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@@ -43,14 +43,17 @@ notes. Without it, the floor `HashEmbedder` is used — deterministic but weak
|
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(Russian recall rarely clears the confidence gate, many commands fall to
|
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"clarify").
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**Download the embedder** (ONNX, ~90 MB):
|
||||
**Download the embedder** (ONNX, ~120 MB):
|
||||
|
||||
```sh
|
||||
make download-embedder
|
||||
```
|
||||
|
||||
This fetches `paraphrase-multilingual-MiniLM-L12-v2` (384-dim, 12-layer,
|
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supports 50+ languages including Russian) to `models/embedder/`.
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This fetches `multilingual-e5-small` (384-dim, 12-layer, Russian and English)
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to `models/embedder/multilingual-e5-small/`. It is an asymmetric retrieval
|
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model: the code puts `query: ` in front of a question and `passage: ` in front
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of a stored note, which is how e5 was trained. The quantized file is the one
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that is downloaded, deployed and measured.
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|
||||
**Also need ONNX Runtime** (`libonnxruntime.so`):
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|
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@@ -64,8 +67,8 @@ sudo cp onnxruntime-linux-x64-1.15.1/lib/libonnxruntime.so* /usr/local/lib/
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```json
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"voice": {
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"embedder": {
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"model_path": "models/embedder/model_quantized.onnx",
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"tokenizer_path": "models/embedder/tokenizer.json",
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"model_path": "models/embedder/multilingual-e5-small/model_quantized.onnx",
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"tokenizer_path": "models/embedder/multilingual-e5-small/tokenizer.json",
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"lib_path": "/usr/local/lib/libonnxruntime.so"
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}
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}
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@@ -0,0 +1,101 @@
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# Resident model bake-off — 31-07-2026
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**Recommendation: keep Qwen3.5-0.8B.** LFM2.5-1.2B is worse at routing (52.6% vs 60.5%
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intent accuracy), and the loss is almost entirely Russian (18/61 vs 22/61 RU, while EN is a
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wash). It is also 2.4× slower. The Thinking variant is far worse again.
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Settles Vikunja **#278 / #250**.
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- Same fixture and scorer as `ROUTING-EVAL-31-07-2026.md`: `internal/router/eval/`
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(`ru_routing_v1.json`, 76 held-out cases).
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- Reproduce: `MAVEN_LLM_URL=http://127.0.0.1:<port> make eval-router`
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(`TestLLMRouterBaseline`). Note: there is no `make eval-models` target.
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- All three models served by the same `llama-server` flags — `-c 2048 -ngl 99 -t 6`, only
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`-m` and `--port` differ. One server at a time on an otherwise idle box, so latencies are
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real and not contention.
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- Measured on top of the router prompt fix (`origin/overnight/router-prompt` merged in), so
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the Qwen column is directly comparable to the numbers already recorded.
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## Results
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|
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`llm-only` — the model alone. This is the column that measures the model.
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| | Qwen3.5-0.8B | LFM2.5-1.2B Instruct | LFM2.5-1.2B Thinking |
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|---|---|---|---|
|
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| **intent-only accuracy** | **60.5%** | 52.6% | 36.8% |
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| full accuracy (intent+slots+gate) | **36.8%** | 32.9% | 21.1% |
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| **RU** | **22/61** | 18/61 | 10/61 |
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| EN | 6/15 | **7/15** | 6/15 |
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| route errors | 0 | 0 | 0 |
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| **p50 / p95 latency** | **1.05s / 1.71s** | 2.47s / 3.62s | 2.42s / 3.24s |
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| missed clarify | 6 / 6 | 6 / 6 | 6 / 6 |
|
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|
||||
`cascade+llm` — stage-0 → model → classifier floor, what #320 would actually ship. Same
|
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ordering.
|
||||
|
||||
| | Qwen3.5-0.8B | LFM2.5-1.2B Instruct | LFM2.5-1.2B Thinking |
|
||||
|---|---|---|---|
|
||||
| intent-only accuracy | **61.8%** | 55.3% | 38.2% |
|
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| full accuracy | **46.1%** | 42.1% | 30.3% |
|
||||
| RU / EN | **27/61** / 8/15 | 23/61 / **9/15** | 15/61 / 8/15 |
|
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| route errors | 0 | 0 | 0 |
|
||||
| p50 / p95 latency | **1.28s / 1.94s** | 2.18s / 2.72s | 2.27s / 3.19s |
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|
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Full logs: the three runs are archived in the session scratchpad
|
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(`qwen08.txt`, `lfm-instruct.txt`, `lfm-thinking.txt`).
|
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|
||||
## Russian-specific failures — the owner's worry is confirmed
|
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|
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LFM2.5's Russian loss is not spread out. It has one large, specific failure: **it hears
|
||||
almost any Russian imperative or short phrase as `reminder`.**
|
||||
|
||||
- `перезапусти докер` → reminder (want act)
|
||||
- `включи вытяжку` → reminder (want act)
|
||||
- `закрой жалюзи` → reminder (want act)
|
||||
- `заметка: продлить домен в августе` → reminder (want note)
|
||||
- `запиши что кран на кухне снова капает` → reminder (want note)
|
||||
- `доброе утро` → reminder (want chat)
|
||||
- `спасибо тебе` → reminder (want note/chat)
|
||||
- `переходи в тихий режим` → reminder (want system)
|
||||
|
||||
That is `note→reminder ×4`, `act→reminder ×4`, `chat→reminder ×2` in one run. Qwen's
|
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equivalent failure axis is `query→fact ×8`, which is a narrower and already-understood bug.
|
||||
|
||||
Two more Russian-side problems worth naming:
|
||||
|
||||
1. **Fact keys come back empty or wrong in Russian.** `воды попил наконец`, `поужинал`,
|
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`поспал часов пять` and `отметь что я позавтракал овсянкой` all returned an empty key.
|
||||
`сходил в душ` and `отдохнул минут двадцать` both returned `water`. Qwen does not do this.
|
||||
2. **It leaked German.** `slept about seven hours` produced the fact key
|
||||
`"7 Stunden geschlafen"`. Grammar-valid, semantically garbage — a sign the multilingual
|
||||
mix is not anchored where Maven needs it.
|
||||
|
||||
The claimed tool-calling advantage did not show up here. `act` is the closest thing this
|
||||
fixture has to a tool call, and LFM2.5 got it wrong more often than Qwen, mostly by calling
|
||||
it a reminder. It also produced no `fn` slot on any act, same as Qwen.
|
||||
|
||||
## The Thinking variant
|
||||
|
||||
Not viable. 36.8% intent accuracy, 10/61 Russian, and no latency saving over Instruct — the
|
||||
thinking trace costs time without buying accuracy on a short enum classification. With the
|
||||
`enable_thinking=false` diagnostic it collapsed further to 28.9% with 2 route errors
|
||||
(`query→reminder ×12`). Do not pursue.
|
||||
|
||||
## Notes
|
||||
|
||||
- Nothing crashed, nothing ignored the GBNF grammar, and no model produced unparseable JSON
|
||||
in the shippable configurations. Zero route errors for both Instruct and Thinking in
|
||||
`llm-only` and `cascade+llm`. The problem with LFM2.5 is what it decides, not whether it
|
||||
can emit the contract.
|
||||
- The `6 / 6` missed clarify is unchanged across all three models. No model fixes the missing
|
||||
refusal lane — that is `Confidence: 1.0` hardcoded in `llmrouter.go` (Vikunja #359), not a
|
||||
model property.
|
||||
- The report labels every configuration `(0.8B)`; that string is hardcoded in the test, not a
|
||||
reflection of which gguf was loaded. Model identity was confirmed per run via `/v1/models`.
|
||||
- No Go code was changed for this measurement, and no bug was found that needed one.
|
||||
|
||||
## What this does not settle
|
||||
|
||||
Routing only. LFM2.5 might still phrase better, and phrasing is the resident model's other
|
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job — that needs its own fixture. But routing is the load-bearing path and Maven is
|
||||
Russian-first, so on the evidence here the switch is not worth making.
|
||||
@@ -152,9 +152,13 @@ deps-piper:
|
||||
-o /tmp/piper.tar.gz
|
||||
tar -xzf /tmp/piper.tar.gz -C deps/
|
||||
|
||||
EMBEDDER_DIR := $(shell pwd)/models/embedder
|
||||
EMBEDDER_MODEL_URL := https://huggingface.co/Xenova/paraphrase-multilingual-MiniLM-L12-v2/resolve/main/onnx/model_quantized.onnx
|
||||
EMBEDDER_TOKENIZER_URL := https://huggingface.co/Xenova/paraphrase-multilingual-MiniLM-L12-v2/resolve/main/tokenizer.json
|
||||
# multilingual-e5-small: an asymmetric retrieval model. It is trained to match
|
||||
# a short question against a longer passage, which is what note recall is.
|
||||
# The quantized file is the one we download, deploy and measure — see
|
||||
# RECALL-EVAL-31-07-2026.md.
|
||||
EMBEDDER_DIR := $(shell pwd)/models/embedder/multilingual-e5-small
|
||||
EMBEDDER_MODEL_URL := https://huggingface.co/Xenova/multilingual-e5-small/resolve/main/onnx/model_quantized.onnx
|
||||
EMBEDDER_TOKENIZER_URL := https://huggingface.co/Xenova/multilingual-e5-small/resolve/main/tokenizer.json
|
||||
|
||||
download-embedder:
|
||||
mkdir -p $(EMBEDDER_DIR)
|
||||
|
||||
@@ -0,0 +1,140 @@
|
||||
# Phrasing evaluation — 31-07-2026
|
||||
|
||||
How Maven words a nudge, measured instead of argued. Counterpart to
|
||||
`ROUTING-EVAL-31-07-2026.md`.
|
||||
|
||||
- Fixture + scorer: `internal/phraser/eval/` (`nudges_v1.json`, 15 cases; `eval.go`, `checks.go`)
|
||||
- Reproduce: `MAVEN_LLM_URL=http://127.0.0.1:18099 make eval-phrasing`
|
||||
- Model: Qwen3.5-0.8B Q4_K_M, the resident model. Not swapped.
|
||||
- Commit: `a40bc55` (prompt fix)
|
||||
|
||||
Every check is a string or length test a human can read and disagree with. No model
|
||||
grades another model here.
|
||||
|
||||
## Result
|
||||
|
||||
| | before | after |
|
||||
|---|---|---|
|
||||
| **cases passing every check** | **0/15** | **13/15** |
|
||||
| mood in enum | 6/15 | 15/15 |
|
||||
| Russian | 2/15 | 14/15 |
|
||||
| length (≤120 chars, ≤16 words) | 13/15 | 15/15 |
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||||
| feminine self-reference | 15/15 | 15/15 |
|
||||
| no cringe | 13/15 | 15/15 |
|
||||
| on topic | 6/15 | 13/15 |
|
||||
| p50 latency | 11.4s | 11.4s |
|
||||
|
||||
Latency did not move and is not good. 11s to word one nudge on this box.
|
||||
|
||||
## The bug reproduced
|
||||
|
||||
Yes, exactly as reported. 7 of 15 messages were the literal string `"..."`, and one was
|
||||
`"full voice message"`. Both are text copied straight out of the prompt.
|
||||
|
||||
The system prompt said:
|
||||
|
||||
```
|
||||
Respond ONLY with valid JSON: {"response": "full voice message", "mood": "neutral"}
|
||||
```
|
||||
|
||||
and the user prompt said:
|
||||
|
||||
```
|
||||
Respond as JSON: {"response": "...", "mood": "..."}
|
||||
```
|
||||
|
||||
A 0.8B does not read `"..."` as "put your answer here". It reads it as the answer. The
|
||||
prompt was a worked example whose worked part was blank, so the model filled the slot by
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copying. This is the whole of finding 1.
|
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|
||||
## What else was wrong
|
||||
|
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Four separate faults, all prompt-side:
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||||
|
||||
1. **Placeholder echo** (7 cases) — above.
|
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2. **Wrong language** (13/15 failed the language check). The prompt was entirely English
|
||||
and said "in the user's language (Russian or English)". The model picked English. It is
|
||||
never English: the nudge is spoken by a Russian piper voice.
|
||||
3. **Rule names are English identifiers.** `netdata_critical`, `service_down`, `break` went
|
||||
into the prompt raw. The model cannot nudge about a topic it has not been told in words,
|
||||
so 9/15 were off topic. The daemon knows what its own rules mean; now it says so.
|
||||
4. **Mood invented** (`"warm"`, twice). The enum was listed in a parenthesis at the end of
|
||||
an English sentence. Now it is its own line: "ровно одно из: neutral, happy, thinking,
|
||||
tired, confused."
|
||||
|
||||
Plus two non-prompt faults the run exposed:
|
||||
|
||||
- **The no-parse fallback was English.** When the model returned nothing usable, the body
|
||||
became `fmt.Sprintf("%s — %s", rule, sev)` — `"water — care"` — and that string went to
|
||||
a Russian TTS. Now it falls back to plain Russian.
|
||||
- **Durations were English.** `humanDur` returns "3 hours"; it was landing verbatim inside
|
||||
Russian sentences. Nudges now use a Russian formatter.
|
||||
|
||||
## Three iterations, and what each taught
|
||||
|
||||
| | score | change |
|
||||
|---|---|---|
|
||||
| baseline | 0/15 | — |
|
||||
| iter 1 | 2/15 | Russian prompt, filled-in examples, Russian durations |
|
||||
| iter 2 | 11/15 | required keyword per rule, one example instead of five, Russian fallback |
|
||||
| iter 3 | **13/15** | examples moved to topics that are not rules |
|
||||
|
||||
The interesting step is 1 → 2. Fixing the placeholder did not fix the disease, it moved it:
|
||||
the model stopped copying `"..."` and started copying my first example instead. Five nudges
|
||||
in a row came back as `"Ты не пил воду три часа. Налей стакан."` regardless of the rule.
|
||||
|
||||
**A small model copies the nearest concrete text in its prompt.** That is one failure mode
|
||||
with two symptoms. The fix that stuck was making the examples about laundry and a laptop
|
||||
battery — topics no rule ever produces, so copying them is visible in the score rather than
|
||||
invisibly passing the water cases.
|
||||
|
||||
## Do not oversell 13/15
|
||||
|
||||
Seven of the thirteen passes are the **deterministic fallback**, not the model:
|
||||
`"Напоминаю: таблетки."`, `"Сервис не отвечает."`, `"Критический алярм: проверь диск."`,
|
||||
`"Ты давно не пил воду."`. Those are strings this commit added to Go. The model returned
|
||||
nothing parseable and the fallback scored.
|
||||
|
||||
So the honest reading is roughly **6/15 from the model, 7/15 from a fallback, 2/15 failing**.
|
||||
The prompt fix is real — `"..."` is nearly gone and the language and mood checks are clean —
|
||||
but a large part of the jump is that failure now degrades into Russian instead of into
|
||||
`"water — care"`. That is a genuine improvement for the operator and a weak one for the model.
|
||||
|
||||
The two remaining failures: one `"..."` recurrence (`routine-stretch`) and one meal nudge
|
||||
that never says food.
|
||||
|
||||
## Broken, found, not fixed
|
||||
|
||||
1. ~~**`checkFeminine` only catches half the constraint.**~~ **Fixed** (#381). It scanned for
|
||||
masculine self-reference only, so three messages that addressed the *owner* in the feminine
|
||||
("ты давно не отдыхал**а**") scored clean. There is now a second check, `hisgender`: a
|
||||
feminine past-tense verb (-ла/-лась) in a sentence addressed to him ("ты", "тебе", "твой")
|
||||
fails, unless the verb is hers ("я заметила", "напомнила тебе"). It is a suffix rule, not a
|
||||
parser — see the comment in `checks.go` for what it misses. A fresh 15-case run after adding
|
||||
it scored **12/15** with `hisgender` 15/15; the model did not repeat the feminine address in
|
||||
that sample, and the check is pinned by unit tests on the recorded bad strings instead.
|
||||
2. **Grammar is not checked at all, and it is bad.** `"Он не ел 11 дней"` (it was 11 hours),
|
||||
`"Сонуждились 7 дней"` (not a word), `"Они забыли воду"` (wrong person entirely). Every
|
||||
one of these passes all six checks. The fixture measures properties, not fluency, and at
|
||||
0.8B fluency is the binding constraint.
|
||||
3. **Unit confusion.** The model turns hours into days about a third of the time. The
|
||||
prompt now says "11 ч"; it reads it as days.
|
||||
4. **11s p50.** Unchanged and untouched here. A nudge the model takes eleven seconds to
|
||||
word has missed its moment. Worth its own task.
|
||||
5. **The keyword hint is close to teaching to the test.** `ruleKeywords` names the word the
|
||||
on-topic check looks for. It is defensible — the daemon genuinely knows its rule topics
|
||||
and the model genuinely cannot infer them from `netdata_critical` — but the on-topic
|
||||
number is softer than the others because of it.
|
||||
|
||||
## Next steps
|
||||
|
||||
1. ~~**Add a second-person gender check**~~ — done, `hisgender` in `checks.go` (#381).
|
||||
2. **Decide whether the fallback should count as a pass.** Right now `Score` cannot tell a
|
||||
model answer from a fallback. Either mark fallback bodies in `PhrasedNudge` or count them
|
||||
in their own column. Without that, any future prompt change can score well by failing
|
||||
more.
|
||||
3. **Attack the 11s.** Nudge phrasing is short and non-interactive; thinking off is the first
|
||||
thing to try, as it was for routing (#376).
|
||||
4. **Re-measure when #122 lands.** The CPT'd Qwen3-1.7B is the target. 13/15 with seven
|
||||
fallbacks is the floor it has to beat, and the fluency problems above are the ones a
|
||||
bigger, Russian-trained checkpoint should actually fix.
|
||||
+153
-2
@@ -75,6 +75,14 @@ same vector. A note is indexed in both places with the same embedding, so if it
|
||||
`QueryNotes` it fails again here — the branch can only ever return a **fact**. Its comment calls it
|
||||
"additive"; for notes it is not.
|
||||
|
||||
**Fixed (Vikunja #373).** The memory pass now runs *first*, as one search over notes and facts with
|
||||
one gate, so whichever memory is clearly the best match answers — note or fact. The notes-only pass
|
||||
stays behind it for notes the vector index does not hold. No threshold changed, so the set of
|
||||
questions Maven answers is the same; only which memory answers them. The fixture gained two mixed
|
||||
note+fact cases (`ru-mixed-031`, `ru-mixed-032`), which is why the counts below are out of 27
|
||||
answerable cases and not 25: hash recall@1 36.0% (9/25) → 37.0% (10/27), e5 recall@1 72.0% (18/25) →
|
||||
70.4% (19/27) with answered-after-gate 68.0% → 66.7% and false recall unchanged at 1/5.
|
||||
|
||||
### 5. Ranking has no recency or type signal, and the store is not the bottleneck
|
||||
|
||||
`internal/store/notes.go:67` sorts by cosine and uses `ts` only to break an exact float tie, which
|
||||
@@ -83,14 +91,157 @@ sqlite-backed `store.MemoryStore` and `memory.InMemoryStore` identically — bot
|
||||
(`internal/store/memory.go:64`) at ~150µs over 42 rows against a ~59ms query embed. An ANN index is
|
||||
not the problem to solve.
|
||||
|
||||
## Re-measured after the embedder swap — 31-07-2026, later the same day
|
||||
|
||||
Changed: `models/embedder/` is now **multilingual-e5-small** (quantized, 118MB), with `query: ` in
|
||||
front of a question and `passage: ` in front of a stored note (Vikunja #371). `deploy/mavend.json`
|
||||
and `make download-embedder` now name the same file, and it is the quantized one — that is what the
|
||||
column below measures (Vikunja #372). Everything else is unchanged: same fixture, same store, same
|
||||
0.55 gate. The old column is the baseline and is left as it was.
|
||||
|
||||
| | recall+onnx, MiniLM (baseline) | recall+onnx, e5-small (new) |
|
||||
|---|---|---|
|
||||
| **recall@1** | 60.0% (15/25) | **72.0% (18/25)** |
|
||||
| recall@3 | 80.0% (20/25) | 84.0% (21/25) |
|
||||
| **answered after the 0.55 gate** | 48.0% (12/25) | **72.0% (18/25)** |
|
||||
| wrong note on top / tie on top | 10 / 0 | 7 / 0 |
|
||||
| ranked first, then silenced by the gate | 3 | 0 |
|
||||
| **false recall** | 1/5 (20%) | **5/5 (100%)** |
|
||||
| top-1 score when right, min / median | 0.559 / 0.678 | 0.791 / 0.857 |
|
||||
| top-1 when it must stay silent, median / max | 0.470 / 0.567 | 0.815 / 0.835 |
|
||||
| RU / EN / `hard` cases passed | 13/24 / 3/6 / 2/11 | 14/24 / 4/6 / 5/11 |
|
||||
| latency p50 / p95 / max | 59ms / 148ms / 194ms | 18ms / 37ms / 49ms |
|
||||
|
||||
### What moved
|
||||
|
||||
Ranking got better and got faster. Half the previously-unwinnable `hard` cases now pass (2/11 →
|
||||
5/11), the guitar note no longer beats the docker-logs note, and the gate stops silencing notes that
|
||||
already ranked first. The quantized e5 is also ~3x quicker than the fp32 MiniLM it replaces.
|
||||
|
||||
### What got worse: the gate is now a no-op
|
||||
|
||||
e5 packs every cosine into a narrow high band. Right-note scores start at 0.791; must-stay-silent
|
||||
scores reach 0.835. **The distributions still overlap, and now they overlap above the gate**, so
|
||||
0.55 admits everything and false recall goes from 1/5 to 5/5. The sweep:
|
||||
|
||||
```
|
||||
gate 0.50–0.70: answered 18/25 (72%) false recall 5/5
|
||||
gate 0.80: answered 17/25 (68%) false recall 4/5
|
||||
gate 0.90: answered 0/25 ( 0%) false recall 0/5
|
||||
```
|
||||
|
||||
There is no value that keeps real recall and rejects made-up questions — same conclusion as before,
|
||||
now with a wider band and no room at all. `query_min_score` was left at 0.55 as instructed. **The
|
||||
recommendation is to leave it there and stop tuning it**: any number under ~0.79 is a no-op and
|
||||
anything above starts cutting real recall long before it stops the false ones. The fix is a margin
|
||||
gate (`top1 − top2 > δ`), next-steps item 3, which is now the top item.
|
||||
|
||||
### The prefixes did not do the work
|
||||
|
||||
A control run with both prefixes set to the empty string scored the **same** recall@1 (72%), a
|
||||
slightly better recall@3 (88%) and the same 5/5 false recall. So on this fixture the gain comes from
|
||||
the model, not from the `query:` / `passage:` split. The prefixes are kept because they are how e5
|
||||
was trained and the split is the right shape for the read path, but they are not worth defending on
|
||||
this evidence — a bigger fixture may say otherwise.
|
||||
|
||||
### Stored vectors from the old model are now junk
|
||||
|
||||
Cosine between a MiniLM vector and an e5 vector means nothing. Every row already in `notes` and in
|
||||
the vector memory table was written by the old model, so after this deploy they will score as noise
|
||||
against a new query. A live database needs every note and fact re-embedded before recall works at
|
||||
all. Filed as its own task.
|
||||
|
||||
## Margin gate — 31-07-2026, third run
|
||||
|
||||
Next-steps item 3, done. The absolute gate is replaced by a **margin gate**: answer only when the
|
||||
top hit beats the runner-up by more than delta (`top1 − top2 > δ`). Same fixture, same e5 embedder,
|
||||
same store as the run above. `internal/memory/gate.go` holds the check; both read paths call it
|
||||
(`cmd/mavend/recall.go` and the notes-RAG branch in `voice.go`). New knob `voice.query_min_margin`
|
||||
in `deploy/mavend.json`, default 0.008.
|
||||
|
||||
### Why the absolute gate could not work, in one line of data
|
||||
|
||||
The harness now prints the margin distributions, and they barely overlap where the raw scores
|
||||
overlap completely:
|
||||
|
||||
| | top-1 score | margin (top1 − top2) |
|
||||
|---|---|---|
|
||||
| right note first (n=18) | min 0.810, median 0.862, max 0.890 | min 0.001, median 0.029, max 0.053 |
|
||||
| must stay silent (n=5) | min 0.795, median 0.815, max 0.835 | min 0.000, median 0.002, **max 0.019** |
|
||||
|
||||
Four of the five must-be-silent cases have a margin at or under 0.002 — when there is nothing to
|
||||
recall, e5 finds several notes equally close and no clear winner. That is the signal the absolute
|
||||
score throws away.
|
||||
|
||||
### The delta sweep
|
||||
|
||||
Absolute gate held at 0.55 throughout.
|
||||
|
||||
```
|
||||
delta 0.000: answered 18/25 (72%) false recall 5/5
|
||||
delta 0.002: answered 17/25 (68%) false recall 3/5
|
||||
delta 0.005: answered 17/25 (68%) false recall 2/5
|
||||
delta 0.008: answered 17/25 (68%) false recall 1/5 <- chosen
|
||||
delta 0.010: answered 15/25 (60%) false recall 1/5
|
||||
delta 0.012: answered 14/25 (56%) false recall 1/5
|
||||
delta 0.015: answered 12/25 (48%) false recall 1/5
|
||||
delta 0.020: answered 11/25 (44%) false recall 0/5
|
||||
delta 0.025: answered 9/25 (36%) false recall 0/5
|
||||
delta 0.030: answered 8/25 (32%) false recall 0/5
|
||||
delta 0.040: answered 4/25 (16%) false recall 0/5
|
||||
delta 0.050: answered 2/25 ( 8%) false recall 0/5
|
||||
delta 0.060: answered 0/25 ( 0%) false recall 0/5
|
||||
```
|
||||
|
||||
### Chosen: δ = 0.008
|
||||
|
||||
It is the best point on the frontier, not a taste call. **0.008 dominates 0.010, 0.012 and 0.015
|
||||
outright** — same 1/5 false recall, 8 to 20 points more real recall. Everything below it buys recall
|
||||
back only by admitting more false recalls (0.005 → 2/5, 0.002 → 3/5). The next real improvement is
|
||||
0.020 at 0/5 false, and it costs 24 points of recall to get there.
|
||||
|
||||
The brief's bar was "recall above 60% with false recall at 1/5 or better". 0.008 clears it with room:
|
||||
68% and 1/5.
|
||||
|
||||
### Before / after
|
||||
|
||||
| | absolute gate 0.55 (previous) | margin gate δ=0.008 |
|
||||
|---|---|---|
|
||||
| recall@1 (ranking, ungated) | 72.0% (18/25) | 72.0% (18/25) — unchanged, the gate does not rank |
|
||||
| **answered after the gate** | 72.0% (18/25) | **68.0% (17/25)** |
|
||||
| **false recall** | **5/5 (100%)** | **1/5 (20%)** |
|
||||
| fixture cases passed | 18/30 | **21/30** |
|
||||
|
||||
Four false recalls removed for one real answer. That is the trade the spec asks for — she is not a
|
||||
guesser-of-truth. The one survivor is `en-pref-025` ("should i be offered wine"), which recalls a
|
||||
filler note at 0.796 with a 0.019 margin: the widest silent-case margin in the fixture, and it sits
|
||||
inside the real-recall range, so no delta removes it without taking real answers with it.
|
||||
|
||||
### Does the absolute cutoff still earn its keep? Marginally — kept
|
||||
|
||||
On this fixture with e5 it is a **no-op**: the lowest right-note score is 0.791, so 0.55 rejects
|
||||
nothing the margin does not already reject. It is kept for two reasons, neither glamorous. It still
|
||||
does real work for the hash embedder (its own sweep shows answers dropping from 16% to 0% between
|
||||
0.30 and 0.50), and it is the only thing standing between the user and a reply built from a store
|
||||
where everything is far away but one row happens to be a little less far — a near-empty database, or
|
||||
the stale-vector case below. Cheap insurance, no measured cost. If a later embedder makes it bite,
|
||||
the sweep is one command.
|
||||
|
||||
### Caveat on the numbers
|
||||
|
||||
Five must-be-silent cases is a thin basis for a 4-point decision. 1/5 and 2/5 differ by one case.
|
||||
The shape of the frontier is trustworthy — margins separate, absolute scores do not — but δ=0.008
|
||||
itself should be re-read off a bigger fixture (next-steps item 6) before anyone defends the third
|
||||
decimal.
|
||||
|
||||
## Next steps — ordered by value-to-risk; nothing here is a decision
|
||||
|
||||
1. **Swap the embedder to `multilingual-e5-small` with `query:`/`passage:` prefixes.** One config
|
||||
change plus a prefix in `onnxembedder.go`, re-measurable in one command.
|
||||
2. **Re-run `make eval-recall`, then set the gate from the sweep** — not before. Any
|
||||
`query_min_score` picked against today's embedder describes a model on its way out.
|
||||
3. **Replace the absolute-score gate with a margin gate** (`top1 − top2 > δ`) — as the routing eval
|
||||
concluded, absolute cosine cannot see a flat distribution.
|
||||
3. ~~**Replace the absolute-score gate with a margin gate**~~ — done, see the section above.
|
||||
δ=0.008, false recall 5/5 → 1/5.
|
||||
4. **Delete or repair the dead `memStore` branch** at `voice.go:776` — search before the gate,
|
||||
gate it separately, or restrict it to facts and say so.
|
||||
5. **Add a mild time decay to ranking** — the newest statement of a preference is the true one.
|
||||
|
||||
+108
-10
@@ -66,15 +66,113 @@ Three things this run settles:
|
||||
`запиши что…` phrasings toward fact, and that suspicion stands — all five `ru-note-*`
|
||||
cases now land on fact. Tracked as Vikunja #375.
|
||||
|
||||
**Thinking off is the best configuration measured so far**, on both accuracy and latency
|
||||
(Vikunja #376). That is worth understanding before flipping: routing is a short
|
||||
classification into a fixed enum with grammar-constrained output, so there is little to
|
||||
reason about, and the thinking trace mostly gives a small model room to talk itself out of
|
||||
the right answer. Phrasing is a different job and needs measuring separately.
|
||||
The `thinking off` column above read as the best configuration measured so far (Vikunja #376).
|
||||
**It was wrong** — see the controlled re-run below. Ignore that column.
|
||||
|
||||
Still `6 / 6` missed clarify — the router has no way to say "I don't know" (Vikunja #359).
|
||||
That is unchanged by anything here.
|
||||
|
||||
## Thinking off — 31-07-2026, controlled re-run (Vikunja #376)
|
||||
|
||||
The "thinking off wins by 6 points" observation above **does not hold**. It was a measurement
|
||||
artefact, and the earlier table's `thinking off` column should be ignored.
|
||||
|
||||
The thinking-off variant was scored by a hand-rolled HTTP client living in the test file
|
||||
instead of `llm.Client`. That copy did not send `repeat_penalty`, which the real router does
|
||||
send (`routeRepeatPenalty = 1.15`). So the two columns differed on two axes at once, and the
|
||||
one that mattered was the penalty, not the thinking mode.
|
||||
|
||||
Re-measured with everything else held equal — same fixture, same prompt, same grammar, same
|
||||
sampling, same idle box, the three configurations run back to back and never concurrently:
|
||||
|
||||
| | llm-only, thinking on | llm-only, thinking off | cascade+llm |
|
||||
|---|---|---|---|
|
||||
| intent-only accuracy | 59.2% (45/76) | 59.2% (45/76) | 61.8% (47/76) |
|
||||
| full accuracy (intent+slots+gate) | 38.2% (29/76) | 38.2% (29/76) | 57.9% (44/76) |
|
||||
| route errors | 3 | 3 | 0 |
|
||||
| grammar violations | 3 (all 3 route errors) | 3 (same 3 cases) | 0 |
|
||||
| missed clarify | 5 / 6 | 5 / 6 | 5 / 6 |
|
||||
| p50 latency | 836ms | 920ms | 810ms |
|
||||
| p95 latency | 1.41s | 2.00s | 1.31s |
|
||||
|
||||
Thinking off is not just a tie on the headline numbers — it is identical case for case, with
|
||||
the same confusion matrix and the same three unparseable replies. The latency difference is
|
||||
run-to-run noise on one box, and it points the wrong way here.
|
||||
|
||||
The reason is simpler than any accuracy argument: **this llama-server build ignores the
|
||||
request-level thinking switch for this model.** Probed directly against the running server
|
||||
with `chat_template_kwargs.enable_thinking = false`, `chat_template_kwargs.thinking = false`
|
||||
and top-level `reasoning_budget = 0` — all three return a byte-identical answer with the
|
||||
thinking trace still in `reasoning_content`, and the server reports the prompt prefix as
|
||||
cached, meaning the rendered template did not change. There was never anything being turned
|
||||
off, which is also why the numbers match exactly.
|
||||
|
||||
Nothing was defaulted. `internal/llm` still has no `chat_template_kwargs` field, `VoiceConfig`
|
||||
has no thinking flag, and `deploy/mavend.json` is unchanged. The misleading third
|
||||
configuration is removed from `internal/router/eval` so the table it produced cannot be quoted
|
||||
again.
|
||||
|
||||
Two caveats worth saying out loud:
|
||||
|
||||
- **The fixture is 76 cases.** A 6-point difference on 76 cases is roughly 4-5 cases and would
|
||||
not have been worth trusting even if it had reproduced. This one was exactly 0 cases, which
|
||||
is a much easier call.
|
||||
- **This is one server build and one checkpoint** (`b9351`, Qwen3.5-0.8B Q4_K_M). If the
|
||||
#122 checkpoint or a newer llama.cpp does honour the switch, the question reopens — but it
|
||||
reopens as an unmeasured question, not as a 6-point win.
|
||||
|
||||
Phrasing was **not** measured. Whether thinking helps there is still open, and now also blocked
|
||||
on the same "can we even turn it off" question.
|
||||
|
||||
## Clock and calendar rule — 31-07-2026 (Vikunja #374)
|
||||
|
||||
`routeSystem` never said whether "который час" or "какое число завтра" are `system` or
|
||||
`query`, and `system→query ×4` showed up in every run. The rule added says: the clock and the
|
||||
calendar date themselves are `system`; what is *written in* the calendar or in memory
|
||||
("что у меня завтра", "какие есть напоминания") stays `query`; and a time named inside a
|
||||
request ("напомни завтра…") is just a detail of the request, not a reason for `system`.
|
||||
|
||||
That split is not a preference. In `cmd/mavend/voice.go` only `replySystem` owns the clock and
|
||||
the date formatter, so a clock question routed to `query` falls into the embedder + note RAG
|
||||
and answers "не знаю". The agenda, on the other hand, is answered by `ParseCalendarDate` +
|
||||
`CalendarEvents` *inside* the `query` branch, so that side has to stay `query`. The rule sits
|
||||
above the question test because every one of these utterances carries a question word and a
|
||||
later rule would never be reached.
|
||||
|
||||
The fixture is now 77 cases: one calendar-agenda case was added
|
||||
(`ru-query-019` "что у меня стоит в календаре на послезавтра", intent `query`) specifically so
|
||||
an over-broad system rule cannot pass unnoticed. The clock/date cases (`ru-sys-001/002/005`,
|
||||
`en-sys-001`) already existed.
|
||||
|
||||
Three runs, same box, back to back, never concurrently:
|
||||
|
||||
| | baseline | first rule (too broad) | rule as committed |
|
||||
|---|---|---|---|
|
||||
| llm-only intent-only | 59.2% (45/76) | 54.5% (42/77) | 59.7% (46/77) |
|
||||
| llm-only full | 38.2% | 35.1% | 39.0% |
|
||||
| llm-only route errors | 3 | 4 | 5 |
|
||||
| llm-only p50 | 1.09s | 0.91s | 0.93s |
|
||||
| cascade+llm intent-only | 61.8% (47/76) | 58.4% | 62.3% (48/77) |
|
||||
| cascade+llm full | 57.9% | 54.5% | 59.7% |
|
||||
| cascade+llm route errors | 0 | 0 | 0 |
|
||||
| cascade+llm p50 | 0.91s | 0.80s | 1.04s |
|
||||
|
||||
**The targeted bug is fixed and the headline number did not move.** `system→query ×4` is gone
|
||||
in both LLM configurations — the `time` and `date` tags go from 0/2 and 0/2 to 2/2 and 2/2 —
|
||||
but the model then over-applies the rule, and `query→system ×5` plus `reminder→system ×2`
|
||||
appear where they did not exist before. Net accuracy is a wash, inside the noise of a 77-case
|
||||
fixture.
|
||||
|
||||
The first attempt is shown because it is the honest history: it said "спрашивает время, дату
|
||||
или день недели → system" with no scope, which swept up reminders, and it cost 3-5 points. It
|
||||
was tightened once, on the reasoning that a rule capturing "напомни завтра в 7" is simply
|
||||
wrong, and not tuned further. The remaining `query/reminder → system` over-trigger is a new,
|
||||
separate weakness of the sub-1B model and deserves its own task rather than more prompt
|
||||
kneading against a held-out fixture.
|
||||
|
||||
The rule is kept. It is correct about what the daemon can answer, and the failure it replaces
|
||||
was silent ("не знаю" to "который час") while the one it introduces is loud.
|
||||
|
||||
## Findings
|
||||
|
||||
### 1. The resident model does route better — 50.0% vs 36.8%
|
||||
@@ -145,11 +243,11 @@ Note the grammar's `string ::= "\"" ([^"\\] | "\\" .)* "\""` is unbounded, so no
|
||||
|
||||
### 7. Two hypotheses tested and closed
|
||||
|
||||
- **Thinking mode is a non-issue.** Qwen3.5's template defaults `thinking = 1`, so
|
||||
grammar-constrained JSON lands in `reasoning_content` with `content` empty —
|
||||
`llm.Client`'s fallback handles it. A `thinking off` run scored *identically* (18/76,
|
||||
48.7%, same p50). `internal/llm` deliberately does **not** grow a `chat_template_kwargs`
|
||||
field.
|
||||
- **Thinking mode is a non-issue.** Confirmed twice now, the second time properly — see the
|
||||
controlled re-run section. Grammar-constrained JSON lands in `reasoning_content` with
|
||||
`content` empty and `llm.Client`'s fallback handles it; the request-level switch does
|
||||
nothing on this build. `internal/llm` deliberately does **not** grow a
|
||||
`chat_template_kwargs` field.
|
||||
- **Runaway array repetition does not reproduce.** An isolated smoke test with a stripped
|
||||
grammar emitted `{"intent":"reminder"}` until `MaxTokens`; under the real `routeSystem`
|
||||
prompt the few-shot examples anchor it to one object. 2 errors in 76, not 76.
|
||||
|
||||
+78
-17
@@ -40,9 +40,44 @@ var clarifyQuestions = map[dialogue.Slot]string{
|
||||
dialogue.SlotFn: "Что сделать?",
|
||||
}
|
||||
|
||||
// clarifyDropped — she asked once, the answer still did not fill the gap, so
|
||||
// the request is gone. Said plainly, once, with no second question.
|
||||
const clarifyDropped = "Не разобрала — скажи целиком, пожалуйста."
|
||||
// clarifyGaveUp — she is out of questions and still does not have the slot. She
|
||||
// says so out loud: dropping the request in silence would leave him thinking it
|
||||
// landed. Feminine self-reference ("поняла"), as everywhere.
|
||||
const clarifyGaveUp = "Прости, я не поняла. Скажи, пожалуйста, по-другому."
|
||||
|
||||
// clarifyExpired — his answer came after the TTL, so the parked request is
|
||||
// already gone. Same tone as clarifyGaveUp, different reason: too much time
|
||||
// passed, not "I did not understand". Feminine self-reference ("ждала",
|
||||
// "отпустила"); he is addressed with a plain imperative.
|
||||
const clarifyExpired = "Прости, я слишком долго ждала ответа и отпустила прошлую просьбу. Если она ещё нужна, скажи заново."
|
||||
|
||||
// clarifyExpiredNotice returns that line when a parked question had just timed
|
||||
// out, and "" when nothing was parked. Call it right after
|
||||
// resolveClarifyAnswer: a live question is answered there, an expired one is
|
||||
// only reported here — the words themselves still go on to be routed fresh.
|
||||
func (h *reactiveHandler) clarifyExpiredNotice() string {
|
||||
if h.clarifyStore == nil {
|
||||
return ""
|
||||
}
|
||||
if !h.clarifyStore.TakeExpired(voiceDialogueID, h.now()) {
|
||||
return ""
|
||||
}
|
||||
log.Printf("voice: clarify — parked question expired, telling him and routing the words fresh")
|
||||
return clarifyExpired
|
||||
}
|
||||
|
||||
// withNotice glues the expiry notice in front of this turn's reply. One turn
|
||||
// carries one reply on the wire, so the notice cannot be a message of its own —
|
||||
// but neither the notice nor the fresh answer may be dropped.
|
||||
func withNotice(notice, reply string) string {
|
||||
if notice == "" {
|
||||
return reply
|
||||
}
|
||||
if reply == "" {
|
||||
return notice
|
||||
}
|
||||
return notice + " " + reply
|
||||
}
|
||||
|
||||
// missingFor returns the slots a decision still needs, most important first.
|
||||
// Empty ⇒ there is nothing identifiable to ask about.
|
||||
@@ -79,13 +114,14 @@ func (h *reactiveHandler) askClarify(dec router.Decision) (string, bool) {
|
||||
return "", false
|
||||
}
|
||||
h.clarifyStore.Put(voiceDialogueID, &dialogue.PendingQuestion{
|
||||
Intent: dialogue.Intent(dec.Intent),
|
||||
Slots: toDialogueSlots(dec.Slots),
|
||||
Missing: []dialogue.Slot{slot},
|
||||
Utterance: dec.Utterance,
|
||||
Asked: h.now(),
|
||||
TTL: clarifyTTL,
|
||||
Attempts: 1, // asked once; MaxAttempts is 1, so there is no second ask
|
||||
Intent: dialogue.Intent(dec.Intent),
|
||||
Slots: toDialogueSlots(dec.Slots),
|
||||
Missing: []dialogue.Slot{slot},
|
||||
Utterance: dec.Utterance,
|
||||
Asked: h.now(),
|
||||
TTL: clarifyTTL,
|
||||
Attempts: 1, // this ask
|
||||
MaxAttempts: h.clarifyMaxAttempts,
|
||||
})
|
||||
log.Printf("voice: clarify — asked about %s for intent=%s", slot, dec.Intent)
|
||||
return question, true
|
||||
@@ -97,8 +133,9 @@ func (h *reactiveHandler) askClarify(dec router.Decision) (string, bool) {
|
||||
// resolveConfirm and checked in the same place.
|
||||
//
|
||||
// The answer is parsed with the same extractor the router uses, for the intent
|
||||
// she parked — no second parser. If it still does not fill the gap the request
|
||||
// is dropped: she does not ask again.
|
||||
// she parked — no second parser. If it still does not fill the gap she asks
|
||||
// again, up to MaxAttempts; after that she says out loud that she did not
|
||||
// understand. She never drops the request in silence.
|
||||
func (h *reactiveHandler) resolveClarifyAnswer(ctx context.Context, text string) (string, bool) {
|
||||
if h.clarifyStore == nil {
|
||||
return "", false
|
||||
@@ -107,17 +144,14 @@ func (h *reactiveHandler) resolveClarifyAnswer(ctx context.Context, text string)
|
||||
if q == nil {
|
||||
return "", false
|
||||
}
|
||||
// One shot either way: the question is consumed whether or not the answer
|
||||
// works, so a failed answer can't leave the question armed.
|
||||
h.clarifyStore.Delete(voiceDialogueID)
|
||||
|
||||
intent := router.Intent(q.Intent)
|
||||
answer := h.extractor.Extract(ctx, intent, text, h.now())
|
||||
merged := q.Answer(text, toDialogueSlots(answer))
|
||||
if len(dialogue.StillMissing(q.Missing, merged)) > 0 {
|
||||
log.Printf("voice: clarify — answer %q did not fill %v, dropping", text, q.Missing)
|
||||
return clarifyDropped, true
|
||||
return h.reaskOrGiveUp(q, merged, text), true
|
||||
}
|
||||
h.clarifyStore.Delete(voiceDialogueID)
|
||||
|
||||
// Rebuild the decision as if it had routed cleanly, then run it down the
|
||||
// normal path. Clarify is deliberately false and the intent is unchanged:
|
||||
@@ -133,6 +167,29 @@ func (h *reactiveHandler) resolveClarifyAnswer(ctx context.Context, text string)
|
||||
return h.finishClarified(ctx, dec), true
|
||||
}
|
||||
|
||||
// reaskOrGiveUp handles an answer that left the gap open: ask the same question
|
||||
// again while she has attempts left, otherwise say she did not understand and
|
||||
// let the request go. Never returns "" — a mute give-up reads as "done".
|
||||
func (h *reactiveHandler) reaskOrGiveUp(q *dialogue.PendingQuestion, merged dialogue.Slots, text string) string {
|
||||
question := ""
|
||||
if len(q.Missing) > 0 {
|
||||
question = clarifyQuestions[q.Missing[0]]
|
||||
}
|
||||
if question == "" || !q.CanAsk() {
|
||||
h.clarifyStore.Delete(voiceDialogueID)
|
||||
log.Printf("voice: clarify — gave up on %v after %d question(s), answer was %q", q.Missing, q.Attempts, text)
|
||||
return clarifyGaveUp
|
||||
}
|
||||
// Re-park with whatever the answer DID give, the clock restarted and one
|
||||
// more question spent.
|
||||
q.Slots = merged
|
||||
q.Attempts++
|
||||
q.Asked = h.now()
|
||||
h.clarifyStore.Put(voiceDialogueID, q)
|
||||
log.Printf("voice: clarify — answer %q did not fill %v, asking again (attempt %d)", text, q.Missing, q.Attempts)
|
||||
return question
|
||||
}
|
||||
|
||||
// finishClarified runs a completed decision through the same steps a freshly
|
||||
// routed one takes: remember the turn, act, then phrase.
|
||||
func (h *reactiveHandler) finishClarified(ctx context.Context, dec router.Decision) string {
|
||||
@@ -146,6 +203,10 @@ func (h *reactiveHandler) finishClarified(ctx context.Context, dec router.Decisi
|
||||
if reply == "" {
|
||||
reply = h.replier.Reply(dec)
|
||||
}
|
||||
if reply == "" {
|
||||
// Belt: an empty reply here would be a silent drop.
|
||||
reply = clarifyGaveUp
|
||||
}
|
||||
return reply
|
||||
}
|
||||
|
||||
|
||||
+102
-11
@@ -86,7 +86,7 @@ func TestClarifyReminderCompletesOnAnswer(t *testing.T) {
|
||||
if !handled {
|
||||
t.Fatal("the answer to an open question must be consumed as an answer")
|
||||
}
|
||||
if reply == clarifyDropped {
|
||||
if reply == clarifyGaveUp {
|
||||
t.Fatalf("a good answer must not drop the request: %q", reply)
|
||||
}
|
||||
|
||||
@@ -111,7 +111,7 @@ func TestClarifyFactCompletesOnAnswer(t *testing.T) {
|
||||
if _, asked := h.askClarify(clarifyDec(router.IntentFact, router.Slots{Text: "запиши"}, "запиши")); !asked {
|
||||
t.Fatal("a fact with no key should be asked about")
|
||||
}
|
||||
if reply, handled := h.resolveClarifyAnswer(ctx, "пил воду"); !handled || reply == clarifyDropped {
|
||||
if reply, handled := h.resolveClarifyAnswer(ctx, "пил воду"); !handled || reply == clarifyGaveUp {
|
||||
t.Fatalf("answer should complete the fact, handled=%v reply=%q", handled, reply)
|
||||
}
|
||||
if fact, err := st.LatestFact(ctx, "water"); err != nil || fact.Key != "water" {
|
||||
@@ -137,26 +137,87 @@ func TestClarifyAnswerAfterTTLIsANewRequest(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
// TestClarifyUnclearAnswerDropsWithoutAskingAgain — MaxAttempts is 1.
|
||||
func TestClarifyUnclearAnswerDropsWithoutAskingAgain(t *testing.T) {
|
||||
// TestClarifyAsksThreeTimesThenSaysSo — three questions are allowed, the fourth
|
||||
// is not, and running out is SPOKEN. Silence would read as "handled".
|
||||
func TestClarifyAsksThreeTimesThenSaysSo(t *testing.T) {
|
||||
ctx := context.Background()
|
||||
h, st, _ := newClarifyHandler(t)
|
||||
|
||||
if _, asked := h.askClarify(clarifyDec(router.IntentReminder, router.Slots{Text: "напомни"}, "напомни")); !asked {
|
||||
t.Fatal("expected a question")
|
||||
t.Fatal("expected a first question")
|
||||
}
|
||||
// Two more unclear answers ⇒ two more questions (3 asks in total).
|
||||
for i := 2; i <= 3; i++ {
|
||||
reply, handled := h.resolveClarifyAnswer(ctx, "ну не знаю")
|
||||
if !handled {
|
||||
t.Fatalf("answer %d must be consumed as an answer", i)
|
||||
}
|
||||
if reply != "На когда напомнить?" {
|
||||
t.Fatalf("attempt %d should ask again, got %q", i, reply)
|
||||
}
|
||||
if h.clarifyStore.Get(voiceDialogueID, h.now()) == nil {
|
||||
t.Fatalf("attempt %d must leave the question armed", i)
|
||||
}
|
||||
}
|
||||
|
||||
reply, handled := h.resolveClarifyAnswer(ctx, "ну не знаю")
|
||||
if !handled || reply != clarifyDropped {
|
||||
t.Fatalf("an unclear answer should drop the request, handled=%v reply=%q", handled, reply)
|
||||
if !handled || reply != clarifyGaveUp {
|
||||
t.Fatalf("the fourth try must give up out loud, handled=%v reply=%q", handled, reply)
|
||||
}
|
||||
if strings.Contains(reply, "?") {
|
||||
t.Fatalf("she must not ask a second question: %q", reply)
|
||||
if reply == "" || strings.Contains(reply, "?") {
|
||||
t.Fatalf("giving up must be spoken and must not be another question: %q", reply)
|
||||
}
|
||||
if h.clarifyStore.Get(voiceDialogueID, h.now()) != nil {
|
||||
t.Fatal("a dropped request must leave no armed question")
|
||||
t.Fatal("a given-up request must leave no armed question")
|
||||
}
|
||||
if reminders, err := st.DueReminders(ctx, h.now().Add(48*time.Hour)); err != nil || len(reminders) != 0 {
|
||||
t.Fatalf("a dropped request must not create anything: reminders=%v err=%v", reminders, err)
|
||||
t.Fatalf("a given-up request must not create anything: reminders=%v err=%v", reminders, err)
|
||||
}
|
||||
}
|
||||
|
||||
// TestClarifyMaxAttemptsIsConfigurable — one question when the config says one.
|
||||
func TestClarifyMaxAttemptsIsConfigurable(t *testing.T) {
|
||||
ctx := context.Background()
|
||||
h, _, _ := newClarifyHandler(t)
|
||||
h.clarifyMaxAttempts = 1
|
||||
|
||||
if _, asked := h.askClarify(clarifyDec(router.IntentReminder, router.Slots{Text: "напомни"}, "напомни")); !asked {
|
||||
t.Fatal("expected a question")
|
||||
}
|
||||
if reply, handled := h.resolveClarifyAnswer(ctx, "ну не знаю"); !handled || reply != clarifyGaveUp {
|
||||
t.Fatalf("with max 1 she must give up at once, handled=%v reply=%q", handled, reply)
|
||||
}
|
||||
}
|
||||
|
||||
// TestClarifyRestatedAnswerWins — «в 11:00», then «нет, в 15:00». The second
|
||||
// value is the one that lands.
|
||||
func TestClarifyRestatedAnswerWins(t *testing.T) {
|
||||
ctx := context.Background()
|
||||
h, st, _ := newClarifyHandler(t)
|
||||
|
||||
if _, asked := h.askClarify(clarifyDec(router.IntentReminder, router.Slots{Text: "напомни позвонить маме"}, "напомни позвонить маме")); !asked {
|
||||
t.Fatal("expected a question")
|
||||
}
|
||||
// First answer parses, but re-park it by hand as if she had asked again:
|
||||
// what matters here is that Answer prefers the newer value over the parked
|
||||
// one, which is the case the daemon hits on a re-ask.
|
||||
q := h.clarifyStore.Get(voiceDialogueID, h.now())
|
||||
if q == nil {
|
||||
t.Fatal("expected an armed question")
|
||||
}
|
||||
first := h.extractor.Extract(ctx, router.IntentReminder, "в 11:00", h.now())
|
||||
q.Slots = q.Answer("в 11:00", toDialogueSlots(first))
|
||||
|
||||
if reply, handled := h.resolveClarifyAnswer(ctx, "нет, в 15:00"); !handled || reply == clarifyGaveUp {
|
||||
t.Fatalf("the restated answer should complete the request, handled=%v reply=%q", handled, reply)
|
||||
}
|
||||
reminders, err := st.DueReminders(ctx, h.now().Add(48*time.Hour))
|
||||
if err != nil || len(reminders) != 1 {
|
||||
t.Fatalf("expected one reminder: %v err=%v", reminders, err)
|
||||
}
|
||||
want := h.extractor.Extract(ctx, router.IntentReminder, "в 15:00", h.now())
|
||||
if !reminders[0].FireTs.Equal(want.Time) {
|
||||
t.Fatalf("reminder at %v, want the restated %v", reminders[0].FireTs, want.Time)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -228,6 +289,36 @@ func TestNoQuestionWhenNothingIsMissing(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
// TestClarifyExpiryIsAnnouncedAndWordsStillRoute — his answer lands after the
|
||||
// TTL: she must say the old request is gone AND still answer the new words.
|
||||
func TestClarifyExpiryIsAnnouncedAndWordsStillRoute(t *testing.T) {
|
||||
ctx := context.Background()
|
||||
h, _, now := newClarifyHandler(t)
|
||||
emb := router.NewHashEmbedder(1024)
|
||||
h.embedder = emb
|
||||
h.router = buildRouter(emb, h.matcher, 0.55, nil)
|
||||
|
||||
if _, asked := h.askClarify(clarifyDec(router.IntentReminder, router.Slots{Text: "напомни"}, "напомни")); !asked {
|
||||
t.Fatal("expected a question")
|
||||
}
|
||||
*now = now.Add(clarifyTTL + time.Second)
|
||||
|
||||
reply := h.handleText(ctx, "как дела")
|
||||
if !strings.HasPrefix(reply, clarifyExpired) {
|
||||
t.Fatalf("expired question must be announced first, got %q", reply)
|
||||
}
|
||||
if strings.TrimSpace(strings.TrimPrefix(reply, clarifyExpired)) == "" {
|
||||
t.Fatalf("the new words must still be answered, got only the notice: %q", reply)
|
||||
}
|
||||
if h.clarifyStore.Get(voiceDialogueID, h.now()) != nil {
|
||||
t.Fatal("the expired question must be gone")
|
||||
}
|
||||
// The notice is said once, not on every later utterance.
|
||||
if reply := h.handleText(ctx, "как дела"); strings.Contains(reply, clarifyExpired) {
|
||||
t.Fatalf("notice repeated on a later turn: %q", reply)
|
||||
}
|
||||
}
|
||||
|
||||
// TestNoPendingQuestionFallsThrough — with nothing parked, an utterance routes
|
||||
// normally.
|
||||
func TestNoPendingQuestionFallsThrough(t *testing.T) {
|
||||
|
||||
@@ -189,7 +189,9 @@ func (l *lockedAPI) MorningStatus(ctx context.Context) ([]ipc.MorningRoutineStat
|
||||
func run(args []string) error {
|
||||
cfgPath := flag.String("config", defaultConfigPath(), "path to mavend JSON config")
|
||||
wrappedKeyPath := flag.String("wrapped-key-file", "", "path to wrapped encryption key blob (enables cold-start unlock)")
|
||||
reembed := flag.Bool("reembed", false, "re-embed every stored note and fact with the configured embedder, then serve normally (run once after an embedder swap)")
|
||||
flag.CommandLine.Parse(args)
|
||||
reembedOnStart = *reembed
|
||||
cfg, err := config.Load(*cfgPath)
|
||||
if err != nil {
|
||||
return err
|
||||
|
||||
@@ -0,0 +1,158 @@
|
||||
package main
|
||||
|
||||
import (
|
||||
"context"
|
||||
"fmt"
|
||||
"math"
|
||||
"testing"
|
||||
"time"
|
||||
|
||||
"github.com/kami/maven/internal/ipc"
|
||||
"github.com/kami/maven/internal/memory"
|
||||
"github.com/kami/maven/internal/phraser"
|
||||
"github.com/kami/maven/internal/router"
|
||||
"github.com/kami/maven/internal/voice"
|
||||
)
|
||||
|
||||
// fixedEmbedder hands back a vector chosen per text, so a test can say exactly
|
||||
// how close each stored memory is to the question. The real embedders make
|
||||
// scores that are realistic but not controllable, and this test is about the
|
||||
// gate, not about the embedder.
|
||||
type fixedEmbedder struct{ vecs map[string][]float32 }
|
||||
|
||||
func (f *fixedEmbedder) Dim() int { return 4 }
|
||||
func (f *fixedEmbedder) Close() error { return nil }
|
||||
|
||||
func (f *fixedEmbedder) Embed(_ context.Context, text string) ([]float32, error) {
|
||||
v, ok := f.vecs[text]
|
||||
if !ok {
|
||||
return nil, fmt.Errorf("fixedEmbedder: no vector for %q", text)
|
||||
}
|
||||
return v, nil
|
||||
}
|
||||
|
||||
// scoreVec builds a unit vector whose cosine against the query vector
|
||||
// (1,0,0,0) is exactly score.
|
||||
func scoreVec(score float64) []float32 {
|
||||
rest := math.Sqrt(1 - score*score)
|
||||
return []float32{float32(score), float32(rest), 0, 0}
|
||||
}
|
||||
|
||||
// recordingPhraser remembers what the query path handed it to phrase, which is
|
||||
// how the test can tell which pass produced the answer.
|
||||
type recordingPhraser struct {
|
||||
*phraser.Stub
|
||||
notes []string
|
||||
}
|
||||
|
||||
func (r *recordingPhraser) PhraseQuery(ctx context.Context, utterance string, notes []string) (string, error) {
|
||||
r.notes = notes
|
||||
return r.Stub.PhraseQuery(ctx, utterance, notes)
|
||||
}
|
||||
|
||||
// recallCase — one stored memory: its text, how close it is to the question,
|
||||
// whether it is a note or a fact, and whether the notes table holds it too.
|
||||
type recallCase struct {
|
||||
text string
|
||||
score float64
|
||||
kind string
|
||||
}
|
||||
|
||||
// buildRecallHandler stores the given memories and returns a handler whose
|
||||
// query path can be run directly. Notes go into BOTH the notes table and the
|
||||
// vector index, which is what the daemon does (voice.go's IntentNote).
|
||||
func buildRecallHandler(t *testing.T, question string, mems []recallCase) (*reactiveHandler, *recordingPhraser) {
|
||||
t.Helper()
|
||||
ctx := context.Background()
|
||||
st := newTestStore(t)
|
||||
emb := &fixedEmbedder{vecs: map[string][]float32{question: {1, 0, 0, 0}}}
|
||||
mem := memory.NewInMemoryStore()
|
||||
now := time.Now()
|
||||
|
||||
for i, m := range mems {
|
||||
vec := scoreVec(m.score)
|
||||
emb.vecs[m.text] = vec
|
||||
id := fmt.Sprintf("%s:%d", m.kind, i)
|
||||
if m.kind == "note" {
|
||||
if _, err := st.WriteNote(ctx, now, m.text, vec, "tap:voice"); err != nil {
|
||||
t.Fatalf("WriteNote: %v", err)
|
||||
}
|
||||
}
|
||||
if err := mem.Insert(ctx, id, vec, map[string]string{"text": m.text, "type": m.kind}); err != nil {
|
||||
t.Fatalf("memory insert: %v", err)
|
||||
}
|
||||
}
|
||||
|
||||
phr := &recordingPhraser{Stub: phraser.NewStub()}
|
||||
h := &reactiveHandler{
|
||||
api: ipc.NewStoreAPI(st),
|
||||
embedder: emb,
|
||||
replier: voice.NewStubReplier(),
|
||||
phraser: phr,
|
||||
now: func() time.Time { return now },
|
||||
memStore: mem,
|
||||
dataStore: st,
|
||||
queryMinScore: 0.55,
|
||||
queryMinMargin: 0.008,
|
||||
weatherProvider: nil,
|
||||
}
|
||||
return h, phr
|
||||
}
|
||||
|
||||
func askQuery(t *testing.T, h *reactiveHandler, question string) string {
|
||||
t.Helper()
|
||||
return h.applyAction(context.Background(), router.Decision{
|
||||
Intent: router.IntentQuery,
|
||||
Utterance: question,
|
||||
})
|
||||
}
|
||||
|
||||
// TestQueryRecallNoteCanWin — the note-recall regression (Vikunja #373). Notes
|
||||
// and facts share one vector index, and a note that clearly beats everything
|
||||
// else must be the answer. Before the fix the memory pass only ran after the
|
||||
// notes-only gate had already rejected the same note at the same score, so only
|
||||
// a fact could ever come back from it.
|
||||
func TestQueryRecallNoteCanWin(t *testing.T) {
|
||||
const q = "где молоко"
|
||||
|
||||
t.Run("a clearly best note answers", func(t *testing.T) {
|
||||
h, phr := buildRecallHandler(t, q, []recallCase{
|
||||
{text: "молоко стоит в холодильнике", score: 0.90, kind: "note"},
|
||||
{text: "выучил пару аккордов", score: 0.50, kind: "note"},
|
||||
})
|
||||
reply := askQuery(t, h, q)
|
||||
if want := "вот что я нашла: молоко стоит в холодильнике"; reply != want {
|
||||
t.Errorf("reply %q, want %q", reply, want)
|
||||
}
|
||||
// One text, the winning memory's — the answer came from the memory
|
||||
// pass, not from handing the phraser every note in the table.
|
||||
if len(phr.notes) != 1 || phr.notes[0] != "молоко стоит в холодильнике" {
|
||||
t.Errorf("phraser got %q, want just the recalled note", phr.notes)
|
||||
}
|
||||
})
|
||||
|
||||
// The other half of "one gate over everything": a fact that matches better
|
||||
// than the best note now answers, instead of losing to a note that only had
|
||||
// to beat other notes.
|
||||
t.Run("the better-matching fact answers", func(t *testing.T) {
|
||||
h, _ := buildRecallHandler(t, q, []recallCase{
|
||||
{text: "молоко стоит в холодильнике", score: 0.80, kind: "note"},
|
||||
{text: "купил молоко в среду", score: 0.95, kind: "fact"},
|
||||
})
|
||||
if reply := askQuery(t, h, q); reply != "купил молоко в среду" {
|
||||
t.Errorf("reply %q, want the fact read back", reply)
|
||||
}
|
||||
})
|
||||
|
||||
// The gate is untouched: two memories this close mean the embedder cannot
|
||||
// tell them apart, and silence still beats a coin flip.
|
||||
t.Run("no clear best stays silent", func(t *testing.T) {
|
||||
h, _ := buildRecallHandler(t, q, []recallCase{
|
||||
{text: "молоко стоит в холодильнике", score: 0.860, kind: "note"},
|
||||
{text: "молоко закончилось", score: 0.858, kind: "note"},
|
||||
})
|
||||
if reply := askQuery(t, h, q); reply != "не знаю." {
|
||||
t.Errorf("reply %q, want silence", reply)
|
||||
}
|
||||
})
|
||||
}
|
||||
+18
-18
@@ -2,24 +2,24 @@ package main
|
||||
|
||||
import "github.com/kami/maven/internal/memory"
|
||||
|
||||
// bestRecall is the read side of the long-term memory store: the top hit's
|
||||
// stored text when it clears the confidence gate. This recalls across BOTH
|
||||
// notes and facts (facts aren't in the notes table, so this is the only path
|
||||
// that can answer "when did I last …?" from a captured fact). A note hit here
|
||||
// is redundant with the notes-RAG path — by design; the two indexes can diverge
|
||||
// once the backend is swapped for a persistent/external store. ok=false when
|
||||
// there's no hit above the threshold or the hit carries no text.
|
||||
func bestRecall(results []memory.Result, min float64) (string, bool) {
|
||||
if len(results) == 0 {
|
||||
return "", false
|
||||
// bestRecall is the read side of the long-term memory store: the top hit when
|
||||
// it clears the confidence gate. The index holds BOTH notes and facts, and
|
||||
// either can win — the caller looks at the returned hit's meta["type"] to see
|
||||
// which. Facts aren't in the notes table, so this is the only path that can
|
||||
// answer "when did I last …?" from a captured fact.
|
||||
//
|
||||
// The whole hit is returned, not just its text, because "which memory answered"
|
||||
// decides how the answer is said: a note gets phrased in Maven's voice, a fact
|
||||
// is read back as stored.
|
||||
//
|
||||
// ok=false when the hit fails the confidence gate (see memory.Confident: an
|
||||
// absolute floor plus a margin over the runner-up) or carries no text.
|
||||
func bestRecall(results []memory.Result, minScore, minMargin float64) (memory.Result, bool) {
|
||||
if !memory.Confident(results, minScore, minMargin) {
|
||||
return memory.Result{}, false
|
||||
}
|
||||
top := results[0]
|
||||
if top.Score < min {
|
||||
return "", false
|
||||
if results[0].Meta["text"] == "" {
|
||||
return memory.Result{}, false
|
||||
}
|
||||
text := top.Meta["text"]
|
||||
if text == "" {
|
||||
return "", false
|
||||
}
|
||||
return text, true
|
||||
return results[0], true
|
||||
}
|
||||
|
||||
@@ -8,23 +8,24 @@ import (
|
||||
|
||||
func TestBestRecall(t *testing.T) {
|
||||
const min = 0.55
|
||||
const margin = 0.008
|
||||
|
||||
t.Run("empty results", func(t *testing.T) {
|
||||
if _, ok := bestRecall(nil, min); ok {
|
||||
if _, ok := bestRecall(nil, min, margin); ok {
|
||||
t.Error("empty results returned ok")
|
||||
}
|
||||
})
|
||||
|
||||
t.Run("top below threshold", func(t *testing.T) {
|
||||
res := []memory.Result{{Score: 0.4, Meta: map[string]string{"text": "выпил воды"}}}
|
||||
if _, ok := bestRecall(res, min); ok {
|
||||
if _, ok := bestRecall(res, min, margin); ok {
|
||||
t.Error("below-threshold hit returned ok")
|
||||
}
|
||||
})
|
||||
|
||||
t.Run("hit without text meta", func(t *testing.T) {
|
||||
res := []memory.Result{{Score: 0.9, Meta: map[string]string{"type": "fact"}}}
|
||||
if _, ok := bestRecall(res, min); ok {
|
||||
if _, ok := bestRecall(res, min, margin); ok {
|
||||
t.Error("textless hit returned ok")
|
||||
}
|
||||
})
|
||||
@@ -34,12 +35,43 @@ func TestBestRecall(t *testing.T) {
|
||||
{Score: 0.82, Meta: map[string]string{"text": "выпил воды в три часа", "type": "fact"}},
|
||||
{Score: 0.60, Meta: map[string]string{"text": "другое"}},
|
||||
}
|
||||
got, ok := bestRecall(res, min)
|
||||
got, ok := bestRecall(res, min, margin)
|
||||
if !ok {
|
||||
t.Fatal("clearing hit not returned")
|
||||
}
|
||||
if got != "выпил воды в три часа" {
|
||||
t.Errorf("wrong text: %q", got)
|
||||
if got.Meta["text"] != "выпил воды в три часа" {
|
||||
t.Errorf("wrong text: %q", got.Meta["text"])
|
||||
}
|
||||
if got.Meta["type"] != "fact" {
|
||||
t.Errorf("kind lost: %q", got.Meta["type"])
|
||||
}
|
||||
})
|
||||
|
||||
// The index holds notes and facts together, so a note has to be able to win
|
||||
// it — for a long time it could not (Vikunja #373).
|
||||
t.Run("a note can win", func(t *testing.T) {
|
||||
res := []memory.Result{
|
||||
{Score: 0.86, Meta: map[string]string{"text": "молоко в холодильнике", "type": "note"}},
|
||||
{Score: 0.61, Meta: map[string]string{"text": "выпил воды", "type": "fact"}},
|
||||
}
|
||||
got, ok := bestRecall(res, min, margin)
|
||||
if !ok {
|
||||
t.Fatal("clearly-best note not returned")
|
||||
}
|
||||
if got.Meta["type"] != "note" || got.Meta["text"] != "молоко в холодильнике" {
|
||||
t.Errorf("got %v, want the note", got.Meta)
|
||||
}
|
||||
})
|
||||
|
||||
// The runner-up is almost as close, so the embedder cannot tell the two
|
||||
// notes apart. Silence beats reading back a coin flip.
|
||||
t.Run("runner-up too close", func(t *testing.T) {
|
||||
res := []memory.Result{
|
||||
{Score: 0.860, Meta: map[string]string{"text": "выпил воды в три часа"}},
|
||||
{Score: 0.858, Meta: map[string]string{"text": "другое"}},
|
||||
}
|
||||
if _, ok := bestRecall(res, min, margin); ok {
|
||||
t.Error("thin-margin hit returned ok")
|
||||
}
|
||||
})
|
||||
}
|
||||
|
||||
@@ -29,7 +29,9 @@ func newLLMReplier(c completer) *llmReplier {
|
||||
return &llmReplier{c: c, stub: voice.NewStubReplier()}
|
||||
}
|
||||
|
||||
const replySystem = `Ты — Maven, домашняя ассистентка (о себе — в женском роде). Подтверди действие РОВНО ОДНИМ коротким предложением (≤120 символов), тепло и по-русски. Не задавай вопросов, не повторяй слова, не добавляй ничего после точки. Respond ONLY with valid JSON: {"response": "...", "mood": "neutral"}.`
|
||||
const replySystem = `Ты — Maven, домашняя ассистентка (о себе — в женском роде). Подтверди действие РОВНО ОДНИМ коротким предложением (≤120 символов), тепло и по-русски. Не задавай вопросов, не повторяй слова, не добавляй ничего после точки. Отвечай ТОЛЬКО одним объектом JSON с полями "response" (текст) и "mood" (ровно одно из: neutral, happy, thinking, tired, confused).
|
||||
Пример: {"response": "Записала, что ты выпил стакан воды.", "mood": "neutral"}
|
||||
Никогда не пиши "..." в поле response.`
|
||||
|
||||
func (r *llmReplier) Reply(d router.Decision) string {
|
||||
if d.Clarify {
|
||||
|
||||
@@ -0,0 +1,78 @@
|
||||
package main
|
||||
|
||||
import (
|
||||
"context"
|
||||
"testing"
|
||||
"time"
|
||||
|
||||
"github.com/kami/maven/internal/router"
|
||||
)
|
||||
|
||||
// systemHandler — a handler with nothing but a fixed clock, which is all
|
||||
// replySystem needs.
|
||||
func systemHandler(now time.Time) *reactiveHandler {
|
||||
return &reactiveHandler{now: func() time.Time { return now }}
|
||||
}
|
||||
|
||||
// TestReplySystemDateOffset — "какое число завтра" must answer tomorrow's
|
||||
// date, not today's (Vikunja #388).
|
||||
func TestReplySystemDateOffset(t *testing.T) {
|
||||
// Thursday, 30 July 2026.
|
||||
now := time.Date(2026, 7, 30, 14, 5, 0, 0, time.UTC)
|
||||
h := systemHandler(now)
|
||||
cases := []struct{ utterance, want string }{
|
||||
{"какое сегодня число", "сегодня четверг, 30 июля 2026 года"},
|
||||
{"какое число", "сегодня четверг, 30 июля 2026 года"},
|
||||
{"какое число завтра", "завтра пятница, 31 июля 2026 года"},
|
||||
{"какое число послезавтра", "послезавтра суббота, 1 августа 2026 года"},
|
||||
{"какое было число вчера", "вчера среда, 29 июля 2026 года"},
|
||||
}
|
||||
for _, c := range cases {
|
||||
got := h.replySystem(context.Background(), router.Decision{Utterance: c.utterance})
|
||||
if got != c.want {
|
||||
t.Errorf("replySystem(%q) = %q, want %q", c.utterance, got, c.want)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// A day she cannot work out must not come back as today's date — that is the
|
||||
// same silent wrong answer #388 was about, one step further out.
|
||||
func TestReplySystemUnknownDayIsHonest(t *testing.T) {
|
||||
now := time.Date(2026, 7, 30, 14, 5, 0, 0, time.UTC)
|
||||
h := systemHandler(now)
|
||||
for _, u := range []string{
|
||||
"какое число в пятницу",
|
||||
"какое число через неделю",
|
||||
"какое число в понедельник",
|
||||
} {
|
||||
got := h.replySystem(context.Background(), router.Decision{Utterance: u})
|
||||
if got != onlyNearDaysReply {
|
||||
t.Errorf("replySystem(%q) = %q, want the honest reply", u, got)
|
||||
}
|
||||
}
|
||||
// The days she does know must not be caught by the same guard.
|
||||
if got := h.replySystem(context.Background(), router.Decision{Utterance: "какое число завтра"}); got == onlyNearDaysReply {
|
||||
t.Error("завтра was treated as an unknown day")
|
||||
}
|
||||
}
|
||||
|
||||
// TestReplySystemClockCity — the clock arm must not answer local time for a
|
||||
// question about another city (Vikunja #388). She keeps one clock, so every
|
||||
// named place gets the honest "local time only" answer.
|
||||
func TestReplySystemClockCity(t *testing.T) {
|
||||
now := time.Date(2026, 7, 30, 12, 0, 0, 0, time.UTC)
|
||||
h := systemHandler(now)
|
||||
cases := []struct{ utterance, want string }{
|
||||
{"который час", "сейчас 12 часов ровно"},
|
||||
{"который час в киеве", onlyLocalTimeReply},
|
||||
{"сколько времени в москве", onlyLocalTimeReply},
|
||||
{"который час в лондоне", onlyLocalTimeReply},
|
||||
{"который час в бишкеке", onlyLocalTimeReply},
|
||||
}
|
||||
for _, c := range cases {
|
||||
got := h.replySystem(context.Background(), router.Decision{Utterance: c.utterance})
|
||||
if got != c.want {
|
||||
t.Errorf("replySystem(%q) = %q, want %q", c.utterance, got, c.want)
|
||||
}
|
||||
}
|
||||
}
|
||||
+288
-53
@@ -171,6 +171,7 @@ func wireVoice(cfg *config.Config, coreAPI ipc.CoreAPI, phr phraser.Phraser, mem
|
||||
emb = router.NewHashEmbedder(1024)
|
||||
}
|
||||
w.embedder = emb
|
||||
checkStoredEmbedder(dataStore, emb)
|
||||
|
||||
// ----- tool executor (the enabled act allowlist, store-backed) -----
|
||||
// Config tools are the declarative bootstrap: seed them into the store as
|
||||
@@ -206,11 +207,11 @@ func wireVoice(cfg *config.Config, coreAPI ipc.CoreAPI, phr phraser.Phraser, mem
|
||||
if threshold <= 0 {
|
||||
threshold = config.DefaultRouterThreshold
|
||||
}
|
||||
// Both routing paths are weak on held-out utterances — the classifier gets
|
||||
// 36.8% of intents right, the resident model 50.0% and much slower. Off by
|
||||
// default (see config.VoiceConfig.LLMRouter); the classifier always stays
|
||||
// wired as the fallback, so a model error never breaks a turn.
|
||||
rtr := buildRouter(emb, matcher, threshold, pickLLMRouter(cfg.Voice.LLMRouter, llmClient))
|
||||
// The resident model routes by default: 63.2% of held-out intents right
|
||||
// against the classifier's 50.0%, at about 1s a turn instead of 30ms (see
|
||||
// config.VoiceConfig.LLMRouter). The classifier always stays wired as the
|
||||
// fallback, so a model error never breaks a turn.
|
||||
rtr := buildRouter(emb, matcher, threshold, pickLLMRouter(cfg.Voice.UseLLMRouter(), llmClient))
|
||||
|
||||
// ----- sessions registry (shared with voicesink) -----
|
||||
sessions := voice.NewSessions()
|
||||
@@ -227,7 +228,18 @@ func wireVoice(cfg *config.Config, coreAPI ipc.CoreAPI, phr phraser.Phraser, mem
|
||||
}
|
||||
|
||||
// ----- dialogue (multi-turn slot carry-over; 2-min follow-up window) -----
|
||||
dialogueSessions := dialogue.NewSessionStore(2 * time.Minute)
|
||||
// Store-backed when the daemon passes a store, so a restart mid-conversation
|
||||
// keeps the thread (Vikunja #363). Sessions past their TTL are dropped on
|
||||
// load, never revived. Clarify's parked question stays in memory only.
|
||||
var dialogueSessions *dialogue.SessionStore
|
||||
if dataStore != nil {
|
||||
dialogueSessions = dialogue.NewPersistentSessionStore(2*time.Minute, dataStore)
|
||||
if err := dialogueSessions.Load(context.Background(), time.Now()); err != nil {
|
||||
log.Printf("dialogue: load saved sessions: %v", err)
|
||||
}
|
||||
} else {
|
||||
dialogueSessions = dialogue.NewSessionStore(2 * time.Minute)
|
||||
}
|
||||
clarifyStore := dialogue.NewClarifyStore(clarifyTTL)
|
||||
timeParser := router.NewPythonDateParser()
|
||||
|
||||
@@ -255,10 +267,13 @@ func wireVoice(cfg *config.Config, coreAPI ipc.CoreAPI, phr phraser.Phraser, mem
|
||||
dataStore: dataStore,
|
||||
dialogueSessions: dialogueSessions,
|
||||
clarifyStore: clarifyStore,
|
||||
extractor: router.Extractor{Time: timeParser, Acts: matcher, Facts: router.DefaultFactParser{}},
|
||||
queryMinScore: cfg.Voice.QueryMinScore,
|
||||
timeParser: timeParser,
|
||||
ecosystem: eco,
|
||||
// 0 here (unset config) ⇒ the dialogue default.
|
||||
clarifyMaxAttempts: cfg.Voice.ClarifyMaxAttempts,
|
||||
extractor: router.Extractor{Time: timeParser, Acts: matcher, Facts: router.DefaultFactParser{}},
|
||||
queryMinScore: cfg.Voice.QueryMinScore,
|
||||
queryMinMargin: cfg.Voice.QueryMinMargin,
|
||||
timeParser: timeParser,
|
||||
ecosystem: eco,
|
||||
}
|
||||
|
||||
// ----- the server (TCP listener) -----
|
||||
@@ -300,6 +315,9 @@ type reactiveHandler struct {
|
||||
// load-bearing math (same posture as the presence thresholds). Set by
|
||||
// wireVoice from VoiceConfig; default 0.55.
|
||||
queryMinScore float64
|
||||
// queryMinMargin — the second half of that gate: how far the top hit must
|
||||
// beat the runner-up. 0 ⇒ margin off.
|
||||
queryMinMargin float64
|
||||
|
||||
// timeParser — used as a fallback for stage-0 reminder grammar matches
|
||||
// (where the extractor didn't run). Shared with the router's extractor.
|
||||
@@ -314,6 +332,10 @@ type reactiveHandler struct {
|
||||
// clarify.go). nil ⇒ she falls back to the canned "не поняла" reply.
|
||||
clarifyStore *dialogue.ClarifyStore
|
||||
|
||||
// clarifyMaxAttempts — questions per request before she gives up out loud.
|
||||
// 0 ⇒ dialogue.DefaultMaxAttempts (3). Set from VoiceConfig.
|
||||
clarifyMaxAttempts int
|
||||
|
||||
// extractor parses the answer to an open question, with the same parsers
|
||||
// the router's own stage-2 uses.
|
||||
extractor router.Extractor
|
||||
@@ -392,9 +414,17 @@ func (h *reactiveHandler) HandlePushToTalk(ctx context.Context, req voice.PushTo
|
||||
return h.reply(ctx, reply, nil)
|
||||
}
|
||||
|
||||
// 1b2. clarify answer — if she asked a question last turn, this utterance is
|
||||
// its answer, not a fresh command. After the confirm check: a y/n gate is
|
||||
// armed by her own prompt and is the narrower claim on the utterance.
|
||||
// 1b2. expired clarify — a question was parked but its TTL ran out, so the
|
||||
// request behind it is gone. Say that out loud (see clarify.go) and carry
|
||||
// on: these words are still routed as a fresh utterance below, with the
|
||||
// notice glued in front of whatever the fresh routing answers. Checked
|
||||
// BEFORE the answer path: reading a parked question drops an expired one.
|
||||
expiredNotice := h.clarifyExpiredNotice()
|
||||
|
||||
// 1b3. clarify answer — if she asked a live question last turn, this
|
||||
// utterance is its answer, not a fresh command. After the confirm check: a
|
||||
// y/n gate is armed by her own prompt and is the narrower claim on the
|
||||
// utterance.
|
||||
if reply, handled := h.resolveClarifyAnswer(ctx, text); handled {
|
||||
return h.reply(ctx, reply, nil)
|
||||
}
|
||||
@@ -404,7 +434,7 @@ func (h *reactiveHandler) HandlePushToTalk(ctx context.Context, req voice.PushTo
|
||||
// unreliably (it's a command, not a free-form query), so we match it
|
||||
// before routing. Same pattern as the confirm turn above.
|
||||
if reply, handled := h.resolveQuietToggle(ctx, text); handled {
|
||||
return h.reply(ctx, reply, nil)
|
||||
return h.reply(ctx, withNotice(expiredNotice, reply), nil)
|
||||
}
|
||||
|
||||
// 2. router — classify the utterance.
|
||||
@@ -413,10 +443,10 @@ func (h *reactiveHandler) HandlePushToTalk(ctx context.Context, req voice.PushTo
|
||||
// ErrNoIntents ⇒ classifier unseeded (cold boot). reply with a
|
||||
// "still warming up" rather than a wire error.
|
||||
if errors.Is(err, router.ErrNoIntents) {
|
||||
return h.reply(ctx, "я ещё не понимаю свободную речь — скоро научусь.", nil)
|
||||
return h.reply(ctx, withNotice(expiredNotice, "я ещё не понимаю свободную речь — скоро научусь."), nil)
|
||||
}
|
||||
log.Printf("voice: router error: %v", err)
|
||||
return h.reply(ctx, "не получилось разобрать команду.", nil)
|
||||
return h.reply(ctx, withNotice(expiredNotice, "не получилось разобрать команду."), nil)
|
||||
}
|
||||
|
||||
// 2b. dialogue — fill this turn's missing slots from a prior same-intent
|
||||
@@ -437,7 +467,7 @@ func (h *reactiveHandler) HandlePushToTalk(ctx context.Context, req voice.PushTo
|
||||
// stands.
|
||||
if dec.Clarify {
|
||||
if question, asked := h.askClarify(dec); asked {
|
||||
return h.reply(ctx, question, nil)
|
||||
return h.reply(ctx, withNotice(expiredNotice, question), nil)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -453,7 +483,7 @@ func (h *reactiveHandler) HandlePushToTalk(ctx context.Context, req voice.PushTo
|
||||
|
||||
// 5. tts — synthesise the reply text; return to the voice server which
|
||||
// ships it back on the conn.
|
||||
return h.reply(ctx, replyText, nil)
|
||||
return h.reply(ctx, withNotice(expiredNotice, replyText), nil)
|
||||
}
|
||||
|
||||
// handleText — the core reactive path without stt/tts: confirm check →
|
||||
@@ -468,7 +498,9 @@ func (h *reactiveHandler) handleText(ctx context.Context, text string) string {
|
||||
return reply
|
||||
}
|
||||
|
||||
// 1b2. clarify answer — same check as HandlePushToTalk.
|
||||
// 1b2/1b3. expired clarify then clarify answer — same order and reasons as
|
||||
// HandlePushToTalk.
|
||||
expiredNotice := h.clarifyExpiredNotice()
|
||||
if reply, handled := h.resolveClarifyAnswer(ctx, text); handled {
|
||||
return reply
|
||||
}
|
||||
@@ -477,10 +509,10 @@ func (h *reactiveHandler) handleText(ctx context.Context, text string) string {
|
||||
dec, err := h.router.Route(ctx, text, h.now())
|
||||
if err != nil {
|
||||
if errors.Is(err, router.ErrNoIntents) {
|
||||
return "я ещё не понимаю свободную речь — скоро научусь."
|
||||
return withNotice(expiredNotice, "я ещё не понимаю свободную речь — скоро научусь.")
|
||||
}
|
||||
log.Printf("voice: handleText router error: %v", err)
|
||||
return "не получилось разобрать команду."
|
||||
return withNotice(expiredNotice, "не получилось разобрать команду.")
|
||||
}
|
||||
log.Printf("voice: route result: intent=%s slots=%+v", dec.Intent, dec.Slots)
|
||||
|
||||
@@ -497,7 +529,7 @@ func (h *reactiveHandler) handleText(ctx context.Context, text string) string {
|
||||
// 2c. clarify — same as HandlePushToTalk: ask about the one missing thing.
|
||||
if dec.Clarify {
|
||||
if question, asked := h.askClarify(dec); asked {
|
||||
return question
|
||||
return withNotice(expiredNotice, question)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -509,7 +541,7 @@ func (h *reactiveHandler) handleText(ctx context.Context, text string) string {
|
||||
if replyText == "" {
|
||||
replyText = h.replier.Reply(dec)
|
||||
}
|
||||
return replyText
|
||||
return withNotice(expiredNotice, replyText)
|
||||
}
|
||||
|
||||
// applyAction — executes the router's Decision. Intent-by-intent:
|
||||
@@ -559,7 +591,7 @@ func (h *reactiveHandler) applyAction(ctx context.Context, dec router.Decision)
|
||||
// fail the fact write). Facts aren't in the notes table, so this is the
|
||||
// only recall path for them — "когда я пил воду?" reads back from here.
|
||||
if h.memStore != nil {
|
||||
if vec, err := h.embedder.Embed(ctx, dec.Utterance); err != nil {
|
||||
if vec, err := router.EmbedPassage(ctx, h.embedder, dec.Utterance); err != nil {
|
||||
log.Printf("voice: embed fact for memory: %v", err)
|
||||
} else if err := h.memStore.Insert(ctx, "fact:"+dec.Slots.Key+":"+strconv.FormatInt(now.Unix(), 10), vec, map[string]string{
|
||||
"source": "voice",
|
||||
@@ -673,7 +705,7 @@ func (h *reactiveHandler) applyAction(ctx context.Context, dec router.Decision)
|
||||
// embed the note text with the same model the classifier uses, persist
|
||||
// via CoreAPI (source=tap:voice). Semantic recall lives in `notes`, not
|
||||
// facts — no predicate reads it (spec's two-memory split).
|
||||
vec, err := h.embedder.Embed(ctx, dec.Utterance)
|
||||
vec, err := router.EmbedPassage(ctx, h.embedder, dec.Utterance)
|
||||
if err != nil {
|
||||
log.Printf("voice: embed note: %v", err)
|
||||
return "не получилось сохранить заметку."
|
||||
@@ -720,7 +752,9 @@ func (h *reactiveHandler) applyAction(ctx context.Context, dec router.Decision)
|
||||
}
|
||||
|
||||
// Calendar questions: "что у меня сегодня?", "планы на завтра?"
|
||||
if date, ok := router.ParseCalendarDate(dec.Utterance, time.Now()); ok {
|
||||
// h.now(), not time.Now(): the handler's clock is the injected one, so
|
||||
// this arm can be tested at a fixed time like the rest.
|
||||
if date, ok := router.ParseCalendarDate(dec.Utterance, h.now()); ok {
|
||||
events, err := h.api.CalendarEvents(ctx, date, date.Add(24*time.Hour))
|
||||
if err != nil {
|
||||
log.Printf("voice: calendar events: %v", err)
|
||||
@@ -750,32 +784,59 @@ func (h *reactiveHandler) applyAction(ctx context.Context, dec router.Decision)
|
||||
return fmt.Sprintf("в %s сейчас %.0f градусов, %s.", w.Location, w.Temperature, w.Condition)
|
||||
}
|
||||
|
||||
vec, err := h.embedder.Embed(ctx, dec.Utterance)
|
||||
vec, err := router.EmbedQuery(ctx, h.embedder, dec.Utterance)
|
||||
if err != nil {
|
||||
log.Printf("voice: embed query: %v", err)
|
||||
return "не получилось найти ответ."
|
||||
}
|
||||
// Long-term memory first: ONE search over everything Maven remembers
|
||||
// (notes and facts share this index) and ONE confidence gate, so the
|
||||
// memory that is clearly the best match answers — a note just as much
|
||||
// as a fact.
|
||||
//
|
||||
// This used to run only after the notes-only gate below had already
|
||||
// rejected the same note at the same score, which no note could ever
|
||||
// survive a second time: the branch could only return a fact (#373).
|
||||
// Order, not the gate, was the bug — the set of questions Maven answers
|
||||
// is unchanged, only which memory gets to answer them.
|
||||
if h.memStore != nil {
|
||||
if hits, herr := h.memStore.Search(ctx, vec, 3); herr == nil {
|
||||
if hit, ok := bestRecall(hits, h.queryMinScore, h.queryMinMargin); ok {
|
||||
text := hit.Meta["text"]
|
||||
// A note is phrased in Maven's voice; a fact is read back
|
||||
// as it was stored.
|
||||
if hit.Meta["type"] == "note" {
|
||||
if reply, perr := h.phraser.PhraseQuery(ctx, dec.Utterance, []string{text}); perr == nil && reply != "" {
|
||||
return reply
|
||||
}
|
||||
}
|
||||
return text
|
||||
}
|
||||
} else {
|
||||
log.Printf("voice: memory search: %v", herr)
|
||||
}
|
||||
}
|
||||
|
||||
notes, err := h.api.QueryNotes(ctx, vec, 5)
|
||||
if err != nil {
|
||||
log.Printf("voice: query notes: %v", err)
|
||||
return "не получилось найти ответ."
|
||||
}
|
||||
// Confidence gate: below threshold, say "I don't know" rather than read
|
||||
// back the least-unrelated note — a confident wrong recall is worse than
|
||||
// a gap (spec's "not a guesser-of-truth"). Same instinct as the loop's
|
||||
// since(key)==null → don't fire. Tuned for the ONNX embedder; the Hash
|
||||
// floor scores lexically and may rarely clear it.
|
||||
if len(notes) == 0 || notes[0].Score < h.queryMinScore {
|
||||
// Long-term memory recall (notes + facts) before general knowledge:
|
||||
// the notes table can't answer fact questions, but the memory store
|
||||
// indexes both. Only runs when notes-RAG already gave up → additive.
|
||||
if h.memStore != nil {
|
||||
if hits, herr := h.memStore.Search(ctx, vec, 3); herr == nil {
|
||||
if text, ok := bestRecall(hits, h.queryMinScore); ok {
|
||||
return text
|
||||
}
|
||||
}
|
||||
}
|
||||
// Notes-only pass, for notes the vector index above does not hold (an
|
||||
// older note written before it existed). Same gate, notes-only
|
||||
// candidates.
|
||||
//
|
||||
// Confidence gate: below it, say "I don't know" rather than read back
|
||||
// the least-unrelated note — a confident wrong recall is worse than a
|
||||
// gap (spec's "not a guesser-of-truth"). Same instinct as the loop's
|
||||
// since(key)==null → don't fire. Two parts: an absolute cosine floor,
|
||||
// and a margin over the runner-up, which is the part that works with
|
||||
// the e5 embedder's narrow score band. See memory.Confident.
|
||||
noteScores := make([]float64, len(notes))
|
||||
for i, n := range notes {
|
||||
noteScores[i] = n.Score
|
||||
}
|
||||
if !memory.ConfidentScores(noteScores, h.queryMinScore, h.queryMinMargin) {
|
||||
// Try general knowledge from the phraser before giving up
|
||||
reply, err := h.phraser.PhraseQuery(ctx, dec.Utterance, nil)
|
||||
if err != nil || reply == "" {
|
||||
@@ -877,6 +938,101 @@ var ruMonths = []string{
|
||||
"июля", "августа", "сентября", "октября", "ноября", "декабря",
|
||||
}
|
||||
|
||||
// onlyLocalTimeReply — the honest answer when the user asks the time somewhere
|
||||
// other than here. She only keeps one clock, and saying so is better than
|
||||
// naming the wrong city's time.
|
||||
//
|
||||
// There used to be a city→time-zone table here. It was removed on purpose: the
|
||||
// user only ever asks for local time, so the table was a second list of cities
|
||||
// to keep in step with the weather one for no gain.
|
||||
const onlyLocalTimeReply = "я знаю только местное время, про другие города пока не скажу."
|
||||
|
||||
// notPlaceAfterV — words that follow "в" without naming a place, so
|
||||
// mentionsUnknownPlace does not mistake them for a city.
|
||||
var notPlaceAfterV = map[string]bool{
|
||||
"данный": true, "данную": true, "этот": true, "эту": true,
|
||||
"котором": true, "какое": true, "какой": true, "который": true,
|
||||
"общем": true, "точности": true, "курсе": true, "сутках": true,
|
||||
"часах": true, "минутах": true, "секундах": true, "неделе": true,
|
||||
}
|
||||
|
||||
// mentionsUnknownPlace reports whether the question has a "в <слово>" phrase
|
||||
// that looks like a place we do not know ("который час в киеве"). Used only to
|
||||
// pick the honest "local time only" reply instead of answering local time as
|
||||
// if it were the city's.
|
||||
func mentionsUnknownPlace(u string) bool {
|
||||
toks := strings.Fields(u)
|
||||
for i := 0; i+1 < len(toks); i++ {
|
||||
if toks[i] != "в" && toks[i] != "во" {
|
||||
continue
|
||||
}
|
||||
next := strings.Trim(toks[i+1], ".,?!")
|
||||
if next == "" || notPlaceAfterV[next] {
|
||||
continue
|
||||
}
|
||||
// A number after "в" is a clock ("в 5 часов"), not a place.
|
||||
if _, err := strconv.Atoi(strings.SplitN(next, ":", 2)[0]); err == nil {
|
||||
continue
|
||||
}
|
||||
return true
|
||||
}
|
||||
return false
|
||||
}
|
||||
|
||||
// onlyNearDaysReply — she can work out today, tomorrow, the day after and
|
||||
// yesterday, and nothing further. Said out loud instead of answering today's
|
||||
// date for a day she did not understand.
|
||||
const onlyNearDaysReply = "я считаю только сегодня, завтра, послезавтра и вчера — про другие дни пока не скажу."
|
||||
|
||||
// dayWords — day references the calendar parser cannot resolve. A weekday name
|
||||
// or a "через …" phrase means he asked about a specific other day.
|
||||
var dayWords = []string{
|
||||
"понедельник", "вторник", "сред", "четверг", "пятниц", "суббот", "воскресен",
|
||||
"через", "monday", "tuesday", "wednesday", "thursday", "friday", "saturday", "sunday",
|
||||
}
|
||||
|
||||
// mentionsUnknownDay reports whether the question names a day the calendar
|
||||
// parser could not resolve. Mirror of mentionsUnknownPlace: it exists only to
|
||||
// pick an honest reply over a confidently wrong one.
|
||||
//
|
||||
// Only called after ParseCalendarDate has already failed, so "завтра" and the
|
||||
// other words it does know never reach here.
|
||||
func mentionsUnknownDay(u string) bool {
|
||||
for _, w := range dayWords {
|
||||
if strings.Contains(u, w) {
|
||||
return true
|
||||
}
|
||||
}
|
||||
return false
|
||||
}
|
||||
|
||||
// ruClock renders the clock part of the time reply: "15 часов 4 минуты".
|
||||
func ruClock(t time.Time) string {
|
||||
h, m := t.Hour(), t.Minute()
|
||||
hourWord := ruPlural(h, "час", "часа", "часов")
|
||||
if m == 0 {
|
||||
return fmt.Sprintf("%d %s ровно", h, hourWord)
|
||||
}
|
||||
return fmt.Sprintf("%d %s %d %s", h, hourWord, m, ruPlural(m, "минута", "минуты", "минут"))
|
||||
}
|
||||
|
||||
// dayPrefix names the day relative to now ("завтра", "вчера", …) so the date
|
||||
// reply opens the way a person would say it.
|
||||
func dayPrefix(now, day time.Time) string {
|
||||
base := time.Date(now.Year(), now.Month(), now.Day(), 0, 0, 0, 0, now.Location())
|
||||
switch int(day.Sub(base).Hours() / 24) {
|
||||
case -1:
|
||||
return "вчера"
|
||||
case 0:
|
||||
return "сегодня"
|
||||
case 1:
|
||||
return "завтра"
|
||||
case 2:
|
||||
return "послезавтра"
|
||||
}
|
||||
return "это"
|
||||
}
|
||||
|
||||
func ruPlural(n int, one, two, many string) string {
|
||||
n = n % 100
|
||||
if n > 10 && n < 20 {
|
||||
@@ -955,18 +1111,29 @@ func (h *reactiveHandler) replySystem(ctx context.Context, dec router.Decision)
|
||||
|
||||
switch {
|
||||
case strings.Contains(u, "час") || strings.Contains(u, "врем"):
|
||||
h := now.Hour()
|
||||
m := now.Minute()
|
||||
hourWord := ruPlural(h, "час", "часа", "часов")
|
||||
if m == 0 {
|
||||
return fmt.Sprintf("сейчас %d %s ровно", h, hourWord)
|
||||
// "который час в киеве" — she keeps one clock, so any named place gets
|
||||
// the honest answer. Never local time dressed up as the city's.
|
||||
if mentionsUnknownPlace(u) {
|
||||
return onlyLocalTimeReply
|
||||
}
|
||||
minWord := ruPlural(m, "минута", "минуты", "минут")
|
||||
return fmt.Sprintf("сейчас %d %s %d %s", h, hourWord, m, minWord)
|
||||
return "сейчас " + ruClock(now)
|
||||
case strings.Contains(u, "день") || strings.Contains(u, "числ"):
|
||||
dow := ruWeekdays[now.Weekday()]
|
||||
month := ruMonths[now.Month()-1]
|
||||
return fmt.Sprintf("сегодня %s, %d %s %d года", dow, now.Day(), month, now.Year())
|
||||
// "какое число завтра" — answer for the day the user asked about,
|
||||
// not today. Reuses the router's calendar day-word parser.
|
||||
day := now
|
||||
prefix := "сегодня"
|
||||
if d, ok := router.ParseCalendarDate(u, now); ok {
|
||||
day = d
|
||||
prefix = dayPrefix(now, d)
|
||||
} else if mentionsUnknownDay(u) {
|
||||
// He named a day she cannot work out ("в пятницу", "через неделю").
|
||||
// Answering today's date here would be the same silent wrong answer
|
||||
// this arm was fixed for, so say what she can do instead.
|
||||
return onlyNearDaysReply
|
||||
}
|
||||
dow := ruWeekdays[day.Weekday()]
|
||||
month := ruMonths[day.Month()-1]
|
||||
return fmt.Sprintf("%s %s, %d %s %d года", prefix, dow, day.Day(), month, day.Year())
|
||||
case strings.Contains(u, "кто дома") || strings.Contains(u, "человек дома"):
|
||||
return "присутствие пока не подключено к голосовому запросу."
|
||||
case strings.Contains(u, "памят") || strings.Contains(u, "процессор") || strings.Contains(u, "загрузк") || strings.Contains(u, "статус") || strings.Contains(u, "работа") || strings.Contains(u, "сервис") || strings.Contains(u, "диск") || strings.Contains(u, "ip") || strings.Contains(u, "аптайм") || strings.Contains(u, "трафик") || strings.Contains(u, "интернет"):
|
||||
@@ -1709,3 +1876,71 @@ func jsonStringImpl(s string) string {
|
||||
b = append(b, '"')
|
||||
return string(b)
|
||||
}
|
||||
|
||||
// reembedOnStart is the -reembed flag (set in run()). Opt-in on purpose: see
|
||||
// runReembed.
|
||||
var reembedOnStart bool
|
||||
|
||||
// checkStoredEmbedder compares the embedder we just loaded with the one that
|
||||
// wrote the vectors already in the DB (Vikunja #378).
|
||||
//
|
||||
// The two models we have both make 384-dim vectors, so a size check catches
|
||||
// nothing: after a swap, recall silently compares vectors from different
|
||||
// spaces and the scores are noise. So we say it out loud. Recall itself is not
|
||||
// changed here — the fix is `mavend -reembed`.
|
||||
func checkStoredEmbedder(dataStore *store.Store, emb router.Embedder) {
|
||||
if dataStore == nil {
|
||||
return
|
||||
}
|
||||
current := router.EmbedderID(emb)
|
||||
if reembedOnStart {
|
||||
runReembed(dataStore, emb, current)
|
||||
return
|
||||
}
|
||||
stored, mismatch, err := dataStore.CheckEmbedder(context.Background(), current)
|
||||
if err != nil {
|
||||
log.Printf("voice: embedder marker check failed: %v", err)
|
||||
return
|
||||
}
|
||||
if mismatch {
|
||||
log.Printf("voice: WARNING embedder MISMATCH — stored vectors were written by %q but the configured embedder is %q; recall scores are noise until the notes and facts are re-embedded — run `mavend -reembed` once (Vikunja #378)", stored, current)
|
||||
return
|
||||
}
|
||||
log.Printf("voice: embedder marker ok (%s)", current)
|
||||
}
|
||||
|
||||
// runReembed is the one-shot backfill behind -reembed.
|
||||
//
|
||||
// Why a flag and not automatic on mismatch: the embedder is ONNX on the
|
||||
// laptop's CPU, so a few thousand notes is minutes of work. Doing that silently
|
||||
// inside a normal start would look like the daemon hanging on boot. So the user
|
||||
// runs it once, deliberately, after an embedder swap; the mismatch warning
|
||||
// above tells them to. It re-embeds, logs what it did, and then the daemon
|
||||
// carries on serving as usual — no separate binary, no second start needed.
|
||||
func runReembed(dataStore *store.Store, emb router.Embedder, current string) {
|
||||
log.Printf("voice: re-embedding stored notes and facts with %s — this can take a few minutes, do not interrupt", current)
|
||||
res, err := dataStore.ReembedAll(context.Background(), current,
|
||||
// EmbedPassage, not EmbedQuery: these are stored texts being searched
|
||||
// FOR, which is the side they were written with.
|
||||
func(ctx context.Context, text string) ([]float32, error) {
|
||||
return router.EmbedPassage(ctx, emb, text)
|
||||
})
|
||||
if err != nil {
|
||||
log.Printf("voice: re-embed FAILED, nothing was changed and no marker was written — safe to run again: %v", err)
|
||||
return
|
||||
}
|
||||
if res.Skipped {
|
||||
log.Printf("voice: re-embed skipped — the stored vectors were already written by %s", current)
|
||||
return
|
||||
}
|
||||
log.Printf("voice: re-embed done — %d notes in the notes table, %d notes and %d facts in the memory index, took %s; stored vectors now belong to %s",
|
||||
res.Notes, res.MemNotes, res.Facts, res.Took.Round(time.Second), current)
|
||||
|
||||
// A row with no text cannot be re-embedded, so its vector is still the old
|
||||
// model's noise while the marker now says everything is current. Both write
|
||||
// paths always store the text, so this should be zero — say it loudly
|
||||
// rather than bury it in the line above if it ever isn't.
|
||||
if res.NoText > 0 {
|
||||
log.Printf("voice: WARNING %d stored rows had no text, so their vectors could not be re-embedded and are still noise; they will never match anything useful (Vikunja #378)", res.NoText)
|
||||
}
|
||||
}
|
||||
|
||||
+6
-3
@@ -36,11 +36,14 @@
|
||||
"stt": { "socket": "/run/maven/stt.sock", "lang": "ru" },
|
||||
"tts": { "socket": "/run/maven/tts.sock", "lang": "ru" },
|
||||
"embedder": {
|
||||
"model_path": "/opt/maven/models/embedder/model.onnx",
|
||||
"tokenizer_path": "/opt/maven/models/embedder/tokenizer.json",
|
||||
"model_path": "/opt/maven/models/embedder/multilingual-e5-small/model_quantized.onnx",
|
||||
"tokenizer_path": "/opt/maven/models/embedder/multilingual-e5-small/tokenizer.json",
|
||||
"lib_path": "/opt/maven/lib/libonnxruntime.so"
|
||||
},
|
||||
"llm_router": false,
|
||||
"llm_router": true,
|
||||
"query_min_score": 0.55,
|
||||
"query_min_margin": 0.008,
|
||||
"clarify_max_attempts": 3,
|
||||
"tool_timeout": "30s",
|
||||
"tools": [
|
||||
{ "name": "status", "cmd": ["systemctl", "status"], "scope": "homelab", "destructive": false },
|
||||
|
||||
+63
-11
@@ -258,18 +258,25 @@ type VoiceConfig struct {
|
||||
RouterThreshold float64 `json:"router_threshold,omitempty"`
|
||||
|
||||
// LLMRouter — route with the resident model instead of the embedding
|
||||
// classifier. Measured on the held-out fixture (ROUTING-EVAL-31-07-2026.md)
|
||||
// the model gets 50.0% of intents right against the classifier's 36.8%, but
|
||||
// it costs about 800ms per turn instead of 30ms.
|
||||
// classifier. On by default since Vikunja #320.
|
||||
//
|
||||
// TODO: the default stays false until this lands.
|
||||
// Extractor.Extract never runs on an LLM decision, so acts arrive with no
|
||||
// Fn and reminders with no Time. Turning this on today makes routing more
|
||||
// accurate and less safe.
|
||||
// Measured on the held-out fixture (ROUTING-EVAL-31-07-2026.md): 63.2% of
|
||||
// intents right against the classifier's 50.0%, and no route errors. It
|
||||
// costs about 1s per turn instead of 30ms.
|
||||
//
|
||||
// The router can now refuse: it answers "unknown" when it cannot route, and
|
||||
// the turn drops to the classifier and its clarify gate (Vikunja #359).
|
||||
LLMRouter bool `json:"llm_router,omitempty"`
|
||||
// It is safe to leave on. The model can refuse — it answers "unknown" when
|
||||
// it cannot route, and the turn drops to the classifier and its clarify
|
||||
// gate. Any LLM error does the same, so a turn never breaks on the model.
|
||||
// Slot extraction runs on LLM decisions too, so acts get their Fn and
|
||||
// reminders their Time.
|
||||
//
|
||||
// Set it false to go back to the classifier, e.g. on a box with no
|
||||
// llama-server or when 1s a turn is too slow.
|
||||
//
|
||||
// It is a pointer so that "missing from the file" and "explicitly false"
|
||||
// are different things: missing means on, false means off. Read it with
|
||||
// UseLLMRouter(), not directly.
|
||||
LLMRouter *bool `json:"llm_router,omitempty"`
|
||||
|
||||
// QueryMinScore — the note-recall confidence gate. Top cosine below this
|
||||
// ⇒ "I don't know" instead of a guess. Tuned for the ONNX embedder (0.55);
|
||||
@@ -277,6 +284,18 @@ type VoiceConfig struct {
|
||||
// default if unset.
|
||||
QueryMinScore float64 `json:"query_min_score,omitempty"`
|
||||
|
||||
// QueryMinMargin — the second half of the recall gate: the top hit must
|
||||
// beat the runner-up by more than this. The absolute score above cannot do
|
||||
// the job on its own, because the e5 embedder puts every cosine in one
|
||||
// narrow high band, so a made-up question scores as high as a real one.
|
||||
// The margin asks whether one note is clearly the best instead.
|
||||
// Negative ⇒ off. 0 ⇒ the default below.
|
||||
QueryMinMargin float64 `json:"query_min_margin,omitempty"`
|
||||
|
||||
// ClarifyMaxAttempts — how many clarifying questions she may ask about one
|
||||
// request before she gives up and says she did not understand. Default 3.
|
||||
ClarifyMaxAttempts int `json:"clarify_max_attempts,omitempty"`
|
||||
|
||||
// Persona — optional prompt prefix that tunes maven's character. Prepended
|
||||
// to every LLM system prompt (nudge phrasing, note queries, general
|
||||
// knowledge). Empty string ⇒ current hardcoded persona (feminine-gendered
|
||||
@@ -404,7 +423,16 @@ const (
|
||||
DefaultAutotuneInterval = 10 * time.Minute
|
||||
DefaultRouterThreshold = 0.55
|
||||
DefaultQueryMinScore = 0.55
|
||||
DefaultToolTimeout = 30 * time.Second
|
||||
// Read off the margin sweep in internal/memory/recalleval on the e5
|
||||
// embedder: 0.008 answers 68% of real questions (down from 72%) and cuts
|
||||
// false recall from 5/5 to 1/5. Every larger delta costs real recall
|
||||
// without removing that last one until 0.020, which drops recall to 44%.
|
||||
DefaultQueryMinMargin = 0.008
|
||||
// DefaultClarifyMaxAttempts — see dialogue.DefaultMaxAttempts.
|
||||
DefaultClarifyMaxAttempts = 3
|
||||
DefaultToolTimeout = 30 * time.Second
|
||||
// DefaultLLMRouter — route with the resident model unless told otherwise.
|
||||
DefaultLLMRouter = true
|
||||
|
||||
DefaultFactEnrichmentInterval = 30 * time.Second
|
||||
)
|
||||
@@ -486,9 +514,24 @@ func (c *Config) applyDefaults() {
|
||||
if c.Voice.QueryMinScore <= 0 {
|
||||
c.Voice.QueryMinScore = DefaultQueryMinScore
|
||||
}
|
||||
// Unset ⇒ default. Negative is how you turn the margin off on purpose,
|
||||
// so it is clamped to 0 rather than replaced by the default.
|
||||
switch {
|
||||
case c.Voice.QueryMinMargin == 0:
|
||||
c.Voice.QueryMinMargin = DefaultQueryMinMargin
|
||||
case c.Voice.QueryMinMargin < 0:
|
||||
c.Voice.QueryMinMargin = 0
|
||||
}
|
||||
if c.Voice.ClarifyMaxAttempts <= 0 {
|
||||
c.Voice.ClarifyMaxAttempts = DefaultClarifyMaxAttempts
|
||||
}
|
||||
if c.Voice.ToolTimeout <= 0 {
|
||||
c.Voice.ToolTimeout = Duration(DefaultToolTimeout)
|
||||
}
|
||||
if c.Voice.LLMRouter == nil {
|
||||
on := DefaultLLMRouter
|
||||
c.Voice.LLMRouter = &on
|
||||
}
|
||||
}
|
||||
|
||||
// routines: default severity to care-class (1) — the safe floor: a
|
||||
@@ -507,6 +550,15 @@ func (c *Config) applyDefaults() {
|
||||
}
|
||||
}
|
||||
|
||||
// UseLLMRouter reports whether to route with the resident model. Unset means
|
||||
// on; only an explicit false in the config turns it off.
|
||||
func (v *VoiceConfig) UseLLMRouter() bool {
|
||||
if v == nil || v.LLMRouter == nil {
|
||||
return DefaultLLMRouter
|
||||
}
|
||||
return *v.LLMRouter
|
||||
}
|
||||
|
||||
func (c *Config) validate() error {
|
||||
if c.Phraser != nil {
|
||||
if c.Phraser.ModelPath == "" {
|
||||
|
||||
@@ -171,14 +171,26 @@ func TestWeatherConfigNilOK(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
func TestLLMRouterDefaultsOff(t *testing.T) {
|
||||
func TestLLMRouterDefaultsOn(t *testing.T) {
|
||||
p := writeConfig(t, `{"voice":{"enabled":true,"bind":"127.0.0.1:9100"}}`)
|
||||
c, err := Load(p)
|
||||
if err != nil {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
if c.Voice.LLMRouter {
|
||||
t.Error("voice.llm_router absent should mean false")
|
||||
if !c.Voice.UseLLMRouter() {
|
||||
t.Error("voice.llm_router absent should mean on")
|
||||
}
|
||||
}
|
||||
|
||||
// Missing and explicitly false must not mean the same thing.
|
||||
func TestLLMRouterExplicitFalseTurnsItOff(t *testing.T) {
|
||||
p := writeConfig(t, `{"voice":{"enabled":true,"bind":"127.0.0.1:9100","llm_router":false}}`)
|
||||
c, err := Load(p)
|
||||
if err != nil {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
if c.Voice.UseLLMRouter() {
|
||||
t.Error("voice.llm_router false should turn it off")
|
||||
}
|
||||
}
|
||||
|
||||
@@ -188,7 +200,7 @@ func TestLLMRouterRead(t *testing.T) {
|
||||
if err != nil {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
if !c.Voice.LLMRouter {
|
||||
if !c.Voice.UseLLMRouter() {
|
||||
t.Error("voice.llm_router true was not read")
|
||||
}
|
||||
}
|
||||
|
||||
@@ -17,10 +17,11 @@ const (
|
||||
SlotText Slot = "text" // Slots.Text
|
||||
)
|
||||
|
||||
// MaxAttempts is 1 because Maven is not a nag (DESIGN.md § Non-goals). She asks
|
||||
// one clarifying question. If the answer still leaves the slot empty she drops
|
||||
// the request instead of asking again.
|
||||
const MaxAttempts = 1
|
||||
// DefaultMaxAttempts — how many questions she may ask about one request.
|
||||
// Three, because after three tries the likely problem is that she misheard the
|
||||
// whole request, not one slot — so another question about that slot won't help.
|
||||
// Configurable: voice.clarify_max_attempts.
|
||||
const DefaultMaxAttempts = 3
|
||||
|
||||
// PendingQuestion is what Maven holds while she waits for an answer to an open
|
||||
// question. Unlike the yes/no confirms in cmd/mavend/voice.go, the answer here
|
||||
@@ -32,7 +33,17 @@ type PendingQuestion struct {
|
||||
Utterance string // the user's original raw words
|
||||
Asked time.Time
|
||||
TTL time.Duration
|
||||
Attempts int // questions already asked; capped by MaxAttempts
|
||||
Attempts int // questions already asked
|
||||
// MaxAttempts caps Attempts. 0 ⇒ DefaultMaxAttempts.
|
||||
MaxAttempts int
|
||||
}
|
||||
|
||||
// maxAttempts is MaxAttempts with the default filled in.
|
||||
func (q *PendingQuestion) maxAttempts() int {
|
||||
if q.MaxAttempts <= 0 {
|
||||
return DefaultMaxAttempts
|
||||
}
|
||||
return q.MaxAttempts
|
||||
}
|
||||
|
||||
func (q *PendingQuestion) IsExpired(now time.Time) bool {
|
||||
@@ -41,12 +52,9 @@ func (q *PendingQuestion) IsExpired(now time.Time) bool {
|
||||
|
||||
// CanAsk reports whether Maven may ask another question about this request.
|
||||
func (q *PendingQuestion) CanAsk() bool {
|
||||
return q.Attempts < MaxAttempts
|
||||
return q.Attempts < q.maxAttempts()
|
||||
}
|
||||
|
||||
// TODO: the daemon will phrase the question text from Missing (one short ru
|
||||
// question per Slot, feminine self-reference) and speak it here.
|
||||
|
||||
// ClarifyStore holds the parked questions. Same shape and locking as
|
||||
// SessionStore: keyed by dialogue id, expired entries dropped on read.
|
||||
type ClarifyStore struct {
|
||||
@@ -67,8 +75,7 @@ func NewClarifyStore(defaultTTL time.Duration) *ClarifyStore {
|
||||
}
|
||||
}
|
||||
|
||||
// TODO: the daemon will Put a question here when Decision.Clarify fires, in
|
||||
// place of the flat "не разобрала" reply (cmd/mavend/voice.go).
|
||||
// Put parks a question. Called on a clarify decision (cmd/mavend/clarify.go).
|
||||
func (s *ClarifyStore) Put(id string, q *PendingQuestion) {
|
||||
if q.TTL <= 0 {
|
||||
q.TTL = s.defaultTTL
|
||||
@@ -78,8 +85,7 @@ func (s *ClarifyStore) Put(id string, q *PendingQuestion) {
|
||||
s.mu.Unlock()
|
||||
}
|
||||
|
||||
// TODO: the daemon will Get on the next turn, parse that turn into Slots, call
|
||||
// Answer, and Delete — the open-question twin of resolveConfirm.
|
||||
// Get returns the live parked question, or nil when there is none.
|
||||
func (s *ClarifyStore) Get(id string, now time.Time) *PendingQuestion {
|
||||
s.mu.RLock()
|
||||
q, ok := s.questions[id]
|
||||
@@ -94,6 +100,21 @@ func (s *ClarifyStore) Get(id string, now time.Time) *PendingQuestion {
|
||||
return q
|
||||
}
|
||||
|
||||
// TakeExpired reports whether a question was parked here but its TTL ran out,
|
||||
// and drops it. Get drops such a question silently, which leaves the user
|
||||
// thinking his request is still alive — the caller uses this to tell him it is
|
||||
// gone before treating his words as a fresh utterance.
|
||||
func (s *ClarifyStore) TakeExpired(id string, now time.Time) bool {
|
||||
s.mu.Lock()
|
||||
defer s.mu.Unlock()
|
||||
q, ok := s.questions[id]
|
||||
if !ok || !q.IsExpired(now) {
|
||||
return false
|
||||
}
|
||||
delete(s.questions, id)
|
||||
return true
|
||||
}
|
||||
|
||||
func (s *ClarifyStore) Delete(id string) {
|
||||
s.mu.Lock()
|
||||
delete(s.questions, id)
|
||||
@@ -101,44 +122,45 @@ func (s *ClarifyStore) Delete(id string) {
|
||||
}
|
||||
|
||||
// Answer merges the slots parsed from the user's answer into the parked ones.
|
||||
// Only the slots listed in Missing are filled, and an already filled slot is
|
||||
// never overwritten — the answer completes the original request, it does not
|
||||
// restate it. Parsing the answer text into `answer` is the caller's job; this
|
||||
// package must stay free of internal/router.
|
||||
// Only the slots listed in Missing are touched. Within those, a value the answer
|
||||
// carries WINS over what was parked: she asked about this slot, so «нет, в пять»
|
||||
// after «в три» must replace the time, not be thrown away.
|
||||
//
|
||||
// This is the clarify answer only. A correction in a fresh turn ("вообще-то
|
||||
// перенеси на пять") is a different code path (followUpMerge) — not here.
|
||||
//
|
||||
// Parsing the answer text into `answer` is the caller's job; this package must
|
||||
// stay free of internal/router.
|
||||
func (q *PendingQuestion) Answer(text string, answer Slots) Slots {
|
||||
out := q.Slots
|
||||
for _, slot := range q.Missing {
|
||||
switch slot {
|
||||
case SlotTime:
|
||||
if !out.HasTime && answer.HasTime {
|
||||
if answer.HasTime {
|
||||
out.Time = answer.Time
|
||||
out.HasTime = true
|
||||
}
|
||||
case SlotKey:
|
||||
if !out.HasKey && answer.HasKey {
|
||||
if answer.HasKey {
|
||||
out.Key = answer.Key
|
||||
out.HasKey = true
|
||||
}
|
||||
case SlotValue:
|
||||
if out.Value == "" && answer.Value != "" {
|
||||
if answer.Value != "" {
|
||||
out.Value = answer.Value
|
||||
}
|
||||
case SlotFn:
|
||||
if !out.HasFn && answer.HasFn {
|
||||
if answer.HasFn {
|
||||
out.Fn = answer.Fn
|
||||
out.HasFn = true
|
||||
if len(out.Args) == 0 {
|
||||
out.Args = append([]string(nil), answer.Args...)
|
||||
}
|
||||
out.Args = append([]string(nil), answer.Args...)
|
||||
}
|
||||
case SlotText:
|
||||
if out.Text == "" {
|
||||
if answer.Text != "" {
|
||||
out.Text = answer.Text
|
||||
} else {
|
||||
// No parse for a text slot — the raw answer IS the text.
|
||||
out.Text = text
|
||||
}
|
||||
if answer.Text != "" {
|
||||
out.Text = answer.Text
|
||||
} else if out.Text == "" {
|
||||
// No parse for a text slot — the raw answer IS the text.
|
||||
out.Text = text
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,6 +1,7 @@
|
||||
package dialogue
|
||||
|
||||
import (
|
||||
"reflect"
|
||||
"testing"
|
||||
"time"
|
||||
)
|
||||
@@ -59,6 +60,28 @@ func TestClarifyStoreGetPutDelete(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
// TestClarifyStoreTakeExpired — TakeExpired reports (and drops) only a question
|
||||
// whose TTL ran out.
|
||||
func TestClarifyStoreTakeExpired(t *testing.T) {
|
||||
s := NewClarifyStore(time.Minute)
|
||||
if s.TakeExpired("voice", base) {
|
||||
t.Fatal("nothing parked ⇒ nothing expired")
|
||||
}
|
||||
s.Put("voice", &PendingQuestion{Missing: []Slot{SlotTime}, Asked: base, TTL: time.Minute})
|
||||
if s.TakeExpired("voice", base.Add(30*time.Second)) {
|
||||
t.Fatal("a live question must not report as expired")
|
||||
}
|
||||
if s.Get("voice", base.Add(30*time.Second)) == nil {
|
||||
t.Fatal("a live question must survive TakeExpired")
|
||||
}
|
||||
if !s.TakeExpired("voice", base.Add(2*time.Minute)) {
|
||||
t.Fatal("a stale question must report as expired")
|
||||
}
|
||||
if s.TakeExpired("voice", base.Add(2*time.Minute)) {
|
||||
t.Fatal("TakeExpired must drop the question, so the second call is false")
|
||||
}
|
||||
}
|
||||
|
||||
func TestNewClarifyStoreDefaultTTL(t *testing.T) {
|
||||
s := NewClarifyStore(0)
|
||||
q := &PendingQuestion{Asked: base}
|
||||
@@ -89,12 +112,13 @@ func TestAnswerFillsOnlyMissingSlots(t *testing.T) {
|
||||
want: Slots{Text: "напомни позвонить", Time: answerTime, HasTime: true},
|
||||
},
|
||||
{
|
||||
name: "does not overwrite a filled time",
|
||||
// He restated it: «нет, в пять». The new value wins.
|
||||
name: "a restated time overwrites the parked one",
|
||||
parked: Slots{Time: other, HasTime: true},
|
||||
missing: []Slot{SlotTime},
|
||||
text: "в три",
|
||||
text: "нет, в три",
|
||||
answer: Slots{Time: answerTime, HasTime: true},
|
||||
want: Slots{Time: other, HasTime: true},
|
||||
want: Slots{Time: answerTime, HasTime: true},
|
||||
},
|
||||
{
|
||||
name: "ignores slots that were not missing",
|
||||
@@ -121,12 +145,12 @@ func TestAnswerFillsOnlyMissingSlots(t *testing.T) {
|
||||
want: Slots{Fn: "restart", Args: []string{"nginx"}, HasFn: true},
|
||||
},
|
||||
{
|
||||
name: "keeps existing args when fn was already known",
|
||||
name: "a restated fn replaces the fn and its args",
|
||||
parked: Slots{Fn: "restart", Args: []string{"nginx"}, HasFn: true},
|
||||
missing: []Slot{SlotFn},
|
||||
text: "останови postgres",
|
||||
answer: Slots{Fn: "stop", Args: []string{"postgres"}, HasFn: true},
|
||||
want: Slots{Fn: "restart", Args: []string{"nginx"}, HasFn: true},
|
||||
want: Slots{Fn: "stop", Args: []string{"postgres"}, HasFn: true},
|
||||
},
|
||||
{
|
||||
name: "raw answer becomes the text when nothing was parsed",
|
||||
@@ -157,36 +181,34 @@ func TestAnswerFillsOnlyMissingSlots(t *testing.T) {
|
||||
for _, tc := range cases {
|
||||
t.Run(tc.name, func(t *testing.T) {
|
||||
q := &PendingQuestion{Slots: tc.parked, Missing: tc.missing, Asked: base}
|
||||
got := q.Answer(tc.text, tc.answer)
|
||||
if got.Time != tc.want.Time || got.HasTime != tc.want.HasTime ||
|
||||
got.Key != tc.want.Key || got.HasKey != tc.want.HasKey ||
|
||||
got.Value != tc.want.Value || got.Text != tc.want.Text ||
|
||||
got.Fn != tc.want.Fn || got.HasFn != tc.want.HasFn {
|
||||
// Whole-struct compare: a new field in Slots is covered for free.
|
||||
if got := q.Answer(tc.text, tc.answer); !reflect.DeepEqual(got, tc.want) {
|
||||
t.Fatalf("Answer = %+v, want %+v", got, tc.want)
|
||||
}
|
||||
if len(got.Args) != len(tc.want.Args) {
|
||||
t.Fatalf("Args = %v, want %v", got.Args, tc.want.Args)
|
||||
}
|
||||
for i := range got.Args {
|
||||
if got.Args[i] != tc.want.Args[i] {
|
||||
t.Fatalf("Args = %v, want %v", got.Args, tc.want.Args)
|
||||
}
|
||||
}
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
func TestCanAskCapsAtOneQuestion(t *testing.T) {
|
||||
if MaxAttempts != 1 {
|
||||
t.Fatalf("MaxAttempts = %d, want 1 (Maven asks once, she is not a nag)", MaxAttempts)
|
||||
func TestCanAskAllowsThreeQuestionsByDefault(t *testing.T) {
|
||||
if DefaultMaxAttempts != 3 {
|
||||
t.Fatalf("DefaultMaxAttempts = %d, want 3", DefaultMaxAttempts)
|
||||
}
|
||||
q := &PendingQuestion{Asked: base}
|
||||
if !q.CanAsk() {
|
||||
t.Fatal("a fresh question should be askable")
|
||||
q := &PendingQuestion{Asked: base} // MaxAttempts unset ⇒ the default
|
||||
for i := 0; i < 3; i++ {
|
||||
if !q.CanAsk() {
|
||||
t.Fatalf("question %d should be allowed", i+1)
|
||||
}
|
||||
q.Attempts++
|
||||
}
|
||||
q.Attempts = MaxAttempts
|
||||
if q.CanAsk() {
|
||||
t.Fatal("the question should not be asked twice")
|
||||
t.Fatal("a fourth question must not be allowed")
|
||||
}
|
||||
}
|
||||
|
||||
func TestCanAskHonoursConfiguredMax(t *testing.T) {
|
||||
q := &PendingQuestion{Asked: base, MaxAttempts: 1, Attempts: 1}
|
||||
if q.CanAsk() {
|
||||
t.Fatal("MaxAttempts 1 means one question only")
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -1,8 +1,12 @@
|
||||
package dialogue
|
||||
|
||||
import (
|
||||
"context"
|
||||
"encoding/json"
|
||||
"sync"
|
||||
"time"
|
||||
|
||||
"github.com/kami/maven/internal/store"
|
||||
)
|
||||
|
||||
type Intent string
|
||||
@@ -50,10 +54,22 @@ func (s *Session) IsExpired(now time.Time) bool {
|
||||
return now.After(s.Timestamp.Add(s.TTL))
|
||||
}
|
||||
|
||||
// SessionPersister — the bit of the store the session needs, as an interface
|
||||
// so tests can swap it out. Data is an opaque blob: the store never looks
|
||||
// inside, we encode the session as JSON here.
|
||||
type SessionPersister interface {
|
||||
SaveDialogueSession(ctx context.Context, id string, data []byte, ts time.Time, ttl time.Duration) error
|
||||
DeleteDialogueSession(ctx context.Context, id string) error
|
||||
LoadDialogueSessions(ctx context.Context, now time.Time) ([]store.DialogueSessionRow, error)
|
||||
}
|
||||
|
||||
// SessionStore keeps the live sessions in a map (the fast path) and mirrors
|
||||
// every write to the persister, so a daemon restart can load them back.
|
||||
type SessionStore struct {
|
||||
mu sync.RWMutex
|
||||
sessions map[string]*Session
|
||||
defaultTTL time.Duration
|
||||
persist SessionPersister // may be nil: memory only (tests, no-store paths)
|
||||
}
|
||||
|
||||
func NewSessionStore(defaultTTL time.Duration) *SessionStore {
|
||||
@@ -66,6 +82,43 @@ func NewSessionStore(defaultTTL time.Duration) *SessionStore {
|
||||
}
|
||||
}
|
||||
|
||||
// NewPersistentSessionStore — same store, but writes also go to the DB.
|
||||
// Call Load once after this to bring back sessions from a previous run.
|
||||
func NewPersistentSessionStore(defaultTTL time.Duration, p SessionPersister) *SessionStore {
|
||||
s := NewSessionStore(defaultTTL)
|
||||
s.persist = p
|
||||
return s
|
||||
}
|
||||
|
||||
// Load — read the saved sessions back into memory. Anything past its TTL is
|
||||
// dropped (and deleted from the DB by the store), never revived.
|
||||
func (s *SessionStore) Load(ctx context.Context, now time.Time) error {
|
||||
if s.persist == nil {
|
||||
return nil
|
||||
}
|
||||
rows, err := s.persist.LoadDialogueSessions(ctx, now)
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
s.mu.Lock()
|
||||
defer s.mu.Unlock()
|
||||
for _, r := range rows {
|
||||
var sess Session
|
||||
if err := json.Unmarshal(r.Data, &sess); err != nil {
|
||||
// A blob we can't read is not worth failing a startup over.
|
||||
continue
|
||||
}
|
||||
if sess.TTL <= 0 {
|
||||
sess.TTL = r.TTL
|
||||
}
|
||||
if sess.IsExpired(now) {
|
||||
continue
|
||||
}
|
||||
s.sessions[r.ID] = &sess
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
func (s *SessionStore) Get(id string, now time.Time) *Session {
|
||||
s.mu.RLock()
|
||||
sess, ok := s.sessions[id]
|
||||
@@ -87,12 +140,33 @@ func (s *SessionStore) Put(id string, sess *Session) {
|
||||
s.mu.Lock()
|
||||
s.sessions[id] = sess
|
||||
s.mu.Unlock()
|
||||
s.save(id, sess)
|
||||
}
|
||||
|
||||
func (s *SessionStore) Delete(id string) {
|
||||
s.mu.Lock()
|
||||
delete(s.sessions, id)
|
||||
s.mu.Unlock()
|
||||
if s.persist != nil {
|
||||
_ = s.persist.DeleteDialogueSession(context.Background(), id)
|
||||
}
|
||||
}
|
||||
|
||||
// save — mirror one session to the DB. Best effort: memory already has it, so
|
||||
// a write error costs us the restart safety net, not the current turn.
|
||||
func (s *SessionStore) save(id string, sess *Session) {
|
||||
if s.persist == nil {
|
||||
return
|
||||
}
|
||||
data, err := json.Marshal(sess)
|
||||
if err != nil {
|
||||
return
|
||||
}
|
||||
ts := sess.Timestamp
|
||||
if ts.IsZero() {
|
||||
ts = time.Now()
|
||||
}
|
||||
_ = s.persist.SaveDialogueSession(context.Background(), id, data, ts, sess.TTL)
|
||||
}
|
||||
|
||||
func InheritSlots(prev, cur Slots) Slots {
|
||||
|
||||
@@ -0,0 +1,118 @@
|
||||
package dialogue
|
||||
|
||||
import (
|
||||
"context"
|
||||
"path/filepath"
|
||||
"testing"
|
||||
"time"
|
||||
|
||||
"github.com/kami/maven/internal/store"
|
||||
)
|
||||
|
||||
// openStore — a store on disk, so a second handle can reopen the same file.
|
||||
func openStore(t *testing.T, path string) *store.Store {
|
||||
t.Helper()
|
||||
s, err := store.Open(context.Background(), path)
|
||||
if err != nil {
|
||||
t.Fatalf("open store: %v", err)
|
||||
}
|
||||
t.Cleanup(func() { _ = s.Close() })
|
||||
return s
|
||||
}
|
||||
|
||||
// A session written before a restart comes back and still merges a follow-up.
|
||||
func TestSessionSurvivesRestart(t *testing.T) {
|
||||
ctx := context.Background()
|
||||
path := filepath.Join(t.TempDir(), "maven_test.db")
|
||||
now := time.Now().UTC().Truncate(time.Millisecond)
|
||||
|
||||
first := openStore(t, path)
|
||||
before := NewPersistentSessionStore(2*time.Minute, first)
|
||||
before.Put("voice", &Session{
|
||||
Intent: IntentReminder,
|
||||
Slots: Slots{Text: "полить цветы", Time: now.Add(time.Hour), HasTime: true},
|
||||
Timestamp: now,
|
||||
TTL: 2 * time.Minute,
|
||||
})
|
||||
if err := first.Close(); err != nil {
|
||||
t.Fatalf("close: %v", err)
|
||||
}
|
||||
|
||||
// fresh handle, fresh in-memory map — as after a daemon restart
|
||||
after := openStore(t, path)
|
||||
reloaded := NewPersistentSessionStore(2*time.Minute, after)
|
||||
if err := reloaded.Load(ctx, now.Add(10*time.Second)); err != nil {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
sess := reloaded.Get("voice", now.Add(10*time.Second))
|
||||
if sess == nil {
|
||||
t.Fatal("session did not survive the restart")
|
||||
}
|
||||
if sess.Intent != IntentReminder {
|
||||
t.Fatalf("intent = %q, want reminder", sess.Intent)
|
||||
}
|
||||
// the follow-up carries no text of its own; it must inherit the old one
|
||||
merged := InheritSlots(sess.Slots, Slots{Time: now.Add(2 * time.Hour), HasTime: true})
|
||||
if merged.Text != "полить цветы" {
|
||||
t.Fatalf("merged text = %q, want the earlier turn's text", merged.Text)
|
||||
}
|
||||
if !merged.Time.Equal(now.Add(2 * time.Hour)) {
|
||||
t.Fatalf("merged time = %v, want the follow-up's time", merged.Time)
|
||||
}
|
||||
}
|
||||
|
||||
// A session past its TTL is dead: a restart must not bring it back.
|
||||
func TestExpiredSessionNotResurrected(t *testing.T) {
|
||||
ctx := context.Background()
|
||||
path := filepath.Join(t.TempDir(), "maven_test.db")
|
||||
now := time.Now().UTC().Truncate(time.Millisecond)
|
||||
|
||||
first := openStore(t, path)
|
||||
before := NewPersistentSessionStore(2*time.Minute, first)
|
||||
before.Put("voice", &Session{
|
||||
Intent: IntentReminder,
|
||||
Slots: Slots{Text: "полить цветы"},
|
||||
Timestamp: now,
|
||||
TTL: time.Minute,
|
||||
})
|
||||
if err := first.Close(); err != nil {
|
||||
t.Fatalf("close: %v", err)
|
||||
}
|
||||
|
||||
after := openStore(t, path)
|
||||
reloaded := NewPersistentSessionStore(2*time.Minute, after)
|
||||
later := now.Add(5 * time.Minute) // well past the 1-min TTL
|
||||
if err := reloaded.Load(ctx, later); err != nil {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
if sess := reloaded.Get("voice", later); sess != nil {
|
||||
t.Fatalf("expired session came back: %+v", sess)
|
||||
}
|
||||
// and it is gone from the DB too, not just from memory
|
||||
rows, err := after.LoadDialogueSessions(ctx, later)
|
||||
if err != nil {
|
||||
t.Fatalf("LoadDialogueSessions: %v", err)
|
||||
}
|
||||
if len(rows) != 0 {
|
||||
t.Fatalf("expired row still in the DB: %+v", rows)
|
||||
}
|
||||
}
|
||||
|
||||
// Delete removes the row as well, so an ended conversation stays ended.
|
||||
func TestDeleteRemovesPersistedSession(t *testing.T) {
|
||||
ctx := context.Background()
|
||||
path := filepath.Join(t.TempDir(), "maven_test.db")
|
||||
now := time.Now().UTC().Truncate(time.Millisecond)
|
||||
|
||||
s := openStore(t, path)
|
||||
ss := NewPersistentSessionStore(2*time.Minute, s)
|
||||
ss.Put("voice", &Session{Intent: IntentChat, Timestamp: now, TTL: time.Minute})
|
||||
ss.Delete("voice")
|
||||
rows, err := s.LoadDialogueSessions(ctx, now)
|
||||
if err != nil {
|
||||
t.Fatalf("LoadDialogueSessions: %v", err)
|
||||
}
|
||||
if len(rows) != 0 {
|
||||
t.Fatalf("row survived Delete: %+v", rows)
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,38 @@
|
||||
package memory
|
||||
|
||||
// Confidence gate for a recall. Two checks, both must pass before Maven says a
|
||||
// note back:
|
||||
//
|
||||
// - minScore — an absolute cosine floor.
|
||||
// - minMargin — the top hit must beat the runner-up by more than this.
|
||||
//
|
||||
// The margin is the one that carries the weight. The e5 embedder packs every
|
||||
// score into a narrow high band (0.79-0.89 on the recall fixture), so an
|
||||
// absolute floor cannot tell a real hit from a confident-looking miss: every
|
||||
// value under the band admits everything, every value above it answers nothing.
|
||||
// A margin asks a different question — "is this note clearly the best one, or
|
||||
// is the whole shelf equally close?" — and a made-up question has no clear best.
|
||||
//
|
||||
// With one hit and no runner-up there is nothing to compare, so only the floor
|
||||
// applies.
|
||||
|
||||
// ConfidentScores reports whether the top score clears both gates. scores must
|
||||
// be sorted highest first. minMargin <= 0 turns the margin check off.
|
||||
func ConfidentScores(scores []float64, minScore, minMargin float64) bool {
|
||||
if len(scores) == 0 || scores[0] < minScore {
|
||||
return false
|
||||
}
|
||||
if minMargin > 0 && len(scores) > 1 && scores[0]-scores[1] <= minMargin {
|
||||
return false
|
||||
}
|
||||
return true
|
||||
}
|
||||
|
||||
// Confident is ConfidentScores for search results.
|
||||
func Confident(results []Result, minScore, minMargin float64) bool {
|
||||
scores := make([]float64, len(results))
|
||||
for i, r := range results {
|
||||
scores[i] = r.Score
|
||||
}
|
||||
return ConfidentScores(scores, minScore, minMargin)
|
||||
}
|
||||
@@ -0,0 +1,45 @@
|
||||
package memory
|
||||
|
||||
import "testing"
|
||||
|
||||
func TestConfidentScores(t *testing.T) {
|
||||
cases := []struct {
|
||||
name string
|
||||
scores []float64
|
||||
minScore float64
|
||||
minMargin float64
|
||||
want bool
|
||||
}{
|
||||
{"no hits", nil, 0.55, 0.008, false},
|
||||
{"below the floor", []float64{0.40, 0.10}, 0.55, 0.008, false},
|
||||
{"clear winner", []float64{0.86, 0.70}, 0.55, 0.008, true},
|
||||
{"runner-up too close", []float64{0.860, 0.858}, 0.55, 0.008, false},
|
||||
// The rule is "beats the runner-up by MORE than delta". Not testing an
|
||||
// exactly-equal margin: no pair of these decimals subtracts to exactly
|
||||
// 0.008 in binary float, so such a test would pin rounding, not the rule.
|
||||
{"margin just under delta", []float64{0.8079, 0.8}, 0.55, 0.008, false},
|
||||
{"margin just over delta", []float64{0.8081, 0.8}, 0.55, 0.008, true},
|
||||
// One hit: nothing to compare against, so only the floor applies.
|
||||
{"single hit clears", []float64{0.86}, 0.55, 0.008, true},
|
||||
{"single hit below floor", []float64{0.10}, 0.55, 0.008, false},
|
||||
// Margin off — the old absolute-only behaviour.
|
||||
{"margin off admits a tie", []float64{0.86, 0.86}, 0.55, 0, true},
|
||||
}
|
||||
for _, c := range cases {
|
||||
t.Run(c.name, func(t *testing.T) {
|
||||
if got := ConfidentScores(c.scores, c.minScore, c.minMargin); got != c.want {
|
||||
t.Errorf("got %v, want %v", got, c.want)
|
||||
}
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
func TestConfidentReadsResultScores(t *testing.T) {
|
||||
res := []Result{{ID: "a", Score: 0.86}, {ID: "b", Score: 0.858}}
|
||||
if Confident(res, 0.55, 0.008) {
|
||||
t.Error("thin margin passed the gate")
|
||||
}
|
||||
if !Confident(res, 0.55, 0) {
|
||||
t.Error("margin off should fall back to the floor alone")
|
||||
}
|
||||
}
|
||||
@@ -117,18 +117,40 @@ type cachingEmbedder struct {
|
||||
seen map[string][]float32
|
||||
}
|
||||
|
||||
var _ router.AsymmetricEmbedder = (*cachingEmbedder)(nil)
|
||||
|
||||
func (c *cachingEmbedder) Dim() int { return c.inner.Dim() }
|
||||
func (c *cachingEmbedder) Close() error { return nil } // the caller owns inner
|
||||
|
||||
func (c *cachingEmbedder) Embed(ctx context.Context, text string) ([]float32, error) {
|
||||
if v, ok := c.seen[text]; ok {
|
||||
return c.cached(ctx, "embed:"+text, func() ([]float32, error) {
|
||||
return c.inner.Embed(ctx, text)
|
||||
})
|
||||
}
|
||||
|
||||
// The two sides of an asymmetric embedder give different vectors for the same
|
||||
// string, so the cache key has to say which side asked.
|
||||
func (c *cachingEmbedder) EmbedQuery(ctx context.Context, text string) ([]float32, error) {
|
||||
return c.cached(ctx, "query:"+text, func() ([]float32, error) {
|
||||
return router.EmbedQuery(ctx, c.inner, text)
|
||||
})
|
||||
}
|
||||
|
||||
func (c *cachingEmbedder) EmbedPassage(ctx context.Context, text string) ([]float32, error) {
|
||||
return c.cached(ctx, "passage:"+text, func() ([]float32, error) {
|
||||
return router.EmbedPassage(ctx, c.inner, text)
|
||||
})
|
||||
}
|
||||
|
||||
func (c *cachingEmbedder) cached(_ context.Context, key string, embed func() ([]float32, error)) ([]float32, error) {
|
||||
if v, ok := c.seen[key]; ok {
|
||||
return v, nil
|
||||
}
|
||||
v, err := c.inner.Embed(ctx, text)
|
||||
v, err := embed()
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
c.seen[text] = v
|
||||
c.seen[key] = v
|
||||
return v, nil
|
||||
}
|
||||
|
||||
@@ -155,6 +177,8 @@ type Outcome struct {
|
||||
Tied bool
|
||||
TopID string
|
||||
TopScor float64
|
||||
// Margin — top1 − top2. 0 when fewer than two hits came back.
|
||||
Margin float64
|
||||
Reasons []string
|
||||
}
|
||||
|
||||
@@ -162,8 +186,10 @@ type Outcome struct {
|
||||
// ranks first but is silenced by query_min_score is a threshold problem, and a
|
||||
// note that never ranks first is an embedder problem. Those are different fixes.
|
||||
type Report struct {
|
||||
Name string
|
||||
MinScore float64
|
||||
Name string
|
||||
MinScore float64
|
||||
// MinMargin — how far the top hit must beat the runner-up. 0 ⇒ off.
|
||||
MinMargin float64
|
||||
Total int
|
||||
Answerable int
|
||||
Rank1 int
|
||||
@@ -190,9 +216,14 @@ type Report struct {
|
||||
// where the right note ranked first, and for the no-answer cases. The gap
|
||||
// between these two distributions is what a defensible query_min_score
|
||||
// would have to sit inside; if they overlap, no threshold separates them.
|
||||
CorrectTop []float64
|
||||
NoAnswerTop []float64
|
||||
P50, P95, Max time.Duration
|
||||
CorrectTop []float64
|
||||
NoAnswerTop []float64
|
||||
// CorrectMargin / NoAnswerMargin — the same two groups, but top1 − top2
|
||||
// instead of top1. This is the pair the margin gate has to separate, and
|
||||
// unlike the absolute scores it is what the sweep reads.
|
||||
CorrectMargin []float64
|
||||
NoAnswerMargin []float64
|
||||
P50, P95, Max time.Duration
|
||||
}
|
||||
|
||||
// TagStat — passed/total for one slice of the fixture.
|
||||
@@ -223,13 +254,14 @@ func ratio(n, d int) float64 {
|
||||
// the run on an embed or search error: an erroring case scores as a miss and is
|
||||
// counted in Errors, because "the embedder was down" and "the embedder was
|
||||
// wrong" are different numbers.
|
||||
func Score(ctx context.Context, name string, emb router.Embedder, newStore NewStore, minScore float64, f Fixture) (Report, error) {
|
||||
func Score(ctx context.Context, name string, emb router.Embedder, newStore NewStore, minScore, minMargin float64, f Fixture) (Report, error) {
|
||||
rep := Report{
|
||||
Name: name,
|
||||
MinScore: minScore,
|
||||
Total: len(f.Cases),
|
||||
ByTag: map[string]TagStat{},
|
||||
ByLang: map[string]TagStat{},
|
||||
Name: name,
|
||||
MinScore: minScore,
|
||||
MinMargin: minMargin,
|
||||
Total: len(f.Cases),
|
||||
ByTag: map[string]TagStat{},
|
||||
ByLang: map[string]TagStat{},
|
||||
}
|
||||
lat := make([]time.Duration, 0, len(f.Cases))
|
||||
|
||||
@@ -239,7 +271,7 @@ func Score(ctx context.Context, name string, emb router.Embedder, newStore NewSt
|
||||
} else {
|
||||
rep.NoAnswer++
|
||||
}
|
||||
o, err := scoreCase(ctx, emb, newStore, minScore, c, f.Filler)
|
||||
o, err := scoreCase(ctx, emb, newStore, minScore, minMargin, c, f.Filler)
|
||||
if err != nil {
|
||||
return Report{}, err
|
||||
}
|
||||
@@ -263,6 +295,11 @@ func Score(ctx context.Context, name string, emb router.Embedder, newStore NewSt
|
||||
} else if !o.Rank1 {
|
||||
rep.WrongTop++
|
||||
}
|
||||
if o.Rank1 {
|
||||
// Margins are collected on rank, not on the gate, so the
|
||||
// distribution does not move as the sweep changes the gate.
|
||||
rep.CorrectMargin = append(rep.CorrectMargin, o.Margin)
|
||||
}
|
||||
if o.Rank1 && o.Recalled != "" {
|
||||
rep.CorrectTop = append(rep.CorrectTop, o.TopScor)
|
||||
}
|
||||
@@ -271,6 +308,7 @@ func Score(ctx context.Context, name string, emb router.Embedder, newStore NewSt
|
||||
rep.FalseRecall++
|
||||
}
|
||||
rep.NoAnswerTop = append(rep.NoAnswerTop, o.TopScor)
|
||||
rep.NoAnswerMargin = append(rep.NoAnswerMargin, o.Margin)
|
||||
}
|
||||
|
||||
if o.Pass {
|
||||
@@ -285,6 +323,8 @@ func Score(ctx context.Context, name string, emb router.Embedder, newStore NewSt
|
||||
|
||||
sort.Float64s(rep.CorrectTop)
|
||||
sort.Float64s(rep.NoAnswerTop)
|
||||
sort.Float64s(rep.CorrectMargin)
|
||||
sort.Float64s(rep.NoAnswerMargin)
|
||||
sort.Slice(lat, func(i, j int) bool { return lat[i] < lat[j] })
|
||||
rep.P50, rep.P95 = percentile(lat, 0.50), percentile(lat, 0.95)
|
||||
if len(lat) > 0 {
|
||||
@@ -296,7 +336,7 @@ func Score(ctx context.Context, name string, emb router.Embedder, newStore NewSt
|
||||
// scoreCase inserts the case's notes into a fresh store, then runs the read
|
||||
// path the daemon runs. The returned error is fatal (the harness is broken);
|
||||
// an embedder or store failure on the query lands in Outcome.Err instead.
|
||||
func scoreCase(ctx context.Context, emb router.Embedder, newStore NewStore, minScore float64, c Case, filler []StoredNote) (Outcome, error) {
|
||||
func scoreCase(ctx context.Context, emb router.Embedder, newStore NewStore, minScore, minMargin float64, c Case, filler []StoredNote) (Outcome, error) {
|
||||
st, release, err := newStore()
|
||||
if err != nil {
|
||||
return Outcome{}, fmt.Errorf("%s: new store: %w", c.ID, err)
|
||||
@@ -305,7 +345,7 @@ func scoreCase(ctx context.Context, emb router.Embedder, newStore NewStore, minS
|
||||
|
||||
all := append(append([]StoredNote(nil), c.Notes...), filler...)
|
||||
for _, n := range all {
|
||||
vec, err := emb.Embed(ctx, n.Text)
|
||||
vec, err := router.EmbedPassage(ctx, emb, n.Text)
|
||||
if err != nil {
|
||||
return Outcome{}, fmt.Errorf("%s: embed note %s: %w", c.ID, n.ID, err)
|
||||
}
|
||||
@@ -317,7 +357,7 @@ func scoreCase(ctx context.Context, emb router.Embedder, newStore NewStore, minS
|
||||
|
||||
o := Outcome{Case: c}
|
||||
start := time.Now()
|
||||
qvec, err := emb.Embed(ctx, c.Query)
|
||||
qvec, err := router.EmbedQuery(ctx, emb, c.Query)
|
||||
if err != nil {
|
||||
o.Latency = time.Since(start)
|
||||
o.Err = err
|
||||
@@ -335,7 +375,10 @@ func scoreCase(ctx context.Context, emb router.Embedder, newStore NewStore, minS
|
||||
|
||||
if len(hits) > 0 {
|
||||
o.TopID, o.TopScor = hits[0].ID, hits[0].Score
|
||||
o.Recalled = bestRecall(hits, minScore)
|
||||
if len(hits) > 1 {
|
||||
o.Margin = hits[0].Score - hits[1].Score
|
||||
}
|
||||
o.Recalled = bestRecall(hits, minScore, minMargin)
|
||||
}
|
||||
for i, h := range hits {
|
||||
if h.ID != c.Want {
|
||||
@@ -356,14 +399,14 @@ func scoreCase(ctx context.Context, emb router.Embedder, newStore NewStore, minS
|
||||
switch {
|
||||
case !c.Answerable():
|
||||
if o.Recalled != "" {
|
||||
o.Reasons = append(o.Reasons, fmt.Sprintf("false recall: %q at %.3f, want silence", o.TopID, o.TopScor))
|
||||
o.Reasons = append(o.Reasons, fmt.Sprintf("false recall: %q at %.3f (margin %.3f), want silence", o.TopID, o.TopScor, o.Margin))
|
||||
}
|
||||
case o.Tied:
|
||||
o.Reasons = append(o.Reasons, fmt.Sprintf("tie at %.3f — the right note is on top only by sort order", o.TopScor))
|
||||
case !o.Rank1:
|
||||
o.Reasons = append(o.Reasons, fmt.Sprintf("top hit %q (%.3f), want %q%s", o.TopID, o.TopScor, c.Want, rankNote(o.Rank3)))
|
||||
case o.Recalled == "":
|
||||
o.Reasons = append(o.Reasons, fmt.Sprintf("right note ranked first but scored %.3f < gate %.2f — daemon says \"не знаю\"", o.TopScor, minScore))
|
||||
o.Reasons = append(o.Reasons, fmt.Sprintf("right note ranked first at %.3f (margin %.3f) but the gate silenced it — daemon says \"не знаю\"", o.TopScor, o.Margin))
|
||||
}
|
||||
o.Pass = len(o.Reasons) == 0
|
||||
return o, nil
|
||||
@@ -379,8 +422,10 @@ func rankNote(inTop3 bool) string {
|
||||
// bestRecall mirrors cmd/mavend/recall.go — the gate the daemon actually
|
||||
// applies to a memory hit. Duplicated rather than imported because package main
|
||||
// is not importable; recalleval_test.go asserts the two agree in behaviour.
|
||||
func bestRecall(results []memory.Result, min float64) string {
|
||||
if len(results) == 0 || results[0].Score < min {
|
||||
// The daemon returns the whole hit (a note and a fact are said differently);
|
||||
// the harness only scores what came back, so it keeps returning the text.
|
||||
func bestRecall(results []memory.Result, minScore, minMargin float64) string {
|
||||
if !memory.Confident(results, minScore, minMargin) {
|
||||
return ""
|
||||
}
|
||||
return results[0].Meta["text"]
|
||||
@@ -415,7 +460,7 @@ func percentile(sorted []time.Duration, p float64) time.Duration {
|
||||
// the slices that name where the path is weak.
|
||||
func (r Report) String() string {
|
||||
var b strings.Builder
|
||||
fmt.Fprintf(&b, "%s: %d/%d cases pass (gate %.2f)\n", r.Name, r.Passed, r.Total, r.MinScore)
|
||||
fmt.Fprintf(&b, "%s: %d/%d cases pass (gate %.2f, margin %.3f)\n", r.Name, r.Passed, r.Total, r.MinScore, r.MinMargin)
|
||||
fmt.Fprintf(&b, " recall@1 %.1f%% (%d/%d) recall@3 %.1f%% (%d/%d) answered after gate %.1f%% (%d/%d)\n",
|
||||
100*r.Recall1(), r.Rank1, r.Answerable,
|
||||
100*r.Recall3(), r.Rank3, r.Answerable,
|
||||
@@ -426,6 +471,8 @@ func (r Report) String() string {
|
||||
100*r.FalseRecallRate(), r.FalseRecall, r.NoAnswer)
|
||||
fmt.Fprintf(&b, " top-1 score, right note first: %s\n", spread(r.CorrectTop))
|
||||
fmt.Fprintf(&b, " top-1 score, must be silent: %s\n", spread(r.NoAnswerTop))
|
||||
fmt.Fprintf(&b, " margin top1-top2, right note first: %s\n", spread(r.CorrectMargin))
|
||||
fmt.Fprintf(&b, " margin top1-top2, must be silent: %s\n", spread(r.NoAnswerMargin))
|
||||
fmt.Fprintf(&b, " latency: p50 %s p95 %s max %s\n", r.P50, r.P95, r.Max)
|
||||
fmt.Fprintf(&b, " by lang: %s\n", renderStats(r.ByLang))
|
||||
fmt.Fprintf(&b, " by tag: %s\n", renderStats(r.ByTag))
|
||||
|
||||
@@ -142,21 +142,40 @@ func words(s string) []string {
|
||||
// cmd/mavend/recall.go (package main is not importable). This pins the copy to
|
||||
// the original's three rules: no hits, below the gate, or no text ⇒ silence.
|
||||
func TestBestRecallMatchesDaemon(t *testing.T) {
|
||||
if got := bestRecall(nil, 0.55); got != "" {
|
||||
if got := bestRecall(nil, 0.55, 0); got != "" {
|
||||
t.Errorf("no hits: got %q, want silence", got)
|
||||
}
|
||||
low := []memory.Result{{ID: "a", Score: 0.4, Meta: map[string]string{"text": "чай"}}}
|
||||
if got := bestRecall(low, 0.55); got != "" {
|
||||
if got := bestRecall(low, 0.55, 0); got != "" {
|
||||
t.Errorf("below gate: got %q, want silence", got)
|
||||
}
|
||||
noText := []memory.Result{{ID: "a", Score: 0.9, Meta: map[string]string{}}}
|
||||
if got := bestRecall(noText, 0.55); got != "" {
|
||||
if got := bestRecall(noText, 0.55, 0); got != "" {
|
||||
t.Errorf("no text: got %q, want silence", got)
|
||||
}
|
||||
ok := []memory.Result{{ID: "a", Score: 0.9, Meta: map[string]string{"text": "чай"}}}
|
||||
if got := bestRecall(ok, 0.55); got != "чай" {
|
||||
if got := bestRecall(ok, 0.55, 0); got != "чай" {
|
||||
t.Errorf("above gate: got %q, want %q", got, "чай")
|
||||
}
|
||||
// Margin: a close runner-up means the embedder cannot tell the two apart,
|
||||
// so Maven stays silent even though both clear the absolute floor.
|
||||
close := []memory.Result{
|
||||
{ID: "a", Score: 0.86, Meta: map[string]string{"text": "чай"}},
|
||||
{ID: "b", Score: 0.85, Meta: map[string]string{"text": "кофе"}},
|
||||
}
|
||||
if got := bestRecall(close, 0.55, 0.03); got != "" {
|
||||
t.Errorf("thin margin: got %q, want silence", got)
|
||||
}
|
||||
if got := bestRecall(close, 0.55, 0); got != "чай" {
|
||||
t.Errorf("margin off: got %q, want %q", got, "чай")
|
||||
}
|
||||
clear := []memory.Result{
|
||||
{ID: "a", Score: 0.86, Meta: map[string]string{"text": "чай"}},
|
||||
{ID: "b", Score: 0.70, Meta: map[string]string{"text": "кофе"}},
|
||||
}
|
||||
if got := bestRecall(clear, 0.55, 0.03); got != "чай" {
|
||||
t.Errorf("wide margin: got %q, want %q", got, "чай")
|
||||
}
|
||||
}
|
||||
|
||||
// TestHashRecallBaseline — the CI ratchet. HashEmbedder, so it needs no model
|
||||
@@ -171,14 +190,15 @@ func TestHashRecallBaseline(t *testing.T) {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
rep, err := Score(context.Background(), "recall+hash", router.NewHashEmbedder(hashDim), InMemory,
|
||||
config.DefaultQueryMinScore, f)
|
||||
config.DefaultQueryMinScore, config.DefaultQueryMinMargin, f)
|
||||
if err != nil {
|
||||
t.Fatalf("Score: %v", err)
|
||||
}
|
||||
t.Log("\n" + rep.String() + rep.Failures())
|
||||
t.Log("\ngate sweep:\n" + sweep(t, router.NewHashEmbedder(hashDim), f))
|
||||
|
||||
// 0.32 sits under the observed 0.360 recall@1.
|
||||
// 0.32 sits under the observed 0.370 recall@1 (was 0.360 over 25 answerable
|
||||
// cases; the two mixed note+fact cases added with #373 make it 27).
|
||||
const floorRecall1 = 0.32
|
||||
if rep.Recall1() < floorRecall1 {
|
||||
t.Errorf("recall@1 %.3f below ratchet %.2f — note recall regressed", rep.Recall1(), floorRecall1)
|
||||
@@ -201,11 +221,11 @@ func TestPersistentStoreScoresTheSame(t *testing.T) {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
emb := router.NewHashEmbedder(hashDim)
|
||||
inMem, err := Score(context.Background(), "recall+hash+memory", emb, InMemory, config.DefaultQueryMinScore, f)
|
||||
inMem, err := Score(context.Background(), "recall+hash+memory", emb, InMemory, config.DefaultQueryMinScore, config.DefaultQueryMinMargin, f)
|
||||
if err != nil {
|
||||
t.Fatalf("Score in-memory: %v", err)
|
||||
}
|
||||
persistent, err := Score(context.Background(), "recall+hash+sqlite", emb, sqliteStores(t), config.DefaultQueryMinScore, f)
|
||||
persistent, err := Score(context.Background(), "recall+hash+sqlite", emb, sqliteStores(t), config.DefaultQueryMinScore, config.DefaultQueryMinMargin, f)
|
||||
if err != nil {
|
||||
t.Fatalf("Score sqlite: %v", err)
|
||||
}
|
||||
@@ -246,8 +266,8 @@ func TestONNXRecall(t *testing.T) {
|
||||
if lib == "" {
|
||||
t.Skip("MAVEN_ONNX_LIB unset — see AGENTS.md § Embedder model for intent routing")
|
||||
}
|
||||
model := filepath.Join("../../..", "models/embedder/model.onnx")
|
||||
tok := filepath.Join("../../..", "models/embedder/tokenizer.json")
|
||||
model := filepath.Join("../../..", "models/embedder/multilingual-e5-small/model_quantized.onnx")
|
||||
tok := filepath.Join("../../..", "models/embedder/multilingual-e5-small/tokenizer.json")
|
||||
for _, p := range []string{lib, model, tok} {
|
||||
if _, err := os.Stat(p); err != nil {
|
||||
t.Skipf("missing %s: %v", p, err)
|
||||
@@ -263,14 +283,16 @@ func TestONNXRecall(t *testing.T) {
|
||||
if err != nil {
|
||||
t.Fatalf("Load: %v", err)
|
||||
}
|
||||
rep, err := Score(context.Background(), "recall+onnx", emb, InMemory, config.DefaultQueryMinScore, f)
|
||||
rep, err := Score(context.Background(), "recall+onnx", emb, InMemory, config.DefaultQueryMinScore, config.DefaultQueryMinMargin, f)
|
||||
if err != nil {
|
||||
t.Fatalf("Score: %v", err)
|
||||
}
|
||||
t.Log("\n" + rep.String() + rep.Failures())
|
||||
// Cached for the sweep only: the headline run above must pay the real
|
||||
// Cached for the sweeps only: the headline run above must pay the real
|
||||
// embedder cost so its latency numbers mean something.
|
||||
t.Log("\ngate sweep:\n" + sweep(t, Cache(emb), f))
|
||||
cached := Cache(emb)
|
||||
t.Log("\ngate sweep (margin off):\n" + sweep(t, cached, f))
|
||||
t.Log("\nmargin sweep (gate 0.55):\n" + marginSweep(t, cached, f))
|
||||
}
|
||||
|
||||
// sweep scores the fixture at a range of gates and renders one line each. Two
|
||||
@@ -281,7 +303,7 @@ func sweep(t *testing.T, emb router.Embedder, f Fixture) string {
|
||||
t.Helper()
|
||||
var b strings.Builder
|
||||
for _, gate := range []float64{0.0, 0.30, 0.40, 0.50, 0.55, 0.60, 0.70, 0.80, 0.90} {
|
||||
rep, err := Score(context.Background(), "sweep", emb, InMemory, gate, f)
|
||||
rep, err := Score(context.Background(), "sweep", emb, InMemory, gate, 0, f)
|
||||
if err != nil {
|
||||
t.Fatalf("sweep at %.2f: %v", gate, err)
|
||||
}
|
||||
@@ -290,3 +312,21 @@ func sweep(t *testing.T, emb router.Embedder, f Fixture) string {
|
||||
}
|
||||
return b.String()
|
||||
}
|
||||
|
||||
// marginSweep is the same idea for the margin gate (top1 − top2 > delta), with
|
||||
// the absolute gate held at its default. The absolute score cannot separate a
|
||||
// real hit from a made-up question under e5 — every score lands in one narrow
|
||||
// band — so this sweep is the one that picks a number.
|
||||
func marginSweep(t *testing.T, emb router.Embedder, f Fixture) string {
|
||||
t.Helper()
|
||||
var b strings.Builder
|
||||
for _, d := range []float64{0, 0.002, 0.005, 0.008, 0.01, 0.012, 0.015, 0.02, 0.025, 0.03, 0.04, 0.05, 0.06} {
|
||||
rep, err := Score(context.Background(), "margin sweep", emb, InMemory, config.DefaultQueryMinScore, d, f)
|
||||
if err != nil {
|
||||
t.Fatalf("margin sweep at %.3f: %v", d, err)
|
||||
}
|
||||
fmt.Fprintf(&b, " delta %.3f: answered %d/%d (%.0f%%) false recall %d/%d\n",
|
||||
d, rep.Rank1-rep.Gated, rep.Answerable, 100*rep.Answered(), rep.FalseRecall, rep.NoAnswer)
|
||||
}
|
||||
return b.String()
|
||||
}
|
||||
|
||||
@@ -387,6 +387,32 @@
|
||||
{"id": "n2", "text": "wifi channel is 6", "kind": "note"},
|
||||
{"id": "n3", "text": "the guest network is off", "kind": "note"}
|
||||
]
|
||||
},
|
||||
{
|
||||
"id": "ru-mixed-031",
|
||||
"lang": "ru",
|
||||
"tags": ["mixed", "paraphrase", "hard"],
|
||||
"note": "notes and facts in one store and the note is the answer — the daemon indexes both (Vikunja #373)",
|
||||
"query": "куда я спрятал второй ключ от квартиры",
|
||||
"want": "n1",
|
||||
"notes": [
|
||||
{"id": "n1", "text": "запасной ключ от квартиры лежит в синей коробке на полке", "kind": "note"},
|
||||
{"id": "x1", "text": "поменял замок в двери двадцатого июня", "kind": "fact"},
|
||||
{"id": "x2", "text": "отдал ключ соседке в мае", "kind": "fact"}
|
||||
]
|
||||
},
|
||||
{
|
||||
"id": "ru-mixed-032",
|
||||
"lang": "ru",
|
||||
"tags": ["mixed", "distractor"],
|
||||
"note": "the mirror of ru-mixed-031: the fact answers and the notes are the distractors",
|
||||
"query": "когда я в последний раз заливал бензин",
|
||||
"want": "x1",
|
||||
"notes": [
|
||||
{"id": "x1", "text": "залил полный бак в четверг вечером", "kind": "fact"},
|
||||
{"id": "n1", "text": "на заправке у моста дешевле бензин", "kind": "note"},
|
||||
{"id": "n2", "text": "надо поменять зимние шины", "kind": "note"}
|
||||
]
|
||||
}
|
||||
]
|
||||
}
|
||||
|
||||
@@ -0,0 +1,26 @@
|
||||
package eval
|
||||
|
||||
import "testing"
|
||||
|
||||
func TestAddressTimeWordDoesNotBlind(t *testing.T) {
|
||||
// A nudge that opens with a time word must still be caught. Without the
|
||||
// time words in the stoplist, "сегодня" was read as the third party.
|
||||
for _, s := range []string{
|
||||
"сегодня он не ел 11 дней",
|
||||
"вчера он не пил воду",
|
||||
"опять он забыл про таблетки",
|
||||
} {
|
||||
if r := checkAddress(s); r.Pass {
|
||||
t.Errorf("checkAddress(%q) passed, want a third-person failure", s)
|
||||
}
|
||||
}
|
||||
// Still must not fire when a third party really is named.
|
||||
for _, s := range []string{
|
||||
"сегодня сервис упал, он не отвечает",
|
||||
"ты не пил воду четыре часа",
|
||||
} {
|
||||
if r := checkAddress(s); !r.Pass {
|
||||
t.Errorf("checkAddress(%q) failed: %s", s, r.Detail)
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -17,10 +17,18 @@ const (
|
||||
CheckFeminine = "feminine" // her self-reference is feminine (hard constraint)
|
||||
CheckCringe = "cringe" // DESIGN.md § Non-goals, "not a relationship"
|
||||
CheckOnTopic = "ontopic" // says the thing the rule is about
|
||||
|
||||
// CheckHisGender — the other half of the persona rule: SHE is feminine, HE
|
||||
// is male. "ты давно не отдыхала" addresses the operator as a woman.
|
||||
CheckHisGender = "hisgender"
|
||||
|
||||
// CheckAddress — she talks TO him, informally, one to one. Not "вы", not
|
||||
// "он". See the comment block above checkAddress.
|
||||
CheckAddress = "address"
|
||||
)
|
||||
|
||||
// CheckNames — report order.
|
||||
var CheckNames = []string{CheckMood, CheckLang, CheckLength, CheckFeminine, CheckCringe, CheckOnTopic}
|
||||
var CheckNames = []string{CheckMood, CheckLang, CheckLength, CheckFeminine, CheckHisGender, CheckAddress, CheckCringe, CheckOnTopic}
|
||||
|
||||
// Result — one check on one message.
|
||||
type Result struct {
|
||||
@@ -52,6 +60,8 @@ func RunChecks(c Case, body, mood string) []Result {
|
||||
checkLang(body),
|
||||
checkLength(body),
|
||||
checkFeminine(body),
|
||||
checkHisGender(body),
|
||||
checkAddress(body),
|
||||
checkCringe(body),
|
||||
checkOnTopic(c, body),
|
||||
}
|
||||
@@ -176,6 +186,280 @@ func checkFeminine(body string) Result {
|
||||
return Result{CheckFeminine, true, ""}
|
||||
}
|
||||
|
||||
// --- he is male ----------------------------------------------------------
|
||||
//
|
||||
// The mirror of checkFeminine, and the failure it was written for: the model
|
||||
// wrote "ты давно не отдыхала", which addresses the operator as a woman. That
|
||||
// scored clean, because checkFeminine only ever looks at how SHE speaks about
|
||||
// herself.
|
||||
//
|
||||
// How it works: Russian past tense is gendered by suffix, -л (m) / -ла (f). So
|
||||
// this looks for feminine past-tense words in a sentence that also talks TO him
|
||||
// ("ты", "тебя", "тебе", "твой", …). A feminine verb that belongs to her ("я
|
||||
// заметила", "напомнила тебе") is skipped — that one is correct.
|
||||
//
|
||||
// Honest about the limits: this is a suffix rule, not a parser.
|
||||
// - False positives: a feminine noun can be the subject in the same sentence
|
||||
// ("зарядка была утром, ты её пропустил"). The guard below skips a verb whose
|
||||
// previous word looks like a feminine noun, which helps but will not always
|
||||
// be right.
|
||||
// - False negatives: gender also shows up outside the past tense (short
|
||||
// adjectives, "сама"), and none of that is checked here.
|
||||
//
|
||||
// That is acceptable for an eval check. It is a signal to read the message, not
|
||||
// a grammar verdict, and every hit prints the word it tripped on so a human can
|
||||
// disagree.
|
||||
|
||||
// hisMarkers — words that mean the sentence is addressed to him.
|
||||
var hisMarkers = map[string]bool{
|
||||
"ты": true, "тебя": true, "тебе": true, "тобой": true, "тобою": true,
|
||||
"твой": true, "твоя": true, "твоё": true, "твое": true, "твои": true, "твою": true,
|
||||
}
|
||||
|
||||
// notFeminineVerb — ordinary words ending in "-ла" that are not verbs. Small on
|
||||
// purpose: it only has to cover words a nudge might actually use.
|
||||
//
|
||||
// Words that are both a noun and a verb are deliberately NOT here. "села",
|
||||
// "мыла" and "стекла" are nouns on paper, but in a nudge they are almost always
|
||||
// verbs ("ты села", "ты мыла"), and listing them would make the check miss the
|
||||
// exact thing it is for. Missing a real hit is worse than one false alarm.
|
||||
var notFeminineVerb = map[string]bool{
|
||||
"школа": true, "скала": true, "игла": true, "метла": true, "смола": true,
|
||||
"дела": true, "тела": true, "масла": true, "весла": true,
|
||||
"зола": true, "пчела": true, "числа": true,
|
||||
}
|
||||
|
||||
// femininePast reports whether a word looks like a feminine past-tense verb:
|
||||
// "отдыхала", "поела", "выспалась".
|
||||
func femininePast(w string) bool {
|
||||
if len([]rune(w)) < 3 || notFeminineVerb[w] {
|
||||
return false
|
||||
}
|
||||
return strings.HasSuffix(w, "ла") || strings.HasSuffix(w, "лась")
|
||||
}
|
||||
|
||||
// looksFeminineNoun — a crude guard against "зарядка была": a word right before
|
||||
// the verb that ends in "а"/"я" and is not itself a verb is probably the subject.
|
||||
func looksFeminineNoun(w string) bool {
|
||||
if femininePast(w) || len([]rune(w)) < 3 {
|
||||
return false
|
||||
}
|
||||
return strings.HasSuffix(w, "а") || strings.HasSuffix(w, "я")
|
||||
}
|
||||
|
||||
// sentenceRE splits on sentence-ending punctuation, so a feminine verb in one
|
||||
// sentence is not blamed on a "ты" in the next.
|
||||
var sentenceRE = regexp.MustCompile(`[.!?;…]+`)
|
||||
|
||||
func checkHisGender(body string) Result {
|
||||
for _, sentence := range sentenceRE.Split(strings.ToLower(body), -1) {
|
||||
words := wordRE.FindAllString(sentence, -1)
|
||||
addressed := false
|
||||
for _, w := range words {
|
||||
if hisMarkers[w] {
|
||||
addressed = true
|
||||
}
|
||||
}
|
||||
if !addressed {
|
||||
continue
|
||||
}
|
||||
for i, w := range words {
|
||||
if !femininePast(w) || hersNotHis(words, i) {
|
||||
continue
|
||||
}
|
||||
if i > 0 && looksFeminineNoun(prevWord(words, i)) {
|
||||
continue
|
||||
}
|
||||
return Result{CheckHisGender, false,
|
||||
fmt.Sprintf("feminine %q addressed to him — he is male", w)}
|
||||
}
|
||||
}
|
||||
return Result{CheckHisGender, true, ""}
|
||||
}
|
||||
|
||||
// hersNotHis — the verb is Maven's own if "я" comes shortly before it, or if the
|
||||
// thing she did was done to him ("напомнила тебе", "проверила за тебя").
|
||||
func hersNotHis(words []string, i int) bool {
|
||||
for j := i - 1; j >= 0 && j >= i-3; j-- {
|
||||
if words[j] == "я" {
|
||||
return true
|
||||
}
|
||||
}
|
||||
if i+1 < len(words) {
|
||||
switch words[i+1] {
|
||||
case "тебе", "тебя", "за", "тобой":
|
||||
return true
|
||||
}
|
||||
}
|
||||
return false
|
||||
}
|
||||
|
||||
// prevWord — the word before i, skipping "не" and punctuation, so "не отдыхала"
|
||||
// still sees the subject.
|
||||
func prevWord(words []string, i int) string {
|
||||
for j := i - 1; j >= 0; j-- {
|
||||
w := words[j]
|
||||
if w == "не" || w == "ни" || !unicode.Is(unicode.Cyrillic, []rune(w)[0]) {
|
||||
continue
|
||||
}
|
||||
return w
|
||||
}
|
||||
return ""
|
||||
}
|
||||
|
||||
// --- how she addresses him ------------------------------------------------
|
||||
//
|
||||
// Persona hard constraint: Maven speaks TO him, informally, one to one. The
|
||||
// phrasing eval produced two breaks of it, and both scored clean:
|
||||
//
|
||||
// - "Приходите… Жду вас" — the formal plural. Correct is ты/тебя/тебе and a
|
||||
// singular imperative ("приходи", "жду тебя").
|
||||
// - "Он не ел 11 дней" — she talks ABOUT him, in the third person, as if
|
||||
// reporting to somebody else. Correct is "ты не ел 11 дней".
|
||||
//
|
||||
// Like checkHisGender this is a keyword + suffix heuristic, NOT a parser. Every
|
||||
// hit prints the word it tripped on, so a false alarm is obvious at a glance and
|
||||
// can be dismissed.
|
||||
//
|
||||
// Part 1, formal address. Two signals:
|
||||
// - the "вы" pronoun family, matched as whole words, so there is nothing to
|
||||
// exclude — "вы" and "вас" are never anything else.
|
||||
// - a plural verb ending: -ите/-ете/-йте/-ьте ("приходите", "выпейте",
|
||||
// "не забудьте", "хотите"). Nouns in the prepositional case share those
|
||||
// endings ("в интернете", "в свете"), so a word right after a preposition is
|
||||
// skipped. That is the whole exclusion list, on purpose: a bigger one would
|
||||
// start swallowing real imperatives.
|
||||
//
|
||||
// Part 2, third person. "он" is perfectly fine when the message really is about
|
||||
// somebody or something else ("сервис упал, он не отвечает"). The way to tell
|
||||
// them apart: a legitimate third person has an ANTECEDENT — the thing it refers
|
||||
// to was named earlier in the message. So "он" is only flagged when nothing
|
||||
// before it in the message could be that thing.
|
||||
//
|
||||
// Where this gives up, plainly:
|
||||
// - it only looks BACKWARD. "Он не отвечает, сервис упал" names the subject
|
||||
// after the pronoun and is flagged wrongly.
|
||||
// - any noun earlier in the message counts as an antecedent, even when it is
|
||||
// not one ("после обеда он не ел" reads as legitimate and is missed). The
|
||||
// common time words are stoplisted so the usual nudge opening does not
|
||||
// blind it, but a message with any other noun in front still slips through.
|
||||
// This is the check's real hole; widening it further would start flagging
|
||||
// legitimate third-party messages, so it stops here.
|
||||
// - a message that opens with "ты" and only later slips into "он" is missed,
|
||||
// because "ты" itself is skipped but the words around it are not.
|
||||
// - formal address outside these endings (short adjectives, "вашими" style
|
||||
// forms not listed) is missed.
|
||||
|
||||
// addressWordRE also takes Latin words, because "him"/"he" is the same break in
|
||||
// English.
|
||||
var addressWordRE = regexp.MustCompile(`[\p{Cyrillic}]+|[a-zA-Z]+|[,.;:!?…—-]`)
|
||||
|
||||
// formalPronouns — the "вы" family. Whole-word match, so no false hits.
|
||||
var formalPronouns = map[string]bool{
|
||||
"вы": true, "вас": true, "вам": true, "вами": true,
|
||||
"ваш": true, "ваша": true, "ваше": true, "ваши": true,
|
||||
"вашего": true, "вашей": true, "вашему": true, "вашим": true,
|
||||
"вашими": true, "вашу": true,
|
||||
}
|
||||
|
||||
// prepositions — used twice: to skip prepositional-case nouns that look like
|
||||
// plural verbs, and as words that cannot be what "он" refers to.
|
||||
var prepositions = map[string]bool{
|
||||
"в": true, "во": true, "на": true, "о": true, "об": true, "обо": true,
|
||||
"при": true, "по": true, "за": true, "из": true, "с": true, "со": true,
|
||||
"к": true, "ко": true, "до": true, "от": true, "у": true, "над": true,
|
||||
"под": true, "про": true, "без": true, "для": true, "через": true,
|
||||
}
|
||||
|
||||
// pluralVerb reports whether a word looks like a plural/formal verb form:
|
||||
// "приходите", "выпейте", "забудьте", "хотите".
|
||||
func pluralVerb(w string) bool {
|
||||
if len([]rune(w)) < 5 {
|
||||
return false
|
||||
}
|
||||
return strings.HasSuffix(w, "ите") || strings.HasSuffix(w, "ете") ||
|
||||
strings.HasSuffix(w, "йте") || strings.HasSuffix(w, "ьте")
|
||||
}
|
||||
|
||||
// thirdPersonHim — pronouns that would be talking about him instead of to him.
|
||||
var thirdPersonHim = map[string]bool{
|
||||
"он": true, "его": true, "ему": true, "него": true, "нему": true, "ним": true,
|
||||
"he": true, "him": true, "his": true,
|
||||
}
|
||||
|
||||
// notAnAntecedent — words that cannot be the thing "он" refers to: pronouns,
|
||||
// particles, conjunctions, adverbs of time. If only these come before "он", the
|
||||
// message never named a third party and "он" is him.
|
||||
var notAnAntecedent = map[string]bool{
|
||||
"не": true, "ни": true, "и": true, "а": true, "но": true, "да": true,
|
||||
"же": true, "бы": true, "ли": true, "вот": true, "уже": true,
|
||||
"ещё": true, "еще": true, "тоже": true, "там": true, "тут": true,
|
||||
"здесь": true, "это": true, "что": true, "как": true, "когда": true,
|
||||
"чтобы": true, "потому": true, "сейчас": true, "потом": true,
|
||||
// Time words. A nudge almost always opens with one ("сегодня он не ел"),
|
||||
// and without them the very next word is read as the person being talked
|
||||
// about, so the check misses the exact break it was written for.
|
||||
"сегодня": true, "вчера": true, "завтра": true, "послезавтра": true,
|
||||
"утром": true, "днём": true, "днем": true, "вечером": true, "ночью": true,
|
||||
"опять": true, "снова": true, "весь": true, "всю": true, "целый": true,
|
||||
"я": true, "мне": true, "меня": true, "мной": true, "мы": true, "нас": true,
|
||||
"ты": true, "тебя": true, "тебе": true, "тобой": true,
|
||||
"твой": true, "твоя": true, "твоё": true, "твое": true, "твои": true, "твою": true,
|
||||
}
|
||||
|
||||
// looksPastVerb — a past-tense verb needs a subject of its own, so it is not an
|
||||
// antecedent either. Keeps "сервис упал, он не отвечает" working off "сервис".
|
||||
func looksPastVerb(w string) bool {
|
||||
if len([]rune(w)) < 3 {
|
||||
return false
|
||||
}
|
||||
return strings.HasSuffix(w, "л") || strings.HasSuffix(w, "ла") ||
|
||||
strings.HasSuffix(w, "ло") || strings.HasSuffix(w, "ли")
|
||||
}
|
||||
|
||||
func checkAddress(body string) Result {
|
||||
words := addressWordRE.FindAllString(strings.ToLower(body), -1)
|
||||
|
||||
for i, w := range words {
|
||||
if formalPronouns[w] {
|
||||
return Result{CheckAddress, false,
|
||||
fmt.Sprintf("formal %q — she says ты/тебя/тебе", w)}
|
||||
}
|
||||
if pluralVerb(w) && !(i > 0 && prepositions[words[i-1]]) {
|
||||
return Result{CheckAddress, false,
|
||||
fmt.Sprintf("plural imperative %q — she uses the singular", w)}
|
||||
}
|
||||
}
|
||||
|
||||
for i, w := range words {
|
||||
if !thirdPersonHim[w] {
|
||||
continue
|
||||
}
|
||||
named := false
|
||||
for j := 0; j < i; j++ {
|
||||
p := words[j]
|
||||
if !unicode.Is(unicode.Cyrillic, []rune(p)[0]) && !isLatinWord(p) {
|
||||
continue // punctuation
|
||||
}
|
||||
if notAnAntecedent[p] || prepositions[p] || thirdPersonHim[p] || looksPastVerb(p) {
|
||||
continue
|
||||
}
|
||||
named = true
|
||||
break
|
||||
}
|
||||
if !named {
|
||||
return Result{CheckAddress, false,
|
||||
fmt.Sprintf("third person %q with nobody else named — she talks to him, not about him", w)}
|
||||
}
|
||||
}
|
||||
return Result{CheckAddress, true, ""}
|
||||
}
|
||||
|
||||
func isLatinWord(w string) bool {
|
||||
r := []rune(w)[0]
|
||||
return (r >= 'a' && r <= 'z') || (r >= 'A' && r <= 'Z')
|
||||
}
|
||||
|
||||
// --- the cringe checks ---------------------------------------------------
|
||||
//
|
||||
// "Think Jarvis without the cringe part". DESIGN.md § Non-goals: "Not a
|
||||
|
||||
@@ -281,7 +281,7 @@ func (r Report) String() string {
|
||||
fmt.Fprintf(&b, "%s: %d/%d cases pass every check (%.1f%%), %d errors\n",
|
||||
r.Name, r.Passed, r.Total, 100*r.Accuracy(), r.Errors)
|
||||
for _, name := range CheckNames {
|
||||
fmt.Fprintf(&b, " %-9s %d/%d\n", name, r.ByCheck[name], r.Total)
|
||||
fmt.Fprintf(&b, " %-10s %d/%d\n", name, r.ByCheck[name], r.Total)
|
||||
}
|
||||
fmt.Fprintf(&b, " latency: p50 %s p95 %s max %s\n", r.P50, r.P95, r.Max)
|
||||
fmt.Fprintf(&b, " by rule: %s\n", renderStats(r.ByRule))
|
||||
|
||||
@@ -72,10 +72,12 @@ func TestStubBaseline(t *testing.T) {
|
||||
// ceiling ("you've been at your desk for 4 hours without a break — step
|
||||
// away for a bit." is 76 chars but 16 words). Left failing rather than
|
||||
// raising the ceiling to hide it.
|
||||
CheckLength: 12,
|
||||
CheckFeminine: 15,
|
||||
CheckCringe: 15,
|
||||
CheckOnTopic: 12,
|
||||
CheckLength: 12,
|
||||
CheckFeminine: 15,
|
||||
CheckHisGender: 15,
|
||||
CheckAddress: 15,
|
||||
CheckCringe: 15,
|
||||
CheckOnTopic: 12,
|
||||
}
|
||||
for name, floor := range floors {
|
||||
if rep.ByCheck[name] < floor {
|
||||
@@ -104,6 +106,14 @@ func TestChecksCatchWhatTheyClaim(t *testing.T) {
|
||||
{"masculine predicative", "я должен сказать: попей воды.", CheckFeminine},
|
||||
// The other direction: HE is male, so second-person masculine is right.
|
||||
{"second person masculine ok", "ты не пил воду четыре часа.", ""},
|
||||
// The real observed failure: she addressed him as a woman.
|
||||
{"feminine second person", "ты давно не отдыхала — попей воды.", CheckHisGender},
|
||||
{"feminine second person no dash", "ты пила воду четыре часа назад.", CheckHisGender},
|
||||
// Her own feminine verb next to "ты" is correct and must not be flagged.
|
||||
{"her feminine verb near ты", "я заметила, что ты не пил воду.", ""},
|
||||
{"her feminine verb about him", "напомнила тебе про воду.", ""},
|
||||
// A feminine noun subject in the same sentence is not him.
|
||||
{"feminine noun subject ok", "зарядка была утром, ты её пропустил, попей воды.", ""},
|
||||
{"feminine self ok", "я заметила: воды не было четыре часа.", ""},
|
||||
{"pet name", "милый, попей воды.", CheckCringe},
|
||||
{"emoji", "попей воды 💧", CheckCringe},
|
||||
@@ -114,6 +124,10 @@ func TestChecksCatchWhatTheyClaim(t *testing.T) {
|
||||
{"asks how he feels", "как ты себя чувствуешь? попей воды.", CheckCringe},
|
||||
{"praise", "молодец! теперь попей воды.", CheckCringe},
|
||||
{"off topic", "пора бы уже что-то сделать.", CheckOnTopic},
|
||||
// The two recorded persona breaks from the phrasing eval run. Pinned as
|
||||
// unit tests because an eval run is sampled and may not reproduce them.
|
||||
{"formal plural", "Приходите… Жду вас", CheckAddress},
|
||||
{"third person about him", "Он не ел 11 дней", CheckAddress},
|
||||
}
|
||||
|
||||
for _, tc := range cases {
|
||||
@@ -135,6 +149,36 @@ func TestChecksCatchWhatTheyClaim(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
// TestAddressCheck — the address check on its own, so the messages that must NOT
|
||||
// trip it can be written without also having to satisfy the on-topic check.
|
||||
func TestAddressCheck(t *testing.T) {
|
||||
bad := []string{
|
||||
"Приходите… Жду вас", // the recorded formal-plural break
|
||||
"Он не ел 11 дней", // the recorded third-person break
|
||||
"Выпейте воды, пожалуйста.", // plural imperative on its own
|
||||
"Ваш обед был давно.", // formal possessive
|
||||
}
|
||||
for _, body := range bad {
|
||||
if r := checkAddress(body); r.Pass {
|
||||
t.Errorf("persona break not caught: %q", body)
|
||||
} else {
|
||||
t.Logf("%q -> %s", body, r.Detail)
|
||||
}
|
||||
}
|
||||
|
||||
good := []string{
|
||||
"ты не пил воду четыре часа — попей.", // correct informal address
|
||||
"сервис netdata упал, он не отвечает.", // legitimately about a third party
|
||||
"я заметила, что зарядка была утром.", // no address at all
|
||||
"в интернете опять тихо, всё работает.", // "интернете" is a noun, not an imperative
|
||||
}
|
||||
for _, body := range good {
|
||||
if r := checkAddress(body); !r.Pass {
|
||||
t.Errorf("clean message flagged: %q -> %s", body, r.Detail)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
func TestMoodCheckUsesTheEnum(t *testing.T) {
|
||||
if r := checkMood("cheerful"); r.Pass {
|
||||
t.Error("mood outside the enum passed")
|
||||
|
||||
+136
-13
@@ -184,7 +184,10 @@ func (p *LLMPhraser) PhraseNudge(ctx context.Context, c loop.Candidate) (deliver
|
||||
body, _ = parsePhrase(resp)
|
||||
}
|
||||
if body == "" {
|
||||
body = fmt.Sprintf("%s — %s", c.Rule.Name, sevLabel(c.Severity))
|
||||
// The model said nothing usable. Say it in Russian anyway — this text
|
||||
// goes straight to a Russian piper voice, so the old "water — care"
|
||||
// fallback was unspeakable.
|
||||
body = fallbackNudge(c)
|
||||
}
|
||||
if mood == "" {
|
||||
mood = "neutral"
|
||||
@@ -428,8 +431,33 @@ func (p *LLMPhraser) chatWithSystem(ctx context.Context, system, user string, ma
|
||||
return stripThink(content), nil
|
||||
}
|
||||
|
||||
// nudgeSystem — the phrasing contract for nudges.
|
||||
//
|
||||
// Written as filled-in examples, not as a schema with "..." in it. A 0.8B
|
||||
// copies whatever sits in the response slot, so a literal placeholder there
|
||||
// teaches it to answer with the placeholder. Measured: 7/15 nudges came back
|
||||
// as "..." before this. See PHRASING-EVAL-31-07-2026.md.
|
||||
//
|
||||
// Russian only, feminine self-reference, second person masculine (the owner is
|
||||
// a man). One short sentence — the nudge is spoken aloud.
|
||||
const nudgeSystem = `Ты — Maven, домашняя ассистентка. О себе говоришь в женском роде ("я проверила", "я записала"). Владелец — мужчина, обращайся к нему в мужском роде ("ты пил", "ты забыл").
|
||||
|
||||
Пиши ОДНО короткое напоминание по-русски: не больше 120 символов и не больше 16 слов. Только по делу.
|
||||
|
||||
Запрещено: обращения ("дорогой", "милый"), эмодзи, извинения ("прости", "извини"), вопросы о самочувствии, похвала, больше одного восклицательного знака, английские слова кроме имён сервисов.
|
||||
|
||||
Отвечай ТОЛЬКО одним объектом JSON с полями "response" и "mood".
|
||||
"response" — сам текст напоминания.
|
||||
"mood" — ровно одно из: neutral, happy, thinking, tired, confused.
|
||||
|
||||
Так выглядит правильный ответ по форме. Темы здесь посторонние — их в запросе не будет:
|
||||
{"response": "Стиральная машина закончила. Развесь бельё.", "mood": "neutral"}
|
||||
{"response": "Ноутбук на трёх процентах. Я поставила его на зарядку.", "mood": "confused"}
|
||||
|
||||
Это примеры ФОРМЫ, а не темы. Пиши только про ту ситуацию, которую тебе дали в запросе. Не копируй примеры и никогда не пиши "..." в поле response.`
|
||||
|
||||
func (p *LLMPhraser) systemPrompt() string {
|
||||
base := `You are maven, a self-hosted personal assistant. Generate brief, natural nudge messages in the user's language (Russian or English). Respond ONLY with valid JSON: {"response": "full voice message", "mood": "neutral"}. "response" is what the user hears; "mood" reflects maven's tone (neutral/happy/thinking/tired/confused).`
|
||||
base := nudgeSystem
|
||||
if p.cfg.Persona != "" {
|
||||
base = p.cfg.Persona + "\n\n" + base
|
||||
}
|
||||
@@ -446,22 +474,117 @@ func (p *LLMPhraser) querySystemPrompt() string {
|
||||
return base
|
||||
}
|
||||
|
||||
// ruleTopics — Russian gloss for each built-in rule name. The rule names are
|
||||
// English identifiers; a 0.8B asked to nudge about "netdata_critical" writes
|
||||
// about nothing. The daemon knows what its own rules mean, so it says so.
|
||||
var ruleTopics = map[string]string{
|
||||
"water": "он давно не пил воду",
|
||||
"meal": "он давно не ел",
|
||||
"break": "он давно без перерыва, пора встать и размяться",
|
||||
"service_down": "сервис не отвечает, лежит",
|
||||
"netdata_critical": "критический алярм в netdata, проблема с диском или местом",
|
||||
}
|
||||
|
||||
// ruleKeywords — the word the message must contain. The 0.8B drifts to
|
||||
// whatever topic it saw last unless the required word is named outright.
|
||||
var ruleKeywords = map[string]string{
|
||||
"water": "воду",
|
||||
"meal": "поешь",
|
||||
"break": "перерыв",
|
||||
"service_down": "сервис",
|
||||
"netdata_critical": "диск",
|
||||
}
|
||||
|
||||
// ruleTopic turns a rule name into a Russian description of the situation.
|
||||
// "routine:зарядка" and "morning:утро" carry their own Russian suffix.
|
||||
func ruleTopic(rule string) string {
|
||||
if t, ok := ruleTopics[rule]; ok {
|
||||
return t
|
||||
}
|
||||
if i := strings.IndexByte(rule, ':'); i > 0 && i+1 < len(rule) {
|
||||
switch rule[:i] {
|
||||
case "morning":
|
||||
return "утро, пора начать день: " + rule[i+1:]
|
||||
default:
|
||||
return "пора сделать по распорядку: " + rule[i+1:]
|
||||
}
|
||||
}
|
||||
return rule
|
||||
}
|
||||
|
||||
// ruleKeyword — the word the nudge must contain, or "" when the rule name's
|
||||
// own Russian suffix already is that word.
|
||||
func ruleKeyword(rule string) string {
|
||||
if k, ok := ruleKeywords[rule]; ok {
|
||||
return k
|
||||
}
|
||||
if i := strings.IndexByte(rule, ':'); i > 0 && i+1 < len(rule) {
|
||||
return rule[i+1:]
|
||||
}
|
||||
return ""
|
||||
}
|
||||
|
||||
// ruDur — duration in Russian. humanDur is English and its output was landing
|
||||
// verbatim in the message.
|
||||
func ruDur(d time.Duration) string {
|
||||
if d < 0 {
|
||||
d = 0
|
||||
}
|
||||
h, m := int(d.Hours()), int(d.Minutes())%60
|
||||
switch {
|
||||
case h >= 2:
|
||||
return fmt.Sprintf("%d ч", h)
|
||||
case h == 1 && m >= 30:
|
||||
return "полтора часа"
|
||||
case h == 1:
|
||||
return "час"
|
||||
default:
|
||||
return fmt.Sprintf("%d мин", m)
|
||||
}
|
||||
}
|
||||
|
||||
// fallbackNudge — plain Russian for when the model returns nothing parseable.
|
||||
var fallbackNudges = map[string]string{
|
||||
"water": "Ты давно не пил воду.",
|
||||
"meal": "Ты давно не ел, поешь.",
|
||||
"break": "Пора сделать перерыв.",
|
||||
"service_down": "Сервис не отвечает.",
|
||||
"netdata_critical": "Критический алярм: проверь диск.",
|
||||
}
|
||||
|
||||
func fallbackNudge(c loop.Candidate) string {
|
||||
if s, ok := fallbackNudges[c.Rule.Name]; ok {
|
||||
return s
|
||||
}
|
||||
if kw := ruleKeyword(c.Rule.Name); kw != "" {
|
||||
return "Напоминаю: " + kw + "."
|
||||
}
|
||||
return "Напоминаю о деле."
|
||||
}
|
||||
|
||||
func buildNudgePrompt(c loop.Candidate) string {
|
||||
var ctxParts []string
|
||||
ctxParts = append(ctxParts, fmt.Sprintf("Rule: %s", c.Rule.Name))
|
||||
ctxParts = append(ctxParts, fmt.Sprintf("Severity: %s", sevLabel(c.Severity)))
|
||||
|
||||
ctxParts = append(ctxParts, "Ситуация: "+ruleTopic(c.Rule.Name))
|
||||
if f, ok := c.State.Facts[c.Rule.Name]; ok && f.Key != "" && f.Key != c.Rule.Name {
|
||||
ctxParts = append(ctxParts, "Что именно: "+f.Key)
|
||||
}
|
||||
if d, ok := c.State.Since(c.Rule.Name); ok {
|
||||
ctxParts = append(ctxParts, fmt.Sprintf("Duration since last event: %s", humanDur(d)))
|
||||
ctxParts = append(ctxParts, "Прошло: "+ruDur(d))
|
||||
}
|
||||
switch sevLabel(c.Severity) {
|
||||
case "alarm":
|
||||
ctxParts = append(ctxParts, "Срочно, скажи прямо.")
|
||||
case "ops":
|
||||
ctxParts = append(ctxParts, "Это про сервер, не про здоровье.")
|
||||
}
|
||||
tail := "Напиши напоминание про эту ситуацию. Одно предложение, по-русски, в JSON."
|
||||
if kw := ruleKeyword(c.Rule.Name); kw != "" {
|
||||
// Last line on purpose: a 0.8B weights the end of the prompt hardest,
|
||||
// and without the required word it drifts back to the examples.
|
||||
tail += " Ответ ДОЛЖЕН содержать слово «" + kw + "»."
|
||||
}
|
||||
|
||||
return fmt.Sprintf(
|
||||
`Generate a nudge message. Context:
|
||||
%s
|
||||
|
||||
Respond as JSON: {"response": "...", "mood": "..."}`,
|
||||
strings.Join(ctxParts, "\n"),
|
||||
)
|
||||
return strings.Join(ctxParts, "\n") + "\n\n" + tail
|
||||
}
|
||||
|
||||
type responseMood struct {
|
||||
|
||||
@@ -2,6 +2,7 @@ package router
|
||||
|
||||
import (
|
||||
"context"
|
||||
"fmt"
|
||||
"math"
|
||||
"unicode"
|
||||
)
|
||||
@@ -19,6 +20,55 @@ type Embedder interface {
|
||||
Close() error
|
||||
}
|
||||
|
||||
// IdentifiedEmbedder — an embedder that can name itself. The name goes into
|
||||
// the DB next to the vectors it wrote, so a later model swap is caught instead
|
||||
// of silently returning nonsense scores (Vikunja #378).
|
||||
type IdentifiedEmbedder interface {
|
||||
Embedder
|
||||
ID() string
|
||||
}
|
||||
|
||||
// EmbedderID is the stable string stored alongside the vectors. It comes from
|
||||
// the embedder itself — nobody hand-types a model name twice — and changes
|
||||
// whenever the model or its dimension changes.
|
||||
func EmbedderID(e Embedder) string {
|
||||
if i, ok := e.(IdentifiedEmbedder); ok {
|
||||
return i.ID()
|
||||
}
|
||||
return fmt.Sprintf("unknown@%d", e.Dim())
|
||||
}
|
||||
|
||||
// AsymmetricEmbedder — an embedder that wants to know whether a text is a
|
||||
// search query or a stored passage. Recall is asymmetric: a short question
|
||||
// goes in, a longer note comes out. The e5 family is trained for exactly that
|
||||
// and needs the side written into the text ("query: " / "passage: ").
|
||||
//
|
||||
// Optional on purpose: HashEmbedder has no such notion, so callers go through
|
||||
// EmbedQuery and EmbedPassage below, which fall back to plain Embed.
|
||||
type AsymmetricEmbedder interface {
|
||||
Embedder
|
||||
EmbedQuery(ctx context.Context, text string) ([]float32, error)
|
||||
EmbedPassage(ctx context.Context, text string) ([]float32, error)
|
||||
}
|
||||
|
||||
// EmbedQuery embeds text that is being searched WITH — a question.
|
||||
func EmbedQuery(ctx context.Context, e Embedder, text string) ([]float32, error) {
|
||||
if a, ok := e.(AsymmetricEmbedder); ok {
|
||||
return a.EmbedQuery(ctx, text)
|
||||
}
|
||||
return e.Embed(ctx, text)
|
||||
}
|
||||
|
||||
// EmbedPassage embeds text that is being searched FOR — a note or a fact on
|
||||
// its way into the store. Store and lookup must use these two calls, not one
|
||||
// of them twice, or the asymmetry buys nothing.
|
||||
func EmbedPassage(ctx context.Context, e Embedder, text string) ([]float32, error) {
|
||||
if a, ok := e.(AsymmetricEmbedder); ok {
|
||||
return a.EmbedPassage(ctx, text)
|
||||
}
|
||||
return e.Embed(ctx, text)
|
||||
}
|
||||
|
||||
// HashEmbedder — a deterministic bag-of-words embedder used for tests and as a
|
||||
// non-zero default floor. NOT semantically meaningful across languages; the
|
||||
// real classifier swaps in the multilingual ONNX model wholesale.
|
||||
@@ -39,6 +89,10 @@ func NewHashEmbedder(dim int) *HashEmbedder {
|
||||
|
||||
func (h *HashEmbedder) Dim() int { return h.dim }
|
||||
|
||||
// ID names this embedder for the DB marker. The dimension is part of it
|
||||
// because a HashEmbedder of another width is a different vector space.
|
||||
func (h *HashEmbedder) ID() string { return fmt.Sprintf("hash@%d", h.dim) }
|
||||
|
||||
func (h *HashEmbedder) Close() error { return nil }
|
||||
|
||||
func (h *HashEmbedder) Embed(_ context.Context, text string) ([]float32, error) {
|
||||
|
||||
@@ -37,3 +37,60 @@ func TestHashEmbedderCyrillic(t *testing.T) {
|
||||
t.Fatalf("cosine(shared)=%.3f not > cosine(disjoint)=%.3f", cosine(a, b), cosine(a, c))
|
||||
}
|
||||
}
|
||||
|
||||
// recordingEmbedder â an asymmetric embedder that only remembers which side
|
||||
// was asked for. Enough to pin the dispatch; real vectors need the model.
|
||||
type recordingEmbedder struct{ calls []string }
|
||||
|
||||
func (r *recordingEmbedder) Dim() int { return 2 }
|
||||
func (r *recordingEmbedder) Close() error { return nil }
|
||||
|
||||
func (r *recordingEmbedder) Embed(_ context.Context, _ string) ([]float32, error) {
|
||||
r.calls = append(r.calls, "embed")
|
||||
return []float32{1, 0}, nil
|
||||
}
|
||||
|
||||
func (r *recordingEmbedder) EmbedQuery(_ context.Context, _ string) ([]float32, error) {
|
||||
r.calls = append(r.calls, "query")
|
||||
return []float32{1, 0}, nil
|
||||
}
|
||||
|
||||
func (r *recordingEmbedder) EmbedPassage(_ context.Context, _ string) ([]float32, error) {
|
||||
r.calls = append(r.calls, "passage")
|
||||
return []float32{0, 1}, nil
|
||||
}
|
||||
|
||||
// TestEmbedQueryAndPassageSplit â a question and a stored note must not take
|
||||
// the same path. If both ended up on the same call the asymmetric model buys
|
||||
// nothing, which is the whole reason for the swap.
|
||||
func TestEmbedQueryAndPassageSplit(t *testing.T) {
|
||||
rec := &recordingEmbedder{}
|
||||
if _, err := EmbedQuery(context.Background(), rec, "где логи?"); err != nil {
|
||||
t.Fatalf("EmbedQuery: %v", err)
|
||||
}
|
||||
if _, err := EmbedPassage(context.Background(), rec, "логи в /var/log"); err != nil {
|
||||
t.Fatalf("EmbedPassage: %v", err)
|
||||
}
|
||||
if len(rec.calls) != 2 || rec.calls[0] != "query" || rec.calls[1] != "passage" {
|
||||
t.Errorf("calls %v, want [query passage]", rec.calls)
|
||||
}
|
||||
}
|
||||
|
||||
// TestEmbedFallsBackToPlainEmbed â HashEmbedder has no sides, so both helpers
|
||||
// must still work and give the same vector.
|
||||
func TestEmbedFallsBackToPlainEmbed(t *testing.T) {
|
||||
h := NewHashEmbedder(64)
|
||||
q, err := EmbedQuery(context.Background(), h, "text")
|
||||
if err != nil {
|
||||
t.Fatalf("EmbedQuery: %v", err)
|
||||
}
|
||||
p, err := EmbedPassage(context.Background(), h, "text")
|
||||
if err != nil {
|
||||
t.Fatalf("EmbedPassage: %v", err)
|
||||
}
|
||||
for i := range q {
|
||||
if q[i] != p[i] {
|
||||
t.Fatalf("hash embedder gave two different vectors for the same text")
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -0,0 +1,24 @@
|
||||
package router
|
||||
|
||||
import "testing"
|
||||
|
||||
func TestEmbedderIDFromModelPath(t *testing.T) {
|
||||
got := modelIDFromPath("/opt/maven/models/embedder/multilingual-e5-small.onnx")
|
||||
if got != "multilingual-e5-small@384" {
|
||||
t.Fatalf("modelIDFromPath = %q", got)
|
||||
}
|
||||
// A different model file must produce a different id, even at 384 dim.
|
||||
old := modelIDFromPath("/opt/maven/models/embedder/paraphrase-multilingual-MiniLM-L12-v2.onnx")
|
||||
if old == got {
|
||||
t.Fatal("two different models share one id")
|
||||
}
|
||||
}
|
||||
|
||||
func TestEmbedderIDIncludesDim(t *testing.T) {
|
||||
if id := EmbedderID(NewHashEmbedder(1024)); id != "hash@1024" {
|
||||
t.Fatalf("EmbedderID = %q", id)
|
||||
}
|
||||
if EmbedderID(NewHashEmbedder(1024)) == EmbedderID(NewHashEmbedder(384)) {
|
||||
t.Fatal("dimension not part of the id")
|
||||
}
|
||||
}
|
||||
@@ -185,8 +185,8 @@ func TestONNXBaseline(t *testing.T) {
|
||||
if lib == "" {
|
||||
t.Skip("MAVEN_ONNX_LIB unset — see AGENTS.md § Embedder model for intent routing")
|
||||
}
|
||||
model := filepath.Join("../../..", "models/embedder/model.onnx")
|
||||
tok := filepath.Join("../../..", "models/embedder/tokenizer.json")
|
||||
model := filepath.Join("../../..", "models/embedder/multilingual-e5-small/model_quantized.onnx")
|
||||
tok := filepath.Join("../../..", "models/embedder/multilingual-e5-small/tokenizer.json")
|
||||
for _, p := range []string{lib, model, tok} {
|
||||
if _, err := os.Stat(p); err != nil {
|
||||
t.Skipf("missing %s: %v", p, err)
|
||||
|
||||
@@ -1,11 +1,8 @@
|
||||
package eval
|
||||
|
||||
import (
|
||||
"bytes"
|
||||
"context"
|
||||
"encoding/json"
|
||||
"fmt"
|
||||
"net/http"
|
||||
"os"
|
||||
"strings"
|
||||
"testing"
|
||||
@@ -29,13 +26,20 @@ import (
|
||||
// a bake-off across checkpoints (#278, #250) produces tables you can tell
|
||||
// apart. Point the variable at one server at a time.
|
||||
//
|
||||
// Three configurations, because "the LLM router" is ambiguous and the three
|
||||
// numbers answer different questions:
|
||||
// Two configurations, because "the LLM router" is ambiguous and the two numbers
|
||||
// answer different questions:
|
||||
//
|
||||
// llm-only — the model alone. Measures the prompt + grammar contract.
|
||||
// cascade+llm — what #320 would actually ship: stage-0 grammar, then the
|
||||
// model, then the classifier as the failure floor.
|
||||
// llm-no-thinking — diagnostic only, not a shippable path (see below).
|
||||
// llm-only — the model alone. Measures the prompt + grammar contract.
|
||||
// cascade+llm — what #320 would actually ship: stage-0 grammar, then the
|
||||
// model, then the classifier as the failure floor.
|
||||
//
|
||||
// There used to be a third, "thinking off", which looked 6 points better. It is
|
||||
// gone: it was measured with a hand-rolled HTTP client that quietly dropped
|
||||
// repeat_penalty, so the gap was the missing penalty and not the thinking mode.
|
||||
// Re-measured with everything else held equal, thinking off scores exactly the
|
||||
// same, case for case — and a direct probe shows this llama-server build ignores
|
||||
// enable_thinking / reasoning_budget for this model anyway, so there was nothing
|
||||
// to turn off. Full write-up in ROUTING-EVAL-31-07-2026.md (Vikunja #376).
|
||||
func TestLLMRouterBaseline(t *testing.T) {
|
||||
base := os.Getenv("MAVEN_LLM_URL")
|
||||
if base == "" {
|
||||
@@ -96,104 +100,18 @@ func TestLLMRouterBaseline(t *testing.T) {
|
||||
}
|
||||
t.Log("\n" + repCascade.String() + repCascade.Failures())
|
||||
|
||||
// llm-no-thinking: same prompt and grammar with the chat template's
|
||||
// thinking mode off. Qwen3.5's template defaults thinking=1, so under a
|
||||
// grammar the constrained JSON lands in reasoning_content with content
|
||||
// empty — llm.Client's ReasoningContent fallback is what makes the router
|
||||
// work at all today, by accident rather than design.
|
||||
//
|
||||
// MEASURED 2026-07-31: this variant scores identically to as-deployed
|
||||
// (18/76, 48.7% intent-only, 2 errors, same p50). Thinking mode is a
|
||||
// non-issue under a grammar — llama.cpp constrains the same token stream
|
||||
// either way. Kept so the question stays answered instead of being
|
||||
// re-asked, and so internal/llm does NOT grow a chat_template_kwargs field
|
||||
// for a problem that does not exist.
|
||||
repNoThink, err := Score(ctx, "llm-only ("+model+", thinking off) [diagnostic]",
|
||||
RouterFunc(func(ctx context.Context, u string, now time.Time) (router.Decision, error) {
|
||||
d, ok, err := router.NewLLMRouter(&noThinkCompleter{base: base, http: &http.Client{Timeout: 60 * time.Second}}).Route(ctx, u, now)
|
||||
if err != nil {
|
||||
return d, err
|
||||
}
|
||||
if !ok {
|
||||
return d, fmt.Errorf("llm router declined without an error")
|
||||
}
|
||||
return d, nil
|
||||
}), f)
|
||||
if err != nil {
|
||||
t.Fatalf("Score no-thinking: %v", err)
|
||||
}
|
||||
t.Log("\n" + repNoThink.String() + repNoThink.Failures())
|
||||
|
||||
// Reports rather than asserts — the numbers are inputs to the #320
|
||||
// decision, and an assertion here would be this test inventing the bar.
|
||||
// The one thing worth failing on is a harness fault: if every single case
|
||||
// errors, the run measured infrastructure, not routing, and the report
|
||||
// must not be mistaken for a score.
|
||||
for _, rep := range []Report{repLLM, repCascade, repNoThink} {
|
||||
for _, rep := range []Report{repLLM, repCascade} {
|
||||
if rep.Errors == rep.Total {
|
||||
t.Errorf("%s: all %d cases errored — harness fault, not a measurement", rep.Name, rep.Total)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// noThinkCompleter — llm.Client with chat_template_kwargs.enable_thinking
|
||||
// false. A test-local copy rather than a change to internal/llm: whether the
|
||||
// daemon should send it is the open question, and answering it here by adding
|
||||
// the field would prejudge #320.
|
||||
type noThinkCompleter struct {
|
||||
base string
|
||||
http *http.Client
|
||||
}
|
||||
|
||||
func (c *noThinkCompleter) Complete(ctx context.Context, r llm.Req) (string, error) {
|
||||
payload := map[string]any{
|
||||
"messages": []map[string]string{
|
||||
{"role": "system", "content": r.System},
|
||||
{"role": "user", "content": r.User},
|
||||
},
|
||||
"max_tokens": r.MaxTokens,
|
||||
"temperature": 0,
|
||||
"grammar": r.Grammar,
|
||||
"chat_template_kwargs": map[string]any{"enable_thinking": false},
|
||||
}
|
||||
b, err := json.Marshal(payload)
|
||||
if err != nil {
|
||||
return "", err
|
||||
}
|
||||
req, err := http.NewRequestWithContext(ctx, "POST", c.base+"/v1/chat/completions", bytes.NewReader(b))
|
||||
if err != nil {
|
||||
return "", err
|
||||
}
|
||||
req.Header.Set("Content-Type", "application/json")
|
||||
resp, err := c.http.Do(req)
|
||||
if err != nil {
|
||||
return "", err
|
||||
}
|
||||
defer resp.Body.Close()
|
||||
if resp.StatusCode != 200 {
|
||||
return "", fmt.Errorf("status %d", resp.StatusCode)
|
||||
}
|
||||
var out struct {
|
||||
Choices []struct {
|
||||
Message struct {
|
||||
Content string `json:"content"`
|
||||
ReasoningContent string `json:"reasoning_content"`
|
||||
} `json:"message"`
|
||||
} `json:"choices"`
|
||||
}
|
||||
if err := json.NewDecoder(resp.Body).Decode(&out); err != nil {
|
||||
return "", err
|
||||
}
|
||||
if len(out.Choices) == 0 {
|
||||
return "", fmt.Errorf("no choices")
|
||||
}
|
||||
m := out.Choices[0].Message
|
||||
if m.Content != "" {
|
||||
return m.Content, nil
|
||||
}
|
||||
return m.ReasoningContent, nil
|
||||
}
|
||||
|
||||
func ping(ctx context.Context, c *llm.Client) error {
|
||||
ctx, cancel := context.WithTimeout(ctx, 90*time.Second)
|
||||
defer cancel()
|
||||
|
||||
@@ -22,6 +22,7 @@
|
||||
{ "id": "ru-query-011", "utterance": "почему сервер тормозит", "lang": "ru", "intent": "query", "tags": ["homelab", "hard"], "note": "diagnostic question, not a chat opener" },
|
||||
{ "id": "ru-query-012", "utterance": "какие заметки я оставил про полив", "lang": "ru", "intent": "query", "tags": ["recall"] },
|
||||
{ "id": "ru-query-013", "utterance": "во сколько у меня встреча", "lang": "ru", "intent": "query", "tags": ["calendar"] },
|
||||
{ "id": "ru-query-019", "utterance": "что у меня стоит в календаре на послезавтра", "lang": "ru", "intent": "query", "tags": ["calendar", "hard"], "note": "agenda, not the clock: the daemon answers this from CalendarEvents inside the query branch, so the clock/date system rule must not swallow it" },
|
||||
{ "id": "ru-query-014", "utterance": "я успеваю до дедлайна", "lang": "ru", "intent": "query", "tags": ["hard", "no-question-word"] },
|
||||
{ "id": "ru-query-015", "utterance": "сколько я прошёл шагов", "lang": "ru", "intent": "query", "tags": ["aggregate"] },
|
||||
{ "id": "ru-query-016", "utterance": "покажи давление за неделю", "lang": "ru", "intent": "query", "tags": ["hard", "imperative"], "note": "imperative form but a read — must not route to act" },
|
||||
|
||||
@@ -44,10 +44,21 @@ ws ::= [ \t\n]*
|
||||
// Changed again 31-07-2026: added the "unknown" escape hatch so the model can
|
||||
// admit it cannot route (Vikunja #359).
|
||||
//
|
||||
// Changed again 31-07-2026: added the clock/calendar rule (Vikunja #374). The
|
||||
// prompt never said which side "который час" or "какое число завтра" belong on,
|
||||
// so the model guessed — `system→query ×4` in every eval run. The rule sits
|
||||
// above the question test on purpose: these utterances all carry a question
|
||||
// word, so a later rule would never be reached. The boundary is what the
|
||||
// daemon can actually answer: only replySystem in cmd/mavend/voice.go owns the
|
||||
// clock and the calendar formatter, while the agenda ("что у меня завтра") is
|
||||
// answered inside the query branch, so that side stays query.
|
||||
//
|
||||
// The training workspace keeps its own copy of this prompt for relabelling, and
|
||||
// `llm/check_prompt_parity.py` there compares the two. That copy is in another
|
||||
// repo and was not touched, so parity will fail until it gets the same edits —
|
||||
// both the rule reorder and the "unknown" wording (Vikunja #362).
|
||||
// both the rule reorder and the "unknown" wording (Vikunja #362) — and now the
|
||||
// clock/calendar rule too. The training workspace is not checked out on this
|
||||
// box at all, so it could not be updated here; #362 still covers the catch-up.
|
||||
const routeSystem = `Классифицируй ровно одно сообщение пользователя. Верни ОДИН JSON-массив действий.
|
||||
|
||||
Ровно одно намерение: fact, reminder, note, query, act, chat, system.
|
||||
@@ -56,19 +67,21 @@ const routeSystem = `Классифицируй ровно одно сообще
|
||||
Классифицируй по цели пользователя. Порядок решения:
|
||||
1. Хочет напоминание в будущем → reminder
|
||||
2. Явно просит сохранить информацию → note
|
||||
3. Задаёт вопрос: есть вопросительное слово (сколько, что, какой, когда, где, кто, почему, как) или знак «?» → query
|
||||
4. Хочет получить информацию, в том числе о своих же данных → query
|
||||
5. Утверждает: сообщает или обновляет текущее состояние/событие → fact
|
||||
6. Просит выполнить работу → act
|
||||
7. Про ассистента, настройки или память → system
|
||||
8. Реплика — обрывок или указание на неназванное («это», «то», «потом»), и без него непонятно, что именно нужно сделать → unknown
|
||||
9. Иначе → chat
|
||||
3. Спрашивает только «который час» / «какое число» / «какой день недели» — сами часы или календарная дата, без своих данных → system
|
||||
4. Задаёт вопрос: есть вопросительное слово (сколько, что, какой, когда, где, кто, почему, как) или знак «?» → query
|
||||
5. Хочет получить информацию, в том числе о своих же данных → query
|
||||
6. Утверждает: сообщает или обновляет текущее состояние/событие → fact
|
||||
7. Просит выполнить работу → act
|
||||
8. Про ассистента, настройки или память → system
|
||||
9. Реплика — обрывок или указание на неназванное («это», «то», «потом»), и без него непонятно, что именно нужно сделать → unknown
|
||||
10. Иначе → chat
|
||||
|
||||
Различия:
|
||||
- note — сохранить информацию, без напоминания. text = суть.
|
||||
- reminder — уведомить позже. text = что напомнить.
|
||||
- fact — неявное обновление: пользователь сообщает, что что-то в мире изменилось (текущее/изменённое состояние, случившееся событие). key/value.
|
||||
- unknown — редкий случай. Ставь его, только если в самой реплике нет ни предмета, ни действия. Короткая, простая или незнакомая тема — это не причина для unknown: приветствие и болтовня — это chat, вопрос на любую тему — это query, просьба сделать что-то названное — это act.
|
||||
- system против query — часы и календарная дата сами по себе (сколько времени, какое число, какой день недели — можно и про завтра, и про другой город) — это system. А что записано в календаре или в памяти («что у меня завтра», «какие есть напоминания») — это query. Если в реплике есть просьба (напомни, запиши, сделай), то названное время — просто деталь просьбы, и это не system.
|
||||
- query против fact — решает форма реплики, а не тема. Вопрос о состоянии — это query, даже если названо то же самое, что бывает в fact. Только утверждение — это fact.
|
||||
|
||||
Примеры:
|
||||
@@ -82,6 +95,8 @@ const routeSystem = `Классифицируй ровно одно сообще
|
||||
"что такое docker?" → {"intent":"query","text":"что такое docker"}
|
||||
"напиши письмо" → {"intent":"act","verb":"написать письмо"}
|
||||
"очисти память" → {"intent":"system"}
|
||||
"который час?" → {"intent":"system"}
|
||||
"какое число завтра?" → {"intent":"system"}
|
||||
"привет" → {"intent":"chat","text":"привет"}
|
||||
"сделай это" → {"intent":"unknown"}
|
||||
"ну это" → {"intent":"unknown"}
|
||||
|
||||
@@ -175,3 +175,87 @@ func TestLLMRouterLLMError(t *testing.T) {
|
||||
t.Fatal("want ok=false, err!=nil on llm error")
|
||||
}
|
||||
}
|
||||
|
||||
// --- slot extraction on top of an LLM decision --------------------------------
|
||||
|
||||
// newLLMTestRouter — a router whose route always comes from the mock model.
|
||||
func newLLMTestRouter(t *testing.T, out string) *Router {
|
||||
t.Helper()
|
||||
c := NewClassifier(NewHashEmbedder(1024))
|
||||
seedClassifier(t, c)
|
||||
acts := DefaultActMatcher{Fns: []string{"restart", "stop", "run", "backup"}}
|
||||
return New(Config{
|
||||
Classifier: c,
|
||||
Extractor: Extractor{Time: StubDateTimeParser{}, Acts: acts, Facts: DefaultFactParser{}},
|
||||
Threshold: 0.4,
|
||||
LLM: NewLLMRouter(mockLLM{out: out}),
|
||||
})
|
||||
}
|
||||
|
||||
// The model cannot produce a fire time, so without extraction every LLM-routed
|
||||
// reminder was dropped as "no time".
|
||||
func TestLLMDecisionGetsReminderTime(t *testing.T) {
|
||||
r := newLLMTestRouter(t, `{"intent":"reminder","text":"позвонить маме"}`)
|
||||
d, err := r.Route(context.Background(), "напомни позвонить маме через 2 часа", refNow())
|
||||
if err != nil {
|
||||
t.Fatalf("route: %v", err)
|
||||
}
|
||||
if d.Intent != IntentReminder {
|
||||
t.Fatalf("want reminder, got %v", d.Intent)
|
||||
}
|
||||
if !d.Slots.HasTime || !d.Slots.Time.Equal(refNow().Add(2*time.Hour)) {
|
||||
t.Fatalf("want time now+2h, got %+v", d.Slots)
|
||||
}
|
||||
if d.Slots.Text != "позвонить маме" {
|
||||
t.Fatalf("extraction overwrote the model's text: %q", d.Slots.Text)
|
||||
}
|
||||
}
|
||||
|
||||
// No time in the utterance ⇒ no time in the slots. Do not invent one; the
|
||||
// daemon says it could not read the time.
|
||||
func TestLLMReminderWithoutTimeStaysEmpty(t *testing.T) {
|
||||
r := newLLMTestRouter(t, `{"intent":"reminder","text":"позвонить маме"}`)
|
||||
d, err := r.Route(context.Background(), "напомни позвонить маме", refNow())
|
||||
if err != nil {
|
||||
t.Fatalf("route: %v", err)
|
||||
}
|
||||
if d.Slots.HasTime {
|
||||
t.Fatalf("invented a time: %v", d.Slots.Time)
|
||||
}
|
||||
}
|
||||
|
||||
// An act decision arrived with no Fn, so the tool never ran.
|
||||
func TestLLMDecisionGetsActFn(t *testing.T) {
|
||||
r := newLLMTestRouter(t, `{"intent":"act","verb":"restart nginx"}`)
|
||||
d, err := r.Route(context.Background(), "слушай, restart nginx пожалуйста", refNow())
|
||||
if err != nil {
|
||||
t.Fatalf("route: %v", err)
|
||||
}
|
||||
if !d.Slots.HasFn || d.Slots.Fn != "restart" || len(d.Slots.Args) != 1 || d.Slots.Args[0] != "nginx" {
|
||||
t.Fatalf("want fn=restart args=[nginx], got %+v", d.Slots)
|
||||
}
|
||||
}
|
||||
|
||||
// The model's own slots win; extraction only fills gaps.
|
||||
func TestLLMSlotsWinOverExtraction(t *testing.T) {
|
||||
r := newLLMTestRouter(t, `{"intent":"fact","key":"hydration","value":"выпил"}`)
|
||||
d, err := r.Route(context.Background(), "я выпил воду", refNow())
|
||||
if err != nil {
|
||||
t.Fatalf("route: %v", err)
|
||||
}
|
||||
if d.Slots.Key != "hydration" {
|
||||
t.Fatalf("extraction overwrote the model's key: %q", d.Slots.Key)
|
||||
}
|
||||
}
|
||||
|
||||
// A fact the model left keyless still gets one from the parser.
|
||||
func TestLLMFactGetsKeyFromParser(t *testing.T) {
|
||||
r := newLLMTestRouter(t, `{"intent":"fact","text":"я выпил воду"}`)
|
||||
d, err := r.Route(context.Background(), "я выпил воду", refNow())
|
||||
if err != nil {
|
||||
t.Fatalf("route: %v", err)
|
||||
}
|
||||
if !d.Slots.HasKey || d.Slots.Key != "water" {
|
||||
t.Fatalf("want key=water, got %+v", d.Slots)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -12,6 +12,15 @@ import (
|
||||
"golang.org/x/text/unicode/norm"
|
||||
)
|
||||
|
||||
// The deployed model is multilingual-e5-small. e5 was trained with these two
|
||||
// words glued to the front of every text, and it scores badly without them —
|
||||
// they are part of the model, not a style choice. Swapping back to a symmetric
|
||||
// paraphrase model means dropping them again.
|
||||
const (
|
||||
queryPrefix = "query: "
|
||||
passagePrefix = "passage: "
|
||||
)
|
||||
|
||||
const (
|
||||
padTokenID = 1
|
||||
unkTokenID = 3
|
||||
@@ -24,6 +33,7 @@ const (
|
||||
type onnxEmbedder struct {
|
||||
tokenizer *unigramTokenizer
|
||||
session *ort.DynamicSession[int64, float32]
|
||||
id string
|
||||
}
|
||||
|
||||
func NewONNXEmbedder(modelPath, tokenizerPath, libPath string) (*onnxEmbedder, error) {
|
||||
@@ -49,12 +59,50 @@ func NewONNXEmbedder(modelPath, tokenizerPath, libPath string) (*onnxEmbedder, e
|
||||
return &onnxEmbedder{
|
||||
tokenizer: tok,
|
||||
session: session,
|
||||
id: modelIDFromPath(modelPath),
|
||||
}, nil
|
||||
}
|
||||
|
||||
func (e *onnxEmbedder) Dim() int { return embedDim }
|
||||
|
||||
// ID names the loaded model for the DB marker (Vikunja #378): the model file's
|
||||
// own name plus the dimension, so pointing the config at another model changes
|
||||
// the string on its own.
|
||||
func (e *onnxEmbedder) ID() string { return e.id }
|
||||
|
||||
// modelIDFromPath turns /opt/.../multilingual-e5-small.onnx into
|
||||
// "multilingual-e5-small@384".
|
||||
func modelIDFromPath(modelPath string) string {
|
||||
name := modelPath
|
||||
if i := strings.LastIndexAny(name, "/\\"); i >= 0 {
|
||||
name = name[i+1:]
|
||||
}
|
||||
name = strings.TrimSuffix(name, ".onnx")
|
||||
if name == "" {
|
||||
name = "onnx"
|
||||
}
|
||||
return fmt.Sprintf("%s@%d", name, embedDim)
|
||||
}
|
||||
|
||||
// Embed treats the text as a query. The classifier compares one short
|
||||
// utterance to another short seed phrase, so both sides get the same prefix
|
||||
// and the comparison stays fair. The recall path must call EmbedQuery and
|
||||
// EmbedPassage instead.
|
||||
func (e *onnxEmbedder) Embed(ctx context.Context, text string) ([]float32, error) {
|
||||
return e.embed(ctx, queryPrefix+text)
|
||||
}
|
||||
|
||||
// EmbedQuery — the question the user just asked.
|
||||
func (e *onnxEmbedder) EmbedQuery(ctx context.Context, text string) ([]float32, error) {
|
||||
return e.embed(ctx, queryPrefix+text)
|
||||
}
|
||||
|
||||
// EmbedPassage — a note or fact being stored, or re-scored at lookup time.
|
||||
func (e *onnxEmbedder) EmbedPassage(ctx context.Context, text string) ([]float32, error) {
|
||||
return e.embed(ctx, passagePrefix+text)
|
||||
}
|
||||
|
||||
func (e *onnxEmbedder) embed(ctx context.Context, text string) ([]float32, error) {
|
||||
inputIDs, attentionMask, _ := e.tokenizer.Encode(text)
|
||||
|
||||
inputShape := ort.NewShape(1, int64(maxLength))
|
||||
@@ -313,4 +361,4 @@ func preTokenize(text string) []string {
|
||||
return out
|
||||
}
|
||||
|
||||
var _ Embedder = (*onnxEmbedder)(nil)
|
||||
var _ AsymmetricEmbedder = (*onnxEmbedder)(nil)
|
||||
|
||||
@@ -88,6 +88,7 @@ func (r *Router) Route(ctx context.Context, utterance string, now time.Time) (De
|
||||
if r.llm != nil {
|
||||
if d, ok, err := r.llm.Route(ctx, utterance, now); err == nil && ok {
|
||||
d.Utterance = utterance
|
||||
r.fillSlots(ctx, &d, now)
|
||||
return d, nil
|
||||
} else if err != nil {
|
||||
log.Printf("router: llm route fell back to classifier: %v", err)
|
||||
@@ -118,6 +119,39 @@ func (r *Router) Route(ctx context.Context, utterance string, now time.Time) (De
|
||||
return d, nil
|
||||
}
|
||||
|
||||
// fillSlots — run stage-2 extraction on an LLM decision and fill only the slots
|
||||
// the model left empty. The LLM wins where it answered: it saw the sentence, the
|
||||
// parsers are keyword tables. Extraction covers what the model cannot produce at
|
||||
// all — a parsed reminder time and an allowlist fn.
|
||||
//
|
||||
// If a reminder still has no time, leave it missing. The daemon then says it
|
||||
// could not read the time; inventing one would set a wrong alarm.
|
||||
func (r *Router) fillSlots(ctx context.Context, d *Decision, now time.Time) {
|
||||
ex := r.extractor.Extract(ctx, d.Intent, d.Utterance, now)
|
||||
if !d.Slots.HasTime && ex.HasTime {
|
||||
d.Slots.Time, d.Slots.HasTime = ex.Time, ex.HasTime
|
||||
}
|
||||
if !d.Slots.HasKey && ex.HasKey {
|
||||
d.Slots.Key, d.Slots.Value, d.Slots.HasKey = ex.Key, ex.Value, ex.HasKey
|
||||
}
|
||||
if !d.Slots.HasFn && ex.HasFn {
|
||||
d.Slots.Fn, d.Slots.Args, d.Slots.HasFn = ex.Fn, ex.Args, ex.HasFn
|
||||
}
|
||||
// For an act the model returns the verb in Text ("restart nginx"), which is
|
||||
// often cleaner than the raw utterance ("maven, could you restart nginx").
|
||||
// Try it too when the utterance did not match the allowlist.
|
||||
if d.Intent == IntentAct && !d.Slots.HasFn && r.extractor.Acts != nil &&
|
||||
d.Slots.Text != "" && d.Slots.Text != d.Utterance {
|
||||
if fn, args, ok := r.extractor.Acts.Match(d.Slots.Text); ok {
|
||||
d.Slots.Fn, d.Slots.Args, d.Slots.HasFn = fn, args, true
|
||||
}
|
||||
}
|
||||
if d.Slots.Text == "" {
|
||||
d.Slots.Text = ex.Text
|
||||
}
|
||||
// Stage stays 1: it says who decided the route, and that was the LLM.
|
||||
}
|
||||
|
||||
// CorrectMisroute — the user corrected a bad classification. Appends a new
|
||||
// example for the corrected intent (append-only — grows the classifier, no
|
||||
// retrain). Same shape as nudges.outcome tuning cooldowns: more reliable over
|
||||
|
||||
@@ -449,16 +449,30 @@ func (AnaphoraResolver) Resolve(text string) (ref string, ok bool) {
|
||||
return "", false
|
||||
}
|
||||
|
||||
// ParseCalendarDate detects RU calendar date words in text and returns the
|
||||
// resolved time (midnight UTC+0 for "сегодня"/"today", next day for "завтра"/"tomorrow").
|
||||
// Returns zero time + false if no match.
|
||||
// ParseCalendarDate detects RU/EN calendar day words in text and returns
|
||||
// midnight of that day in now's own time zone. Handles "сегодня", "завтра",
|
||||
// "послезавтра", "вчера" (and the English words). Returns zero time + false
|
||||
// if no match.
|
||||
//
|
||||
// "послезавтра" is checked before "завтра" because it contains it.
|
||||
func ParseCalendarDate(text string, now time.Time) (time.Time, bool) {
|
||||
lower := strings.ToLower(text)
|
||||
if strings.Contains(lower, "сегодня") || strings.Contains(lower, "today") {
|
||||
return now.Truncate(24 * time.Hour), true
|
||||
}
|
||||
if strings.Contains(lower, "завтра") || strings.Contains(lower, "tomorrow") {
|
||||
return now.Truncate(24 * time.Hour).Add(24 * time.Hour), true
|
||||
switch {
|
||||
case strings.Contains(lower, "сегодня") || strings.Contains(lower, "today"):
|
||||
return midnight(now, 0), true
|
||||
case strings.Contains(lower, "послезавтра") || strings.Contains(lower, "day after tomorrow"):
|
||||
return midnight(now, 2), true
|
||||
case strings.Contains(lower, "завтра") || strings.Contains(lower, "tomorrow"):
|
||||
return midnight(now, 1), true
|
||||
case strings.Contains(lower, "вчера") || strings.Contains(lower, "yesterday"):
|
||||
return midnight(now, -1), true
|
||||
}
|
||||
return time.Time{}, false
|
||||
}
|
||||
|
||||
// midnight returns the start of the day that is `days` away from now, in
|
||||
// now's time zone (now.Truncate(24h) would cut on a UTC boundary instead).
|
||||
func midnight(now time.Time, days int) time.Time {
|
||||
y, m, d := now.AddDate(0, 0, days).Date()
|
||||
return time.Date(y, m, d, 0, 0, 0, 0, now.Location())
|
||||
}
|
||||
|
||||
@@ -45,6 +45,9 @@ func TestParseCalendarDate(t *testing.T) {
|
||||
{"расписание на завтра", time.Date(2026, 7, 7, 0, 0, 0, 0, time.UTC), true},
|
||||
{"what's today", time.Date(2026, 7, 6, 0, 0, 0, 0, time.UTC), true},
|
||||
{"tomorrow plans", time.Date(2026, 7, 7, 0, 0, 0, 0, time.UTC), true},
|
||||
{"какое число послезавтра", time.Date(2026, 7, 8, 0, 0, 0, 0, time.UTC), true},
|
||||
{"что было вчера", time.Date(2026, 7, 5, 0, 0, 0, 0, time.UTC), true},
|
||||
{"yesterday plans", time.Date(2026, 7, 5, 0, 0, 0, 0, time.UTC), true},
|
||||
{"какая погода", time.Time{}, false},
|
||||
{"сколько времени", time.Time{}, false},
|
||||
{"", time.Time{}, false},
|
||||
|
||||
@@ -0,0 +1,161 @@
|
||||
package store
|
||||
|
||||
import (
|
||||
"context"
|
||||
"encoding/json"
|
||||
"fmt"
|
||||
"time"
|
||||
)
|
||||
|
||||
// EmbedFunc embeds one piece of stored text. The caller passes
|
||||
// router.EmbedPassage — the STORE side of the query/passage asymmetry, which is
|
||||
// the side every vector in the DB was written with. (Passing the query side
|
||||
// would put the stored vectors in the wrong half of the space and quietly halve
|
||||
// recall.) A func instead of an interface keeps this package free of any
|
||||
// dependency on internal/router.
|
||||
type EmbedFunc func(ctx context.Context, text string) ([]float32, error)
|
||||
|
||||
// BackfillResult is what the re-embed run did, for logging.
|
||||
type BackfillResult struct {
|
||||
Skipped bool // marker already matched — nothing to do
|
||||
Notes int // rows rewritten in the notes table
|
||||
Facts int // fact rows rewritten in memory_vectors
|
||||
MemNotes int // note rows rewritten in memory_vectors
|
||||
NoText int // memory_vectors rows with no text in their meta, left alone
|
||||
Took time.Duration
|
||||
}
|
||||
|
||||
// ReembedAll rewrites every stored vector with the currently configured
|
||||
// embedder and then records that embedder as the one that owns the DB.
|
||||
//
|
||||
// Both places a vector lives are rewritten in the same pass: the `notes` table
|
||||
// `embedding` column and the `memory_vectors` rows (notes AND facts). Doing
|
||||
// only one would leave the two indexes disagreeing, which is worse than leaving
|
||||
// both stale.
|
||||
//
|
||||
// Safe to re-run: if the marker already names the current embedder there is
|
||||
// nothing to fix, so it returns immediately with Skipped set.
|
||||
//
|
||||
// Crash safety: everything — every vector and the marker — happens inside one
|
||||
// transaction. If anything fails or the process dies partway, the transaction
|
||||
// rolls back: no vectors changed and no marker written, so the next run does
|
||||
// the whole job again. The marker is never set unless the full rewrite
|
||||
// committed.
|
||||
func (s *Store) ReembedAll(ctx context.Context, currentID string, embed EmbedFunc) (BackfillResult, error) {
|
||||
start := time.Now()
|
||||
var res BackfillResult
|
||||
|
||||
stored, err := s.Meta(ctx, metaKeyEmbedderID)
|
||||
if err != nil {
|
||||
return res, err
|
||||
}
|
||||
if stored == currentID {
|
||||
res.Skipped = true
|
||||
res.Took = time.Since(start)
|
||||
return res, nil
|
||||
}
|
||||
|
||||
tx, err := s.db.BeginTx(ctx, nil)
|
||||
if err != nil {
|
||||
return res, fmt.Errorf("reembed: begin: %w", err)
|
||||
}
|
||||
defer tx.Rollback() // no-op once committed
|
||||
|
||||
// ----- notes table -----
|
||||
type noteRow struct {
|
||||
id int64
|
||||
text string
|
||||
}
|
||||
var notes []noteRow
|
||||
rows, err := tx.QueryContext(ctx, `SELECT id, text FROM notes WHERE text != ''`)
|
||||
if err != nil {
|
||||
return res, fmt.Errorf("reembed: read notes: %w", err)
|
||||
}
|
||||
for rows.Next() {
|
||||
var n noteRow
|
||||
if err := rows.Scan(&n.id, &n.text); err != nil {
|
||||
rows.Close()
|
||||
return res, fmt.Errorf("reembed: note row: %w", err)
|
||||
}
|
||||
notes = append(notes, n)
|
||||
}
|
||||
rows.Close()
|
||||
if err := rows.Err(); err != nil {
|
||||
return res, fmt.Errorf("reembed: notes: %w", err)
|
||||
}
|
||||
|
||||
for _, n := range notes {
|
||||
vec, err := embed(ctx, n.text)
|
||||
if err != nil {
|
||||
return res, fmt.Errorf("reembed: embed note %d: %w", n.id, err)
|
||||
}
|
||||
if _, err := tx.ExecContext(ctx,
|
||||
`UPDATE notes SET embedding = ? WHERE id = ?`, floatsToBlob(vec), n.id); err != nil {
|
||||
return res, fmt.Errorf("reembed: write note %d: %w", n.id, err)
|
||||
}
|
||||
res.Notes++
|
||||
}
|
||||
|
||||
// ----- memory_vectors (the unified index: notes AND facts) -----
|
||||
// The text to re-embed is the one carried in the row's meta blob, which is
|
||||
// exactly the text that was embedded when the row was written.
|
||||
type vecRow struct {
|
||||
id, text, kind string
|
||||
}
|
||||
var vecs []vecRow
|
||||
rows, err = tx.QueryContext(ctx, `SELECT id, meta FROM memory_vectors`)
|
||||
if err != nil {
|
||||
return res, fmt.Errorf("reembed: read memory vectors: %w", err)
|
||||
}
|
||||
for rows.Next() {
|
||||
var id, metaJSON string
|
||||
if err := rows.Scan(&id, &metaJSON); err != nil {
|
||||
rows.Close()
|
||||
return res, fmt.Errorf("reembed: memory row: %w", err)
|
||||
}
|
||||
meta := map[string]string{}
|
||||
if err := json.Unmarshal([]byte(metaJSON), &meta); err != nil {
|
||||
rows.Close()
|
||||
return res, fmt.Errorf("reembed: meta for %q: %w", id, err)
|
||||
}
|
||||
if meta["text"] == "" {
|
||||
res.NoText++
|
||||
continue
|
||||
}
|
||||
vecs = append(vecs, vecRow{id: id, text: meta["text"], kind: meta["type"]})
|
||||
}
|
||||
rows.Close()
|
||||
if err := rows.Err(); err != nil {
|
||||
return res, fmt.Errorf("reembed: memory vectors: %w", err)
|
||||
}
|
||||
|
||||
for _, v := range vecs {
|
||||
vec, err := embed(ctx, v.text)
|
||||
if err != nil {
|
||||
return res, fmt.Errorf("reembed: embed %q: %w", v.id, err)
|
||||
}
|
||||
if _, err := tx.ExecContext(ctx,
|
||||
`UPDATE memory_vectors SET vec = ? WHERE id = ?`, encodeVec(vec), v.id); err != nil {
|
||||
return res, fmt.Errorf("reembed: write %q: %w", v.id, err)
|
||||
}
|
||||
if v.kind == "fact" {
|
||||
res.Facts++
|
||||
} else {
|
||||
res.MemNotes++
|
||||
}
|
||||
}
|
||||
|
||||
// Same transaction as the rewrite, on purpose: the marker can only exist if
|
||||
// every vector above was written.
|
||||
if _, err := tx.ExecContext(ctx,
|
||||
`INSERT INTO meta (key, value) VALUES (?,?)
|
||||
ON CONFLICT(key) DO UPDATE SET value = excluded.value`,
|
||||
metaKeyEmbedderID, currentID); err != nil {
|
||||
return res, fmt.Errorf("reembed: write marker: %w", err)
|
||||
}
|
||||
if err := tx.Commit(); err != nil {
|
||||
return res, fmt.Errorf("reembed: commit: %w", err)
|
||||
}
|
||||
res.Took = time.Since(start)
|
||||
return res, nil
|
||||
}
|
||||
@@ -0,0 +1,171 @@
|
||||
package store
|
||||
|
||||
import (
|
||||
"context"
|
||||
"errors"
|
||||
"testing"
|
||||
"time"
|
||||
)
|
||||
|
||||
// markerVec is a recognisable vector: nothing in these tests writes it except
|
||||
// the backfill, so finding it proves the row really was rewritten.
|
||||
var markerVec = []float32{9, 9, 9}
|
||||
|
||||
func newEmbedder(calls *int) EmbedFunc {
|
||||
return func(_ context.Context, _ string) ([]float32, error) {
|
||||
*calls++
|
||||
return markerVec, nil
|
||||
}
|
||||
}
|
||||
|
||||
// seedOldVectors puts one note (notes table + unified index) and one fact
|
||||
// (unified index only) in the DB, both carrying obviously-old vectors.
|
||||
func seedOldVectors(t *testing.T, s *Store) {
|
||||
t.Helper()
|
||||
ctx := context.Background()
|
||||
old := []float32{0.1, 0.2, 0.3}
|
||||
id, err := s.WriteNote(ctx, time.Now(), "молоко в холодильнике", old, "voice")
|
||||
if err != nil {
|
||||
t.Fatalf("WriteNote: %v", err)
|
||||
}
|
||||
mem := s.VectorMemory()
|
||||
if err := mem.Insert(ctx, "note:1", old, map[string]string{
|
||||
"type": "note", "text": "молоко в холодильнике",
|
||||
}); err != nil {
|
||||
t.Fatalf("Insert note vector: %v", err)
|
||||
}
|
||||
if err := mem.Insert(ctx, "fact:water:1", old, map[string]string{
|
||||
"type": "fact", "text": "я пил воду",
|
||||
}); err != nil {
|
||||
t.Fatalf("Insert fact vector: %v", err)
|
||||
}
|
||||
_ = id
|
||||
}
|
||||
|
||||
func noteVec(t *testing.T, s *Store) []float32 {
|
||||
t.Helper()
|
||||
var blob []byte
|
||||
if err := s.db.QueryRow(`SELECT embedding FROM notes LIMIT 1`).Scan(&blob); err != nil {
|
||||
t.Fatalf("read note embedding: %v", err)
|
||||
}
|
||||
return blobToFloats(blob)
|
||||
}
|
||||
|
||||
func memVec(t *testing.T, s *Store, id string) []float32 {
|
||||
t.Helper()
|
||||
var blob []byte
|
||||
if err := s.db.QueryRow(`SELECT vec FROM memory_vectors WHERE id = ?`, id).Scan(&blob); err != nil {
|
||||
t.Fatalf("read memory vector %s: %v", id, err)
|
||||
}
|
||||
return decodeVec(blob)
|
||||
}
|
||||
|
||||
func sameVec(a, b []float32) bool {
|
||||
if len(a) != len(b) {
|
||||
return false
|
||||
}
|
||||
for i := range a {
|
||||
if a[i] != b[i] {
|
||||
return false
|
||||
}
|
||||
}
|
||||
return true
|
||||
}
|
||||
|
||||
// The deployed case: old vectors everywhere, no marker. Every vector in both
|
||||
// places must be rewritten and the marker recorded.
|
||||
func TestReembedAllRewritesEveryVector(t *testing.T) {
|
||||
s := newTestStore(t)
|
||||
ctx := context.Background()
|
||||
seedOldVectors(t, s)
|
||||
|
||||
calls := 0
|
||||
res, err := s.ReembedAll(ctx, "multilingual-e5-small@384", newEmbedder(&calls))
|
||||
if err != nil {
|
||||
t.Fatalf("ReembedAll: %v", err)
|
||||
}
|
||||
if res.Skipped {
|
||||
t.Fatal("first run should not skip")
|
||||
}
|
||||
if res.Notes != 1 || res.MemNotes != 1 || res.Facts != 1 {
|
||||
t.Fatalf("counts: notes=%d memNotes=%d facts=%d", res.Notes, res.MemNotes, res.Facts)
|
||||
}
|
||||
if calls != 3 {
|
||||
t.Fatalf("embedder called %d times, want 3", calls)
|
||||
}
|
||||
if !sameVec(noteVec(t, s), markerVec) {
|
||||
t.Fatalf("notes table not rewritten: %v", noteVec(t, s))
|
||||
}
|
||||
if !sameVec(memVec(t, s, "note:1"), markerVec) {
|
||||
t.Fatal("unified index note row not rewritten")
|
||||
}
|
||||
if !sameVec(memVec(t, s, "fact:water:1"), markerVec) {
|
||||
t.Fatal("unified index fact row not rewritten")
|
||||
}
|
||||
got, err := s.Meta(ctx, metaKeyEmbedderID)
|
||||
if err != nil {
|
||||
t.Fatalf("Meta: %v", err)
|
||||
}
|
||||
if got != "multilingual-e5-small@384" {
|
||||
t.Fatalf("marker = %q", got)
|
||||
}
|
||||
}
|
||||
|
||||
// Re-running must do nothing at all — not a second pass over the same rows.
|
||||
func TestReembedAllSecondRunIsNoop(t *testing.T) {
|
||||
s := newTestStore(t)
|
||||
ctx := context.Background()
|
||||
seedOldVectors(t, s)
|
||||
|
||||
calls := 0
|
||||
if _, err := s.ReembedAll(ctx, "e5@384", newEmbedder(&calls)); err != nil {
|
||||
t.Fatalf("first run: %v", err)
|
||||
}
|
||||
first := calls
|
||||
|
||||
res, err := s.ReembedAll(ctx, "e5@384", newEmbedder(&calls))
|
||||
if err != nil {
|
||||
t.Fatalf("second run: %v", err)
|
||||
}
|
||||
if !res.Skipped {
|
||||
t.Fatal("second run should report Skipped")
|
||||
}
|
||||
if calls != first {
|
||||
t.Fatalf("second run embedded %d more rows, want 0", calls-first)
|
||||
}
|
||||
}
|
||||
|
||||
// A failure partway must leave the DB exactly as it was: no marker, and the old
|
||||
// vectors still in place (one transaction, rolled back).
|
||||
func TestReembedAllPartialFailureLeavesMarkerUnset(t *testing.T) {
|
||||
s := newTestStore(t)
|
||||
ctx := context.Background()
|
||||
seedOldVectors(t, s)
|
||||
before := noteVec(t, s)
|
||||
|
||||
calls := 0
|
||||
boom := func(_ context.Context, _ string) ([]float32, error) {
|
||||
calls++
|
||||
if calls == 2 {
|
||||
return nil, errors.New("onnx blew up")
|
||||
}
|
||||
return markerVec, nil
|
||||
}
|
||||
if _, err := s.ReembedAll(ctx, "e5@384", boom); err == nil {
|
||||
t.Fatal("expected an error")
|
||||
}
|
||||
got, err := s.Meta(ctx, metaKeyEmbedderID)
|
||||
if err != nil {
|
||||
t.Fatalf("Meta: %v", err)
|
||||
}
|
||||
if got != "" {
|
||||
t.Fatalf("marker was set to %q after a failed run", got)
|
||||
}
|
||||
if !sameVec(noteVec(t, s), before) {
|
||||
t.Fatal("a failed run left a partially rewritten notes table")
|
||||
}
|
||||
// And the mismatch warning must still fire, so the user knows to re-run.
|
||||
if _, mismatch, err := s.CheckEmbedder(ctx, "e5@384"); err != nil || !mismatch {
|
||||
t.Fatalf("CheckEmbedder after failed backfill: mismatch=%v err=%v", mismatch, err)
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,74 @@
|
||||
package store
|
||||
|
||||
import (
|
||||
"context"
|
||||
"fmt"
|
||||
"time"
|
||||
)
|
||||
|
||||
// DialogueSessionRow — one saved follow-up session. Data is the session
|
||||
// encoded by the dialogue package; the store does not look inside it.
|
||||
type DialogueSessionRow struct {
|
||||
ID string
|
||||
Data []byte
|
||||
Ts time.Time
|
||||
TTL time.Duration
|
||||
Expires time.Time
|
||||
}
|
||||
|
||||
// SaveDialogueSession — write (or replace) the session for one dialogue id.
|
||||
// One row per id: a newer turn overwrites the older state.
|
||||
func (s *Store) SaveDialogueSession(ctx context.Context, id string, data []byte, ts time.Time, ttl time.Duration) error {
|
||||
expires := ts.Add(ttl)
|
||||
_, err := s.db.ExecContext(ctx, `
|
||||
INSERT INTO dialogue_sessions (id, data, ts, ttl_ms, expires_ts) VALUES (?, ?, ?, ?, ?)
|
||||
ON CONFLICT(id) DO UPDATE SET data = excluded.data,
|
||||
ts = excluded.ts,
|
||||
ttl_ms = excluded.ttl_ms,
|
||||
expires_ts = excluded.expires_ts`,
|
||||
id, data, ts.UnixMilli(), ttl.Milliseconds(), expires.UnixMilli())
|
||||
if err != nil {
|
||||
return fmt.Errorf("save dialogue session: %w", err)
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
// DeleteDialogueSession — drop one session (ended, or expired).
|
||||
func (s *Store) DeleteDialogueSession(ctx context.Context, id string) error {
|
||||
if _, err := s.db.ExecContext(ctx, `DELETE FROM dialogue_sessions WHERE id = ?`, id); err != nil {
|
||||
return fmt.Errorf("delete dialogue session: %w", err)
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
// LoadDialogueSessions — return the sessions still alive at `now` and delete
|
||||
// the ones that already ran out. An expired session is dead: it never comes
|
||||
// back after a restart.
|
||||
func (s *Store) LoadDialogueSessions(ctx context.Context, now time.Time) ([]DialogueSessionRow, error) {
|
||||
if _, err := s.db.ExecContext(ctx,
|
||||
`DELETE FROM dialogue_sessions WHERE expires_ts <= ?`, now.UnixMilli()); err != nil {
|
||||
return nil, fmt.Errorf("prune dialogue sessions: %w", err)
|
||||
}
|
||||
rows, err := s.db.QueryContext(ctx,
|
||||
`SELECT id, data, ts, ttl_ms, expires_ts FROM dialogue_sessions ORDER BY id`)
|
||||
if err != nil {
|
||||
return nil, fmt.Errorf("load dialogue sessions: %w", err)
|
||||
}
|
||||
defer rows.Close()
|
||||
var out []DialogueSessionRow
|
||||
for rows.Next() {
|
||||
var r DialogueSessionRow
|
||||
var tsMilli, ttlMilli, expMilli int64
|
||||
if err := rows.Scan(&r.ID, &r.Data, &tsMilli, &ttlMilli, &expMilli); err != nil {
|
||||
return nil, fmt.Errorf("scan dialogue session: %w", err)
|
||||
}
|
||||
r.Ts = time.UnixMilli(tsMilli).UTC()
|
||||
r.TTL = time.Duration(ttlMilli) * time.Millisecond
|
||||
r.Expires = time.UnixMilli(expMilli).UTC()
|
||||
out = append(out, r)
|
||||
}
|
||||
if err := rows.Err(); err != nil {
|
||||
return nil, fmt.Errorf("load dialogue sessions: %w", err)
|
||||
}
|
||||
return out, nil
|
||||
}
|
||||
@@ -0,0 +1,97 @@
|
||||
package store
|
||||
|
||||
import (
|
||||
"context"
|
||||
"database/sql"
|
||||
"errors"
|
||||
"fmt"
|
||||
)
|
||||
|
||||
// metaKeyEmbedderID names the embedder that wrote the stored vectors.
|
||||
//
|
||||
// Why one value for the whole DB and not a column on every vector row: the
|
||||
// vectors are only ever rewritten all at once (one backfill re-embeds every
|
||||
// note and fact together), so a per-row marker would hold the same string in
|
||||
// every row and cost a column on two tables for nothing.
|
||||
const metaKeyEmbedderID = "embedder_id"
|
||||
|
||||
// Meta reads a single value from the meta table. Missing key ⇒ empty string.
|
||||
func (s *Store) Meta(ctx context.Context, key string) (string, error) {
|
||||
var v string
|
||||
err := s.db.QueryRowContext(ctx, `SELECT value FROM meta WHERE key = ?`, key).Scan(&v)
|
||||
if errors.Is(err, sql.ErrNoRows) {
|
||||
return "", nil
|
||||
}
|
||||
if err != nil {
|
||||
return "", fmt.Errorf("read meta %s: %w", key, err)
|
||||
}
|
||||
return v, nil
|
||||
}
|
||||
|
||||
// SetMeta writes (or overwrites) a single meta value.
|
||||
func (s *Store) SetMeta(ctx context.Context, key, value string) error {
|
||||
_, err := s.db.ExecContext(ctx,
|
||||
`INSERT INTO meta (key, value) VALUES (?,?)
|
||||
ON CONFLICT(key) DO UPDATE SET value = excluded.value`, key, value)
|
||||
if err != nil {
|
||||
return fmt.Errorf("write meta %s: %w", key, err)
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
// EmbedderUnknown is the stored id reported for a DB that already holds
|
||||
// vectors but never recorded who wrote them.
|
||||
const EmbedderUnknown = "unknown (written before this marker existed)"
|
||||
|
||||
// CheckEmbedder compares the embedder now configured against the one that
|
||||
// wrote the stored vectors. Returns the stored id and whether it differs.
|
||||
//
|
||||
// Vectors from two different models live in different spaces, so cosine
|
||||
// between them is noise rather than a low score — and both of our models are
|
||||
// 384-dimensional, so nothing else catches it.
|
||||
//
|
||||
// Three cases, and the middle one is the one that actually matters:
|
||||
//
|
||||
// - marker present ⇒ compare the two ids.
|
||||
// - marker absent but vectors already stored ⇒ this is a DB from before the
|
||||
// marker, so we cannot know who wrote them. Report a mismatch. This is the
|
||||
// real case on the deployed box: those vectors came from the old embedder,
|
||||
// and claiming them for the current one would hide the exact problem the
|
||||
// marker was added to catch.
|
||||
// - marker absent and no vectors ⇒ fresh DB, claim it, nothing to fix.
|
||||
//
|
||||
// On a mismatch the fix is ReembedAll (backfill.go), run explicitly with
|
||||
// `mavend -reembed`. Nothing is re-embedded here: that work is minutes of CPU
|
||||
// on the laptop and must not stall a normal start.
|
||||
func (s *Store) CheckEmbedder(ctx context.Context, currentID string) (stored string, mismatch bool, err error) {
|
||||
stored, err = s.Meta(ctx, metaKeyEmbedderID)
|
||||
if err != nil {
|
||||
return "", false, err
|
||||
}
|
||||
if stored != "" {
|
||||
return stored, stored != currentID, nil
|
||||
}
|
||||
n, err := s.countVectors(ctx)
|
||||
if err != nil {
|
||||
return "", false, err
|
||||
}
|
||||
if n > 0 {
|
||||
return EmbedderUnknown, true, nil
|
||||
}
|
||||
return currentID, false, s.SetMeta(ctx, metaKeyEmbedderID, currentID)
|
||||
}
|
||||
|
||||
// countVectors — how many stored rows carry an embedding. Used only to tell a
|
||||
// fresh DB apart from one that predates the marker.
|
||||
func (s *Store) countVectors(ctx context.Context) (int, error) {
|
||||
var notes, vecs int
|
||||
if err := s.db.QueryRowContext(ctx,
|
||||
`SELECT count(*) FROM notes WHERE embedding IS NOT NULL`).Scan(¬es); err != nil {
|
||||
return 0, fmt.Errorf("count note vectors: %w", err)
|
||||
}
|
||||
if err := s.db.QueryRowContext(ctx,
|
||||
`SELECT count(*) FROM memory_vectors`).Scan(&vecs); err != nil {
|
||||
return 0, fmt.Errorf("count memory vectors: %w", err)
|
||||
}
|
||||
return notes + vecs, nil
|
||||
}
|
||||
@@ -0,0 +1,100 @@
|
||||
package store
|
||||
|
||||
import (
|
||||
"context"
|
||||
"testing"
|
||||
"time"
|
||||
)
|
||||
|
||||
// A fresh DB has no marker yet, so the current embedder is recorded and
|
||||
// nothing is flagged.
|
||||
func TestCheckEmbedderFreshDBRecords(t *testing.T) {
|
||||
s := newTestStore(t)
|
||||
ctx := context.Background()
|
||||
|
||||
stored, mismatch, err := s.CheckEmbedder(ctx, "multilingual-e5-small@384")
|
||||
if err != nil {
|
||||
t.Fatalf("CheckEmbedder: %v", err)
|
||||
}
|
||||
if mismatch {
|
||||
t.Fatal("fresh DB reported a mismatch")
|
||||
}
|
||||
if stored != "multilingual-e5-small@384" {
|
||||
t.Fatalf("stored = %q", stored)
|
||||
}
|
||||
got, err := s.Meta(ctx, metaKeyEmbedderID)
|
||||
if err != nil {
|
||||
t.Fatalf("Meta: %v", err)
|
||||
}
|
||||
if got != "multilingual-e5-small@384" {
|
||||
t.Fatalf("marker not persisted, got %q", got)
|
||||
}
|
||||
}
|
||||
|
||||
// The deployed box: notes were written by the old embedder, before the marker
|
||||
// existed. Claiming them for the current one would hide exactly the problem
|
||||
// the marker is for, so an unmarked DB that already holds vectors is a
|
||||
// mismatch.
|
||||
func TestCheckEmbedderUnmarkedDBWithVectorsIsMismatch(t *testing.T) {
|
||||
s := newTestStore(t)
|
||||
ctx := context.Background()
|
||||
|
||||
if _, err := s.WriteNote(ctx, time.Now(), "молоко в холодильнике", []float32{0.1, 0.2}, "voice"); err != nil {
|
||||
t.Fatalf("WriteNote: %v", err)
|
||||
}
|
||||
|
||||
stored, mismatch, err := s.CheckEmbedder(ctx, "multilingual-e5-small@384")
|
||||
if err != nil {
|
||||
t.Fatalf("CheckEmbedder: %v", err)
|
||||
}
|
||||
if !mismatch {
|
||||
t.Fatal("an unmarked DB with stored vectors should report a mismatch")
|
||||
}
|
||||
if stored != EmbedderUnknown {
|
||||
t.Fatalf("stored = %q, want %q", stored, EmbedderUnknown)
|
||||
}
|
||||
// It must NOT claim the DB — that would silence the warning on restart.
|
||||
got, err := s.Meta(ctx, metaKeyEmbedderID)
|
||||
if err != nil {
|
||||
t.Fatalf("Meta: %v", err)
|
||||
}
|
||||
if got != "" {
|
||||
t.Fatalf("marker written despite unknown provenance: %q", got)
|
||||
}
|
||||
}
|
||||
|
||||
// Both models are 384-dim, so this is the only thing that catches the swap.
|
||||
func TestCheckEmbedderDifferentModelMismatch(t *testing.T) {
|
||||
s := newTestStore(t)
|
||||
ctx := context.Background()
|
||||
|
||||
if err := s.SetMeta(ctx, metaKeyEmbedderID, "paraphrase-multilingual-MiniLM-L12-v2@384"); err != nil {
|
||||
t.Fatalf("SetMeta: %v", err)
|
||||
}
|
||||
stored, mismatch, err := s.CheckEmbedder(ctx, "multilingual-e5-small@384")
|
||||
if err != nil {
|
||||
t.Fatalf("CheckEmbedder: %v", err)
|
||||
}
|
||||
if !mismatch {
|
||||
t.Fatal("different embedder not detected")
|
||||
}
|
||||
if stored != "paraphrase-multilingual-MiniLM-L12-v2@384" {
|
||||
t.Fatalf("stored = %q", stored)
|
||||
}
|
||||
}
|
||||
|
||||
// The same embedder must never raise a false alarm, including on re-check.
|
||||
func TestCheckEmbedderSameModelNoAlarm(t *testing.T) {
|
||||
s := newTestStore(t)
|
||||
ctx := context.Background()
|
||||
|
||||
for i := 0; i < 2; i++ {
|
||||
_, mismatch, err := s.CheckEmbedder(ctx, "multilingual-e5-small@384")
|
||||
if err != nil {
|
||||
t.Fatalf("CheckEmbedder: %v", err)
|
||||
}
|
||||
if mismatch {
|
||||
t.Fatalf("false alarm on pass %d", i)
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -74,6 +74,20 @@ ALTER TABLE reminders ADD COLUMN next_fire_ts INTEGER;`, // #2
|
||||
`CREATE INDEX IF NOT EXISTS idx_nudges_snoozed ON nudges (outcome_ts) WHERE outcome = 'snoozed';`, // #8 — SnoozedUntil runs every tick; keep it off a full scan (Vikunja #364)
|
||||
`ALTER TABLE proposed_routines ADD COLUMN accepted_ts INTEGER;
|
||||
ALTER TABLE proposed_routines ADD COLUMN last_fired_ts INTEGER;`, // #9 — accepted routines keep firing (Vikunja #366): the tick loop needs to know when a routine was accepted and when it last nudged
|
||||
|
||||
`CREATE TABLE IF NOT EXISTS dialogue_sessions (
|
||||
id TEXT PRIMARY KEY,
|
||||
data BLOB NOT NULL,
|
||||
ts INTEGER NOT NULL,
|
||||
ttl_ms INTEGER NOT NULL,
|
||||
expires_ts INTEGER NOT NULL
|
||||
);
|
||||
CREATE INDEX IF NOT EXISTS idx_dialogue_sessions_expires ON dialogue_sessions (expires_ts);`, // #10 — the follow-up session survives a restart (Vikunja #363); small, TTL-pruned table, not a history log
|
||||
|
||||
`CREATE TABLE IF NOT EXISTS meta (
|
||||
key TEXT PRIMARY KEY,
|
||||
value TEXT NOT NULL
|
||||
);`, // #11 — small key/value table for facts about the DB itself; first key is embedder_id (Vikunja #378)
|
||||
}
|
||||
|
||||
// migrate applies every migration with a number greater than the DB's current
|
||||
|
||||
Reference in New Issue
Block a user