refactor: rename the backend to dsh-subagent-dsh-sdk
The group's convention is package suffix == provider default (subagent-acp/'acp', subagent-spawn/'spawn', subagent-fork/'fork'), and the provider default became dsh-sdk in the last review round — so the package follows: @deepseek-ai/dsh-subagent-dsh-sdk at packages/subagent/subagent-dsh-sdk, plugin name subagent-dsh-sdk, diagnostics prefixed subagent-dsh-sdk:. The dsh echo has precedent (dsh-llm-deepseek). Directory, fixture path, knip/tsconfig/examples registrations, catalogs, READMEs (en+zh), and the Agent Note follow; the sdk-client dispose ladder moves to its own module (src/dispose.ts) with the deterministic FakeChild tier tests restored alongside it.
This commit is contained in:
@@ -1,6 +1,6 @@
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# Bilingual-pair consistency record (docs/i18n/README.md): the git blob hash of each
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# side as of the last confirmed-consistent state. Both languages carry equal authority;
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# after editing either side, bring the other along and re-record with:
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# pnpm run verify-translation-pairing --write
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2026-07-27-typescript-sdk-and-sdk-subagent-backend.md: b0a5461b00c76e06a75d9ac4bd8cde9778a26ce8
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2026-07-27-typescript-sdk-and-sdk-subagent-backend.zh.md: 856db82f6d47ee686216c8ef5f91048493a90801
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# pnpm run verify-translation-pairing --write .agents/notes/implemented/feature/2026-07-27-typescript-sdk-and-sdk-subagent-backend.md
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2026-07-27-typescript-sdk-and-sdk-subagent-backend.md: a1481bb9e2c3abfc3111dce8a1c38835436e3e13
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2026-07-27-typescript-sdk-and-sdk-subagent-backend.zh.md: 64a55f6aa0cb4b9a4a5efc625ece6a0800217f52
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@@ -13,9 +13,9 @@ The stdio JSON-RPC serving surface (`@deepseek-ai/dsh-jsonrpc`, the [single-exe
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Three packages, layered exactly like the existing Python stack, plus one seam registration:
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- **`@deepseek-ai/dsh-sdk-protocol`** (`packages/sdk/sdk-protocol/`) — the wire made shared and nominal. `JsonRpcLineTransport` moves here verbatim from `dsh-jsonrpc` (which now imports it), and `types.ts` names every payload the server speaks: `InitializeParams/Result`, `SessionPromptParams/Result`, the four notification payloads, and the `HarnessSdkRequestMap`/`HarnessSdkNotificationMap` indexes. The server's `notify()` call sites are typed against these named payloads, so server drift breaks compilation, not clients. One behavioral change: an error response now rejects with `JsonRpcResponseError` carrying the wire `code`/`data` (the Python client already preserved these; the old transport threw a bare `Error` with only the message).
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- **`@deepseek-ai/dsh-sdk-client`** (`packages/sdk/sdk-client/`) — the TypeScript twin of `python/sdk`: `HarnessClient` (spawn, frame, fan out notifications, typed error surfaces, close-to-quiescence via the shared dispose ladder) under `DeepSeekHarness`/`HarnessSession` (lazy start, memoized `initialize`, `run()` pairing one `session/prompt` with its `session.finished`). Session-tree scoping from `subagent.started` lineage edges is client-side, mirroring `client.py`. Deliberate asymmetries with Python: the launch spec is explicit `command`/`args` (no bundled-runtime resolution — that is a distribution concern with no TS consumer yet); `env` replaces rather than merges (callers own credential policy; `buildChildEnv` is one import away); `TurnResult` carries the structured `reason` (Python exposes only `status`); teardown reuses `disposeChildProcess` instead of hand-rolled terminate/kill.
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- **`@deepseek-ai/dsh-subagent-sdk`** (`packages/subagent/subagent-sdk/`) — the second out-of-process `SubagentProvider`, structured as `subagent-acp`'s sibling: same all-false capabilities and `inheritsParentContext: false`, same publish-after-handshake ownership transaction, same result-never-rejects flattening through an `onError` sink, same parent-namespace run id. The child answer is read from streamed `session.event`s — the last complete `assistant/message`, else accumulated `text-delta` chunks, so partial answers survive cancellation. Stop reasons map from the child's structured `TurnEndReason` (`completed`/`max-tokens`/`aborted` pass through; everything else, including a settled-without-turn child, is `error`). Its `provider`/`model` config feeds the child's `initialize`; `env` is where deployments pass the child's own key and `DSH_CORDIS_CONFIG`.
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- **`dsh-subagent-subprocess` grows a third shared concern**: child cwd resolution (`assertUsableCwd`/`validateConfiguredCwd`/`resolveChildCwd`), extracted from `subagent-acp` when the SDK backend needed the identical config-override-else-parent-session-cwd policy, prefix-parameterized for diagnostics.
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- **`@deepseek-ai/dsh-sdk-client`** (`packages/sdk/sdk-client/`) — the TypeScript twin of `python/sdk`: `HarnessClient` (spawn, frame, fan out notifications, typed error surfaces, close-to-quiescence via the shared dispose ladder) under `DeepSeekHarness`/`HarnessSession` (lazy start, memoized `initialize`, `run()` pairing one `session/prompt` with its `session.finished`). Session-tree scoping from `subagent.started` lineage edges is client-side, mirroring `client.py`. Deliberate asymmetries with Python: the launch spec is explicit `command`/`args` (no bundled-runtime resolution — that is a distribution concern with no TS consumer yet); `env` replaces rather than merges (callers own credential policy; `scrubbedParentEnv` from the subprocess seam is one import away); `TurnResult` carries the structured `reason` (Python exposes only `status`); teardown walks a private stdin-EOF → SIGTERM → SIGKILL ladder to actual exit (the client runs outside any harness context, so it cannot ride `ctx.subprocess`).
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- **`@deepseek-ai/dsh-subagent-dsh-sdk`** (`packages/subagent/subagent-dsh-sdk/`) — the second out-of-process `SubagentProvider`, structured as `subagent-acp`'s sibling: same all-false capabilities and `inheritsParentContext: false`, same publish-after-handshake ownership transaction, same result-never-rejects flattening through an `onError` sink, same parent-namespace run id. The child answer is read from streamed `session.event`s — the last complete `assistant/message`, else accumulated `text-delta` chunks, so partial answers survive cancellation. Stop reasons map from the child's structured `TurnEndReason` (`completed`/`max-tokens`/`aborted` pass through; everything else, including a settled-without-turn child, is `error`). Its `provider`/`model` config feeds the child's `initialize`; `env` is where deployments pass the child's own key and `DSH_CORDIS_CONFIG`.
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- **The subagent seam grows `out-of-process.ts`**: the provider-side vocabulary both out-of-process backends share — `NO_START_CAPABILITIES`, timing-bound validation, child cwd resolution (config override, else the delegating parent session's workspace), the never-reject `settleRunResult`, and the `subprocessRunHandle` publication. Process mechanics (spawn, env scrub, tree-scoped teardown) live in the `dsh-subprocess` seam; `subagent-acp` spawns through `ctx.subprocess`, while this backend spawns through the SDK client (the subprocess README's documented exception for SDK-managed transports) and applies the seam's `scrubbedParentEnv()` itself.
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`dsh-jsonrpc` keeps serving unchanged (the wire is byte-identical); `dsh-jsonrpc-agent-pkg` (the Python runtime closure) gains the `dsh-sdk-protocol` dependency line.
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@@ -23,18 +23,18 @@ Three packages, layered exactly like the existing Python stack, plus one seam re
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Four tiers, per [testing policy](../../../../docs/testing.md):
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- **Keyless unit** — `sdk-client` drives a scripted fake runtime (`tests/fake-runtime.ts`, env-scripted, protocol-only — the Python `test_client.py` pattern) over real stdio; `subagent-sdk` drives the same fake through the real provider. 100% per-file coverage on all three packages.
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- **Keyless Loader composition** — `subagent-sdk/tests/loader-composition.e2e.ts` boots a test-only cordis.yml (`examples/jsonrpc-agent/tests/fixtures/subagent/subagent-sdk/`) where the child is a REAL second harness runtime with its own cordis.yml; asserts the parent tool result and the child's own persisted transcript both carry the parent session's cwd. The child launch resolves through `resolveExampleLaunch`, so src/lib modes both hold.
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- **Keyless unit** — `sdk-client` drives a scripted fake runtime (`tests/fake-runtime.ts`, env-scripted, protocol-only — the Python `test_client.py` pattern) over real stdio; `subagent-dsh-sdk` drives the same fake through the real provider. 100% per-file coverage on all three packages.
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- **Keyless Loader composition** — `subagent-dsh-sdk/tests/loader-composition.e2e.ts` boots a test-only cordis.yml (`examples/jsonrpc-agent/tests/fixtures/subagent/subagent-dsh-sdk/`) where the child is a REAL second harness runtime with its own cordis.yml; asserts the parent tool result and the child's own persisted transcript both carry the parent session's cwd. The child launch resolves through `resolveExampleLaunch`, so src/lib modes both hold.
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- **Keyless snapshot** — `examples/jsonrpc-agent/tests/sdk.snapshot.ts` is the jsonrpc example's first snapshot suite: the real `dsh-jsonrpc-agent` runtime driven through the real `dsh-sdk-client`, replaying recorded fixtures via `llm-replay` behind the new `cordis.snapshot.yml` overlay (passed explicitly through `DSH_CORDIS_CONFIG`; the jsonrpc bin performs no snapshot config swap of its own). Three scenarios — text turn, bash tool, spawn subagent — each pinning the normalized notification stream, the SDK turn result, and the persisted parent+child logs. This also closes the protocol-tier gap the single-exe note's Python-side snapshot left on the vitest side.
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- **With-key e2e** — the snapshot suite's `DSH_SNAPSHOT=record` mode is the live-API path (it produced the committed fixtures); the composition e2e needs no key by design.
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## Alternatives considered
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**Import wire types from `dsh-jsonrpc` instead of extracting a protocol package.** Makes every SDK consumer (including `subagent-sdk`, which must not serve JSON-RPC) depend on the server plugin and its `dsh-agent`/`dsh-llm-deepseek` peer set, and leaves the notification payloads anonymous. The capability-seam rule (interface/implementation/consumer as separate packages) already names this shape; the transport is genuinely two-sided.
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**Import wire types from `dsh-jsonrpc` instead of extracting a protocol package.** Makes every SDK consumer (including `subagent-dsh-sdk`, which must not serve JSON-RPC) depend on the server plugin and its `dsh-agent`/`dsh-llm-deepseek` peer set, and leaves the notification payloads anonymous. The capability-seam rule (interface/implementation/consumer as separate packages) already names this shape; the transport is genuinely two-sided.
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**Have `subagent-sdk` speak raw JSON-RPC without the client SDK.** Duplicates the request/notification pairing, subscription fan-out, timeout, and teardown logic the SDK exists to own; the user's ask was explicitly a backend that *uses* the SDK, and the layering earns its keep by making the backend ~200 lines of policy over a reusable client.
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**Have `subagent-dsh-sdk` speak raw JSON-RPC without the client SDK.** Duplicates the request/notification pairing, subscription fan-out, timeout, and teardown logic the SDK exists to own; the user's ask was explicitly a backend that *uses* the SDK, and the layering earns its keep by making the backend ~200 lines of policy over a reusable client.
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**Fold the SDK backend into `subagent-acp` with a transport switch.** The two backends share the subprocess lifecycle but nothing about the wire (ACP SDK connection vs harness JSON-RPC), the child contract (any ACP agent vs a harness runtime), or the result extraction (`agent_message_chunk` accumulation vs session-event reading). A config discriminant would bury two protocols in one package; the shared parts are exactly what `subagent-subprocess` already holds, so that library grew instead.
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**Fold the SDK backend into `subagent-acp` with a transport switch.** The two backends share the subprocess lifecycle but nothing about the wire (ACP SDK connection vs harness JSON-RPC), the child contract (any ACP agent vs a harness runtime), or the result extraction (`agent_message_chunk` accumulation vs session-event reading). A config discriminant would bury two protocols in one package; the genuinely shared provider-side parts moved into the subagent seam's `out-of-process.ts`, and the process mechanics live in the `dsh-subprocess` seam.
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**Give the TS SDK bundled-runtime resolution parity with Python.** Python's carrier resolution exists to ship wheels to users without Node. A TypeScript consumer definitionally has Node and (in-repo) the workspace; inventing a distribution story with no consumer violates the require-current-need rule. Deferred until a real npm-distribution consumer appears.
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@@ -13,9 +13,9 @@ stdio JSON-RPC 服务表面(`@deepseek-ai/dsh-jsonrpc`,见[单文件可执
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三个包,分层与既有 Python 栈完全一致,外加一个接缝注册:
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- **`@deepseek-ai/dsh-sdk-protocol`**(`packages/sdk/sdk-protocol/`)—— 把线协议做成共享且具名。`JsonRpcLineTransport` 从 `dsh-jsonrpc` 原样移入(后者现在导入它),`types.ts` 为服务器所说的每个载荷命名:`InitializeParams/Result`、`SessionPromptParams/Result`、四个通知载荷,以及 `HarnessSdkRequestMap`/`HarnessSdkNotificationMap` 索引。服务器的 `notify()` 调用点以这些具名载荷标注类型,服务器漂移会先破坏编译而不是破坏客户端。一处行为变化:错误响应现在以携带线上 `code`/`data` 的 `JsonRpcResponseError` 拒绝(Python 客户端本就保留这些;旧传输只抛携带消息的裸 `Error`)。
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- **`@deepseek-ai/dsh-sdk-client`**(`packages/sdk/sdk-client/`)—— `python/sdk` 的 TypeScript 孪生:`HarnessClient`(生成、分帧、通知扇出、有类型的错误表面、经共享处置阶梯关闭至静止)之上是 `DeepSeekHarness`/`HarnessSession`(惰性启动、记忆化 `initialize`、`run()` 把一个 `session/prompt` 与其 `session.finished` 配对)。基于 `subagent.started` 血缘边的会话树范围限定在客户端完成,镜像 `client.py`。与 Python 的刻意不对称:启动规格是显式 `command`/`args`(无捆绑运行时解析——那是尚无 TS 消费者的发行问题);`env` 整体替换而非合并(凭据策略归调用方;`buildChildEnv` 一个 import 即得);`TurnResult` 携带结构化 `reason`(Python 只暴露 `status`);拆除复用 `disposeChildProcess` 而不是手写 terminate/kill。
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- **`@deepseek-ai/dsh-subagent-sdk`**(`packages/subagent/subagent-sdk/`)—— 第二个进程外 `SubagentProvider`,以 `subagent-acp` 的同胞结构组织:同样的全 false 能力与 `inheritsParentContext: false`,同样的握手后发布所有权事务,同样的经 `onError` 汇把结果压平为绝不拒绝,同样的父命名空间 run id。子答案从流式 `session.event` 读取——最后一条完整 `assistant/message`,否则累积的 `text-delta` 块,部分答案在取消时得以保留。停止原因由子进程的结构化 `TurnEndReason` 映射(`completed`/`max-tokens`/`aborted` 直通;其余一切、包括未跑回合就尘埃落定的子进程,都是 `error`)。其 `provider`/`model` 配置喂给子进程的 `initialize`;`env` 是部署传入子进程自有密钥与 `DSH_CORDIS_CONFIG` 的地方。
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- **`dsh-subagent-subprocess` 增长出第三个共享关注点**:子进程 cwd 解析(`assertUsableCwd`/`validateConfiguredCwd`/`resolveChildCwd`),在 SDK 后端需要与 `subagent-acp` 完全相同的"配置覆盖、否则父会话 cwd"策略时从后者提取,以前缀参数化诊断信息。
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- **`@deepseek-ai/dsh-sdk-client`**(`packages/sdk/sdk-client/`)—— `python/sdk` 的 TypeScript 孪生:`HarnessClient`(生成、分帧、通知扇出、有类型的错误表面、经共享处置阶梯关闭至静止)之上是 `DeepSeekHarness`/`HarnessSession`(惰性启动、记忆化 `initialize`、`run()` 把一个 `session/prompt` 与其 `session.finished` 配对)。基于 `subagent.started` 血缘边的会话树范围限定在客户端完成,镜像 `client.py`。与 Python 的刻意不对称:启动规格是显式 `command`/`args`(无捆绑运行时解析——那是尚无 TS 消费者的发行问题);`env` 整体替换而非合并(凭据策略归调用方;subprocess 接缝的 `scrubbedParentEnv` 一个 import 即得);`TurnResult` 携带结构化 `reason`(Python 只暴露 `status`);拆除走私有的 stdin-EOF → SIGTERM → SIGKILL 阶梯直到真正退出(客户端运行在任何 harness 上下文之外,无法搭乘 `ctx.subprocess`)。
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- **`@deepseek-ai/dsh-subagent-dsh-sdk`**(`packages/subagent/subagent-dsh-sdk/`)—— 第二个进程外 `SubagentProvider`,以 `subagent-acp` 的同胞结构组织:同样的全 false 能力与 `inheritsParentContext: false`,同样的握手后发布所有权事务,同样的经 `onError` 汇把结果压平为绝不拒绝,同样的父命名空间 run id。子答案从流式 `session.event` 读取——最后一条完整 `assistant/message`,否则累积的 `text-delta` 块,部分答案在取消时得以保留。停止原因由子进程的结构化 `TurnEndReason` 映射(`completed`/`max-tokens`/`aborted` 直通;其余一切、包括未跑回合就尘埃落定的子进程,都是 `error`)。其 `provider`/`model` 配置喂给子进程的 `initialize`;`env` 是部署传入子进程自有密钥与 `DSH_CORDIS_CONFIG` 的地方。
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- **subagent 接缝增长出 `out-of-process.ts`**:两个进程外后端共享的 provider 侧词汇——`NO_START_CAPABILITIES`、时限校验、子进程 cwd 解析(配置覆盖、否则发起委托的父会话工作区)、绝不拒绝的 `settleRunResult`、以及 `subprocessRunHandle` 发布。进程机制(spawn、环境擦除、进程树拆除)属于 `dsh-subprocess` 接缝;`subagent-acp` 经 `ctx.subprocess` 生成子进程,本后端则经 SDK 客户端生成(subprocess README 记载的 SDK 托管传输例外)并自行应用接缝的 `scrubbedParentEnv()`。
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`dsh-jsonrpc` 的服务不变(线上字节完全一致);`dsh-jsonrpc-agent-pkg`(Python 运行时闭包)增加 `dsh-sdk-protocol` 一行依赖。
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@@ -23,18 +23,18 @@ stdio JSON-RPC 服务表面(`@deepseek-ai/dsh-jsonrpc`,见[单文件可执
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四层,依[测试政策](../../../../docs/testing.md):
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- **免密钥单元** —— `sdk-client` 通过真实 stdio 驱动脚本化伪运行时(`tests/fake-runtime.ts`,环境变量脚本化、纯协议——即 Python `test_client.py` 的模式);`subagent-sdk` 经真实 provider 驱动同一伪运行时。三个包全部 100% 逐文件覆盖。
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- **免密钥 Loader 组合** —— `subagent-sdk/tests/loader-composition.e2e.ts` 启动仅测试用 cordis.yml(`examples/jsonrpc-agent/tests/fixtures/subagent/subagent-sdk/`),其中子进程是真实的第二个 harness 运行时、带自己的 cordis.yml;断言父工具结果与子进程自己持久化的转录都携带父会话 cwd。子启动经 `resolveExampleLaunch` 解析,src/lib 两种模式都成立。
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- **免密钥单元** —— `sdk-client` 通过真实 stdio 驱动脚本化伪运行时(`tests/fake-runtime.ts`,环境变量脚本化、纯协议——即 Python `test_client.py` 的模式);`subagent-dsh-sdk` 经真实 provider 驱动同一伪运行时。三个包全部 100% 逐文件覆盖。
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- **免密钥 Loader 组合** —— `subagent-dsh-sdk/tests/loader-composition.e2e.ts` 启动仅测试用 cordis.yml(`examples/jsonrpc-agent/tests/fixtures/subagent/subagent-dsh-sdk/`),其中子进程是真实的第二个 harness 运行时、带自己的 cordis.yml;断言父工具结果与子进程自己持久化的转录都携带父会话 cwd。子启动经 `resolveExampleLaunch` 解析,src/lib 两种模式都成立。
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- **免密钥快照** —— `examples/jsonrpc-agent/tests/sdk.snapshot.ts` 是 jsonrpc 示例的第一个快照套件:真实 `dsh-jsonrpc-agent` 运行时经真实 `dsh-sdk-client` 驱动,在新的 `cordis.snapshot.yml` 覆盖层后经 `llm-replay` 回放已录制夹具(经 `DSH_CORDIS_CONFIG` 显式传入;jsonrpc bin 自身不做快照配置切换)。三个场景——文本回合、bash 工具、spawn 子代理——各自钉住规范化通知流、SDK 回合结果与持久化的父+子日志。这也补上了单文件可执行 Note 的 Python 侧快照在 vitest 侧留下的协议层缺口。
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- **带密钥 e2e** —— 快照套件的 `DSH_SNAPSHOT=record` 模式即真实 API 路径(已提交夹具由它产出);组合 e2e 设计上无需密钥。
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## Alternatives considered
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**从 `dsh-jsonrpc` 导入线类型而不是提取协议包。** 会让每个 SDK 消费者(包括绝不能提供 JSON-RPC 服务的 `subagent-sdk`)依赖服务器插件及其 `dsh-agent`/`dsh-llm-deepseek` peer 集合,且通知载荷仍然匿名。能力接缝规则(接口/实现/消费者三包分立)已经点名了这种形态;这个传输是货真价实的双边物。
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**从 `dsh-jsonrpc` 导入线类型而不是提取协议包。** 会让每个 SDK 消费者(包括绝不能提供 JSON-RPC 服务的 `subagent-dsh-sdk`)依赖服务器插件及其 `dsh-agent`/`dsh-llm-deepseek` peer 集合,且通知载荷仍然匿名。能力接缝规则(接口/实现/消费者三包分立)已经点名了这种形态;这个传输是货真价实的双边物。
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**让 `subagent-sdk` 直说裸 JSON-RPC、绕开客户端 SDK。** 会复制 SDK 存在意义所在的请求/通知配对、订阅扇出、超时与拆除逻辑;用户的要求明确是一个*使用* SDK 的后端,分层的回报是后端成为可复用客户端之上约 200 行的纯策略。
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**让 `subagent-dsh-sdk` 直说裸 JSON-RPC、绕开客户端 SDK。** 会复制 SDK 存在意义所在的请求/通知配对、订阅扇出、超时与拆除逻辑;用户的要求明确是一个*使用* SDK 的后端,分层的回报是后端成为可复用客户端之上约 200 行的纯策略。
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**把 SDK 后端折进 `subagent-acp`、用传输开关区分。** 两个后端共享子进程生命周期,但线协议(ACP SDK 连接 vs harness JSON-RPC)、子进程契约(任意 ACP 代理 vs harness 运行时)、结果提取(`agent_message_chunk` 累积 vs 会话事件读取)毫无共享。配置判别子会把两个协议埋进一个包;共享部分恰好就是 `subagent-subprocess` 已持有的,于是让那个库生长。
|
||||
**把 SDK 后端折进 `subagent-acp`、用传输开关区分。** 两个后端共享子进程生命周期,但线协议(ACP SDK 连接 vs harness JSON-RPC)、子进程契约(任意 ACP 代理 vs harness 运行时)、结果提取(`agent_message_chunk` 累积 vs 会话事件读取)毫无共享。配置判别子会把两个协议埋进一个包;真正共享的 provider 侧部分移入 subagent 接缝的 `out-of-process.ts`,进程机制则住在 `dsh-subprocess` 接缝。
|
||||
|
||||
**给 TS SDK 与 Python 对等的捆绑运行时解析。** Python 的载体解析是为了给没有 Node 的用户发 wheel。TypeScript 消费者定义上就有 Node 且(仓库内)有工作区;为不存在的消费者发明发行故事违反"要求当前需求"规则。推迟到真实 npm 发行消费者出现。
|
||||
|
||||
|
||||
Reference in New Issue
Block a user