JianFeeeee f868975c0e feat(core): 注入行为的记忆/裁剪标志位落地 + jieba 词库内嵌 + Windows 改走 WSL
配套 SDK 提交:homeagent-sdk ba49dfd(公开 API 纯追加,无签名变更)。
本仓第三方的库镜像同步至该版本,以保证全新 clone 能编译。

## 1. 注入标志位(内核侧)

- 7 条注入路径(排队/中断/同步 × 纯文本/带媒体 + 旧 NoMem 变体)解析并转发
  no_memory / context_policy / cleaner_name;策略在入口**校验**,
  非法值报错而不是静默降级成 none(降级会让调用方以为自己声明的裁剪在生效)。
- 新增 validateContextPolicy(与 tool.register 同一套规则)与 pubSdkInjectOpts。
- input.register 不再手写字段白名单重建 ChannelDef,改为整体传递 + 补 ContextPolicy。
- io 层:applyInjectOpts 把标志位写进事件 payload,仅非零时写
  (零值与旧 payload 逐字节一致,事件订阅方与旧内核都不受影响)。
- ioAdapter / procCore / internal-sdk 别名补齐六个 *Opts 实现。

## 2. 修掉「输入无条件裁剪」这个真缺陷

eventloop 此前对**每条非中断输入**都调 `context.Prune(...)`:破坏性(低相关事件被
归档移出上下文)且无法从调用点看出是谁触发的。改为 pruneOnInput/pruneDeclared:

  优先级:注入点声明(payload.context_policy)> 通道声明(ChannelDef.ContextPolicy)
          > 默认**不裁剪**

查询向量仍取清洗后的内容;新增 cleanInputFor 解析清洗文本,优先级为
注入点声明的 cleaner(cleaner_name)> 按 source 查到的通道 cleaner > 原文,
名字查不到时**记日志再回退**(注入是 fire-and-forget,插件看不到错误,
至少要在内核日志留下「你声明的清洗没生效」的痕迹)。

## 3. jieba 词库内嵌(修「猜 GOMODCACHE → 静默失效」)

原 jiebaDictDir() 去猜 GOMODCACHE/GOPATH/~/go/pkg/mod,部署机上通常没有 Go 模块
缓存 → GetJieba() 返回 nil → 分词/关键词提取/NLP 依存解析(进而 doc→graph 三元组
抽取)/静态词向量 tokenizer **一律静默返回空列表**,只有一行日志。本机看起来正常
只因开发机与生产机重合、恰好有那份缓存。

现在词库随二进制分发:internal/memory/jiebadict/ 5 文件约 11.6MB + go:embed,
按**内容哈希**命名缓存目录落盘(词库升级不复用旧文件),已齐全则跳过写入。
模块缓存降为兜底。homed 体积 32MB。

顺带确认(并有测试佐证):gojieba 的 Tag() 不需要 pos_dict/ 目录——
cppjieba 的 PosTagger 从主词典每行的词性列取 tag。

## 4. homed 放弃 Windows 原生,改走 WSL2

插件体系依赖「继承的 fd」+「统一共享内存区的段内偏移解引用」,Windows 既无 fd
继承语义,其句柄模型也无法表达后者;强行适配等于再维护一套平台专属 ABI
(C ABI 时代三套 ABI 并存曾导致改写型插件在某平台静默失效)。

- cmd/homed/platform_{windows,other}.go:原生 Windows 启动即拒绝并打印 WSL2 指引。
- internal/plugin/proc/shmalloc_windows.go:allocShm 直接返回「请用 WSL2」,
  **不返回半可用的段**(与 shmalloc_other.go 同风格:未支持平台显式报错);
  procEnvForShm 返回 nil。顺手修掉两处长期编译错误
  (cryptorand→rand、h.evData→h.unified.evtData),使 GOOS=windows 至少能编译。
  注:homed 本就编不出 Windows——internal/memory 依赖 cgo-only 的 gojieba。
- deploy/packaging/installer.nsi:不再安装 homed.exe/initconfig.exe,改为携带
  **linux payload** 并调用新的 install-via-wsl.ps1;退出码 20/21 表示
  「需先装 WSL/发行版」,走指引而非报错。
- deploy/packaging/windows/install-via-wsl.ps1(新):检测 WSL → 引导安装 →
  确保 WSL2 → 送包进发行版 → 在 WSL 内按 Linux 方式安装。**复用 Linux 包与
  linux/setup.sh**,不另写一套安装逻辑;落点与 deb 布局统一
  (/usr/bin/homed + /usr/lib/homeagent/setup.sh)。
- deploy/packaging/linux/setup.sh:API Key 允许 HOMEAGENT_API_KEY 覆盖
  (否则安装器界面显示一份、config.db 里另一份 → 登录不上)。
- deploy/packaging/build.sh:windows 目标只构建 waiter + gui,并新增
  stage_linux_payload 把 Linux 包暂存给安装器;homed/initconfig 在 windows
  目标下明确拒绝。

## 5. 插件调用点统一写明意图

- webui 的 OpenAI 兼容端点(固定提示词模板)→ InjectTextSyncNoMemory。
- agentcli 的 5 处纯状态通知(已启动/超时/执行结束/进程退出/读取结束)→ NoMemory;
  **带输出**的 2 处(定时反馈、有新输出)刻意保留记忆并注明理由。
- timer 的定时提醒 → NoMemory(中断本来也隐含 NoMemory,这里是写明意图)。

## 6. 版本

meta.Version 仍为 1.2.0(main 是下一个未发布中版本);
SDKCompatibleVersion 1.1.0 → **1.2.0**(本内核已实现 SDK 1.2.0 全部新增方法)。

## 测试

- core:默认不裁剪(无声明/none/空)、通道 opt-in、注入点双向覆盖通道、
  nil context/io 安全、cleaner 优先级与未知名回退。
- io:零值 opts 与历史 payload 逐键相同;text/中断/媒体三类注入标志位都落到
  payload;旧方法仍生效。
- proc:validateContextPolicy 只接受 ""/none/prune,报错含位置与实际值;
  **跨进程** e2e——testdata 插件经 io.injectText 送出三个标志位,断言它们穿过 RPC
  到达内核。
- memory:模块缓存不可见时内嵌词库仍可用(分词与 POS 内容词均非空)、
  落盘幂等、内容哈希稳定。

验证:go build ./... / go vet ./... / go vet -tags onnxruntime ./...
      go test -short ./internal/memory/... ./internal/nlp/... ./internal/plugin/...
      ./internal/agent/{core,io}/... ./pkg/...
2026-09-11 20:31:50 +08:00
2026-07-29 15:45:24 +08:00

⚠️ AI-Assisted Programming Notice: Parts of this project's code, documentation, and commit history were generated or modified with AI assistance. Key changes have been human-reviewed, but please evaluate and verify before use.

HomeAgent

中文: README.md

An Agent framework designed around separation of core domain and application domain. The kernel enforces a zero-IO policy — all external interaction (WebUI, QQ, CLI, file operations, web search, memos, etc.) is handled by the plugin layer; the kernel performs no direct IO operations.

Combined with a three-layer memory architecture (Context → Document → Graph), it maintains contextual coherence across long-running single-conversation sessions through tiered storage and automated archival.

homed (kernel, zero IO) ← PluginSDK → plugins (all IO capabilities)

Since v1.1.1 media reaches the plugin boundary: plugins and the model can both read and write images/audio in memory (InsertWithMedia, InjectInputMedia). Media lives in plain-text memory as a [<mime> <short digest>] <description> marker — the description is the searchable semantic memory, the digest is the key back to the bytes.

Since v1.0.0 external plugins are independent subprocesses, communicating with the kernel over stdio JSON-RPC (control plane) + a shared memory segment (data plane) + an event ring (notification plane). A plugin crash cannot take down the kernel and it restarts automatically; swapping plugin.bin gives true hot-reload.

Design Principles

Separation of Core Domain and Application Domain — The kernel's responsibilities are limited to LLM orchestration, memory management, and knowledge retrieval; all IO capabilities (message send/receive, file read/write, network requests, hardware interaction, etc.) are implemented by plugins. This separation defines domain boundaries at the Agent framework level, with distinct responsibility scopes for the kernel and plugins.

Three-Layer Memory Architecture — Manages information retention in long-running agents through a tiered storage strategy:

  • Context Layer: Pretrained word embedding / TF-IDF fallback relevance-scored event window, protects last 10 entries, maintains topK context entries
  • Document Layer: Temporary memory with automatic cold data sinking, also supports user-initiated submissions
  • Graph Layer: SQLite graph database, persists entity relationships and semantic memory, supports distillation pipelines to extract triples from conversations

Architecture Diagrams

1. Message Processing Sequence

sequenceDiagram
    participant U as User/Plugin
    participant IO as IOManager
    participant EV as eventLoop
    participant CTX as RelevanceContext
    participant LLM as LLM+Tool Loop
    participant ST as StageHost
    participant MEM as Three-Layer Memory

    U->>IO: InjectInput(type, payload)
    IO->>EV: inputCh
    rect lavender
        Note over EV: processTextInput
        EV->>ST: StageOnInput  Plugin can rewrite/short-circuit
        EV->>CTX: Prune(input,topK)  StaticEmbedder/TF-IDF cosine pruning
        CTX->>MEM: Low-score events archived to Document (original timestamp)
        EV->>CTX: Append(input)  CleanTemplateText→three-branch vector→5s write
    end
    rect lightgreen
        Note over EV,LLM: process()
        EV->>MEM: buildMemoryContext  Indexer recalls from Graph (vector+jieba→BFS depth=2)
        EV->>MEM: buildSystemPrompt  DocQuery summary+Graph memory index+Persona+Skills
        EV->>ST: StagePreAction  Plugin can pre-intercept
        loop Tool loop
            LLM->>LLM: drainInterrupts
            LLM->>LLM: LLM Chat
            LLM->>ST: StagePostAction  Plugin can modify/short-circuit
            alt No tool call
                LLM-->>EV: Returns response
            else
                loop Each tool
                    ST->>ST: StageBeforeToolcall  Plugin can reject
                    LLM->>LLM: executeToolCall
                    ST->>ST: StageAfterToolcall
                end
            end
        end
    end
    rect lightpink
        Note over EV: emitResponse
        CTX->>CTX: Append(response)
        ST->>ST: StageBeforeOutput  Plugin can rewrite
        EV-->>U: ResponseCh CLI sync
        EV-->>EV: Event bus WebUI SSE
        ST->>ST: StageAfterOutput  Read-only
        EV->>MEM: emitMemoryCandidate
    end

2. Stage Pipeline

flowchart LR
    S1[① on_input] --> S2[② pre_action]
    S2 --> S3[③ post_action]
    S3 --> Q{Has tool?}
    Q -->|Yes| S4[④ before_toolcall]
    S4 --> T[executeToolCall]
    T --> S5[⑤ after_toolcall]
    S5 --> S3
    Q -->|No| S6[⑥ before_output]
    S6 --> S7[⑦ after_output]
    style S1 fill:#e1f5fe
    style S3 fill:#fff3e0
    style S6 fill:#e8f5e9

3. Three-Layer Memory

flowchart TB
    subgraph C[① Context Working Window]
        RC[RelevanceContext]
        A[Append] -->|CleanTemplateText→three-branch vector| RC
        P[Prune StaticEmbedder/TF-IDF Cosine] -->|Low score original timestamp| D
        P -->|Keep| TL[timeline→chronological→system prompt]
    end
    subgraph D[② Document File Memory]
        DS[DocStore JSON+TF-IDF]
        Q1[Query summary auto-inject] -->|[Related Memory Docs]| SP
        Q2[doc_query LLM active recall] -->|Consume+delete source| DS
        Q2 -->|Original timestamp write to context| RC
        CD[FindColdDocs 72h] -->|docToTriples| G
    end
    subgraph G[③ Graph Database]
        DB[(SQLite)]
        IDX[Indexer vector+jieba→BFS depth=2] -->|[Memory Index]| SP
        MEM[memory_recall/commit/merge/purge/edit]
        SOC[person_query/set_trait]
    end
    subgraph H[④ Heartbeat Distillation]
        REORG -->|Step3 Cold docs| CD
        REORG -->|Step4 Bigram Jaccard| CONS[consolidation]
        PIPE[Pipeline regex] -->|Name/Address/Likes/Age/Job| DB
    end
    SP[System Prompt] -->|Sequential assembly| LLM
    LLM[LLM] -->|doc_query| Q2
    LLM -->|memory_recall| MEM

See assets/docs/en/ARCHITECTURE.md for details.

Web Mascot

HomeAgent Web Mascot Xiaozhai

Xiaozhai — HomeAgent Web Mascot

Quick Start

make build build-cli
./build/homed -data /tmp/ha
# Interactive mode
./build/waiter

# Or single message
echo "Hello, remember that I like coffee" | ./build/waiter

API keys are configured via WebUI http://localhost:8080 settings page, persisted in SQLite.

Code Structure

cmd/homed/          Daemon entry, assembles all subsystems
cmd/waiter/         CLI client (Unix socket)
internal/
├── agent/core/     Agent core: event loop, LLM tool loop, 7-stage pipeline
├── agent/api/      LLM Provider + 8 Lua adapters
├── memory/         Three-layer memory: Graph(SQLite) / Document(JSON+TF-IDF) / Text(JSONL) + StaticEmbedder(pretrained word embedding/TF-IDF fallback) + CleanTemplateText(de-template)
├── knowledge/      Knowledge base (filesystem + TF-IDF)
├── plugin/         Plugin registry + subprocess loader (stdio RPC + shared memory segment + event ring)
├── plugins/        11 built-in plugins (webui/cli/timer/cmd/mcp/clawhubadapter/agentcli/healthcheck/pluginmgr/files/cfgmgr)
├── sdk/            PluginSDK (Tool/Stage/Event three channels)
├── config/         SQLite config center
├── events/         Event bus
└── internal/lua/adapters/   8 LLM protocol adapter scripts
External plugin development: see [homeagent-sdk](https://gitcode.com/JianFeeeee/homeagent-sdk) repo, use `plugindev` toolchain, refer to Go and Lua examples in `example/`

Project Status

v1.1.1 — Multimodal reaches the plugin boundary. v1.1.0 gave the memory system binary multimedia nodes, but that path was open only to the kernel itself; this release opens it to plugins and the model. The public SDK gains media fields and three media injection methods (paired with SDK v1.1.0, shared by the whole 1.1.x line), and the kernel implements the four matching RPCs. The bridge layer had been silently dropping fields: Confidence/types/SentenceText handed in by a plugin were discarded, Doc kept only three fields, and Remove never released references (media stayed "referenced" forever, so GC could never reclaim it). processTextInput and processMediaInput were unified into a single processInput, which finally gives the media path the dedup, no_memory, channel Cleaner, interrupt semantics and correct EventRawInput it had always lacked. Three real defects fixed: user-sent images never appeared in the WebUI chat log (the media path published a map while the subscriber asserted a string), memory_commit's sentence_text had never been exposed to the model (though it is the mandatory link in the media binding chain), and two data races in PluginSDK (11 reported by -race; in production this showed up as sporadic nil-dereference crashes during plugin reload).

v1.1.0 — Memory system supports binary multimedia nodes. Content-addressed media store (CAS + SQLite metadata + on-disk blobs, Get always re-verifies the digest) wired through L0 (context events) / L2 (documents) / L3 (graph sentences), with reference-counted GC (referenced items are never deleted). The description text produced by the vision model is the durable semantic memory; the blob is only a cache that capacity GC may evict.

v1.0.0 — External plugins moved from C ABI shared libraries to subprocess + shared memory. The first release that no longer loads .so/.dll, and it is incompatible with 0.9.x (existing plugins must be rebuilt into plugin.bin with the new plugindev, though business code needs zero changes). Eliminates 6 classes of defects that had caused production incidents: hot-reload silently failing (DF_1_NODELETE making dlclose a no-op), no crash isolation (a plugin panic took down homed), stage lost updates (35.8~36.8% loss under the copy model), uncancellable cgo timeouts (linear OS-thread leaks), output_send reporting false success (the model was told "sent" while the message never went out), and Windows capability degradation (only 3 stage fields visible, no write-back). Three communication planes: stdio JSON-RPC (control) + shared memory segment (data) + event ring (notification); the privilege gradient is now enforced by three explicit gates. RPC round-trip p50 24.1µs; crash-to-recovery under 1s.

v0.9.0 — C ABI v2: external plugin Stage callbacks can now write back (invoke_stage gained a result out-param; plugins may mutate RawMessage/LLMText/ToolResults etc. in OnInput/AfterToolcall/PostAction and have them synced to the core). ABI version now tracks core minor releases (v0.9.x → ABIVersion=2, version_min=1 keeps old plugins loadable). Also fixes the tool-loop zen-compat placeholder that wrongly fired on first-turn system context tail. The SDK ships an enhanced sanitizer example (bad-UTF-8 / U+FFFD / ANSI-escape scrub across the whole pipeline). This ABI retired with v1.0.0.

v0.8.0 — Core is functional, plugin system enhanced. 20+ built-in plugins. External plugin development via homeagent-sdk repo. Added input channel NoMemory/Cleaner, ChannelDef, plugin disable/enable system (CLI + WebUI), plugindev toolchain C ABI ChannelDef support.

Documentation

Downloads

Releases ship three variants:

Variant Contents For
full homed + waiter + desktop GUI + systemd unit Single-machine, everything
server homed + waiter + systemd unit Servers (no desktop environment)
client waiter + desktop GUI Connecting to a remote HomeAgent
  • Linux: .deb (amd64/arm64), .rpm (x86_64), .tar.gz
  • Windows: HomeAgent_v1.1.1_{Full,Server,Client}_win64.exe (NSIS installer)
  • Portable: homeagent-bin-<os>_<arch>.tar.gz (homed/waiter/initconfig)
  • Verification: SHA256SUMS

The macOS homed requires a native macOS build (CGO + sqlite3), so release packages ship only waiter/initconfig.

Build

make build build-cli    # Build daemon + CLI
make test               # go test ./...
make install            # Install to system

Dependencies: Go 1.25+, CGo (go-sqlite3), Linux/Windows.

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