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Kinneyzhang fad54d7fb1 feat(ebox): project layouts into TP surface plans
Assign retained TP identity before layout and emit pure, runtime-free surface plans with exact character and text-property equivalence. Keep live publication unchanged for the staged cutover and add focused surface, package, docs, and CI contracts.\n\nVerified: make check EMACS=/Applications/Emacs.app/Contents/MacOS/Emacs\nVerified: WERROR byte compilation for all 16 active Lisp files\nVerified: focused ebox-surface checkdoc has zero warnings
2026-08-06 04:13:13 +08:00
.github/workflows feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
docs feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
examples refactor: move playground fixtures to sibling package 2026-08-05 20:36:24 +08:00
native feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
scripts feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
tests feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
.gitignore feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
AGENTS.md feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
DESIGN.md feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
DESIGN.zh.md feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
ebox-buffer-backend.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-cache.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-dsl.el refactor: move playground fixtures to sibling package 2026-08-05 20:36:24 +08:00
ebox-flex.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-fragment.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-grid.el fix: size grid auto rows after item width resolution 2026-08-05 20:42:58 +08:00
ebox-incremental.el feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
ebox-layout.el fix: measure full stack leaf width 2026-08-05 12:01:36 +08:00
ebox-measure.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-native-reflow.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-render-context.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-selector.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-style.el feat(ebox): publish standalone low-level package 2026-08-05 09:15:35 +08:00
ebox-surface.el feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
ebox-tree.el feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
ebox.el feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
Makefile feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
README.md feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00
README.zh-CN.md feat(ebox): project layouts into TP surface plans 2026-08-06 04:13:13 +08:00

Ebox

Ebox is a standalone, pixel-precise box and layout engine for Emacs. It provides the low-level rendering substrate used by the sibling ETAF text-application framework. Ebox can also be used directly without Components, application state, or ETAF.

Install and use

Install TP first, then install Ebox through a package manager so its declared dependency is resolved. For sibling source checkouts, place both directories on load-path:

(add-to-list 'load-path "/path/to/github/tp")
(add-to-list 'load-path "/path/to/github/ebox")
(require 'ebox)

(ebox-render-to-buffer
 "*Ebox Example*"
 (ebox-column
  (ebox-create :content "Hello Ebox"
               :padding '(1 2)
               :border '((1) solid "#8A93A6")
               :color "#263244"
               :bgcolor "#F4F6FB")))

The public model is a tree of Ebox nodes. ebox-create builds a leaf or wrapper node; ebox-column, ebox-row, ebox-flex, and ebox-grid compose nodes; ebox-render returns propertized text; ebox-render-to-buffer publishes it into a buffer; and ebox-commit updates an existing runtime from a fresh root tree.

What belongs here

  • box creation, padding, margins, borders, colors, faces, overflow, and text measurement;
  • row, column, flex, and two-dimensional Grid layout;
  • selectors, stable node identity, keyed reconciliation, buffer rendering, and incremental publication;
  • optional Rust native reflow with an exact Elisp fallback;
  • low-level Ebox DSL files and renderer-focused tests.

ETAF belongs in the sibling package. Install it separately when you need the unified View grammar, Components, reactive state, behaviors, Context, Data Controllers, or application lifecycle. The independent example packages are ebox-playground and etaf-playground.

Repository map

Path Responsibility
ebox.el Public facade and package entry point.
ebox-style.el, ebox-tree.el, ebox-measure.el Style, tree, and measurement models.
ebox-layout.el, ebox-flex.el, ebox-grid.el Formatting contexts and layout algorithms.
ebox-surface.el Pure Ebox runtime/layout projection into generic TP surface plans.
ebox-buffer-backend.el, ebox-incremental.el Buffer publication and incremental updates.
ebox-dsl.el, ebox-selector.el Standalone DSL and tree/runtime queries.
ebox-native-reflow.el, native/ Optional native reflow boundary.
examples/, tests/ Ebox-only examples and regression tests.
docs/user/, docs/maintainer/ Long-lived English and Chinese documentation.

Verification

make load EMACS=/Applications/Emacs.app/Contents/MacOS/Emacs
make compile EMACS=/Applications/Emacs.app/Contents/MacOS/Emacs
make check EMACS=/Applications/Emacs.app/Contents/MacOS/Emacs
make native-rust-tests

Run the smallest focused target first (make grid-tests, make surface-tests, make dsl-tests, or make visual-check-tests), then run make check for shared rendering or public API changes. A sibling TP checkout is found at ../tp by default; override TP_DIR when it lives elsewhere.

Read the Ebox user guide for public construction examples and the current implementation reference for ownership boundaries and invariants.