## 症状
全量 go test 偶发 SIGSEGV,整个测试二进制被杀(recover 捕不到 runtime
致命错误)。崩溃栈(2026-09-25 实测捕获,完整):
readLoop (process.go:334)
→ markExited → once.Do
→ onExit → Plugin.handleExit (plugin.go:209)
→ Host.ReclaimOwner (host.go:342)
→ arenaRegion.ReclaimOwner → blockBase → getU32
→ SIGSEGV 读已 munmap 的内存
## 根因(两个叠加缺陷,同一后果)
**① markExited 里 close(exited) 早于 onExit**
close(p.exited) // :394 —— 先关闭,唤醒所有等待者
p.sup.untrack(p.name)
p.onExit(...) // :399 —— 回调里要读共享内存
onExit(内核侧 Plugin.handleExit)会调 Host.ReclaimOwner 回收该插件残留的
共享槽,那是要读共享内存区域的。而 exited 一关闭,Stop()/Kill() 就返回
(process.go:566/587),StopAll 随即返回,调用方(Host.Close)立刻
freeShm 解除映射 —— 此刻 onExit 还没跑完,ReclaimOwner 就成了读已 munmap
的内存。
修法:把 onExit 提到 close(p.exited) **之前**,并明确 exited 的语义是
「**完全**收尾完毕」而非「进程已死」——任何等待者看到它关闭后,都可安全
释放共享内存、卸载资源。
**② StopAll 超时分支 `go p.Kill()` 发射后不管**
go p.Kill() // 不等待
本函数返回后调用方就 unmap,而 Kill 内部要等 markExited 跑完(含 onExit)。
改为等全部 Kill 完成(Kill 自带 killReapTimeout 上限,不会无限拖住关停)。
**③ 同类的第三处:事件环订阅在关停时从不退订**
EventRing.Subscribe 注册到 Bus 的 handler 会 ring.WritePush(写共享内存),
而 Host.Close 会 munmap 整块区域。此前:
- handleEvents 把 EvtRingSubscribe 的取消函数**直接丢弃**(corehandler_runtime.go:103)
- EventsUnsubscribe 是 no-op,注释还写着「子进程 Stop 时由内核统一清理」,
但 closeProcHost 根本没有退订
于是每个订阅过的插件都在 Bus 上永久留了一个写共享内存的 handler,
munmap 后任意一条事件经过 Publish 就会写已解除映射的内存 ⇒ 同类 SIGSEGV。
修法:EventRing 记为 unsubs、新增 EvtRingSubscribeTracked(订阅即登记),
Host.Close 在 freeShm **之前**调用 evtCloser.Close 统一退订。
## 回归测试(3 个,均经变异验证「修复前判红」)
1. `TestProcess_OnExitCompletesBeforeExitedCloses`(proc)
断言 Exited() 关闭时 onExit 必须已返回。变异(把 close(exited) 挪回
onExit 之前)→ FAIL。这是本次崩溃的直接判据。
2. `TestHost_CloseUnsubscribesEventRing`(proc)
断言 Host.Close 调用了 evtCloser.Close。变异(撤掉退订)→ FAIL。
3. `TestEventRing_CloseUnsubscribesFromBus`(plugin)
端到端:订阅 → Publish 有写入 → Close → Publish 不再写入。变异
(Close 不做事)→ FAIL。
顺带给 EvtRing 加了 Written() 访问器(诊断 + 上述测试的可观察量)。
## 验证
- 三个新测试全绿;-race 下 ./internal/plugin/... 全绿
- proc 包连跑 12 轮、internal/plugins 连跑 20 轮:SIGSEGV 0 次
- 全量 go test -count=1 ./... → 38 ok / 0 FAIL
- go build ./... / go vet ./... 干净
## 另有两个**既有** flaky(本次未动,与 C 化无关,单独记录)
排查过程中用「我的树 20 轮 vs 干净树 20 轮」对照确认了归属:
- 测试间固定端口冲突(pluginmgr 9876 / remotedevice 9890 / webui 8080):
并行或残留实例时报 bind: address already in use。干净树同样复现。
- TestRealPlugin_DeepSearchInvoke 依赖外部 SearXNG(127.0.0.1:8888):
上游限流时(brave "too many requests"、duckduckgo/quark CAPTCHA)断言失败。
干净树同样复现。属外部依赖,不是代码缺陷。
两者都不属本次「排查崩溃」的范围,已记入 plan.md 待办。
⚠️ 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
Input Scheduling: 2 classes + 4 interrupt levels — Input does not go straight to the LLM;
it first enters the scheduler. Two classes (queued = pending work, interrupt = ranked L1–L4 by
"how urgent") with preemption and frame saving (interrupt stack); same level never preempts
same level. L4 belongs only to the kernel and kernel-level plugins (e.g. the WebUI stop button).
See "Input Scheduler & Interrupt Mechanism" in assets/docs/en/ARCHITECTURE.md.
Resident sub-agents — The kernel can station lightweight-kernel child agents (their own
scheduler and temp graph memory, sharing the channel registry) to run long or backlogged work
in parallel. When the main agent stays busy, the kernel hands queued input to a temporary
triage assistant: simple items are handled directly, items needing the main agent get an
immediate "busy, please wait" — users no longer wait in silence.
See docs/zh/resident-subagent-design.md.
Architecture Diagrams
1. Message Processing Sequence
sequenceDiagram
participant U as User/Plugin
participant IO as IOManager
participant SCH as Input Scheduler
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->>SCH: inputCh
rect lavender
Note over SCH: 2 task classes + 4 interrupt levels (L1-L4)
SCH->>SCH: same level never preempts -> ready/interrupt queue
SCH->>SCH: higher level -> preempt (frame pushed to interrupt stack)
SCH->>SCH: offload (main agent busy too long -> temporary triage assistant)
end
SCH->>EV: pick one task and run it
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: safe point: interrupt eval / yield
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
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: input scheduler (2 classes + 4 levels), event loop, LLM tool loop, 7-stage pipeline, residents
├── agent/api/ LLM Provider (Lua adapter layer: provider.go drives the vm)
├── 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/ 18 built-in plugins (webui/cli/timer/cmd/mcp/files/cfgmgr/agentcli/healthcheck/pluginmgr/clawhubadapter/multimodal/remotedevice/ai_image/localuse/skillmgr/data, ...)
├── sdk/ PluginSDK (Tool/Stage/Event three channels)
├── config/ SQLite config center
├── events/ Event bus
└── internal/lua/adapters/ 10 LLM protocol adapter scripts
External plugin development: see [homeagent-sdk](https://gitcode.com/JianFeeeee/homeagent-sdk) repo, use `hmapdev` toolchain, refer to Go and Lua examples in `example/`
Project Status
v1.3.x line (v1.3.1–v1.3.12, latest released) — resident sub-agents + input scheduler rework.
- Resident sub-agents: the kernel can station lightweight-kernel child agents (their own
scheduler, their own temp graph memory, sharing the channel registry). The parent dispatches
and collects work via
resident_agents(list/create/send/inspect/compress/reclaim/destroy). An inputch can be assigned to a child, so input is routed to it before entering the kernel. - Output channels addressable to a specific agent: the
AllowedOutputsgrant set (consistent across all three filter points) lets parent/child deliver to each other; device capabilities became output channels too (onedevice/<id>per device). - Input scheduler: two task classes (queued/interrupt) + four interrupt levels (L1–L4)
- preempt/suspend/resume/interrupt-stack; same level never preempts same level, with a starvation guard and preemption cooldown. L4 belongs only to the kernel and kernel-level plugins (e.g. the WebUI stop button).
- Lightweight kernel profile: a child's memory surface narrows to "conventional context
- graph memory" (narrow interface; the main graph opens as a query_only handle, writes go to its own temp instance).
- Backlog timely feedback (later in the line): when the main agent is busy for a long time, the kernel hands queued input to a temporary triage assistant — simple items are handled directly, items needing the main agent get an immediate "busy, please wait", so users no longer wait 10+ minutes in silence.
- Fixed a batch of real defects: inbound inputch (
child/<id>) registration leak on resident destruction, a child's round count always showing 0 (info()never filled it), an empty child-side childIO (output channels not inherited), device heartbeat pong missing Flush (dropping every 60s), and Lua plugin bridge alignment with SDK 1.3.0.
v1.2.0 — unified multimodal vector space, media promoted to first-class graph memory, and the whole data plane moved into shared memory.
- Model-neutral unified embedding space: the kernel no longer adapts to any specific model.
It exposes only a public provider SPI (
pkg/embedding:Modality/Input{Data,MIME}/Info{Dimension,Fingerprint,Modalities}+ a name registry), with implementations underproviders/*. Default: Chinese-CLIP ViT-B/16 — text and image land in the same space (512-dim, fingerprintcd2a495cf990, Apache-2.0; measured ~1.59GB peak on load, settling to ~0.89GB steady-state);qwen3vlis kept (2048-dim, ~9.4GB) for machines with headroom or future video. Text search still falls back to the existing word-vector / TF-IDF path — a CLIP dual tower's pure-text semantics are weaker than an MLLM-style embedder, a cost documented rather than hidden. - Media are first-class nodes and edges in the graph DB: the "index images via generated
text descriptions" stopgap,
media_refsand media reference counting are removed. Memory blocks follow a single-layer invariant — Context → Document → Graph is a migration, not a copy, and not kept alive by references. - The entire data plane goes through shared memory (tool-call frames, Cleaners, input/output lanes, media blocks, document and knowledge bodies); RPC carries only offset descriptors. RPC protocol is now 2: the fd3 layout changed and there is no rolling upgrade — kernel and all plugins must be rebuilt and installed together.
- Injections can declare
InjectOptions{NoMemory, ContextPolicy}(defaults: still recorded, not pruned); pruning must be requested explicitly and goes through the plugin's registeredCleaner. SDK 1.2.0 is purely additive over 1.1.0. - Release packages enable the ONNX space by default and bundle the model (754MB) plus
ONNX Runtime (24MB) in the server/full packages;
homeddrops native Windows support in favour of WSL2; the jieba dictionary is embedded in the binary. - Fixed three silent install-chain failures:
initconfigwas a no-op (CGO_ENABLED=0stub) that printed credentials without writing any, fresh installs were misdetected as "already configured" so default seeding was skipped entirely (0 plugins installed), and the debpostinstlooked for the unit in the wrong path soenablenever ran. - Licensed AGPL-3.0-only from this version on (network clause included; statically linked plugins must match — see License).
The historical entries below are kept verbatim to show the evolution; two mechanisms in them were removed in v1.2.0: text-description-based media indexing, and reference-counted media GC.
One licensing statement has also changed (2026-09-24): "statically linked plugins must match" in the v1.2.0 entry below no longer holds. The SDK is now released under MIT (a permissive license that does not inherit the kernel's AGPL), so external plugins are not derivative works of this project: authors choose their own license (closed-source, commercial or private included) and are not bound by §13. The original text is kept to show the position at the time.
Two performance claims also need correcting (measured 2026-09-20): "crash-to-recovery under 1s" does not hold — restarts are linearly backed off, i.e. 1s / 2s / 3s (
procRestartBackoff=1s × nth crash). Even the first restart waits 1s. And the 4th crash within a 5-minute window stops automatic restarts pending human intervention (procMaxRestarts=3, tested asn > 3). The backoff was already 1s when this claim was written (v1.0.0), so it never held. "RPC round-trip p50 24.1µs" is the right order of magnitude but does not match current measurements:BenchmarkToolInvokeon this machine gives inline/small 30.4µs, frame/small 51.5µs, inline/large 767µs, frame/large 398µs. The original text is left unedited rather than rewritten, so the history isn't falsified.
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 toolchain — called plugindev back then, now hmapdev — 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
- Project Overview | 中文
- Technical Architecture | 中文
- Plugin Development Guide | 中文
- Lua Adapter | 中文
- Knowledge Base Demo
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_v1.2.0_{Full,Server,Client}_win64.exe(NSIS installer, includes the AGPL license page). Since v1.2.0homedno longer supports native Windows (it relies on fd inheritance and in-segment offset dereferencing), so the installer bootstraps WSL2 and installs the Linux packages inside the distribution the same way a Linux host would. - 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.
homedrequires Linux (it relies on fd inheritance and intra-segment offset dereferencing of the shared memory region; seecmd/homed/platform_windows.go). On Windows onlywaiter.exeis built andhomedruns under WSL2 (see Downloads). macOS can buildwaiter/initconfig;homedmust be built on native macOS.
License
This project is released under the GNU Affero General Public License, version 3 (AGPL-3.0-only) — see LICENSE.
This is the strongest copyleft in the GPL family: besides shipping the complete corresponding source when you distribute the software, you must also offer the source to users who interact with it over a network (§13, Remote Network Interaction). Anyone running a modified HomeAgent as a network service therefore has to make the modified source available to that service's users.
Plugins are statically linked against this project through the public homeagent-sdk (the SDK source ends up inside the plugin binary), but that repository is released under MIT — a permissive license, so code received under it does not inherit this project's AGPL. External plugins are therefore not derivative works of this project: authors pick their own license (closed-source, commercial or private included), with no same-license obligation and no §13 network clause. The safety and vitality of the third-party plugin ecosystem rest on this.
The boundary is clean: AGPL covers the kernel and the bundled plugins (homed, internal/,
the 18 built-in plugins under internal/plugins/); MIT covers the public SDK (sdk/, whose
go.mod has zero external dependencies and imports only the Go standard library — it never
references any kernel code). Process isolation is beside the point here — what decides the
license is the linked SDK code itself, and that code is MIT.
Third-party components shipped with the packages
| Component | License | Location |
|---|---|---|
| Chinese-CLIP ViT-B/16 (ONNX artifacts) | Apache-2.0 | /usr/lib/homeagent/models/chinese-clip-vit-b16-onnx/ |
ONNX Runtime (libonnxruntime.so) |
MIT | /usr/lib/homeagent/onnxruntime/ |
| jieba dictionary (embedded in the binary) | MIT | internal/memory/jiebadict/ |
| Go dependencies (go-sqlite3, gojieba, bubbletea, …) | MIT / BSD-3 / Apache-2.0 | permissive, AGPL-3.0-compatible |
These components keep their own licenses and are not relicensed by this project. Full texts are
shipped in /usr/share/doc/homeagent/licenses/, and the package metadata declares this package
as AGPL-3.0-only.
