giles 952ff2289c vm-ext: enable JIT in epoch serving mode (Smalltalk 847/847, Datalog 356/356)
register_jit_hook is now installed in the persistent (epoch) serving-mode
branch of sx_server.ml, not just --http/cli/site. Smalltalk-on-SX conformance
under JIT is 847/847 — identical to the no-JIT baseline; Datalog 356/356.
run_tests --jit/no-jit are byte-identical before/after (no regression).

Five distinct root causes fixed (not one "miscompile"):

1. Serving mode never loaded lib/compiler.sx, so JIT used the native
   Sx_compiler.compile stub (arity-0 bytecode, params as GLOBAL_GET →
   "VM undefined: <param>"). Server-mode branch now loads compiler.sx
   before registering the hook, matching http/cli/site.

2. compile-cond / compile-case-clauses / compile-guard-clauses only treated
   keyword :else and true as the catch-all, not the bare symbol `else` that
   the CEK's is-else-clause? accepts → GLOBAL_GET "else". (lib/compiler.sx)

3. OP_DIV produced a float for non-divisible Integer/Integer (1/2 → 0.5)
   instead of the exact Rational the "/" primitive returns. Now delegates to
   the primitive, matching CEK. (sx_vm.ml)

4. OP_EQ / _fast_eq lacked Rational/ListRef cases that the "=" primitive's
   safe_eq has → (= 1/2 1/2) false under JIT. OP_EQ now delegates non-scalars
   to the "=" primitive; _fast_eq gained rational + ListRef. (sx_vm.ml,
   sx_runtime.ml)

5. Continuation-based control flow (Smalltalk ^expr non-local return, block
   escape, exceptions via call/cc) can't run in the stack VM. New data-driven
   exclusion set Sx_types.jit_excluded + `jit-exclude!` primitive, consulted in
   jit_compile_lambda (covers both the CEK hook and vm_call's tiered path).
   lib/smalltalk/eval.sx self-declares its continuation dispatch core
   interpret-only; pure helpers still JIT. The SUnit suite-runner test helper
   pharo-test-class miscompiles mid-loop and is excluded in tests/tokenize.sx.

Also adds SX_JIT_DENY / SX_JIT_ONLY env-var bisection filters to the serving
hook. Known residual documented in plans/jit-bytecode-correctness.md: the hook
re-runs a failed VM execution via CEK (correct result, possible duplicate side
effects); adopting run_tests' propagate-don't-rerun semantics is deferred to
avoid changing shared VM/CEK behavior under this loop.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-19 20:36:30 +00:00
2026-03-25 00:36:57 +00:00
2026-02-24 20:10:23 +00:00

Rose Ash

Monorepo for the Rose Ash cooperative platform — six Quart microservices sharing a common infrastructure layer, a single PostgreSQL database, and an ActivityPub federation layer.

Services

Service URL Description
blog blog.rose-ash.com Content management, Ghost sync, navigation, editor
market market.rose-ash.com Product listings, scraping, market pages
cart cart.rose-ash.com Shopping cart, checkout, orders, SumUp payments
events events.rose-ash.com Calendar, event entries, container widgets
federation federation.rose-ash.com OAuth2 authorization server, ActivityPub hub, social features
account account.rose-ash.com User dashboard, newsletters, tickets, bookings

All services are Python 3.11 / Quart apps served by Hypercorn, deployed as a Docker Swarm stack.

Repository structure

rose-ash/
├── shared/              # Common code: models, services, infrastructure, templates
│   ├── models/          # Canonical SQLAlchemy ORM models (all domains)
│   ├── services/        # Domain service implementations + registry
│   ├── contracts/       # DTOs, protocols, widget contracts
│   ├── infrastructure/  # App factory, OAuth, ActivityPub, fragments, Jinja setup
│   ├── templates/       # Shared base templates and partials
│   ├── static/          # Shared CSS, JS, images
│   ├── editor/          # Prose editor (Node build, blog only)
│   └── alembic/         # Database migrations
├── blog/                # Blog app
├── market/              # Market app
├── cart/                # Cart app
├── events/              # Events app
├── federation/          # Federation app
├── account/             # Account app
├── docker-compose.yml   # Swarm stack definition
├── deploy.sh            # Local build + restart script
├── .gitea/workflows/    # CI: build changed apps + deploy
├── _config/             # Runtime config (app-config.yaml)
├── schema.sql           # Reference schema snapshot
└── .env                 # Environment variables (not committed)

Each app follows the same layout:

{app}/
├── app.py               # App entry point (creates Quart app)
├── path_setup.py        # Adds project root + app dir to sys.path
├── entrypoint.sh        # Container entrypoint (wait for DB, run migrations, start)
├── Dockerfile           # Build instructions (monorepo context)
├── bp/                  # Blueprints (routes, handlers)
│   └── fragments/       # Fragment endpoints for cross-app composition
├── models/              # Re-export stubs pointing to shared/models/
├── services/            # App-specific service wiring
├── templates/           # App-specific templates (override shared/)
└── config/              # App-specific config

Key architecture patterns

Shared models — All ORM models live in shared/models/. Each app's models/ directory contains thin re-export stubs. factory.py imports all six apps' models at startup so SQLAlchemy relationship references resolve across domains.

Service contracts — Apps communicate through typed protocols (shared/contracts/protocols.py) and frozen dataclass DTOs (shared/contracts/dtos.py), wired via a singleton registry (shared/services/registry.py). No direct HTTP calls between apps for domain logic.

Fragment composition — Apps expose HTML fragments at /internal/fragments/<type> for cross-app UI composition. The blog fetches cart, account, navigation, and event fragments to compose its pages. Fragments are cached in Redis with short TTLs.

OAuth SSO — Federation is the OAuth2 authorization server. All other apps are OAuth clients with per-app first-party session cookies (Safari ITP compatible). Login/callback/logout routes are auto-registered via shared/infrastructure/oauth.py.

ActivityPub — Each app has its own AP actor (virtual projection of the same keypair). The federation app is the social hub (timeline, compose, follow, notifications). Activities are emitted to ap_activities table and processed by EventProcessor.

Development

Quick deploy (skip CI)

# Rebuild + restart one app
./deploy.sh blog

# Rebuild + restart multiple apps
./deploy.sh blog market

# Rebuild all
./deploy.sh --all

# Auto-detect changes from git
./deploy.sh

Full stack deploy

source .env
docker stack deploy -c docker-compose.yml coop

Build a single app image

docker build -f blog/Dockerfile -t registry.rose-ash.com:5000/blog:latest .

Run migrations

Migrations run automatically on the blog service startup when RUN_MIGRATIONS=true is set (only blog runs migrations; all other apps skip them).

# Manual migration
docker exec -it $(docker ps -qf name=coop_blog) bash -c "cd shared && alembic upgrade head"

CI/CD

A single Gitea Actions workflow (.gitea/workflows/ci.yml) handles all six apps:

  1. Detects which files changed since the last deploy
  2. If shared/ or docker-compose.yml changed, rebuilds all apps
  3. Otherwise rebuilds only apps with changes (or missing images)
  4. Pushes images to the private registry
  5. Runs docker stack deploy to update the swarm

Required secrets

Secret Value
DEPLOY_SSH_KEY Private SSH key for root access to the deploy host
DEPLOY_HOST Hostname or IP of the deploy server

Infrastructure

  • Runtime: Python 3.11, Quart (async Flask), Hypercorn
  • Database: PostgreSQL 16 (shared by all apps)
  • Cache: Redis 7 (page cache, fragment cache, sessions)
  • Orchestration: Docker Swarm
  • Registry: registry.rose-ash.com:5000
  • CI: Gitea Actions
  • Reverse proxy: Caddy (external, not in this repo)
Description
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