fix(tui,host): pin replayed compaction and correct projection wording
Review follow-ups on the append-origin transcript projection.
The live/replay equivalence claim was stated unconditionally but does not
cover `tool/call`: only replay re-derives call pairing, because a call
event carries no `surfaceOp` of its own and inherits transcript
membership from the `assistant/message` that advertised it — which the
live listener has necessarily just rendered. Narrow the claim in the TUI
README and Agent Note, and record at `rebuildTranscript` why the filter
is replay-only rather than a missing live branch.
Add `surface-replayed-compaction`: the three existing fixtures all come
from the live path, leaving the resume case the bug report leads with
pinned only by a unit test. The new checkpoint mounts with the
replacement already stored and records byte-identical to
`surface-after-compaction-wide`, so the two fixtures now pin the
equivalence they assert. The shared fixture appends move into
`appendPreCompactionLog` / `appendCompactionCheckpoint`.
`MESSAGE_TYPES` is not "human message event types" — it includes
`assistant/message`. Say what the code distinguishes (append-origin
conversation messages vs. model-only replacement copies) at the const,
the `paginate` and `session.history` JSDoc, the apiproxy README, and the
Agent Note.
Also: spell the replace shape as `Extract<SurfaceOp, { op: 'replace' }>`
for symmetry with the module's two other uses; document why
`isCompactCheckpoint` keeps a replacement check that is redundant at both
call sites; say that Ctrl+R toggles reasoning, which rebuilds the
transcript; and qualify "the sole source of derived history" as derived
*model* history now that the transcript is the other projection.
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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 .agents/notes/implemented/bug-fix/2026-07-29-human-transcript-append-origin.md
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2026-07-29-human-transcript-append-origin.md: 51602148810b0c400ec7b0f7996b37dd666bf93f
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2026-07-29-human-transcript-append-origin.zh.md: 77e9a691f06978ac6875e8f4330d96ecca23a1b5
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2026-07-29-human-transcript-append-origin.md: c4b00dd7093ab1501a83011cf37c9841b15ce1a9
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2026-07-29-human-transcript-append-origin.zh.md: 783baaf47c137d1617c3a983c0a7bb2fa7bc50bb
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@@ -14,11 +14,11 @@ Nothing was lost from the log. `Session.events` still held every original messag
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Model and human projections are separate, and the event's own marker decides which one an event belongs to. `dsh-session` exports the marker split `isAppendSurfaceEvent(event)` and `isReplacementSurfaceEvent(event)` over the two `SurfaceOp` variants, from the browser-safe `surface` module. Append-origin events are the durable source for a transcript; replacement copies stay model-only. Everything that must send exactly what the model sees — `deriveMessages`, token accounting, the compaction backends, tool pairing, injected-context liveness, cross-session reference projection — keeps reading `session.surface`.
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The terminal replays the transcript from append-origin surface events and keeps a shadowed step's tool cards paired through `transcriptToolCallIds`, which reads the append-origin `assistant/message` rather than surface membership. A landed compaction contributes one dim `… earlier context was compacted …` row at its own log position: the marker reports where the model stopped seeing that history instead of erasing it. The framed checkpoint payload never renders, and the replay and live paths share one rule, so a compaction that arrives live and the same log replayed after resume produce the same transcript.
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The terminal replays the transcript from append-origin surface events and keeps a shadowed step's tool cards paired through `transcriptToolCallIds`, which reads the append-origin `assistant/message` rather than surface membership. A landed compaction contributes one dim `… earlier context was compacted …` row at its own log position: the marker reports where the model stopped seeing that history instead of erasing it. The framed checkpoint payload never renders, and both paths classify a surface event by the same marker, so a compaction that arrives live and the same log replayed after resume produce the same transcript. Only replay re-derives `tool/call` pairing: a call event carries no marker of its own and inherits membership from the `assistant/message` that advertised it, which the live listener has necessarily just rendered.
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A checkpoint is recognized through the compaction seam's own contract — `isCompactCheckpointSource`, the backend-independent marker `CompactService` requires on the replacement user message — so the terminal depends on the declared vocabulary, not on the shape of the replacement. `dsh-session-reference` already consumes that predicate to project another session's log; this is the same question asked by a different reader. Other replacements are silent: a pruned `tool/result` and a regenerated `assistant/message` rewrite one node for the model and mark no boundary in the conversation.
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`session.history` counts only append-origin human messages toward `maxMessages`. Each page remains one contiguous raw event range, so a compaction's `compact/summary` provenance stays on the page of the replacement that cites it.
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`session.history` counts only append-origin messages toward `maxMessages`. Each page remains one contiguous raw event range, so a compaction's `compact/summary` provenance stays on the page of the replacement that cites it.
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No persisted event, RPC envelope, compaction transaction, or model-visible surface changed, and no migration is required.
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@@ -14,11 +14,11 @@ Status: implemented
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模型投影与人类投影是分开的,而事件属于哪一种由事件自身的标记决定。`dsh-session` 在浏览器安全的 `surface` 模块中导出按两种 `SurfaceOp` 变体划分的谓词 `isAppendSurfaceEvent(event)` 与 `isReplacementSurfaceEvent(event)`。追加来源的事件是记录的持久来源,替换副本仅供模型使用。凡是必须准确发送模型所见内容的部分——`deriveMessages`、token 记账、压缩后端、工具配对、注入上下文的存活判断、跨会话引用投影——都继续读取 `session.surface`。
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终端从追加来源的 surface 事件回放记录,并通过 `transcriptToolCallIds` 让被遮蔽步骤的工具卡片保持配对:该函数读取追加来源的 `assistant/message`,而不是 surface 成员关系。已落地的压缩会在其自身日志位置贡献一行暗色 `… earlier context was compacted …`:这行标记报告模型从何处起不再看到那段历史,而不是把它抹掉。带框的检查点载荷从不渲染,且回放路径与实时路径共用同一条规则,因此实时到达的压缩与恢复后回放同一份日志会产生相同的记录。
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终端从追加来源的 surface 事件回放记录,并通过 `transcriptToolCallIds` 让被遮蔽步骤的工具卡片保持配对:该函数读取追加来源的 `assistant/message`,而不是 surface 成员关系。已落地的压缩会在其自身日志位置贡献一行暗色 `… earlier context was compacted …`:这行标记报告模型从何处起不再看到那段历史,而不是把它抹掉。带框的检查点载荷从不渲染,且两条路径都按同一个标记对 surface 事件分类,因此实时到达的压缩与恢复后回放同一份日志会产生相同的记录。只有回放会重新推导 `tool/call` 的配对关系:调用事件自身不携带标记,其归属继承自公布它的 `assistant/message`,而实时监听器必然刚刚渲染过后者。
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检查点通过压缩接缝自身的契约来识别——`isCompactCheckpointSource`,即 `CompactService` 要求替换用户消息携带的、与后端无关的标记——因此终端依赖的是已声明的词汇,而不是替换的形态。`dsh-session-reference` 已经在用该谓词投影另一个会话的日志;这里只是另一个读者提出同样的问题。其他替换保持静默:被裁剪的 `tool/result` 与重新生成的 `assistant/message` 只是为模型重写一个节点,并不在对话中标出边界。
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`session.history` 只把追加来源的人类消息计入 `maxMessages`。每一页仍是一段连续的原始事件区间,因此压缩的 `compact/summary` 溯源信息会与引用它的替换留在同一页。
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`session.history` 只把追加来源的消息计入 `maxMessages`。每一页仍是一段连续的原始事件区间,因此压缩的 `compact/summary` 溯源信息会与引用它的替换留在同一页。
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持久事件、RPC 信封、压缩事务与模型可见的 surface 都没有变化,也不需要迁移。
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