mirror of
https://github.com/deepseek-ai/deepseek-harness
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Merge remote-tracking branch 'origin/master' into codex/pr332-merge-master-20260719
# Conflicts: # docs/cookbook/extension-cookbook.i18n.yaml
This commit is contained in:
@@ -2,5 +2,5 @@
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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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extension-cookbook.md: fc868e9151eed535d5dfb7c1428fbb85a1c27891
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extension-cookbook.zh.md: 760013276a142f59ab79770ab60a881b04faa5cf
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extension-cookbook.md: b7e5322fe76a7436adc4ed4a2a0dbed011425fd0
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extension-cookbook.zh.md: 8fb8afa963513098fd9bfd19e25923b362dc0cd3
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@@ -87,7 +87,7 @@ export function apply(ctx: Context) {
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## Runnable wirings
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Five runnable leaves load their plugin trees from `cordis.yml`: [`examples/echo-agent`](../../examples/echo-agent) (mock model + echo tool, `pnpm run demo:echo`), [`examples/coding-agent`](../../examples/coding-agent) (DeepSeek V4 + coding tools through a line-oriented readline REPL, `pnpm run demo:repl`), [`examples/tui-agent`](../../examples/tui-agent) (the same coding composition through full-screen pi-tui, `pnpm run demo:tui`), [`examples/cordis-agent`](../../examples/cordis-agent) (self-inspection and dynamic plugin mounting, `pnpm run demo:cordis`), and [`examples/acp-agent`](../../examples/acp-agent) (an ACP server over JSON-RPC stdio, `pnpm run demo:acp`). The terminal leaves load [`@deepseek-ai/dsh-stdio-demo`](../../packages/examples/stdio-demo), the ACP leaf loads [`@deepseek-ai/dsh-acp-demo`](../../packages/examples/acp-demo), and both app packages share the spine through [`@deepseek-ai/dsh-agent-spine-demo`](../../packages/examples/agent-spine-demo).
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Five runnable leaves load their plugin trees from `cordis.yml`: [`examples/echo-agent`](../../examples/echo-agent) (mock model + echo tool, `pnpm run demo:echo`), [`examples/repl-agent`](../../examples/repl-agent) (DeepSeek V4 + coding tools through a line-oriented readline REPL, `pnpm run demo:repl`), [`examples/tui-agent`](../../examples/tui-agent) (the same coding composition through full-screen pi-tui, `pnpm run demo:tui`), [`examples/cordis-agent`](../../examples/cordis-agent) (self-inspection and dynamic plugin mounting, `pnpm run demo:cordis`), and [`examples/acp-agent`](../../examples/acp-agent) (an ACP server over JSON-RPC stdio, `pnpm run demo:acp`). The terminal leaves load [`@deepseek-ai/dsh-stdio-demo`](../../packages/examples/stdio-demo), the ACP leaf loads [`@deepseek-ai/dsh-acp-demo`](../../packages/examples/acp-demo), and both app packages share the spine through [`@deepseek-ai/dsh-agent-spine-demo`](../../packages/examples/agent-spine-demo).
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## The feature → mechanism map
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@@ -87,7 +87,7 @@ export function apply(ctx: Context) {
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## 可运行的组装示例
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五个可运行叶子从 `cordis.yml` 加载各自的插件树:[`examples/echo-agent`](../../examples/echo-agent)(mock 模型 + echo 工具,`pnpm run demo:echo`)、[`examples/coding-agent`](../../examples/coding-agent)(DeepSeek V4 + coding 工具,通过面向行的 readline REPL 交互,`pnpm run demo:repl`)、[`examples/tui-agent`](../../examples/tui-agent)(通过全屏 pi-tui 复用相同的 coding 组装,`pnpm run demo:tui`)、[`examples/cordis-agent`](../../examples/cordis-agent)(自我检查和动态插件挂载,`pnpm run demo:cordis`)与 [`examples/acp-agent`](../../examples/acp-agent)(通过 JSON-RPC stdio 暴露的 ACP 服务器,`pnpm run demo:acp`)。终端叶子加载 [`@deepseek-ai/dsh-stdio-demo`](../../packages/examples/stdio-demo),ACP 叶子加载 [`@deepseek-ai/dsh-acp-demo`](../../packages/examples/acp-demo),两个 app 包通过 [`@deepseek-ai/dsh-agent-spine-demo`](../../packages/examples/agent-spine-demo) 共享主干。
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五个可运行叶子从 `cordis.yml` 加载各自的插件树:[`examples/echo-agent`](../../examples/echo-agent)(mock 模型 + echo 工具,`pnpm run demo:echo`)、[`examples/repl-agent`](../../examples/repl-agent)(DeepSeek V4 + coding 工具,通过面向行的 readline REPL 交互,`pnpm run demo:repl`)、[`examples/tui-agent`](../../examples/tui-agent)(通过全屏 pi-tui 复用相同的 coding 组装,`pnpm run demo:tui`)、[`examples/cordis-agent`](../../examples/cordis-agent)(自我检查和动态插件挂载,`pnpm run demo:cordis`)与 [`examples/acp-agent`](../../examples/acp-agent)(通过 JSON-RPC stdio 暴露的 ACP 服务器,`pnpm run demo:acp`)。终端叶子加载 [`@deepseek-ai/dsh-stdio-demo`](../../packages/examples/stdio-demo),ACP 叶子加载 [`@deepseek-ai/dsh-acp-demo`](../../packages/examples/acp-demo),两个 app 包通过 [`@deepseek-ai/dsh-agent-spine-demo`](../../packages/examples/agent-spine-demo) 共享主干。
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## 功能→机制映射
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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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development.md: 37811f7215001fc371ac4943fe109dd5512ea8b0
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development.zh.md: 5036e3e75516fcaf063675fc9ab4e63c1fca851a
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development.md: 452f4e82beaeacb23aa6bc3e7a60c0f2b1e2c95e
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development.zh.md: 2285482726c43aa02d31c7d2094e2058de1d3863
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@@ -109,13 +109,13 @@ The echo demo does not need API credentials:
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pnpm run demo:echo
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```
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The coding-agent REPL uses the line-oriented readline front door and needs `DEEPSEEK_API_KEY` in the environment or repo-root `.env`:
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The repl-agent demo uses the line-oriented readline front door and needs `DEEPSEEK_API_KEY` in the environment or repo-root `.env`:
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```sh
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pnpm run demo:repl
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```
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The full-screen TUI reuses the coding-agent composition through the pi-tui front door and needs the same credentials:
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The full-screen TUI reuses the repl-agent composition through the pi-tui front door and needs the same credentials:
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```sh
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pnpm run demo:tui
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pnpm run demo:echo
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```
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coding-agent REPL 使用面向行的 readline 前端,并需要环境变量或仓库根目录 `.env` 中的 `DEEPSEEK_API_KEY`:
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repl-agent 示例使用面向行的 readline 前端,并需要环境变量或仓库根目录 `.env` 中的 `DEEPSEEK_API_KEY`:
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```sh
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pnpm run demo:repl
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```
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全屏 TUI 通过 pi-tui 前端复用 coding-agent 组装,并需要相同的凭证:
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全屏 TUI 通过 pi-tui 前端复用 repl-agent 组装,并需要相同的凭证:
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```sh
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pnpm run demo:tui
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@@ -13,7 +13,7 @@ The process decision behind this index is recorded in [the documentation graph R
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| [tool schema catalog and package map](tool-catalog.md) | `generated` |
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| [capability seams and core services](capability-seams.md) | `hybrid generated` |
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| [echo-agent app composition](../examples/echo-agent/composition.md) | `hybrid generated` |
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| [coding-agent app composition](../examples/coding-agent/composition.md) | `hybrid generated` |
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| [repl-agent app composition](../examples/repl-agent/composition.md) | `hybrid generated` |
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| [tui-agent app composition](../examples/tui-agent/composition.md) | `hybrid generated` |
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| [cordis-agent app composition](../examples/cordis-agent/composition.md) | `hybrid generated` |
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| [acp-agent app composition](../examples/acp-agent/composition.md) | `hybrid generated` |
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@@ -8,9 +8,9 @@ The assembled system prompt had four defects, all of one family: facts the harne
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**The model could not know its own name.** `AgentOptions.model` drives every request, but no prompt text carried it — and nothing COULD carry it: sections in `dsh-system-prompt` were context-global while the model name is per-agent, and `assemble()` took no per-agent input at all.
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**Tool guidance was hand-written prose in leaf YAML.** The bash/subagent/todo_write usage guidance lived in the `systemPrompt` strings of `examples/coding-agent/cordis.yml` and `examples/acp-agent/cordis.yml` — two drifting copies (the ACP one was already abridged) — while `dsh-tool-fs` and `dsh-tool-web` owned their guidance as `ctx.systemPrompt.section()` contributions. Loading or dropping a tool plugin meant editing every deployment's persona by hand; both YAMLs carried a `FIXME(config-comments)` apologizing for a symptom of the split, and the stdio welcome banner hand-enumerated the tool set too.
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**Tool guidance was hand-written prose in leaf YAML.** The bash/subagent/todo_write usage guidance lived in the `systemPrompt` strings of `examples/repl-agent/cordis.yml` and `examples/acp-agent/cordis.yml` — two drifting copies (the ACP one was already abridged) — while `dsh-tool-fs` and `dsh-tool-web` owned their guidance as `ctx.systemPrompt.section()` contributions. Loading or dropping a tool plugin meant editing every deployment's persona by hand; both YAMLs carried a `FIXME(config-comments)` apologizing for a symptom of the split, and the stdio welcome banner hand-enumerated the tool set too.
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**The persona rendered after tool guidance.** The loop string-joined `agent.options.systemPrompt` AFTER the assembled sections, so the model read "Use the read tool…" before "You are coding-agent" — backwards relative to the identity-first convention (Claude Code, Codex) and a second composition path besides the section pipeline.
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**The persona rendered after tool guidance.** The loop string-joined `agent.options.systemPrompt` AFTER the assembled sections, so the model read "Use the read tool…" before "You are a coding agent" — backwards relative to the identity-first convention (Claude Code, Codex) and a second composition path besides the section pipeline.
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**The fork tool's description was false.** `dsh-tool-subagent` hardcoded one description written for spawn semantics — "a separate agent that works in its own context … it does not see this conversation" — and the `subagent_fork` instance (whose child inherits the parent's completed turns) got the same words; the YAML prose corrected the lie out-of-band. Minor kin: `PromptSection.name` was documented "(diagnostics / dedup)" but duplicates were silently accepted.
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@@ -56,7 +56,7 @@ Per-tool semantics and selection guidance live in tool descriptions. Prompt sect
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## Shipped invariants
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- The coding-agent prompt renders identity, persona with the interpolated model, then fs/bash/web guidance through one assembly path.
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- The repl-agent prompt renders identity, persona with the interpolated model, then fs/bash/web guidance through one assembly path.
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- Fork and fresh subagent descriptions reflect whether the provider inherits completed conversation turns; the tool appears, disappears, and is reworded with provider lifecycle changes.
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- Unknown, valueless, malformed, or unbalanced variable references name the section and throw; duplicate section, variable, and tool registrations also throw.
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- Snapshot replay is prompt-independent: it keys recorded chunk streams by turn and step without comparing the outgoing request.
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@@ -162,7 +162,7 @@ Those cases can consume `ctx.spillStore` directly in later work. They are not pa
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- `dsh-spill-local` unit tests cover `saveText`, `encodeSegment` sanitization (separators/tilde/whole-segment dots/empty), the session-hash directory, owner-only permissions, distinct paths per save, the configured/private root, and a storage-failure rejection.
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- `dsh-spill-policy` unit tests drive real tools through `ctx.tools.execute`: disabled-mode no-op, oversized-text replacement, small/non-text passthrough, `read` skip, best-effort fallback (save failure / no backend / no owner), and downstream-composition (bounding a replaced result, preserving `additionalContexts`).
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- `dsh-tool-web` integration drives `web_fetch` through `ctx.tools.execute` with the real `spill-local` backend + policy, proving the model-facing text changes only by the deliberate spill notice while the spill file holds the full formatted result.
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- The `coding-agent` example loads `spill-local` + `spill-policy`, so its keyless Loader smoke exercises the real load path (the namespace-plugin export shape + `inject`).
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- The `repl-agent` example loads `spill-local` + `spill-policy`, so its keyless Loader smoke exercises the real load path (the namespace-plugin export shape + `inject`).
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## Consequences
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@@ -115,7 +115,7 @@ Two failure paths, both documented:
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- **`SessionEventMap`** gains `compact/start` / `compact/summary` / `compact/end` by declaration merging (merge-extensible); `SurfaceEventType` is **not** touched. These are session events, not cordis `Events`, so the event-taxonomy gate needs no entry.
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- **`dsh-compact`** owns `toolPairingBalancedBefore(session, seq)` and `toolPairingBalancedAfter(session, seq)`, the cached surface-edge checks that `compactRegion` and `compactIfNeeded` use to avoid splitting a tool-call/result pair. The cache validates current membership by seq and answers both edges from one per-cut balance sequence; stale or missing seqs and orphan results reject. `dsh-session` continues to own the surface `replace` operation, ordered event sequences, and rewrite generation.
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- **`dsh-invariants`** drops its `surface replace: start must be <= end` assertion: a head-anchored compaction lands a high-seq replacement entry at an older range's *position*, so `start > end` numerically is normal and valid (the range is positional, validated by the surface's `indexOf` checks that remain). The turn-enclosure invariant is reused unchanged.
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- **Wiring**: `examples/coding-agent/cordis.yml` loads zero-config `dsh-token-meter` before `dsh-compact-basic`; the service-wide window and compact defaults make the pair usable without repeated numeric policy.
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- **Wiring**: `examples/repl-agent/cordis.yml` loads zero-config `dsh-token-meter` before `dsh-compact-basic`; the service-wide window and compact defaults make the pair usable without repeated numeric policy.
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## Testing
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@@ -153,7 +153,7 @@ If the complete logical result fits under the inline cap, no formatted spill art
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- The tools execute through `ctx.bash.resolve(request)` → `ctx.bash.run(spec)`, forward `exec.signal`, never call `ctx.bash.start()`, and never expose a bash task id. The bash request workdir comes from `exec.agent?.session.header.cwd` when available; the resolved `spec.workdir` drives execution and relative-path display.
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- The tools request `stdoutMaxBytes: rawOutputMaxBytes` from the bash seam, parse only untruncated stdout within that cap, and treat over-cap or still-truncated raw output as a clear search failure; raw `rg` output is never exposed to the model.
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- Oversized complete formatted results are saved through `ctx.spillStore.saveText()` when available while inline results stay bounded; spill failure, a missing backend, or a missing owner preserves the inline result and reports the unsaved remainder — never an `isError`.
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- The package README, the generated config catalog, and exported JSDoc document the Config fields and `SEARCH_*` codes; the coding-agent example ships the tools (the acp-agent tree waits on the snapshot re-record above); the fs group README records the co-located bash/filesystem deployment requirement.
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- The package README, the generated config catalog, and exported JSDoc document the Config fields and `SEARCH_*` codes; the repl-agent example ships the tools (the acp-agent tree waits on the snapshot re-record above); the fs group README records the co-located bash/filesystem deployment requirement.
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## Risks
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@@ -2,5 +2,5 @@
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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
|
||||
2026-07-17-dedicated-full-screen-tui-front-door.md: 5e66b85fa23ef394b88fd16880cf218ac5cc2202
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2026-07-17-dedicated-full-screen-tui-front-door.zh.md: 4ccfde2d633115a41b24227ee78f7e4010bd70ee
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2026-07-17-dedicated-full-screen-tui-front-door.md: c834594b3af1e1f348aec2cf67324d5123a1ed2d
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2026-07-17-dedicated-full-screen-tui-front-door.zh.md: 8cb8eb6d2812e6ecf9d98d20c64da24c2943363c
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@@ -14,7 +14,7 @@ The interactive channel must remain a Cordis plugin over the same agent, session
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DeepSeek Harness ships [`@deepseek-ai/dsh-tui`](../../../../packages/ui/tui/README.md) as a dedicated Cordis plugin. It owns terminal input and presentation only; agent lifecycle, session persistence, tool execution, and the model-facing question tool remain separate composition entries. The plugin requires both stdin and stdout to be TTYs and fails instead of silently changing to line-oriented behavior.
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The app layer selects a concrete terminal front door before mounting it. `@deepseek-ai/dsh-stdio-demo` can resolve `auto` from the two process streams, while the `coding-agent` and `tui-agent` leaves explicitly select readline and TUI respectively. The TUI leaf reuses the coding agent's backend and tool composition through an asserted include patch, so the three runnable agent leaves remain symmetric without duplicating deployment choices.
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The app layer selects a concrete terminal front door before mounting it. `@deepseek-ai/dsh-stdio-demo` can resolve `auto` from the two process streams, while the `repl-agent` and `tui-agent` leaves explicitly select readline and TUI respectively. The TUI leaf reuses the repl-agent backend and tool composition through an asserted include patch, so the three runnable agent leaves remain symmetric without duplicating deployment choices.
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The selected front door receives the exact generated or resumed `SessionId` used by the pre-created agent. It mounts before the agent composition, waits for the matching root agent, and enters full-screen mode only after that agent exists. A matching `agent-loop/config-start-failed` event is therefore reported before screen takeover and exits with status 1.
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@@ -38,7 +38,7 @@ The implemented [TUI terminal-state snapshot RFC](../testing/2026-07-18-tui-term
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- **Keep readline and full-screen modes inside `@deepseek-ai/dsh-stdio`** — rejected because line-oriented output and differential TTY rendering have different dependencies, input rules, logging ownership, and teardown obligations. Separate packages keep the pipe-safe contract small and explicit.
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- **Let the TUI plugin silently downgrade when either stream is not a TTY** — rejected because a fallback hides deployment mistakes and changes interaction semantics. The app bundle may select a front door with `auto`; an explicitly mounted TUI fails loud.
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- **Keep TUI wiring and tests under the readline `coding-agent` leaf** — rejected because one leaf would represent two distinct front doors and break symmetry with `acp-agent`. A dedicated `tui-agent` leaf owns TUI overlays and tests while reusing the coding agent's backend composition.
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- **Keep TUI wiring and tests under the readline `repl-agent` leaf** — rejected because one leaf would represent two distinct front doors and break symmetry with `acp-agent`. A dedicated `tui-agent` leaf owns TUI overlays and tests while reusing the repl-agent backend composition.
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## Consequences
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@@ -14,7 +14,7 @@ Status: implemented
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DeepSeek Harness 将 [`@deepseek-ai/dsh-tui`](../../../../packages/ui/tui/README.md) 作为独立的 Cordis 插件交付。该插件只负责终端输入与呈现;agent 生命周期、会话持久化、工具执行以及模型可见的提问工具仍由不同组合项负责。插件要求 stdin 和 stdout 均为 TTY;条件不满足时会失败,不会静默切换为逐行输出。
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应用组合层在挂载前选择具体的终端入口。`@deepseek-ai/dsh-stdio-demo` 可以根据两个进程流通过 `auto` 作出选择,`coding-agent` 和 `tui-agent` 叶节点则分别明确选择 readline 与 TUI。TUI 叶节点通过带断言的 include patch 复用 coding agent 的后端和工具组合,使三个可运行的 agent 叶节点保持对称,同时避免重复部署选项。
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应用组合层在挂载前选择具体的终端入口。`@deepseek-ai/dsh-stdio-demo` 可以根据两个进程流通过 `auto` 作出选择,`repl-agent` 和 `tui-agent` 叶节点则分别明确选择 readline 与 TUI。TUI 叶节点通过带断言的 include patch 复用 repl-agent 的后端和工具组合,使三个可运行的 agent 叶节点保持对称,同时避免重复部署选项。
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所选入口接收预创建 agent 使用的同一个新建或恢复 `SessionId`。入口先于 agent 组合挂载,等待相符的根 agent 出现,然后才进入全屏模式。因此,相符的 `agent-loop/config-start-failed` 事件会在接管屏幕前报告,并以状态码 1 退出。
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@@ -38,7 +38,7 @@ agent 空闲时,编辑器输入调用 `agent.send()`;轮次运行中则调
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- **把 readline 与全屏模式都保留在 `@deepseek-ai/dsh-stdio` 中**:不予采纳,因为逐行输出和差分 TTY 渲染具有不同的依赖、输入规则、日志所有权和资源清理义务。拆分为独立包可以让管道安全契约保持精简、明确。
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- **当任一进程流不是 TTY 时,让 TUI 插件静默降级**:不予采纳,因为回退会掩盖部署错误并改变交互语义。应用包可以通过 `auto` 选择入口;明确挂载的 TUI 会快速失败。
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- **把 TUI 接线与测试保留在 readline `coding-agent` 叶节点下**:不予采纳,因为一个叶节点会代表两个不同入口,也会破坏它与 `acp-agent` 的对称性。独立的 `tui-agent` 叶节点负责 TUI 浮层和测试,同时复用 coding agent 的后端组合。
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- **把 TUI 接线与测试保留在 readline `repl-agent` 叶节点下**:不予采纳,因为一个叶节点会代表两个不同入口,也会破坏它与 `acp-agent` 的对称性。独立的 `tui-agent` 叶节点负责 TUI 浮层和测试,同时复用 repl-agent 的后端组合。
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## 后果
|
||||
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||||
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@@ -34,7 +34,7 @@ The first index links ten relationship surfaces. Package topology and tool-packa
|
||||
| [tool schema catalog and package map](../../../tool-catalog.md) | generated | boot-harvested tool schemas plus tool-package service/effect metadata |
|
||||
| [capability seams and core services](../../../capability-seams.md) | hybrid generated | Cordis service declarations plus a role manifest in `gen-doc-graphs.ts` |
|
||||
| [echo-agent app composition](../../../../examples/echo-agent/composition.md) | hybrid generated | `examples/echo-agent/cordis.yml` plugin list plus curated app/bundle expansion |
|
||||
| [coding-agent app composition](../../../../examples/coding-agent/composition.md) | hybrid generated | `examples/coding-agent/cordis.yml` plugin list plus curated app/bundle expansion |
|
||||
| [repl-agent app composition](../../../../examples/repl-agent/composition.md) | hybrid generated | `examples/repl-agent/cordis.yml` plugin list plus curated app/bundle expansion |
|
||||
| [acp-agent app composition](../../../../examples/acp-agent/composition.md) | hybrid generated | `examples/acp-agent/cordis.yml` plugin list plus curated app/bundle expansion |
|
||||
| [event producer/consumer matrix](../../../event-producer-consumer.md) | hybrid generated | Cordis event declarations, AST-scanned `ctx.on/emit/parallel/serial/waterfall` sites, and explicit dynamic dispatch overrides |
|
||||
| [agent turn and step lifecycle](../../../agent-lifecycle.md) | curated | architecture.md loop lifecycle, Cordis catalog links, and session event semantics |
|
||||
|
||||
@@ -10,7 +10,7 @@ The boundary bought package metadata, workspace and tsconfig references, module-
|
||||
|
||||
## Decision
|
||||
|
||||
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/coding-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).
|
||||
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).
|
||||
|
||||
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.
|
||||
|
||||
|
||||
@@ -2,5 +2,5 @@
|
||||
# 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
|
||||
2026-07-18-tui-terminal-state-snapshots.md: 280c2b4faec3bd5e14a24a5df7bc901ad31718cd
|
||||
2026-07-18-tui-terminal-state-snapshots.zh.md: d1c609c6ce511bba1f498b72444af662b4444578
|
||||
2026-07-18-tui-terminal-state-snapshots.md: a1363a521372c11dab8b239cad87df5ff5ca8f22
|
||||
2026-07-18-tui-terminal-state-snapshots.zh.md: aa365ba1f2ba17e5bc5409dbdc3736cbc29fe26a
|
||||
|
||||
@@ -21,7 +21,7 @@ TUI coverage has four complementary layers:
|
||||
3. `examples/tui-agent/tests/tui.snapshot.ts` replays committed JSONL session logs through the production agent loop and real tools, then compares the resulting semantic terminal state.
|
||||
4. `examples/tui-agent/tests/tui-keyless-smoke.e2e.ts` boots the real Loader composition in a PTY, drives a scripted conversation through streaming and `ask_user_question`, and verifies startup, input, exit, failure reporting, and terminal restoration.
|
||||
|
||||
The runnable TUI has its own `examples/tui-agent` leaf beside the readline `coding-agent` and `acp-agent` leaves. It reuses the coding agent's backend and tool composition through an asserted include patch while fixing the shared terminal app to `ui.mode: tui`; TUI snapshots and PTY tests live with that leaf.
|
||||
The runnable TUI has its own `examples/tui-agent` leaf beside the readline `repl-agent` and `acp-agent` leaves. It reuses the repl-agent backend and tool composition through an asserted include patch while fixing the shared terminal app to `ui.mode: tui`; TUI snapshots and PTY tests live with that leaf.
|
||||
|
||||
### Recorded-session replay
|
||||
|
||||
|
||||
@@ -21,7 +21,7 @@ TUI 覆盖分为四个互补层次:
|
||||
3. `examples/tui-agent/tests/tui.snapshot.ts` 通过生产 agent loop 和真实工具回放已提交的 JSONL 会话日志,再比较生成的语义终端状态。
|
||||
4. `examples/tui-agent/tests/tui-keyless-smoke.e2e.ts` 在 PTY 中启动真实 Loader 组合,驱动一段经过流式输出和 `ask_user_question` 的脚本化会话,并验证启动、输入、退出、失败报告和终端恢复。
|
||||
|
||||
可运行 TUI 在 `examples/tui-agent` 中拥有独立叶节点,与 readline `coding-agent` 和 `acp-agent` 叶节点并列。它通过带断言的 include patch 复用 coding agent 的后端与工具组合,只把共享终端应用固定为 `ui.mode: tui`;TUI 快照和 PTY 测试也归属这个叶节点。
|
||||
可运行 TUI 在 `examples/tui-agent` 中拥有独立叶节点,与 readline `repl-agent` 和 `acp-agent` 叶节点并列。它通过带断言的 include patch 复用 repl-agent 的后端与工具组合,只把共享终端应用固定为 `ui.mode: tui`;TUI 快照和 PTY 测试也归属这个叶节点。
|
||||
|
||||
### 已录制会话回放
|
||||
|
||||
|
||||
@@ -22,7 +22,7 @@ This table connects model-visible tool names to the plugin package and service s
|
||||
| `@deepseek-ai/dsh-tool-fs` | `edit`, `read`, `write` | `ctx.tools`, `ctx.fs`, `ctx.systemPrompt` | `tool/call`, `fs/write-intent or fs/edit-intent for mutations`, `fs/observed after successful file operations`, `tool/result` | - | The read-before-write/edit policy is added by `@deepseek-ai/dsh-fs-policy` (an `fs/*` event-gate plugin, no schema change); a deployment that loads these tools is expected to also load it. The tool schemas above are identical with or without the policy plugin. |
|
||||
| `@deepseek-ai/dsh-tool-fs-search` | `glob`, `grep` | `ctx.tools`, `ctx.bash`, `ctx.systemPrompt` | `tool/call`, `tool/result` | - | glob and grep are bash-backed discovery tools: they run fixed ripgrep commands through ctx.bash as ordinary foreground calls (never background tasks). Capped results save the complete formatted list through the optional ctx.spillStore backend; returned locators are follow-up-readable/searchable when the backend exposes local paths in co-located deployments. |
|
||||
| `@deepseek-ai/dsh-tool-skill` | `skill` | `ctx.tools`, `ctx.skills` | `tool/call`, `tool/result` | - | - |
|
||||
| `@deepseek-ai/dsh-tool-subagent` | `subagent` | `ctx.tools`, `ctx.subagents` | `tool/call`, `tool/result`, `child session events through the chosen provider` | `subagent`, `subagent_fork` | The registered tool name is the load-time `toolName` config (default `subagent`); the schema above is that default. The shipped example agents load this package once per subagent backend, so the model additionally sees `subagent_fork` (bound to the fork backend) with an identical schema — see `examples/coding-agent/cordis.yml` and `examples/acp-agent/cordis.yml`. |
|
||||
| `@deepseek-ai/dsh-tool-subagent` | `subagent` | `ctx.tools`, `ctx.subagents` | `tool/call`, `tool/result`, `child session events through the chosen provider` | `subagent`, `subagent_fork` | The registered tool name is the load-time `toolName` config (default `subagent`); the schema above is that default. The shipped example agents load this package once per subagent backend, so the model additionally sees `subagent_fork` (bound to the fork backend) with an identical schema — see `examples/repl-agent/cordis.yml` and `examples/acp-agent/cordis.yml`. |
|
||||
| `@deepseek-ai/dsh-tool-tasks` | `task_kill`, `task_list`, `task_output` | `ctx.tools`, `ctx.tasks`, `ctx.systemPrompt` | `tool/call`, `tool/result`, `context/message via agent.inject() for background completion notices` | - | The kind-agnostic background-task control surface: a background bash command and a background subagent are read, listed, and killed through the same three tools. Loading the plugin attaches the control surface that arms producers' `ctx.tasks.start()`. |
|
||||
| `@deepseek-ai/dsh-tool-todo` | `todo_write` | `ctx.tools`, `owning Agent session` | `tool/call`, `todo/write`, `tool/result` | - | todo_write is session-owned state; UIs render the latest todo/write event as a checklist or ACP plan. |
|
||||
| `@deepseek-ai/dsh-tool-workflow` | `workflow` | `ctx.tools`, `ctx.workflows`, `ctx.systemPrompt`, `a calling Agent (exec.agent parents the script children)` | `tool/call`, `tool/result` | - | - |
|
||||
@@ -444,7 +444,7 @@ Delegate a self-contained task to a subagent (a separate agent that works in its
|
||||
|
||||
Source: [`packages/subagent/tool-subagent/src/index.ts`](../packages/subagent/tool-subagent/src/index.ts)
|
||||
|
||||
The registered tool name is the load-time `toolName` config (default `subagent`); the schema above is that default. The shipped example agents load this package once per subagent backend, so the model additionally sees `subagent_fork` (bound to the fork backend) with an identical schema — see `examples/coding-agent/cordis.yml` and `examples/acp-agent/cordis.yml`.
|
||||
The registered tool name is the load-time `toolName` config (default `subagent`); the schema above is that default. The shipped example agents load this package once per subagent backend, so the model additionally sees `subagent_fork` (bound to the fork backend) with an identical schema — see `examples/repl-agent/cordis.yml` and `examples/acp-agent/cordis.yml`.
|
||||
|
||||
## `@deepseek-ai/dsh-tool-tasks`
|
||||
|
||||
|
||||
Reference in New Issue
Block a user