21 Commits

Author SHA1 Message Date
4737aa10e2 chore(version): release/v1.2.x 路牌推到 1.2.1(本版内容:人格门禁跨通道化 + healthcheck 状态报告)
v1.2.0 已从 f550bb2 发出且 tag 不可改写;本分支今起产出 1.2.1。
主干 main 的路牌仍是下一个未发布中版本 1.3.0,不随本 patch 变动。
2026-09-12 14:55:53 +08:00
d759e74cca feat(healthcheck): 内核状态快照报出内核版本号与 ONNX 模型启用状态
healthcheck_kernel 此前没有任何「ONNX 模型是否在用」的信息,只报「向量可用/不可用」,
分不清「统一多模态空间已加载」与「退回到词嵌入/TF-IDF 路径」;人格卡要求
「版本以运行时快照为准」,也缺一个可查字段(build.version 早就在,但没人知道)。

- KernelStatus 新增 onnx 段:enabled / provider / dim / fingerprint / modalities / reason。
  判据取 Loaded()(provider 真正打开且元数据合法),**不是**「配置里写了 provider」
  —— 后者在模型缺失 / 运行时缺失时也为真,报出去就是假绿。
- 未启用时 reason 给**具体原因**:未配置(说明会走回退路径)/ 打开失败的具体错误。
  homed 把「配置的 provider 名」与「打开失败原因」透传给 Agent,仅供状态报告。
- ProviderAdapter 新增 Modalities()(可选能力,按接口断言取用,不改公开契约)。
- healthcheck_kernel 的工具描述同步说明它回答这两件事。

**顺带修一个真实 panic**:collectKernelStatus 的 knowledge 是**接口**参数,
(*knowledge.Store)(nil) 塞进接口后 `ks != nil` 仍为真 → 调 List() 直接 panic,
而 healthcheck_kernel 正是走这条路径(panic 发生在工具 goroutine 里)。
GetKernelStatus 改为先按具体指针判空、再赋给接口;并加刻画测试钉住这个成因
(一旦不再 panic 说明参数形状已变,守卫与该测试应同步删除)。

验证:单测 4 例(已启用 / 打开失败 / 未配置 / 未加载)+ 刻画测试;
隔离实例 E2E 7/7:正例 provider=chineseclip → enabled=true、dim=512、模态 2;
反例 provider=nonexistent → enabled=false 且 reason 含具体错误与 provider 名,
真实对话仍通。
2026-09-12 14:55:09 +08:00
010a081d56 feat(persona): 首启人格门禁跨通道化 + 内核 persona_set 工具
WebUI 首启向导只覆盖 WebUI 这一条通道,而「人格该问一次」是所有通道的事:
走 QQ / CLI / ACP / 邮件来的人永远见不到那个向导,人格就永远是没确认过。

- 门禁移到 buildSystemPrompt(每轮重建 → WebUI/QQ/CLI/ACP/邮件全覆盖),
  以 core.internal.persona_initialized 为准:未确认时要求模型主动询问用户
  (默认 / 自定义 / 以后再说),确认后该段消失;personaStore 为 nil 时静默关闭。
- 新增内核内置工具 persona_set(mode=default|custom|later[, content]),
  落库逻辑与 WebUI 向导**共用 internal/config**(一个实现 + 两个薄入口:
  ConfigRegistry 直连 / 插件侧 SettingsAPI),避免两套语义各自漂移。
- AgentConfig 增加 PersonaStore 接口,cmd/homed 用 RegistryPersonaStore 实现。
- 非法输入(未知 mode / custom 空内容)在打标记**之前**拒绝:否则标记置位、
  向导被跳过,用户再没机会设。

E2E(隔离实例 + 真实 LLM 往返走 /v1/chat/completions,/var/tmp/persona/e2e.sh)9/9 PASS:
未确认时模型主动询问 → 用户答「用默认的」→ 模型调用 persona_set 落库并置位标记
→ 之后不再追问;反向对照(清标记 + 清会话上下文 + 重启)重新开始询问,
排除了「同一段对话里已问过」这一混淆。
2026-09-12 13:55:29 +08:00
f550bb2cca docs(branching): 明确开发者文档的发布归属——以 rel 分支的形态为准,再合入 main
用户裁定:开发者文档应当在每个 rel 分支被修正为对应 rel 的形式,随后合入 main。

新增 §二.7,写清:
- 规则与做法(release 上按本版口径改 → cherry-pick 到 main,遵守 §三 只 pick 不 merge)
- 为什么不能直接改 main:main 语义是「下一个未发布版本」;assets/docs 会随发行包
  分发并在 WebUI 被阅读,服务的是「这一版」;版本号/工具名/机制有无都随版变动
- main 上描述「下一版才有」的行为必须显式标注(如「(下一版)」)
- 反例表(本仓真实踩过):人格卡写死 v0.9.0 + 已删除的 C ABI、架构文档把已移除的
  描述式索引/引用计数写成现行、README 停在旧版本
- 配套硬约束:任何会被当作事实的文本不得写死版本号,须插值或读运行时快照并加测试
2026-09-12 13:06:48 +08:00
551a423322 feat(webui): 首启人格向导(默认 / 自定义 / 稍后)+ 一次性标记
接续人格配置项化(597f07c):现在人格是 core.agent.personal_prompt,
本次加上「首启问一次」的界面,之后不再打扰。

后端(GET/POST /api/v1/persona):
- GET  → {initialized, current_prompt, file_override}
        未设置时 current_prompt 回落到内置默认模板;存在 personal/personal.md
        时报告 file_override(它会覆盖配置项,向导据此提示用户)
- POST → {"mode":"default"|"custom"|"later","content":"…"}
        写配置 + 打一次性标记 core.internal.persona_initialized;
        custom 返回 restart_required=true(人格在启动时载入);
        「稍后」= 保留当前默认 + 打标记,**绝不阻塞任何流程**
- 空内容的 custom 与未知 mode 一律 400,且**不打标记**(否则向导会被跳过)

前端(dashboard.html):
- 首启拉一次 /api/v1/persona,未初始化则弹向导(复用一直没人用的 .confirm-* 样式)
- 「自定义…」第一次点击展开文本域并预填当前人格,再次点击才提交(避免误提交)
- 中英双语走既有 __() 机制;保存失败/空内容用 toast 提示

测试:TestPersonaWizardFlow(首启状态、later 打标记不改人格、custom 写入 + 需重启、
空内容与未知 mode 被拒且不打标记)、TestPersonaWizardReportsFileOverride。

E2E(真实实例):首启 initialized=false → POST later → initialized=true,
config 中标记=1、人格键为默认模板;前端页面含向导函数。
2026-09-12 13:02:18 +08:00
6b9a7f36fd docs(architecture): 记忆流转图对齐统一多模态空间
流程图里 Context/Prune/DocStore 三行仍只写 StaticEmbedder 与 TF-IDF,
读起来像"向量化只有词嵌入一条路",与 1.2.0 实际(多模态统一空间为主,
带 fingerprint;词嵌入/TF-IDF 是降级层)不符。

- Context Append:补三层向量层级说明
- Context Prune:改为 DenseCosine(仅同指纹比较)→ StaticEmbedder 回退
- DocStore:改为稠密向量 + dense_fp 同指纹要求(不符即重算)
- 中英双版同步
2026-09-12 12:46:21 +08:00
70f03354a2 feat(persona): 人格设定配置项化 + 默认模板契约测试 + 腐坏告警
起因(v1.2.0 压测):线上实例内核日志/接口都报 1.2.0,agent 被问版本时却按人格卡
自述 v0.9.0 + C ABI v2(该机制 v1.0.0 已删除)。根因是人格只有「文件」一个来源且无人
维护——写死的版本号必然随发版腐坏。

改动:
1. 新增配置项 core.agent.personal_prompt(多行文本),默认值为内置模板
   config.DefaultPersonaPrompt,随其它默认值同批播种(老安装不注入,语义不变)
2. 默认模板**不含任何版本号字面量**,并显式要求「被问到版本/构建信息时以运行时快照
   (healthcheck_kernel)为准」——从根上消掉这类腐坏
3. 人格来源优先级:personal/personal.md(存在且非空)> 配置项 > 无
   启动日志明确打印来源;文件含腐坏内容(版本号字面量 / 已删除机制的说法)时告警并
   建议迁移到配置项
4. internal/agent.PersonaStaleHints:腐坏检测(版本号正则 + 已删除机制词表)

契约测试(防复发):
- TestDefaultPersonaPromptHasNoVersionLiterals:默认模板不得含 v?\d+\.\d+\.\d+,
  且必须含「运行时快照」要求
- TestPersonaPromptRegisteredWithDefault:注册存在、默认值一致、播种真的写入
- TestPersonaStaleHints:线上人格卡原文必须被识别(v0.9.0 / C ABI v2),干净文本不误报

验证:go build ./cmd/homed ok;go vet 三个包 ok;go test ./internal/config ./internal/agent ok;
端到端两场景(无文件→来源=配置项 1307 字节;有旧文件→来源=文件 + 告警列出 v0.9.0 与 C ABI v2)。
2026-09-12 12:42:09 +08:00
4f9370ae7a refactor(plugin)!: 重编提示与模板路径改用 hmapdev;文档全面对齐 1.2.0
工具链在 SDK 1.2.0 更名为 hmapdev(原 plugindev)。核心侧三处功能耦合同步:

1. 用户可见报错:旧 C ABI 产物 / 协议版本不匹配 / 共享段版本不匹配
   三处「请用配套 plugindev 重编」→ hmapdev(对应两条测试断言同步)
2. e2e_template_test 的模板路径改为 tools/hmapdev/templates,
   并保留旧路径回退(旧 SDK 检出仍能跑测试)
3. 注释与文档同步

文档更新(用户可见面):
- assets/docs/{zh,en}/PLUGIN_DEV.md:工具链章节整体改为 hmapdev,
  补改名说明与 SDK 存储目录迁移;命令示例全部更新
- assets/docs/{zh,en}/ARCHITECTURE.md:**流程图与章节对齐 v1.2.0** ——
  · 向量化章节改为三层降级:统一多模态空间(主)→ 词嵌入 → TF-IDF(回退),
    写明「同指纹且同维度才参与融合」
  · 媒体记忆章节重写:媒体是一等记忆块(无独立 GC / 无引用计数 / 无描述式索引 /
    正文不再写 media marker),并写明 reembedStaleMedia 的跨空间迁移与写回
- README{,_EN}.md、docs/zh/plugin-interface-matrix.md:工具名与模板路径同步
  (历史条目标注「当时名为 plugindev」)

验证:go test ./internal/plugin/ ./internal/plugin/proc/ ok,
含 4 条真实模板 E2E(模板路径切换后仍通过)。
2026-09-12 12:42:09 +08:00
c67336c376 fix(memory): 修 beta.2 压测发现的三个向量/文档缺陷
来源:v1.2.0-beta.2 全方位压测(报告 /var/tmp/stress/REPORT.md)

1. 文档向量迁移结果不落盘(生产已复现)
   - BuildDenseIndex 改完内存不置 dirty;docStore.Stop() 全仓无调用者 → flush 成死代码
   - 后果:每次启动重算同一批文档(线上 496 篇约 17s),磁盘 dense_fp 永不收敛
   - 修:迁移当场落盘(抽出 flushLocked 以免重入锁)+ main.go 关停链 defer docStore.Stop()
   - 生产证据:线上 488 篇文档仅 4 篇含 dense_fp,且这 4 篇均为运行期 Insert 的新文档
2. 块指纹对但维度错时污染文档向量(健壮性缺口)
   - denseFor 只校验 b.Fingerprint,不校验长度;FuseVectors 取最大维度并跳过长度不符者
     → 512 维文本 + 2048 维块 = 2048 维且打上当前指纹
     → 该文档在检索侧被长度守卫永久跳过,且每次启动重算(不收敛)
   - 修:denseFor 要求 len(b.Vector) == 空间维度
   - 可达性:内核两个块产出点均成对取自同一行(it.Vec ↔ it.VecModel),故属防御性修复
3. Insert 与 loadAll 的 ID 约定不对称(低)
   - Insert 落盘任意 <id>.json,loadAll 只加载 doc_ 前缀 → 自定义 ID 文档重启后静默消失
   - 修:loadAll 只要求 .json(空 ID 仍跳过)

回归测试 4 条:迁移跨重启落盘 + 已对齐 0 重算(用向量空间调用计数判定,
不靠日志)、坏块不参与融合且同维度正常块仍参与、自定义 ID 可加载、Stop 落盘。

反向验证(纪律要求):临时回退本次修复后,前 3 条均变红且报错正是缺陷签名
(dim=999/space-OLD-999 永不收敛、文档向量 2048 维、文件重启后消失);恢复后全绿。

验证:go build ./cmd/homed ok;go vet ./internal/memory/document ./cmd/homed ok;
go test ./internal/memory/... 7 包全绿。
2026-09-12 11:04:30 +08:00
bb16f19ea5 docs(matrix): 记录 v1.2.x 的接口扩展,以及本次审计抓出的两处漂移
§九 原本只写到 v1.1.x。补上 1.2.0 的接口增量(注入侧的 InjectOptions 与六个
*Opts 变体、ContextPolicy 取值、ChannelDef.ContextPolicy 与它的 JSON tag),
并明确一件容易被误读的事:**「接口纯追加」不等于「无需重编」**——同版把插件运行
协议升到了 2(fd3 布局改变),协议不匹配会在握手时被明确拒绝,这两件事必须分开说。

同时把这次扩展自己抓出来的两处漂移入档(都属于本节第 3 条要防的类型):

1. 模板接线守卫 `TestProcTemplate_CoversAllCoreMethods` 红了:模板不再发
   io.injectTextNoMem(改走 io.injectText + NoMemory),而内核保留该 id 是刻意的
   向后兼容面。修的是判据(显式 deprecated 表 + 反向保护)。
2. mocksdk 与公共 SDK 机械求差,差集为旧的三参数 InjectInputSync(通道类插件闭环
   要调的方法);git log -S 证实从来就缺,已补齐。

验证表按**本机实跑结果**填写:示例 vet 17/17、plugindev 测试全绿、
sdk -race -count=5 通过、mocksdk 差集为空。
2026-09-12 09:41:06 +08:00
2c7ab6a187 feat(status): 暴露构建源码地址,WebUI 状态页给出 AGPL §13 的源码入口
选了 AGPL-3.0-only 之后,§13(Remote Network Interaction)就不只是声明问题:
把修改过的版本作为网络服务提供出去时,必须给使用者取得 Corresponding Source 的机会。
只在仓库里放 LICENSE 并不自动满足这一条——**使用者拿到的是服务,不是仓库**。

所以把它做进产品里,而不是写进文档就算完:

- `internal/meta.SourceURL`:本次构建对应的源码地址,默认指向本仓库。
  注释里写明「修改后对外部署的分支必须改指向自己的仓库」,并给出 -ldflags 覆盖方式
  (`-X .../internal/meta.SourceURL=<你的仓库>`),不需要改源码。
- `BuildStatus.SourceURL`(`json:"source_url,omitempty"`)+ 内核状态填充:
  走已有的 `/api/v1/kernel` 构建身份链路,不新增端点。
- WebUI 状态页在「版本」行下渲染「源码 / Source」链接(URL 经 escHtml 转义后进属性;
  `target="_blank" rel="noopener noreferrer"`)。
- 用 `omitempty`:未注入该值的旧构建不会在 JSON 里多出一个空字段。

验证:
- `internal/plugins/webui/dashboard.html` 的两个内联 script 块 `node --check` 均通过;
- 全仓库 `go build ./...` 通过,`internal/meta/meta.go` gofmt 干净
  (`internal/agent/core/status.go` 有**既有**的 gofmt 差异,与本改动无关,按纪律未整体重排);
- 端到端:本地构建 homed → 冷启动 → `GET /api/v1/kernel` 的 `build.source_url`
  实测为 `https://gitcode.com/JianFeeeee/HomeAgent`。
2026-09-12 09:41:06 +08:00
9311b41dd3 docs: README 更新到 v1.2.0,并纠正已在 v1.2.0 删除的机制
README 的「项目状态」停在 **v1.1.1**,而且其中两条描述与当前实现**相反**:
「媒体以 `[<mime> <短digest>] <描述>` 标记存在于纯文本记忆中,描述是可检索的
语义记忆」与「引用计数式 GC(有引用者绝不删)」——这两套机制正是 v1.2.0 拆掉的。

本次不重写历史条目(它们记录了演进),而是:

1. 「项目状态」顶部新增 **v1.2.0** 条目:统一多模态向量空间(模型中立 SPI +
   Chinese-CLIP 默认,含「纯文本语义弱于 MLLM 型嵌入器」这一已知代价)、
   媒体升为图记忆一等节点(并写明具体删掉了什么)、数据面全量走共享内存
   (协议 2、不支持滚动升级)、注入标志位、发行包默认启用 ONNX 且随包模型、
   homed 改走 WSL2、以及三个安装链静默失败的修复。
2. 在 v1.2.0 条目后加一条显式提示:下方历史条目中的「描述式索引」与
   「媒体引用计数式 GC」**已在 v1.2.0 移除**——避免读者按旧文档理解现行行为。
3. 「下载」:Windows 安装器的版本号改到 v1.2.0,并写明自 v1.2.0 起因 homed
   不再支持 Windows 原生,安装器改为引导到 WSL2 并在其中按 Linux 方式安装;
   同时注明安装器含 AGPL 许可页。

中英双份同步。SDK 仓 README 另在 SDK 仓提交(d893bfa)。
2026-09-12 09:27:30 +08:00
996e70a64d docs(license): 核心仓采用 AGPL-3.0-only,并写进包内与安装器
本仓此前**没有任何许可文件**,README 里也没有许可声明,而 rpm 元数据里甚至写着
`--license "Proprietary"`(与我们实际的分发意图相反)。

## 选择了什么

`LICENSE`:GNU Affero 通用公共许可证第 3 版官方全文(gnu.org 正本,
661 行 / 34523 字节,
sha256 0d96a4ff68ad6d4b6f1f30f713b18d5184912ba8dd389f86aa7710db079abcb0)。

选 AGPL-3.0-only 的理由:GPL 家族里**传染性最强**的一档,并且不允许选后续版本。
它比 GPL-3.0 多出 §13(Remote Network Interaction)——通过网络提供服务时也要向
使用者提供源码。这正是「最严格」在 GPL 家族里的落点。

依赖许可已核对为全部宽松且兼容:go-sqlite3 / gojieba / gopher-lua / bubbletea /
bubbles / lipgloss / yaml.v3(MIT)、golang.org/x/{sys,text}(BSD-3)、
Chinese-CLIP 产物(Apache-2.0,与 GPLv3+/AGPLv3 双向兼容)、ONNX Runtime(MIT)。
没有 GPL-2.0-only 这类与 AGPL 不兼容的依赖。

## 落在哪些地方

- `README.md` / `README_EN.md`:新增「许可 / License」章节,写明 §13 的含义、
  插件因**静态链接 SDK 源码**而成为衍生作品须同许可发布、以及随包第三方组件清单
- `deploy/packaging/package-linux.sh`:
  · 新增 `stage_license()`,**四个变体(full/server/client/tar)全带**
    `/usr/share/doc/homeagent/{LICENSE,copyright}`(copyright 为 DEP-5 机器可读格式,
    含第三方条目)
  · fpm 的 `--license "Proprietary"` → `"AGPL-3.0-only"`
- `deploy/packaging/installer.nsi`:新增 MUI 许可页
  (`..\..\LICENSE`,NSIS 以 .nsi 所在目录解析相对路径)
- `third_party/homeagent-sdk/LICENSE`:vendored SDK 的许可一并入库 —— 本仓
  `.gitignore` 有意不镜像 SDK 的 README/tools/package/example,但依赖的许可
  应当随依赖可见

## 待办(下一步)

README 的「项目状态」仍停在 v1.1.1,且写着已被 v1.2.0 **删除**的机制
(引用计数式 GC、`[<mime> <digest>] <描述>` 描述式索引)——单独一个提交修。
2026-09-12 09:17:17 +08:00
68b773ad61 docs(git): 修正上一提交的错字(但声两仓 → 但两仓) 2026-09-12 09:02:01 +08:00
18324f6e80 docs(git): 写清「两仓 main 同步推进」的前提,修正 SDK 路牌
§七.4 原来只说「在 1.1.x 线发布期间,两仓 main 上的值都是 1.2.0」,容易被读成
「两仓 main 永远同值」,我正是据此把 SDK main 也推到了 1.3.0(已回退为 1.2.0)。

补写前提:推进以**该中版本已正式发布**为条件。
- 核心切出 release/v1.2.x 后 1.2.0 归发布线所有 → main 立即到 1.3.0(beta 也算占号)
- SDK 因 §七.2(beta 不发 SDK)要等核心正式 tag 才定版 → 在那之前 main 停在 1.2.0

并明确:**此阶段核心 main(1.3.0) 与 SDK main(1.2.0) 故意不对称**,
不是遗漏同步。§三 的 SDK 表行同步修正。
2026-09-12 09:01:36 +08:00
8c5c0a25a6 fix(sdk-mirror): vendored SDK 路牌回到 1.2.0(SDK 不跟 beta 发版)
SDK 仓 44bd915 把 main 的 meta.Version 推到 1.3.0 是错的(12cabcb 已改回 1.2.0)。
按 §七.2,beta 不伴随 SDK 发版:SDK 1.2.0 要等核心的**正式** tag 才定版打 tag
(§七.3),在那之前 1.2.0 仍是 SDK 尚未发布的中版本,路牌不得越过它。

核心 main 的 1.3.0 不受影响(1.2.0 已归 release/v1.2.x 所有),两仓在此阶段
故意不对称——这一点已写进 SDK meta.go 的注释,避免再被「对齐」回去。

本提交只同步 core 里跟踪的镜像:sdk/ 目录与 SDK 仓仍然逐字节一致。
2026-09-12 09:01:04 +08:00
fdfba4eaa7 docs(git): 1.2.x tag 历史补上 v1.2.0-beta.1
release/v1.2.x 已按 §2.4 走出 beta 通道:tag v1.2.0-beta.1(提交 215804c),
注释里写明通道、不兼容点与验收证据;beta 阶段不发 SDK(§七.2)。
正式 tag 待试运行无回退问题后再打,届时同步 SDK 仓。

同时把 tag 名资产整理记录在案:历史大写 tag V0.8.0 / V0.7.1 已按用户确认删除
(提交本身未受影响),现在主仓 tag 全部符合 SemVer 小写 v 约定。
2026-09-12 08:54:11 +08:00
215804cf2c build(packaging): 统一 -buildvcs=false,版本/提交只认 ldflags 注入
发布分支的产物上出现了 `vcs.revision=1715b5c`——一个本机任何仓库都不存在的提交。

原因:VCS 信息**不进 build cache key**(Go 文档明确说明 VCS 变化不会触发重建),
命中缓存时会把上一次的 revision 一并带回来。

而 build.sh 本来就用 ldflags 注入 meta.Version / meta.Commit(权威来源),
所以这个额外信号既不可靠又会误导溯源:拿 `go version -m` 去查源码提交,会指向
一个幽灵提交——正是本项目一直在治的「静默不一致」。

处置:三处 go build 统一 `-buildvcs=false`,并在 LDFLAGS 旁写明溯源方法
(`strings homed | grep -x '<短 hash>'`,meta.Commit 是字符串常量)。

验证:重新构建 homed linux/amd64 →
  · `go version -m` 中 vcs.revision 0 处(此前 1 处且是错误值)
  · strings 中恰好 1 处等于当前 HEAD 短 hash
  · `-tags=onnxruntime` 仍在
2026-09-12 08:42:20 +08:00
ca5b04532d docs(git): 分支对齐更新到 2026-09-12(1.2.x 线开启)
- main 路牌调到 1.3.0;release/v1.2.x 承载 1.2.0(vendored SDK 定版 1.2.0)
- release/v1.1.x 按 §2.6 退役(保留供追溯);两个历史 feature 分支
  (memory-media / plugin-proc-migration)已从远端删除,旧表待删项清掉
- 新增「1.2.x 发布线 tag 历史」表(当前尚无 tag),并写明它与存量插件
  **不兼容**(RPC 协议 2、fd3 布局改变、不支持滚动升级)以及
  **不满足 §2.4 跳级条件**的理由(改动面大,非单点修复)
- SDK 仓的 release/v1.2.x 尚未创建:按 §七.3 随核心**正式** tag 一起做
2026-09-12 08:39:07 +08:00
01232a66da fix(knowledge): 覆盖同名条目时摘掉旧向量
从一次真实的知识库更新里发现:在线实例更新一个已有条目之后,
knowledge_count=32 而 vector_count=33——多出来的那一条是上一版的副本。

成因:vector.Store.Insert 是**追加**语义(s.docs = append + index.Add),不按 id 去重;
而 Store.Add 走的是「写 content.md + 覆盖 items[id] + Insert 向量」。
文件与内存条目都被正确替换了,只有向量索引多留了一份。

危害不在于多占内存:**检索可能命中已被替换掉的旧内容**,而且完全静默——
条目数看起来是对的,只有向量数比条目数多。

修法:Insert 之前先 s.vec.Remove(id)(Remove 已按 id 过滤 docs 与倒排索引)。
回归测试 TestAddOverwriteReplacesVector 钉住 knowledge_count / vector_count /
content.md 三者都必须只剩新版。

注:该文件在 origin/main 上本就有 32 行 gofmt 差异(结构体字段注释对齐),
不属本次改动,按纪律不做整体重排。
2026-09-12 08:30:32 +08:00
3a5f6e1634 fix(build): GUI 输出目录用 --config.directories.output,-o 是 --mac 的别名
electron-builder 的 `-o` 是 `--mac`/`--macos` 的短别名(见 --help 的
Building 段),不是 output。于是 `-o "$BUILD_DIR"` 被当成 macOS 的 target
列表,报:

  ⨯ Unknown target: /home/program/trueagent/build

路径被 lowercase 后去匹配 target 名表,所以错误信息里的路径是全小写的
——这也是它看起来像「路径错」而实际是「参数位置错」的原因,v1.0.1 与
v1.0.3 两次发布都因此手工组装过 GUI。

改用 --config.directories.output=<dir>,已实测确认产物落在指定目录。

同时把 GUI 构建失败降级为警告:homed/waiter/initconfig 是发布主体,
而 GUI 依赖 electron 运行时下载(离线机器、arm64 缺缓存都会失败)。
set -euo pipefail 下不接住的话,一个可选组件会让整轮跨平台构建全废——
v1.0.3 就是这样只产出了 linux/amd64 三个二进制、arm64 与 windows
压根没跑到。
2026-09-12 08:26:26 +08:00
49 changed files with 3354 additions and 243 deletions

661
LICENSE Normal file
View File

@ -0,0 +1,661 @@
GNU AFFERO GENERAL PUBLIC LICENSE
Version 3, 19 November 2007
Copyright (C) 2007 Free Software Foundation, Inc. <https://fsf.org/>
Everyone is permitted to copy and distribute verbatim copies
of this license document, but changing it is not allowed.
Preamble
The GNU Affero General Public License is a free, copyleft license for
software and other kinds of works, specifically designed to ensure
cooperation with the community in the case of network server software.
The licenses for most software and other practical works are designed
to take away your freedom to share and change the works. By contrast,
our General Public Licenses are intended to guarantee your freedom to
share and change all versions of a program--to make sure it remains free
software for all its users.
When we speak of free software, we are referring to freedom, not
price. Our General Public Licenses are designed to make sure that you
have the freedom to distribute copies of free software (and charge for
them if you wish), that you receive source code or can get it if you
want it, that you can change the software or use pieces of it in new
free programs, and that you know you can do these things.
Developers that use our General Public Licenses protect your rights
with two steps: (1) assert copyright on the software, and (2) offer
you this License which gives you legal permission to copy, distribute
and/or modify the software.
A secondary benefit of defending all users' freedom is that
improvements made in alternate versions of the program, if they
receive widespread use, become available for other developers to
incorporate. Many developers of free software are heartened and
encouraged by the resulting cooperation. However, in the case of
software used on network servers, this result may fail to come about.
The GNU General Public License permits making a modified version and
letting the public access it on a server without ever releasing its
source code to the public.
The GNU Affero General Public License is designed specifically to
ensure that, in such cases, the modified source code becomes available
to the community. It requires the operator of a network server to
provide the source code of the modified version running there to the
users of that server. Therefore, public use of a modified version, on
a publicly accessible server, gives the public access to the source
code of the modified version.
An older license, called the Affero General Public License and
published by Affero, was designed to accomplish similar goals. This is
a different license, not a version of the Affero GPL, but Affero has
released a new version of the Affero GPL which permits relicensing under
this license.
The precise terms and conditions for copying, distribution and
modification follow.
TERMS AND CONDITIONS
0. Definitions.
"This License" refers to version 3 of the GNU Affero General Public License.
"Copyright" also means copyright-like laws that apply to other kinds of
works, such as semiconductor masks.
"The Program" refers to any copyrightable work licensed under this
License. Each licensee is addressed as "you". "Licensees" and
"recipients" may be individuals or organizations.
To "modify" a work means to copy from or adapt all or part of the work
in a fashion requiring copyright permission, other than the making of an
exact copy. The resulting work is called a "modified version" of the
earlier work or a work "based on" the earlier work.
A "covered work" means either the unmodified Program or a work based
on the Program.
To "propagate" a work means to do anything with it that, without
permission, would make you directly or secondarily liable for
infringement under applicable copyright law, except executing it on a
computer or modifying a private copy. Propagation includes copying,
distribution (with or without modification), making available to the
public, and in some countries other activities as well.
To "convey" a work means any kind of propagation that enables other
parties to make or receive copies. Mere interaction with a user through
a computer network, with no transfer of a copy, is not conveying.
An interactive user interface displays "Appropriate Legal Notices"
to the extent that it includes a convenient and prominently visible
feature that (1) displays an appropriate copyright notice, and (2)
tells the user that there is no warranty for the work (except to the
extent that warranties are provided), that licensees may convey the
work under this License, and how to view a copy of this License. If
the interface presents a list of user commands or options, such as a
menu, a prominent item in the list meets this criterion.
1. Source Code.
The "source code" for a work means the preferred form of the work
for making modifications to it. "Object code" means any non-source
form of a work.
A "Standard Interface" means an interface that either is an official
standard defined by a recognized standards body, or, in the case of
interfaces specified for a particular programming language, one that
is widely used among developers working in that language.
The "System Libraries" of an executable work include anything, other
than the work as a whole, that (a) is included in the normal form of
packaging a Major Component, but which is not part of that Major
Component, and (b) serves only to enable use of the work with that
Major Component, or to implement a Standard Interface for which an
implementation is available to the public in source code form. A
"Major Component", in this context, means a major essential component
(kernel, window system, and so on) of the specific operating system
(if any) on which the executable work runs, or a compiler used to
produce the work, or an object code interpreter used to run it.
The "Corresponding Source" for a work in object code form means all
the source code needed to generate, install, and (for an executable
work) run the object code and to modify the work, including scripts to
control those activities. However, it does not include the work's
System Libraries, or general-purpose tools or generally available free
programs which are used unmodified in performing those activities but
which are not part of the work. For example, Corresponding Source
includes interface definition files associated with source files for
the work, and the source code for shared libraries and dynamically
linked subprograms that the work is specifically designed to require,
such as by intimate data communication or control flow between those
subprograms and other parts of the work.
The Corresponding Source need not include anything that users
can regenerate automatically from other parts of the Corresponding
Source.
The Corresponding Source for a work in source code form is that
same work.
2. Basic Permissions.
All rights granted under this License are granted for the term of
copyright on the Program, and are irrevocable provided the stated
conditions are met. This License explicitly affirms your unlimited
permission to run the unmodified Program. The output from running a
covered work is covered by this License only if the output, given its
content, constitutes a covered work. This License acknowledges your
rights of fair use or other equivalent, as provided by copyright law.
You may make, run and propagate covered works that you do not
convey, without conditions so long as your license otherwise remains
in force. You may convey covered works to others for the sole purpose
of having them make modifications exclusively for you, or provide you
with facilities for running those works, provided that you comply with
the terms of this License in conveying all material for which you do
not control copyright. Those thus making or running the covered works
for you must do so exclusively on your behalf, under your direction
and control, on terms that prohibit them from making any copies of
your copyrighted material outside their relationship with you.
Conveying under any other circumstances is permitted solely under
the conditions stated below. Sublicensing is not allowed; section 10
makes it unnecessary.
3. Protecting Users' Legal Rights From Anti-Circumvention Law.
No covered work shall be deemed part of an effective technological
measure under any applicable law fulfilling obligations under article
11 of the WIPO copyright treaty adopted on 20 December 1996, or
similar laws prohibiting or restricting circumvention of such
measures.
When you convey a covered work, you waive any legal power to forbid
circumvention of technological measures to the extent such circumvention
is effected by exercising rights under this License with respect to
the covered work, and you disclaim any intention to limit operation or
modification of the work as a means of enforcing, against the work's
users, your or third parties' legal rights to forbid circumvention of
technological measures.
4. Conveying Verbatim Copies.
You may convey verbatim copies of the Program's source code as you
receive it, in any medium, provided that you conspicuously and
appropriately publish on each copy an appropriate copyright notice;
keep intact all notices stating that this License and any
non-permissive terms added in accord with section 7 apply to the code;
keep intact all notices of the absence of any warranty; and give all
recipients a copy of this License along with the Program.
You may charge any price or no price for each copy that you convey,
and you may offer support or warranty protection for a fee.
5. Conveying Modified Source Versions.
You may convey a work based on the Program, or the modifications to
produce it from the Program, in the form of source code under the
terms of section 4, provided that you also meet all of these conditions:
a) The work must carry prominent notices stating that you modified
it, and giving a relevant date.
b) The work must carry prominent notices stating that it is
released under this License and any conditions added under section
7. This requirement modifies the requirement in section 4 to
"keep intact all notices".
c) You must license the entire work, as a whole, under this
License to anyone who comes into possession of a copy. This
License will therefore apply, along with any applicable section 7
additional terms, to the whole of the work, and all its parts,
regardless of how they are packaged. This License gives no
permission to license the work in any other way, but it does not
invalidate such permission if you have separately received it.
d) If the work has interactive user interfaces, each must display
Appropriate Legal Notices; however, if the Program has interactive
interfaces that do not display Appropriate Legal Notices, your
work need not make them do so.
A compilation of a covered work with other separate and independent
works, which are not by their nature extensions of the covered work,
and which are not combined with it such as to form a larger program,
in or on a volume of a storage or distribution medium, is called an
"aggregate" if the compilation and its resulting copyright are not
used to limit the access or legal rights of the compilation's users
beyond what the individual works permit. Inclusion of a covered work
in an aggregate does not cause this License to apply to the other
parts of the aggregate.
6. Conveying Non-Source Forms.
You may convey a covered work in object code form under the terms
of sections 4 and 5, provided that you also convey the
machine-readable Corresponding Source under the terms of this License,
in one of these ways:
a) Convey the object code in, or embodied in, a physical product
(including a physical distribution medium), accompanied by the
Corresponding Source fixed on a durable physical medium
customarily used for software interchange.
b) Convey the object code in, or embodied in, a physical product
(including a physical distribution medium), accompanied by a
written offer, valid for at least three years and valid for as
long as you offer spare parts or customer support for that product
model, to give anyone who possesses the object code either (1) a
copy of the Corresponding Source for all the software in the
product that is covered by this License, on a durable physical
medium customarily used for software interchange, for a price no
more than your reasonable cost of physically performing this
conveying of source, or (2) access to copy the
Corresponding Source from a network server at no charge.
c) Convey individual copies of the object code with a copy of the
written offer to provide the Corresponding Source. This
alternative is allowed only occasionally and noncommercially, and
only if you received the object code with such an offer, in accord
with subsection 6b.
d) Convey the object code by offering access from a designated
place (gratis or for a charge), and offer equivalent access to the
Corresponding Source in the same way through the same place at no
further charge. You need not require recipients to copy the
Corresponding Source along with the object code. If the place to
copy the object code is a network server, the Corresponding Source
may be on a different server (operated by you or a third party)
that supports equivalent copying facilities, provided you maintain
clear directions next to the object code saying where to find the
Corresponding Source. Regardless of what server hosts the
Corresponding Source, you remain obligated to ensure that it is
available for as long as needed to satisfy these requirements.
e) Convey the object code using peer-to-peer transmission, provided
you inform other peers where the object code and Corresponding
Source of the work are being offered to the general public at no
charge under subsection 6d.
A separable portion of the object code, whose source code is excluded
from the Corresponding Source as a System Library, need not be
included in conveying the object code work.
A "User Product" is either (1) a "consumer product", which means any
tangible personal property which is normally used for personal, family,
or household purposes, or (2) anything designed or sold for incorporation
into a dwelling. In determining whether a product is a consumer product,
doubtful cases shall be resolved in favor of coverage. For a particular
product received by a particular user, "normally used" refers to a
typical or common use of that class of product, regardless of the status
of the particular user or of the way in which the particular user
actually uses, or expects or is expected to use, the product. A product
is a consumer product regardless of whether the product has substantial
commercial, industrial or non-consumer uses, unless such uses represent
the only significant mode of use of the product.
"Installation Information" for a User Product means any methods,
procedures, authorization keys, or other information required to install
and execute modified versions of a covered work in that User Product from
a modified version of its Corresponding Source. The information must
suffice to ensure that the continued functioning of the modified object
code is in no case prevented or interfered with solely because
modification has been made.
If you convey an object code work under this section in, or with, or
specifically for use in, a User Product, and the conveying occurs as
part of a transaction in which the right of possession and use of the
User Product is transferred to the recipient in perpetuity or for a
fixed term (regardless of how the transaction is characterized), the
Corresponding Source conveyed under this section must be accompanied
by the Installation Information. But this requirement does not apply
if neither you nor any third party retains the ability to install
modified object code on the User Product (for example, the work has
been installed in ROM).
The requirement to provide Installation Information does not include a
requirement to continue to provide support service, warranty, or updates
for a work that has been modified or installed by the recipient, or for
the User Product in which it has been modified or installed. Access to a
network may be denied when the modification itself materially and
adversely affects the operation of the network or violates the rules and
protocols for communication across the network.
Corresponding Source conveyed, and Installation Information provided,
in accord with this section must be in a format that is publicly
documented (and with an implementation available to the public in
source code form), and must require no special password or key for
unpacking, reading or copying.
7. Additional Terms.
"Additional permissions" are terms that supplement the terms of this
License by making exceptions from one or more of its conditions.
Additional permissions that are applicable to the entire Program shall
be treated as though they were included in this License, to the extent
that they are valid under applicable law. If additional permissions
apply only to part of the Program, that part may be used separately
under those permissions, but the entire Program remains governed by
this License without regard to the additional permissions.
When you convey a copy of a covered work, you may at your option
remove any additional permissions from that copy, or from any part of
it. (Additional permissions may be written to require their own
removal in certain cases when you modify the work.) You may place
additional permissions on material, added by you to a covered work,
for which you have or can give appropriate copyright permission.
Notwithstanding any other provision of this License, for material you
add to a covered work, you may (if authorized by the copyright holders of
that material) supplement the terms of this License with terms:
a) Disclaiming warranty or limiting liability differently from the
terms of sections 15 and 16 of this License; or
b) Requiring preservation of specified reasonable legal notices or
author attributions in that material or in the Appropriate Legal
Notices displayed by works containing it; or
c) Prohibiting misrepresentation of the origin of that material, or
requiring that modified versions of such material be marked in
reasonable ways as different from the original version; or
d) Limiting the use for publicity purposes of names of licensors or
authors of the material; or
e) Declining to grant rights under trademark law for use of some
trade names, trademarks, or service marks; or
f) Requiring indemnification of licensors and authors of that
material by anyone who conveys the material (or modified versions of
it) with contractual assumptions of liability to the recipient, for
any liability that these contractual assumptions directly impose on
those licensors and authors.
All other non-permissive additional terms are considered "further
restrictions" within the meaning of section 10. If the Program as you
received it, or any part of it, contains a notice stating that it is
governed by this License along with a term that is a further
restriction, you may remove that term. If a license document contains
a further restriction but permits relicensing or conveying under this
License, you may add to a covered work material governed by the terms
of that license document, provided that the further restriction does
not survive such relicensing or conveying.
If you add terms to a covered work in accord with this section, you
must place, in the relevant source files, a statement of the
additional terms that apply to those files, or a notice indicating
where to find the applicable terms.
Additional terms, permissive or non-permissive, may be stated in the
form of a separately written license, or stated as exceptions;
the above requirements apply either way.
8. Termination.
You may not propagate or modify a covered work except as expressly
provided under this License. Any attempt otherwise to propagate or
modify it is void, and will automatically terminate your rights under
this License (including any patent licenses granted under the third
paragraph of section 11).
However, if you cease all violation of this License, then your
license from a particular copyright holder is reinstated (a)
provisionally, unless and until the copyright holder explicitly and
finally terminates your license, and (b) permanently, if the copyright
holder fails to notify you of the violation by some reasonable means
prior to 60 days after the cessation.
Moreover, your license from a particular copyright holder is
reinstated permanently if the copyright holder notifies you of the
violation by some reasonable means, this is the first time you have
received notice of violation of this License (for any work) from that
copyright holder, and you cure the violation prior to 30 days after
your receipt of the notice.
Termination of your rights under this section does not terminate the
licenses of parties who have received copies or rights from you under
this License. If your rights have been terminated and not permanently
reinstated, you do not qualify to receive new licenses for the same
material under section 10.
9. Acceptance Not Required for Having Copies.
You are not required to accept this License in order to receive or
run a copy of the Program. Ancillary propagation of a covered work
occurring solely as a consequence of using peer-to-peer transmission
to receive a copy likewise does not require acceptance. However,
nothing other than this License grants you permission to propagate or
modify any covered work. These actions infringe copyright if you do
not accept this License. Therefore, by modifying or propagating a
covered work, you indicate your acceptance of this License to do so.
10. Automatic Licensing of Downstream Recipients.
Each time you convey a covered work, the recipient automatically
receives a license from the original licensors, to run, modify and
propagate that work, subject to this License. You are not responsible
for enforcing compliance by third parties with this License.
An "entity transaction" is a transaction transferring control of an
organization, or substantially all assets of one, or subdividing an
organization, or merging organizations. If propagation of a covered
work results from an entity transaction, each party to that
transaction who receives a copy of the work also receives whatever
licenses to the work the party's predecessor in interest had or could
give under the previous paragraph, plus a right to possession of the
Corresponding Source of the work from the predecessor in interest, if
the predecessor has it or can get it with reasonable efforts.
You may not impose any further restrictions on the exercise of the
rights granted or affirmed under this License. For example, you may
not impose a license fee, royalty, or other charge for exercise of
rights granted under this License, and you may not initiate litigation
(including a cross-claim or counterclaim in a lawsuit) alleging that
any patent claim is infringed by making, using, selling, offering for
sale, or importing the Program or any portion of it.
11. Patents.
A "contributor" is a copyright holder who authorizes use under this
License of the Program or a work on which the Program is based. The
work thus licensed is called the contributor's "contributor version".
A contributor's "essential patent claims" are all patent claims
owned or controlled by the contributor, whether already acquired or
hereafter acquired, that would be infringed by some manner, permitted
by this License, of making, using, or selling its contributor version,
but do not include claims that would be infringed only as a
consequence of further modification of the contributor version. For
purposes of this definition, "control" includes the right to grant
patent sublicenses in a manner consistent with the requirements of
this License.
Each contributor grants you a non-exclusive, worldwide, royalty-free
patent license under the contributor's essential patent claims, to
make, use, sell, offer for sale, import and otherwise run, modify and
propagate the contents of its contributor version.
In the following three paragraphs, a "patent license" is any express
agreement or commitment, however denominated, not to enforce a patent
(such as an express permission to practice a patent or covenant not to
sue for patent infringement). To "grant" such a patent license to a
party means to make such an agreement or commitment not to enforce a
patent against the party.
If you convey a covered work, knowingly relying on a patent license,
and the Corresponding Source of the work is not available for anyone
to copy, free of charge and under the terms of this License, through a
publicly available network server or other readily accessible means,
then you must either (1) cause the Corresponding Source to be so
available, or (2) arrange to deprive yourself of the benefit of the
patent license for this particular work, or (3) arrange, in a manner
consistent with the requirements of this License, to extend the patent
license to downstream recipients. "Knowingly relying" means you have
actual knowledge that, but for the patent license, your conveying the
covered work in a country, or your recipient's use of the covered work
in a country, would infringe one or more identifiable patents in that
country that you have reason to believe are valid.
If, pursuant to or in connection with a single transaction or
arrangement, you convey, or propagate by procuring conveyance of, a
covered work, and grant a patent license to some of the parties
receiving the covered work authorizing them to use, propagate, modify
or convey a specific copy of the covered work, then the patent license
you grant is automatically extended to all recipients of the covered
work and works based on it.
A patent license is "discriminatory" if it does not include within
the scope of its coverage, prohibits the exercise of, or is
conditioned on the non-exercise of one or more of the rights that are
specifically granted under this License. You may not convey a covered
work if you are a party to an arrangement with a third party that is
in the business of distributing software, under which you make payment
to the third party based on the extent of your activity of conveying
the work, and under which the third party grants, to any of the
parties who would receive the covered work from you, a discriminatory
patent license (a) in connection with copies of the covered work
conveyed by you (or copies made from those copies), or (b) primarily
for and in connection with specific products or compilations that
contain the covered work, unless you entered into that arrangement,
or that patent license was granted, prior to 28 March 2007.
Nothing in this License shall be construed as excluding or limiting
any implied license or other defenses to infringement that may
otherwise be available to you under applicable patent law.
12. No Surrender of Others' Freedom.
If conditions are imposed on you (whether by court order, agreement or
otherwise) that contradict the conditions of this License, they do not
excuse you from the conditions of this License. If you cannot convey a
covered work so as to satisfy simultaneously your obligations under this
License and any other pertinent obligations, then as a consequence you may
not convey it at all. For example, if you agree to terms that obligate you
to collect a royalty for further conveying from those to whom you convey
the Program, the only way you could satisfy both those terms and this
License would be to refrain entirely from conveying the Program.
13. Remote Network Interaction; Use with the GNU General Public License.
Notwithstanding any other provision of this License, if you modify the
Program, your modified version must prominently offer all users
interacting with it remotely through a computer network (if your version
supports such interaction) an opportunity to receive the Corresponding
Source of your version by providing access to the Corresponding Source
from a network server at no charge, through some standard or customary
means of facilitating copying of software. This Corresponding Source
shall include the Corresponding Source for any work covered by version 3
of the GNU General Public License that is incorporated pursuant to the
following paragraph.
Notwithstanding any other provision of this License, you have
permission to link or combine any covered work with a work licensed
under version 3 of the GNU General Public License into a single
combined work, and to convey the resulting work. The terms of this
License will continue to apply to the part which is the covered work,
but the work with which it is combined will remain governed by version
3 of the GNU General Public License.
14. Revised Versions of this License.
The Free Software Foundation may publish revised and/or new versions of
the GNU Affero General Public License from time to time. Such new versions
will be similar in spirit to the present version, but may differ in detail to
address new problems or concerns.
Each version is given a distinguishing version number. If the
Program specifies that a certain numbered version of the GNU Affero General
Public License "or any later version" applies to it, you have the
option of following the terms and conditions either of that numbered
version or of any later version published by the Free Software
Foundation. If the Program does not specify a version number of the
GNU Affero General Public License, you may choose any version ever published
by the Free Software Foundation.
If the Program specifies that a proxy can decide which future
versions of the GNU Affero General Public License can be used, that proxy's
public statement of acceptance of a version permanently authorizes you
to choose that version for the Program.
Later license versions may give you additional or different
permissions. However, no additional obligations are imposed on any
author or copyright holder as a result of your choosing to follow a
later version.
15. Disclaimer of Warranty.
THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
16. Limitation of Liability.
IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
SUCH DAMAGES.
17. Interpretation of Sections 15 and 16.
If the disclaimer of warranty and limitation of liability provided
above cannot be given local legal effect according to their terms,
reviewing courts shall apply local law that most closely approximates
an absolute waiver of all civil liability in connection with the
Program, unless a warranty or assumption of liability accompanies a
copy of the Program in return for a fee.
END OF TERMS AND CONDITIONS
How to Apply These Terms to Your New Programs
If you develop a new program, and you want it to be of the greatest
possible use to the public, the best way to achieve this is to make it
free software which everyone can redistribute and change under these terms.
To do so, attach the following notices to the program. It is safest
to attach them to the start of each source file to most effectively
state the exclusion of warranty; and each file should have at least
the "copyright" line and a pointer to where the full notice is found.
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU Affero General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Affero General Public License for more details.
You should have received a copy of the GNU Affero General Public License
along with this program. If not, see <https://www.gnu.org/licenses/>.
Also add information on how to contact you by electronic and paper mail.
If your software can interact with users remotely through a computer
network, you should also make sure that it provides a way for users to
get its source. For example, if your program is a web application, its
interface could display a "Source" link that leads users to an archive
of the code. There are many ways you could offer source, and different
solutions will be better for different programs; see section 13 for the
specific requirements.
You should also get your employer (if you work as a programmer) or school,
if any, to sign a "copyright disclaimer" for the program, if necessary.
For more information on this, and how to apply and follow the GNU AGPL, see
<https://www.gnu.org/licenses/>.

View File

@ -190,16 +190,43 @@ internal/
├── config/ SQLite 配置中心
├── events/ 事件总线
└── internal/lua/adapters/ 8 个 LLM 协议适配器脚本
外部插件开发见 [homeagent-sdk](https://gitcode.com/JianFeeeee/homeagent-sdk) 仓库,使用 `plugindev` 工具链开发,参考 `example/` 目录下的 Go 和 Lua 示例
外部插件开发见 [homeagent-sdk](https://gitcode.com/JianFeeeee/homeagent-sdk) 仓库,使用 `hmapdev` 工具链开发,参考 `example/` 目录下的 Go 和 Lua 示例
```
## 项目状态
**v1.2.0** — 统一多模态向量空间 + 媒体升为图记忆一等节点 + 数据面全量迁到共享内存。
- **模型中立的统一向量空间**:内核不再适配任何具体模型,只提供公共 provider SPI
`pkg/embedding``Modality` / `Input{Data,MIME}` / `Info{Dimension,Fingerprint,Modalities}`
+ 名字注册表),实现在 `providers/*`。默认 **Chinese-CLIP ViT-B/16** —— text 与 image
落在**同一空间**512 维、指纹 `cd2a495cf990`、Apache-2.0、独立实测常驻约 1.15GB
`qwen3vl` 保留2048 维、常驻约 9.4GB,供内存充足或将来要视频的机器切回)。
文本检索仍由既有词向量 / TF-IDF 兜底CLIP 双塔的**纯文本语义弱于 MLLM 型嵌入器**
这是已知并写进文档的代价。
- **媒体是图数据库的一等节点与边****彻底删除**「用文本描述式索引图片」这套将就机制,
以及 `media_refs` 与媒体引用计数。记忆块遵循单层不变量——Context → Document → Graph
是块的**迁移**,不是复制、也不靠引用保活。
- **数据面全部走共享内存**(工具调用帧 / Cleaner / 输入输出通道 / 媒体块 / 文档与知识正文),
RPC 只传偏移描述符;**RPC 协议升到 2**fd3 布局改变,**不支持滚动升级**——
内核与全部插件必须同批重建、同批安装,存量插件须用新版 `hmapdev` 重编。
- 注入可声明 `InjectOptions{NoMemory, ContextPolicy}`**默认仍记入记忆、默认不裁剪**
裁剪必须显式声明,且先经插件注册的 `Cleaner`。SDK 1.2.0 相对 1.1.0 **纯追加**
- **发行包默认启用** ONNX 向量空间并把模型754MB与 ONNX Runtime24MB
server/full 包发布;`homed` 放弃 Windows 原生支持改走 WSL2jieba 词库内嵌进二进制。
- 修掉三个**安装链静默失败**`initconfig``CGO_ENABLED=0` 是空操作(打印凭据却一个字节
没写)、全新安装被误判「已有配置」而整体跳过默认值播种(装完 0 插件、deb 的 `postinst`
查错 unit 路径导致 `enable` 从未执行。
- 自本版起以 **AGPL-3.0-only** 发布(含网络条款;插件静态链接 SDK 故须同许可,见「许可」)。
> 以下历史条目保留原文以呈现演进,其中两条机制**已在 v1.2.0 移除**
> 「媒体以 `[<mime> <短digest>] <描述>` 标记参与检索」(描述式索引)与「媒体引用计数式 GC」。
**v1.1.1** — 多模态贯通**插件边界**。v1.1.0 让记忆系统支持了二进制多媒体节点,但那条链路只对内核自己开放;本版打通到插件与模型。公开 SDK 新增媒体字段与三个媒体注入接口(配套 [SDK v1.1.0](https://gitcode.com/JianFeeeee/homeagent-sdk/releases/tag/v1.1.0),整条 1.1.x 线共用),内核实现对应四个 RPC。桥接层此前在**静默裁字段**:插件交进来的 `Confidence`/类型/`SentenceText` 全被丢弃、`Doc` 只留三个字段、`Remove` 不解引用媒体永久算「被引用」GC 收不掉)。`processTextInput`/`processMediaInput` 归一成一条 `processInput`,媒体路径由此获得它一直缺的去重、`no_memory`、通道 `Cleaner`、中断语义、`EventRawInput`。修掉三处真实缺陷:**用户发的图从来没出现在 WebUI 聊天记录里**(媒体路径发布 map 而订阅方断言 string、**`memory_commit``sentence_text` 从未暴露给模型**(而它是媒体绑定链的必经环节)、**`PluginSDK` 两处并发竞态**`-race` 实测 11 处,插件重载瞬间偶发 nil 解引用崩溃)。
**v1.1.0** — 记忆系统支持**二进制多媒体节点**。内容寻址媒体存储CAS + SQLite 元数据 + 磁盘 blob`Get` always 重校 digest贯通 L0上下文事件/L2文档/L3图谱句子三层引用计数式 GC有引用者绝不删。视觉模型生成的描述文本是持久语义记忆blob 只是可被容量 GC 淘汰的缓存。
**v1.0.0** — 外部插件从 C ABI 动态库迁移到**子进程 + 共享内存**。首个不再加载 `.so`/`.dll` 的版本,与 0.9.x 不兼容(存量插件须用新版 `plugindev` 重编为 `plugin.bin`**业务代码零改动**)。消除 6 类此前在生产造成故障的缺陷:热重载失效(`DF_1_NODELETE``dlclose` 成 no-op、崩溃隔离缺失插件 panic 带崩 homed、stage lost update副本模型丢失 35.8~36.8%、cgo 超时不可中断(线程线性泄漏)、`output_send` 假成功模型收到「已发送」而消息未送达、Windows 能力断层(只见 3 个 stage 字段且无法写回。三面通信stdio JSON-RPC控制+ 共享内存段(数据)+ 事件环通知权限梯度显式化为三道闸。RPC 往返 p50 24.1µs崩溃到恢复 <1s
**v1.0.0** — 外部插件从 C ABI 动态库迁移到**子进程 + 共享内存**。首个不再加载 `.so`/`.dll` 的版本,与 0.9.x 不兼容(存量插件须用新版工具链重编;该工具链当时名为 `plugindev`**现名 `hmapdev`**)。外部插件需重编为 `plugin.bin`**业务代码零改动**)。消除 6 类此前在生产造成故障的缺陷:热重载失效(`DF_1_NODELETE``dlclose` 成 no-op、崩溃隔离缺失插件 panic 带崩 homed、stage lost update副本模型丢失 35.8~36.8%、cgo 超时不可中断(线程线性泄漏)、`output_send` 假成功模型收到「已发送」而消息未送达、Windows 能力断层(只见 3 个 stage 字段且无法写回。三面通信stdio JSON-RPC控制+ 共享内存段(数据)+ 事件环通知权限梯度显式化为三道闸。RPC 往返 p50 24.1µs崩溃到恢复 <1s
**v0.9.0** C ABI v2外部插件 Stage 回调支持写回`invoke_stage` 增加 result 输出插件可在 OnInput/AfterToolcall/PostAction 修改 RawMessage/LLMText/ToolResults 等并同步回内核ABI 版本随内核 minor 对齐v0.9.x ABIVersion=2`version_min=1` 向后兼容旧插件)。同步修复工具循环 zen 兼容补位误伤首轮 system 上下文的问题配套 SDK 提供增强版 sanitizer 示例 UTF-8/U+FFFD/ANSI 转义全链路清洗)。** ABI 已随 v1.0.0 退场。**
@ -224,7 +251,7 @@ internal/
| **client** | waiter + 桌面 GUI | 连接远程 HomeAgent |
- Linux`.deb`amd64/arm64)、`.rpm`x86_64)、`.tar.gz`
- Windows`HomeAgent_v1.1.1_{Full,Server,Client}_win64.exe`NSIS 安装向导
- Windows`HomeAgent_v1.2.0_{Full,Server,Client}_win64.exe`NSIS 安装向导 AGPL 许可页)。 v1.2.0 起因 `homed` 不再支持 Windows 原生依赖 fd 继承与共享内存段内偏移解引用安装器改为引导到 **WSL2**并把 Linux 包送进发行版里按 Linux 方式安装
- 免安装`homeagent-bin-<os>_<arch>.tar.gz` homed/waiter/initconfig
- 校验`SHA256SUMS`
@ -239,3 +266,26 @@ make install # 安装到系统
```
依赖Go 1.25+, CGo (go-sqlite3), Linux/Windows
## 许可
本项目以 **GNU Affero 通用公共许可证第 3 版AGPL-3.0-only** 发布全文见 [LICENSE](LICENSE)
它是 GPL 家族里**传染性最强**的一档不仅分发时须提供完整对应源码
**通过网络提供服务时也要向使用者提供源码**(§13 Remote Network Interaction)。
任何人把改过的 HomeAgent 对外提供网络服务都必须让该服务的使用者拿到改动后的源码
插件与本项目通过公开 SDK **静态链接**SDK 源码会进入插件二进制因此插件是本项目的
衍生作品需以相同许可发布子进程隔离不改变这一点因为被链接的是 SDK 代码本身
### 随包分发的第三方组件
| 组件 | 许可 | 位置 |
|---|---|---|
| Chinese-CLIP ViT-B/16ONNX 产物 | Apache-2.0 | `/usr/lib/homeagent/models/chinese-clip-vit-b16-onnx/` |
| ONNX Runtime`libonnxruntime.so` | MIT | `/usr/lib/homeagent/onnxruntime/` |
| jieba 词库内嵌进二进制 | MIT | 源码 `internal/memory/jiebadict/` |
| Go 依赖go-sqlite3gojiebabubbletea | MIT / BSD-3 / Apache-2.0 | 均为宽松许可 AGPL-3.0 兼容 |
这些组件**保持各自原有许可**不在本项目的 AGPL 授权范围内发行包把它们的许可全文放在
`/usr/share/doc/homeagent/licenses/`并在 dep/rpm 元数据里声明本包许可为 `AGPL-3.0-only`

View File

@ -179,11 +179,45 @@ internal/
├── 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/`
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
**v1.2.0** — 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 under
`providers/*`. Default: **Chinese-CLIP ViT-B/16** — text and image land in the **same space**
(512-dim, fingerprint `cd2a495cf990`, Apache-2.0, ~1.15GB RSS measured standalone);
`qwen3vl` is 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_refs` and 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 registered
`Cleaner`. 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; `homed` drops native Windows support in
favour of WSL2; the jieba dictionary is embedded in the binary.
- Fixed three **silent install-chain failures**: `initconfig` was a no-op (`CGO_ENABLED=0` stub)
that printed credentials without writing any, fresh installs were misdetected as "already
configured" so default seeding was skipped entirely (0 plugins installed), and the deb
`postinst` looked for the unit in the wrong path so `enable` never 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.
**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
@ -206,7 +240,7 @@ by `-race`; in production this showed up as sporadic nil-dereference crashes dur
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.
**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.**
@ -231,7 +265,7 @@ semantic memory; the blob is only a cache that capacity GC may evict.
| **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)
- Windows: `HomeAgent_v1.2.0_{Full,Server,Client}_win64.exe` (NSIS installer, includes the AGPL license page). Since v1.2.0 `homed` no 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`
@ -246,3 +280,30 @@ make install # Install to system
```
Dependencies: Go 1.25+, CGo (go-sqlite3), Linux/Windows.
## License
This project is released under the **GNU Affero General Public License, version 3
(AGPL-3.0-only)** — see [LICENSE](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 SDK (the SDK source
ends up inside the plugin binary), so plugins are derivative works and must be released under
the same license. Process isolation does not change this — what is linked is the SDK code itself.
### 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`.

View File

@ -90,8 +90,8 @@ Setting `ctx.Response` at any stage jumps to `after_output`.
RelevanceContext — In-memory events[] + JSON persistence
Append: Each input, CleanTemplateText → three-branch vector(textForVector)
agent→Response, user→Input, cold_storage→Input+Response
StaticEmbedder pretrained word embedding / TF-IDF fallback
Prune: StaticEmbedder CosineSimilarity, keep topK + last 10
Vector layers: unified multimodal space (primary, with fingerprint) → StaticEmbedder word embedding TF-IDF (fallback)
Prune: DenseCosine (compared only within the same fingerprint) → StaticEmbedder CosineSimilarity fallback; keep topK + last 10
├── Keep → timeline → chronologically sorted → system prompt
└── Low score → Document layer archive (original timestamp)
Save: 5s debounce write to disk
@ -99,7 +99,7 @@ Setting `ctx.Response` at any stage jumps to `after_output`.
↓ Prune archive ↑ LLM active recall
② Document (File Memory)
DocStore — JSON files + shared StaticEmbedder vector space with Context (fallback: TF-IDF InvertedIndex)
DocStore — JSON files + dense vectors (unified multimodal space; dense_fp must match the current space fingerprint or the doc is recomputed; fallback: StaticEmbedder / TF-IDF InvertedIndex)
Write: Prune archive / doc_commit / Graph snapshot (syncGraphToDocs)
Read:
├── Auto-inject: Query(input, top3) → similarity summary under same vector space → [Related Memory Docs] → system prompt (read-only)
@ -132,11 +132,22 @@ Setting `ctx.Response` at any stage jumps to `after_output`.
→ triples → GraphDB.Commit
```
### Vectorization: Pretrained Word Embedding + TF-IDF Fallback
### Vectorization: Unified Multimodal Space (primary) → Word Embedding TF-IDF (fallback)
All vectorization unified under `StaticEmbedder` (`internal/memory/static_embedder.go`):
Vectorization degrades through three layers by availability; **each missing layer reports an explicit
error and never pretends to succeed**:
**Primary Strategy — Pretrained Word Embedding (aligned 300d)**
**① Unified multimodal space (primary path, since v1.2.0)**
Text and images share **one model, one dimension, one fingerprint** (default `chineseclip`: 512d,
Apache-2.0, Chinese-native; `qwen3vl` or an external `http` provider are alternatives).
Providers register through the public `pkg/embedding` SPI — **the kernel hardcodes no model**.
Vectors persist together with their fingerprint (`dense_fp` / `vec_model`); any mismatch with the
current fingerprint triggers recomputation, and only blocks with the **same fingerprint and the same
dimension** participate in fusion (mixing coordinate systems yields a direction resembling neither).
**② Word embedding (text fallback)** — `StaticEmbedder` (`internal/memory/static_embedder.go`):
**Model sources** (aligned 300d)
- Model sources: ConceptNet Numberbatch (77-language aligned) / fastText Chinese / fastText English
- Configured via `core.agent.embedding_model_path` (comma-separated multi-model)
- Path containing `numberbatch` → auto-download ConceptNet; `cc.zh.` → fastText Chinese; `cc.en.` → fastText English
@ -196,28 +207,32 @@ single typo silently breaks reference binding with no error anywhere in the chai
also gained `sentence_text`: media references hang off a sentence, so with no sentence there is
nowhere to attach them.
### Media Memory (since v1.1.0)
### Media Memory (since v1.2.0: first-class memory blocks)
`internal/memory/media/``Store`, content-addressed (CAS)
Media is not attached content but a **first-class memory node**: `internal/memory/media/` is a
content-addressed store (CAS), and graph `block` nodes carry its digest plus its own vector, while
structural edges (e.g. `sentence --contains--> block`) express ownership.
| Concern | Approach | Why |
|---|---|---|
| Addressing | sha256 digest; metadata in SQLite, blobs on disk | Identical bytes stored once; metadata must be queryable, blobs must not live in the database |
| Addressing | sha256 digest; metadata in SQLite, blobs on disk (`blobs/<first2>/<rest>`, two-level fanout) | Identical bytes stored once; metadata must be queryable, blobs must not live in the database |
| Integrity | Every `Get` re-verifies the digest | Silently returning corrupt data on disk damage is far worse than an error |
| Write atomicity | `.tmp` + rename | A half-written file taken as complete content would permanently poison that digest |
| References | `owner_kind/owner_id/digest` composite primary key, `AddRef` idempotent | Three owner kinds: `context` (context events), `document`, `graph_sentence` |
| GC | Two-stage with `minAge`, **referenced items are never deleted** | Description text stays in the text layers while blobs may be evicted — semantic memory and byte cache are decoupled |
| Retrieval | Blocks carry **their own multimodal vector and fingerprint** and are searched directly | No description text is needed as an intermediary |
| Lifecycle | **No separate GC, no refcounts, no keep-set**; deleting the block deletes the content | Media is a memory node, not a cache that needs keeping alive |
**How media is represented in plain-text memory** is the marker `[<mime> <short digest>] <description>`:
**Description-based indexing is gone**: the old implementation embedded a
`[<mime> <short digest>] <description>` marker in the body and treated the description as the
semantic memory (retrieval used it). That path was removed wholesale in v1.2.0: a description is
second-hand model output, and retrieving "someone else's paraphrase of an image" is strictly worse
than retrieving the image's own vector. Images are now retrieved only by their own vector in the
unified space, and no media marker is written into the body.
```
[image/png a1b2c3d4e5f6] a purple-blue-red three-band chart
```
Why it must ride on text: `Doc.Content`, `sentences.text` and text memory's `Input` are all strings
— there is no field to carry structured data. **The description text is the durable semantic
memory** (retrieval uses it); the digest is the key back to the bytes (reverse lookup uses it).
After capacity GC evicts a blob, the description remains in the L0/L2/L3 text.
**Cross-space vector migration**: media rows store their vector together with `vec_model` (the space
fingerprint). At startup `reembedStaleMedia()` recomputes and **writes back** every row whose
`vec_model` is empty (never embedded) or differs from the current space (model/dimension switched).
Modalities outside the space return `ErrModalityUnsupported` — the kernel **never substitutes
another model's vector**.
The media store is **optional throughout**: with `core.memory.media.enabled=false` or no
configuration, the whole chain silently degrades to plain-text behaviour — no errors, no panics.
@ -292,7 +307,7 @@ VM built-ins: `json.encode` / `json.decode` / `log` / `http_get` / `http_post`.
| Method | Registration Mechanism | Compilation | Usage |
|--------|----------------------|-------------|-------|
| Built-in | `init()``RegisterFactory` | `internal/plugins/` compiled into kernel | webui/cli/timer/mcp etc. |
| External subprocess plugin | Handshake + stdio JSON-RPC reverse registration | `plugindev build``plugin.bin` (ordinary Go binary) | qq/browser/files etc. |
| External subprocess plugin | Handshake + stdio JSON-RPC reverse registration | `hmapdev build``plugin.bin` (ordinary Go binary) | qq/browser/files etc. |
| Lua script plugin | Execute `main.lua` to register tools | No compilation, takes effect after restart/reload | luademo etc. |
| SKILL plugin | Parse `SKILL.md` | Markdown definition | Loaded via clawhubadapter |
@ -311,7 +326,7 @@ Lua script plugin loading: `internal/plugin/` → the gopher-lua interpreter exe
| Dimension | Built-in Plugin | External Plugin |
|-----------|----------------|-----------------|
| Registration | `init()` calls `plugin.RegisterFactory(name, factory)` | Implements `NewPluginFactory(name, config) (sdk.Plugin, error)` entry function |
| Compilation | Compiled into `homed` binary, no separate build | Compiled via `plugindev build` to `plugin.bin` (ordinary Go binary, zero cgo); the kernel spawns it as a subprocess |
| Compilation | Compiled into `homed` binary, no separate build | Compiled via `hmapdev build` to `plugin.bin` (ordinary Go binary, zero cgo); the kernel spawns it as a subprocess |
| Distribution | Bundled with kernel, not independently installable | `.hmap` package (ZIP archive), installed via WebUI or pluginmgr API |
| Metadata | `plugin.RegisterPluginMeta()` for display name | `plugin.json` manifest file (name, version, entry, platforms, capabilities, etc.) |
| Plugin directory | No separate directory, compiled into binary | `plugins/<name>/` independent directory with `plugin.json` + `plugin.bin` |

View File

@ -29,75 +29,80 @@ type Plugin interface {
| Method | Use Case | Complexity |
|--------|----------|------------|
| **Subprocess plugin (recommended)** | Independently distributed third-party plugins | Medium, generated using `plugindev` toolchain |
| **Subprocess plugin (recommended)** | Independently distributed third-party plugins | Medium, generated using `hmapdev` toolchain |
| **Built-in plugin** | Released with HomeAgent | Simple, requires merging into main repo |
| **Lua script plugin** | Lightweight rapid prototyping | Simple, generated using `plugindev init --lua` |
| **Lua script plugin** | Lightweight rapid prototyping | Simple, generated using `hmapdev init --lua` |
---
<img src="../../assets/branding/mascot-xiaozhai.webp" width="20" style="border-radius:50%;vertical-align:middle"> :
## 1. Quick Start: Using the plugindev Toolchain
## 1. Quick Start: Using the hmapdev Toolchain
`plugindev` is the unified plugin development toolchain provided in the SDK repository, supporting both Go and Lua plugin types.
`hmapdev` is the unified plugin development toolchain provided in the SDK repository, supporting both Go and Lua
plugin types, and producing `.hmap` plugin bundles (the tool is named after that package format).
> Rename note: as of 1.2.0 the toolchain was renamed from `plugindev` to `hmapdev`; the SDK store moved from
> `~/.homeagent/plugindev/sdk` to `~/.homeagent/hmapdev/sdk` (the old directory keeps working automatically).
### Installation
```bash
cd homeagent-sdk/tools/plugindev
go build -o plugindev
# Add plugindev to PATH or use directly
cd homeagent-sdk/tools/hmapdev
go build -o hmapdev
# Add hmapdev to PATH or use directly
# Prebuilt binaries also ship as release assets (hmapdev_linux_amd64, ...)
```
### SDK Version Management
`plugindev sdk` manages local SDK versions:
`hmapdev sdk` manages local SDK versions:
```bash
plugindev sdk list # list installed SDK versions
plugindev sdk current # show current SDK version
plugindev sdk latest # show latest available version
plugindev sdk install v0.8.0 # install a specific version
plugindev sdk use v0.8.0 # switch to a version
plugindev sdk path # show current SDK path
hmapdev sdk list # list installed SDK versions
hmapdev sdk current # show current SDK version
hmapdev sdk latest # show latest available version
hmapdev sdk install v1.2.0 # install a specific version
hmapdev sdk use v1.2.0 # switch to a version
hmapdev sdk path # show current SDK path
```
SDK is stored at `~/.homeagent/plugindev/sdk/<version>/`; `plugindev init` reads the current SDK version for `go.mod`.
SDK is stored at `~/.homeagent/hmapdev/sdk/<version>/`; `hmapdev init` reads the current SDK version for `go.mod`.
### Source Debugging
`plugindev debug` interprets plugin source and prints a call trace, no compilation environment needed:
`hmapdev debug` interprets plugin source and prints a call trace, no compilation environment needed:
```bash
plugindev debug [dir] # dir defaults to the current directory
hmapdev debug [dir] # dir defaults to the current directory
```
### Creating a Go Plugin
```bash
plugindev init myplugin
hmapdev init myplugin
cd myplugin
# Edit plugin code
vim plugin.go
# Build and package (default is a multi-platform bundle, see below)
plugindev build
hmapdev build
# Output: dist/myplugin_bundle.hmap
# Single-platform build:
plugindev build --no-bundle
hmapdev build --no-bundle
# Output: dist/myplugin_linux_amd64.hmap (or windows_amd64)
```
### Creating a Lua Plugin
```bash
plugindev init myluaplugin --lua
hmapdev init myluaplugin --lua
cd myluaplugin
# Edit plugin code
vim main.lua
# Local test
lua main.lua
# Build and package
plugindev build
hmapdev build
# Output: dist/myluaplugin_lua.hmap
```
@ -128,16 +133,16 @@ myluaplugin/
### Build & Package
`plugindev build` automatically handles compilation and packaging:
`hmapdev build` automatically handles compilation and packaging:
```bash
cd myplugin
plugindev build # default bundle mode (multi-platform)
plugindev build --no-bundle # single-target build (per plg.json targets)
plugindev build --target linux/amd64 # append a target on top of plg.json targets
plugindev build --outdir dist # output directory (default: dist)
plugindev build --sdk-path <path> # SDK path override (go.mod replace)
plugindev build --replace <mod@path> # append a go.mod replace directive (repeatable)
hmapdev build # default bundle mode (multi-platform)
hmapdev build --no-bundle # single-target build (per plg.json targets)
hmapdev build --target linux/amd64 # append a target on top of plg.json targets
hmapdev build --outdir dist # output directory (default: dist)
hmapdev build --sdk-path <path> # SDK path override (go.mod replace)
hmapdev build --replace <mod@path> # append a go.mod replace directive (repeatable)
```
Execution process:
@ -171,7 +176,7 @@ the kernel picks the one matching the current platform and renames it to `plugin
> - `plugin.so` / `plugin.dylib` / `plugin.dll` are **no longer loaded**. The new kernel
> skips legacy artifacts with an actionable error instead of crashing.
> - **Business code needs no changes** — the public SDK interface is unchanged; just
> rebuild with the new `plugindev`.
> rebuild with the new `hmapdev` (formerly `plugindev`).
> - The `entry` field in `plg.json` is **meaningless for Go plugins** now (leaving
> `plugin.so` there is harmless); it only distinguishes Lua plugins.
> - Artifacts no longer need cgo, so cross-compiling requires no target C toolchain.
@ -180,12 +185,12 @@ the kernel picks the one matching the current platform and renames it to `plugin
### Build Targets & Multi-platform Bundle
**`plugindev build` defaults to bundle mode** (unless `plg.json` explicitly sets `"bundle": false`): it builds linux/amd64 + darwin/amd64 + windows/amd64 in one pass, producing a single `.hmap` with all platform binaries. The output manifest includes a `platforms` field. The kernel auto-selects the correct binary during installation.
**`hmapdev build` defaults to bundle mode** (unless `plg.json` explicitly sets `"bundle": false`): it builds linux/amd64 + darwin/amd64 + windows/amd64 in one pass, producing a single `.hmap` with all platform binaries. The output manifest includes a `platforms` field. The kernel auto-selects the correct binary during installation.
```bash
plugindev build # default bundle, outputs dist/myplugin_bundle.hmap
plugindev build --bundle # explicitly enable bundle (same as above)
plugindev build --no-bundle # disable bundle, build per plg.json targets
hmapdev build # default bundle, outputs dist/myplugin_bundle.hmap
hmapdev build --bundle # explicitly enable bundle (same as above)
hmapdev build --no-bundle # disable bundle, build per plg.json targets
```
Notes:
@ -275,7 +280,7 @@ func NewPluginFactory(name string, config map[string]interface{}) (sdk.Plugin, e
### Entry Point
`plugindev init` generates `plugin.go` with the `NewPlugin` export function directly,
`hmapdev init` generates `plugin.go` with the `NewPlugin` export function directly,
which is the entry point when the kernel loads the plugin:
```go
@ -284,7 +289,7 @@ func NewPlugin(name string, config map[string]interface{}) (sdk.Plugin, error) {
}
```
At build time, `plugindev build` auto-generates subprocess runtime code
At build time, `hmapdev build` auto-generates subprocess runtime code
(`z_proc_gen.go` for the platform-independent part, plus `z_proc_shm_unix.go` /
`z_proc_shm_windows.go`). All three platforms share the same entry point and the same
RPC logic; only the cross-process resource-passing mechanism differs (inherited fds on

View File

@ -90,8 +90,8 @@ eventLoop() → processTextInput()
RelevanceContext — 内存 events[] + JSON持久化
Append: 每次输入, CleanText → 三分支向量(textForVector)
agent事件→Response, 用户事件→Input, cold_storage→Input+Response
StaticEmbedder 预训练词嵌入 / TF-IDF 回退
Prune: StaticEmbedder CosineSimilarity, 保留 topK + 最近10条
向量层级:统一多模态空间(主,带 fingerprint StaticEmbedder 词嵌入 TF-IDF回退
Prune: DenseCosine仅同指纹才比较→ 退化 StaticEmbedder CosineSimilarity保留 topK + 最近10条
├── 保留 → timeline → 按时间排序 → system prompt
└── 低分 → Document 层归档 (原始时间戳)
Save: 5s debounce 写盘
@ -99,7 +99,7 @@ eventLoop() → processTextInput()
↓ Prune 归档 ↑ LLM 主动召回
② Document (文件记忆)
DocStore — JSON文件 + 与 Context 共享的 StaticEmbedder 向量空间(兜底: TF-IDF InvertedIndex
DocStore — JSON文件 + 稠密向量统一多模态空间dense_fp 须与当前空间同指纹,不符即重算;兜底: StaticEmbedder / TF-IDF InvertedIndex
写入: Prune归档 / doc_commit / Graph快照(syncGraphToDocs)
读取:
├── 自动注入: Query(input, top3) → 同一向量空间下相似度摘要 → 【相关记忆文档】→ system prompt (只读)
@ -132,11 +132,20 @@ eventLoop() → processTextInput()
→ 三元组 → GraphDB.Commit
```
### 向量化:预训练词嵌入 + TF-IDF 回退
### 向量化:统一多模态空间(主)→ 词嵌入 TF-IDF回退
所有向量化统一使用 `StaticEmbedder``internal/memory/static_embedder.go`
向量化按可用性分三层降级,**每一层缺位都明确报错,不静默假装成功**
**主策略 — 预训练词嵌入(词对齐 300 **
**① 统一多模态空间主路径v1.2.0 **
文本与图像共用**同一模型、同一维度、同一指纹**(默认 `chineseclip`512 维、Apache-2.0、中文原生;
亦可选 `qwen3vl` 或外部 `http` provider。provider 经 `pkg/embedding` 公共 SPI 注册,
**内核不硬编码任何模型**。向量与指纹一起持久化(`dense_fp` / `vec_model`
与当前指纹不一致即触发重算;融合时只接受**同指纹且同维度**的块向量
(跨坐标系的向量混进去会算出两边都不像的方向)。
**② 词嵌入(文本兜底)** — `StaticEmbedder``internal/memory/static_embedder.go`
**模型来源**(词对齐 300 维)
- 模型来源ConceptNet Numberbatch77 语对齐)/ fastText 中文 / fastText 英文
- 通过 `core.agent.embedding_model_path` 配置(逗号分隔多模型)
- 路径名含 `numberbatch` → 自动下载 ConceptNet`cc.zh.` → fastText 中文,含 `cc.en.` → fastText 英文
@ -194,30 +203,31 @@ eventLoop() → processTextInput()
要求调用方知道格式,等于让一个拼写错误静默切断引用绑定而全链路无人报错。
`memory_commit` 同时新增 `sentence_text`:媒体引用挂在句子上,没有句子就无处可挂。
### 媒体记忆v1.1.0 起)
### 媒体记忆v1.2.0 起:一等记忆块
`internal/memory/media/` `Store`内容寻址CAS
媒体不是外挂内容,而是**记忆的一等节点**`internal/memory/media/` 内容寻址仓储CAS
图数据库里的 block 节点携带它的 digest 与向量,结构边(如 `sentence --contains--> block`)表达归属。
| 关注点 | 做法 | 为何 |
|---|---|---|
| 寻址 | sha256 digest元数据在 SQLiteblob 在磁盘 | 相同字节只存一份元数据要可查询blob 不该进数据库 |
| 寻址 | sha256 digest元数据在 SQLiteblob 在磁盘`blobs/<前2位>/<其余>` 两级分桶) | 相同字节只存一份元数据要可查询blob 不该进数据库 |
| 完整性 | 每次 `Get` 重校 digest | 磁盘损坏时静默返回脏数据比报错危险得多 |
| 写入原子性 | `.tmp` + rename | 半个文件被当成完整内容会永久污染那个 digest |
| 引用 | `owner_kind/owner_id/digest` 三元组主键,`AddRef` 幂等 | 三个 owner 类型:`context`(上下文事件)、`document`(文档)、`graph_sentence`(图谱句子) |
| GC | 两阶段 + `minAge`**有引用者绝不删** | 描述文本留在文本层blob 可淘汰——语义记忆与字节缓存分离 |
| 检索 | 块携带**自己的多模态向量与指纹**,直接参与向量检索 | 不需要描述文本做中介 |
| 生命周期 | **无独立 GC、无引用计数、无 keep-set**;删除块即删内容 | 媒体是记忆节点,不是需要保活的缓存 |
**媒体在纯文本记忆里的表示**是标记 `[<mime> <短digest>] <描述>`
**不再有描述式索引**:旧实现在正文里写 `[<mime> <短digest>] <描述>` 标记,并把描述文本当作语义记忆
(检索靠描述)。该机制已在 v1.2.0 整体拆除:描述是模型生成的二手信息,
检索“别人转述的图片”不如检索图片自己的向量。现在图片只按自己的统一空间向量被检索,
正文里不再有 media marker。
```
[image/png a1b2c3d4e5f6] 一张紫蓝红三色带图
```
**跨空间向量迁移**:媒体行的向量带 `vec_model`(空间指纹)。启动时
`reembedStaleMedia()``vec_model` 为空(从未嵌入)或与当前空间不一致(换过模型/维度)的行
批量重算并**写回库**;模态不在本空间覆盖范围时返回 `ErrModalityUnsupported`
**绝不拿别的模型的向量顶替**
之所以必须借文本承载:`Doc.Content``sentences.text`、文本记忆的 `Input` 全是字符串
没有字段能挂结构化数据。**描述文本才是持久的语义记忆**检索靠它digest 是回到字节的
钥匙反查靠它。blob 被容量 GC 淘汰后,描述仍留在 L0/L2/L3 的文本里。
媒体存储**全程可选**`core.memory.media.enabled=false` 或未配置时,整条链路静默退化为
纯文本行为,不报错不 panic。
媒体存储全程可选:`core.memory.media.enabled=false` 或未配置时,整条链路静默退化为纯文本行为
不报错不 panic。
### 其他记忆层
@ -287,7 +297,7 @@ VM 内置 `json.encode` / `json.decode` / `log` / `http_get` / `http_post`。
| 方式 | 注册机制 | 编译 | 用途 |
|------|----------|------|------|
| 内置插件 | `init()``RegisterFactory` | `internal/plugins/` 编译进内核 | webui/cli/timer/mcp 等 |
| 外部子进程插件 | 握手 + stdio JSON-RPC 反向注册 | `plugindev build``plugin.bin`(普通 Go 二进制) | qq/browser/files 等 |
| 外部子进程插件 | 握手 + stdio JSON-RPC 反向注册 | `hmapdev build``plugin.bin`(普通 Go 二进制) | qq/browser/files 等 |
| Lua 脚本插件 | 执行 `main.lua` 注册工具 | 无需编译,重启/重载生效 | luademo 等 |
| SKILL 插件 | 解析 `SKILL.md` | Markdown 定义 | clawhubadapter 兼容加载 |
@ -306,7 +316,7 @@ Lua 脚本插件加载:`internal/plugin/` → gopher-lua 解释器执行 `main
| 维度 | 内置插件 | 外部插件 |
|------|----------|----------|
| 注册方式 | `init()` 调用 `plugin.RegisterFactory(name, factory)` | 实现 `NewPluginFactory(name, config) (sdk.Plugin, error)` 入口函数 |
| 编译方式 | 编译进 `homed` 二进制,无需独立编译 | 通过 `plugindev build` 编译为 `plugin.bin`(普通 Go 二进制,零 cgo内核 spawn 为子进程 |
| 编译方式 | 编译进 `homed` 二进制,无需独立编译 | 通过 `hmapdev build` 编译为 `plugin.bin`(普通 Go 二进制,零 cgo内核 spawn 为子进程 |
| 分发方式 | 随内核分发,不可独立安装/卸载 | `.hmap`ZIP 归档),通过 WebUI 或 pluginmgr API 安装 |
| 元数据 | 通过 `plugin.RegisterPluginMeta()` 注册显示名 | `plugin.json` manifest 文件name, version, entry, platforms, capabilities 等) |
| 插件目录 | 无独立目录,编译进二进制 | `plugins/<name>/` 独立目录,包含 `plugin.json` + `plugin.bin` |

View File

@ -30,75 +30,80 @@ type Plugin interface {
| 方式 | 适用场景 | 复杂度 |
|------|---------|--------|
| **子进程插件(推荐)** | 独立分发的第三方插件 | 中等,使用 `plugindev` 工具链生成 |
| **子进程插件(推荐)** | 独立分发的第三方插件 | 中等,使用 `hmapdev` 工具链生成 |
| **内置插件** | 随 HomeAgent 一起发布 | 简单,需合入主仓库 |
| **Lua 脚本插件** | 轻量快速原型 | 简单,使用 `plugindev init --lua` 生成 |
| **Lua 脚本插件** | 轻量快速原型 | 简单,使用 `hmapdev init --lua` 生成 |
---
<img src="../../assets/branding/mascot-xiaozhai.webp" width="20" style="border-radius:50%;vertical-align:middle"> :
## 一、快速开始:使用 plugindev 工具链
## 一、快速开始:使用 hmapdev 工具链
`plugindev` 是 SDK 仓库提供的统一插件开发工具链,支持 Go 和 Lua 两种插件类型
`hmapdev` 是 SDK 仓库提供的统一插件开发工具链,支持 Go 和 Lua 两种插件类型
最终产出 `.hmap` 插件包(工具名即来自这个包格式)。
> 改名说明1.2.0 起工具链由 `plugindev` 更名为 `hmapdev`SDK 存储目录同时由
> `~/.homeagent/plugindev/sdk` 迁到 `~/.homeagent/hmapdev/sdk`(旧目录会自动继续沿用)。
### 安装
```bash
cd homeagent-sdk/tools/plugindev
go build -o plugindev
# 将 plugindev 加入 PATH 或直接使用
cd homeagent-sdk/tools/hmapdev
go build -o hmapdev
# 将 hmapdev 加入 PATH 或直接使用
# 也可从 SDK 的 release 附件下载预编译二进制hmapdev_linux_amd64 等)
```
### SDK 版本管理
`plugindev sdk` 子命令管理本地 SDK 版本:
`hmapdev sdk` 子命令管理本地 SDK 版本:
```bash
plugindev sdk list # 列出已安装的 SDK 版本
plugindev sdk current # 显示当前使用的 SDK 版本
plugindev sdk latest # 显示最新可用版本
plugindev sdk install v0.8.0 # 安装指定版本
plugindev sdk use v0.8.0 # 切换使用版本
plugindev sdk path # 显示当前 SDK 路径
hmapdev sdk list # 列出已安装的 SDK 版本
hmapdev sdk current # 显示当前使用的 SDK 版本
hmapdev sdk latest # 显示最新可用版本
hmapdev sdk install v1.2.0 # 安装指定版本
hmapdev sdk use v1.2.0 # 切换使用版本
hmapdev sdk path # 显示当前 SDK 路径
```
SDK 存储在 `~/.homeagent/plugindev/sdk/<version>/``plugindev init` 自动读取当前 SDK 版本填充 `go.mod`
SDK 存储在 `~/.homeagent/hmapdev/sdk/<version>/``hmapdev init` 自动读取当前 SDK 版本填充 `go.mod`
### 源码调试
`plugindev debug` 直接用解释器执行插件源码并输出调用轨迹,无需编译环境:
`hmapdev debug` 直接用解释器执行插件源码并输出调用轨迹,无需编译环境:
```bash
plugindev debug [dir] # dir 默认当前目录
hmapdev debug [dir] # dir 默认当前目录
```
### 创建 Go 插件
```bash
plugindev init myplugin
hmapdev init myplugin
cd myplugin
# 编辑插件代码
vim plugin.go
# 编译打包
plugindev build # 默认多平台 bundle见下节
hmapdev build # 默认多平台 bundle见下节
# 输出: dist/myplugin_bundle.hmap
# 单平台构建:
plugindev build --no-bundle
hmapdev build --no-bundle
# 输出: dist/myplugin_linux_amd64.hmap (或 windows_amd64)
```
### 创建 Lua 插件
```bash
plugindev init myluaplugin --lua
hmapdev init myluaplugin --lua
cd myluaplugin
# 编辑插件代码
vim main.lua
# 本地测试
lua main.lua
# 编译打包
plugindev build
hmapdev build
# 输出: dist/myluaplugin_lua.hmap
```
@ -129,16 +134,16 @@ myluaplugin/
### 编译打包
`plugindev build` 会自动完成编译和打包:
`hmapdev build` 会自动完成编译和打包:
```bash
cd myplugin
plugindev build # 默认 bundle 模式(多平台合集)
plugindev build --no-bundle # 单平台构建(仅当前 plg.json targets
plugindev build --target linux/amd64 # 在 targets 基础上追加一个目标
plugindev build --outdir dist # 指定输出目录(默认 dist
plugindev build --sdk-path <path> # 指定 SDK 路径(覆盖 go.mod replace
plugindev build --replace <mod@path> # 追加 go.mod replace 指令(可多次)
hmapdev build # 默认 bundle 模式(多平台合集)
hmapdev build --no-bundle # 单平台构建(仅当前 plg.json targets
hmapdev build --target linux/amd64 # 在 targets 基础上追加一个目标
hmapdev build --outdir dist # 指定输出目录(默认 dist
hmapdev build --sdk-path <path> # 指定 SDK 路径(覆盖 go.mod replace
hmapdev build --replace <mod@path> # 追加 go.mod replace 指令(可多次)
```
执行过程:
@ -154,7 +159,7 @@ plugindev build --replace <mod@path> # 追加 go.mod replace 指令(可多次
| 文件 | 用途 | 关键字段 |
|------|------|---------|
| `plg.json` | 项目元信息,由开发者维护 | `targets` — 单平台构建目标(如 `"linux/amd64,windows/amd64"``bundle` — 多平台合集开关(默认 `true`|
| `plugin.json` | 构建产物清单,`plugindev build` 自动生成 | `entry` — 入口文件名;`platforms` — 声明的支持平台 |
| `plugin.json` | 构建产物清单,`hmapdev build` 自动生成 | `entry` — 入口文件名;`platforms` — 声明的支持平台 |
每个目标生成单独的 `.hmap`。子进程插件是普通可执行文件,**不分平台后缀**
@ -169,7 +174,7 @@ bundle 包内按 `plugin.bin.<goos>.<goarch>` 区分各平台,安装时内核
>
> - `plugin.so` / `plugin.dylib` / `plugin.dll` **不再被加载**。新内核遇到旧产物
> 会跳过并报可操作错误,不崩溃。
> - **业务代码不需要改一行**——公开 SDK 接口零改动,只需用新版 `plugindev` 重编。
> - **业务代码不需要改一行**——公开 SDK 接口零改动,只需用新版 `hmapdev`(原 `plugindev`重编。
> - `plg.json` 的 `entry` 字段对 Go 插件**已无意义**(写着 `plugin.so` 也无妨),
> 它现在只用于区分 Lua 插件。
> - 产物不再需要 cgo交叉编译无需目标平台 C 工具链。
@ -178,12 +183,12 @@ bundle 包内按 `plugin.bin.<goos>.<goarch>` 区分各平台,安装时内核
### 构建目标与多平台打包bundle
**`plugindev build` 默认就是 bundle 模式**`plg.json` 未显式写 `"bundle": false` 时):一次编译 linux/amd64 + darwin/amd64 + windows/amd64生成包含所有平台二进制的单 `.hmap`,输出清单自动添加 `platforms` 字段。安装时核心自动选择当前平台的二进制,跳过其他平台。
**`hmapdev build` 默认就是 bundle 模式**`plg.json` 未显式写 `"bundle": false` 时):一次编译 linux/amd64 + darwin/amd64 + windows/amd64生成包含所有平台二进制的单 `.hmap`,输出清单自动添加 `platforms` 字段。安装时核心自动选择当前平台的二进制,跳过其他平台。
```bash
plugindev build # 默认 bundle输出 dist/myplugin_bundle.hmap
plugindev build --bundle # 显式开启 bundle同上
plugindev build --no-bundle # 关闭 bundle按 plg.json 的 targets 逐平台构建
hmapdev build # 默认 bundle输出 dist/myplugin_bundle.hmap
hmapdev build --bundle # 显式开启 bundle同上
hmapdev build --no-bundle # 关闭 bundle按 plg.json 的 targets 逐平台构建
```
注意:
@ -273,7 +278,7 @@ func NewPluginFactory(name string, config map[string]interface{}) (sdk.Plugin, e
### 入口点
`plugindev init` 生成的 `plugin.go` 中直接包含 `NewPlugin` 导出函数,它是内核加载插件时的入口:
`hmapdev init` 生成的 `plugin.go` 中直接包含 `NewPlugin` 导出函数,它是内核加载插件时的入口:
```go
func NewPlugin(name string, config map[string]interface{}) (sdk.Plugin, error) {
@ -281,7 +286,7 @@ func NewPlugin(name string, config map[string]interface{}) (sdk.Plugin, error) {
}
```
编译时 `plugindev build` 自动生成子进程运行时代码(`z_proc_gen.go` 平台无关 + `z_proc_shm_unix.go` / `z_proc_shm_windows.go` 平台特定),无需手动编写。三平台共享同一入口与同一套 RPC 逻辑仅跨进程资源传递机制不同Unix 继承 fdWindows 命名内核对象)。
编译时 `hmapdev build` 自动生成子进程运行时代码(`z_proc_gen.go` 平台无关 + `z_proc_shm_unix.go` / `z_proc_shm_windows.go` 平台特定),无需手动编写。三平台共享同一入口与同一套 RPC 逻辑仅跨进程资源传递机制不同Unix 继承 fdWindows 命名内核对象)。
### PluginSDK 核心 API

View File

@ -336,6 +336,10 @@ func main() {
if err := docStore.Start(); err != nil {
log.Printf("[homed] warning: document store: %v", err)
}
// 关停时落盘。文档记忆的内存态变更(迁移结果、访问计数等)只在 flush
// 里写盘,而 flush 的唯一入口是 Stop()——此前全仓无人调用它,
// 于是迁移结果永不落盘、每次启动白算一遍。
defer docStore.Stop()
// 媒体存储(内容寻址):记忆块的内容后端。
// 开关默认开;关闭后全部媒体接线静默跳过,对话行为与本特性上线前一致。
@ -363,7 +367,11 @@ func main() {
// 布局、预处理、解码、运行时全部属于 provider 内部实现。
// provider 名为空时禁用多模态向量检索,退回纯 fastText 文本路径。
var multimodalSpace vector.MultimodalEmbedder
// 这两个值只用于状态报告healthcheck_kernel 的 onnx 段):
// 「配了哪个 provider」与「为什么没启用」避免只能看到 false 却不知原因。
var mmProviderName, mmErr string
if mmProvider := cfgReg.GetString("core.memory.multimodal_space.provider", ""); mmProvider != "" {
mmProviderName = mmProvider
opts := map[string]string{}
const optPrefix = "core.memory.multimodal_space.options."
for _, key := range cfgReg.List("core.memory.multimodal_space.options.") {
@ -371,10 +379,12 @@ func main() {
}
provider, err := embedding.Open(mmProvider, embedding.Config{Options: opts})
if err != nil {
mmErr = err.Error()
log.Printf("[homed] warning: 多模态向量 provider %q 打开失败: %v多模态向量检索已禁用已注册: %s",
mmProvider, err, strings.Join(embedding.Names(), ", "))
} else if adapted, err := vector.AdaptProvider(provider); err != nil {
provider.Close()
mmErr = err.Error()
log.Printf("[homed] warning: 多模态向量 provider %q 元数据不合法: %v多模态向量检索已禁用", mmProvider, err)
} else {
multimodalSpace = adapted
@ -401,13 +411,29 @@ func main() {
// 人格设定
// ========================================================================
// 人格来源优先级personal/personal.md高级覆盖存在且非空才生效
// > 配置项 core.agent.personal_prompt默认模板 = config.DefaultPersonaPrompt
//
// 曾经只有「文件」一个来源且无人维护,导致人格卡写死旧版本号与已删除的 C ABI、
// 反过来让实例自称旧版本v1.2.0 压测发现)。故:
// - 配置项化 + 内置默认模板(不含版本号字面量)
// - 文件仍在时生效,但扫到腐坏内容就在启动日志里明确告警
personalPath := filepath.Join(cfg.Daemon.DataDir, "personal", "personal.md")
personality, err := agentPkg.LoadPersonality(personalPath)
if err != nil {
log.Printf("[homed] warning: load personality: %v", err)
}
if personality != nil && personality.Content != "" {
log.Printf("[homed] personality loaded (%d bytes)", len(personality.Content))
log.Printf("[homed] 人格来源=文件 %s优先于配置项%d 字节", personalPath, len(personality.Content))
if hints := agentPkg.PersonaStaleHints(personality.Content); len(hints) > 0 {
log.Printf("[homed] warning: 人格文件含会腐坏的内容 %v — 建议迁到配置项 core.agent.personal_prompt"+
"(默认模板不含版本号,被问版本时以运行时快照为准)", hints)
}
} else if pv := cfgReg.GetString("core.agent.personal_prompt", internalConfig.DefaultPersonaPrompt); strings.TrimSpace(pv) != "" {
personality = &agentPkg.Personality{Content: pv, Path: "(core.agent.personal_prompt)"}
log.Printf("[homed] 人格来源=配置项 core.agent.personal_prompt%d 字节", len(pv))
} else {
log.Printf("[homed] 人格来源=无(配置项为空且无人格文件)")
}
// ========================================================================
@ -486,20 +512,23 @@ func main() {
}
agent := agentCore.New(agentCore.AgentConfig{
ID: "main",
SystemPrompt: sysPrompt,
Provider: provider,
ProviderManager: providerMgr,
IO: iom,
Memory: memDB,
Indexer: memIdx,
Tracker: trk,
DocStore: docStore,
Knowledge: ks,
SocialStore: socialStore,
TextMemory: textMem,
MediaStore: mediaStore,
Personality: personality,
ID: "main",
SystemPrompt: sysPrompt,
Provider: provider,
ProviderManager: providerMgr,
IO: iom,
Memory: memDB,
Indexer: memIdx,
Tracker: trk,
DocStore: docStore,
Knowledge: ks,
SocialStore: socialStore,
TextMemory: textMem,
MediaStore: mediaStore,
Personality: personality,
// 人格落库面:首启门禁(任何通道都问一次)与 persona_set 工具用。
// 与 WebUI 向导共用 internal/config 的同一份落库逻辑。
PersonaStore: internalConfig.RegistryPersonaStore{Reg: cfgReg},
PluginReg: pluginReg,
PluginDir: cfg.Plugin.Dir,
DistillInterval: cfgReg.GetDuration("core.agent.distill_interval", 30*time.Minute),
@ -510,6 +539,8 @@ func main() {
EmbeddingModelPath: cfgReg.GetString("core.agent.embedding_model_path", ""),
Embedder: embedder,
MultimodalSpace: multimodalSpace,
EmbeddingProvider: mmProviderName,
EmbeddingError: mmErr,
StageHost: stageHost,
EventBus: evBus,
ThinkingEnabled: cfg.LLM.ThinkingEnabled,

View File

@ -24,7 +24,7 @@ import (
// 所以选择:**原生 Windows 不提供 homed**。Windows 用户跑 WSL2——
// WSL2 里就是普通 linux/amd64走与我们测试矩阵完全相同的那条路径。
//
// 注意范围:只有 homed 如此。plugindev 工具链仍可在 Windows 上运行
// 注意范围:只有 homed 如此。hmapdev 工具链仍可在 Windows 上运行
// (在 Windows 上开发、为 WSL 构建 linux 插件是合理工作流)。
func requireSupportedPlatform() {
fmt.Fprintln(os.Stderr, "homed 不支持 Windows 原生运行。")

View File

@ -15,6 +15,13 @@ BUILD_TIME="${BUILD_TIME:-$(date -u '+%Y-%m-%dT%H:%M:%SZ')}"
GO="${GO:-$(command -v go 2>/dev/null || echo "go")}"
LDFLAGS="-X gitcode.com/JianFeeeee/HomeAgent/internal/meta.Version=${VERSION} -X gitcode.com/JianFeeeee/HomeAgent/internal/meta.Commit=${COMMIT} -X gitcode.com/JianFeeeee/HomeAgent/internal/meta.BuildTime=${BUILD_TIME}"
# 版本与提交的**权威来源**是上面注入的 meta.Version / meta.Commit不是 Go 自带的
# VCS 戳。后者不进 build cache keyGo 文档明确说明 VCS 变化不会触发重建),
# 命中缓存时会把上一次的 revision 一并带回来——实测发布分支的产物上就出现了
# 1715b5c本机任何仓库都不存在的提交用 `go version -m` 溯源会指向幽灵提交。
# 统一 -buildvcs=false宁可没有这个信号也不要一个错的。
# 溯源请用:`strings homed | grep -m1 '^<短 hash>$'`meta.Commit 是字符串常量)。
TARGET="${1:-native}"
COMPONENT="${2:-all}"
@ -131,7 +138,7 @@ build_homed() {
local _tags="${HOMED_TAGS-onnxruntime}"
local -a _tagargs=()
if [ -n "$_tags" ]; then _tagargs=(-tags "$_tags"); fi
CGO_ENABLED=1 CC="$_cc" "$GO" build -trimpath -installsuffix dynlink \
CGO_ENABLED=1 CC="$_cc" "$GO" build -buildvcs=false -trimpath -installsuffix dynlink \
${_tagargs[@]+"${_tagargs[@]}"} \
-ldflags "$LDFLAGS" -o "$out" ./cmd/homed/
echo " OK ($(file "$out" | sed 's/.*: //') | $(du -h "$out" | cut -f1))"
@ -144,7 +151,7 @@ build_waiter() {
if [ "$GOOS" = "windows" ]; then out="${out}.exe"; fi
echo "[BUILD] waiter ${plat}$out"
CGO_ENABLED=0 "$GO" build -trimpath -installsuffix dynlink \
CGO_ENABLED=0 "$GO" build -buildvcs=false -trimpath -installsuffix dynlink \
-ldflags "$LDFLAGS" -o "$out" ./cmd/waiter/
echo " OK ($(du -h "$out" | cut -f1))"
}
@ -165,7 +172,7 @@ build_initconfig() {
if [ "$GOOS" = "windows" ]; then out="${out}.exe"; fi
echo "[BUILD] initconfig ${plat}$out"
CGO_ENABLED=1 "$GO" build -trimpath -installsuffix dynlink \
CGO_ENABLED=1 "$GO" build -buildvcs=false -trimpath -installsuffix dynlink \
-ldflags "$LDFLAGS" -o "$out" ./cmd/initconfig/
echo " OK ($(du -h "$out" | cut -f1))"
}
@ -204,6 +211,14 @@ stage_linux_payload() {
}
# ---- gui (Electron) ----
#
# 输出目录必须用 --config.directories.output**不能用 -o**
# electron-builder 的 `-o` 是 `--mac`/`--macos` 的短别名(见 --help 的 Building 段),
# 不是 output。此前 `-o "$BUILD_DIR"` 被当成 macOS 的 target 列表,报
# Unknown target: /home/program/trueagent/build
# (路径被 lowercase 后去匹配 target 名表,所以错误信息里的路径是全小写的,
# 这也是它看起来像「路径错」而实际是「参数位置错」的原因)。
# v1.0.1 与 v1.0.3 两次发布都因此手工组装过 GUI。
build_gui() {
if [ -n "${GOOS:-}" ] && [ "$GOOS" != "$("$GO" env GOOS)" ]; then
echo "[SKIP] gui ${GOOS}/${GOARCH} — electron-builder handles cross-platform natively; run 'all' on CI host"
@ -221,12 +236,21 @@ build_gui() {
# 不传 --configelectron-builder 默认从 package.json 的 "build" 键读配置。
# 传 --config package.json 会让它把**整个** package.json 当配置校验,
# 于是 devDependencies / build / scripts 全被判为 "unknown property" 而失败。
(cd "$gui_dir" && npx electron-builder \
--linux --win --mac \
--x64 --arm64 \
-p never \
-o "$BUILD_DIR")
echo " OK"
#
# GUI 失败不中断整体构建homed/waiter/initconfig 是发布的主体,
# 而 GUI 依赖 electron 运行时下载离线机器、arm64 缺缓存都会失败)。
# set -e 下若不接住,一个可选组件会让整轮跨平台构建全废。
if (cd "$gui_dir" && npx electron-builder \
--linux --win --mac \
--x64 --arm64 \
-p never \
--config.directories.output="$BUILD_DIR"); then
echo " OK"
else
echo " WARN: gui 构建失败(可选组件,不影响 homed/waiter/initconfig"
echo " Linux 包可用 deploy/packaging/package-linux.sh 内置的手工组装路径"
return 0
fi
}
# ---- dispatch ----

View File

@ -76,6 +76,10 @@ Function GenKey
FunctionEnd
!insertmacro MUI_PAGE_WELCOME
; 许可页AGPL-3.0-only全文在仓库根 LICENSE
; NSIS 的 File/!insertmacro 相对路径以**本 .nsi 所在目录**为基准解析,
; 而本文件在 deploy/packaging/,故仓库根是 ..\..\ 。
!insertmacro MUI_PAGE_LICENSE "..\..\LICENSE"
!insertmacro MUI_PAGE_DIRECTORY
!if "${HAS_CREDENTIALS}" == "1"

View File

@ -335,6 +335,7 @@ stage_variant() {
cp "$PROJECT_ROOT/deploy/homeagent.service" "$staging/etc/systemd/system/homeagent.service"
[ -f "$initconfig_bin" ] && cp "$initconfig_bin" "$staging/usr/bin/initconfig"
stage_setup "$staging"
stage_license "$staging"
stage_multimodal_assets "$staging"
stage_gui "$staging"
;;
@ -344,10 +345,12 @@ stage_variant() {
cp "$PROJECT_ROOT/deploy/homeagent.service" "$staging/etc/systemd/system/homeagent.service"
[ -f "$initconfig_bin" ] && cp "$initconfig_bin" "$staging/usr/bin/initconfig"
stage_setup "$staging"
stage_license "$staging"
stage_multimodal_assets "$staging"
;;
client)
cp "$BUILD_DIR/waiter_$suffix" "$staging/usr/bin/waiter"
stage_license "$staging"
stage_gui "$staging"
;;
esac
@ -382,6 +385,58 @@ stage_setup() {
fi
}
# 项目自身的许可:**所有变体**都要带client 也分发 waiter 与 GUI
#
# deb 按 Debian 惯例给 /usr/share/doc/homeagent/copyrightDEP-5 机器可读格式),
# 同时把 LICENSE 全文放进去rpm 的许可走 fpm 的 --license 元数据。
# 与 stage_multimodal_assets 的 licenses/ 分工:那里放**第三方**(模型/运行库)的
# 许可全文,这里放本项目自己的。
stage_license() {
local staging="$1"
local docdir="$staging/usr/share/doc/homeagent"
mkdir -p "$docdir"
cp "$PROJECT_ROOT/LICENSE" "$docdir/LICENSE"
cat > "$docdir/copyright" <<'EOF'
Format: https://www.debian.org/doc/packaging-manuals/copyright-format/1.0/
Upstream-Name: HomeAgent
Source: https://gitcode.com/JianFeeeee/HomeAgent
Files: *
Copyright: HomeAgent contributors
License: AGPL-3.0-only
This program is free software: you can redistribute it and/or modify it under
the terms of the GNU Affero General Public License as published by the Free
Software Foundation, version 3 of the License.
.
This program is distributed in the hope that it will be useful, but WITHOUT
ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
FOR A PARTICULAR PURPOSE. See the GNU Affero General Public License for more
details.
.
You should have received a copy of the GNU Affero General Public License along
with this program. If not, see <https://www.gnu.org/licenses/>.
.
The license is AGPL-3.0-only: no later version may be chosen. Note the network
clause (§13 Remote Network Interaction) — offering modified versions of this
software to users over a network also requires offering them the source.
.
Full text: /usr/share/doc/homeagent/LICENSE
Files: usr/lib/homeagent/models/chinese-clip-vit-b16-onnx/*
Copyright: OFA-Sys / Chinese-CLIP authors
License: Apache-2.0
Full text: /usr/share/doc/homeagent/licenses/Chinese-CLIP-Apache-2.0.txt
Comment: pre-trained model artifacts; NOT covered by this package's AGPL grant
Files: usr/lib/homeagent/onnxruntime/*
Copyright: Microsoft Corporation
License: MIT
Full text: /usr/share/doc/homeagent/licenses/ONNX-Runtime-MIT.txt
Comment: license texts and third-party notices under licenses/ONNX-Runtime-*
EOF
chmod 644 "$docdir/LICENSE" "$docdir/copyright"
}
# server/full 的 ONNX 资产。模型与运行库是发行版能力的一部分,不是可选下载:
# 只要打 server/full 包两者缺一就失败。client 包不运行 homed故不携带。
stage_multimodal_assets() {
@ -515,6 +570,7 @@ build_tar() {
local setup_src="$PROJECT_ROOT/deploy/packaging/linux/setup.sh"
[ -f "$setup_src" ] && cp "$setup_src" "$staging/usr/lib/homeagent/setup.sh"
cp "$PROJECT_ROOT/deploy/homeagent.service" "$staging/etc/systemd/system/homeagent.service"
stage_license "$staging"
stage_multimodal_assets "$staging"
# GUI if available
@ -593,7 +649,7 @@ build_rpm() {
-a "$RPM_ARCH" \
--description "HomeAgent ${variant^} package" \
--url "https://github.com/trueagent/HomeAgent" \
--license "Proprietary" \
--license "AGPL-3.0-only" \
-C "$staging" \
-p "$rpm_dir/$pkg_name" \
. 2>&1

View File

@ -130,26 +130,66 @@ main ──────────────── E ────────
---
## 三、当前分支对齐2026-09-04 执行
### 7. 开发者文档的发布归属(以 rel 分支的形态为准
**规则:面向使用者的开发者文档,先在对应的 `release/vX.Y.x` 上修正成「这一版的实际行为」,
再 cherry-pick 合入 `main`。**(文档属 §二.3 所列的发布分支允许事项之一)
为什么不能直接改 main
- `main` 的语义是**下一个未发布版本**(§二.1)。在那儿写的文档要么描述尚未发布的行为,
要么与当前 rel 的实际行为**相反**,而文档的读者(包括模型自身)会把它当事实。
- `assets/docs/**` 会**随发行包分发并在 WebUI 里被阅读**——它服务的是“这一版”,不是“下一版”。
- 版本号、工具名、机制的有无都是**随版变动的**:同一个文件在两个分支上就应该是两种口径。
做法:
```bash
git switch release/v1.2.x
# 按这一版口径修改版本号、当前工具名hmapdev、已移除机制不再写成现行
# ... 编辑 assets/docs/**、README{,_EN}.md、docs/zh/** ...
git commit -m "docs: 按 v1.2.x 口径修正 …"
git switch main && git cherry-pick <sha> # 遵守 §三:只 pick不 merge
```
`main` 上若需要描述“下一版才有的行为”,必须显式标注(如「(下一版)」或附版本号),
不得让读者以为它已发布。
**反例(本仓真实踩过,均为“文档当成事实后反向误导”)**
| 现象 | 后果 |
|---|---|
| 人格卡写死 `v0.9.0C ABI v2` | 内核接口/日志报 1.2.0agent 却向用户自述旧版本(且该机制 v1.0.0 已删除) |
| 架构文档在 1.2.0 后仍把“描述式索引 + 引用计数 GC”写成现行机制 | 读者按已删除的设计理解现行行为 |
| README 停在 v1.1.1 并描述已被删除的机制 | 同上 |
配套硬约束:**任何“模型或用户会当作事实”的文本,都不得写死版本号**——
要么用 `meta.Version` 插值,要么要求读运行时快照,并用测试钉住
(如 `TestDefaultPersonaPromptHasNoVersionLiterals`)。
---
## 三、当前分支对齐2026-09-12 更新)
### 主仓TrueAgent
| 分支 | 状态 | 处理 |
|---|---|---|
| `main` | 含全部 hotfix逐个 cherry-pick`meta.Version` = 下一个未发布中版本(现为 `1.2.0` | ✅ 保持 |
| `release/v1.0.x` | 承载 v1.0.0 / v1.0.1 / v1.0.3 全部 tag | ✅ **由 `release/v1.0.1` 重命名而来**2026-09-04 |
| `release/v1.0.0` | `9b92a04`,已被 1.0.x 线完全包含(`merge-base --is-ancestor` 验证通过) | 🗑️ **已删除**(本地 + 远端tag `v1.0.0` 保留全部历史 |
| `release/v1.0.1` | 旧 patch 号命名 | 🗑️ **已重命名为 `release/v1.0.x`**(远端旧名删除) |
| `feature/memory-media` | 记忆系统媒体(多模态)支持,进行中 | ⏳ 完成后合回 main 并删除 |
| `feature/plugin-proc-migration` | 已合入 main`525aa1f` | ⏳ 待删(规范要求合回后删除) |
| `release/v1.1.x` | 承载 v1.1.0 / v1.1.0-beta.1 / v1.1.1 全部 tag | ✅ 1.1 线的唯一发布分支 |
| `main` | 含全部回流修复;`meta.Version` = 下一个未发布中版本(现为 `1.3.0` | ✅ 保持 |
| `release/v1.2.x` | **本条发布线**`meta.Version` = `1.2.0`vendored SDK 定版 `1.2.0`已载入两个发布前修复GUI 输出目录、知识库同名覆盖) | 🆕 2026-09-12 从 main 切出;**尚无 tag** |
| `release/v1.1.x` | 承载 `v1.1.0-beta.1` / `v1.1.0` / `v1.1.1` | 📦 已退役§2.6:下个中版本发布即退役),保留供追溯 |
| `release/v1.0.x` | 承载 1.0.x 全部 tag | 📦 保留 |
| `feature/multimodal-embedding` | 已合入 main`eb4762a`43 提交,`--no-ff` | ⏳ 待删(删远端分支需用户确认,§执行守则 3 |
> `feature/memory-media`、`feature/plugin-proc-migration` 均已从远端删除(旧表里的待删项已处理)。
### SDK 仓homeagent-sdk
| 分支 | 状态 | 处理 |
|---|---|---|
| `main` | `meta.Version` = 下一个未发布中版本(现为 `1.2.0` | ✅ 保持 |
| `release/v1.1.x` | `meta.Version` = `1.1.0`,承载 tag `v1.1.0` | ✅ 与核心 `release/v1.1.x` 对应 |
| `main` | `meta.Version` = 下一个未发布中版本(现为 **`1.2.0`**——SDK **不跟 beta 发版**(§七.21.2.0 要等核心的**正式** tag 才定版(§七.3),在那之前路牌不得越过它。此阶段与核心 main`1.3.0`**故意不对称**,详见 §七.4 | ✅ 保持 |
| `release/v1.1.x` | `meta.Version` = `1.1.0`,承载 tag `v1.1.0` | ✅ 与核心对应 |
| `release/v1.2.x` | **尚未创建** | ⏳ 随核心**正式** tag 一起建(§七.3:分支上把版本定为 `1.2.0` 再打 `v1.2.0`beta 阶段不发 SDK |
| `release/v1.0.0` | 旧 patch 号命名形态,内容已被 main 完全包含 | 📦 保留(供追溯 1.0 线构建) |
### 1.0.x 发布线 tag 历史
@ -174,6 +214,18 @@ main ──────────────── E ────────
> 而 semver 预发布语义里 `1.1.0-beta.1 < 1.1.0`。这是「一条发布分支 + tag 区分通道」的
> 已知代价beta 是为验证**打包链路**而补打的,不代表源码更旧。发布说明里已注明。
### 1.2.x 发布线 tag 历史
| tag | 提交 | 通道 | SDK | 说明 |
|---|---|---|---|---|
| `v1.2.0-beta.1` | `215804c` | beta | 不发 | 统一多模态向量空间 + 媒体升为图记忆一等节点 + 数据面全量迁到共享内存RPC 协议 **2**,与 1.x 不兼容)。按 §七.2beta 不伴随 SDK 发版 |
| (正式 tag 待打) | — | — | — | 试运行 beta 无回退问题后打 `v1.2.0`,并同步 SDK 仓 `release/v1.2.x` + `v1.2.0` |
> 1.2.x 与存量插件**不兼容**RPC 协议升到 2fd3 布局改变),存量外部插件必须用
> 新版 plugindev 重编为 `plugin.bin`——**不支持滚动升级**,内核与插件须同批重建、同批安装。
> 按 §2.4,跳级直发正式版需在发布说明里列明「单点修复 / 反向验证 / 全类审计」三项;
> 本次改动面大(统一多模态向量空间 + 协议 2 + 数据面全量迁移),不满足跳级条件。
---
## 四、现网部署与版本对应(运维纪律)
@ -300,3 +352,15 @@ git branch -d release/v1.0.x # tag 已保存历史,
两仓的 `main` 都遵守 §2.1`meta.Version` 是**下一个未发布中版本**。
所以在 1.1.x 线发布期间,两仓 main 上的值都是 `1.2.0`——它标记「main 正在积攒 1.2 的东西」,
而不是「1.2.0 已经存在」。已发布的版本号一律看对应 `release/vX.Y.x` 分支与 tag。
**但两仓「同步推进」是有条件的**(这一点曾导致误判,现补写清楚):
推进的前提是**该中版本已经正式发布过**。具体到当前:
- 核心:切出 `release/v1.2.x` 后1.2.0 就归发布线所有main 立即推进到 `1.3.0`
**即使 1.2.0 目前只有 beta tag**beta 不上现网,但发布线已占住这个号)。
- SDK因为 §七.2 **beta 不发 SDK**SDK 1.2.0 要等核心的**正式** tag 才定版、
建 `release/v1.2.x`、打 `v1.2.0`(§七.3。在那之前SDK 的「下一个未发布中版本」
仍然是 `1.2.0`,其 main 不得越过它。
→ 因此在这一阶段,**核心 main = `1.3.0` 而 SDK main = `1.2.0` 是正确的**
不是遗漏同步。(曾按本节的例子把 SDK main 也推到 1.3.0,等于宣称 SDK 1.2.0 已发布。)

View File

@ -2,7 +2,7 @@
> 状态:**完成 v3**2026-09-06——v2 的迁移已上生产(内核 v1.0.0v3 记录 v1.1.1 的公开接口**扩展**。
> 目的:钉死「暴露给外部插件的接口不变」这一约束的**合同面**——迁移前、迁移后外部插件看到/调用的 SDK 接口完全一致;
> 所有改造落在**核心homed 侧)+ 工具链plugindev**,外部插件业务代码零改动,只需用新 plugindev 重编。
> 所有改造落在**核心homed 侧)+ 工具链(hmapdev当时名为 plugindev**,外部插件业务代码零改动,只需用新工具链重编。
>
> **结果(已验证)**`git diff third_party/homeagent-sdk/sdk/` 全程为空17 个 `example/*/plugin.go` 逐字节未改
> `git status example/` 无输出);生产 17 插件全部经子进程通道运行。
@ -11,7 +11,7 @@
> 它要保的是「换运行模型不动业务代码」。迁移完成后SDK 需要能随功能演进而扩展,
> 否则多模态这类能力永远到不了插件手上。解除的边界见 §九:**只增不减,签名不改**。
>
> 维护规则:每次改动公开 SDK 接口面 `third_party/homeagent-sdk/sdk/` 或模板 `tools/plugindev/templates/` 后,
> 维护规则:每次改动公开 SDK 接口面 `third_party/homeagent-sdk/sdk/` 或模板 `tools/hmapdev/templates/` 后,
> 必须同步更新本矩阵。
>
> 权威编号plan.md 第 11 节11.1~11.9)。本文档只做接口面盘点,不做实现。
@ -21,9 +21,9 @@
## 一、迁移的形状(一句话)
```
今天: 外部插件 = example/*/plugin.go纯 Go ──plugindev c-shared──> plugin.so
今天: 外部插件 = example/*/plugin.go纯 Go ──hmapdev c-shared──> plugin.so
homed ──dlopen──> plugin.soC ABI bridge51 个整数 method id
之后: 外部插件 = example/*/plugin.go纯 Go一行不改 ──plugindev go build──> plugin.bin
之后: 外部插件 = example/*/plugin.go纯 Go一行不改 ──hmapdev go build──> plugin.bin
homed ──spawn──> plugin.binstdio JSON-RPC + shm + eventfd
```
@ -33,8 +33,8 @@
|---|---|---|
| 公开 SDK `third_party/homeagent-sdk/sdk/*.go` | ❌ 纯 Go | **不动**(接口面 = 合同) |
| 外部插件业务代码 `example/*/plugin.go` | ❌ 纯 Go只 import 公开 SDK | **不动**(只重编) |
| bridge 模板 `tools/plugindev/templates.go``tmplLinuxBridge`/`tmplBridge` | ✅ cgo | **删除/替换**为 `tmplProcMain` |
| `plugindev` 构建命令 | c-shared | 改普通 `go build` |
| bridge 模板 `tools/hmapdev/templates.go``tmplLinuxBridge`/`tmplBridge` | ✅ cgo | **删除/替换**为 `tmplProcMain` |
| `hmapdev` 构建命令 | c-shared | 改普通 `go build` |
| homed `internal/plugin/cabi/`1096 行) | cgo | 删(已归入 plan 迁移收尾 5.2 |
| homed `internal/plugin/registry.go` 加载分派 | — | 改:按 `entry` 分派 `.so`/`.bin` |
@ -300,7 +300,7 @@ C 结构体不好传函数指针(那是运气,任何人给 dispatch 加个 c
## 七、接口冻结检查点(全部已通过)
1.**阶段 2子进程通道原型**`plugindev` 重编 weather → `plugin.bin` → 端到端跑通。
1.**阶段 2子进程通道原型**`hmapdev` 重编 weather → `plugin.bin` → 端到端跑通。
验收weather 业务代码逐字节未改(`git status example/` 无输出)。
2.**阶段 3共享内存**:子进程并发改写 StageContext 丢失率 = 0%
`TestPlugin_FiveProcessesConcurrentAppendNoLostUpdate`
@ -349,7 +349,7 @@ tool output_send__qq result: 已通过 [qq] 通道发送: map[status:sent]
### 3. 生成模板必须同步接线,否则是**全体外部插件编译失败**
公开接口加方法时,`tools/plugindev/templates/proc_main.go.tmpl` 里的 `procIO` /
公开接口加方法时,`tools/hmapdev/templates/proc_main.go.tmpl` 里的 `procIO` /
`procDocMemory` 若不实现新方法,就不满足接口——**每个外部插件都编不过**,是硬失败
不是软降级。v1.1.1 这一层是被 `go test` 抓出来的(`internal/plugin/proc` 的两个
E2E 用例编译失败),不是靠人工检查发现的。
@ -366,9 +366,48 @@ E2E 用例编译失败),不是靠人工检查发现的。
|---|---|---|
| 存量插件源码零改动 | `cd example/<n> && go vet ./...`17 个) | ✅ 17/17 通过 |
| 旧产物仍能建链 | 用 SDK 0.9.2 编的 `plugin.bin``TestRealPlugin_*` | ✅ 4/4 通过(握手校验 `ProtocolVersion=1`,不是 SDK 版本) |
| 模板已接线 | `cd tools/plugindev && go test ./...` | ✅ `TestProcTemplate_CoversAllCoreMethods` 含新 method |
| 模板已接线 | `cd tools/hmapdev && go test ./...` | ✅ `TestProcTemplate_CoversAllCoreMethods` 含新 method |
| 并发安全 | `go test ./sdk/ -race -count=5` | ✅ 零 DATA RACE13 例压测) |
### v1.2.x 的接口扩展2026-09-12
1.2.0 把「记不记入记忆 / 要不要据此裁剪上下文」从**只有工具与通道能声明**,扩到**注入侧也能声明**
| 新增 | 方向 | 说明 |
|---|---|---|
| `InjectOptions{NoMemory, ContextPolicy, CleanerName}` | 新增类型 | 单次注入的行为声明 |
| `ContextPolicyNone` / `ContextPolicyPrune` + `ValidContextPolicy` | 新增常量/函数 | 取值只有 `""` / `none` / `prune``prune` 必须显式声明 |
| 六个 `*Opts` 变体Text / InterruptText / InputSync / InputMedia / InputMediaSync / InterruptMedia | 插件调用、内核实现 | 旧的三参数方法保留为**零值糖**,与 `InjectOptions{}` 逐键等价 |
| `ChannelDef.ContextPolicy` + `ChannelDef` 的 JSON tag | 结构体字段 | 通道也可声明裁剪;补 tag 是因为通道定义要跨进程传给内核,而 `Cleaner` 是函数必须忽略——无 tag 时新增字段会被**静默丢掉** |
签名层面零变更(六个方法全是新增),满足第 1、2 条。
**但「接口纯追加」不等于「无需重编」**1.2.0 同时把插件运行协议升到 2
fd3 布局改变,不支持滚动升级),`ProtocolVersion` 不匹配会在握手时被明确拒绝
并提示用配套 plugindev 重编。两件事必须分开说,否则会被误读成「既然纯追加就还能用旧产物」。
#### 这次扩展自己抓出来的两处漂移(都是本节第 3 条要防的那类)
1. **模板接线守卫红了**`TestProcTemplate_CoversAllCoreMethods` 要求模板出现内核提供的
每一个 method id而注入标志位落地后模板不再发 `io.injectTextNoMem`(旧模板发它,
现在走 `io.injectText` + `NoMemory` 标志位)。内核保留该 id 是**刻意的向后兼容面**
(用那时模板编出的二进制仍在外面),不是漏接线——所以改的是判据:把它移入显式的
`deprecated` 表,并加**反向保护**(条目一旦重新出现在模板里就报错,避免这张表
退化成「永久豁免」的垃圾抽屉)。
2. **mocksdk 缺一个方法**:拿公共 SDK `IOInjector` 的 14 个方法名与 mock 的方法集
**机械求差**,差集恰好是旧的三参数 `InjectInputSync`——通道类插件qq / a2a完成
「入站 → agent 处理 → 回复取回」闭环要调的那个。`git log -S` 证实它**从来就缺**
不是本次引入;补齐后差集为空。(上次漂的是 `Triple.Predicate` vs `Relation`,同一类问题。)
#### 验证1.2.0,本机实测)
| 检查 | 命令 | 结果 |
|---|---|---|
| 存量插件源码零改动 | 逐个 `cd example/<n> && go vet ./...` | ✅ 17/17 通过(`luademo` 是 Lua、无 `go.mod`,跳过) |
| 模板已接线 | `cd tools/plugindev && go test ./...` | ✅ 全绿(修复前为红;反向保护另用「把 id 塞回模板」验证过会报错) |
| 并发安全 | `go test -race -count=5 ./sdk/` | ✅ ok |
| mocksdk 未漂移 | 方法集求差14 个方法) | ✅ 差集为空 |
### 为何媒体块走 JSON 而不是共享段二进制通道
`SetToolBlocks` 的原设计是「二进制落 arenaSlice 描述符回传」。实际落地时改走 JSON
@ -387,5 +426,5 @@ data URL 本身已是 base64 文本,包进二进制传输省不了空间,还
- `internal/plugin/proc/protocol.go` — 合同面 B 的代码实现(`Method*` 常量,取代已删的 bridge 模板)
- `internal/plugin/proc/shm.go` — 合同面 C 的代码实现(共享段布局与 18 字段枚举)
- `internal/plugin/proc/capability.go` — 权限梯度capability 组 + `withheldCapabilities`
- `third_party/homeagent-sdk/tools/plugindev/templates/` — 子进程运行时模板(三文件)
- `third_party/homeagent-sdk/tools/hmapdev/templates/` — 子进程运行时模板(三文件)
- `docs/zh/experiments/plugin-arch/` — 18 项可行性实验 + `19-migration-verify/` 迁移执行期工具

View File

@ -57,9 +57,13 @@ type Agent struct {
// 由记忆系统本身决定。为 nil 时全部媒体接线静默跳过。
mediaStore *media.Store
// 人格设定
// 人格设定(内容来自启动时载入的人格文件/配置项)
personality *agentPkg.Personality
// 人格落库面:首启门禁与 persona_set 工具使用(见 persona.go
// 为 nil 时门禁与工具都静默关闭(例如单测里不接配置的场景)。
personaStore PersonaStore
// 插件注册表(用于 plgreload
pluginReg *plugin.Registry
pluginDir string
@ -150,6 +154,12 @@ type Agent struct {
// 也可以是外部 API 客户端;两者共享同一套 L0/L2/L3 向量缓存与检索基础设施。
multimodalSpace vector.MultimodalEmbedder
// embeddingProvider 是配置里指定的统一向量空间 provider 名;
// embeddingError 是打开/适配失败的原因(成功时为空)。
// 二者只用于状态报告:区分「没配」「配了但打不开」「已启用」。
embeddingProvider string
embeddingError string
// fusionCfg 控制文本路与视觉路的跨模态融合权重,可按模型实测结果配置。
fusionCfg CrossModalFusionConfig
@ -175,14 +185,19 @@ type AgentConfig struct {
Indexer *memory.Indexer
Tracker *tracker.Tracker
DocStore *document.Store
Knowledge *knowledge.Store
SocialStore *social.SocialStore
TextMemory *text.Memory
MediaStore *media.Store
MultimodalSpace vector.MultimodalEmbedder
DocStore *document.Store
Knowledge *knowledge.Store
SocialStore *social.SocialStore
TextMemory *text.Memory
MediaStore *media.Store
MultimodalSpace vector.MultimodalEmbedder
// EmbeddingProvider / EmbeddingError 是向量空间的配置身份与打开失败原因,
// 供 healthcheck_kernel 状态报告区分「未配置 / 打开失败 / 已启用」。
EmbeddingProvider string
EmbeddingError string
FusionCfg CrossModalFusionConfig // 跨模态融合权重;零值用默认
Personality *agentPkg.Personality
PersonaStore PersonaStore // 人格设定的读写面(首启门禁 + persona_set 工具)
PluginReg *plugin.Registry
PluginDir string
DistillInterval time.Duration
@ -251,45 +266,48 @@ func New(cfg AgentConfig) *Agent {
}
return &Agent{
id: cfg.ID,
startTime: time.Now(),
provider: cfg.Provider,
providerManager: cfg.ProviderManager,
io: cfg.IO,
memory: cfg.Memory,
indexer: cfg.Indexer,
tracker: cfg.Tracker,
context: rc,
systemPrompt: cfg.SystemPrompt,
ctx: ctx,
cancel: cancel,
docStore: cfg.DocStore,
knowledge: cfg.Knowledge,
social: cfg.SocialStore,
textMem: cfg.TextMemory,
mediaStore: cfg.MediaStore,
personality: cfg.Personality,
pluginReg: cfg.PluginReg,
pluginDir: cfg.PluginDir,
distillInterval: cfg.DistillInterval,
archiveInterval: cfg.ArchiveInterval,
reviewInterval: cfg.ReviewInterval,
mergeInterval: cfg.MergeInterval,
maxContextSize: cfg.MaxContextSize,
stageHost: cfg.StageHost,
skillIndex: cfg.SkillIndexProvider,
eventBus: cfg.EventBus,
selfInputCh: make(chan selfInputMsg, 64),
childTasks: make(map[string]*childTaskState),
interceptCh: make(chan *agentIO.InputEvent, 64),
pluginHealth: newPluginHealthTracker(),
thinkingEnabled: cfg.ThinkingEnabled,
inputCfg: cfg.InputProcessing,
embedder: embedder,
multimodalSpace: cfg.MultimodalSpace,
fusionCfg: cfg.FusionCfg,
noMergeMarkers: make(map[string]int),
lastInput: make(map[string]time.Time),
id: cfg.ID,
startTime: time.Now(),
provider: cfg.Provider,
providerManager: cfg.ProviderManager,
io: cfg.IO,
memory: cfg.Memory,
indexer: cfg.Indexer,
tracker: cfg.Tracker,
context: rc,
systemPrompt: cfg.SystemPrompt,
ctx: ctx,
cancel: cancel,
docStore: cfg.DocStore,
knowledge: cfg.Knowledge,
social: cfg.SocialStore,
textMem: cfg.TextMemory,
mediaStore: cfg.MediaStore,
personality: cfg.Personality,
personaStore: cfg.PersonaStore,
pluginReg: cfg.PluginReg,
pluginDir: cfg.PluginDir,
distillInterval: cfg.DistillInterval,
archiveInterval: cfg.ArchiveInterval,
reviewInterval: cfg.ReviewInterval,
mergeInterval: cfg.MergeInterval,
maxContextSize: cfg.MaxContextSize,
stageHost: cfg.StageHost,
skillIndex: cfg.SkillIndexProvider,
eventBus: cfg.EventBus,
selfInputCh: make(chan selfInputMsg, 64),
childTasks: make(map[string]*childTaskState),
interceptCh: make(chan *agentIO.InputEvent, 64),
pluginHealth: newPluginHealthTracker(),
thinkingEnabled: cfg.ThinkingEnabled,
inputCfg: cfg.InputProcessing,
embedder: embedder,
multimodalSpace: cfg.MultimodalSpace,
embeddingProvider: cfg.EmbeddingProvider,
embeddingError: cfg.EmbeddingError,
fusionCfg: cfg.FusionCfg,
noMergeMarkers: make(map[string]int),
lastInput: make(map[string]time.Time),
}
}

View File

@ -0,0 +1,54 @@
package core
import (
"fmt"
"strings"
agentAPI "gitcode.com/JianFeeeee/HomeAgent/internal/agent/api"
)
// PersonaStore 是人格设定的读写面。
//
// 首启门禁buildSystemPrompt与 persona_set 工具都通过它工作,实现在 cmd/homed
// 读写配置项 core.agent.personal_prompt 与一次性标记 core.internal.persona_initialized
// (落库逻辑与 WebUI 向导共用 internal/config 的实现)。
//
// 为什么放在内核而不是某个通道插件:人格是**任何通道都要问一次**的事。
// 系统提示词每轮重建门禁放在这里WebUI / QQ / CLI / ACP / 邮件等全部通道自动覆盖。
type PersonaStore interface {
// PersonaInitialized 报告人格是否已确认(向导或工具已问过)。
PersonaInitialized() bool
// SetPersona 落库人格并打一次性标记,返回是否需要重启才生效。
SetPersona(mode, content string) (restartRequired bool, err error)
}
// executePersonaTool 落地首启人格设定。
//
// 成功即打一次性标记 → 之后 buildSystemPrompt 不再要求模型询问人格。
// custom 模式返回「需重启生效」:人格在 homed 启动时载入。
func (a *Agent) executePersonaTool(tc agentAPI.ToolCall) string {
if a.personaStore == nil {
return "人格设定不可用:内核未接入配置"
}
mode, _ := tc.Arguments["mode"].(string)
content, _ := tc.Arguments["content"].(string)
mode = strings.TrimSpace(mode)
restart, err := a.personaStore.SetPersona(mode, content)
if err != nil {
return fmt.Sprintf("人格设定失败:%v", err)
}
switch mode {
case "custom":
msg := "已保存自定义人格"
if restart {
msg += "**重启 homed 后生效**(人格在启动时载入)"
}
return msg
case "default":
return "已确认使用默认人格"
case "later":
return "已记为「以后再说」,继续使用默认人格"
default:
return "已保存人格设定"
}
}

View File

@ -0,0 +1,112 @@
package core
import (
"strings"
"testing"
agentAPI "gitcode.com/JianFeeeee/HomeAgent/internal/agent/api"
agentIO "gitcode.com/JianFeeeee/HomeAgent/internal/agent/io"
)
// newTestAgent 造一个最小可用的 AgentbuildToolDefs 要求 io 非 nil
func newTestAgent(st PersonaStore) *Agent {
return &Agent{io: agentIO.NewIOManager(), personaStore: st}
}
// fakePersonaStore 记录调用并可控地报告「是否已确认」。
type fakePersonaStore struct {
initialized bool
mode string
content string
calls int
}
func (f *fakePersonaStore) PersonaInitialized() bool { return f.initialized }
func (f *fakePersonaStore) SetPersona(mode, content string) (bool, error) {
f.calls++
f.mode, f.content = mode, content
f.initialized = true
return mode == "custom", nil
}
// 首启门禁:人格未确认时,**任何通道**的系统提示词都必须带上「去问用户」的指令;
// 确认后必须消失(否则会每轮反复追问)。
func TestPersonaOnboardingGateInSystemPrompt(t *testing.T) {
st := &fakePersonaStore{}
a := newTestAgent(st)
p := a.buildSystemPrompt("", "你好")
if !strings.Contains(p, "首启人格设定") || !strings.Contains(p, "persona_set") {
t.Fatalf("未确认人格时提示词应要求模型询问并调用 persona_set实际缺少该段")
}
// 模型落地后(标记置位)不再出现
if out := a.executePersonaTool(agentAPI.ToolCall{Name: "persona_set",
Arguments: map[string]interface{}{"mode": "default"}}); !strings.Contains(out, "默认人格") {
t.Fatalf("persona_set(default) 回执不对: %s", out)
}
if !st.initialized {
t.Fatal("落库后应置位标记")
}
if p2 := a.buildSystemPrompt("", "你好"); strings.Contains(p2, "首启人格设定") {
t.Fatal("人格已确认后不应再要求询问")
}
// 未接入配置personaStore 为 nil门禁与工具都必须静默关闭
b := newTestAgent(nil)
if pb := b.buildSystemPrompt("", "你好"); strings.Contains(pb, "首启人格设定") {
t.Fatal("未接入配置时不应出现首启门禁")
}
if out := b.executePersonaTool(agentAPI.ToolCall{Name: "persona_set"}); !strings.Contains(out, "不可用") {
t.Fatalf("未接入配置时工具应回明确错误,实际: %s", out)
}
}
// persona_set 的三选一语义与回执。
func TestPersonaSetToolModes(t *testing.T) {
cases := []struct {
mode, content, want string
}{
{"custom", "你是测试人格", "重启"},
{"default", "", "默认人格"},
{"later", "", "以后再说"},
}
for _, c := range cases {
st := &fakePersonaStore{}
a := newTestAgent(st)
out := a.executePersonaTool(agentAPI.ToolCall{Name: "persona_set",
Arguments: map[string]interface{}{"mode": c.mode, "content": c.content}})
if !strings.Contains(out, c.want) {
t.Errorf("mode=%s 回执应含 %q实际: %s", c.mode, c.want, out)
}
if st.calls != 1 || st.mode != c.mode || st.content != c.content {
t.Errorf("mode=%s 落库参数不对: calls=%d mode=%s content=%q", c.mode, st.calls, st.mode, st.content)
}
}
}
// 工具 schema 必须在 catalog 里出现(模型才可能调用)。
func TestPersonaSetToolDefPresent(t *testing.T) {
a := newTestAgent(&fakePersonaStore{})
found := false
for _, td := range a.buildToolDefs() {
if m, ok := td.(map[string]interface{}); ok {
if fn, ok := m["function"].(map[string]interface{}); ok && fn["name"] == "persona_set" {
found = true
}
}
}
if !found {
t.Fatal("buildToolDefs 未包含 persona_set")
}
// 未接入配置时不应暴露该工具
b := newTestAgent(nil)
for _, td := range b.buildToolDefs() {
if m, ok := td.(map[string]interface{}); ok {
if fn, ok := m["function"].(map[string]interface{}); ok && fn["name"] == "persona_set" {
t.Fatal("未接入配置时不应暴露 persona_set")
}
}
}
}

View File

@ -73,6 +73,8 @@ func collectKernelStatus(
BuildTime: meta.BuildTime,
SDKCompatible: meta.SDKCompatibleVersion,
KernelName: meta.KernelName,
// AGPL-3.0 §13状态页向网络使用者展示取得源码的入口。
SourceURL: meta.SourceURL,
},
Runtime: RuntimeStatus{
Goroutines: runtime.NumGoroutine(),
@ -196,6 +198,14 @@ func (a *Agent) GetKernelStatus() *KernelStatus {
trk = a.tracker
}
// 注意knowledge 在 collectKernelStatus 里是**接口**参数,
// 而 (*knowledge.Store)(nil) 塞进接口后 `ks != nil` 仍为真 → 调 List() 直接 panic。
// 所以这里必须先判具体指针再进行接口赋值healthcheck_kernel 会走到这条路径)。
var knowledgeLister interface{ List() []string }
if a.knowledge != nil {
knowledgeLister = a.knowledge
}
ks := collectKernelStatus(
a.startTime,
string(a.id),
@ -205,15 +215,43 @@ func (a *Agent) GetKernelStatus() *KernelStatus {
a.io,
a.pluginReg,
a.memory,
a.knowledge,
knowledgeLister,
a.docStore,
textMem,
socialStore,
trk,
)
ks.ONNX = a.onnxStatus()
return ks
}
// onnxStatus 汇总统一多模态向量空间ONNX 模型)的启用状态。
//
// 判据是 Loaded()provider 真正打开且元数据合法),**不是**「配置里写了 provider」——
// 后者在模型缺失 / 运行时缺失时也为真,拿它当判据就是假绿。
func (a *Agent) onnxStatus() sdk.ONNXStatus {
st := sdk.ONNXStatus{Provider: a.embeddingProvider}
if a.multimodalSpace != nil && a.multimodalSpace.Loaded() {
st.Enabled = true
st.Dim = a.multimodalSpace.Dim()
st.Fingerprint = a.multimodalSpace.Fingerprint()
// 模态是可选能力:只有底层 provider 报出来时才带出。
if mr, ok := a.multimodalSpace.(interface{ Modalities() []string }); ok {
st.Modalities = mr.Modalities()
}
return st
}
switch {
case a.embeddingError != "":
st.Reason = "打开失败: " + a.embeddingError
case a.embeddingProvider == "":
st.Reason = "未配置统一向量空间 provider走词嵌入/TF-IDF 回退路径)"
default:
st.Reason = "provider 未加载"
}
return st
}
var _ StatusProvider = (*Agent)(nil)
var _ sdk.StatusAPI = (*Agent)(nil)

View File

@ -0,0 +1,103 @@
package core
import (
"strings"
"testing"
"time"
agentIO "gitcode.com/JianFeeeee/HomeAgent/internal/agent/io"
"gitcode.com/JianFeeeee/HomeAgent/internal/knowledge"
)
// statusSpace 是带模态元数据的假统一空间ProviderAdapter 的 Modalities() 形状)。
type statusSpace struct{ fakeSpace }
func (statusSpace) Modalities() []string { return []string{"text", "image"} }
// statusSpaceUnloaded 模拟「provider 建了但没加载成功」。
type statusSpaceUnloaded struct{ fakeSpace }
func (statusSpaceUnloaded) Loaded() bool { return false }
// healthcheck_kernel 必须能回答两件事:内核版本号、以及**是否真的启用了 ONNX 模型**。
//
// 判据要点:只有 provider 真正 Loaded() 才算启用 ——「配置里写了 provider」不算
// 否则模型缺失/运行时缺失时会报成已启用(假绿)。
func TestKernelStatusReportsVersionAndONNX(t *testing.T) {
t.Run("已启用:带出 provider/维度/指纹/模态", func(t *testing.T) {
a := &Agent{
io: agentIO.NewIOManager(),
multimodalSpace: statusSpace{},
embeddingProvider: "chineseclip",
}
st := a.GetKernelStatus()
if !st.ONNX.Enabled {
t.Fatal("Loaded() 为真时 onnx.enabled 必须为真")
}
if st.ONNX.Provider != "chineseclip" || st.ONNX.Dim != 2 || st.ONNX.Fingerprint != "fake-space" {
t.Fatalf("onnx 身份字段不对: %+v", st.ONNX)
}
if len(st.ONNX.Modalities) != 2 || st.ONNX.Reason != "" {
t.Fatalf("模态/原因不对: %+v", st.ONNX)
}
// 内核版本号必须随状态一起报:人格卡要求「版本以运行时快照为准」靠的就是这一项
if st.Build.Version == "" || st.Build.KernelName == "" {
t.Fatalf("build 段缺少版本/内核名: %+v", st.Build)
}
})
t.Run("打开失败enabled=false 且给出具体原因", func(t *testing.T) {
a := &Agent{
io: agentIO.NewIOManager(),
embeddingProvider: "chineseclip",
embeddingError: `embedding: open provider "chineseclip": model dir missing`,
}
st := a.GetKernelStatus()
if st.ONNX.Enabled {
t.Fatal("打开失败时不能报 enabled")
}
if st.ONNX.Provider != "chineseclip" {
t.Fatalf("未启用时仍应带出配置的 provider: %+v", st.ONNX)
}
if !strings.Contains(st.ONNX.Reason, "model dir missing") {
t.Fatalf("原因应包含具体错误: %q", st.ONNX.Reason)
}
})
t.Run("未配置:说明会走回退路径", func(t *testing.T) {
a := &Agent{io: agentIO.NewIOManager()}
st := a.GetKernelStatus()
if st.ONNX.Enabled || st.ONNX.Reason == "" {
t.Fatalf("未配置时应 enabled=false 且有原因: %+v", st.ONNX)
}
})
t.Run("provider 存在但未加载", func(t *testing.T) {
a := &Agent{
io: agentIO.NewIOManager(),
multimodalSpace: statusSpaceUnloaded{},
embeddingProvider: "qwen3vl",
}
st := a.GetKernelStatus()
if st.ONNX.Enabled {
t.Fatal("Loaded() 为假时不能报 enabled")
}
if st.ONNX.Reason == "" {
t.Fatalf("应给出未加载的原因: %+v", st.ONNX)
}
})
}
// collectKernelStatus 的 knowledge 参数是**接口**类型,而 (*knowledge.Store)(nil)
// 塞进接口后 `ks != nil` 仍为真 → 调 List() 直接 panic。
// 这条测试钉住这个成因:一旦不再 panic说明参数形状变了
// GetKernelStatus 里的 typed-nil 守卫就该同步删掉(否则它变成无意义代码)。
func TestCollectKernelStatusTypedNilKnowledgePanics(t *testing.T) {
defer func() {
if r := recover(); r == nil {
t.Fatal("typed-nil 交给接口参数却未 panic成因已变请更新守卫与本测试")
}
}()
var nilStore *knowledge.Store
_ = collectKernelStatus(time.Now(), "a", "", 0, nil, nil, nil, nil, nilStore, nil, nil, nil, nil)
}

View File

@ -45,6 +45,8 @@ func (a *Agent) executeToolCall(tc agentAPI.ToolCall) (ret string) {
func (a *Agent) executeToolCallInner(tc agentAPI.ToolCall) string {
switch {
case tc.Name == "persona_set":
return a.executePersonaTool(tc)
case strings.HasPrefix(tc.Name, "memory_"):
return a.executeMemoryTool(tc)
case strings.HasPrefix(tc.Name, "social_"):

View File

@ -89,6 +89,16 @@ func (a *Agent) buildSystemPrompt(memContext string, userInput string) string {
}
}
// 首启人格门禁(跨通道唯一闸口):人格未确认时,要求模型主动询问用户。
// 系统提示词每轮重建,因此 WebUI / QQ / CLI / ACP / 邮件等所有通道都会带上它;
// 模型调用 persona_set或用户在 WebUI 向导里选)落地后,标记置位,本段消失。
if a.personaStore != nil && !a.personaStore.PersonaInitialized() {
prompt += "\n\n【首启人格设定】你的**人格设定尚未确认**。请在本轮回复里先问用户一句:" +
"要用默认人格,还是自定义一个?拿到明确答复后**必须调用 persona_set 工具**落库:" +
"用户选默认 → mode=default自定义 → mode=custom 且把内容写进 content" +
"用户说以后再说 → mode=later。用户答复前不要假设已设置也不要反复追问同一件事。"
}
prompt += a.buildToolCatalog()
return prompt
@ -197,6 +207,24 @@ func (a *Agent) buildToolDefs() []interface{} {
}
}
if a.personaStore != nil {
tools = append(tools, map[string]interface{}{
"type": "function",
"function": map[string]interface{}{
"name": "persona_set",
"description": "【首启人格】落地用户的人格选择并记录「已经问过」。仅在用户明确答复后调用:默认用 mode=default自定义用 mode=custom 并把人格内容放进 content用户说以后再说用 mode=later。",
"parameters": map[string]interface{}{
"type": "object",
"properties": map[string]interface{}{
"mode": map[string]interface{}{"type": "string", "description": "default | custom | later"},
"content": map[string]interface{}{"type": "string", "description": "自定义人格内容mode=custom 时必填)"},
},
"required": []string{"mode"},
},
},
})
}
if a.memory != nil {
tools = append(tools, map[string]interface{}{
"type": "function",

View File

@ -4,6 +4,8 @@ import (
"fmt"
"os"
"path/filepath"
"regexp"
"strings"
)
type Personality struct {
@ -39,3 +41,25 @@ func (p *Personality) InjectPrompt() string {
}
return fmt.Sprintf("【人格设定】\n%s\n", p.Content)
}
// 会随时间腐坏的人格内容特征。现场:人格卡写死 v0.9.0 与早已删除的 C ABI v2
// 实例被问版本时自述错误v1.2.0 压测发现)。
var (
personaVersionRe = regexp.MustCompile(`\bv?\d+\.\d+\.\d+\b`)
personaStalePhrases = []string{"C ABI v2", "plugin.so", "c-shared", "描述式索引", "引用计数式"}
)
// PersonaStaleHints 返回人格文本里会腐坏的内容(空 = 干净)。
// 供启动时告警:引导改用配置项 core.agent.personal_prompt默认模板不含这些
func PersonaStaleHints(content string) []string {
var out []string
if m := personaVersionRe.FindAllString(content, -1); len(m) > 0 {
out = append(out, fmt.Sprintf("版本号字面量 %v版本应来自运行时快照", m))
}
for _, p := range personaStalePhrases {
if strings.Contains(content, p) {
out = append(out, "可能已过期的说法: "+p)
}
}
return out
}

View File

@ -0,0 +1,62 @@
package agent
import (
"os"
"path/filepath"
"strings"
"testing"
)
// PersonaStaleHints 必须能认出会腐坏的人格内容——版本号字面量与已删除机制。
func TestPersonaStaleHints(t *testing.T) {
// 现场真实文本(线上人格卡的原文)
stale := "你是 HomeAgent内核代号 HΔ-Kernel当前版本 v0.9.0)。\n当前运行的二进制是 v0.9.0C ABI v2构建于 2026-08-15。"
hints := PersonaStaleHints(stale)
if len(hints) == 0 {
t.Fatal("未识别出写死版本号与 C ABI 的人格文本")
}
joined := strings.Join(hints, " | ")
if !strings.Contains(joined, "版本号字面量") {
t.Fatalf("应报出版本号字面量,实际: %s", joined)
}
if !strings.Contains(joined, "C ABI v2") {
t.Fatalf("应报出已删除机制的残留说法,实际: %s", joined)
}
// 干净文本(配置项默认模板)不应误报
if h := PersonaStaleHints(DefaultPersonaProbeClean()); len(h) != 0 {
t.Fatalf("干净人格被误报: %v", h)
}
}
// DefaultPersonaProbeClean 由 config 包的默认模板等价物构成——
// 这里不复用 config 包以避免 import cycle只断言「不含版本号与旧机制」的文本不被误报。
func DefaultPersonaProbeClean() string {
return "你是 HomeAgent内核代号 HΔ-Kernel。外部插件是独立子进程经 stdio JSON-RPC 通信;" +
"被问到版本时以运行时快照为准。"
}
func TestLoadAndSavePersonality(t *testing.T) {
dir := t.TempDir()
path := filepath.Join(dir, "personal", "personal.md")
// 文件不存在时返回空(不报错、不创建)
p, err := LoadPersonality(path)
if err != nil || p == nil || p.Content != "" {
t.Fatalf("缺文件时应返回空人格,实际 %+v err=%v", p, err)
}
if err := SavePersonality(path, "人格内容"); err != nil {
t.Fatal(err)
}
if _, err := os.Stat(path); err != nil {
t.Fatalf("SavePersonality 未落盘: %v", err)
}
p, err = LoadPersonality(path)
if err != nil || p.Content != "人格内容" {
t.Fatalf("读回失败: %+v err=%v", p, err)
}
if got := p.InjectPrompt(); !strings.Contains(got, "【人格设定】") || !strings.Contains(got, "人格内容") {
t.Fatalf("InjectPrompt 形状不对: %q", got)
}
}

139
internal/config/persona.go Normal file
View File

@ -0,0 +1,139 @@
package config
import (
"fmt"
"strings"
)
// 人格设定的两个键:内容与「首启向导/工具已经问过」的一次性标记。
//
// 为什么需要标记:人格曾经只有 <dataDir>/personal/personal.md 一个来源且无人维护,
// 里面写死的旧版本号反过来让实例自述旧版本v1.2.0 压测发现)。
// 现在人格是配置项(默认模板不含任何版本号),任何通道的第一次交互问一次,之后不再打扰。
const (
// PersonaPromptKey 是人格设定内容(【人格设定】块的正文)。
PersonaPromptKey = "core.agent.personal_prompt"
// PersonaInitMarkerKey 是「已经问过/已确认」的一次性标记。
PersonaInitMarkerKey = "core.internal.persona_initialized"
)
// 三种落库方式WebUI 首启向导与内核 persona_set 工具共用。
const (
PersonaModeDefault = "default" // 使用内置默认模板
PersonaModeCustom = "custom" // 使用调用方提供的内容
PersonaModeLater = "later" // 保留当前(默认)人格,只打标记不再问
)
// PersonaKV 是人格落库所需的最小读写面GetCore/SetCore 的签名与
// 公开 SDK 的 SettingsAPI 一致因此插件侧WebUI可直接传入
// 内核直连配置注册表时用 registryKV 适配(见文件末)。
type PersonaKV interface {
GetCore(key string) (interface{}, error)
SetCore(key string, value interface{}) error
}
// PersonaInitializedKV 报告人格是否已确认(向导或工具已问过)。
func PersonaInitializedKV(kv PersonaKV) bool {
if kv == nil {
return false
}
v, err := kv.GetCore(PersonaInitMarkerKey)
if err != nil {
return false
}
s, _ := v.(string)
return strings.TrimSpace(s) != ""
}
// CurrentPersonaKV 读当前人格内容;未设置时回落到内置默认模板。
func CurrentPersonaKV(kv PersonaKV) string {
if kv == nil {
return DefaultPersonaPrompt
}
if v, err := kv.GetCore(PersonaPromptKey); err == nil {
if s, ok := v.(string); ok && strings.TrimSpace(s) != "" {
return s
}
}
return DefaultPersonaPrompt
}
// SetPersonaKV 落库人格并打一次性标记,返回 restartRequired。
//
// 生效时机:人格在 homed 启动时载入(拼成【人格设定】块进系统提示词),
// 所以**自定义内容需重启**default 与 later 都不改变当前已生效的人格,无需重启。
//
// 非法输入一律在打标记之前拒绝——否则向导会被跳过,用户再也没机会设。
func SetPersonaKV(kv PersonaKV, mode, content string) (restartRequired bool, err error) {
if kv == nil {
return false, fmt.Errorf("persona: settings unavailable")
}
switch mode {
case PersonaModeDefault:
if err := kv.SetCore(PersonaPromptKey, DefaultPersonaPrompt); err != nil {
return false, err
}
case PersonaModeCustom:
if strings.TrimSpace(content) == "" {
return false, fmt.Errorf("persona: content required for custom mode")
}
if err := kv.SetCore(PersonaPromptKey, content); err != nil {
return false, err
}
restartRequired = true
case PersonaModeLater:
// 保持当前人格(通常是默认模板),只打标记
default:
return false, fmt.Errorf("persona: unknown mode %q (want default|custom|later)", mode)
}
if err := kv.SetCore(PersonaInitMarkerKey, "1"); err != nil {
return restartRequired, err
}
return restartRequired, nil
}
// RegistryPersonaStore 把配置注册表暴露成内核的 core.PersonaStore 接口
// (结构类型:方法集匹配即可,无需 import internal/agent/core
type RegistryPersonaStore struct{ Reg *ConfigRegistry }
func (p RegistryPersonaStore) PersonaInitialized() bool { return PersonaInitialized(p.Reg) }
func (p RegistryPersonaStore) SetPersona(mode, content string) (bool, error) {
return SetPersona(p.Reg, mode, content)
}
// registryKV 把内核直连的配置注册表适配成 PersonaKV。
type registryKV struct{ reg *ConfigRegistry }
func (r registryKV) GetCore(key string) (interface{}, error) {
v, err := r.reg.Get(key)
if err != nil || v == nil {
// 未设置的键对 PersonaKV 语义等同「没有」,不当作错误
if s := r.reg.GetString(key, ""); s != "" {
return s, nil
}
return "", nil
}
return v, nil
}
func (r registryKV) SetCore(key string, value interface{}) error {
s, ok := value.(string)
if !ok {
return fmt.Errorf("persona: value must be a string")
}
return r.reg.Set(key, s)
}
// PersonaInitialized 报告人格是否已确认(内核直连注册表)。
func PersonaInitialized(reg *ConfigRegistry) bool {
return reg != nil && PersonaInitializedKV(registryKV{reg})
}
// SetPersona 落库人格并打一次性标记(内核直连注册表)。
func SetPersona(reg *ConfigRegistry, mode, content string) (bool, error) {
if reg == nil {
return false, fmt.Errorf("persona: config registry unavailable")
}
return SetPersonaKV(registryKV{reg}, mode, content)
}

View File

@ -0,0 +1,99 @@
package config
import (
"strings"
"testing"
)
// fakeKV 是 PersonaKV 的最小实现(模拟插件侧 SettingsAPI
type fakeKV struct{ m map[string]string }
func (f *fakeKV) GetCore(k string) (interface{}, error) { return f.m[k], nil }
func (f *fakeKV) SetCore(k string, v interface{}) error {
f.m[k] = v.(string)
return nil
}
// 三选一语义 + 「只问一次」标记:这是首启向导与 persona_set 工具共用的同一份实现。
func TestSetPersonaKV(t *testing.T) {
t.Run("custom 写入内容并要求重启", func(t *testing.T) {
kv := &fakeKV{m: map[string]string{}}
restart, err := SetPersonaKV(kv, PersonaModeCustom, "你是测试人格")
if err != nil || !restart {
t.Fatalf("custom 应成功且需重启: restart=%v err=%v", restart, err)
}
if kv.m[PersonaPromptKey] != "你是测试人格" || kv.m[PersonaInitMarkerKey] != "1" {
t.Fatalf("落库不对: %+v", kv.m)
}
if !PersonaInitializedKV(kv) {
t.Fatal("打过标记应报告已确认")
}
})
t.Run("default 写默认模板且无需重启", func(t *testing.T) {
kv := &fakeKV{m: map[string]string{}}
restart, err := SetPersonaKV(kv, PersonaModeDefault, "")
if err != nil || restart {
t.Fatalf("default 不应需重启: restart=%v err=%v", restart, err)
}
if kv.m[PersonaPromptKey] != DefaultPersonaPrompt {
t.Fatal("default 应写入内置默认模板")
}
})
t.Run("later 保持人格并打标记", func(t *testing.T) {
kv := &fakeKV{m: map[string]string{PersonaPromptKey: "原有人格"}}
if _, err := SetPersonaKV(kv, PersonaModeLater, ""); err != nil {
t.Fatal(err)
}
if kv.m[PersonaPromptKey] != "原有人格" {
t.Fatal("later 不应改动人格")
}
if kv.m[PersonaInitMarkerKey] != "1" {
t.Fatal("later 也必须打标记(否则每次启动都问)")
}
})
t.Run("非法输入必须拒绝且不打标记", func(t *testing.T) {
for _, c := range []struct{ mode, content string }{
{PersonaModeCustom, " "}, // 空内容
{"nope", ""}, // 未知 mode
} {
kv := &fakeKV{m: map[string]string{}}
if _, err := SetPersonaKV(kv, c.mode, c.content); err == nil {
t.Fatalf("mode=%q content=%q 应报错", c.mode, c.content)
}
if kv.m[PersonaInitMarkerKey] == "1" {
t.Fatalf("mode=%q 被拒时不得打标记(否则向导会被跳过)", c.mode)
}
}
})
t.Run("CurrentPersonaKV 未设置时回落默认", func(t *testing.T) {
kv := &fakeKV{m: map[string]string{}}
if got := CurrentPersonaKV(kv); got != DefaultPersonaPrompt {
t.Fatal("未设置应回落默认模板")
}
})
}
// 内核直连注册表的入口必须与 KV 版行为一致(同一份实现的两个薄入口)。
func TestSetPersonaRegistryEntry(t *testing.T) {
dir := t.TempDir()
reg := NewConfigRegistry(dir + "/config.db")
reg.SeedDefaults(dir)
defer reg.Close()
if PersonaInitialized(reg) {
t.Fatal("全新实例不应已确认人格")
}
if _, err := SetPersona(reg, PersonaModeCustom, "内核侧人格"); err != nil {
t.Fatal(err)
}
if !PersonaInitialized(reg) {
t.Fatal("内核侧落库后应报告已确认")
}
if got := reg.GetString(PersonaPromptKey, ""); !strings.Contains(got, "内核侧人格") {
t.Fatalf("注册表里没有人格内容: %q", got)
}
}

View File

@ -0,0 +1,48 @@
package config
import (
"path/filepath"
"regexp"
"strings"
"testing"
)
// 人格模板的契约:**不得写死版本号**。
//
// 来历线上人格卡personal/personal.md曾写死「当前版本 v0.9.0C ABI v2
// 而 C ABI 早在 v1.0.0 就被删除。结果是内核自身日志/接口都报 1.2.0
// agent 被问版本时却按人格卡自述旧版本v1.2.0 压测发现)。
// 版本应来自运行时快照,不来自任何会被发版落下的文本。
func TestDefaultPersonaPromptHasNoVersionLiterals(t *testing.T) {
re := regexp.MustCompile(`\bv?\d+\.\d+\.\d+\b`)
if m := re.FindAllString(DefaultPersonaPrompt, -1); len(m) > 0 {
t.Fatalf("默认人格模板含版本号字面量 %v —— 发版后必然腐坏,"+
"被问版本时应要求 agent 读运行时快照", m)
}
if !strings.Contains(DefaultPersonaPrompt, "运行时快照") {
t.Fatal("默认人格模板必须显式要求「版本以运行时快照为准」,否则模型会凭记忆编造版本")
}
}
// 人格配置项必须注册、默认值就是 DefaultPersonaPrompt单一事实源
// 且全新安装时会被播种进 DB。
func TestPersonaPromptRegisteredWithDefault(t *testing.T) {
dir := t.TempDir()
r := NewConfigRegistry(filepath.Join(dir, "config.db"))
r.SeedDefaults(dir)
defer r.Close()
def := r.GetDef("core.agent.personal_prompt")
if def == nil {
t.Fatal("core.agent.personal_prompt 未注册")
}
if def.Default != DefaultPersonaPrompt {
t.Fatalf("默认值与 DefaultPersonaPrompt 不一致:%q", def.Default)
}
if def.Type != "text" {
t.Fatalf("人格设定应为多行文本类型,实际 %q", def.Type)
}
if got := r.GetString("core.agent.personal_prompt", ""); got != DefaultPersonaPrompt {
t.Fatalf("播种未写入默认人格(长度 %d", len(got))
}
}

View File

@ -472,6 +472,36 @@ var defaultSources = map[string]map[string]string{
"deepseek": {"base_url": "https://api.deepseek.com", "model": "deepseek-v4-flash", "api_key": "", "thinking_enabled": "false", "adapter": "deepseek", "adapter_path": "adapters/deepseek.lua"},
}
// DefaultPersonaPrompt 是「人格设定」的默认模板,作为配置项 core.agent.personal_prompt 的默认值。
//
// 契约(由 TestDefaultPersonaPromptHasNoVersionLiterals 钉住):
// - **不得含版本号字面量**。写死的版本会随发版腐坏,反过来让实例自称旧版本
// (现场:人格卡写死 v0.9.0 与早已删除的 C ABI实例被问版本时自述错误
// 被问到版本/构建信息时,要求 agent 读运行时快照。
// - 不得把已删除的机制当作现行机制描述。
const DefaultPersonaPrompt = `你是 HomeAgent内核代号 HΔ-Kernel——一个完全独立自研的新一代 Agent 框架。
你以内核 + 插件架构驱动,实现了稳定高效、记忆不衰减的长时持续运行。
内核homed 守护进程)只负责 LLM 编排、记忆管理与知识检索,全部 IO 能力由插件承载。
外部插件是独立子进程,经 stdio JSON-RPC控制面+ 共享内存段(数据面)+ 事件环(通知面)通信;
旧式 C ABI 动态库产物早已不再加载。
**不要凭记忆断言版本号或构建日期**被问到时以运行时快照healthcheck_kernel 的内核版本字段)为准。
## 对用户的称呼
你对用户的称呼永远是“老大”,绝对禁止使用“老板”“主人”称呼用户,不论任何情况。
## 对话风格
- 用语气词(哈、嘛、呢、~、😊、🔥 等),不要太端着
- 重要的事先说结论,再展开解释
- 回复要简洁自然
## 能力边界
- 你通过插件编排所有 IOQQ/微信消息、WebUI、终端、文件、网络
- 输出不会自动路由到对话通道QQ/微信等异步通道必须调用输出门工具output_send__qq 等)才能真正送达
- 你的三层记忆Context → Document → Graph持续蒸馏归档超长运行时记忆不衰减`
func (r *ConfigRegistry) SeedDefaults(dataDir string) {
r.mu.Lock()
defer r.mu.Unlock()
@ -523,6 +553,10 @@ func (r *ConfigRegistry) seedDBValues(dataDir string) {
set := func(k, v string) { stmt.Exec(k, v) }
// 人格设定:与其它默认值同批播种(老安装不会被注入——那是刻意的)。
// 存量安装里若还有人 personality 文件,它优先于本项(见 cmd/homed/main.go
set("core.agent.personal_prompt", DefaultPersonaPrompt)
set("webui.listen_addr", ":8080")
set("core.daemon.data_dir", dataDir)
set("core.daemon.heartbeat_interval", "15s")
@ -633,6 +667,13 @@ WebUI 概览页展示你的立绘,可通过 /mascot.webp 直接访问。如输
func (r *ConfigRegistry) seedCoreDefs(dataDir string) {
reg := func(d ConfigDef) { r.defs[d.Key] = &d }
// 人格设定(人格卡的配置项化):默认模板见 DefaultPersonaPrompt。
// 高级用户仍可用 <dataDir>/personal/personal.md 覆盖它。
reg(ConfigDef{Key: "core.agent.personal_prompt", Default: DefaultPersonaPrompt, Type: "text", DisplayName: "人格设定",
Description: "人格设定块(作为【人格设定】拼在系统提示词之前)。留空则该块不注入。" +
"默认模板不含版本号:被问到版本/构建信息时,应读运行时快照而非凭记忆断言。" +
"<dataDir>/personal/personal.md 存在且非空时优先于本项。", Category: "agent"})
reg(ConfigDef{Key: "webui.listen_addr", Default: ":8080", Type: "string", DisplayName: "监听地址", Description: "WebUI HTTP 监听地址", Category: "webui"})
reg(ConfigDef{Key: "core.daemon.data_dir", Default: dataDir, Type: "string", DisplayName: "数据目录", Description: "数据存储根目录", Category: "daemon"})
reg(ConfigDef{Key: "core.daemon.heartbeat_interval", Default: "15s", Type: "duration", DisplayName: "心跳间隔", Description: "Agent 心跳检查间隔", Category: "daemon"})

View File

@ -201,6 +201,13 @@ func (s *Store) Add(name, content string) error {
}
s.items[id] = k
// 覆盖同名条目时必须先摘掉旧向量。
//
// vector.Store.Insert 是**追加**语义s.docs = append + index.Add不按 id
// 去重。少了这一步,更新一条知识会在向量索引里留下上一版的副本:条目数看起来
// 是对的,只有向量数比条目数多——而检索可能因此命中已被替换掉的旧内容。
s.vec.Remove(id)
vec := s.vectorize(name + " " + content)
s.vec.Insert(id, name+": "+content, vec, map[string]string{
"name": name, "path": path,

View File

@ -44,6 +44,51 @@ func TestAddAndSearch(t *testing.T) {
}
}
// 覆盖同名条目必须把旧向量摘掉,而不是再插一份。
//
// 这条是从一次真实的知识库更新里发现的:在线上实例更新一个已有条目后,
// knowledge_count=32 但 vector_count=33 ——多出来的那一条是上一版的副本。
// 成因是 vector.Store.Insert 为追加语义s.docs = append + index.Add不按 id 去重。
// 危害不在于多占一份内存:检索可能命中**已被替换掉的旧内容**。
func TestAddOverwriteReplacesVector(t *testing.T) {
dir, err := os.MkdirTemp("", "know_overwrite_*")
if err != nil {
t.Fatal(err)
}
defer os.RemoveAll(dir)
s := NewStore(dir)
s.Start()
defer s.Stop()
if err := s.Add("recent", "第一版内容:旧的多模态描述式索引"); err != nil {
t.Fatal(err)
}
if got := s.Stats()["vector_count"].(int); got != 1 {
t.Fatalf("首次写入后 vector_count 应为 1实为 %d", got)
}
if err := s.Add("recent", "第二版内容:媒体已成为图记忆的一等节点"); err != nil {
t.Fatal(err)
}
if n := s.Stats()["knowledge_count"].(int); n != 1 {
t.Fatalf("同名覆盖后 knowledge_count 应为 1实为 %d", n)
}
if n := s.Stats()["vector_count"].(int); n != 1 {
t.Fatalf("同名覆盖后 vector_count 应为 1多了就是旧版没被摘掉实为 %d", n)
}
// 目录里也只应有一份内容,且是新的那份
b, err := os.ReadFile(dir + "/recent/content.md")
if err != nil {
t.Fatal(err)
}
if string(b) != "第二版内容:媒体已成为图记忆的一等节点" {
t.Fatalf("content.md 未被新内容覆盖,实为 %q", string(b))
}
}
func TestList(t *testing.T) {
dir, err := os.MkdirTemp("", "know_list_*")
if err != nil {

View File

@ -135,6 +135,14 @@ func (s *Store) BuildDenseIndex(ds vector.MultimodalEmbedder) {
doc.DenseFP = ds.Fingerprint()
count++
}
if count > 0 {
// 迁移结果必须落盘。否则磁盘上的 DenseFP 永远对不上当前空间,
// 判定条件永远成立:每次启动都重算同一批文档,磁盘状态永不收敛。
// 迁移是一次性的昂贵操作(实测 200 篇约 7s所以当场写盘
// 而不是只依赖关停时的 flush——被 kill -9 也不会白算。
s.dirty = true
s.flushLocked()
}
log.Printf("[document memory] dense index built: %d new vectors", count)
}
@ -148,12 +156,17 @@ func (s *Store) denseFor(doc *Doc) []float64 {
return nil
}
fp := s.denseSpace.Fingerprint()
dim := s.denseSpace.Dim()
var parts [][]float64
if tv, err := s.denseSpace.VectorizeDense(doc.Summary + " " + doc.Content); err == nil && len(tv) > 0 {
parts = append(parts, tv)
}
for _, b := range doc.Blocks {
if len(b.Vector) > 0 && b.Fingerprint == fp {
// 只比指纹不够:指纹相同但**维度不同**的块会被 FuseVectors 按
// 「最大维度」拼成错维度向量(并覆盖掉文本向量),而结果又被
// 标上当前指纹——于是该文档在检索侧被长度守卫永久跳过,
// 且每次启动都会重算。维度不符的块一律不参与融合。
if len(b.Vector) == dim && b.Fingerprint == fp {
parts = append(parts, b.Vector)
}
}
@ -513,7 +526,10 @@ func (s *Store) loadAll() error {
return err
}
for _, e := range entries {
if !strings.HasSuffix(e.Name(), ".json") || !strings.HasPrefix(e.Name(), "doc_") {
// 只要求 .jsonInsert 接受任意 ID 并落盘为 <id>.json若这里再按
// doc_ 前缀过滤,传自定义 ID 的文档重启后会静默消失。
// 空 ID 仍会被下面的校验跳过。
if !strings.HasSuffix(e.Name(), ".json") {
continue
}
data, err := os.ReadFile(filepath.Join(s.dir, e.Name()))
@ -534,6 +550,11 @@ func (s *Store) loadAll() error {
func (s *Store) flush() {
s.mu.Lock()
defer s.mu.Unlock()
s.flushLocked()
}
// flushLocked 是 flush 的核心,调用方必须已持有 s.mu。
func (s *Store) flushLocked() {
if !s.dirty {
return
}

View File

@ -467,3 +467,188 @@ func TestContextToDocContentPreservesRawToolOutput(t *testing.T) {
t.Error("summary should not be empty")
}
}
// ———— 回归:向量迁移的落盘与维度一致性 ————
//
// 以下四条来自 v1.2.0-beta.2 的压测(报告 /var/tmp/stress/REPORT.md
// 迁移结果不落盘(每次启动白算一遍)、块指纹对但维度错时污染文档向量、
// 以及 Insert 与 loadAll 的 ID 约定不对称。
// fakeSpace 是可控的统一向量空间calls 记录被真正要求算向量的次数,
// 用来直接证明「已对齐的文档不再重算」——比读日志断言可靠。
type fakeSpace struct {
fp string
dim int
calls int
}
func (f *fakeSpace) VectorizeDense(string) ([]float64, error) {
f.calls++
v := make([]float64, f.dim)
for i := range v {
v[i] = float64(i + 1)
}
return v, nil
}
func (f *fakeSpace) EmbedImageDense([]byte, string) ([]float64, error) { return f.VectorizeDense("") }
func (f *fakeSpace) Fingerprint() string { return f.fp }
func (f *fakeSpace) Dim() int { return f.dim }
func (f *fakeSpace) Loaded() bool { return true }
func (f *fakeSpace) Close() {}
// 迁移结果必须落盘:迁移后换一个 Store 实例(模拟重启)读到的应是新空间向量,
// 且再跑一次迁移不应重算任何文档。
func TestBuildDenseIndexPersistsAcrossRestart(t *testing.T) {
dir := t.TempDir()
sp := &fakeSpace{fp: "space-NEW-8", dim: 8}
s1 := NewStore(dir, memory.TokenizeWords)
if err := s1.Start(); err != nil {
t.Fatal(err)
}
// 模拟上个向量空间留下的状态:维度与指纹都对不上
stale := make([]float64, 999)
for i := range stale {
stale[i] = 0.01
}
if err := s1.Insert(&Doc{ID: "doc_persist", Summary: "迁移", Content: "落盘",
DenseVec: stale, DenseFP: "space-OLD-999"}); err != nil {
t.Fatal(err)
}
s1.SetDenseSpace(sp)
s1.BuildDenseIndex(sp)
if got := s1.Get("doc_persist"); got == nil || len(got.DenseVec) != 8 || got.DenseFP != sp.fp {
t.Fatalf("迁移未在内存生效: %+v", got)
}
// 不调用 Stop 就另开一个实例:体现「迁移当场落盘」,不依赖关停
s2 := NewStore(dir, memory.TokenizeWords)
if err := s2.Start(); err != nil {
t.Fatal(err)
}
defer s2.Stop()
loaded := s2.Get("doc_persist")
if loaded == nil {
t.Fatal("重启后文档不见了")
}
if len(loaded.DenseVec) != 8 || loaded.DenseFP != sp.fp {
t.Fatalf("迁移结果未落盘:期望 dim=8 fp=%q实际 dim=%d fp=%q"+
"(后果:每次启动都重算同一批文档,磁盘状态永不收敛)",
sp.fp, len(loaded.DenseVec), loaded.DenseFP)
}
// 已对齐 → 一次向量计算都不该发生
sp2 := &fakeSpace{fp: sp.fp, dim: 8}
s2.SetDenseSpace(sp2)
s2.BuildDenseIndex(sp2)
if sp2.calls != 0 {
t.Fatalf("已对齐的文档被重算了 %d 次(期望 0", sp2.calls)
}
}
// 块向量维度与当前空间不符时不得参与融合:否则 512 维文本 + 2048 维块
// 会被 FuseVectors 按最大维度拼成 2048 维、并带上当前指纹,导致该文档在
// 检索侧被长度守卫永久跳过且每次启动重算。
func TestDenseForIgnoresBlockWithMismatchedDim(t *testing.T) {
dir := t.TempDir()
sp := &fakeSpace{fp: "space-NEW-8", dim: 8}
s := NewStore(dir, memory.TokenizeWords)
if err := s.Start(); err != nil {
t.Fatal(err)
}
defer s.Stop()
bad := make([]float64, 2048)
for i := range bad {
bad[i] = 0.02
}
good := make([]float64, 8)
for i := range good {
good[i] = 0.5
}
doc := &Doc{ID: "doc_bad", Summary: "坏块", Content: "文本向量应当生效",
Blocks: []memory.MemoryBlock{
{ID: "blk_bad", Vector: bad, Fingerprint: sp.fp}, // 指纹对、维度错 → 必须忽略
{ID: "blk_good", Vector: good, Fingerprint: sp.fp}, // 指纹与维度都对 → 参与融合
}}
if err := s.Insert(doc); err != nil {
t.Fatal(err)
}
s.SetDenseSpace(sp)
s.BuildDenseIndex(sp)
got := s.Get("doc_bad")
if got == nil {
t.Fatal("文档未加载")
}
if len(got.DenseVec) != 8 {
t.Fatalf("坏块污染了文档向量:期望 %d 维,实际 %d 维(指纹 %q",
8, len(got.DenseVec), got.DenseFP)
}
// 同维度的正常块仍须参与融合:不应因为这次修复而整体失效
textOnly := &fakeSpace{fp: sp.fp, dim: 8}
textVec, _ := textOnly.VectorizeDense(doc.Summary + " " + doc.Content)
if equalFloats(got.DenseVec, textVec) {
t.Fatal("同维度的媒体块没有参与融合(修复过度)")
}
}
func equalFloats(a, b []float64) bool {
if len(a) != len(b) {
return false
}
for i := range a {
if a[i] != b[i] {
return false
}
}
return true
}
// Insert 接受任意 IDloadAll 就必须把它读回来,否则自定义 ID 的文档
// 重启后静默消失。
func TestLoadAllLoadsCustomID(t *testing.T) {
dir := t.TempDir()
s1 := NewStore(dir, memory.TokenizeWords)
if err := s1.Start(); err != nil {
t.Fatal(err)
}
if err := s1.Insert(&Doc{ID: "my-notes", Summary: "自定义 ID", Content: "内容"}); err != nil {
t.Fatal(err)
}
s1.Stop()
s2 := NewStore(dir, memory.TokenizeWords)
if err := s2.Start(); err != nil {
t.Fatal(err)
}
defer s2.Stop()
if s2.Get("my-notes") == nil {
t.Fatal("自定义 ID 的文档重启后消失Insert 与 loadAll 的 ID 约定不对称)")
}
}
// Stop 必须把内存态变更写盘(关停链上没有它时 flush 形同虚设)。
func TestStopFlushesDirtyDocs(t *testing.T) {
dir := t.TempDir()
s1 := NewStore(dir, memory.TokenizeWords)
if err := s1.Start(); err != nil {
t.Fatal(err)
}
if err := s1.Insert(&Doc{ID: "doc_flush", Summary: "关停落盘", Content: "内容"}); err != nil {
t.Fatal(err)
}
// 直接改内存并置脏,模拟「只在内存里发生的变更」
s1.mu.Lock()
s1.docs["doc_flush"].Summary = "关停落盘(已改)"
s1.dirty = true
s1.mu.Unlock()
s1.Stop()
s2 := NewStore(dir, memory.TokenizeWords)
if err := s2.Start(); err != nil {
t.Fatal(err)
}
defer s2.Stop()
if got := s2.Get("doc_flush"); got == nil || got.Summary != "关停落盘(已改)" {
t.Fatalf("Stop 未落盘: %+v", got)
}
}

View File

@ -65,6 +65,18 @@ func (a *ProviderAdapter) embed(input embedding.Input) ([]float64, error) {
func (a *ProviderAdapter) Fingerprint() string { return a.info.Fingerprint }
func (a *ProviderAdapter) Dim() int { return a.info.Dimension }
// Modalities 报告该空间支持的输入模态text/image/...)。
//
// 模态是**可选能力**MultimodalEmbedder 契约里没有它,状态查询按接口断言取用,
// 所以这里既不改公开接口,也不影响其它实现(核心也不硬编码任何模型名)。
func (a *ProviderAdapter) Modalities() []string {
out := make([]string, 0, len(a.info.Modalities))
for _, m := range a.info.Modalities {
out = append(out, string(m))
}
return out
}
func (a *ProviderAdapter) Loaded() bool {
a.mu.RLock()
defer a.mu.RUnlock()

View File

@ -9,7 +9,7 @@ var (
//
// 1.0.0:外部插件从 C ABI 动态库迁到子进程 + 共享内存。
// 这是首个不再加载 `.so`/`.dll` 的版本,与 0.9.x 不兼容(存量插件必须
// 用新版 plugindev 重编),故跃到主版本号。
// 用新版 hmapdev 重编),故跃到主版本号。
// 1.1.0记忆系统支持二进制多媒体节点——CAS 媒体存储 + L0/L2/L3 贯通。
// 1.1.1:多模态贯通**插件边界**。内核实现公开 SDK 1.1.0 新增的媒体接口
// doc.insertWithMedia、io.injectMedia / injectMediaSync /
@ -24,7 +24,7 @@ var (
//
// ❗main 上此值始终是**下一个未发布中版本**,不随 patch 发布变动
//(见 docs/git-branching.md §2.1);已发布的版本号看对应的 release/vX.Y.x 与 tag。
Version = "1.2.0"
Version = "1.2.1"
// Commit 是构建时的 Git commit hash。
Commit = "unknown"
@ -43,6 +43,19 @@ var (
// 1.2.0。用 SDK 1.0.0/1.1.0 编的存量插件照旧可用——新增方法由
// **插件调用、内核实现**,不调就不受影响,无需重编。
SDKCompatibleVersion = "1.2.0"
// SourceURL 是本内核构建所对应的源码地址。
//
// AGPL-3.0 §13Remote Network Interaction要求当你把修改过的版本
// 作为网络服务提供出去时,必须给使用者提供取得 Corresponding Source 的机会。
// WebUI 的状态页会把这个值渲染成可见链接,所以:
//
// ❗**修改后对外部署的分支必须把它改指向自己的源码仓库**,否则链接指向的
// 不是你实际运行的那份代码§13 的提供义务并未履行。
//
// 构建时可用 -ldflags 覆盖,无需改源码:
// -X gitcode.com/JianFeeeee/HomeAgent/internal/meta.SourceURL=<你的仓库>
SourceURL = "https://gitcode.com/JianFeeeee/HomeAgent"
)
// FullVersion 返回完整的版本字符串。

View File

@ -17,7 +17,7 @@ const (
//
// 保留这张表只为**给出明确错误**:插件目录里躺着 plugin.so 而内核不再认它时,
// 静默跳过会让「目录在但插件没加载」看起来像配置问题,而实际原因是需要用
// 新版 plugindev 重编。
// 新版 hmapdev 重编。
var legacyCABIEntries = []string{"plugin.so", "plugin.dll", "plugin.dylib"}
// entryKind 描述插件入口归属的加载通道。

View File

@ -115,7 +115,7 @@ func TestHasLegacyCABIEntry(t *testing.T) {
})
}
// 旧 .so 插件必须报「用新 plugindev 重编」而非静默跳过。
// 旧 .so 插件必须报「用新 hmapdev 重编」而非静默跳过。
func TestTryDynamic_LegacyCABIGivesActionableError(t *testing.T) {
r := NewRegistry()
defer r.closeProcHost()
@ -129,7 +129,7 @@ func TestTryDynamic_LegacyCABIGivesActionableError(t *testing.T) {
}
// 错误消息须指向解决办法,且明确业务代码无需改
msg := err.Error()
for _, want := range []string{"plugindev", "plugin.bin", "业务代码"} {
for _, want := range []string{"hmapdev", "plugin.bin", "业务代码"} {
if !strings.Contains(msg, want) {
t.Errorf("错误消息应含 %q实际: %v", want, err)
}

View File

@ -10,11 +10,11 @@ import (
pubsdk "gitcode.com/JianFeeeee/homeagent-sdk/sdk"
)
// 端到端:用**真实 plugindev 模板**编译的插件,经内核 proc 通道加载运行。
// 端到端:用**真实 hmapdev 模板**编译的插件,经内核 proc 通道加载运行。
//
// 与 plugin_test.go 中 testdata/*.go 假插件的区别:
// 那些是手写的最简 RPC 实现,只验证内核侧逻辑;
// 这里用的是 tools/plugindev/templates/proc_main.go.tmpl —— 外部插件作者
// 这里用的是 tools/hmapdev/templates/proc_main.go.tmpl —— 外部插件作者
// 真正会拿到的那份运行时。它验证的是「模板 ↔ 内核」两侧协议/布局真的对齐,
// 而不只是内核自己跟自己对齐。
//
@ -101,9 +101,9 @@ func (p *e2ePlugin) Start(s *sdk.PluginSDK) error {
func (p *e2ePlugin) Stop() error { return nil }
`
// procRuntimeTemplates 列出 plugindev 会生成到插件目录的运行时文件。
// procRuntimeTemplates 列出 hmapdev 会生成到插件目录的运行时文件。
//
// 必须与 SDK 仓 tools/plugindev/proc_runtime.go 的 procRuntimeFiles 一致:
// 必须与 SDK 仓 tools/hmapdev/proc_runtime.go 的 procRuntimeFiles 一致:
// 共享段与事件通知的传递机制按平台不同Unix 继承 fdWindows 命名
// 内核对象),故拆成带 build tag 的文件;只写主模板会编译失败。
var procRuntimeTemplates = []struct {
@ -115,15 +115,21 @@ var procRuntimeTemplates = []struct {
{"proc_shm_windows.go.tmpl", "z_proc_shm_windows.go"},
}
// buildPluginWithRealTemplate 用 plugindev 的真实模板编译一个插件二进制。
// buildPluginWithRealTemplate 用 hmapdev 的真实模板编译一个插件二进制。
func buildPluginWithRealTemplate(t *testing.T, businessCode string) string {
t.Helper()
if _, err := exec.LookPath("go"); err != nil {
t.Skip("环境无 go 工具链,跳过端到端测试")
}
// 工具链在 SDK 1.2.0 起改名 hmapdev原 plugindev。两个目录都接受
// 旧检出(软链或旧版 SDK 仓)仍能跑本测试,新检出走新路径。
tmplDir := filepath.Join("..", "..", "..",
"third_party", "homeagent-sdk", "tools", "plugindev", "templates")
"third_party", "homeagent-sdk", "tools", "hmapdev", "templates")
if _, err := os.Stat(tmplDir); err != nil {
tmplDir = filepath.Join("..", "..", "..",
"third_party", "homeagent-sdk", "tools", "plugindev", "templates")
}
dir := t.TempDir()
mustWriteFile(t, filepath.Join(dir, "plugin.go"), businessCode)
@ -131,7 +137,7 @@ func buildPluginWithRealTemplate(t *testing.T, businessCode string) string {
for _, rt := range procRuntimeTemplates {
data, err := os.ReadFile(filepath.Join(tmplDir, rt.tmpl))
if err != nil {
t.Skipf("plugindev 模板 %s 不可读SDK 仓可能未就位): %v", rt.tmpl, err)
t.Skipf("hmapdev 模板 %s 不可读SDK 仓可能未就位): %v", rt.tmpl, err)
}
mustWriteFile(t, filepath.Join(dir, rt.out), string(data))
}

View File

@ -260,7 +260,7 @@ func (p *Process) handshake(timeout time.Duration) error {
return fmt.Errorf("proc: %s 握手应答解析失败: %w", p.name, err)
}
if res.Protocol != ProtocolVersion {
return fmt.Errorf("proc: %s 协议版本不匹配(插件 %d内核 %d——请用配套 plugindev 重编",
return fmt.Errorf("proc: %s 协议版本不匹配(插件 %d内核 %d——请用配套 hmapdev 重编",
p.name, res.Protocol, ProtocolVersion)
}
log.Printf("[proc] %s 已建链pid=%d protocol=%d sdk=%s",

View File

@ -331,7 +331,7 @@ func TestProcess_ProtocolMismatchRejected(t *testing.T) {
}
// 运维可读性:光报“不匹配”不能定位到行动。生产上碰到它的现场是
// “只更新了内核没重编插件”,所以错误里必须带出这条修复指令。
if !strings.Contains(err.Error(), "plugindev") || !strings.Contains(err.Error(), "重编") {
if !strings.Contains(err.Error(), "hmapdev") || !strings.Contains(err.Error(), "重编") {
t.Errorf("错误应给出重编插件的修复指令,实际: %v", err)
}
}

View File

@ -143,7 +143,7 @@ func AttachSegment(data []byte) (*Segment, error) {
return nil, fmt.Errorf("proc: 共享段魔数不匹配0x%x期望 0x%x", got, shmMagic)
}
if got := binary.LittleEndian.Uint32(data[offVersion:]); got != shmVersion {
return nil, fmt.Errorf("proc: 共享段版本不匹配(%d本内核 %d——插件需用配套 plugindev 重编",
return nil, fmt.Errorf("proc: 共享段版本不匹配(%d本内核 %d——插件需用配套 hmapdev 重编",
got, shmVersion)
}
return &Segment{data: data}, nil

View File

@ -4,7 +4,7 @@
// stage 处理经共享内存读改写(模拟 sanitizer 的清洗行为)。
//
// 它手写 RPC 与共享段访问,不依赖公开 SDK——因为 SDK 侧的 proc 支持
// 属于 Part 3plugindev 工具链)的内容。这里只验证内核侧机制。
// 属于 Part 3hmapdev 工具链)的内容。这里只验证内核侧机制。
package main
import (

View File

@ -1175,11 +1175,11 @@ func (r *Registry) tryDynamic(plgDir, name string, config map[string]interface{}
// 旧 .so/.dll 插件给明确错误,不静默跳过。
// 静默跳过会让「插件目录在但没加载」看起来像配置问题,
// 而实际原因是需要用新 plugindev 重编。
// 而实际原因是需要用新 hmapdev 重编。
if hasLegacyCABIEntry(plgDir) {
return nil, fmt.Errorf(
"plugin %s: 检测到旧 C ABI 产物plugin.so/.dll/.dylib。"+
"外部插件已改为子进程模式,请用新版 plugindev 重编产出 %s"+
"外部插件已改为子进程模式,请用新版 hmapdev 重编产出 %s"+
"(业务代码无需修改)", name, binEntry)
}

View File

@ -240,7 +240,7 @@ func (p *Plugin) Start(s *sdk.PluginSDK) error {
p.selfToolNames["healthcheck_kernel"] = true
s.RegisterTool("healthcheck_kernel", sdk.ToolDef{
Name: "healthcheck_kernel",
Description: "查询 Agent 内核运行状态快照,包括插件/工具/记忆/知识库/LLM Provider/运行时等各子系统信息。Agent 可通过此工具自主监测内核健康。",
Description: "查询 Agent 内核运行状态快照,包括**内核版本号与构建身份**build.version / commit / build_time、**统一多模态向量空间ONNX 模型)是否启用**onnx.enabled未启用时给出原因插件/工具/记忆/知识库/LLM Provider/运行时等各子系统信息。Agent 可通过此工具自主监测内核健康。",
Parameters: map[string]interface{}{
"type": "object",
"properties": map[string]interface{}{},

View File

@ -23,7 +23,7 @@ import (
// 这里用 **example/ 里真实的 17 个插件产物**,验证「业务代码零改动 + 重编即可」
// 这一迁移承诺在完整内核装配下成立。
//
// 前置:插件需已用新版 plugindev 重编scripts/rebuild-plugins.sh
// 前置:插件需已用新版 hmapdev 重编scripts/rebuild-plugins.sh
// 未重编时测试 skip 而非 fail——CI 上不强制要求先跑重编脚本。
// realPluginDir 返回某个 example 插件的 linux 产物路径。

View File

@ -1124,6 +1124,33 @@
justify-content: flex-end;
gap: 8px;
}
/* 首启人格向导(复用 confirm-* 弹窗)*/
.persona-ta {
width: 100%;
display: none;
margin-bottom: 12px;
font: 12px/1.5 var(--font-mono, monospace);
padding: 8px;
border-radius: var(--radius-md, 8px);
border: 1px solid var(--glass-border);
background: var(--glass-bg);
color: var(--text-primary);
box-sizing: border-box;
}
.persona-warn {
display: none;
font-size: 12px;
line-height: 1.5;
color: var(--text-secondary);
margin-bottom: 10px;
}
.persona-actions {
display: flex;
justify-content: flex-end;
gap: 8px;
flex-wrap: wrap;
}
.empty-state {
text-align: center;
padding: 48px 24px;
@ -2521,8 +2548,87 @@
if (card) card.style.transform = "";
});
// ===== API =====
async function api(p, o) {
// ===== 首启人格向导 =====
// 人格是配置项core.agent.personal_prompt默认模板不含任何版本号
// 首次启动问一次「默认 / 自定义 / 稍后」,之后不再打扰;
// 不回答 = 稍后 = 保留默认人格,绝不阻塞启动。
async function maybeShowPersonaWizard() {
var st;
try {
st = await api("/persona");
} catch (e) {
return; // 拿不到状态就不打扰用户
}
if (!st || st.initialized) return;
var ov = document.createElement("div");
ov.className = "confirm-overlay";
ov.style.display = "flex";
ov.innerHTML =
'<div class="confirm-box">' +
"<h3>" + escHtml(__("人格设定", "Persona")) + "</h3>" +
"<p>" + escHtml(__(
"首次启动:选一下助手的人格。选「使用默认」即可(之后可在设置里修改);自定义内容在下次重启后生效。",
"First run: pick your assistant's persona. \"Use default\" is fine (change it later in Settings); custom content takes effect after the next restart."
)) + "</p>" +
'<div class="persona-warn"></div>' +
'<textarea class="persona-ta" rows="6"></textarea>' +
'<div class="persona-actions">' +
'<button class="btn btn-ghost btn-sm" data-mode="later">' + escHtml(__("稍后再说", "Later")) + "</button>" +
'<button class="btn btn-ghost btn-sm" data-mode="custom">' + escHtml(__("自定义…", "Custom…")) + "</button>" +
'<button class="btn btn-sm" data-mode="default">' + escHtml(__("使用默认", "Use default")) + "</button>" +
"</div></div>";
document.body.appendChild(ov);
var ta = ov.querySelector(".persona-ta");
var warn = ov.querySelector(".persona-warn");
var customOpen = false;
if (st.file_override) {
warn.style.display = "block";
warn.textContent = __(
"注意:检测到 personal/personal.md它优先于这里的设置。",
"Note: personal/personal.md exists and takes precedence over this choice."
);
}
function close() {
ov.remove();
}
async function submit(mode, content) {
try {
var r = await api("/persona", {
method: "POST",
body: JSON.stringify({ mode: mode, content: content || "" }),
});
if (r && r.restart_required) toast(__("已保存,重启后生效", "Saved; takes effect after restart"));
else toast(__("已保存", "Saved"));
} catch (e) {
toast(__("保存失败:", "Save failed: ") + e, true);
}
close();
}
ov.querySelectorAll("button[data-mode]").forEach(function (b) {
b.onclick = function () {
var mode = b.getAttribute("data-mode");
if (mode !== "custom") {
submit(mode);
return;
}
if (!customOpen) { // 第一次点:展开文本域并预填当前人格
customOpen = true;
ta.style.display = "block";
ta.value = st.current_prompt || "";
ta.focus();
return;
}
if (!ta.value.trim()) {
toast(__("内容不能为空", "Content cannot be empty"), true);
return;
}
submit("custom", ta.value);
};
});
}
// ===== API =====
async function api(p, o) {
var opts = {
credentials: "include",
headers: { "Content-Type": "application/json", ...o?.headers },
@ -2750,6 +2856,18 @@
: "-",
) +
"</span></div>" +
// AGPL-3.0 §13向网络使用者提供取得对应源码的入口。
// 地址来自内核 meta.SourceURL构建时可 -ldflags 覆盖),
// 修改后对外部署的分支必须把它指向自己的源码仓库。
(k?.build?.source_url
? '<div class="kv-row"><span class="key">' +
__("源码", "Source") +
'</span><span class="val"><a href="' +
escHtml(k.build.source_url) +
'" target="_blank" rel="noopener noreferrer">' +
escHtml(k.build.source_url) +
"</a></span></div>"
: "") +
'<div class="kv-row"><span class="key">' +
__("构建", "Build") +
'</span><span class="val">' +
@ -6504,6 +6622,7 @@
renderAll();
connectSSE();
startUptimeTicker();
maybeShowPersonaWizard();
})();
setInterval(renderAll, 15000);
// 消息同步轮询兜底每30秒增量同步 chatHistory补偿 SSE 断连窗口期

View File

@ -23,6 +23,7 @@ import (
"time"
agentIO "gitcode.com/JianFeeeee/HomeAgent/internal/agent/io"
internalConfig "gitcode.com/JianFeeeee/HomeAgent/internal/config"
"gitcode.com/JianFeeeee/HomeAgent/internal/meta"
sdk "gitcode.com/JianFeeeee/HomeAgent/internal/sdk"
"gitcode.com/JianFeeeee/HomeAgent/pkg/types"
@ -865,6 +866,7 @@ func (h *Handler) RegisterRoutes(mux *http.ServeMux) {
mux.HandleFunc("/api/v1/terminals", h.requireAPI(h.handleTerminals))
mux.HandleFunc("/api/v1/cmd/history", h.requireAPI(h.handleCmdHistory))
mux.HandleFunc("/api/v1/kernel", h.requireAPI(h.handleKernel))
mux.HandleFunc("/api/v1/persona", h.requireAPI(h.handlePersona))
mux.HandleFunc("/api/v1/plugins", h.requireAPI(h.handlePlugins))
mux.HandleFunc("/api/v1/plugins/", h.requireAPI(h.handlePluginByID))
// 设备网关(可配置反代到 remotedevice默认禁用未启用时返回 404
@ -974,6 +976,77 @@ func (h *Handler) handleKernel(w http.ResponseWriter, r *http.Request) {
writeJSON(w, http.StatusOK, h.status.GetKernelStatus())
}
// 人格设定:配置项键,以及「首启向导已经问过」的一次性标记。
//
// 为什么需要向导:人格曾经只有 <dataDir>/personal/personal.md 一个来源且无人维护,
// 里面写死的旧版本号反过来让实例自述旧版本v1.2.0 压测发现)。
// 现在人格是配置项(默认模板不含任何版本号),首启问一次,之后不再打扰。
// handlePersona 是首启人格向导的后端(与内核 persona_set 工具共用 internal/config 的实现)。
//
// GET → {initialized, current_prompt, file_override}
// POST → {"mode":"default"|"custom"|"later","content":"..."}
// 写入 core.agent.personal_prompt 并打一次性标记,返回 restart_required
//
// 生效时机:人格在 homed 启动时载入(以【人格设定】块拼进系统提示词),
// 所以**自定义内容需重启生效**;选「默认」或「稍后」(保持当前默认)无需重启。
// 不回答就是「稍后」:保留默认并打标记,不阻塞任何流程。
//
// 跨通道:这里只是 WebUI 侧的入口;任何通道的消息到来时,内核都会检查同一枚标记,
// 未确认则在提示词里要求模型主动询问(见 internal/agent/core 的首启门禁)。
func (h *Handler) handlePersona(w http.ResponseWriter, r *http.Request) {
if h.settings == nil {
writeJSON(w, http.StatusServiceUnavailable, map[string]string{"error": "settings not available"})
return
}
switch r.Method {
case http.MethodGet:
writeJSON(w, http.StatusOK, map[string]interface{}{
"initialized": internalConfig.PersonaInitializedKV(h.settings),
"current_prompt": internalConfig.CurrentPersonaKV(h.settings),
"file_override": h.personaFileExists(),
})
case http.MethodPost:
var req struct {
Mode string `json:"mode"`
Content string `json:"content"`
}
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
writeJSON(w, http.StatusBadRequest, map[string]string{"error": "invalid request"})
return
}
restart, err := internalConfig.SetPersonaKV(h.settings, req.Mode, req.Content)
if err != nil {
// 非法 mode / 空内容 → 400落库失败 → 500。两者都不打标记。
code := http.StatusInternalServerError
if strings.Contains(err.Error(), "unknown mode") || strings.Contains(err.Error(), "content required") {
code = http.StatusBadRequest
}
writeJSON(w, code, map[string]string{"error": err.Error()})
return
}
writeJSON(w, http.StatusOK, map[string]interface{}{
"status": "ok", "mode": req.Mode, "restart_required": restart,
})
default:
http.Error(w, "method not allowed", http.StatusMethodNotAllowed)
}
}
// personaFileExists 报告是否存在会覆盖配置项的人格文件(存在时它优先)。
// 数据目录取自 core.daemon.data_dir由播种写入
func (h *Handler) personaFileExists() bool {
v, err := h.settings.GetCore("core.daemon.data_dir")
if err != nil {
return false
}
dir, _ := v.(string)
if dir == "" {
return false
}
_, err = os.Stat(filepath.Join(dir, "personal", "personal.md"))
return err == nil
}
func (h *Handler) handleAgents(w http.ResponseWriter, r *http.Request) {
switch r.Method {
case http.MethodGet:

View File

@ -0,0 +1,145 @@
package webui
import (
"encoding/json"
"net/http"
"net/http/httptest"
"os"
"path/filepath"
"strings"
"testing"
internalConfig "gitcode.com/JianFeeeee/HomeAgent/internal/config"
"gitcode.com/JianFeeeee/HomeAgent/internal/sdk"
)
func newPersonaHandler(t *testing.T) (*Handler, *internalConfig.ConfigRegistry) {
t.Helper()
dir := t.TempDir()
cfgReg := internalConfig.NewConfigRegistry(filepath.Join(dir, "config.db"))
cfgReg.SeedDefaults(dir)
t.Cleanup(func() { cfgReg.Close() })
h := NewHandler(testSDK(sdk.SDKConfig{Settings: sdk.NewSettings("webui", cfgReg)}))
return h, cfgReg
}
func doPersona(t *testing.T, h *Handler, method, body string) *httptest.ResponseRecorder {
t.Helper()
var rd *strings.Reader
if body == "" {
rd = strings.NewReader("")
} else {
rd = strings.NewReader(body)
}
req := httptest.NewRequest(method, "/api/v1/persona", rd)
w := httptest.NewRecorder()
h.handlePersona(w, req)
return w
}
// 首启向导的后端契约GET 报告状态、POST 三选一、并且**只问一次**。
func TestPersonaWizardFlow(t *testing.T) {
h, cfgReg := newPersonaHandler(t)
// 1. 全新安装未初始化current_prompt 回落到内置默认模板
w := doPersona(t, h, http.MethodGet, "")
if w.Code != http.StatusOK {
t.Fatalf("GET 状态码 %d", w.Code)
}
var got struct {
Initialized bool `json:"initialized"`
CurrentPrompt string `json:"current_prompt"`
FileOverride bool `json:"file_override"`
}
if err := json.Unmarshal(w.Body.Bytes(), &got); err != nil {
t.Fatal(err)
}
if got.Initialized {
t.Fatal("全新安装不应已初始化")
}
if got.CurrentPrompt != internalConfig.DefaultPersonaPrompt {
t.Fatal("未设置时应回落到内置默认模板")
}
if got.FileOverride {
t.Fatal("没有人格文件时不应报告 file_override")
}
// 2. 「稍后再说」= 保留默认、打标记、不再问
w = doPersona(t, h, http.MethodPost, `{"mode":"later"}`)
if w.Code != http.StatusOK {
t.Fatalf("later 状态码 %d: %s", w.Code, w.Body.String())
}
if v := cfgReg.GetString(internalConfig.PersonaInitMarkerKey, ""); v == "" {
t.Fatal("later 也必须打一次性标记(否则每次启动都问)")
}
if v := cfgReg.GetString(internalConfig.PersonaPromptKey, ""); v != internalConfig.DefaultPersonaPrompt {
t.Fatalf("later 不应改动人格,实际 %q", v)
}
// 3. 已初始化后 GET 应报 true
w = doPersona(t, h, http.MethodGet, "")
got.Initialized = false
_ = json.Unmarshal(w.Body.Bytes(), &got)
if !got.Initialized {
t.Fatal("打过标记后应报告已初始化")
}
// 4. 自定义:写入内容 + 需要重启(人格在启动时载入)
h2, cfgReg2 := newPersonaHandler(t)
w = doPersona(t, h2, http.MethodPost, `{"mode":"custom","content":"你是测试人格"}`)
if w.Code != http.StatusOK {
t.Fatalf("custom 状态码 %d: %s", w.Code, w.Body.String())
}
var pr struct {
RestartRequired bool `json:"restart_required"`
}
_ = json.Unmarshal(w.Body.Bytes(), &pr)
if !pr.RestartRequired {
t.Fatal("自定义人格应提示需要重启才生效")
}
if v := cfgReg2.GetString(internalConfig.PersonaPromptKey, ""); v != "你是测试人格" {
t.Fatalf("自定义内容未写库: %q", v)
}
// 5. 空内容的 custom 必须被拒(否则等于静默清空人格)
h3, _ := newPersonaHandler(t)
if w = doPersona(t, h3, http.MethodPost, `{"mode":"custom","content":" "}`); w.Code != http.StatusBadRequest {
t.Fatalf("空内容应 400实际 %d", w.Code)
}
// 6. 未知 mode 必须被拒
if w = doPersona(t, h3, http.MethodPost, `{"mode":"nope"}`); w.Code != http.StatusBadRequest {
t.Fatalf("未知 mode 应 400实际 %d", w.Code)
}
// 7. 被拒的请求不得打标记(否则向导会被跳过)
if v := cfgReg2.GetString(internalConfig.PersonaInitMarkerKey, ""); v == "" {
t.Fatal("前置条件:第 4 步已打标记")
}
h4, cfgReg4 := newPersonaHandler(t)
_ = doPersona(t, h4, http.MethodPost, `{"mode":"nope"}`)
if v := cfgReg4.GetString(internalConfig.PersonaInitMarkerKey, ""); v != "" {
t.Fatal("被拒的请求不应打标记")
}
}
// 存在人格文件时 GET 要报告 file_override它会覆盖配置项向导应提示用户
func TestPersonaWizardReportsFileOverride(t *testing.T) {
h, cfgReg := newPersonaHandler(t)
dir := cfgReg.GetString("core.daemon.data_dir", "")
if dir == "" {
t.Fatal("播种应写入 core.daemon.data_dir")
}
if err := os.MkdirAll(filepath.Join(dir, "personal"), 0o755); err != nil {
t.Fatal(err)
}
if err := os.WriteFile(filepath.Join(dir, "personal", "personal.md"), []byte("旧人格"), 0o644); err != nil {
t.Fatal(err)
}
w := doPersona(t, h, http.MethodGet, "")
var got struct {
FileOverride bool `json:"file_override"`
}
_ = json.Unmarshal(w.Body.Bytes(), &got)
if !got.FileOverride {
t.Fatal("存在 personal.md 时必须报告 file_override")
}
}

View File

@ -38,9 +38,29 @@ type KernelStatus struct {
Runtime RuntimeStatus `json:"runtime"`
// ONNX 报告统一多模态向量空间ONNX 模型)是否**真的在用**。
//
// 为何单列:内核的向量能力是三层降级(统一多模态空间 → 词嵌入 → TF-IDF
// 只报「向量可用/不可用」分不清「ONNX 模型已加载」与「退回了纯文本路径」。
// 模型缺失 / 运行时缺失 / provider 打开失败时这里是 enabled=false + reason。
ONNX ONNXStatus `json:"onnx"`
Tracker TrackerStatus `json:"tracker"`
}
// ONNXStatus 是统一多模态向量空间ONNX 模型)的启用状态与身份。
type ONNXStatus struct {
// Enabled 是 provider 真正打开且元数据合法(不是「配置里写了 provider」
Enabled bool `json:"enabled"`
// Provider 是配置指定的 provider 名(如 chineseclip / qwen3vl / http
Provider string `json:"provider,omitempty"`
Dim int `json:"dim,omitempty"`
Fingerprint string `json:"fingerprint,omitempty"`
Modalities []string `json:"modalities,omitempty"`
// Reason 是未启用时的原因(未配置 / 打开失败的具体错误 / 其它)。
Reason string `json:"reason,omitempty"`
}
type PluginInfo struct {
Name string `json:"name"`
Loaded bool `json:"loaded"`
@ -111,6 +131,10 @@ type BuildStatus struct {
SDKCompatible string `json:"sdk_compatible"`
// KernelName 是内核名HomeAgent
KernelName string `json:"kernel_name"`
// SourceURL 是本次构建对应的源码地址。AGPL-3.0 §13 要求:向使用者提供网络
// 服务时,要给他们拿到 Corresponding Source 的机会——WebUI 状态页会把它渲染成
// 可见链接,所以**修改后对外部署的分支必须把这个值改指向自己的源码仓库**。
SourceURL string `json:"source_url,omitempty"`
}
type TrackerStatus struct {

661
third_party/homeagent-sdk/LICENSE vendored Normal file
View File

@ -0,0 +1,661 @@
GNU AFFERO GENERAL PUBLIC LICENSE
Version 3, 19 November 2007
Copyright (C) 2007 Free Software Foundation, Inc. <https://fsf.org/>
Everyone is permitted to copy and distribute verbatim copies
of this license document, but changing it is not allowed.
Preamble
The GNU Affero General Public License is a free, copyleft license for
software and other kinds of works, specifically designed to ensure
cooperation with the community in the case of network server software.
The licenses for most software and other practical works are designed
to take away your freedom to share and change the works. By contrast,
our General Public Licenses are intended to guarantee your freedom to
share and change all versions of a program--to make sure it remains free
software for all its users.
When we speak of free software, we are referring to freedom, not
price. Our General Public Licenses are designed to make sure that you
have the freedom to distribute copies of free software (and charge for
them if you wish), that you receive source code or can get it if you
want it, that you can change the software or use pieces of it in new
free programs, and that you know you can do these things.
Developers that use our General Public Licenses protect your rights
with two steps: (1) assert copyright on the software, and (2) offer
you this License which gives you legal permission to copy, distribute
and/or modify the software.
A secondary benefit of defending all users' freedom is that
improvements made in alternate versions of the program, if they
receive widespread use, become available for other developers to
incorporate. Many developers of free software are heartened and
encouraged by the resulting cooperation. However, in the case of
software used on network servers, this result may fail to come about.
The GNU General Public License permits making a modified version and
letting the public access it on a server without ever releasing its
source code to the public.
The GNU Affero General Public License is designed specifically to
ensure that, in such cases, the modified source code becomes available
to the community. It requires the operator of a network server to
provide the source code of the modified version running there to the
users of that server. Therefore, public use of a modified version, on
a publicly accessible server, gives the public access to the source
code of the modified version.
An older license, called the Affero General Public License and
published by Affero, was designed to accomplish similar goals. This is
a different license, not a version of the Affero GPL, but Affero has
released a new version of the Affero GPL which permits relicensing under
this license.
The precise terms and conditions for copying, distribution and
modification follow.
TERMS AND CONDITIONS
0. Definitions.
"This License" refers to version 3 of the GNU Affero General Public License.
"Copyright" also means copyright-like laws that apply to other kinds of
works, such as semiconductor masks.
"The Program" refers to any copyrightable work licensed under this
License. Each licensee is addressed as "you". "Licensees" and
"recipients" may be individuals or organizations.
To "modify" a work means to copy from or adapt all or part of the work
in a fashion requiring copyright permission, other than the making of an
exact copy. The resulting work is called a "modified version" of the
earlier work or a work "based on" the earlier work.
A "covered work" means either the unmodified Program or a work based
on the Program.
To "propagate" a work means to do anything with it that, without
permission, would make you directly or secondarily liable for
infringement under applicable copyright law, except executing it on a
computer or modifying a private copy. Propagation includes copying,
distribution (with or without modification), making available to the
public, and in some countries other activities as well.
To "convey" a work means any kind of propagation that enables other
parties to make or receive copies. Mere interaction with a user through
a computer network, with no transfer of a copy, is not conveying.
An interactive user interface displays "Appropriate Legal Notices"
to the extent that it includes a convenient and prominently visible
feature that (1) displays an appropriate copyright notice, and (2)
tells the user that there is no warranty for the work (except to the
extent that warranties are provided), that licensees may convey the
work under this License, and how to view a copy of this License. If
the interface presents a list of user commands or options, such as a
menu, a prominent item in the list meets this criterion.
1. Source Code.
The "source code" for a work means the preferred form of the work
for making modifications to it. "Object code" means any non-source
form of a work.
A "Standard Interface" means an interface that either is an official
standard defined by a recognized standards body, or, in the case of
interfaces specified for a particular programming language, one that
is widely used among developers working in that language.
The "System Libraries" of an executable work include anything, other
than the work as a whole, that (a) is included in the normal form of
packaging a Major Component, but which is not part of that Major
Component, and (b) serves only to enable use of the work with that
Major Component, or to implement a Standard Interface for which an
implementation is available to the public in source code form. A
"Major Component", in this context, means a major essential component
(kernel, window system, and so on) of the specific operating system
(if any) on which the executable work runs, or a compiler used to
produce the work, or an object code interpreter used to run it.
The "Corresponding Source" for a work in object code form means all
the source code needed to generate, install, and (for an executable
work) run the object code and to modify the work, including scripts to
control those activities. However, it does not include the work's
System Libraries, or general-purpose tools or generally available free
programs which are used unmodified in performing those activities but
which are not part of the work. For example, Corresponding Source
includes interface definition files associated with source files for
the work, and the source code for shared libraries and dynamically
linked subprograms that the work is specifically designed to require,
such as by intimate data communication or control flow between those
subprograms and other parts of the work.
The Corresponding Source need not include anything that users
can regenerate automatically from other parts of the Corresponding
Source.
The Corresponding Source for a work in source code form is that
same work.
2. Basic Permissions.
All rights granted under this License are granted for the term of
copyright on the Program, and are irrevocable provided the stated
conditions are met. This License explicitly affirms your unlimited
permission to run the unmodified Program. The output from running a
covered work is covered by this License only if the output, given its
content, constitutes a covered work. This License acknowledges your
rights of fair use or other equivalent, as provided by copyright law.
You may make, run and propagate covered works that you do not
convey, without conditions so long as your license otherwise remains
in force. You may convey covered works to others for the sole purpose
of having them make modifications exclusively for you, or provide you
with facilities for running those works, provided that you comply with
the terms of this License in conveying all material for which you do
not control copyright. Those thus making or running the covered works
for you must do so exclusively on your behalf, under your direction
and control, on terms that prohibit them from making any copies of
your copyrighted material outside their relationship with you.
Conveying under any other circumstances is permitted solely under
the conditions stated below. Sublicensing is not allowed; section 10
makes it unnecessary.
3. Protecting Users' Legal Rights From Anti-Circumvention Law.
No covered work shall be deemed part of an effective technological
measure under any applicable law fulfilling obligations under article
11 of the WIPO copyright treaty adopted on 20 December 1996, or
similar laws prohibiting or restricting circumvention of such
measures.
When you convey a covered work, you waive any legal power to forbid
circumvention of technological measures to the extent such circumvention
is effected by exercising rights under this License with respect to
the covered work, and you disclaim any intention to limit operation or
modification of the work as a means of enforcing, against the work's
users, your or third parties' legal rights to forbid circumvention of
technological measures.
4. Conveying Verbatim Copies.
You may convey verbatim copies of the Program's source code as you
receive it, in any medium, provided that you conspicuously and
appropriately publish on each copy an appropriate copyright notice;
keep intact all notices stating that this License and any
non-permissive terms added in accord with section 7 apply to the code;
keep intact all notices of the absence of any warranty; and give all
recipients a copy of this License along with the Program.
You may charge any price or no price for each copy that you convey,
and you may offer support or warranty protection for a fee.
5. Conveying Modified Source Versions.
You may convey a work based on the Program, or the modifications to
produce it from the Program, in the form of source code under the
terms of section 4, provided that you also meet all of these conditions:
a) The work must carry prominent notices stating that you modified
it, and giving a relevant date.
b) The work must carry prominent notices stating that it is
released under this License and any conditions added under section
7. This requirement modifies the requirement in section 4 to
"keep intact all notices".
c) You must license the entire work, as a whole, under this
License to anyone who comes into possession of a copy. This
License will therefore apply, along with any applicable section 7
additional terms, to the whole of the work, and all its parts,
regardless of how they are packaged. This License gives no
permission to license the work in any other way, but it does not
invalidate such permission if you have separately received it.
d) If the work has interactive user interfaces, each must display
Appropriate Legal Notices; however, if the Program has interactive
interfaces that do not display Appropriate Legal Notices, your
work need not make them do so.
A compilation of a covered work with other separate and independent
works, which are not by their nature extensions of the covered work,
and which are not combined with it such as to form a larger program,
in or on a volume of a storage or distribution medium, is called an
"aggregate" if the compilation and its resulting copyright are not
used to limit the access or legal rights of the compilation's users
beyond what the individual works permit. Inclusion of a covered work
in an aggregate does not cause this License to apply to the other
parts of the aggregate.
6. Conveying Non-Source Forms.
You may convey a covered work in object code form under the terms
of sections 4 and 5, provided that you also convey the
machine-readable Corresponding Source under the terms of this License,
in one of these ways:
a) Convey the object code in, or embodied in, a physical product
(including a physical distribution medium), accompanied by the
Corresponding Source fixed on a durable physical medium
customarily used for software interchange.
b) Convey the object code in, or embodied in, a physical product
(including a physical distribution medium), accompanied by a
written offer, valid for at least three years and valid for as
long as you offer spare parts or customer support for that product
model, to give anyone who possesses the object code either (1) a
copy of the Corresponding Source for all the software in the
product that is covered by this License, on a durable physical
medium customarily used for software interchange, for a price no
more than your reasonable cost of physically performing this
conveying of source, or (2) access to copy the
Corresponding Source from a network server at no charge.
c) Convey individual copies of the object code with a copy of the
written offer to provide the Corresponding Source. This
alternative is allowed only occasionally and noncommercially, and
only if you received the object code with such an offer, in accord
with subsection 6b.
d) Convey the object code by offering access from a designated
place (gratis or for a charge), and offer equivalent access to the
Corresponding Source in the same way through the same place at no
further charge. You need not require recipients to copy the
Corresponding Source along with the object code. If the place to
copy the object code is a network server, the Corresponding Source
may be on a different server (operated by you or a third party)
that supports equivalent copying facilities, provided you maintain
clear directions next to the object code saying where to find the
Corresponding Source. Regardless of what server hosts the
Corresponding Source, you remain obligated to ensure that it is
available for as long as needed to satisfy these requirements.
e) Convey the object code using peer-to-peer transmission, provided
you inform other peers where the object code and Corresponding
Source of the work are being offered to the general public at no
charge under subsection 6d.
A separable portion of the object code, whose source code is excluded
from the Corresponding Source as a System Library, need not be
included in conveying the object code work.
A "User Product" is either (1) a "consumer product", which means any
tangible personal property which is normally used for personal, family,
or household purposes, or (2) anything designed or sold for incorporation
into a dwelling. In determining whether a product is a consumer product,
doubtful cases shall be resolved in favor of coverage. For a particular
product received by a particular user, "normally used" refers to a
typical or common use of that class of product, regardless of the status
of the particular user or of the way in which the particular user
actually uses, or expects or is expected to use, the product. A product
is a consumer product regardless of whether the product has substantial
commercial, industrial or non-consumer uses, unless such uses represent
the only significant mode of use of the product.
"Installation Information" for a User Product means any methods,
procedures, authorization keys, or other information required to install
and execute modified versions of a covered work in that User Product from
a modified version of its Corresponding Source. The information must
suffice to ensure that the continued functioning of the modified object
code is in no case prevented or interfered with solely because
modification has been made.
If you convey an object code work under this section in, or with, or
specifically for use in, a User Product, and the conveying occurs as
part of a transaction in which the right of possession and use of the
User Product is transferred to the recipient in perpetuity or for a
fixed term (regardless of how the transaction is characterized), the
Corresponding Source conveyed under this section must be accompanied
by the Installation Information. But this requirement does not apply
if neither you nor any third party retains the ability to install
modified object code on the User Product (for example, the work has
been installed in ROM).
The requirement to provide Installation Information does not include a
requirement to continue to provide support service, warranty, or updates
for a work that has been modified or installed by the recipient, or for
the User Product in which it has been modified or installed. Access to a
network may be denied when the modification itself materially and
adversely affects the operation of the network or violates the rules and
protocols for communication across the network.
Corresponding Source conveyed, and Installation Information provided,
in accord with this section must be in a format that is publicly
documented (and with an implementation available to the public in
source code form), and must require no special password or key for
unpacking, reading or copying.
7. Additional Terms.
"Additional permissions" are terms that supplement the terms of this
License by making exceptions from one or more of its conditions.
Additional permissions that are applicable to the entire Program shall
be treated as though they were included in this License, to the extent
that they are valid under applicable law. If additional permissions
apply only to part of the Program, that part may be used separately
under those permissions, but the entire Program remains governed by
this License without regard to the additional permissions.
When you convey a copy of a covered work, you may at your option
remove any additional permissions from that copy, or from any part of
it. (Additional permissions may be written to require their own
removal in certain cases when you modify the work.) You may place
additional permissions on material, added by you to a covered work,
for which you have or can give appropriate copyright permission.
Notwithstanding any other provision of this License, for material you
add to a covered work, you may (if authorized by the copyright holders of
that material) supplement the terms of this License with terms:
a) Disclaiming warranty or limiting liability differently from the
terms of sections 15 and 16 of this License; or
b) Requiring preservation of specified reasonable legal notices or
author attributions in that material or in the Appropriate Legal
Notices displayed by works containing it; or
c) Prohibiting misrepresentation of the origin of that material, or
requiring that modified versions of such material be marked in
reasonable ways as different from the original version; or
d) Limiting the use for publicity purposes of names of licensors or
authors of the material; or
e) Declining to grant rights under trademark law for use of some
trade names, trademarks, or service marks; or
f) Requiring indemnification of licensors and authors of that
material by anyone who conveys the material (or modified versions of
it) with contractual assumptions of liability to the recipient, for
any liability that these contractual assumptions directly impose on
those licensors and authors.
All other non-permissive additional terms are considered "further
restrictions" within the meaning of section 10. If the Program as you
received it, or any part of it, contains a notice stating that it is
governed by this License along with a term that is a further
restriction, you may remove that term. If a license document contains
a further restriction but permits relicensing or conveying under this
License, you may add to a covered work material governed by the terms
of that license document, provided that the further restriction does
not survive such relicensing or conveying.
If you add terms to a covered work in accord with this section, you
must place, in the relevant source files, a statement of the
additional terms that apply to those files, or a notice indicating
where to find the applicable terms.
Additional terms, permissive or non-permissive, may be stated in the
form of a separately written license, or stated as exceptions;
the above requirements apply either way.
8. Termination.
You may not propagate or modify a covered work except as expressly
provided under this License. Any attempt otherwise to propagate or
modify it is void, and will automatically terminate your rights under
this License (including any patent licenses granted under the third
paragraph of section 11).
However, if you cease all violation of this License, then your
license from a particular copyright holder is reinstated (a)
provisionally, unless and until the copyright holder explicitly and
finally terminates your license, and (b) permanently, if the copyright
holder fails to notify you of the violation by some reasonable means
prior to 60 days after the cessation.
Moreover, your license from a particular copyright holder is
reinstated permanently if the copyright holder notifies you of the
violation by some reasonable means, this is the first time you have
received notice of violation of this License (for any work) from that
copyright holder, and you cure the violation prior to 30 days after
your receipt of the notice.
Termination of your rights under this section does not terminate the
licenses of parties who have received copies or rights from you under
this License. If your rights have been terminated and not permanently
reinstated, you do not qualify to receive new licenses for the same
material under section 10.
9. Acceptance Not Required for Having Copies.
You are not required to accept this License in order to receive or
run a copy of the Program. Ancillary propagation of a covered work
occurring solely as a consequence of using peer-to-peer transmission
to receive a copy likewise does not require acceptance. However,
nothing other than this License grants you permission to propagate or
modify any covered work. These actions infringe copyright if you do
not accept this License. Therefore, by modifying or propagating a
covered work, you indicate your acceptance of this License to do so.
10. Automatic Licensing of Downstream Recipients.
Each time you convey a covered work, the recipient automatically
receives a license from the original licensors, to run, modify and
propagate that work, subject to this License. You are not responsible
for enforcing compliance by third parties with this License.
An "entity transaction" is a transaction transferring control of an
organization, or substantially all assets of one, or subdividing an
organization, or merging organizations. If propagation of a covered
work results from an entity transaction, each party to that
transaction who receives a copy of the work also receives whatever
licenses to the work the party's predecessor in interest had or could
give under the previous paragraph, plus a right to possession of the
Corresponding Source of the work from the predecessor in interest, if
the predecessor has it or can get it with reasonable efforts.
You may not impose any further restrictions on the exercise of the
rights granted or affirmed under this License. For example, you may
not impose a license fee, royalty, or other charge for exercise of
rights granted under this License, and you may not initiate litigation
(including a cross-claim or counterclaim in a lawsuit) alleging that
any patent claim is infringed by making, using, selling, offering for
sale, or importing the Program or any portion of it.
11. Patents.
A "contributor" is a copyright holder who authorizes use under this
License of the Program or a work on which the Program is based. The
work thus licensed is called the contributor's "contributor version".
A contributor's "essential patent claims" are all patent claims
owned or controlled by the contributor, whether already acquired or
hereafter acquired, that would be infringed by some manner, permitted
by this License, of making, using, or selling its contributor version,
but do not include claims that would be infringed only as a
consequence of further modification of the contributor version. For
purposes of this definition, "control" includes the right to grant
patent sublicenses in a manner consistent with the requirements of
this License.
Each contributor grants you a non-exclusive, worldwide, royalty-free
patent license under the contributor's essential patent claims, to
make, use, sell, offer for sale, import and otherwise run, modify and
propagate the contents of its contributor version.
In the following three paragraphs, a "patent license" is any express
agreement or commitment, however denominated, not to enforce a patent
(such as an express permission to practice a patent or covenant not to
sue for patent infringement). To "grant" such a patent license to a
party means to make such an agreement or commitment not to enforce a
patent against the party.
If you convey a covered work, knowingly relying on a patent license,
and the Corresponding Source of the work is not available for anyone
to copy, free of charge and under the terms of this License, through a
publicly available network server or other readily accessible means,
then you must either (1) cause the Corresponding Source to be so
available, or (2) arrange to deprive yourself of the benefit of the
patent license for this particular work, or (3) arrange, in a manner
consistent with the requirements of this License, to extend the patent
license to downstream recipients. "Knowingly relying" means you have
actual knowledge that, but for the patent license, your conveying the
covered work in a country, or your recipient's use of the covered work
in a country, would infringe one or more identifiable patents in that
country that you have reason to believe are valid.
If, pursuant to or in connection with a single transaction or
arrangement, you convey, or propagate by procuring conveyance of, a
covered work, and grant a patent license to some of the parties
receiving the covered work authorizing them to use, propagate, modify
or convey a specific copy of the covered work, then the patent license
you grant is automatically extended to all recipients of the covered
work and works based on it.
A patent license is "discriminatory" if it does not include within
the scope of its coverage, prohibits the exercise of, or is
conditioned on the non-exercise of one or more of the rights that are
specifically granted under this License. You may not convey a covered
work if you are a party to an arrangement with a third party that is
in the business of distributing software, under which you make payment
to the third party based on the extent of your activity of conveying
the work, and under which the third party grants, to any of the
parties who would receive the covered work from you, a discriminatory
patent license (a) in connection with copies of the covered work
conveyed by you (or copies made from those copies), or (b) primarily
for and in connection with specific products or compilations that
contain the covered work, unless you entered into that arrangement,
or that patent license was granted, prior to 28 March 2007.
Nothing in this License shall be construed as excluding or limiting
any implied license or other defenses to infringement that may
otherwise be available to you under applicable patent law.
12. No Surrender of Others' Freedom.
If conditions are imposed on you (whether by court order, agreement or
otherwise) that contradict the conditions of this License, they do not
excuse you from the conditions of this License. If you cannot convey a
covered work so as to satisfy simultaneously your obligations under this
License and any other pertinent obligations, then as a consequence you may
not convey it at all. For example, if you agree to terms that obligate you
to collect a royalty for further conveying from those to whom you convey
the Program, the only way you could satisfy both those terms and this
License would be to refrain entirely from conveying the Program.
13. Remote Network Interaction; Use with the GNU General Public License.
Notwithstanding any other provision of this License, if you modify the
Program, your modified version must prominently offer all users
interacting with it remotely through a computer network (if your version
supports such interaction) an opportunity to receive the Corresponding
Source of your version by providing access to the Corresponding Source
from a network server at no charge, through some standard or customary
means of facilitating copying of software. This Corresponding Source
shall include the Corresponding Source for any work covered by version 3
of the GNU General Public License that is incorporated pursuant to the
following paragraph.
Notwithstanding any other provision of this License, you have
permission to link or combine any covered work with a work licensed
under version 3 of the GNU General Public License into a single
combined work, and to convey the resulting work. The terms of this
License will continue to apply to the part which is the covered work,
but the work with which it is combined will remain governed by version
3 of the GNU General Public License.
14. Revised Versions of this License.
The Free Software Foundation may publish revised and/or new versions of
the GNU Affero General Public License from time to time. Such new versions
will be similar in spirit to the present version, but may differ in detail to
address new problems or concerns.
Each version is given a distinguishing version number. If the
Program specifies that a certain numbered version of the GNU Affero General
Public License "or any later version" applies to it, you have the
option of following the terms and conditions either of that numbered
version or of any later version published by the Free Software
Foundation. If the Program does not specify a version number of the
GNU Affero General Public License, you may choose any version ever published
by the Free Software Foundation.
If the Program specifies that a proxy can decide which future
versions of the GNU Affero General Public License can be used, that proxy's
public statement of acceptance of a version permanently authorizes you
to choose that version for the Program.
Later license versions may give you additional or different
permissions. However, no additional obligations are imposed on any
author or copyright holder as a result of your choosing to follow a
later version.
15. Disclaimer of Warranty.
THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
16. Limitation of Liability.
IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
SUCH DAMAGES.
17. Interpretation of Sections 15 and 16.
If the disclaimer of warranty and limitation of liability provided
above cannot be given local legal effect according to their terms,
reviewing courts shall apply local law that most closely approximates
an absolute waiver of all civil liability in connection with the
Program, unless a warranty or assumption of liability accompanies a
copy of the Program in return for a fee.
END OF TERMS AND CONDITIONS
How to Apply These Terms to Your New Programs
If you develop a new program, and you want it to be of the greatest
possible use to the public, the best way to achieve this is to make it
free software which everyone can redistribute and change under these terms.
To do so, attach the following notices to the program. It is safest
to attach them to the start of each source file to most effectively
state the exclusion of warranty; and each file should have at least
the "copyright" line and a pointer to where the full notice is found.
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU Affero General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Affero General Public License for more details.
You should have received a copy of the GNU Affero General Public License
along with this program. If not, see <https://www.gnu.org/licenses/>.
Also add information on how to contact you by electronic and paper mail.
If your software can interact with users remotely through a computer
network, you should also make sure that it provides a way for users to
get its source. For example, if your program is a web application, its
interface could display a "Source" link that leads users to an archive
of the code. There are many ways you could offer source, and different
solutions will be better for different programs; see section 13 for the
specific requirements.
You should also get your employer (if you work as a programmer) or school,
if any, to sign a "copyright disclaimer" for the program, if necessary.
For more information on this, and how to apply and follow the GNU AGPL, see
<https://www.gnu.org/licenses/>.

View File

@ -41,8 +41,15 @@ var (
// ❗main 分支上此值是**下一个未发布中版本**;已发布的值看对应的
// release/vX.Y.x 分支与 tag见 核心仓 docs/git-branching.md §2.1 与 §七.1)。
//
// 现为 1.2.01.1.x 线正在发布中release/v1.1.x 上定版 1.1.0
// main 在积攒 1.2 的东西。1.2.0 本身还没有任何 tag。
// 现为 1.2.0核心的 1.2.x 线正在发布中release/v1.2.x 承载 1.2.0
// 但 **SDK 不跟 beta 发版**(§七.2——SDK 1.2.0 的定版与 tag 随核心的
// **正式** tag 一起做(§七.3)。在那之前 1.2.0 仍是 SDK 尚未发布的中版本,
// 所以 main 就停在 1.2.0。
//
// 注意:这里与核心 main **故意不对称**。核心一旦切出 release/v1.2.x
// 1.2.0 就归发布线所有main 立刻推进到 1.3.0;而 SDK 因为要等正式 tag
// 它的 main 在 v1.2.0 打出来之前不得越过 1.2.0。
// (曾误按 §七.4 把这里推到 1.3.0,等于宣称 1.2.0 已发布。)
Version = "1.2.0"
// Commit 是构建时的 Git commit hash。