docs: allocation efficiency — the metric, its guards, and the 103-run baseline (CG-9)
Records the sweep over every A/B log on this machine (103 sessions, 297 explore calls, 0 crashes) and, more usefully, the new-vs-baseline arm table the metric exists for: express 82% → 100%, cg21/client-go 67% → 95%, two pairs going the other way. States the caveat in the places it can be misread: the corpus median sits in the eighties because these are flow questions whose answers name most of the chain, the metric is byte-weighted, and an agent can use a file without citing it. It compares two builds on one question; it is not an absolute waste figure.
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@@ -51,6 +51,11 @@ rendered markdown of the responses the agent actually received. The CG-4 diagnos
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only exists on the new build, so it cannot measure the baseline arm; the markdown parse is the
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only exists on the new build, so it cannot measure the baseline arm; the markdown parse is the
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only instrument that measures both arms the same way.
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only instrument that measures both arms the same way.
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That `--answer <glob>` is hand-specified ground truth. Every run now also reports the same
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intersection inferred from the agent's own final answer, so it needs no per-question setup —
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see [`explore-allocation-efficiency.md`](explore-allocation-efficiency.md), which re-scores
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the arms below (express: 82% baseline → 100% new).
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| Repo | Lang | Files | Generated | Tier | Role |
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| Repo | Lang | Files | Generated | Tier | Role |
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|---|---|---|---|---|---|
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| `kubernetes/client-go` | Go | 2,454 | 2,001 | medium (2 calls / 28K) | **the #1500 shape** — generated CRUD beside hand-written machinery |
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| `kubernetes/client-go` | Go | 2,454 | 2,001 | medium (2 calls / 28K) | **the #1500 shape** — generated CRUD beside hand-written machinery |
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# Explore allocation efficiency
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**What it measures:** of the bytes a `codegraph_explore` response spent, what
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share went to files the agent's answer actually drew on.
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```
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allocation efficiency = bytes returned for files the final answer cited
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───────────────────────────────────────────────
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all bytes returned
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```
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That is issue #1500 as a number. The envelope view
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([`explore-allocation-ab-1500.md`](explore-allocation-ab-1500.md)) already
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showed *how* a response was divided across files, but deciding which of those
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files mattered took a human writing `--answer 'lib/response.js'` per question.
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This reads the same intersection off the agent's own final answer, so every run
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reports it for free.
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**Read it as a relative metric.** Attribution is by citation, and an agent can
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use a file's source without ever naming it — to rule the file out, or to build a
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mental model it then writes up from somewhere else. So this compares two builds
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on the *same* question; it is not an absolute claim that 15% of an envelope was
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waste. [What it does not say](#what-it-does-not-say) is the full list.
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Harness-only, like the other two feedback metrics: nothing is emitted from the
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product, nothing leaves the machine. It is parsed out of transcripts we already
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write.
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---
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## Running it
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Every run prints it — `run-all.sh` and anything else that calls `parse-run.mjs`:
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```bash
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node scripts/agent-eval/parse-run.mjs /private/tmp/cg22/ab-express/run-baseline-1.jsonl
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```
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```
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Explore allocation — share of returned bytes the answer used (2 calls, 4 files):
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efficiency 81.9% 17,465 of 21,319 chars (3/4 files cited; path-cited alone 64.9%)
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call 1: 84.0% 10,121/12,048 chars 2/3 files
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call 2: 79.2% 7,344/9,271 chars 2/3 files
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* 34.9% 7447 lib/response.js path
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* 30.0% 6396 lib/utils.js path
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18.1% 3854 lib/express.js —
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* 17.0% 3622 lib/application.js symbol `compileETag`
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```
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Interactive runs get the same block from `parse-session.mjs <project-dir>`.
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**Per call as well as per run.** A run-level number hides the shape that matters
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most — call 1 on target, call 3 pure noise. The per-call lines name which call
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spent its budget on files nothing came back to.
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`--answer <glob>` and `--envelope` still work and are unchanged: they are the
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*hand-specified* ground truth, useful when you want to score against the files
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you know answer the question rather than the ones the agent happened to name.
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---
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## How a file is judged used
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Two citation channels, ranked so the weaker one stays separable — the summary
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line always reports **path-cited alone** next to the combined number.
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**1. Path.** The answer names the file: `lib/response.js:126-220`, an absolute
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path, or the bare `utils.js:225` agents drop into prose. Bare basenames are
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accepted only when the extension is one the envelope actually shipped, which is
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what keeps `res.send` and `mime.contentType` — the same token shape — from
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reading as file citations.
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**2. Symbol.** The answer cites, inside a code span, a symbol that the file's
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section header lists as **defined**. This catches answers written almost
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entirely in symbol names. It is guarded three ways, all in the direction that
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costs us efficiency rather than inflating it:
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- **Definitions only.** The header renders `name(kind)` for every node in the
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shipped clusters, and that includes call sites (`mutateElement(calls)` on a
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file that merely calls it). Crediting those marked excalidraw's
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`dragElements.ts` used because the answer named `mutateElement`.
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- **A definition beats an import alias.** `var compileETag = require('./utils')`
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is a `variable` node, so a file that only re-binds a name loses to the file
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that defines it, when both are in the envelope.
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- **A name on 3+ returned files identifies none of them.** Without this,
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`send` or `get` marks half an envelope used.
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Prose mentions do not count — only code spans. A backtick is the agent marking
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the token as code, and that is the whole signal.
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**A file returned twice is charged twice**, because it occupied the window
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twice. Same accounting as the envelope view.
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**The answer** is the `result` event's text (one per resumed segment of a
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multi-turn session — all of them are answers, so all are pooled). An interactive
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transcript has no `result` event, so it falls back to the last main-thread
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assistant text; intermediate narration is deliberately excluded, or "let me look
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at App.tsx" would count as a citation.
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---
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## Baseline
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Swept over every A/B log on this machine, the same corpus CG-8 used: **103
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sessions** with at least one answered explore (74 single-question, 29 multi-turn
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3-question sessions), **297 explore calls**, 815 file sections, 0 crashes.
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| Slice | n | pooled | median | p25 | p75 | min | path-cited only |
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|---|---|---|---|---|---|---|---|
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| all | 103 | 85.6% | 90.1% | 82.0% | 97.7% | 20.1% | 80.2% |
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| single-question | 74 | 85.2% | 88.8% | 82.0% | 95.6% | 20.1% | 82.2% |
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| multi-turn (3 turns) | 29 | 86.2% | 92.1% | 85.0% | 100.0% | 57.4% | 77.5% |
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Per call: median 94.7%, p25 79.2%.
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**The absolute level is high, and that is a property of the corpus, not good
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news.** These are flow questions whose answers walk the reader through the
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chain, naming most files on it. The metric is byte-weighted, so it is dominated
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by whether the *largest* allocations landed on cited files — which is exactly
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the #1500 question, and also why the typical run scores in the eighties. The
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discrimination lives in the p25 and below, not around the median. **Never quote
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the median as "codegraph wastes 10% of what it returns."**
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**The tail is where the signal is.** The lowest run in the corpus is 20.1%:
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`cg8-val` — excalidraw's `canvasNonce` question, the documented data-flow
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frontier. Three explores returned 11 files / 60,694 chars; the answer drew on
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two of them (`Scene.ts`, `StaticCanvas.tsx`) and reconstructed the rest by
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reading `Renderer.ts` and `App.tsx`, which the envelope never shipped. That
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reproduces the 16–30% range CG-1 measured by hand on the self-query, and it
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reproduces it without anyone marking an answer set.
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### New-build vs baseline-build — the intended use
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Medians over the existing CG-15/CG-21/CG-22 A/B arms, both arms codegraph-on:
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| Pass / repo | baseline | new |
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|---|---|---|
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| cg15 / express | 82.0% | **100.0%** |
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| cg15 / excalidraw | 90.1% | 92.8% |
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| cg15 / client-go | 84.1% | 80.8% |
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| cg21 / express | 84.1% | **100.0%** |
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| cg21 / excalidraw | 91.3% | 97.5% |
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| cg21 / client-go | 67.1% | **95.0%** |
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| cg22 / express | 81.9% | **100.0%** |
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| cg22 / excalidraw | 89.3% | 79.2% |
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| cg22 / client-go | 86.6% | 93.3% |
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Express is the #1500 case and it moves the most: the baseline arm reliably spent
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18% of its envelope on `lib/express.js`, a file no answer ever cited, and the
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allocation fix cut it — 81.9 / 82.0 / 81.9% across three baseline runs, 100.0 /
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92.5 / 100.0% across three new ones. That is the change stated as a number
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rather than as "the express arm looks tighter now."
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Two pairs go the other way (cg15/client-go −3pt, cg22/excalidraw −10pt). The
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cg22/excalidraw spread is 89.3 / 85.6 / 90.8% baseline against 87.4 / 79.2 /
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78.2% new — real, but n=3 on a question with known run-to-run variance. Report
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the range, not the median of three.
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---
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## What it does not say
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- **Uncited is not unused.** An agent reads a file, decides it is not the
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answer, and never mentions it. That was useful work and this metric calls it
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waste. The error is one-sided and it is why the number is only comparable
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between builds on the same question.
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- **Cited is not "needed at that size."** The metric asks which *files* earned
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their bytes, not whether the right *lines within* a cited file were shipped.
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A file cited by the answer scores 100% of its section even if the agent then
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had to Read it for the part we clipped out. The sufficiency bucket
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`Read a file we returned` is what catches that; the two metrics are
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complementary, and CG-13 reports both.
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- **A basename match can land on the wrong file.** `src/index.ts` in the
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envelope matches an answer citing `packages/element/src/index.ts`. Rare in
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practice, but it is a real false-positive channel.
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- **Small-n.** Runs make 1–5 explore calls, so one run's percentage is coarse.
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Compare over a pass (`RUNS>=2`, and the CG-13 7-repo campaign), never n=1.
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- **Efficiency is not value.** A response can be 100% efficient and useless — a
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single small file the answer names in passing. Read it alongside sufficiency
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([`explore-sufficiency.md`](explore-sufficiency.md)) and occupancy
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([`residual-context-occupancy.md`](residual-context-occupancy.md)), which is
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the point of wiring all three into the same run.
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---
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## Tests
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`node scripts/agent-eval/parse-run.mjs --selftest` covers the metric over
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synthetic transcripts with known answers, alongside the occupancy and
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sufficiency checks (68/68). The allocation cases: the one-of-three-files shape,
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bare-basename citations and the dotted-expression tokens that must *not* match,
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symbol attribution crediting the definer and not a caller, a definition beating
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an import alias, the 3-file ambiguity cutoff, prose-vs-code-span, per-call
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versus pooled accounting, a file returned twice being charged twice, both
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final-answer sources, and the end-to-end path through `parseSession`.
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