Merge commit 'refs/codex/unblock/master-current' into HEAD
# Conflicts: # docs/config-catalog.md # packages/session-persistence/session-persistence-jsonl/README.md # packages/session-persistence/session-persistence-jsonl/src/index.ts # packages/session-persistence/session-persistence-jsonl/tests/jsonl.spec.ts
This commit is contained in:
+1
-1
@@ -24,7 +24,7 @@ If an LLM adapter browser or dynamic model-picker needs this signal later, reint
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## Verification
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`llm/adapter-change` and its emits are gone and the regenerated cordis catalog is fresh; HMR-safety holds (disposing a contributing fiber removes the adapter); `tools/change` and `system-prompt/change` remain documented and tested; and no production path changed observable behavior — the ACP snapshot expected outputs and the echo-agent smoke are byte-unchanged.
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`llm/adapter-change` and its emits are gone and the regenerated cordis catalog is fresh; HMR-safety holds (disposing a contributing fiber removes the adapter); `tools/change` and `system-prompt/change` remain documented and tested; and the ACP snapshots plus the keyless Headless Loader smoke pin the unchanged production paths.
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## Consequences
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@@ -2,6 +2,8 @@
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Status: implemented
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The later [redundant-agent removal](2026-07-20-remove-stdio-and-echo-agents.md) supersedes this package-placement decision and removes the folded package, app, and line-oriented surface entirely.
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## Problem
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The readline UI was a whole package (`@deepseek-ai/dsh-ui-stdio` under `packages/support/`) whose only runtime importer was the app package `@deepseek-ai/dsh-stdio-demo`. The examples reach the readline UI by loading the app, never by composing the helper themselves; every other repo reference was mechanical or descriptive surface that existed BECAUSE the package boundary existed — manifest and tsconfig entries, generated module-graph rows, dependency-graph and README rows, and doc comments naming the package. The ui group README recorded the support placement rationale ("exists chiefly for the examples and the coverage gate — `ui/` is reserved for surfaces shipped as product"), which left a standing tension: a shipped product app depending on a support package documented as NOT product surface.
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@@ -10,9 +12,9 @@ The boundary bought package metadata, workspace and tsconfig references, module-
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## Decision
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The helper lives in `@deepseek-ai/dsh-stdio` as the terminal-channel plugin (`packages/ui/stdio/src/index.ts`): `createStdioChat`, its `StdioRuntime` test seam, and its unit tests (`packages/ui/stdio/tests/stdio.spec.ts`, `readline.spec.ts`) moved with it, so EOF handling, rendering, disposal, and piped-vs-TTY behavior stay unit-covered under the per-file coverage gate without hijacking process globals. The module keeps the named `name`/`inject`/`Config`/`apply` export shape — the contract the app's `ctx.plugin(uiStdio, …)` mount consumes — and the keyless Loader-path smokes in `examples/echo-agent` and `examples/repl-agent` keep proving the composed tree boots through the real Loader (the stdio package's plugin-shape unit suite pins the explicit `unwrapExports` assertion, since a bundle without `inject` would boot past a stray default rather than crash).
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At the time, the helper moved into `@deepseek-ai/dsh-stdio` as the terminal-channel plugin. `createStdioChat`, its `StdioRuntime` test seam, and its unit tests moved with it, keeping EOF handling, rendering, disposal, and piped-vs-TTY behavior under the per-file coverage gate without hijacking process globals. The module kept the named `name`/`inject`/`Config`/`apply` export shape consumed by the app mount, while the then-current Echo and REPL Loader smokes proved the composed tree and the plugin-shape suite pinned explicit `unwrapExports` behavior. The superseding removal note above owns the current package and example state.
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The `packages/support/ui-stdio` package is gone: manifest, tsconfig references, module-graph rows, and README rows deleted; the doc comments that named the package (the example e2e module docs, `packages/README.md`, the support and todo READMEs, [the ui group README](../../../../packages/ui/README.md)) describe the in-package module.
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The earlier support helper package was removed: its manifest, tsconfig references, module-graph rows, and README rows disappeared, while the remaining documentation described the in-package module.
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## Alternatives considered
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@@ -0,0 +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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2026-07-17-one-send-one-turn.md: 86c056b53700d0e0c02e04a99cf044fb311f5840
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2026-07-17-one-send-one-turn.zh.md: 3ef9973480481d11d1183760c9fc1f3c247629f4
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@@ -0,0 +1,45 @@
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# Agent Note: Remove implicit batching from ordinary sends
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Status: implemented
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English | [中文](2026-07-17-one-send-one-turn.zh.md)
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## Problem
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Suppose a caller submits message A and then message B with two `Agent.send()` calls. Implicit batching can put A and B in one turn simply because both are waiting when the driver reads its queue. The caller made two calls, but the loop silently turns them into one unit of work.
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That grouping depends on timing rather than caller intent. Calls from one synchronous stack, neighboring microtasks, event listeners, and model callbacks could be grouped differently even though every caller used the same API.
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This grouping changes behavior, not just the number of model calls. One ordinary turn owns prompt admission, `turn/start`, `turn/end`, and a durability checkpoint. If message B shares message A's turn, B can enter A's model request instead of first seeing A's closed result in the session log. Allowing one message while blocking another also requires a mixed state that no caller requested.
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## Decision
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The rule is simple: each successful `send()` creates one independent FIFO queue item. If that item runs, it is the only ordinary message in its turn. An item can be dropped before it starts, so the precise guarantee is at most one turn rather than exactly one; two sends are never silently combined.
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Before enqueueing an item, `send()` checks the agent state and makes a detached, deeply frozen snapshot of the content and resolved source. After enqueueing it, `send()` publishes `agent/queued`.
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If messages A and B are both processed, B's turn starts only after A records `turn/end` and A's durability checkpoint settles. B's request therefore sees whatever closed result A left in the same session log. A checkpoint error is reported, but settlement only releases this ordering barrier; it does not make a failed write durable. Broad `cancel()`, disposal, or a failure before `turn/start` can instead discard an unstarted item without opening an empty turn.
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Prompt admission decides one message at a time. An allowed prompt becomes that turn's `user/message`; a blocked prompt records one durable `prompt/blocked` and closes its one-message turn as `rejected`. Mixed-batch and all-blocked-batch branches do not exist.
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The no-batching rule applies only to ordinary `send()`. Running `steer()` puts input in a separate steering FIFO. While a turn remains open, the loop records that input at the next steering checkpoint, which comes before either a model request or the decision whether to continue. Steering makes another step the default, but continuation or terminal policy can still stop before the step starts. Steering left after the turn closes and its durability checkpoint settles becomes later queued input; terminal `agent/turn-stop`, cancellation, or disposal can discard it. When the agent is idle, `steer()` delegates to `send()`, so it creates an independent ordinary queue item.
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`inject()` continues to add model-facing context without submitting an ordinary message; its existing turn-enclosure and flush behavior stays unchanged. `cancel()` remains a whole-agent operation that can clear all unstarted ordinary and steering input and abort the current step. `status` and `whenIdle()` also describe the whole agent, not one message. Several one-message turns can share one `running` interval, including turn close and its checkpoint, so `running` does not prove that a turn is open.
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## Alternatives considered
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**Keep automatic ordinary-send batching to reduce model calls.** This can improve throughput when producers outpace the driver, but it makes turn boundaries depend on scheduling and lets a later message run before the preceding turn closes and reaches its checkpoint. The decision keeps the predictable boundary and accepts the extra calls. Any future batching feature needs an explicit caller-visible contract backed by measurements.
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## Verification
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- Unit and property tests submit sends from the same stack, neighboring microtasks, different producers, and reentrant callbacks; every message gets its own FIFO-ordered turn.
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- A built-stdio test submits two lines and observes two model requests and two turn boundaries.
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- Delayed and rejected first-turn checkpoints keep the next turn waiting and prove that its request sees the preceding assistant result.
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- Failure-path tests cover prompt veto, listener failure, broad cancellation, disposal, and failure before `turn/start`; recorded turns stay balanced, messages do not merge, and surviving queued work still drains.
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- Separate tests cover open-turn, post-turn-close, and idle `steer()`, plus `inject()`, whole-agent status, and `whenIdle()`.
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## Consequences
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Ordinary turn boundaries are predictable: messages A and B stay separate, and B runs only after A has closed and reached its checkpoint. Callers still do not receive a per-send completion or cancellation handle; broad cancellation can discard the entire unstarted tail, while status and quiescence remain agent-wide observations.
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The trade-off is more model requests and more checkpoints. A busy queue can take longer to drain and can grow under sustained producers. Ordinary-send batching returns only through an explicit, measured contract.
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# Agent Note: 删除普通 send 的隐式批处理
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Status: implemented
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[English](2026-07-17-one-send-one-turn.md) | 中文
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## 问题
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假设调用方连续两次调用 `Agent.send()`,先提交消息 A,再提交消息 B。隐式批处理可能只因为驱动器读取队列时两条消息都在等待,就把 A、B 放进同一个轮次。调用方明明调用了两次,agent loop(智能体循环)却悄悄把它们变成一个工作单元。
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这种分组取决于运行时机,而不是调用方的意图。因此,即使所有调用方使用相同 API,来自同一个同步调用栈、相邻微任务、事件监听器和模型回调的调用也可能产生不同分组。
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这种分组改变的不只是模型调用次数。一个普通轮次包含提示词准入、`turn/start`、`turn/end` 和持久性检查点。如果消息 B 与消息 A 共用轮次,B 可能直接进入 A 的模型请求,而不是先看到 A 在会话日志中已经关闭的结果。若系统允许一条消息、阻止另一条消息,还需要引入调用方没有请求的混合状态。
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## 决策
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规则很简单:一次成功的 `send()` 创建一个独立的 FIFO 队列项。该队列项如果运行,就是所在轮次中唯一的普通消息。队列项可能在启动前被丢弃,因此精确保证是最多一个轮次,而不是必定一个轮次;两次 send 绝不会被悄悄合并。
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队列项入队之前,`send()` 会检查 agent 状态,并为内容和解析后的来源创建一份脱离调用方对象、经过深度冻结的快照。队列项入队之后,`send()` 发布 `agent/queued`。
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如果消息 A、B 都进入处理,B 的轮次只能在 A 记录 `turn/end` 且 A 的持久性检查点处理结束后开始。因此,B 的请求能看到 A 在同一会话日志中留下的已关闭结果。检查点错误会照常报告,但处理结束只表示解除这道顺序屏障,不表示失败的写入已经持久化。广义 `cancel()`、dispose(资源释放)或 `turn/start` 之前的失败也可能丢弃尚未启动的队列项,而不打开一个空轮次。
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提示词准入每次只决定一条消息。获准提示词成为该轮次的 `user/message`;被阻止的提示词记录一条持久的 `prompt/blocked`,并让自己的单消息轮次以 `rejected` 关闭。实现中不存在混合批次或全阻止批次分支。
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上述不合批规则只适用于普通 `send()`。agent 运行时,`steer()` 会把输入放入独立的 steering(中途引导)FIFO。只要当前轮次仍然打开,agent loop 就会在下一个 steering 检查点记录该输入;该检查点位于模型请求或继续轮次的决策之前。收到 steering 会把再执行一步作为默认选择,但继续轮次的策略或终止策略仍可在该步骤开始前停止。轮次关闭且其持久性检查点处理结束后,剩余的 steering 会成为后续排队输入;终止性的 `agent/turn-stop`、取消或 dispose 可以将其丢弃。agent 空闲时,`steer()` 委托给 `send()`,因此会创建一个独立的普通队列项。
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`inject()` 继续添加面向模型的上下文,而不提交普通消息;其现有的轮次封闭与持久化刷新行为保持不变。`cancel()` 仍是面向整个 agent 的操作,可以清空所有尚未启动的普通输入和 steering,并中止当前步骤。`status` 和 `whenIdle()` 描述的也是整个 agent,而不是某一条消息。多个单消息轮次可以共用一个 `running` 区间,该区间还可能覆盖轮次关闭及其检查点,因此 `running` 不表示轮次一定处于打开状态。
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## 曾考虑的替代方案
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**保留普通 send 的自动批处理,以减少模型调用。** 当消息进入队列的速度超过驱动器的处理速度时,这种做法可以提高吞吐量,但会让轮次边界取决于调度,并让后一条消息在前一轮关闭且到达检查点之前运行。本决策保留可预测的边界,并接受额外调用。未来若要加入批处理功能,必须提供调用方可见的显式契约,并有测量结果作为依据。
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## 验证
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- 单元测试和性质测试从同一调用栈、相邻微任务、不同生产方和重入回调提交 send;每条消息都会得到一个按 FIFO 排序的独立轮次。
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- stdio 构建产物测试提交两行输入,并观察到两个模型请求和两个轮次边界。
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- 延迟和拒绝第一个轮次的检查点,都能让下一个轮次保持等待,并证明其请求可以看到前一条助手结果。
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- 失败路径测试覆盖提示词否决、监听器失败、广义取消、dispose 和 `turn/start` 之前的失败;已记录的轮次保持边界平衡,消息不会合并,仍需处理的排队工作也能继续清空。
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- 其他测试分别覆盖轮次打开时、轮次关闭后和空闲时的 `steer()`,以及 `inject()`、面向整个 agent 的状态和 `whenIdle()`。
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## 后果
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普通轮次的边界可预测:消息 A、B 始终分开,B 只能在 A 关闭并到达检查点后运行。调用方仍然拿不到逐次 send 的完成或取消句柄;广义取消可以丢弃整个尚未启动的队尾,状态和静止性也仍是面向整个 agent 的观察。
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代价是模型请求和检查点都会增加。繁忙队列可能需要更长时间才能清空;如果生产方持续提交消息,队列也可能增长。只有建立显式且经过测量的契约后,才能重新引入普通 send 批处理。
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+6
@@ -0,0 +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;
|
||||
# after editing either side, bring the other along and re-record with:
|
||||
# pnpm run verify-translation-pairing --write
|
||||
2026-07-20-remove-stdio-and-echo-agents.md: 2aba8193710c96d3726b91062bfa43d039b4cabf
|
||||
2026-07-20-remove-stdio-and-echo-agents.zh.md: 2c3916683f4743384a2ce4104319da26145837fe
|
||||
@@ -0,0 +1,45 @@
|
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# Agent Note: Remove the stdio and Echo agents
|
||||
|
||||
Status: implemented
|
||||
|
||||
English | [中文](2026-07-20-remove-stdio-and-echo-agents.zh.md)
|
||||
|
||||
## Problem
|
||||
|
||||
DeepSeek Harness exposed two redundant product agents beside the TUI and Headless coding agents. The line-oriented stdio agent duplicated terminal interaction and non-interactive execution with a mixed prompt/output protocol. Echo duplicated Headless as a network-free mock model plus one teaching tool, making a test fixture into a user-facing agent and the default quick-start path.
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||||
|
||||
Both agents carried support surfaces beyond their leaf configurations. Stdio owned a UI plugin, app package, SDK interface, REPL leaf, prompt protocol, and Loader tests. Echo owned a runnable command, mock adapter, tool, CI demo gate, graph entry, teaching references, and a shared test fixture. Keeping any of those product paths would preserve the redundant agent indirectly.
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||||
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||||
Standard input and output remain protocol boundaries for ACP, JSON-RPC, MCP, and child processes. Deterministic model adapters also remain valid inside tests. Those mechanisms do not justify a line-oriented or mock-only product agent.
|
||||
|
||||
## Decision
|
||||
|
||||
The stdio and Echo agents are removed without compatibility packages, modes, commands, or aliases. The stdio UI and app packages, `examples/repl-agent`, `examples/echo-agent`, `demo:repl`, `demo:echo`, their dedicated tests, and supporting manifests, gates, graphs, and documentation entries are deleted.
|
||||
|
||||
The remaining application roles are explicit:
|
||||
|
||||
- [`@deepseek-ai/dsh-tui-demo`](../../../../packages/examples/tui-demo/README.md) owns terminal-interactive execution. `examples/tui-agent` owns the complete coding composition, Code Mode overlay, PTY coverage, and terminal snapshots.
|
||||
- [`@deepseek-ai/dsh-cli-demo`](../../../../packages/examples/cli-demo/README.md) owns non-interactive execution. `examples/headless-agent` owns the real-model one-shot composition, replay snapshots, generic real-agent suites, and test-only keyless Loader fixtures.
|
||||
- [`@deepseek-ai/dsh-acp-demo`](../../../../packages/examples/acp-demo/README.md) and `@deepseek-ai/dsh-jsonrpc` own their framed protocol integrations.
|
||||
|
||||
The SDK project model and create/config workflows replace the `stdio` run-interface option with `tui`; generated TUI projects compose `@deepseek-ai/dsh-tui` and create or resume one exact session. Repository-facing demo documentation requires a DeepSeek API key and leads with the real Headless or TUI agents.
|
||||
|
||||
Keyless validation is test-owned. The Headless Loader smoke uses a fixture adapter to exercise a real tool round trip, the CLI built-bin suite pins output, persistence, failure, and signal semantics, and package-specific Loader tests keep deterministic adapters beside their scenarios. None is exposed as a runnable mock agent.
|
||||
|
||||
## Verification
|
||||
|
||||
TUI and Headless Loader coverage run the real app packages in source and built modes. TUI uses a pseudo-terminal; Headless proves its task/result and tool-call contracts. Generated graphs and repository searches reject stale package, command, leaf, and SDK-interface references.
|
||||
|
||||
## Alternatives considered
|
||||
|
||||
- **Keep the line agent only for pipes** — rejected because Headless has a bounded task contract, format-pure stdout, durable completion, and process exit status.
|
||||
- **Keep Echo as the keyless quick start** — rejected because the first product experience should exercise the real model and supported coding agent, not a scripted adapter with a bespoke tool.
|
||||
- **Keep Echo only as a CI demo command** — rejected because test-owned Headless fixtures cover the same Loader and built-artifact boundaries without preserving a mock product leaf.
|
||||
- **Remove every stdio or mock mechanism** — rejected because framed protocols, process I/O, and deterministic test adapters are independent infrastructure, not the removed agents.
|
||||
|
||||
## Consequences
|
||||
|
||||
- Interactive and non-interactive product execution each have one owner and one runnable coding leaf.
|
||||
- The repository has no keyless user-facing agent demo; local agent demos require `DEEPSEEK_API_KEY`.
|
||||
- CI retains keyless real-entry coverage through test fixtures rather than a product command.
|
||||
- Existing stdio-agent configurations, Echo commands, and SDK `--interface=stdio` invocations fail instead of being translated.
|
||||
+45
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||||
# Agent Note: 移除 stdio 和 Echo agent
|
||||
|
||||
Status: implemented
|
||||
|
||||
[English](2026-07-20-remove-stdio-and-echo-agents.md) | 中文
|
||||
|
||||
## 问题
|
||||
|
||||
DeepSeek Harness 在 TUI 和 Headless coding agent 之外,还提供了两个重复的产品 agent(智能体)。面向行的 stdio agent 使用混合的提示符/输出协议,同时重复实现终端交互与非交互执行。Echo 则以无需联网的 mock 模型加一个教学工具重复实现 Headless,把测试 fixture(测试前置数据)变成面向用户的 agent 和默认快速上手路径。
|
||||
|
||||
两个 agent 的配套实现都不止叶节点配置。stdio 拥有 UI 插件、app 包(package)、SDK 接口、REPL 叶节点、提示符协议和 Loader 测试。Echo 拥有可运行命令、mock 适配器、工具、CI 演示门禁、图谱条目、教学引用和共享测试 fixture。保留其中任何产品路径,都会间接保留这个重复的 agent。
|
||||
|
||||
标准输入输出仍是 ACP、JSON-RPC、MCP 和子进程的协议边界。确定性模型适配器也仍可用于测试。这些机制不足以成为保留面向行或仅使用 mock 的产品 agent 的理由。
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||||
|
||||
## 决策
|
||||
|
||||
彻底移除 stdio 和 Echo agent,不提供兼容包、模式、命令或别名。删除 stdio UI 包与 app 包、`examples/repl-agent`、`examples/echo-agent`、`demo:repl`、`demo:echo`、各自的专属测试,以及相关的 manifest(元数据清单)、门禁、图谱和文档条目。
|
||||
|
||||
保留的应用角色均有明确归属:
|
||||
|
||||
- [`@deepseek-ai/dsh-tui-demo`](../../../../packages/examples/tui-demo/README.md) 负责终端交互式执行。`examples/tui-agent` 拥有完整 coding 组装、Code Mode 覆盖层、PTY 覆盖和终端快照。
|
||||
- [`@deepseek-ai/dsh-cli-demo`](../../../../packages/examples/cli-demo/README.md) 负责非交互式执行。`examples/headless-agent` 拥有真实模型的单次任务组装、回放快照、通用真实 agent 测试套件,以及仅供测试使用的无密钥 Loader fixture。
|
||||
- [`@deepseek-ai/dsh-acp-demo`](../../../../packages/examples/acp-demo/README.md) 和 `@deepseek-ai/dsh-jsonrpc` 负责各自的分帧协议集成。
|
||||
|
||||
SDK 工程模型与 create/config 工作流将 `stdio` 运行接口选项替换为 `tui`;生成的 TUI 工程组合 `@deepseek-ai/dsh-tui`,并创建或恢复一个确切会话。仓库中的演示文档要求 DeepSeek API key,并优先引导到真实的 Headless 或 TUI agent。
|
||||
|
||||
无密钥验证由测试负责。Headless Loader 冒烟测试使用 fixture 适配器验证真实工具往返;CLI built-bin 测试套件固定输出、持久化、失败和信号语义;各包专属的 Loader 测试则将确定性适配器放在对应场景旁。其中任何一项都不会作为可运行的 mock agent 对外暴露。
|
||||
|
||||
## 验证
|
||||
|
||||
TUI 与 Headless 的 Loader 覆盖以源码和构建产物两种模式运行真实 app 包。TUI 使用伪终端;Headless 验证任务/结果契约和工具调用契约。生成图谱与仓库搜索会拒绝陈旧的包、命令、叶节点和 SDK 接口引用。
|
||||
|
||||
## 曾考虑的替代方案
|
||||
|
||||
- **仅为 pipe 保留面向行 agent**:不予采纳,因为 Headless 已提供有界任务契约、格式纯净的 stdout、持久完成边界和进程退出状态。
|
||||
- **保留 Echo 作为无密钥快速上手路径**:不予采纳,因为首次产品体验应使用真实模型和受支持的 coding agent,而不是带专用工具的脚本化适配器。
|
||||
- **只为 CI 演示命令保留 Echo**:不予采纳,因为由测试持有的 Headless fixture 可以覆盖相同的 Loader 和构建产物边界,无需保留 mock 产品叶节点。
|
||||
- **移除所有 stdio 或 mock 机制**:不予采纳,因为分帧协议、进程 I/O 和确定性测试适配器是独立基础设施,并不是被移除的 agent。
|
||||
|
||||
## 后果
|
||||
|
||||
- 交互式与非交互式产品执行分别只有一个归属方和一个可运行的 coding 叶节点。
|
||||
- 仓库没有面向用户的无密钥 agent 演示;本地 agent 演示需要 `DEEPSEEK_API_KEY`。
|
||||
- CI 通过测试 fixture 保留针对真实入口的无密钥覆盖,而不是依赖产品命令。
|
||||
- 既有 stdio agent 配置、Echo 命令和 SDK `--interface=stdio` 调用会直接失败,不会被转换。
|
||||
Reference in New Issue
Block a user