docs(adr): add ADR-0009 (export target = build) + ADR-0010 (diagnostics/legality/pipeline)

Lift business decisions made during the MVP build into the contract, per
constitution rule 5 (divergence points belong in the spec).

ADR-0009 — amends ADR-0005's render-matrix framing: an export target is a *build*
producing a typed Artifact (SingleFile | FileTree). build = map (per-kind, the
field-visibility lives here) + reduce (assemble, determined by artifact type:
SingleFile concatenates in lesson order then compiles — which is why @ref and
counters work). Build form = declarative schema + a run-shell hatch (where
ADR-0005's medium-only category (b) and npm/HTML builds live), not a Makefile.
typst compile is hidden backend mechanism, not part of a target. Defaults seeded
at project creation, overridable in the file — the heading-numbering bug
(一、 reused → 二、一、) is the worked example of that missing override layer.

ADR-0010 — backfills ADR-0005's deferred "legal lesson": the 7-class diagnostic
taxonomy with per-class meaning + severity; legal lesson = no error-level
diagnostic; the 5-phase pipeline (load→structural→schema→compile→coverage) with
compile gated on zero prior errors. External-facility diagnostics (TypstCompile,
DanglingReference, schema conformance) modeled as abstract predicates whose
verdict comes from an implementation oracle, not from Lean — keeps the contract
honest about what it does and doesn't decide.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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# ADR 0009: An Export Target Is A Build Producing A Typed Artifact
## Status
Accepted — for the decisions below. **Amends ADR-0005**: where ADR-0005 framed
rendering as a passive `(kind × target)` configuration matrix looked up per
element, this ADR reframes an export target as an active **build** that consumes
the lesson and produces a typed **artifact**. The seed rule ADR-0005 fixed
(missing render rule for a used kind ⇒ warning) survives, restated against the
new structure. Several sub-decisions are deferred; see *Open Questions*.
## Context
ADR-0005 said an export target "projects/renders the lesson", with a render
matrix that "lives in the engineering file; the framework provides defaults, the
file may override." The MVP implementation did not realize that override path:
it hardcoded one target's behavior as a `target == "student"` branch inside the
render package and baked presentation defaults (heading numbering) into the
package with no way for an engineering file to change them. That produced a
concrete bug — a single-symbol numbering pattern (`一、`) reused across heading
levels, so level-2 headings rendered as `二、一、…` — which is not a typo but the
**symptom of a missing layer**: targets were behavior welded into code, not
configuration a lesson can carry and override.
Looking at the prototype confirms the real shape of the problem. It had two
near-identical export entrypoints (`exports/学生版.typ`, `exports/教师版.typ`)
plus a `display-control.typ` switching on `sys.inputs("x-export-target")` with a
scatter of per-concern booleans (`show-answer`, `show-discussion-script`,
`show-eg-comment`, …). The two scripts are ~95% identical; the duplication —
load, assemble, compile, page setup — is the same across every target, and only
a thin policy delta differs. **That repetition is the thing to factor out.**
A target is therefore best understood as **a build script with the repeated
mechanism abstracted away** — closer in spirit to a GitHub Actions workflow
(declarative steps, plus a `run`-shell escape hatch) than to a Makefile.
## Decision
### A target is a build that produces a typed artifact
An export target is **a build**: it consumes the (ordered, typed) lesson and
produces one **artifact**. The artifact's *shape* is part of what the target
*is*, modeled as an ADT value the target carries:
- `SingleFile` — one bundled document (a 讲义 PDF, a teacher plan PDF).
- `FileTree` — many files plus an index/manifest (a third-party platform
archive).
"Single file vs. many files" is a genuine divergence point — it changes what
`cph build` emits and what a consumer expects — so the artifact type is part of
the contract, not an implementation afterthought. (Backend/format beyond this —
which concrete PDF engine, which markdown dialect — stays open.)
### A build is map + reduce; the reduce is determined by the artifact
A build has two phases, kept distinct:
- **map (per-kind).** For each element kind, how that kind becomes an
intermediate fragment. This is declarative and keyed by kind — the part a
GitHub-Actions-style schema expresses naturally. **Field visibility lives
here**: "student hides `example.solution` and `lemma.proof`; teacher shows
them" is simply *what this target's per-kind map does* — not a separate
concept and not a property of the element.
- **reduce / assemble.** The ordered fragments are folded into the artifact.
This fold is **determined by the artifact type**, not written per target:
- `SingleFile` ⇒ concatenate fragments in lesson order into one document, then
compile it. (This is *why* cross-references `@label`/`@ref` and the
例题1/例题2 counters work at all: they resolve only when the whole lesson is
one compiled document. The fold's statefulness is carried by the backend's
own counters at assemble-compile time, not re-implemented in the map.)
- `FileTree` ⇒ each part to its own file, plus a generated index.
The framework provides the assembler for each artifact shape; a build only
*chooses* its artifact type. This is the answer to "a per-kind rule can't express
aggregation": aggregation isn't crammed into the per-kind schema — the artifact
value picks a framework assembler, and the **shell escape hatch** is reserved for
the genuinely irregular case (a third-party archive that runs an npm build).
### The build form: declarative schema plus a `run`-shell hatch
A build is expressed declaratively (a schema — concretely a YAML-ish document,
consistent with the `manifest.toml`/`element.toml` lineage) with one **`run`
escape hatch** for steps that resist declaration. Explicitly **not** a Makefile
or a general scripting language: the declarative surface carries the common
cases (per-kind map, artifact choice, presentation knobs), and the shell hatch is
the bounded exception. This mirrors ADR-0006's stance on schemas: fix the *form*
here, keep the concrete payload an implementation detail.
### typst compilation is a hidden backend mechanism, not part of a target
Compiling typst to PDF is the *shared, repeated* mechanism every PDF-producing
target needs. It is therefore **backend mechanism, hidden below the target**, not
something a target re-specifies. A target says "I produce a `SingleFile` PDF";
*how* the assembled document becomes bytes is the framework's business. (This is
also where the checker's typst-compile diagnostic belongs — an external facility,
see ADR-0010.)
### Medium-only information rides the build's shell hatch
ADR-0005's category **(b)** — medium-only information that exists only because of
a target's medium (HTML interactive behavior, a build script, npm dependencies)
— finally has a home: it belongs to the **target's build** (its shell hatch /
artifact assembler), never to the element. This complements ADR-0005's
category-(a) decision (semantic-but-target-specific fields ride the element); (b)
rides the build.
### Defaults are seeded at project creation and overridable in the file
The framework ships **default builds** for its stock targets (e.g. student,
teacher), written into the engineering file when a project is created. The file
may then **override** pieces of them. The numbering bug is the worked example:
the fix is not patching the render package but **overriding the student/teacher
build's numbering** in the engineering file (e.g.
`numbly("{1:一}、", "{1:1}.{2:1}")` — level-1 `一、`, level-2 `1.1`). This realizes
ADR-0005's "matrix lives in the file, framework gives defaults, file overrides"
as an actual editable layer rather than a slogan.
## Consequences
- The two duplicated export scripts collapse into one shared build mechanism plus
two small target *configurations* (artifact type + per-kind map + presentation
overrides). Adding a target is adding a config value, not copying a script.
- `cph build --target T` is defined by T's artifact type: it writes one file for
`SingleFile`, a directory for `FileTree`.
- Presentation defaults (numbering, labels, styling) are file-resident and
overridable; a wrong default is a one-line edit in the engineering file, not a
package change.
- The contract gains structure (an `Artifact` ADT; a target = build with a
per-kind map + an artifact-determined assemble) without committing the concrete
build-schema fields — those stay implementation, per the depth ceiling
(constitution rule 5).
- ADR-0005's render-matrix language is superseded by this build framing; its
warning rule (missing render for a used kind ⇒ warning, non-blocking) is
preserved and restated in ADR-0010 against the new `covers`.
## Open Questions / Deferred
- **Concrete build-schema fields** — the exact declarative keys (per-kind map
syntax, where the shell `run` step sits, how an override is written) are an
implementation-level schema, fixed later, not in Lean.
- **Backend / format enumeration** — beyond `SingleFile`/`FileTree`: which PDF
engine, and the markdown-dialect / React-template export ADR-0005 mentioned for
third-party platforms. Open.
- **`FileTree` and the shell hatch implementation** — specified here but not
implemented in this round (no third-party target instance yet); the MVP
implements `SingleFile`/PDF only and marks the rest deferred.
- **Override granularity** — exactly which pieces of a build a file may override
(numbering only? arbitrary presentation? the per-kind map itself?) is fixed as
needed; this ADR commits only that an override layer exists and is file-resident.
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# ADR 0010: Checker Diagnostics, Legal Lesson, And The Check Pipeline
## Status
Accepted — for the decisions below. **Backfills the "full lesson legality"** item
ADR-0005 explicitly deferred ("the complete definition of a legal lesson; this
ADR fixes only the one seed rule"). Builds on ADR-0005's seed (missing render ⇒
warning) and ADR-0009 (target = build). Some items deferred; see *Open Questions*.
## Context
The checker is the product's moat — the thing that "stands in Lean's position" at
runtime, validating an engineering file and emitting helpful fix hints. The MVP
implementation grew a **diagnostic taxonomy** (seven codes), a notion of when a
lesson is **legal** (publishable / buildable), and an ordered **check pipeline**
and then treated all three as "implementation detail." They are not. What each
error class *means*, whether it blocks, what "legal" *is*, and in what order
checks run with what gating are exactly the non-obvious domain decisions the
constitution (rule 5) says must be pinned: the developer and the agent would
otherwise each assume a different answer. This ADR lifts them into the contract.
A deliberate boundary runs through the taxonomy. Some checks the model can state
structurally (a manifest part points at a folder that exists; a declared kind is
known). Others are **external facilities** the semantic model cannot itself
decide — does this typst source compile? do its cross-references resolve? does
this data conform to its JSON Schema? Those are real, contractually-named
diagnostics, but their *verdict* comes from an implementation oracle (the typst
compiler, the schema validator), not from Lean. The contract names them and fixes
their severity; it does not pretend to decide them.
## Decision
### The diagnostic taxonomy (seven classes)
Each diagnostic carries a **code**, a **severity** (`error` | `warning`, per
ADR-0005 / `Spec.Courseware.Severity` — two-valued, no info/note), a message, an
optional source span, and a fix hint. The MVP classes:
| Code | Meaning | Severity | Kind |
|------|---------|----------|------|
| `PartPathMissing` | A manifest `[[parts]]` entry points at a folder that does not exist (or escapes the root via `..`). | error | structural |
| `UnknownKind` | A part declares a kind not in the known kind set (and: a part/`element.toml` kind mismatch). | error | structural |
| `MissingContentFile` | A `content` field required by the kind's schema has no corresponding `<field>.typ` on disk. | error | structural/schema |
| `SchemaViolation` | Instance data does not conform to its kind's JSON Schema (bad scalar type, missing required, stray key); also the fallback for a malformed `manifest.toml`/`element.toml`. | error | schema / external |
| `DanglingReference` | A reference does not resolve — a relative import outside the import boundary, or an unresolved cross-reference. | error | external |
| `TypstCompile` | The assembled typst source fails to compile (syntax error, unresolved `@ref`, etc.). | error | external |
| `RenderIgnored` | A used kind has no render rule for a declared target; the element is omitted from that export. | **warning** | semantic |
Six are `error` (blocking); **`RenderIgnored` alone is a `warning`** — the
ADR-0005 seed rule, restated. The split between *structural* (model decides),
*schema/external* (oracle decides), and *semantic* (the coverage rule) is the
boundary described above.
`RenderIgnored`'s severity is pinned to `warning` as a named contract fact (Lean:
`renderIgnoredSeverity`), so "it does not block export" is greppable and
alignable, not an inline literal.
### A legal lesson has no error-level diagnostic
A lesson is **legal** (valid, publishable) iff the check pipeline produces **no
`error`-severity diagnostic**. Warnings do not affect legality — a lesson with
`RenderIgnored` warnings is still legal and still exports (lossily). This is the
complete legality predicate ADR-0005 deferred: legality is defined *by the
diagnostic set*, not by a separate hand-written rulebook. New rules enter
legality by adding diagnostics, keeping one source of truth.
### External-facility diagnostics are oracle verdicts, not model judgments
`TypstCompile`, `DanglingReference`, and the schema-conformance face of
`SchemaViolation` assert facts the semantic model **cannot decide on its own**:
they depend on running the typst compiler and the schema validator. The contract
therefore models them as **abstract predicates** (e.g. "this source compiles",
"these references resolve", "this data conforms") **parameterized over an
implementation-provided oracle**. The Lean spec states *that* such a diagnostic
exists, what it means, and its severity — and explicitly marks that its truth
value is supplied by the implementation, not computed in Lean. This keeps the
contract honest (it does not embed a typst compiler) while still naming the
diagnostic as part of the legality definition.
### The check pipeline: ordered phases with compile gating
`check` runs five phases in a fixed order, collecting all diagnostics:
1. **load** — parse `manifest.toml` + each `element.toml`. A hard failure (no
parseable lesson) stops the pipeline; nothing downstream can run.
2. **structural** — every part path exists, no `..`, kind is known, part/element
kinds agree. Parts already flagged missing here are skipped downstream (no
piling diagnostics on one root cause).
3. **schema** — each present, known-kind part's data validated against its kind
schema (scalars + required content files).
4. **typst compile** — the external-facility phase. **Gated: it runs only if
phases 13 produced zero errors**, because compiling known-broken input yields
noise on top of the real cause. When it runs, it compiles each declared target
(ADR-0009), deduping identical diagnostics across targets.
5. **render-coverage** — the semantic warning rule; runs regardless of gating.
`build --target T` runs phases 13, refuses (no artifact) if any error, else
compiles + exports T's artifact (ADR-0009). It does **not** run coverage —
coverage describes export loss, informational for `check`, not a gate on one
target's build.
The **order and the gating are contract**, because they determine which
diagnostics a user sees (a syntax error behind a missing file is hidden until the
file exists — deliberate). The per-phase *algorithms* are not pinned in Lean
(depth ceiling, rule 5): the spec fixes the phases, their order, and the gate, not
how each check is computed.
## Consequences
- "Is this lesson done / publishable?" has one precise answer: no error-level
diagnostic. The CLI's exit code (1 on any error) is this predicate.
- Adding a checker rule = adding a diagnostic with a severity; legality updates
automatically, no separate legality rulebook to keep in sync.
- The contract can name compile/reference/schema diagnostics as part of legality
without embedding the oracles that decide them — the spec stays a semantic
master, not a re-implementation.
- The implementation's `DiagCode` enum, `CheckReport`, and phase sequence now have
a contract to align to (by review, per the constitution — no CI gate); the
alignment is documented at both ends.
## Open Questions / Deferred
- **Additional codes.** A dedicated `ManifestMalformed` (today folded into
`SchemaViolation`) and finer schema/reference codes may be added; the taxonomy
is open to growth, each addition a deliberate decision.
- **Cross-lesson diagnostics.** Anything about a *course* (arrangement of lessons)
or the question bank is out of scope — those models are still OPEN (ADR-0005).
- **Severity of future classes.** Each new diagnostic's blocking/non-blocking
status is decided when introduced; only the seven above are fixed here.
- **Warning sub-structure.** Whether warnings ever need ordering/grouping or a
third "info" level remains deferred (ADR-0005 kept `Severity` two-valued).