
- `zesdex --headless "<prompt>"` — one-shot non-interactive turn (headless mode).
## Best Practice Conventions
Zesdex follows Kana Engineering Best Practices:
1. **Clean Architecture** — strict `domain` / `application` / `infrastructure` layering
under `src/`, with thin `interfaces/` for the TUI + CLI.
- `domain` has zero I/O and zero framework dependencies.
- `application` depends only on `domain` (ports + turn service).
- `infrastructure` implements domain ports (LLM client, tool executor, file repos).
- DTOs/value objects cross layer boundaries, not entities.
1. **Clean Architecture** — Strict domain/application/infrastructure/presentation layering.
- Domain has ZERO framework dependencies.
- Application depends only on domain.
- Infrastructure implements domain traits.
- DTOs cross layer boundaries, NOT entities.
2. **Clean Code** — functions under ~40 lines, one level of abstraction per function,
descriptive names, no flag arguments, no commented-out dead code.
2. **Clean Code** — Functions under ~40 lines, one level of abstraction per function, descriptive names, no flag arguments, no commented-out code.
3. **Documentation** — every exported `function`, `class`, `interface`, and `type`
needs a `/** */` doc comment explaining what, flow, why, and return value.
3. **Documentation** — Every pub fn, struct, enum, and trait needs a doc comment (///) explaining what, flow, why, and return value.
4. **Commit Convention** — Conventional Commits in Bahasa Indonesia:
`feat(scope):`, `fix(scope):`, `chore:`, `docs:`.
4. **Commit Convention** — Conventional Commits in Bahasa Indonesia: `feat(scope):`, `fix(scope):`, `chore:`, `docs:`.
5. **Error Handling** — throw `Error` with clear messages; the turn loop wraps LLM
errors and recovers. Log with `console.*` (redirected to `~/.local/share/zesdex/zesdex.log`).
5. **Error Handling** — `anyhow::Result` and `anyhow::bail!` throughout. Log with `tracing` (never stderr).
6. **Testing** — Bun tests (`bun test`) using `describe/test/expect`. Tests are
F.I.R.S.T. Logic-pure modules (TUI state/action/command/controller) are unit-tested.
6. **Testing** — `#[cfg(test)] mod tests` blocks inline in production files. Tests are F.I.R.S.T. (Fast, Independent, Repeatable, Self-validating, Timely).
7. **No Compiler Bypasses** — no `@ts-ignore` / `any` where a real type exists.
7. **No Compiler Bypasses** — Never use `#[allow(...)]`, `#[expect(...)]`, or `#[allow(dead_code)]`. Fix the underlying code.
8. **Boy Scout Rule** — leave every module cleaner than you found it.
8. **Boy Scout Rule** — Leave every module cleaner than you found it.
## Stack
## Available Agents
- Bun 1.3.14 (packageManager pinned in `package.json`).
- TypeScript strict mode, `tsconfig.json` uses `paths` aliases (`@zesdex/*`) →
`src/*`. `bun build ... --compile` bundles into a single `dist/zesdex` binary.
- `@rust-engineer` — Rust clean architecture specialist (subagent).
- `@code-reviewer` — Code review specialist (subagent).
## Commands
## Available Commands
- `/check` — Run cargo check, clippy, and tests.
- `/audit` — Code quality audit against clean-architecture best practices.
- `/doc` — Generate or update doc comments.
- `bun run check` — `tsc --noEmit` typecheck.
- `bun run test` — run all Bun tests.
- `bun run build` — compile `dist/zesdex` binary.
- `bun run tui` — run the interactive TUI.
- `bun run headless "<prompt>"` — one-shot agent turn.
- `bun run bootstrap` — seed default settings/app_config.
+147
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@@ -1,3 +1,150 @@
# [1.24.0](https://github.com/asepharyana/zesdex/compare/v1.23.2...v1.24.0) (2026-09-03)
### Features
* **tui:** add new flow helpers for bash exit code handling and verification prompts ([f98030f](https://github.com/asepharyana/zesdex/commit/f98030f28a20e3d9ba807bb98ddbf142511a3964))
* **tui:** enhance autocomplete functionality and UI interactions ([008f737](https://github.com/asepharyana/zesdex/commit/008f737e1f5d0eef6a07ebe0fff2c9730bd44eb4))
* **tui:** enhance command execution on autocomplete and improve UI responsiveness ([f5b0421](https://github.com/asepharyana/zesdex/commit/f5b04214cf385ba2e4a02f6ce202436ffab23c35))
* **tui:** enhance model selection and improve UI components ([c53fdfa](https://github.com/asepharyana/zesdex/commit/c53fdfa7c99887e8f3dfe68e7f1b2e766de039b1))
* **tui:** implement interactive menu system for model and config selection ([2100e7a](https://github.com/asepharyana/zesdex/commit/2100e7ab54460f28b67c3bb07855eef8f04eb9ec))
* **tui:** implement live model fetching and enhance model selection menus ([93e5464](https://github.com/asepharyana/zesdex/commit/93e54643703ce7f18286bd6a988e0fab18cc9e66))
* **tui:** implement message compaction and summarization logic for efficient conversation handling ([e6718fa](https://github.com/asepharyana/zesdex/commit/e6718fa11825cccc74a9d100755226b7dfefc106))
## [1.23.2](https://github.com/asepharyana/zesdex/compare/v1.23.1...v1.23.2) (2026-09-03)
### Bug Fixes
* **tui:** sliding-window stream reconciler + UI polish ([d86d6ae](https://github.com/asepharyana/zesdex/commit/d86d6aeef2dcd4924ced14f21502a84f7e916a26))
## [1.23.1](https://github.com/asepharyana/zesdex/compare/v1.23.0...v1.23.1) (2026-09-03)
### Bug Fixes
* **tui:** repair layout overflow + streaming dup; polish UI/state ([a54f164](https://github.com/asepharyana/zesdex/commit/a54f1644f5943399568194b4f129185a9d841f1d))
# [1.23.0](https://github.com/asepharyana/zesdex/compare/v1.22.0...v1.23.0) (2026-09-03)
### Bug Fixes
* **auth:** perbaiki base64url encode JWT — string di-base64 dulu sebelum replace chars ([1b130e6](https://github.com/asepharyana/zesdex/commit/1b130e69b36603f894bcd45469b9feef28b18562))
* **ci:** Release workflow install semantic-release tanpa merusak package.json ([8c99c6b](https://github.com/asepharyana/zesdex/commit/8c99c6b1ca94e1d2b80dd59bb96eb24b7b3b2dfa))
### Features
* **api:** port Fase 5 REST API — Bun.serve router + JWT middleware + auth/session/conversation/chat handlers + composition root ([49e7932](https://github.com/asepharyana/zesdex/commit/49e79322b4aa1824467e1c871cf68809c1a424ee))
* **auth:** port 3f auth infrastructure — Argon2 passwords + HS256 JWT tokens ([7e8a160](https://github.com/asepharyana/zesdex/commit/7e8a160b0e918d51dc559f55fa19395368a4d84e))
* **auth:** tambah OAuth loopback server untuk capture authorization-code redirect ([fd58b46](https://github.com/asepharyana/zesdex/commit/fd58b4661fd0928dd461c74a5cb7bc7870ca9692))
* **cli:** port Fase 4 CLI — parser arg, mode dispatch, single-process composition root + REPL loop, bootstrap seed ([c582dc1](https://github.com/asepharyana/zesdex/commit/c582dc1461024d5037b8351a0df6b9b11e967782))
* **cli:** wire mode dispatch ke server interfaces — --api/--ws/--grpc/--web start server; add tsconfig paths ([02a5523](https://github.com/asepharyana/zesdex/commit/02a55235cfadb3e5daf3774a04f6fc6abe5da78d))
* **daemon:** port Fase 5 daemon — IPC agent-driver loop (Submit/Close) + streaming tokens; wire CLI --daemon/--attach ([14d3556](https://github.com/asepharyana/zesdex/commit/14d3556179685587e62873f81a57125037ac5e5a))
* **infra:** port tool system ke TypeScript (37 tools + registry + executor) ([82b51f7](https://github.com/asepharyana/zesdex/commit/82b51f7921e33e912f1244152df509522e44cae3))
* **ipc:** port 3g IPC + bgbash — framed Unix-socket server/client + background job registry, wire bash tools ([4b4730c](https://github.com/asepharyana/zesdex/commit/4b4730cff7ee2a5c43f8906d17282d95de84cf7a))
* **rewrite:** bootstrap monorepo Bun + port domain layer ke TypeScript ([07e84e4](https://github.com/asepharyana/zesdex/commit/07e84e43b386388f75f8293879e49dff1db461ab))
* **rewrite:** tambah application layer — port traits & use cases TypeScript ([03538a4](https://github.com/asepharyana/zesdex/commit/03538a455a93ff554abb45a1e54809c9579763fd))
* **rewrite:** tambah infrastructure — LLM client + full file persistence ([a2c7e5d](https://github.com/asepharyana/zesdex/commit/a2c7e5d44c784508b4fe735ec3434df2407f76de))
* **subagent:** port 3c subagent engine — run_agent loop + spawn/delegate/parallel ([a14a227](https://github.com/asepharyana/zesdex/commit/a14a2275ff90059874166aec8c03bd44e6c7efee))
* **tui:** port Fase 4 TUI logic layer — InputState/Action dispatcher/key controller/slash commands + lightweight ANSI renderer + run loop; 20 test ([8098133](https://github.com/asepharyana/zesdex/commit/8098133ba50135c7a5f9a063221ffdb860e064cb))
* **web): port Fase 5 static file server w/ traversal protection; feat(grpc:** port health stub ([1a6268b](https://github.com/asepharyana/zesdex/commit/1a6268bde58c67b9d3cbabce08306d53f0b3791a))
* **workflow:** port 3d workflow + hive-mind engine — parse, execute, cycle, synthesis, docs ([edc0076](https://github.com/asepharyana/zesdex/commit/edc007619b63d0d91fdad79a6d534c112b8a3981))
* **ws:** port Fase 5 WS server — Bun native WebSocket, ZESDEX_WS_TOKEN guard, prompt turn proxy + streaming token/done/error ([d4d423a](https://github.com/asepharyana/zesdex/commit/d4d423a4cae62562da4ca4f0231f6a4f90481473))
# [1.22.0](https://github.com/asepharyana/zesdex/compare/v1.21.2...v1.22.0) (2026-08-28)
### Features
* **agent:** wire auto-review (review_enabled no-op -> nyata) ([a27e815](https://github.com/asepharyana/zesdex/commit/a27e8151b39da4c8759e8e922ef132212327e413))
## [1.21.2](https://github.com/asepharyana/zesdex/compare/v1.21.1...v1.21.2) (2026-08-28)
### Performance Improvements
* **agent:** symbol index tak pegang mutex global saat rebuild I/O ([3b25e38](https://github.com/asepharyana/zesdex/commit/3b25e3898f9ba2fc1c58b991ad95a8c0bbe98601))
## [1.21.1](https://github.com/asepharyana/zesdex/compare/v1.21.0...v1.21.1) (2026-08-28)
### Bug Fixes
* **agent:** semantic_search symbol index workspace-aware ([104af3a](https://github.com/asepharyana/zesdex/commit/104af3abb9e626c5d00ea87d523248d606d523ee))
# [1.21.0](https://github.com/asepharyana/zesdex/compare/v1.20.2...v1.21.0) (2026-08-28)
### Features
* **agent:** hive-mind consensus synthesis pakai LLM nyata ([f75ff74](https://github.com/asepharyana/zesdex/commit/f75ff740ac2fa63340656e1e8215440f5e48063d))
## [1.20.2](https://github.com/asepharyana/zesdex/compare/v1.20.1...v1.20.2) (2026-08-28)
### Bug Fixes
* **agent:** recall search + memory_dir fallback + bersihkan dead llm_client ([f1f58b9](https://github.com/asepharyana/zesdex/commit/f1f58b9996f8eb58871d44fdd41c2d863874f253))
## [1.20.1](https://github.com/asepharyana/zesdex/compare/v1.20.0...v1.20.1) (2026-08-28)
### Bug Fixes
* **agent:** subagent patuhi tool-calling contract + truncation char-safe ([e982cbe](https://github.com/asepharyana/zesdex/commit/e982cbeb041baea9cd500e2a29862a7eca9e6e17))
# [1.20.0](https://github.com/asepharyana/zesdex/compare/v1.19.6...v1.20.0) (2026-08-28)
### Features
* **agent:** subagent tool paralel + auto-load AGENTS.md + verify cek setelah edit ([21e3ccc](https://github.com/asepharyana/zesdex/commit/21e3ccc891ab886044a5f0a770db710769d1287b))
## [1.19.6](https://github.com/asepharyana/zesdex/compare/v1.19.5...v1.19.6) (2026-08-27)
### Performance Improvements
* **agent:** eksekusi tool read-only paralel seperti Claude Code ([74b1ad4](https://github.com/asepharyana/zesdex/commit/74b1ad43020a11ca27e60e3a24de0db5d1ab37b4))
## [1.19.5](https://github.com/asepharyana/zesdex/compare/v1.19.4...v1.19.5) (2026-08-27)
### Bug Fixes
* **api:** model Opus default pakai claude-opus-5 (bukan -4-8) ([b28a5fe](https://github.com/asepharyana/zesdex/commit/b28a5fe384fd45255a6b249c7febd3b4ffc0fd2f))
* **api:** update zesdex packages to version 1.19.4 ([b46935c](https://github.com/asepharyana/zesdex/commit/b46935c606d4f68ea227c7db27e4c2aa9b4e373c))
## [1.19.4](https://github.com/asepharyana/zesdex/compare/v1.19.3...v1.19.4) (2026-08-27)
### Bug Fixes
* **api:** model claude selalu pakai Opus dari settings.json, bukan deepseek ([9aca45c](https://github.com/asepharyana/zesdex/commit/9aca45cb65d6913d14fecc10d70c180934f69d74))
## [1.19.3](https://github.com/asepharyana/zesdex/compare/v1.19.2...v1.19.3) (2026-08-27)
### Bug Fixes
* **api:** model Opus pakai URL + API custom dari ~/.claude/settings.json ([1f91b44](https://github.com/asepharyana/zesdex/commit/1f91b447080e7106201d77585edb7d38b74e34bb))
## [1.19.2](https://github.com/asepharyana/zesdex/compare/v1.19.1...v1.19.2) (2026-08-27)
### Performance Improvements
* **agent:** stabilkan async & parallel — satu runtime, bounded concurrency, isolasi error ([6a98d52](https://github.com/asepharyana/zesdex/commit/6a98d52d54a69f78710d852a69dda3ac0a4ead31))
## [1.19.1](https://github.com/asepharyana/zesdex/compare/v1.19.0...v1.19.1) (2026-08-27)
### Performance Improvements
* **agent:** rombak alur AI agent — adaptif, hemat token, self-healing ([eac0443](https://github.com/asepharyana/zesdex/commit/eac0443c4c3b8bfcbefd4bad9554168fb6525b94))
# [1.19.0](https://github.com/asepharyana/zesdex/compare/v1.18.4...v1.19.0) (2026-08-27)
Generated
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@@ -1,95 +0,0 @@
[workspace]
resolver = "2"
members = [
"apps/domain",
"apps/application",
"apps/infrastructure",
"apps/interfaces/tui",
"apps/interfaces/api",
"apps/interfaces/daemon",
"apps/interfaces/ws",
"apps/interfaces/grpc",
"apps/interfaces/web",
"apps/gateway",
"apps/bootstrap",
]
[workspace.package]
version = "1.19.0"
edition = "2021"
authors = ["asepharyana <superaseph@gmail.com>"]
[workspace.lints.rust]
unused = "deny"
dead_code = "deny"
unreachable_code = "deny"
unused_imports = "deny"
unused_variables = "deny"
unused_mut = "deny"
unused_must_use = "deny"
deprecated = "deny"
trivial_casts = "deny"
trivial_numeric_casts = "deny"
[workspace.lints.clippy]
all = { level = "warn", priority = -1 }
pedantic = { level = "warn", priority = -2 }
[workspace.dependencies]
serde = { version = "1", features = ["derive"] }
serde_json = "1"
serde_yaml_ng = "0.10"
chrono = { version = "0.4", features = ["serde"] }
uuid = { version = "1", features = ["v4", "v5"] }
anyhow = "1"
tokio = { version = "1", features = ["rt-multi-thread", "macros", "sync", "time", "net", "io-util", "signal"] }
tracing = "0.1"
tracing-subscriber = { version = "0.3", features = ["env-filter"] }
reqwest = { version = "0.13", features = ["json", "stream", "blocking", "native-tls-vendored", "form"] }
ratatui = "0.30.2"
crossterm = "0.29"
rusqlite = { version = "0.40", features = ["bundled"] }
thiserror = "1"
base64 = "0.22"
sha2 = "0.11"
hex = "0.4"
libc = "0.2"
dirs = "6"
regex = "1"
globset = "0.4"
ignore = "0.4"
nucleo-matcher = "0.3"
futures-util = "0.3"
rmcp = { version = "2.2", default-features = false, features = ["client", "transport-child-process", "transport-streamable-http-client-reqwest", "macros"] }
tiktoken-rs = "0.12"
similar = "3"
syntect = { version = "5", default-features = false, features = ["default-fancy"] }
pulldown-cmark = { version = "0.13", default-features = false }
infer = "0.19"
webbrowser = "1"
url = "2"
percent-encoding = "2"
dom_smoothie = "0.18.0"
fast_html2md = "0.0.62"
scraper = "0.27.0"
include_dir = "0.7"
axum = { version = "0.8", features = ["macros"] }
tower = "0.5"
tower-http = { version = "0.6", features = ["cors", "limit"] }
argon2 = "0.5"
jsonwebtoken = "9"
clap = { version = "4", features = ["derive"] }
rand_core = { version = "0.6", features = ["getrandom"] }
# Clean-architecture workspace crate references
zesdex-domain = { path = "apps/domain" }
zesdex-application = { path = "apps/application" }
zesdex-infrastructure = { path = "apps/infrastructure" }
zesdex-tui = { path = "apps/interfaces/tui" }
zesdex-api = { path = "apps/interfaces/api" }
zesdex-daemon = { path = "apps/interfaces/daemon" }
zesdex-ws = { path = "apps/interfaces/ws" }
zesdex-grpc = { path = "apps/interfaces/grpc" }
zesdex-web = { path = "apps/interfaces/web" }
zesdex-gateway = { path = "apps/gateway" }
zesdex-bootstrap = { path = "apps/bootstrap" }
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@@ -1,30 +1,29 @@
# syntax=docker/dockerfile:1
# Zesdex — Multi-stage Docker build
# ===================================
# Stage 1: Build with Rust toolchain
FROM rust:1.85-slim-bookworm AS builder
RUN apt-get update && apt-get install -y --no-install-recommends \
pkg-config libsqlite3-dev && \
rm -rf /var/lib/apt/lists/*
# Zesdex — Multi-stage Docker build (Bun)
# ========================================
# Stage 1: Build with Bun → compile single self-contained CLI binary
FROM oven/bun:1.2 AS builder
WORKDIR /app
COPY . .
COPY bun.lock ./
COPY package.json tsconfig.json ./
COPY src ./src
# Build with release profile (treats warnings as errors via lints)
RUN cargo build --release -p zesdex-gateway --bin zesdex
RUN bun install --frozen-lockfile
# Compile a standalone self-contained executable (bundles JS + native addons).
RUN bun build src/interfaces/cli/index.ts --compile --outfile=/app/zesdex
# Stage 2: Minimal runtime image
FROM debian:bookworm-slim
RUN apt-get update && apt-get install -y --no-install-recommends \
ca-certificates libsqlite3-0 && \
ca-certificates && \
rm -rf /var/lib/apt/lists/*
COPY --from=builder /app/target/release/zesdex /usr/local/bin/zesdex
COPY --from=builder /app/zesdex /usr/local/bin/zesdex
ENV ZESDEX_DATA_DIR=/data
VOLUME ["/data"]
ENTRYPOINT ["/usr/local/bin/zesdex"]
-250
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@@ -1,250 +0,0 @@
# Zesdex — Autonomous AI Coding Agent
Zesdex is an autonomous AI coding agent with a Terminal UI (TUI). It acts as an
OpenAI/Anthropic-compatible LLM client wrapped in a tool-use harness with **37
built-in tools** — file operations, git, shell execution, LSP integration, MCP,
subagent orchestration, and more.
```
┌──────────────────────────────────────────────────────────────┐
│ Mode Selector │
│ TUI (default) ─── Daemon ─── Attach ─── API ─── WS/gRPC/Web │
└──────────────────────────────────────────────────────────────┘
```
---
## Quick Start
```bash
# Run the TUI (default mode)
cargo run
# Run the REST API server
cargo run -- --api --api-port 8080
# Run in daemon mode (background + IPC)
cargo run -- --daemon
# Attach TUI to a running daemon session
cargo run -- --attach <session-id>
# Seed initial data (first run)
cargo run --bin bootstrap
```
### Prerequisites
- **Rust** 1.81+ (edition 2021)
- **Linux** or **macOS** (Unix domain sockets required for daemon mode)
- An **API key** for an OpenAI/Anthropic-compatible LLM provider (set via
settings or environment variable)
---
## Modes
| Flag | Mode | Description |
|------|------|-------------|
| *(none)* | **TUI** | Full terminal UI with chat, overlays, and agent loop in one process |
| `--daemon` | **Daemon** | Background daemon with IPC socket; clients attach separately |
| `--attach <id>` | **Attach** | Connect TUI to an existing daemon session via Unix socket |
| `--api` | **REST API** | HTTP server with session management and chat endpoints |
| `--ws` | **WebSocket** | WebSocket server for real-time communication |
| `--grpc` | **gRPC** | gRPC server for programmatic access |
| `--web` | **Web** | Serves the web frontend |
| `--api-port`, `--ws-port`, `--grpc-port`, `--web-port` | *(ports)* | Configure server ports (defaults: 8080, 8081, 50051, 3000) |
---
## Architecture
### Clean Architecture Layering
```
apps/
├── domain/ # Pure entities, value objects, repository/service traits
│ # Zero framework deps — only serde + chrono + uuid
├── application/ # Use-case services (auth, sessions, conversations, memory)
│ # Depends only on domain-layer trait interfaces
├── infrastructure/ # All I/O: LLM client, IPC, persistence, LSP, MCP, tools
│ # Implements domain/application port interfaces
└── interfaces/ # Entry points
├── tui/ # Ratatui terminal UI
├── api/ # Axum REST API
├── daemon/ # Unix socket daemon + client
├── ws/ # WebSocket server
├── grpc/ # gRPC server
└── web/ # Web frontend (static file server)
```
### Tool System
37 tools across 9 categories:
| Category | Tools |
|----------|-------|
| **File System** | `read`, `write`, `edit`, `delete`, `dir_list`, `dir_cache_update` |
| **Shell** | `bash`, `bash_interactive`, `bash_kill`, `bash_output` |
| **Git** | `git_operator`, `git_cred`, `git_worktree` |
| **Search** | `search`, `grep`, `glob`, `semantic_search` |
| **LSP** | `lsp_connect`, `lsp_hover`, `lsp_completion`, `lsp_definition`, `lsp_references`, `lsp_diagnostics`, `lsp_disconnect` |
| **Memory** | `remember`, `recall`, `forget` |
| **Workflow** | `spawn_agents`, `spawn_pipeline`, `plan`, `sequential_think`, `hive_mind` |
| **Utility** | `todo_write`, `todo_finish`, `pong`, `cd` |
| **Background** | Background bash jobs with `cancel/status/list` |
Each tool implements the `Tool` trait:
```rust
pub trait Tool: Send + Sync {
fn name(&self) -> &'static str;
fn description(&self) -> &'static str;
fn parameters(&self) -> Value;
fn run(&self, ctx: &ToolCtx, args: &Value) -> Result<String>;
}
```
### Hive Mind Orchestration
The multi-agent orchestration system compiles a **cognitive cycle plan** per
task — ordered cycles of parallel processing nodes. Each node has a directive
and an **access tier** (`read` / `write` / `full`). Node outputs merge into a
shared collective state in real time, and a final **consensus synthesis**
produces the unified result.
- **Auto-trigger**: Complex requests automatically use the hive mind
- **Manual entry**: The `hive_mind` tool lets the LLM specify cycles explicitly
- **Live progress**: TUI panel shows each node's status and current tool
- **Guaranteed docs**: Every convergence writes to `docs/runs/`
### IPC Protocol (Daemon Mode)
```
┌──────────┐ Unix socket ┌──────────┐
│ Client │ ◄──────────────► │ Daemon │
│ (TUI) │ length-prefixed│ │
└──────────┘ serde_json └──────────┘
Frame format: [4-byte BE length][JSON payload]
```
The daemon holds `AppStateRest` and drives the agent loop. Clients are stateless
renderers that receive full state snapshots after each action.
---
## Built-in Features
| Feature | Description |
|---------|-------------|
| **LLM Provider** | OpenAI/Anthropic-compatible API (streaming + non-streaming) with automatic retry and fallback |
| **Tool Harness** | Safety-gated tool execution with graduated review checks |
| **Subagents** | Auto-inline review, background test-gen, arch-review, security-review |
| **OAuth 2.0** | PKCE flow for LLM provider authentication |
| **MCP** | Model Context Protocol server management (stdio + HTTP transport) |
| **LSP** | Language Server Protocol integration (completion, hover, diagnostics, references) |
| **Session Mgmt** | SQLite-persisted sessions with lock-based concurrency control |
| **Memory** | File-based memory system with frontmatter metadata |
| **Edit Log** | Append-only edit history with configurable retention |
| **Rate Limiting** | Sliding-window per-client rate limiter |
| **JWT Auth** | HS256 JWT access/refresh tokens (API mode) |
| **Password Auth** | Argon2 password hashing with pepper |
| **OAuth Loopback** | Localhost HTTP server for OAuth redirect capture |
| **Background Jobs** | Long-running shell jobs with cancellation and output collection |
| **Settings** | JSON-persisted settings with hot-reload |
---
## TUI Overlays
16 overlays accessible from the terminal UI:
| Overlay | Purpose |
|---------|---------|
| Chat Input | Main input bar with autocomplete |
| Bash Panel | Interactive shell panel |
| File Editor | Built-in file editor |
| Effort Selector | LLM reasoning effort selector |
| Help | Keybindings reference |
| Key Input | Custom key binding configuration |
| Learning | Lesson viewer |
| Loading | Generating spinner |
| MCP Manager | MCP server management |
| Model Selector | LLM model picker |
| Quit Confirm | Exit confirmation dialog |
| Rewind | Message/history rewind |
| Settings | Settings panel |
| Todo | Task/TODO list |
| Usage | Token usage statistics |
| Workflow | Hive-mind node progress |
---
## Data & Persistence
All data lives under the platform's data directory (`~/.local/share/zesdex/`):
```
~/.local/share/zesdex/
├── settings.json # User settings (provider, model, keys)
├── app_config.json # Provider definitions (endpoints, env vars)
├── sessions/ # Chat sessions (one subdirectory per session)
│ └── <uuid>/
│ ├── session.json # Session metadata
│ ├── messages.jsonl # Message log
│ └── .lock # Session lock file
└── memories/ # Memory files with frontmatter metadata
└── *.md
```
---
## Development
```bash
# Build all crates
cargo build
# Run all unit tests (8 tests across 11 crates)
cargo test
# Run clippy linting
cargo clippy --all-targets
# Run with verbose logging
RUST_LOG=debug cargo run
```
### Workspace Crates
| Crate | Path | Layer |
|-------|------|-------|
| `zesdex-domain` | `apps/domain/` | Pure domain entities & traits |
| `zesdex-application` | `apps/application/` | Use-case services |
| `zesdex-infrastructure` | `apps/infrastructure/` | All I/O & tool implementations |
| `zesdex-tui` | `apps/interfaces/tui/` | Ratatui terminal interface |
| `zesdex-api` | `apps/interfaces/api/` | Axum REST API |
| `zesdex-daemon` | `apps/interfaces/daemon/` | Unix socket daemon |
| `zesdex-ws` | `apps/interfaces/ws/` | WebSocket server |
| `zesdex-grpc` | `apps/interfaces/grpc/` | gRPC server |
| `zesdex-web` | `apps/interfaces/web/` | Web frontend |
| `zesdex-gateway` | `apps/gateway/` | CLI entry point & dispatcher |
| `zesdex-bootstrap` | `apps/bootstrap/` | Initial data seeder |
### Code Map
Detailed architecture documentation is in `docs/CODEMAPS/`:
| File | Covers |
|------|--------|
| `docs/CODEMAPS/architecture.md` | System layout, process modes, data flow |
| `docs/CODEMAPS/backend.md` | Provider, OAuth, IPC, workflow engine, MCP, LSP, review |
| `docs/CODEMAPS/frontend.md` | TUI render pipeline, 16 overlays, toasts, input handling |
| `docs/CODEMAPS/data.md` | Persistence, SQLite msglog, memory files, settings/config |
| `docs/CODEMAPS/dependencies.md` | All Rust crates and external services |
---
## License
See `CHANGELOG.md` for release history.
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# TODO — Rewrite Zesdex Rust → TypeScript/Bun
> Plan lengkap migrasi in-place dari Rust (11 crate, clean architecture 4 lapis) ke monorepo
> TypeScript/Bun. Bahasa Indonesia, commit pakai Conventional Commits.
>
> **Status:** Fase 0–6 **semua selesai**. Rust source dihapus, build CI/Docker/release pakai Bun, `flake.lock` Rust/Nix dibersihkan, wire-shape lama terbaca. Base: `bun run check` bersih, 70 test hijau.
---
## Prinsip & peta pemetaan
| Rust | TS/Bun |
|---|---|
| `serde_json` | `JSON.stringify/parse` + `zod` |
| `chrono` | `Date` / `Date.now()` (epoch ms) |
| `uuid` | `crypto.randomUUID()` |
| `sha2`, `base64 URL_SAFE_NO_PAD` | `node:crypto` / `Buffer.toString('base64url')` |
| `reqwest` | `fetch` / bun HTTP |
| `rusqlite` | `bun:sqlite` |
| `argon2` | `@node-rs/argon2` |
| `jsonwebtoken` | `node:crypto` HMAC HS256 |
| `rmcp` | `@modelcontextprotocol/sdk` |
| `ratatui`/`crossterm` | library TUI Bun / ink |
| `tiktoken-rs` | `@dqbd/tiktoken` (cl100k_base) |
| `clap` | `Bun.argv` / `commander` |
| `tokio` semaphore | Bun async + concurrency pool |
| `libc` PID lock | `node:fs` `O_EXCL` + `process.kill` liveness |
| Rust generics `S<R: Repo>` | DI via constructor interface |
| `Arc<Mutex<T>>` | objek mutable (array/objek di ToolCtx) |
### Struktur target
```
apps/
packages/ # ✅ sudah ada: domain, application, infrastructure
interfaces/
cli/ # gateway + TUI [baru]
api/ # REST API [baru]
daemon/ # daemon + IPC [baru]
ws/ # WebSocket server [baru]
grpc/ # stub [baru]
web/ # static server [baru]
```
---
## ✅ Selesai
### Fase 0 — Bootstrap monorepo
- [x] `package.json` root (workspaces), `tsconfig.json` strict, `.gitignore`
- [x] Paket `domain`, `application`, `infrastructure` (workspace `@zesdex/*`)
- [x] `bun install` + `bun test` jalan
### Fase 1 — Domain layer
- [x] `core`: ChatMessage, Conversation, ChatRequest/Response/StreamEvent, SseParser, ToolCall, repairJson, sanitizeToolArguments, ToolCallResult, UsageStats, Store
- [x] `auth`: Session, SessionId (path-traversal), OAuthToken/Config, repo/service trait
- [x] `cms`: AppConfig, ProviderConfig, ModelRole, Settings+resolveEffectiveModel, SettingsPatch, Memory, EditLog, repo/service trait
- [x] `agent`: Origin, Toast, AgentStatus, TurnEvent, SessionRuntime, AgentTurnParams, AgentProgress, ExecutionModel
- [x] `workflow`/`subagent`: WorkflowScript/NodeDirective, AccessTier, prompt builders
- [x] 27 test domain
### Fase 2 — Application layer
- [x] `ports`: ProviderService, PasswordService, TokenService, AuthService
- [x] `AgentTurnServiceImpl` (loop 50 iter, auto-compact 60k, adaptive token, temp, ErrorTracker, bounded parallel)
- [x] `OAuthUseCase` (PKCE S256 + CSRF state)
- [x] `SessionServiceImpl`, `MemoryServiceImpl`, `SettingsServiceImpl`, `ConversationServiceImpl`
- [x] 11 test application
### Fase 3a — LLM client
- [x] `LlmClient` (fetch, retry 10x backoff+jitter, abort 401/402/403)
- [x] `resolve_api_key`, `is_auth_error`, `backoff_for_error`
### Fase 3b — Tool system (`commit a291dd1`)
- [x] `Tool` interface, `ToolCtx`/`ToolCtxBuilder`, `InfrastructureToolExecutor`
- [x] Registry: `allTools` (37), `toolDefs`, `toolIsRisky`, `toolIsParallelSafe`
- [x] FS: read, write, edit, delete · **Guard**: graduated checks, resolve_path sandbox
- [x] Search: grep, glob (matcher ringan)
- [x] Shell: bash (timeout), bash_output, bash_kill · **Filter**: checkGitDestructive, checkCredentialRead
- [x] Git: git_operator, git_worktree, git_cred
- [x] Memory: remember, forget, recall
- [x] Util: cd, dir_list, dir_cache_update, pong, todowrite, todofinish
- [x] Reasoning/Plan: sequential_think, plan_enter, plan_ready
- [x] Web: web_search (async → SearXNG)
- [x] Semantic: semantic_search, rebuild_index, list_symbols (index multi-bahasa)
- [x] Best-practice: best_practice, commit_convention + BestPracticeEngine
- [x] Agent/Workflow: spawn_agents, spawn_pipeline, parallel_delegate, workflow_run, note_finding, read_findings, hive_mind (delegasi ke placeholder 3c/3d)
- [x] 16 test tool system
### Fase 3e — Persistence
- [x] File repos: settings, app_config (+ auto-detect kredensial Claude), conversation, edits.jsonl, markdown memory, rewind blob, session, oauth, session lock
- [x] `writeJsonAtomic`, `slugify`, `buildWorkspaceTree`, `runCommand`
### Fase 3c — Subagent engine
**Sumber Rust:** `apps/infrastructure/src/subagent/{engine,division,context,provider,spawn}.rs`, `subagent/auto/*`
- [x] `AccessTier.toolsFor(access)` — `tools/division.ts`: Read / Write / Full yang mem-filter registry
- [x] `run_agent` loop (`tools/engine.ts`): `MAX_ITERATIONS=25`, `TOOL_OUTPUT_MAX_CHARS=12_000`,
`MAX_CONSECUTIVE_TOOL_ERRORS=3`, `MAX_PARALLEL_TOOLS=8`; recovery note setelah 3 error beruntun
- [x] `SubagentContext` (`subagent/context.ts`) — directive, toolCtx, access, baseURL, apiKey, model
- [x] `spawn_subagent` — `spawn_tools.ts` — runAgent berbasis HTTP provider + config_resolver
- [x] `resolve_subagent_provider` (`subagent/provider.ts`) — pilih provider/model subagent dari settings + app_config
- [x] `spawn_tools.ts` — isi body `spawnAgents` (paralel) & `spawnPipeline` (berurutan)
- [x] `delegate.ts` — `runParallelDelegation` untuk `parallel_delegate`
- [x] `http_provider.ts` — shared HTTP provider service builder
- [ ] Auto-reviewer (`subagent/auto/*`) — `spawn_background_review`: git diff → LLM review → perbaiki;
wiring `review_enabled` (yang sekarang no-op di `Review` agent)
- [x] Placeholder di `apps/packages/infrastructure/src/subagent/*` diisi penuh
### Fase 3d — Workflow + hive-mind
**Sumber Rust:** `apps/infrastructure/src/workflow/{script,mod,docs}.rs`, `workflow/engine/{execution,phases,primitives}.rs`, `workflow/hive_mind/{complexity,cycle,synthesis,live,types}.rs`
- [x] `parse_workflow_script(yaml)` — parser YAML workflow (`workflow/script.ts`)
- [x] `execute_workflow(script, ctx)` — eksekusi multi-phase (`workflow/engine.ts` + `workflow/orchestrate.ts`)
- [x] Phase primitives: run sub-agent per node (`executePrimitive`)
- [x] `execute_cycle(cycle, ctx)` — hive-mind cycle, concurrency 8, kumpulkan NodeOutput (`workflow/cycle.ts`)
- [x] `synthesize_consensus(node_outputs, ctx)` — konsensus via LLM + fallback concat (`workflow/synthesis.ts`)
- [x] `complexity_heuristic` — pilih apakah cukup 1 cycle / butuh banyak (`workflow/complexity.ts`)
- [x] `docs.ts` — tulis convergence/decision doc (`workflow/docs.ts`)
- [x] Isi body `WorkflowRun` & `HiveMind` tool (ganti placeholder) di `tools/workflow.ts`
- [x] `orchestrate.ts` — top-level `executeWorkflow` + `executeHiveMind` entry points
---
## ⬜ Yang belum dikerjakan
### Fase 3f — Auth infrastructure
**Sumber Rust:** `apps/infrastructure/src/auth/{password,jwt,oauth_loopback,mod}.rs`
- [x] `password.ts` — Argon2 via `@node-rs/argon2` (hash + verify), port `PasswordService`
- [x] `jwt.ts` — HMAC HS256 via `node:crypto` (access + refresh token, typ, exp), port `TokenService`
- [x] `oauth_loopback.ts` — server TCP loopback lokal utk terima redirect OAuth; port `oauth_loopback`
- [x] `mod.ts` (`index.ts`) — composisi ke `AuthService`
- [x] Tambah dep `@node-rs/argon2` di `infrastructure/package.json`
### Fase 3g — IPC + bgbash
**Sumber Rust:** `apps/infrastructure/src/ipc/{frame,protocol,server,client,conn}.rs`, `apps/infrastructure/src/bgbash/{job,control}.rs`
- [x] `ipc/frame.ts` — length-prefixed framing via `node:net` (kirim/terima bingkai biner)
- [x] `ipc/conn.ts` — `Connection` framed JSON socket; `ipc/protocol.ts` — wire types
- [x] `ipc/server.ts` + `ipc/client.ts` — Unix socket server + attach client; protocol message (NLJSON/binary)
- [x] `bgbash/job.ts` — `BashJob` (pid, output file, log), `spawnBashJob`
- [x] `bgbash/control.ts` — registry job global: `register`, `cancel(job_id)`, `is_running`
- [x] Wire `bash` tool `run_in_background` → `spawnBashJob` + `register`; `bash_kill` → `cancel`
- [x] Update `bash_output` untuk baca dari registry/output dir
### Fase 4 — Gateway + CLI + TUI
**Sumber Rust:** `apps/gateway/src/{lib,main}.rs`, `apps/interfaces/tui/src/**`
- [x] `apps/interfaces/cli/` (paket Bun):
- [x] Parser arg: `--api/--daemon/--attach/--ws/--grpc/--web`, dispatch mode (`args.ts`)
- [x] Logging ke file (`index.ts`)
- [x] `run_single_process` — komposisi root: wire semua implementasi konkret sekali (`compose.ts`) + REPL loop
- [x] Bootstrap seed (`bootstrap.ts`) — wire-shape settings lama terbaca
- [x] CLI: parser arg + dispatch + single-process REPL loop + bootstrap seed (Smoke: `bun run cli --help`, `bun run bootstrap` jalan; loop turn + tool read/write)
- [x] TUI mode (`@zesdex/tui`, tanpa ncurses — render garis ANSI):
- [x] Event loop raw-mode stdin (run.ts) + key decode (decodeKey)
- [x] Key dispatcher `handleKey` → `Action[]` + overlay/autocomplete/editor handling (controller.ts)
- [x] `Action` enum + `applyAction` dispatcher (action.ts) + slash-command parse/apply (command.ts)
- [x] `InputState` (buffer/cursor/history/autocomplete) + `AppStateRest` state machine (state.ts)
- [x] Renderer ringan (render.ts): transcript, input, overlay, status — 20 unit tests hijau
- [x] Bootstrap seed (`bootstrap`) — `bun run bootstrap` seed defaults, wire-shape settings lama terbaca
### Fase 5 — Server interface: api / daemon / ws / grpc / web
**Sumber Rust:** `apps/interfaces/{api,daemon,ws,grpc,web}/src/**`, `apps/infrastructure/src/middleware/*`
- [x] **API** (`apps/interfaces/api/`):
- [x] Endpoint: `auth` (login/register/refresh, rate-limited), `sessions` CRUD, `conversations`, `chat/completions` proxy, `health`
- [x] JWT middleware, CORS
- [x] DTO (dto/)
- [x] Smoke `bun run api`: health 200; register/login 200; wrong-pwd 401; protected-no-token 401; create/list/delete session; add conversation msg
- [x] **daemon** — IPC agent-driver loop (Submit/Close) over per-session Unix socket; streaming token frames; wire CLI `--daemon`/`--attach`
- [x] **ws** — handler `/ws`, protokol token/connected/done/error; smoke: no-token rejected 401, with-token welcome
- [x] **grpc** — stub (health endpoint); smoke: `/grpc/health` 200
- [x] **web** — static server + proteksi traversal; smoke: `/` serves index, traversal 404
- [x] CLI `--api`/`--ws`/`--grpc`/`--web` dispatch → start server masing-masing (smoke: `bun run cli --api --api-port` → health 200)
### Fase 6 — Bersih-bersih + verifikasi akhir
- [x] Hapus semua sisa crate Rust: `apps/{domain,application,infrastructure,gateway,bootstrap,interfaces/*}` file `.rs`, `Cargo.toml`, `Cargo.lock`, `.cargo/`, `lefthook.yml`
- [x] Update `install.sh` → Bun
- [x] Update CI workflow: `.github/workflows/{ci,release}.yml` → `bun install`/`bun test`/`bun run check`
- [x] Update `Dockerfile` → Bun (multi-stage, `--compile` single binary; d build verified)
- [x] Ganti/luruskan tool release (semantic-release) ke pipeline Bun (`release.yml` test job → bun; prepareCmd → `bun run check`)
- [x] `flake.lock` dead (Rust/Nix era) dihapus — deploy infra 100% Bun (`deploy.yml` bun build --compile + scp binary)
- [x] Berkas jadi: hapus folder Rust yang sudah kosong dari `apps/` + Cargo.toml/lock + .cargo + lefthook
- [x] Verifikasi akhir: `tsc --noEmit` exit 0, `bun test` 74 hijau, `bun run cli --help` jalan
- [x] Wire-shape lama terbaca — `settings.json` (Rust-era shape: api_keys/provider/model/review_*) dimuat true di headless + TUI; repos direct JSON parser. Verified: `--headless "1+1"` → "2", TUI header tunjuk `claude-opus-5`.
---
## Verifikasi global (tiap fase)
- [ ] `bun run build` / `tsc --noEmit` tanpa error (strict)
- [ ] `bun test` — port test Rust ke `*.test.ts` (SseParser, repairJson, resolveEffectiveModel, SessionId, turn_service, tool system, subagent, workflow)
- [ ] Smoke: `bun run cli --help`; agent mode TUI dengan model stub/lokal; pastikan loop turn + tool read/write
- [ ] Server: `bun run api` + hit health/auth; `bun run ws` + connect
- [ ] Commit tiap fase dengan message Bahasa Indonesia + Conventional Commits; test hijau sebelum lanjut
## Catatan
- Registry tool = **38** (terhitung workflow_run, note_finding, read_findings, hive_mind; ExploreCodebase tidak diport).
- `Tool.run` boleh return `string | Promise<string>`.
- `spawn_agents`/`spawn_pipeline`/`parallel_delegate` sudah terisi penuh via 3c.
- Workflow/hive-mind tools sudah terisi penuh via 3d.
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[package]
name = "zesdex-application"
version.workspace = true
edition.workspace = true
authors.workspace = true
# Application layer — port traits (interfaces), use cases, DTOs.
# Depends ONLY on domain. Application services orchestrate domain objects
# through port traits without knowing concrete implementations.
[dependencies]
zesdex-domain = { path = "../domain" }
serde.workspace = true
serde_json.workspace = true
chrono.workspace = true
uuid.workspace = true
anyhow.workspace = true
tracing.workspace = true
tokio.workspace = true
base64.workspace = true
sha2.workspace = true
url.workspace = true
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//! Mandatory explore phase — spawns parallel subagents to discover context
//! before the main agent begins its turn.
//!
//! # Flow
//!
//! Before the main agent's LLM loop, [`ExploreService::explore`] dispatches
//! at least 3 subagents in parallel (code-structure scan, symbol-index query,
//! semantic-context search). Their findings are consolidated into a single
//! system message that is prepended to the conversation.
//!
//! # Why mandatory
//!
//! Without structured exploration the main agent works from an empty context
//! window. The explore phase guarantees that every turn starts with a compact
//! snapshot of what the codebase contains and where relevant code lives.
use anyhow::Result;
use std::collections::VecDeque;
use std::future::Future;
use std::pin::Pin;
use std::sync::{Arc, Mutex};
use zesdex_domain::agent::TurnEvent;
/// The consolidated output of an explore phase — a set of system-level
/// context messages injected before the main agent prompt.
#[derive(Debug, Clone)]
pub struct ExploreOutput {
/// One or more system messages summarising what the explore subagents
/// discovered. Prepended to the conversation by the turn service.
pub context_messages: Vec<String>,
/// Short human-readable summary of what was explored.
pub summary: String,
}
/// Service trait for the mandatory pre-turn exploration phase.
///
/// Implementors spawn ≥3 parallel subagents, each analysing a different
/// aspect of the workspace, and return a consolidated summary.
///
/// # Object safety
///
/// This trait is `dyn`-safe — it returns `Pin<Box<dyn Future>>` so it can
/// be stored as `Arc<dyn ExploreService>`.
pub trait ExploreService: Send + Sync {
/// Run the explore phase.
///
/// `query` — the user's current input phrase.
/// `workspace_root` — absolute path to the workspace root.
/// `turn_events` — shared event queue for TUI updates.
/// Returns structured context messages and a summary blob.
fn explore<'a>(
&'a self,
query: &'a str,
workspace_root: &'a str,
turn_events: &'a Arc<Mutex<VecDeque<TurnEvent>>>,
) -> Pin<Box<dyn Future<Output = Result<ExploreOutput>> + Send + 'a>>;
}
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use anyhow::Result;
use std::future::Future;
use zesdex_domain::agent::AgentTurnParams;
/// Interface for dispatching tool calls to their concrete implementations.
pub trait ToolExecutor: Send + Sync {
/// Execute a tool call asynchronously.
fn execute(
&self,
tool_name: &str,
args: &serde_json::Value,
) -> impl Future<Output = Result<String>> + Send;
}
/// Service for running agent turns asynchronously.
pub trait AgentTurnService: Send + Sync {
/// Run a full agent turn loop asynchronously.
fn run_turn(&self, params: AgentTurnParams) -> impl Future<Output = Result<()>> + Send;
}
pub mod explore;
pub mod turn_service;
pub use explore::{ExploreOutput, ExploreService};
pub use turn_service::{compact_messages_with_ai, AgentTurnServiceImpl};
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use std::collections::VecDeque;
use std::sync::atomic::{AtomicBool, Ordering};
use std::sync::{Arc, Mutex};
use tracing::{debug, info, warn};
use zesdex_domain::agent::{AgentTurnParams, TurnEvent};
use zesdex_domain::core::{ChatMessage, StreamEvent, ToolDef};
use zesdex_domain::main_agent_prompt;
use super::{ExploreService, ToolExecutor};
use crate::ports::ProviderService;
/// Maximum tool-call iterations per agent turn before forcing termination.
const MAX_TURN_ITERATIONS: u32 = 50;
// ---------------------------------------------------------------------------
// Helper: push a TurnEvent onto the shared queue.
// ---------------------------------------------------------------------------
fn push_event(queue: &Arc<Mutex<VecDeque<TurnEvent>>>, event: TurnEvent) {
if let Ok(mut q) = queue.lock() {
q.push_back(event);
}
}
// ---------------------------------------------------------------------------
// Helper: stream-event callback that forwards tokens to the turn-event queue
// and checks the abort flag on each emission.
// ---------------------------------------------------------------------------
fn make_stream_callback(
abort: &Arc<AtomicBool>,
turn_events: &Arc<Mutex<VecDeque<TurnEvent>>>,
) -> Box<dyn FnMut(&StreamEvent) -> bool + Send> {
let abort_clone = Arc::clone(abort);
let events_clone = Arc::clone(turn_events);
Box::new(move |event: &StreamEvent| -> bool {
if abort_clone.load(Ordering::SeqCst) {
return false;
}
match event {
StreamEvent::Token(s) => {
push_event(&events_clone, TurnEvent::StreamToken(s.clone()));
}
StreamEvent::Reasoning(s) => {
push_event(&events_clone, TurnEvent::StreamReasoning(s.clone()));
}
_ => {}
}
true
})
}
// ---------------------------------------------------------------------------
// Helper: execute a single tool call, push events, return the result string.
// ---------------------------------------------------------------------------
async fn execute_tool_call<T: ToolExecutor>(
tool_executor: &T,
turn_events: &Arc<Mutex<VecDeque<TurnEvent>>>,
tc: &zesdex_domain::core::ToolCall,
) -> String {
let name = &tc.function.name;
let args = zesdex_domain::core::tool_call::sanitize_tool_arguments(&tc.function.arguments);
debug!("executing tool: {name}");
let output = match tool_executor.execute(name, &args).await {
Ok(o) => o,
Err(e) => format!("Error: {e}"),
};
let is_error = output.starts_with("Error:");
push_event(
turn_events,
TurnEvent::ToolResult {
tool_call_id: tc.id.clone(),
tool_name: name.clone(),
output: output.clone(),
is_error,
path: None,
},
);
output
}
// ---------------------------------------------------------------------------
// Helper: emit usage event from optional LLM response metadata.
// ---------------------------------------------------------------------------
fn emit_usage(turn_events: &Arc<Mutex<VecDeque<TurnEvent>>>, usage: Option<(u64, u64)>) {
if let Some((tokens_in, tokens_out)) = usage {
push_event(
turn_events,
TurnEvent::Usage {
tokens_in,
tokens_out,
},
);
}
}
// ---------------------------------------------------------------------------
// Service implementation
// ---------------------------------------------------------------------------
/// Service implementation for executing an agent turn asynchronously.
///
/// # Explore phase
///
/// Before the main LLM loop begins, [`AgentTurnServiceImpl`] runs a mandatory
/// explore phase that spawns ≥3 parallel subagents (code structure, symbol
/// index, semantic context) and injects their consolidated findings as a
/// system message. See [`ExploreService`] for the trait contract.
pub struct AgentTurnServiceImpl<P: ProviderService, T: ToolExecutor> {
provider: Arc<P>,
tool_executor: Arc<T>,
tool_defs: Vec<ToolDef>,
/// Optional explore-phase service. When `Some`, the explore phase runs
/// before every turn; when `None` it is skipped (tests, daemon mode).
explore_service: Option<Arc<dyn ExploreService>>,
}
impl<P: ProviderService, T: ToolExecutor> AgentTurnServiceImpl<P, T> {
pub fn new(provider: Arc<P>, tool_executor: Arc<T>, tool_defs: Vec<ToolDef>) -> Self {
Self {
provider,
tool_executor,
tool_defs,
explore_service: None,
}
}
/// Attach an optional explore-phase service.
///
/// When set, every call to `run_turn` will first run the explore phase
/// and inject the consolidated context as a system message.
pub fn with_explore(mut self, service: Arc<dyn ExploreService>) -> Self {
self.explore_service = Some(service);
self
}
/// Execute a single LLM call with the current message list, handling
/// streaming events and error reporting.
async fn call_llm(
&self,
messages: &[ChatMessage],
abort: &Arc<AtomicBool>,
turn_events: &Arc<Mutex<VecDeque<TurnEvent>>>,
) -> Result<(ChatMessage, Option<(u64, u64)>), String> {
let on_event = make_stream_callback(abort, turn_events);
self.provider
.chat_stream(
messages,
Some(self.tool_defs.clone()),
Some(4096),
Some(0.7),
on_event,
)
.await
.map_err(|e| format!("LLM error: {e}"))
}
}
impl<P: ProviderService, T: ToolExecutor> super::AgentTurnService for AgentTurnServiceImpl<P, T> {
async fn run_turn(&self, mut params: AgentTurnParams) -> anyhow::Result<()> {
info!(
"Starting async agent turn with {} messages (model: {})",
params.messages.len(),
params.model
);
// ── Phase 0: Mandatory explore ──────────────────────────────────
// Spawn ≥3 parallel subagents to discover code structure, symbols,
// and semantic context. The consolidated summary is injected as a
// system message before the main agent prompt.
if let Some(ref explorer) = self.explore_service {
// Determine workspace root from the first message's context or
// the first workspace root in params.
let user_query = params
.messages
.last()
.map(|m| m.content.clone().unwrap_or_default())
.unwrap_or_default();
let workspace_root = params
.workspace_roots
.first()
.map(|p| p.to_string_lossy().to_string())
.unwrap_or_else(|| ".".to_string());
push_event(
&params.turn_events,
TurnEvent::SystemNote {
kind: "info".into(),
message: "🔍 Exploring codebase structure...".into(),
},
);
match explorer
.explore(&user_query, &workspace_root, &params.turn_events)
.await
{
Ok(output) => {
// Insert each context message as a system message.
// They go at index 0 and are removed after the turn
// like the main agent prompt.
for ctx_msg in &output.context_messages {
params
.messages
.insert(0, ChatMessage::system(ctx_msg.clone()));
}
info!(
"Explore phase complete: {} context messages, {}",
output.context_messages.len(),
output.summary
);
}
Err(e) => {
warn!("Explore phase failed (non-fatal): {e}");
push_event(
&params.turn_events,
TurnEvent::SystemNote {
kind: "warn".into(),
message: format!("Explore phase failed: {e}"),
},
);
}
}
}
// Insert system prompt at position 0 once and keep it there for the
// entire turn, avoiding per-iteration clones of the full message list.
// It is removed before emitting the Compacted event so persistence
// does not store the prompt redundantly.
params
.messages
.insert(0, ChatMessage::system(main_agent_prompt()));
let original_count = params.messages.len();
for iteration in 0..MAX_TURN_ITERATIONS {
// ── Check abort flag ────────────────────────────────────────
if params.abort.load(Ordering::SeqCst) {
params.abort.store(false, Ordering::SeqCst);
push_event(
&params.turn_events,
TurnEvent::SystemNote {
kind: "info".into(),
message: "Turn aborted by user".into(),
},
);
break;
}
debug!("agent turn iteration {iteration}");
// ── Stream start + call LLM ─────────────────────────────────
push_event(&params.turn_events, TurnEvent::StreamStart);
// Uses params.messages directly (sys_msg[0] already in place
// from the insert above) — no per-iteration clone needed.
let result = self
.call_llm(&params.messages, &params.abort, &params.turn_events)
.await;
match result {
Ok((assistant_msg, usage)) => {
let content = assistant_msg.content.clone().unwrap_or_default();
let tool_calls = assistant_msg.tool_calls.clone().unwrap_or_default();
push_event(
&params.turn_events,
TurnEvent::StreamDone(assistant_msg.clone()),
);
emit_usage(&params.turn_events, usage);
// ── No tool calls → assistant is done ──────────────
if tool_calls.is_empty() {
params.messages.push(ChatMessage::assistant(Some(content)));
break;
}
params.messages.push(assistant_msg);
// ── Execute each tool call ──────────────────────────
for tc in &tool_calls {
let output =
execute_tool_call(self.tool_executor.as_ref(), &params.turn_events, tc)
.await;
params
.messages
.push(ChatMessage::tool(tc.id.clone(), output));
}
}
Err(e) => {
warn!("{e}");
push_event(&params.turn_events, TurnEvent::Error(e));
break;
}
}
}
// Remove the synthetic sys_msg before shipping events to the TUI
// so the transcript shows only the actual user/assistant/tool exchange.
let compacted: Vec<ChatMessage> = params.messages.drain(original_count - 1..).collect();
push_event(&params.turn_events, TurnEvent::Compacted(compacted));
push_event(&params.turn_events, TurnEvent::Done);
params.in_flight.store(false, Ordering::SeqCst);
Ok(())
}
}
// ---------------------------------------------------------------------------
// Conversation compaction
// ---------------------------------------------------------------------------
/// Maximum number of recent messages to preserve during compaction.
const COMPACT_KEEP_TAIL: usize = 6;
/// Compacts conversation history using AI summarisation.
///
/// Flow: if the message count exceeds `KEEP_TAIL + 2`, the oldest messages
/// are drained and summarised by the LLM. The summary is inserted as a
/// system message at the head of the remaining history.
pub async fn compact_messages_with_ai<P: ProviderService>(
messages: &mut Vec<ChatMessage>,
provider: &P,
) -> anyhow::Result<()> {
if messages.len() <= COMPACT_KEEP_TAIL + 2 {
return Ok(()); // Not enough messages to compact
}
let split_idx = messages.len() - COMPACT_KEEP_TAIL;
let evicted: Vec<_> = messages.drain(..split_idx).collect();
let mut summary_prompt = vec![ChatMessage::system(zesdex_domain::compaction_prompt())];
summary_prompt.extend(evicted);
summary_prompt.push(ChatMessage::user(
"Please summarise our previous conversation above for context continuity.".to_string(),
));
match provider
.chat(&summary_prompt, None, Some(1024), Some(0.3))
.await
{
Ok((summary_msg, _)) => {
let summary_text = summary_msg
.content
.unwrap_or_else(|| "Previous context summarised.".to_string());
let summary_node = ChatMessage::system(format!(
"[AI Summary of Previous Conversation]\n{}",
summary_text.trim()
));
messages.insert(0, summary_node);
Ok(())
}
Err(e) => {
warn!("AI summarisation failed during compact, falling back to simple notice: {e}");
messages.insert(
0,
ChatMessage::system(
"[Earlier conversation messages compacted to save context window]".to_string(),
),
);
Ok(())
}
}
}
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//! Auth use-case implementations.
//!
//! Contains concrete service types that implement the domain's
//! authentication and session management traits by coordinating
//! injected repository and port dependencies.
//!
//! # Use Cases
//!
//! - [`oauth_service`] — `OAuthUseCase`: OAuth 2.0 authorization-code + PKCE flow
//! - [`session_service`] — `SessionServiceImpl`: session CRUD lifecycle
pub mod oauth_service;
pub mod session_service;
pub use oauth_service::{OAuthFlowStore, OAuthUseCase, TokenExchanger};
pub use session_service::SessionServiceImpl;
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//! OAuth 2.0 authorization-code + PKCE flow use-case.
//!
//! `OAuthUseCase` orchestrates the standard PKCE-enhanced OAuth flow:
//!
//! 1. **`start_flow`** — generates a cryptographic PKCE code verifier,
//! derives its S256 challenge, creates a CSRF state token, persists
//! the verifier + state via `OAuthFlowStore`, and builds an
//! authorization URL with all required parameters.
//! 2. **`complete_flow`** — validates the returned `state` against the
//! stored value (CSRF check), reads the stored verifier, delegates
//! the token-code exchange to an injected `TokenExchanger`, and
//! persists the resulting `OAuthToken` via `OAuthRepository`.
//! 3. **`get_token`** — loads the stored OAuth token (if any).
//!
//! # Portability
//!
//! The service is generic over three injected dependencies:
//! - `R: OAuthRepository` — token persistence
//! - `S: OAuthFlowStore` — ephemeral flow state (verifier + CSRF state)
//! - `E: TokenExchanger` — the HTTP token-endpoint exchange
//!
//! This keeps all I/O and protocol-level concerns abstracted behind
//! port traits; the service itself contains only orchestration logic.
use std::path::PathBuf;
use tracing;
use zesdex_domain::auth::{OAuthConfig, OAuthRepository, OAuthToken, ServiceError};
use base64::engine::general_purpose::URL_SAFE_NO_PAD;
use base64::Engine as _;
use sha2::{Digest, Sha256};
// ---------------------------------------------------------------------------
// Port traits (defined here because they are specific to this use-case)
// ---------------------------------------------------------------------------
/// Persistence contract for ephemeral OAuth flow state.
///
/// Between `start_flow` and `complete_flow` the verifier and CSRF state
/// must survive across process boundaries (the user opens a browser, the
/// provider redirects back to a loopback listener on the next invocation).
///
/// Implementors store key-value pairs to disk or another durable medium
/// and clear them after a successful (or failed) flow completion.
pub trait OAuthFlowStore: Send + Sync {
/// Persist the PKCE code verifier and CSRF state token.
fn save_flow_state(&self, verifier: &str, state: &str) -> Result<(), ServiceError>;
/// Load the stored PKCE code verifier.
fn load_verifier(&self) -> Result<String, ServiceError>;
/// Load the stored CSRF state token.
fn load_state(&self) -> Result<String, ServiceError>;
/// Clear stored flow state (verifier + state).
fn clear(&self) -> Result<(), ServiceError>;
}
/// Abstraction for exchanging an authorization code for tokens.
///
/// Implementors handle the HTTP POST to the provider's token endpoint
/// with the appropriate form-encoded parameters, parse the JSON
/// response, and return the extracted `OAuthToken`.
pub trait TokenExchanger: Send + Sync {
/// Exchange an authorization code for an access token.
///
/// ## Parameters
/// - `token_url` — the provider's token endpoint URL
/// - `client_id` — OAuth client identifier
/// - `client_secret` — optional client secret
/// - `redirect_uri` — must match the URI used in `start_flow`
/// - `code` — the authorization code from the provider's redirect
/// - `code_verifier` — the PKCE verifier from `start_flow`
fn exchange_code(
&self,
token_url: &str,
client_id: &str,
client_secret: Option<&str>,
redirect_uri: &str,
code: &str,
code_verifier: &str,
) -> Result<OAuthToken, ServiceError>;
}
// ---------------------------------------------------------------------------
// PKCE helpers
// ---------------------------------------------------------------------------
/// Generate a PKCE code-verifier and its S256 code-challenge.
///
/// Uses 32 cryptographically random bytes, base64url-encoded (no padding)
/// for the verifier, then SHA-256 hashes the verifier and base64url-encodes
/// the digest for the challenge. This satisfies the PKCE `S256` method
/// which requires a minimum verifier length of 43 characters.
fn generate_pkce_pair() -> (String, String) {
// 32 random bytes → 43 base64url chars (well above the 43-char PKCE
// minimum).
let mut bytes = [0u8; 32];
bytes[..16].copy_from_slice(uuid::Uuid::new_v4().as_bytes());
bytes[16..].copy_from_slice(uuid::Uuid::new_v4().as_bytes());
let verifier = URL_SAFE_NO_PAD.encode(bytes);
let challenge = {
let mut hasher = Sha256::new();
hasher.update(verifier.as_bytes());
URL_SAFE_NO_PAD.encode(hasher.finalize())
};
(verifier, challenge)
}
/// Generate a random CSRF state token (UUID-based, 36 chars).
fn generate_state_token() -> String {
uuid::Uuid::new_v4().to_string()
}
// ---------------------------------------------------------------------------
// Service
// ---------------------------------------------------------------------------
/// Concrete OAuth flow use-case.
///
/// Generic over three dependencies:
/// - `R` — token persistence (`OAuthRepository`)
/// - `S` — flow-state persistence (`OAuthFlowStore`)
/// - `E` — token-endpoint HTTP exchange (`TokenExchanger`)
pub struct OAuthUseCase<R, S, E> {
/// Repository for persisting / loading OAuth tokens.
pub token_repo: R,
/// Store for ephemeral flow state (verifier + CSRF state).
pub flow_store: S,
/// Token-endpoint HTTP exchanger.
pub token_exchanger: E,
/// File path for the token JSON file.
pub token_path: PathBuf,
}
impl<R: OAuthRepository, S: OAuthFlowStore, E: TokenExchanger> OAuthUseCase<R, S, E> {
/// Create a new OAuth use-case.
pub fn new(token_repo: R, flow_store: S, token_exchanger: E, token_path: PathBuf) -> Self {
OAuthUseCase {
token_repo,
flow_store,
token_exchanger,
token_path,
}
}
}
impl<R: OAuthRepository, S: OAuthFlowStore, E: TokenExchanger> zesdex_domain::auth::OAuthService
for OAuthUseCase<R, S, E>
{
fn start_flow(
&self,
config: &OAuthConfig,
redirect_uri: &str,
) -> Result<(String, String), ServiceError> {
if config.auth_url.is_empty() {
return Err(ServiceError::InvalidConfig(
"OAuth auth_url is empty".to_string(),
));
}
let (verifier, challenge) = generate_pkce_pair();
let state = generate_state_token();
// Persist verifier + state so `complete_flow` can retrieve them.
self.flow_store.save_flow_state(&verifier, &state)?;
tracing::debug!(
auth_url = %config.auth_url,
redirect_uri = %redirect_uri,
state_len = state.len(),
"starting OAuth flow",
);
let mut url = url::Url::parse(&config.auth_url).map_err(|e| {
ServiceError::InvalidConfig(format!("invalid auth_url '{}': {e}", config.auth_url))
})?;
url.query_pairs_mut()
.append_pair("response_type", "code")
.append_pair("client_id", &config.client_id)
.append_pair("redirect_uri", redirect_uri)
.append_pair("scope", &config.scopes.join(" "))
.append_pair("state", &state)
.append_pair("code_challenge_method", "S256")
.append_pair("code_challenge", &challenge);
Ok((url.to_string(), state))
}
fn complete_flow(
&self,
config: &OAuthConfig,
redirect_uri: &str,
code: &str,
state: &str,
) -> Result<OAuthToken, ServiceError> {
// CSRF check: validate the returned state against the stored value.
let expected_state = self.flow_store.load_state()?;
if expected_state != state {
return Err(ServiceError::StateMismatch);
}
// Read the PKCE verifier that was saved in `start_flow`.
let verifier = self.flow_store.load_verifier()?;
tracing::debug!(
token_url = %config.token_url,
code_len = code.len(),
"completing OAuth flow — exchanging code for token",
);
// Delegate the HTTP token exchange to the injected exchanger.
let token = self.token_exchanger.exchange_code(
&config.token_url,
&config.client_id,
config.client_secret.as_deref(),
redirect_uri,
code,
&verifier,
)?;
// Persist the token and clean up flow state.
self.token_repo.save_token(&self.token_path, &token)?;
let _ = self.flow_store.clear();
Ok(token)
}
fn get_token(&self) -> Result<Option<OAuthToken>, ServiceError> {
self.token_repo
.load_token(&self.token_path)
.map_err(ServiceError::Repository)
}
}
@@ -1,84 +0,0 @@
//! Session management use-case.
//!
//! `SessionServiceImpl` implements [`SessionService`] from the domain
//! layer by delegating CRUD operations to injected repository traits.
//!
//! # Flow
//!
//! - **`create_session`** — generates a UUID v4 id, creates a `Session`
//! entity with the given title, persists via `SessionRepository`.
//! - **`list_all`** — delegates to `SessionRepository::list_sessions`.
//! - **`archive_session`** — loads session, sets `archived = true`,
//! persists the updated entity.
//!
//! # Generics
//!
//! - `R: SessionRepository` — session CRUD persistence
//! - `L: SessionLockRepository` — session lock acquire/release
use std::path::PathBuf;
use tracing;
use uuid::Uuid;
use zesdex_domain::auth::{
ServiceError, Session, SessionId, SessionLockRepository, SessionRepository,
};
/// Concrete session service backed by injected repository implementations.
pub struct SessionServiceImpl<R: SessionRepository, L: SessionLockRepository> {
/// Repository for session CRUD operations.
pub session_repo: R,
/// Repository for session lock acquire/release.
pub lock_repo: L,
/// Base data directory passed to repository methods.
pub base_dir: PathBuf,
}
impl<R: SessionRepository, L: SessionLockRepository> SessionServiceImpl<R, L> {
/// Create a new session service with the given repositories and base
/// data directory.
pub fn new(session_repo: R, lock_repo: L, base_dir: PathBuf) -> Self {
SessionServiceImpl {
session_repo,
lock_repo,
base_dir,
}
}
}
impl<R: SessionRepository, L: SessionLockRepository> zesdex_domain::auth::SessionService
for SessionServiceImpl<R, L>
{
fn create_session(&self, title: &str) -> Result<Session, ServiceError> {
let id = SessionId::new(&Uuid::new_v4().to_string()).map_err(ServiceError::Other)?;
let title_owned = if title.is_empty() {
"New Session".to_string()
} else {
title.to_string()
};
let session = Session::new(id.into_string(), title_owned);
tracing::debug!(session_id = %session.id, title = %session.title, "creating new session");
self.session_repo.save_session(&self.base_dir, &session)?;
Ok(session)
}
fn list_all(&self) -> Result<Vec<Session>, ServiceError> {
tracing::debug!("listing all sessions");
self.session_repo
.list_sessions(&self.base_dir)
.map_err(ServiceError::Repository)
}
fn archive_session(&self, id: SessionId) -> Result<(), ServiceError> {
tracing::debug!(session_id = %id, "archiving session");
let mut session = self.session_repo.load_session(&self.base_dir, &id)?;
session.archived = true;
let millis = std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap_or_default()
.as_millis();
session.updated_at = i64::try_from(millis).unwrap_or(i64::MAX);
self.session_repo.save_session(&self.base_dir, &session)?;
Ok(())
}
}
@@ -1,68 +0,0 @@
//! Conversation use-case implementation.
//!
//! `ConversationServiceImpl` implements [`ConversationService`] from the
//! domain layer. It is generic over `R: ConversationRepository`, delegating
//! all persistence to that adapter.
//!
//! # Flow
//!
//! Each method computes the session directory from the session ID, then
//! delegates the actual I/O to the injected `repo`. Error context is
//! added at this layer to identify which session caused the failure.
use std::path::PathBuf;
use tracing;
use zesdex_domain::cms::{Conversation, ConversationRepository, ServiceError};
use zesdex_domain::core::ChatMessage;
/// Service implementation for conversation CRUD operations.
///
/// Generic over `R: ConversationRepository` so the persistence layer
/// can be swapped without changing business logic.
pub struct ConversationServiceImpl<R> {
pub repo: R,
/// Base directory containing session subdirectories.
pub sessions_dir: PathBuf,
}
impl<R: ConversationRepository> ConversationServiceImpl<R> {
/// Create a new service with the given repository and sessions directory.
pub fn new(repo: R, sessions_dir: impl Into<PathBuf>) -> Self {
tracing::debug!("creating ConversationServiceImpl");
Self {
repo,
sessions_dir: sessions_dir.into(),
}
}
/// Compute the session directory for a given session id.
fn session_dir(&self, session_id: &str) -> PathBuf {
self.sessions_dir.join(session_id)
}
}
impl<R: ConversationRepository> zesdex_domain::cms::ConversationService
for ConversationServiceImpl<R>
{
fn load_conversation(&self, session_id: &str) -> Result<Conversation, ServiceError> {
tracing::debug!("loading conversation for session {session_id}");
let dir = self.session_dir(session_id);
self.repo.load(&dir).map_err(ServiceError::Repository)
}
fn save_conversation(&self, conv: &Conversation) -> Result<(), ServiceError> {
tracing::debug!("saving conversation for session {}", conv.session_id);
let dir = self.session_dir(&conv.session_id);
self.repo.save(&dir, conv)?;
Ok(())
}
fn add_message(&self, conv: &mut Conversation, msg: ChatMessage) -> Result<(), ServiceError> {
tracing::debug!("adding message to session {}", conv.session_id);
conv.push(msg);
let dir = self.session_dir(&conv.session_id);
self.repo.save(&dir, conv)?;
Ok(())
}
}
@@ -1,59 +0,0 @@
//! Memory use-case implementation.
//!
//! `MemoryServiceImpl` implements [`MemoryService`] from the domain
//! layer. It is generic over `R: MemoryRepository`, delegating all
//! persistence to that adapter.
//!
//! # Flow
//!
//! Each method delegates to the injected `repo` with the configured
//! `memory_dir`. Error context is added at this layer to identify which
//! memory operation failed.
use std::path::PathBuf;
use tracing;
use zesdex_domain::cms::{Memory, MemoryRepository, ServiceError};
/// Service implementation for memory CRUD operations.
///
/// Generic over `R: MemoryRepository` so the persistence layer can be
/// swapped without changing business logic.
pub struct MemoryServiceImpl<R> {
pub repo: R,
/// Base directory for memory storage files.
pub memory_dir: PathBuf,
}
impl<R: MemoryRepository> MemoryServiceImpl<R> {
/// Create a new service with the given repository and memory directory.
pub fn new(repo: R, memory_dir: impl Into<PathBuf>) -> Self {
tracing::debug!("creating MemoryServiceImpl");
Self {
repo,
memory_dir: memory_dir.into(),
}
}
}
impl<R: MemoryRepository> zesdex_domain::cms::MemoryService for MemoryServiceImpl<R> {
fn list_memories(&self) -> Result<Vec<String>, ServiceError> {
tracing::debug!("listing memories from {:?}", self.memory_dir);
self.repo
.list(&self.memory_dir)
.map_err(ServiceError::Repository)
}
fn save_memory(&self, memory: &Memory) -> Result<(), ServiceError> {
tracing::debug!("saving memory '{}'", memory.name);
self.repo.save(&self.memory_dir, memory)?;
Ok(())
}
fn delete_memory(&self, name: &str) -> Result<(), ServiceError> {
tracing::debug!("deleting memory '{name}'");
self.repo
.delete(&self.memory_dir, name)
.map_err(ServiceError::Repository)
}
}
-18
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@@ -1,18 +0,0 @@
//! CMS use-case implementations.
//!
//! Contains concrete service types that implement the domain's CMS
//! service traits by coordinating injected repository dependencies.
//!
//! # Use Cases
//!
//! - [`conversation_service`] — `ConversationServiceImpl`: conversation CRUD
//! - [`memory_service`] — `MemoryServiceImpl`: long-term memory management
//! - [`settings_service`] — `SettingsServiceImpl`: settings & app-config management
pub mod conversation_service;
pub mod memory_service;
pub mod settings_service;
pub use conversation_service::ConversationServiceImpl;
pub use memory_service::MemoryServiceImpl;
pub use settings_service::SettingsServiceImpl;
@@ -1,67 +0,0 @@
//! Settings and app-config use-case implementation.
//!
//! `SettingsServiceImpl` implements [`SettingsService`] from the domain
//! layer. It is generic over `S: SettingsRepository` and `C: AppConfigRepository`,
//! delegating persistence to those adapters.
//!
//! # Flow
//!
//! Each method delegates to the appropriate injected repository with the
//! configured `base_dir`. The `update_provider` method coordinates between
//! both repositories: load app config → mutate provider map → save app config.
use std::path::PathBuf;
use tracing;
use zesdex_domain::cms::{
AppConfig, AppConfigRepository, ProviderConfig, ServiceError, Settings, SettingsRepository,
};
/// Service implementation for settings and app-config operations.
///
/// Generic over `S: SettingsRepository` and `C: AppConfigRepository` so
/// the persistence layer can be swapped without changing business logic.
pub struct SettingsServiceImpl<S, C> {
pub settings_repo: S,
pub app_config_repo: C,
pub base_dir: PathBuf,
}
impl<S: SettingsRepository, C: AppConfigRepository> SettingsServiceImpl<S, C> {
/// Create a new service with the given repositories and base directory.
pub fn new(settings_repo: S, app_config_repo: C, base_dir: impl Into<PathBuf>) -> Self {
tracing::debug!("creating SettingsServiceImpl");
Self {
settings_repo,
app_config_repo,
base_dir: base_dir.into(),
}
}
}
impl<S: SettingsRepository, C: AppConfigRepository> zesdex_domain::cms::SettingsService
for SettingsServiceImpl<S, C>
{
fn load_settings(&self) -> Result<Settings, ServiceError> {
tracing::debug!("loading settings");
self.settings_repo
.load(&self.base_dir)
.map_err(ServiceError::Repository)
}
fn save_settings(&self, settings: &Settings) -> Result<(), ServiceError> {
tracing::debug!("saving settings");
self.settings_repo.save(&self.base_dir, settings)?;
Ok(())
}
fn update_provider(&self, name: &str, config: &ProviderConfig) -> Result<(), ServiceError> {
tracing::debug!("updating provider '{name}'");
let mut app_config: AppConfig = self.app_config_repo.load(&self.base_dir)?;
app_config
.providers
.insert(name.to_string(), config.clone());
self.app_config_repo.save(&self.base_dir, &app_config)?;
Ok(())
}
}
-56
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@@ -1,56 +0,0 @@
//! # Zesdex Application Layer
//!
//! Defines port traits (interfaces) and use-case implementations for the
//! Zesdex application. This crate depends **only** on the domain crate;
//! it has no knowledge of infrastructure or interface adapters.
//!
//! ## Architecture
//!
//! ```text
//! apps/application/src/
//! ├── lib.rs — crate root, re-exports
//! ├── ports/ — Port traits (interfaces to external services)
//! │ ├── provider.rs -- ProviderService (LLM chat completion)
//! │ ├── password.rs -- PasswordService (hash / verify)
//! │ ├── token.rs -- TokenService (JWT create / verify)
//! │ └── authentication.rs -- AuthService (combined auth)
//! ├── auth/ — Auth use-cases
//! │ ├── oauth_service.rs -- OAuth 2.0 PKCE flow
//! │ └── session_service.rs -- Session CRUD lifecycle
//! └── cms/ — CMS use-cases
//! ├── conversation_service.rs -- Conversation CRUD
//! ├── memory_service.rs -- Long-term memory management
//! └── settings_service.rs -- Settings & app-config management
//! ```
//!
//! ## Key Design Principle
//!
//! Application services are generic over their repository/port dependencies.
//! Concrete implementations are injected at the composition root, keeping
//! the use-case logic independent of any specific persistence or infrastructure
//! technology.
pub mod agent;
pub mod auth;
pub mod cms;
pub mod ports;
// Re-export port traits for ergonomic access.
pub use ports::*;
// Re-export auth use-cases.
pub use auth::{
oauth_service::{OAuthFlowStore, OAuthUseCase, TokenExchanger},
session_service::SessionServiceImpl,
};
// Re-export CMS use-cases.
pub use cms::{
conversation_service::ConversationServiceImpl, memory_service::MemoryServiceImpl,
settings_service::SettingsServiceImpl,
};
pub use agent::{
turn_service::{compact_messages_with_ai, AgentTurnServiceImpl},
AgentTurnService, ExploreOutput, ExploreService, ToolExecutor,
};
@@ -1,32 +0,0 @@
//! AuthService port — combined authentication operations.
//!
//! Defines a high-level authentication trait that composes password
//! verification and token generation into a single use-case boundary.
//! Implementations delegate to the injected `PasswordService` and
//! `TokenService` adapters.
use anyhow::Result;
use std::future::Future;
/// High-level authentication service combining password verification
/// and token issuance (login flow).
///
/// # Flow
///
/// 1. **`authenticate`** — verify a subject's password against a stored hash.
/// 2. **`issue_tokens`** — generate an access + refresh token pair for a subject.
///
/// Implementations are generic over `PasswordService` and `TokenService`
/// port traits.
pub trait AuthService: Send + Sync {
/// Authenticate a user by verifying a password against a stored hash.
///
/// Returns `true` if the password matches, `false` otherwise.
fn authenticate(&self, password: &str, hash: &str)
-> impl Future<Output = Result<bool>> + Send;
/// Issue a new access + refresh token pair for the given subject.
///
/// Returns `(access_token, refresh_token)`.
fn issue_tokens(&self, sub: &str) -> Result<(String, String)>;
}
-22
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@@ -1,22 +0,0 @@
//! Port traits — interfaces for external / infrastructure services.
//!
//! These traits define the boundaries between the application layer and
//! the outside world. Infrastructure adapters implement these traits;
//! the application layer depends only on the trait definitions.
//!
//! # Ports
//!
//! - [`provider`] — `ProviderService`: LLM chat completion (streaming + non-streaming)
//! - [`password`] — `PasswordService`: password hashing and verification
//! - [`token`] — `TokenService`: JWT access/refresh token generation and verification
//! - [`authentication`] — `AuthService`: combined authentication operations
pub mod authentication;
pub mod password;
pub mod provider;
pub mod token;
pub use authentication::AuthService;
pub use password::PasswordService;
pub use provider::ProviderService;
pub use token::TokenService;
-24
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@@ -1,24 +0,0 @@
//! PasswordService port — password hashing and verification abstraction.
//!
//! Defines the trait that password-hashing adapters (argon2, bcrypt, etc.)
//! implement. The application layer depends only on this trait, never on
//! a concrete hashing library.
use anyhow::Result;
use std::future::Future;
/// Abstraction for password hashing and verification.
///
/// Implementors handle the actual hashing algorithm (argon2, bcrypt, etc.)
/// and parameter selection. The trait is `Send + Sync` for use in async
/// service layers.
pub trait PasswordService: Send + Sync {
/// Hash a plaintext password and return the encoded hash string
/// (suitable for storage in a credential store).
fn hash(&self, password: &str) -> impl Future<Output = Result<String>> + Send;
/// Verify a plaintext password against a previously-hashed string.
///
/// Returns `true` if the password matches the hash, `false` otherwise.
fn verify(&self, password: &str, hash: &str) -> impl Future<Output = Result<bool>> + Send;
}
-56
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@@ -1,56 +0,0 @@
//! ProviderService port — LLM chat completion provider abstraction.
//!
//! Defines the trait that HTTP-based provider clients (OpenAI, Anthropic,
//! etc.) implement. Supports both non-streaming and SSE-streaming chat
//! completion requests.
//!
//! # Flow
//!
//! 1. Caller builds a message list and optional tool definitions.
//! 2. `chat` sends a non-streaming request and returns the full response.
//! 3. `chat_stream` sends a streaming request and invokes `on_event` for
//! each parsed `StreamEvent` as it arrives, then returns the assembled
//! message and usage.
use anyhow::Result;
use std::future::Future;
use zesdex_domain::core::{ChatMessage, StreamEvent, ToolDef};
/// Abstraction for an LLM provider chat-completion service.
///
/// Both methods accept a message list, optional tool definitions, and
/// generation parameters. Implementors handle authentication, HTTP
/// transport, retry logic, and response parsing internally.
///
/// # Send + Sync
///
/// This trait is `Send + Sync` so it can be shared across async tasks
/// and injected into service structs that require thread safety.
pub trait ProviderService: Send + Sync {
/// Send a non-streaming chat completion request.
///
/// Returns the assistant's `ChatMessage` and optional token usage
/// `(prompt_tokens, completion_tokens)`.
fn chat(
&self,
messages: &[ChatMessage],
tools: Option<Vec<ToolDef>>,
max_tokens: Option<u32>,
temperature: Option<f32>,
) -> impl Future<Output = Result<(ChatMessage, Option<(u64, u64)>)>> + Send;
/// Send a streaming chat completion request.
///
/// `on_event` is called for every parsed SSE event and returns `false`
/// to signal abort (caller cancellation). Returns the fully assembled
/// assistant message and optional usage once the stream completes.
fn chat_stream(
&self,
messages: &[ChatMessage],
tools: Option<Vec<ToolDef>>,
max_tokens: Option<u32>,
temperature: Option<f32>,
on_event: Box<dyn FnMut(&StreamEvent) -> bool + Send>,
) -> impl Future<Output = Result<(ChatMessage, Option<(u64, u64)>)>> + Send;
}
-32
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@@ -1,32 +0,0 @@
//! TokenService port — JWT access and refresh token abstraction.
//!
//! Defines the trait that JWT adapter implementations provide. Covers
//! token generation (pair of access + refresh tokens) and access token
//! verification (returns the subject claim).
use anyhow::Result;
/// Abstraction for JWT-based token generation and verification.
///
/// Implementors handle signing key management, token serialisation,
/// and expiry validation. The trait is `Send + Sync` for use across
/// thread boundaries.
pub trait TokenService: Send + Sync {
/// Generate an access + refresh token pair for the given subject
/// identifier.
///
/// Returns `(access_token, refresh_token)`.
fn generate_tokens(&self, sub: &str) -> Result<(String, String)>;
/// Verify an access token and return the embedded subject claim.
///
/// Returns `Err` if the token is expired, malformed, or has an
/// invalid signature.
fn verify_access_token(&self, token: &str) -> Result<String>;
/// Verify a refresh token and return the embedded subject claim.
///
/// Returns `Err` if the token is expired, malformed, or has an
/// invalid signature.
fn verify_refresh_token(&self, token: &str) -> Result<String>;
}
-25
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@@ -1,25 +0,0 @@
[package]
name = "zesdex-bootstrap"
version.workspace = true
edition.workspace = true
authors.workspace = true
# Bootstrap binary — seeds initial system data (permissions, roles,
# admin user) idempotently. Run once after first deployment.
[[bin]]
name = "bootstrap"
path = "src/main.rs"
[dependencies]
zesdex-domain = { path = "../domain" }
zesdex-application = { path = "../application" }
zesdex-infrastructure = { path = "../infrastructure" }
serde.workspace = true
serde_json.workspace = true
chrono.workspace = true
uuid.workspace = true
anyhow.workspace = true
tokio.workspace = true
tracing.workspace = true
dirs.workspace = true
-2
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@@ -1,2 +0,0 @@
//! Bootstrap library — shared utilities for the bootstrap binary.
//! The main entry point is in `main.rs`.
-44
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@@ -1,44 +0,0 @@
//! Bootstrap binary — seeds initial system data idempotently.
//!
//! Creates default permissions, roles, and admin user if they don't
//! already exist. Run once after first deployment.
//!
//! Usage: cargo run --bin bootstrap
fn main() -> anyhow::Result<()> {
println!("Zesdex Bootstrap — seeding initial data...");
let store = zesdex_domain::core::Store::new();
store.ensure_dirs()?;
// Seed default settings if not present
let settings_path = store.base_dir.join("settings.json");
if !settings_path.exists() {
let settings = zesdex_domain::cms::Settings::default();
let content = serde_json::to_string_pretty(&settings)?;
let tmp = store.base_dir.join("settings.json.tmp");
std::fs::write(&tmp, &content)?;
std::fs::File::open(&tmp)?.sync_all()?;
std::fs::rename(&tmp, &settings_path)?;
println!(" ✓ Default settings created");
} else {
println!(" · Settings already exist, skipping");
}
// Seed default app config if not present
let config_path = store.base_dir.join("app_config.json");
if !config_path.exists() {
let config = zesdex_domain::cms::AppConfig::default();
let content = serde_json::to_string_pretty(&config)?;
let tmp = store.base_dir.join("app_config.json.tmp");
std::fs::write(&tmp, &content)?;
std::fs::File::open(&tmp)?.sync_all()?;
std::fs::rename(&tmp, &config_path)?;
println!(" ✓ Default app_config created");
} else {
println!(" · App config already exists, skipping");
}
println!("Bootstrap complete.");
Ok(())
}
-20
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@@ -1,20 +0,0 @@
[package]
name = "zesdex-domain"
version.workspace = true
edition.workspace = true
authors.workspace = true
# Domain layer — PURE entities, value objects, repository/service traits.
# Zero framework dependencies. Only serde for serialization, chrono for
# timestamps, uuid for identity.
[dependencies]
serde.workspace = true
serde_json.workspace = true
chrono.workspace = true
uuid.workspace = true
base64.workspace = true
sha2.workspace = true
url.workspace = true
libc.workspace = true
anyhow.workspace = true
tracing.workspace = true
-34
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@@ -1,34 +0,0 @@
//! Shared default constants used across the application.
//!
//! Centralising these values eliminates the hardcoded-string duplication
//! that existed when every call site provided its own inline fallback.
//! Consumers should reference these constants rather than repeating
//! the string literals.
/// Default LLM provider API base URL.
pub const DEFAULT_API_BASE: &str = "https://opencode.ai/zen/v1";
/// Default LLM model identifier.
pub const DEFAULT_MODEL: &str = "deepseek-v4-flash-free";
/// Fallback JWT secret used only when `JWT_SECRET` env var is unset.
/// In production this MUST be configured via environment variable.
pub const FALLBACK_JWT_SECRET: &str = "dev-secret";
/// Default context window size (128k tokens).
pub const DEFAULT_CONTEXT_WINDOW: usize = 256_000;
/// Maximum tool-call iterations per agent turn.
pub const MAX_TOOL_ITERATIONS: u32 = 50;
/// Maximum subagent tool-call iterations.
pub const MAX_SUBAGENT_ITERATIONS: u32 = 25;
/// Default LLM request max tokens.
pub const DEFAULT_MAX_TOKENS: u32 = 4096;
/// Default temperature for the main agent.
pub const DEFAULT_TEMPERATURE: f64 = 0.7;
/// Default temperature for compaction / summary calls.
pub const DEFAULT_COMPACT_TEMPERATURE: f64 = 0.3;
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@@ -1,260 +0,0 @@
//! Domain types for agent lifecycle: turn events, session runtime, progress
//! reporting, prompts, and the agent-turn parameter bundle.
use serde::{Deserialize, Serialize};
use std::path::PathBuf;
use crate::core::{ChatMessage, ToolCallResult, UsageStats};
pub mod defaults;
pub mod progress;
pub mod prompt;
/// Which kind of caller (main agent vs. subagent vs. reviewer) is
/// invoking a tool, used to scope permissions and tag log/output paths.
#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize, Hash)]
pub enum Origin {
/// The main agent turn loop.
Main,
/// A spawned subagent (test-gen, arch-review, security-review, etc.).
SubAgent,
/// The auto-inline review step after an edit.
Reviewer,
}
impl Origin {
/// Short string tag for this origin, used in filenames and logs.
pub fn tag(self) -> String {
match self {
Origin::Main => "main",
Origin::SubAgent => "subagent",
Origin::Reviewer => "reviewer",
}
.to_string()
}
}
/// Severity/category of a toast notification, used to pick its color.
#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
pub enum ToastKind {
Info,
Success,
Warning,
Error,
Lesson,
}
/// A transient status message shown in the TUI, auto-dismissed after `lifetime_ms`.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct Toast {
pub kind: ToastKind,
pub message: String,
pub created_at: i64,
pub lifetime_ms: u64,
}
impl Toast {
/// Create a toast with a default 5-second lifetime, stamped with now.
pub fn new(kind: ToastKind, message: String) -> Self {
Toast {
kind,
message,
created_at: chrono::Utc::now().timestamp_millis(),
lifetime_ms: 5000,
}
}
/// Whether this toast's lifetime has elapsed as of `now_ms`.
pub fn expired(&self, now_ms: i64) -> bool {
let lifetime = self.lifetime_ms as i64;
now_ms - self.created_at > lifetime
}
}
/// Agent status for workflow engine progress tracking.
#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
pub enum AgentStatus {
Pending,
Running,
Completed,
Failed(String),
Cancelled,
}
impl std::fmt::Display for AgentStatus {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
match self {
AgentStatus::Pending => write!(f, "pending"),
AgentStatus::Running => write!(f, "running"),
AgentStatus::Completed => write!(f, "completed"),
AgentStatus::Failed(msg) => write!(f, "failed: {msg}"),
AgentStatus::Cancelled => write!(f, "cancelled"),
}
}
}
/// Events emitted onto the turn-event queue while an agent turn runs,
/// consumed by the event loop to update state and drive re-renders.
#[derive(Debug, Clone)]
pub enum TurnEvent {
AssistantMessage(ChatMessage),
ToolResult {
tool_call_id: String,
tool_name: String,
output: String,
is_error: bool,
path: Option<String>,
},
SystemNote {
kind: String,
message: String,
},
StreamStart,
StreamToken(String),
StreamReasoning(String),
StreamDone(ChatMessage),
Usage {
tokens_in: u64,
tokens_out: u64,
},
ReviewUsage {
tokens_in: u64,
tokens_out: u64,
},
Compacted(Vec<ChatMessage>),
Error(String),
Done,
WorkflowAgentUpdate {
agent_id: String,
agent_name: String,
status: AgentStatus,
},
TodoUpdate(String),
PlanUpdate(String),
/// Structured progress report from a subagent or workflow node,
/// carrying the current tool name and optional step counters.
AgentProgress(crate::agent::progress::AgentProgress),
}
/// How a pending tool call should be executed when the turn resumes.
#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
pub enum ExecutionModel {
Inline,
Deferred,
AsyncTokio,
}
/// A tool call awaiting execution, along with which execution model
/// (inline, deferred, async) it should run under.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct PendingTool {
pub tool_name: String,
pub args: serde_json::Value,
pub execution_model: ExecutionModel,
}
/// Reference to a background bash job tracked in session state.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct BashJobRef {
pub id: String,
pub command: String,
pub started_at: i64,
pub running: bool,
}
/// Tracks counts of learned patterns by outcome and lifecycle stage.
#[derive(Debug, Clone, Default)]
pub struct LessonStats {
/// Total number of lessons tracked.
pub total: u32,
/// User-initiated lessons.
pub user: u32,
/// Feedback-driven lessons.
pub feedback: u32,
/// Project-scoped lessons.
pub project: u32,
/// Reference-scoped lessons.
pub reference: u32,
/// Currently active lessons.
pub active: u32,
/// Stale (outdated) lessons.
pub stale: u32,
/// Contradicted lessons.
pub contradicted: u32,
/// Human-authored lessons.
pub human: u32,
/// Verified lessons.
pub verified: u32,
/// Unverified lessons.
pub unverified: u32,
}
/// Per-session runtime state: message history, pending tool queue,
/// background bash jobs, lesson/review counters.
#[derive(Debug, Clone)]
pub struct SessionRuntime {
pub messages: Vec<ChatMessage>,
pub tool_call_results: Vec<ToolCallResult>,
pub pending_tool_queue: Vec<PendingTool>,
pub bash_jobs: Vec<BashJobRef>,
pub subagent_queue: usize,
pub edit_count: u32,
pub consecutive_empty_reviews: u32,
pub session_start: i64,
/// Aggregated lesson statistics.
pub lessons: LessonStats,
pub review_count: u32,
pub session_dir: PathBuf,
pub usage: UsageStats,
pub hive_mind_converged: bool,
}
impl SessionRuntime {
pub fn new(session_dir: PathBuf) -> Self {
SessionRuntime {
messages: Vec::new(),
tool_call_results: Vec::new(),
pending_tool_queue: Vec::new(),
bash_jobs: Vec::new(),
subagent_queue: 0,
edit_count: 0,
consecutive_empty_reviews: 0,
session_start: chrono::Utc::now().timestamp_millis(),
lessons: LessonStats::default(),
review_count: 0,
session_dir,
usage: UsageStats::default(),
hive_mind_converged: false,
}
}
pub fn push_message(&mut self, msg: ChatMessage) {
self.messages.push(msg);
}
}
/// Simple ASCII progress display for a long-running operation.
#[derive(Debug, Clone)]
pub struct ProgressState {
pub current: u64,
pub total: u64,
pub message: String,
pub start_time: i64,
}
use std::collections::VecDeque;
use std::sync::atomic::AtomicBool;
use std::sync::{Arc, Mutex};
/// Owned parameters required to spawn and execute an agent turn.
pub struct AgentTurnParams {
pub messages: Vec<ChatMessage>,
pub session_dir: PathBuf,
pub workspace_roots: Vec<PathBuf>,
pub turn_events: Arc<Mutex<VecDeque<TurnEvent>>>,
pub in_flight: Arc<AtomicBool>,
pub abort: Arc<AtomicBool>,
pub api_key: String,
pub model: String,
pub api_base: Option<String>,
}
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//! Progress reporting types for long-running agent and subagent operations.
//!
//! These types are emitted onto the turn-event queue to drive the TUI's
//! spinner, progress bar, and agent-status sidebar. They are pure domain
//! types with no I/O or framework dependency.
use crate::agent::AgentStatus;
/// Describes progress within a single subagent or workflow-node execution.
///
/// Emitted as a `TurnEvent::AgentProgress` so the UI can show which tool
/// the subagent is currently invoking, or which step it has reached.
#[derive(Debug, Clone)]
pub struct AgentProgress {
/// Unique identifier for this agent (e.g. `"Node-0-1"`, `"auto-review"`).
pub agent_id: String,
/// Human-readable display name shown in the TUI sidebar.
pub agent_name: String,
/// Current lifecycle status.
pub status: AgentStatus,
/// Optional description of the current tool or step being executed.
/// Set to `None` when the agent is not actively executing a tool.
pub current_tool: Option<String>,
/// Optional progress range: (completed_steps, total_steps).
/// When `None`, the agent shows an indeterminate spinner.
pub steps: Option<(u32, u32)>,
}
impl AgentProgress {
/// Mark this agent as running with an optional tool name.
pub fn running(
agent_id: impl Into<String>,
agent_name: impl Into<String>,
current_tool: Option<String>,
) -> Self {
AgentProgress {
agent_id: agent_id.into(),
agent_name: agent_name.into(),
status: AgentStatus::Running,
current_tool,
steps: None,
}
}
/// Mark this agent as pending (queued but not yet started).
pub fn pending(agent_id: impl Into<String>, agent_name: impl Into<String>) -> Self {
AgentProgress {
agent_id: agent_id.into(),
agent_name: agent_name.into(),
status: AgentStatus::Pending,
current_tool: None,
steps: None,
}
}
/// Mark this agent as completed successfully.
pub fn completed(agent_id: impl Into<String>, agent_name: impl Into<String>) -> Self {
AgentProgress {
agent_id: agent_id.into(),
agent_name: agent_name.into(),
status: AgentStatus::Completed,
current_tool: None,
steps: None,
}
}
/// Mark this agent as failed with an error message.
pub fn failed(
agent_id: impl Into<String>,
agent_name: impl Into<String>,
error: String,
) -> Self {
AgentProgress {
agent_id: agent_id.into(),
agent_name: agent_name.into(),
status: AgentStatus::Failed(error),
current_tool: None,
steps: None,
}
}
}
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//! System prompts and directive templates for agent and subagent turns.
//!
//! Centralising all prompt text here keeps the core turn logic free of
//! hardcoded prose, making prompts easier to maintain, review, and localise.
//!
//! # Flow
//! The application layer's `AgentTurnServiceImpl` calls `main_agent_prompt()`
//! to construct the system message at the start of each turn. Subagent and
//! review prompts are provided by their respective modules.
/// Build the main-agent system prompt.
///
/// The prompt establishes the agent's identity as Zesdex, an AI coding
/// assistant, and defines the priority hierarchy that governs tool selection:
///
/// 1. **Workflow first** — `workflow_run` / `hive_mind` for complex tasks
/// 2. **Planning & TODOs** — `plan_enter` / `todowrite` for structural work
/// 3. **Reasoning** — `seq_think` for deep analysis
/// 4. **Tool execution** — direct tools for simple actions
pub fn main_agent_prompt() -> String {
"\
You are Zesdex, an AI coding assistant. You have access to various tools \
via native function calling to help the user.
CRITICAL DIRECTIVES & PRIORITY HIERARCHY:
1. WORKFLOW FIRST: For any multi-step, complex, or non-trivial task, \
you MUST prioritise using `workflow_run` (to construct and execute a \
multi-phase YAML workflow) or `hive_mind` (to orchestrate parallel \
autonomous agents). Workflows are your primary strategy.
2. PLANNING & TODOS: Use `plan_enter` to establish high-level \
architectural plans and `todowrite` to maintain granular task checklists.
3. REASONING: Use `seq_think` for deep step-by-step analysis.
4. TOOL EXECUTION: Execute individual tools (file edits, terminal commands) \
within or guided by your workflows. If an error occurs, analyse and fix it.
Respond conversationally, concisely, and helpfully."
.to_string()
}
/// Build a subagent directive prompt.
///
/// The directive is embedded in a system message that also communicates the
/// current working directory and workspace root so the subagent can resolve
/// paths correctly.
pub fn subagent_directive(directive: &str, cwd: &str, ws_root: &str) -> String {
format!(
"\
You are a focused subagent.
Current directory (PWD): {cwd}
Workspace root: {ws_root}
Your directive:
{directive}
Complete the directive autonomously using the tools available to you. \
Return your final answer when done."
)
}
/// Build a conversation-compaction prompt.
///
/// The LLM is asked to produce a concise bulleted summary of the key
/// requests, decisions, tools executed, and files modified.
pub fn compaction_prompt() -> String {
"\
You are a helpful assistant summarising conversation history. \
Provide a concise summary of the key user requests, decisions, tools \
executed, and modified files. Format as a clear bulleted list."
.to_string()
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn main_prompt_is_non_empty() {
let prompt = main_agent_prompt();
assert!(!prompt.is_empty());
assert!(prompt.contains("Zesdex"));
assert!(prompt.contains("WORKFLOW FIRST"));
}
#[test]
fn subagent_directive_includes_directive_text() {
let prompt = subagent_directive("test directive", "/home", "/home/project");
assert!(prompt.contains("test directive"));
assert!(prompt.contains("/home"));
assert!(prompt.contains("/home/project"));
}
}
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//! Command types for IAM domain operations.
//!
//! Following the `NewXxx` / command pattern from clean architecture,
//! these types encapsulate the input data for create/update operations
//! on domain entities. They decouple presentation DTOs from the entity
//! mutation surface and provide a clear boundary for validation.
/// Command to create a new session.
///
/// Carries only the data needed to construct a session entity — the
/// service generates the UUID and timestamp internally.
#[derive(Debug, Clone)]
pub struct NewSession {
/// Human-readable session title.
pub title: String,
}
impl From<String> for NewSession {
fn from(title: String) -> Self {
Self { title }
}
}
impl From<&str> for NewSession {
fn from(title: &str) -> Self {
Self {
title: title.to_string(),
}
}
}
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//! Domain error types for the IAM (auth) module.
//!
//! Typed error enums replace `anyhow::Result` in domain traits and
//! application services, enabling callers to match on specific error
//! variants (e.g. `NotFound` vs `Conflict`) rather than string-checking.
//!
//! # Components
//!
//! - [`RepositoryError`] — persistence-layer errors (not found, conflict, I/O)
//! - [`ServiceError`] — use-case / orchestration errors (config, state
//! mismatch, provider failures)
use std::fmt;
use crate::error::DomainError;
/// Shared repository error type for IAM persistence operations.
pub type RepositoryError = DomainError;
/// Errors from service / use-case operations in the IAM domain.
#[derive(Debug)]
pub enum ServiceError {
/// A repository operation failed.
Repository(DomainError),
/// The provided configuration is invalid.
InvalidConfig(String),
/// OAuth state mismatch — possible CSRF attack.
StateMismatch,
/// The OAuth provider returned an error.
OAuthProvider(String),
/// A generic error with a message.
Other(String),
}
impl From<DomainError> for ServiceError {
fn from(err: DomainError) -> Self {
ServiceError::Repository(err)
}
}
impl fmt::Display for ServiceError {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
match self {
ServiceError::Repository(err) => write!(f, "repository error: {err}"),
ServiceError::InvalidConfig(msg) => write!(f, "invalid configuration: {msg}"),
ServiceError::StateMismatch => {
write!(f, "OAuth state mismatch — possible CSRF attack")
}
ServiceError::OAuthProvider(msg) => write!(f, "OAuth provider error: {msg}"),
ServiceError::Other(msg) => write!(f, "{msg}"),
}
}
}
impl std::error::Error for ServiceError {
fn source(&self) -> Option<&(dyn std::error::Error + 'static)> {
match self {
ServiceError::Repository(err) => Some(err),
_ => None,
}
}
}
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//! IAM Session re-export.
//!
//! Re-exports `Session` from the auth module for consistent IAM-boundary
//! imports. Consumers of the IAM module import `Session` from here rather
//! than from the core session module directly, keeping the dependency
//! internal and allowing the IAM crate to own its domain vocabulary.
pub use super::session::Session;
/// Alias for `Session` used in IAM contexts to distinguish from other
/// session types in the system.
pub type IamSession = Session;
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//! Authentication domain entities, commands, errors, and repository/service traits.
//!
//! Combines the session types from `zesdex-entities` (auth sub-module) with the
//! IAM domain types (commands, OAuth, repository/service traits) from `zesdex-iam`.
//!
//! # Sub-modules
//!
//! - [`session`] — `Session` entity (session metadata)
//! - [`session_id`] — `SessionId` value object (validated newtype)
//! - [`session_lock`] — `SessionLock` RAII guard (PID-file lock)
//! - [`oauth`] — `OAuthToken`, `OAuthConfig` entities
//! - [`iam_session`] — Re-export of `Session` for IAM-boundary consistency
//! - [`commands`] — `NewSession` command type
//! - [`error`] — `RepositoryError`, `ServiceError` types
//! - [`repository`] — `SessionRepository`, `SessionLockRepository`, `OAuthRepository`
//! - [`service`] — `SessionService`, `OAuthService` traits
pub mod commands;
pub mod error;
pub mod iam_session;
pub mod oauth;
pub mod repository;
pub mod service;
pub mod session;
pub mod session_id;
pub mod session_lock;
pub use commands::NewSession;
pub use error::{RepositoryError, ServiceError};
pub use iam_session::IamSession;
pub use oauth::{OAuthConfig, OAuthToken};
pub use repository::{OAuthRepository, SessionLockRepository, SessionRepository};
pub use service::{OAuthService, SessionService};
pub use session::Session;
pub use session_id::SessionId;
pub use session_lock::SessionLock;
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//! Pure OAuth entities — no HTTP or persistence logic.
//!
//! # Components
//!
//! - [`OAuthToken`] — access token with optional refresh token, epoch expiry
//! - [`OAuthConfig`] — provider configuration (auth URL, token URL, client id,
//! optional client secret, scopes)
use serde::{Deserialize, Serialize};
/// An OAuth 2.0 access token with optional refresh token and absolute
/// expiry time (epoch seconds).
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OAuthToken {
/// The OAuth 2.0 access token string.
pub access_token: String,
/// Optional refresh token for long-lived access.
pub refresh_token: Option<String>,
/// Absolute expiry timestamp (epoch seconds since UNIX_EPOCH).
pub expires_at: u64,
/// Token type, e.g. `"Bearer"`.
pub token_type: String,
}
/// Static configuration for an OAuth provider.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OAuthConfig {
/// Authorization endpoint URL.
pub auth_url: String,
/// Token exchange endpoint URL.
pub token_url: String,
/// OAuth client identifier.
pub client_id: String,
/// Optional client secret (not all flows require it).
pub client_secret: Option<String>,
/// Space-separated list of requested scopes.
pub scopes: Vec<String>,
}
impl Default for OAuthConfig {
fn default() -> Self {
OAuthConfig {
auth_url: String::new(),
token_url: String::new(),
client_id: String::new(),
client_secret: None,
scopes: vec![
"openid".to_string(),
"profile".to_string(),
"email".to_string(),
],
}
}
}
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//! Repository trait definitions (pure — no impls, no concrete persistence).
//!
//! Defines the repository contracts that infrastructure adapters implement.
//! Following clean architecture, domain code depends only on these traits,
//! not on concrete persistence libraries.
//!
//! # Traits
//!
//! - [`SessionRepository`] — CRUD for session metadata
//! - [`SessionLockRepository`] — acquire/release/liveness for session locks
//! - [`OAuthRepository`] — persist/load OAuth tokens
use std::path::Path;
use crate::auth::error::RepositoryError;
use crate::auth::oauth::OAuthToken;
use crate::auth::session::Session;
use crate::auth::session_id::SessionId;
/// Repository for loading, saving, listing, and deleting sessions.
pub trait SessionRepository {
/// List all loadable sessions under `<base_dir>/sessions/`.
fn list_sessions(&self, base_dir: &Path) -> Result<Vec<Session>, RepositoryError>;
/// Load a single session by id.
fn load_session(&self, base_dir: &Path, id: &SessionId) -> Result<Session, RepositoryError>;
/// Save a session's metadata to disk.
fn save_session(&self, base_dir: &Path, session: &Session) -> Result<(), RepositoryError>;
/// Delete a session directory and all its contents.
fn delete_session(&self, base_dir: &Path, id: &SessionId) -> Result<(), RepositoryError>;
}
/// Repository for per-session PID-file advisory locks.
pub trait SessionLockRepository {
/// Try to acquire the lock for a session directory.
/// Returns `true` if the lock was acquired, `false` if another live
/// process holds it.
fn try_lock(&self, session_dir: &Path) -> Result<bool, RepositoryError>;
/// Release the lock by removing the lock file.
fn unlock(&self, session_dir: &Path) -> Result<(), RepositoryError>;
/// Check whether a process with the given PID is alive.
fn is_alive(&self, pid: u32) -> bool;
}
/// Repository for persisting and loading OAuth tokens.
pub trait OAuthRepository {
/// Persist an OAuth token to a JSON file.
fn save_token(&self, path: &Path, token: &OAuthToken) -> Result<(), RepositoryError>;
/// Load an OAuth token from a JSON file, returning `None` if the file
/// does not exist.
fn load_token(&self, path: &Path) -> Result<Option<OAuthToken>, RepositoryError>;
}
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//! Service trait definitions — use-case interfaces for session management
//! and OAuth flows.
//!
//! These traits define the boundary between the application orchestration
//! layer and the domain. Implementations live in the application layer.
//!
//! # Traits
//!
//! - [`SessionService`] — create, list, archive sessions
//! - [`OAuthService`] — start PKCE flow, complete code exchange, retrieve token
use crate::auth::error::ServiceError;
use crate::auth::oauth::{OAuthConfig, OAuthToken};
use crate::auth::session::Session;
use crate::auth::session_id::SessionId;
/// Session management use-case boundary.
pub trait SessionService {
/// Create a new session with a generated UUID and the given title.
fn create_session(&self, title: &str) -> Result<Session, ServiceError>;
/// List all available sessions.
fn list_all(&self) -> Result<Vec<Session>, ServiceError>;
/// Archive a session by id (sets `archived = true`).
fn archive_session(&self, id: SessionId) -> Result<(), ServiceError>;
}
/// OAuth flow use-case boundary.
pub trait OAuthService {
/// Start an OAuth authorization-code + PKCE flow for the given
/// `redirect_uri` (the caller is responsible for actually listening on
/// it — e.g. a bound `LoopbackServer`). Returns `(auth_url, state)`:
/// the URL to send the user to, and the CSRF state token that must be
/// passed back into `complete_flow` unchanged.
fn start_flow(
&self,
config: &OAuthConfig,
redirect_uri: &str,
) -> Result<(String, String), ServiceError>;
/// Complete the OAuth flow: validates `state` against the value
/// persisted during `start_flow` (bailing on mismatch — this is the
/// CSRF check), then exchanges `code` for a token using the same
/// `redirect_uri` passed to `start_flow`.
fn complete_flow(
&self,
config: &OAuthConfig,
redirect_uri: &str,
code: &str,
state: &str,
) -> Result<OAuthToken, ServiceError>;
/// Retrieve the currently stored OAuth token (if any).
fn get_token(&self) -> Result<Option<OAuthToken>, ServiceError>;
}
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//! Session metadata: id, title, workspace roots, and message/token counts,
//! persisted as `session.json` per session directory.
//!
//! # Flow
//!
//! Created via [`Session::new`] → mutated in-memory → persisted via repository.
//!
//! # Components
//!
//! - `Session` struct — fields for all session metadata
//! - `new` — timestamped constructor
//! - `session_dir` / `conversation_path` — pure path computation
use chrono::Utc;
use serde::{Deserialize, Serialize};
use std::path::{Path, PathBuf};
/// Metadata for one conversation session (distinct from the message
/// history itself, which lives in `Conversation`/the msglog).
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct Session {
/// Unique session identifier (validated against path traversal in `load`).
pub id: String,
/// Epoch-millis timestamp of creation (`Utc::now().timestamp_millis()`).
pub created_at: i64,
/// Epoch-millis timestamp of last update.
pub updated_at: i64,
/// Human-readable title for the conversation.
pub title: String,
/// Model identifier string, e.g. `"anthropic/claude-opus-4-8"`.
pub model: String,
/// Workspace root directories associated with this session.
pub workspace_roots: Vec<PathBuf>,
/// Running count of messages in the conversation.
pub message_count: u32,
/// Running count of tokens consumed.
pub token_count: u32,
/// Soft-delete flag — archived sessions are hidden from the default list.
pub archived: bool,
/// Optional AI-generated conversation summary (used for compact context).
pub summary: Option<String>,
}
impl Session {
/// Create a new session with the given id/title, defaulting the
/// model, workspace root (current dir), and counters.
pub fn new(id: String, title: String) -> Self {
let now = Utc::now().timestamp_millis();
Session {
id,
created_at: now,
updated_at: now,
title,
model: "anthropic/claude-opus-4-8".to_string(),
workspace_roots: vec![std::env::current_dir().unwrap_or_default()],
message_count: 0,
token_count: 0,
archived: false,
summary: None,
}
}
/// Compute this session's directory under `<base_dir>/sessions/<id>`.
pub fn session_dir(&self, base_dir: &Path) -> PathBuf {
base_dir.join("sessions").join(&self.id)
}
/// Compute this session's `conversation.json` path.
pub fn conversation_path(&self, base_dir: &Path) -> PathBuf {
self.session_dir(base_dir).join("conversation.json")
}
}
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//! Validated session identifier newtype.
//!
//! [`SessionId`] wraps a `String` that has been checked for path-traversal
//! characters. Construction via `SessionId::new(str)` validates the input
//! once; the guarantee is then enforced by the type system for all
//! downstream use.
//!
//! # Validation rules
//!
//! - Must not be empty
//! - Must only contain alphanumeric characters, hyphens, and underscores
use serde::{Deserialize, Serialize};
use std::fmt;
use std::path::Path;
use std::path::PathBuf;
/// A validated session identifier.
///
/// Guarantees the inner string is non-empty and contains no path-traversal
/// characters (`/`, `\\`, `..`) or other unsafe delimiters.
#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq, Hash)]
pub struct SessionId(String);
impl SessionId {
/// Validate and construct a `SessionId`.
///
/// Returns `Err(msg)` if the input contains path separators, `..`, or
/// is empty.
pub fn new(id: &str) -> Result<Self, String> {
if id.is_empty() {
return Err("session id must not be empty".to_string());
}
if id.contains('/') || id.contains('\\') || id.contains("..") {
return Err(format!(
"session id '{id}' must not contain path separators"
));
}
Ok(SessionId(id.to_string()))
}
/// Return the underlying string.
pub fn as_str(&self) -> &str {
&self.0
}
/// Return the underlying owned string.
pub fn into_string(self) -> String {
self.0
}
/// Append this session id as a component of `base_dir`, yielding
/// `base_dir / self.0`.
///
/// Safe because the id has been validated to contain no path separators.
pub fn join_to(&self, base_dir: &Path) -> PathBuf {
base_dir.join(&self.0)
}
}
impl AsRef<str> for SessionId {
fn as_ref(&self) -> &str {
&self.0
}
}
impl fmt::Display for SessionId {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.write_str(&self.0)
}
}
impl From<SessionId> for String {
fn from(sid: SessionId) -> Self {
sid.0
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_valid_uuids() {
assert!(SessionId::new("550e8400-e29b-41d4-a716-446655440000").is_ok());
assert!(SessionId::new("my-session_123").is_ok());
}
#[test]
fn test_rejects_path_traversal() {
assert!(SessionId::new("../etc/passwd").is_err());
assert!(SessionId::new("foo/../../bar").is_err());
assert!(SessionId::new("foo\\..\\bar").is_err());
}
#[test]
fn test_rejects_empty() {
assert!(SessionId::new("").is_err());
}
#[test]
fn test_into_string() {
let sid = SessionId::new("abc-123").unwrap();
assert_eq!(sid.into_string(), "abc-123");
}
}
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//! PID-file based advisory lock preventing two processes from operating on
//! the same session directory concurrently.
//!
//! # Flow
//!
//! [`SessionLock::new`] creates a handle → [`SessionLock::try_lock`] attempts
//! atomic `O_CREAT|O_EXCL` creation. If the lock file already exists, the
//! owning PID is checked via liveness verification. Stale locks are
//! overwritten atomically (temp-file + rename + fsync). On [`Drop`],
//! the lock file is removed automatically.
//!
//! # Components
//!
//! - `SessionLock` — RAII guard wrapping a lock file path and PID
//! - `try_lock` — three-phase atomic acquire with stale-lock recovery
//! - `unlock` / `Drop` — explicit and implicit release
use std::fs;
use std::io::Write;
use std::path::{Path, PathBuf};
use tracing;
/// A PID-file lock (`<session_dir>/.lock`) tied to the current process,
/// auto-removed on drop.
#[derive(Debug)]
pub struct SessionLock {
/// Path to the `.lock` file inside the session directory.
pub(crate) path: PathBuf,
/// Process ID that holds (or will hold) this lock.
pub(crate) pid: u32,
}
impl SessionLock {
/// Construct a lock handle for a session directory (does not acquire
/// the lock yet — call `try_lock`).
pub fn new(session_dir: &Path) -> Self {
SessionLock {
path: session_dir.join(".lock"),
pid: std::process::id(),
}
}
/// Attempt to acquire the session lock using an atomic file creation.
///
/// Flow: try `O_CREAT | O_EXCL` via `create_new(true)` → if that
/// succeeds, the lock is ours — write our PID and return ok. If the
/// file already exists, read the PID inside it and check whether that
/// PID is still alive: if the process is still running, fail to acquire;
/// otherwise the lock is stale — overwrite it with our own PID and succeed.
///
/// Return: `Ok(true)` if acquired, `Ok(false)` if another live
/// process holds it, `Err` on I/O failure.
pub fn try_lock(&self) -> std::io::Result<bool> {
// Phase 1: try atomic create. If it succeeds, the lock is ours.
match fs::OpenOptions::new()
.create_new(true)
.write(true)
.open(&self.path)
{
Ok(mut file) => {
write!(file, "{}", self.pid)?;
file.sync_all()?;
tracing::debug!(path = %self.path.display(), pid = self.pid, "session lock acquired");
return Ok(true);
}
Err(ref e) if e.kind() == std::io::ErrorKind::AlreadyExists => {
tracing::debug!(path = %self.path.display(), "session lock already exists, checking staleness");
// Lock file exists — check if it's stale.
}
Err(e) => return Err(e),
}
// Phase 2: lock file exists — check liveness of the owning process.
let content = fs::read_to_string(&self.path).unwrap_or_default();
if let Ok(pid) = content.trim().parse::<u32>() {
if Self::is_alive(pid) {
tracing::warn!(stale = pid, path = %self.path.display(), "session lock held by live process");
return Ok(false);
}
tracing::debug!(stale = pid, "stale lock detected, overwriting");
}
// Phase 3: stale lock — overwrite it atomically (best-effort).
// Use a temp file + rename to avoid partial writes corrupting the lock.
let tmp = self.path.with_extension("lock.tmp");
{
let mut tmp_file = fs::OpenOptions::new()
.create(true)
.truncate(true)
.write(true)
.open(&tmp)?;
write!(tmp_file, "{}", self.pid)?;
tmp_file.sync_all()?;
}
fs::rename(&tmp, &self.path)?;
// Sync the parent directory so the rename survives a crash.
if let Some(parent) = self.path.parent() {
let _ = fs::File::open(parent).and_then(|d| d.sync_all());
}
Ok(true)
}
/// Explicitly release the lock by removing the lock file.
pub fn unlock(&self) {
let _ = fs::remove_file(&self.path);
}
/// Check whether a process with the given PID is currently alive and
/// belongs to the same binary (mitigating PID-reuse races).
///
/// Strategy (Unix):
/// 1. Resolve `/proc/<pid>/exe` — if it doesn't match our own binary,
/// the PID either belongs to another process or is reused — return false.
/// 2. Send `kill(pid, 0)` to verify the process is still alive.
/// 3. Re-check `/proc/<pid>/exe` to close the TOCTOU window between
/// step 1 and step 2 (PID reuse after exe check, before kill).
///
/// On non-Unix platforms this always returns `true` (conservative).
fn is_alive(pid: u32) -> bool {
#[cfg(unix)]
{
// Resolve our own executable path once.
let self_exe = match std::fs::read_link("/proc/self/exe") {
Ok(exe) => exe,
Err(_) => return false,
};
let pid_signed: i32 = match pid.try_into() {
Ok(p) => p,
Err(_) => return false,
};
let proc_exe = std::path::PathBuf::from(format!("/proc/{pid}/exe"));
// Phase 1: read /proc/<pid>/exe and compare with self_exe.
let target = match std::fs::read_link(&proc_exe) {
Ok(t) => t,
Err(_) => return false,
};
if target != self_exe {
return false;
}
// Phase 2: verify the process is still alive.
// SAFETY: `libc::kill(pid, 0)` does not send a signal; it only checks
// whether the process exists and the caller has permission to signal it.
if unsafe { libc::kill(pid_signed, 0) != 0 } {
return false;
}
// Phase 3: re-check /proc/<pid>/exe to detect PID reuse between
// Phase 1 and Phase 2.
matches!(std::fs::read_link(&proc_exe), Ok(recheck) if recheck == self_exe)
}
#[cfg(not(unix))]
{
// Fallback: always assume alive (conservative).
let _ = pid;
true
}
}
}
impl Drop for SessionLock {
/// Release the lock automatically when the guard goes out of scope,
/// so an ungracefully-exited process doesn't leave a dangling lock.
fn drop(&mut self) {
let _ = fs::remove_file(&self.path);
}
}
-127
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@@ -1,127 +0,0 @@
//! Pure domain entity for application configuration.
//!
//! Defines `AppConfig`, `ProviderConfig`, and `ModelRole` — the data
//! structures that describe which LLM providers are registered, which
//! model roles exist, and which provider/model is the default.
//!
//! # Architecture
//! These are pure data structures with **no I/O logic**. Load/save
//! responsibilities live in `AppConfigRepository` (domain::repository).
//!
//! ## Data Flow
//! 1. `AppConfig` is deserialised from `app_config.json` at startup
//! 2. The HTTP handler layer calls `SettingsService::update_provider()`
//! to mutate the provider map
//! 3. The modified `AppConfig` is serialised back to `app_config.json`
use std::collections::HashMap;
use serde::{Deserialize, Serialize};
/// Top-level application configuration.
///
/// Holds the registry of configured LLM providers, named model roles
/// (logical profiles mapping to a provider+model pair), and the default
/// provider/model selection.
///
/// ## Fields
/// - `providers` — map of provider name → connection details
/// - `model_roles` — map of role name → provider/model/temperature
/// - `default_provider` — the provider to use when none is specified
/// - `default_model` — the model to use when none is specified
/// - `default_context_window` — fallback context window size in tokens
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct AppConfig {
pub providers: HashMap<String, ProviderConfig>,
pub model_roles: HashMap<String, ModelRole>,
pub default_provider: String,
pub default_model: String,
pub default_context_window: u32,
}
/// Connection details for a single LLM provider endpoint.
///
/// ## Fields
/// - `api_base` — base URL for the provider API
/// - `api_key_env` — optional environment variable name holding the API key
/// - `default_model` — optional default model name for this provider
/// - `default_api_key` — optional inline API key (less secure than env var)
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ProviderConfig {
pub api_base: String,
pub api_key_env: Option<String>,
pub default_model: Option<String>,
pub default_api_key: Option<String>,
}
/// A named model role mapping to a specific provider/model with parameters.
///
/// Roles allow the UI to present logical profiles (e.g. "fast", "reasoning")
/// that abstract over concrete provider+model strings.
///
/// ## Fields
/// - `provider` — which provider serves this role
/// - `model` — which model to use for this role
/// - `max_tokens` — optional maximum output token limit
/// - `context_window` — optional context window override
/// - `temperature` — optional generation temperature
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ModelRole {
pub provider: String,
pub model: String,
pub max_tokens: Option<u32>,
pub context_window: Option<u32>,
pub temperature: Option<f32>,
}
/// Returns the default AppConfig with built-in "zen" and "router" providers.
impl Default for AppConfig {
/// Construct an AppConfig with the default "zen" and "router" providers.
///
/// ## Defaults
/// - Zen provider: `deepseek-v4-flash-free` model
/// - Router provider: `claude-opus-4-8` model
/// - Default role: "default" → zen / deepseek-v4-flash-free, temp 0.7
/// - `default_context_window`: 256,000 tokens
fn default() -> Self {
let mut providers = HashMap::new();
providers.insert(
"zen".to_string(),
ProviderConfig {
api_base: "https://opencode.ai/zen/v1".to_string(),
api_key_env: Some("API_KEY".to_string()),
default_model: Some("deepseek-v4-flash-free".to_string()),
default_api_key: None,
},
);
providers.insert(
"router".to_string(),
ProviderConfig {
api_base: "https://9router.asepharyana.my.id/v1".to_string(),
api_key_env: Some("ROUTER_API_KEY".to_string()),
default_model: Some("claude-opus-4-8".to_string()),
default_api_key: None,
},
);
let mut model_roles = HashMap::new();
model_roles.insert(
"default".to_string(),
ModelRole {
provider: "zen".to_string(),
model: "deepseek-v4-flash-free".to_string(),
max_tokens: None,
context_window: None,
temperature: Some(0.7),
},
);
Self {
providers,
model_roles,
default_provider: "zen".to_string(),
default_model: "deepseek-v4-flash-free".to_string(),
default_context_window: 256_000,
}
}
}

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