ebox/docs/maintainer/ebox-current-implementation-reference.en.md
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refactor: classify Ebox retained state for M2a E1
2026-08-31 20:11:16 +08:00

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Ebox current implementation reference

This is the maintainer entry point for the standalone Ebox repository. It describes the package boundary, active files, runtime model, invariants, and verification commands. The historical Ebox checkout is a separate legacy source tree; it is not a dependency of this package. ETAF is the sibling higher-level package.

Reading order

  1. Read AGENTS.md for repository rules.
  2. Read README.md for installation and the public boundary.
  3. Read docs/user/ebox-user-guide.en.md for public construction patterns.
  4. Read docs/user/ebox-api-reference.en.md for the complete public function/property/configuration inventory.
  5. Read this document for ownership and verification.
  6. Read docs/maintainer/ebox-incremental-update-contract.en.md before changing publication or patch planning.
  7. Read docs/maintainer/ebox-performance-architecture-analysis.en.md before changing performance, retained surfaces, or incremental data flow.

Active source map

File Owns
ebox.el Public facade, construction helpers, rendering, TP-backed buffer entry points, scrolling, commit, and byte compilation.
ebox-cache.el Measurement/render cache records, invalidation, and cache reports.
ebox-source.el Opaque source handles, immutable author source records, and candidate source indexes.
ebox-state-contract.el Closed retained-state ownership inventory and read-only compatibility-mirror rebuild probes.
ebox-style.el ECSS property schemas, declarations and cascade, shorthand expansion, computed style, colors, borders, and dirty effects.
ebox-tree.el Node traversal, logical child access, ECSS subject adaptation, identity, parent paths, keys, and tree snapshots.
ebox-child-range.el Immutable weighted segment trie, sparse persistent key trie, Range replacement, and Gate A metrics.
ebox-measure.el Display-sensitive character/face/pixel measurement and measurement caches.
ebox-fragment.el Layout fragments, signatures, snapshots, spans, and dirty-kind facts.
ebox-render-context.el Render-local context and publication inputs.
ebox-layout.el Box, row, column, stack, concatenation, spacer, wrapping, and common formatting context.
ebox-flex.el Flex normalization, lines, free-space distribution, and flex rendering.
ebox-grid.el Tracks, implicit tracks, fractions, minmax/repeat, gap, placement, span, and alignment.
ebox-surface.el Candidate identity, projection to TP surface plans, retained mount/update, and the rollback-capable Ebox runtime-state participant.
ebox-buffer-backend.el Propertized render-string construction, display spaces/borders, and existing-slot shaping.
ebox-incremental.el Runtime state, snapshots, dirty planning, owner escalation, pure commit preparation, and reports.
ebox-dsl.el Data-oriented .ebox forms and lowering to public nodes.
ebox-selector.el CSS-like string parsing to ECSS structured selector ASTs, indexed candidate lookup, and tree/runtime query handles.
ebox-native-reflow.el Optional native module loading/build commands, ABI checks, bounded sessions, and Elisp fallback.

The package intentionally does not include application Components, UI controls, reactive data, or a playground implementation. Those are sibling-package responsibilities.

The active contract also covers Makefile, .github/workflows/ci.yml, tests/ebox-core-render-tests.el, tests/ebox-state-contract-tests.el, tests/ebox-child-range-tests.el, tests/ebox-grid-tests.el, tests/ebox-commit-tests.el, tests/ebox-surface-tests.el, tests/ebox-dsl-tests.el, tests/ebox-flex-tests.el, tests/ebox-selector-tests.el, tests/ebox-package-tests.el, tests/ebox-visual-check-tests.el, tests/ebox-docs-contract-tests.el, tests/ebox-ci-contract-tests.el, native/Cargo.toml, native/Cargo.lock, native/build.rs, native/vendor/emacs-30/emacs-module.h, native/src/lib.rs, native/src/layout.rs, native/c/ebox_module.c, scripts/ebox-package-lint.el, scripts/ebox-visual-check.el, and scripts/ebox-performance-evaluator.el.

Runtime model

The normal data flow is:

Caller-owned Source Tree
  -> Surface-owned Runtime Copy
  -> TP Candidate Objects
  -> Element Tree
  -> Computed Style
  -> Box/Formatting Context
  -> Measurement + Render Context
  -> Layout Fragment/Snapshot
  -> Ebox Dirty/Patch Plan
  -> TP Surface Plan
  -> TP Atomic Publication
  -> Ebox Runtime-State Participant
Model Owner Must not own
Source/Element Tree ebox-child-range.el, ebox-tree.el, ebox-dsl.el Published buffer mutation.
State Ownership Contract ebox-state-contract.el Live publication or mutable authority.
Computed Style ebox-style.el Layout identity or patch execution.
Measurement ebox-measure.el Application state or dirty policy.
Formatting Context ebox-layout.el, ebox-flex.el, ebox-grid.el Buffer edits.
Fragment/Snapshot ebox-fragment.el, ebox-incremental.el Source parsing or identity allocation.
Surface Projection and Runtime Publication ebox-surface.el plus public TP surface APIs Ebox layout decisions or generic diff execution.
Dirty/Patch Semantics ebox-incremental.el Raw measurement or TP buffer writes.
Generic Surface Diff/Commit TP Ebox geometry, dirty policy, or application state.
Render-String Backend ebox-buffer-backend.el Live buffer writes, retained markers, style semantics, or application state.

Invariants

  • Public Ebox nodes are data; ebox--* names are private.
  • A one-element horizontal list such as '(420) denotes pixels; ordinary horizontal numbers denote character columns.
  • ebox-render uses an ephemeral TP surface and does not publish to a buffer; ebox-render-to-buffer mounts a retained TP surface; ebox-display-buffer displays that same retained-surface path; and ebox-commit prepares Ebox semantics and updates the mount through TP. Ebox exposes no parallel public macro that erases a live buffer and evaluates arbitrary body forms.
  • Declarative input remains caller-owned. Live mount/commit assigns identity only on a surface-owned copy, so the same source can back multiple buffers.
  • Logical :id values resolve through ebox-region-resolve to opaque surface-scoped handles. Handles, not source-tree numeric ids, distinguish the same logical region mounted in different buffers.
  • A failed candidate leaves the previous buffer, runtime identity, and report intact.
  • Keys are local to siblings; visible strings are never used as identity.
  • Ebox owns logical node-to-subject adaptation and id/class/type candidate indexes; ECSS's public structured matcher is the only selector truth source. Subjects expose built-in id/key plus explicit :selector-attributes, never visible content, layout state, or runtime containers.
  • ebox-style--property-definitions is the single Ebox author-property source. Load time derives Ebox's read-only lookup index and one immutable ECSS package schema from it; the surface schema is composed once, and node construction or updates never re-register or copy the whole schema domain.
  • E1 freezes the closed M2a target classification for retained state: immutable generation facts; generation-bound scroll/native authority; opaque TP client-state custody; one-way compatibility mirrors; and disposable caches. Every inventory row separately records the current v1 storage shape plus its target owner, mutation API, generation binding, rollback, rebuild proof, and cleanup. Current v1 TP client state still holds the whole Ebox state plist until a later checkpoint changes that storage shape. The E1 mirror probes only rebuild and compare projections; they never mutate live state.
  • owner-rerender is broader than span-patch, which is broader than paint-patch.
  • Buffer coordinates belong to the generation that produced them and must be refreshed after mutation.
  • Grid uses the normal measurement and rendering pipeline. Native reflow may reject an ineligible tree and must fall back to Elisp without changing correctness.
  • Loading Ebox never builds or installs the optional Rust module.
  • Phase 9 is complete: first mount, declarative commit, handle/selector update, viewport/theme update, batch flush, and scroll update all publish through TP surfaces. Phase 10 has unified selector parsing, matching, and cascade under ECSS; Ebox computes dirty/layout ownership and joins its opaque runtime state to the TP rollback-capable transaction, with no second live buffer executor.
  • Successful reports preserve the Ebox semantic strategy and planned publication scope, then add :publication-scope tp-surface, TP physical operation counts, surface revision, scoped/full-root facts, and retained-object reconciliation counts.

Grid contract

Grid currently covers fixed and pixel tracks, auto, fractional tracks, minmax, repeat, implicit rows and columns, row/column gap, auto-flow, one-based placement, positive spans, item/content alignment, and ordinary buffer rendering and updates. Ebox supports canonical font inputs (:font-family, :font-size, :font-weight, and :font-style) plus text-decoration paint; full browser typography is outside the contract. Percentages, absolute positioning, z-index, border radius, shadows, and browser-level bidi are also outside the contract.

Active examples and tests

The standalone package has no bundled playground fixtures. The migrated .ebox references and their file runner live in the sibling ebox-playground package; this repository tests the DSL and layout primitives directly. The regression boundary is the ERT files under tests/ listed in the repository's documentation contract. No test in this package should load the historical full-stack source tree or an application framework.

Verification matrix

make load
make compile
make check
make core-tests
make child-range-tests
make grid-tests
make ebox-commit-tests
make surface-tests
make visual-check-tests
make package-tests
make selector-tests
make dsl-tests
make flex-tests
make state-contract-tests
make docs-contract-tests
make ci-contract-tests
make performance-evaluator
make visual-check
make native-rust-tests
make native-build
make package-lint
make diff-check

Run focused tests first, then make check after changes to shared rendering, Grid, public constructors, or documentation. Native changes require the Rust checks and a native build.