Implements the Stable and Experimental JPA persistence platform designs against real PostgreSQL, adapted to this repository's fail-closed 19-leaf registry. The design models the platform as 25 Gradle projects. `src/settings.gradle` throws unless the registry holds exactly 19 leaves, so the plan's modules become packages inside `:adapter:outbound:persistence-jpa` (starter in `:app-bootstrap`, testkit in its own source set). The full mapping, the renames this repository's naming gate required, and every deliberate substitution are recorded in `docs/jpa/repository-adaptation.md`. Seven Docker-backed lanes replace the plan's seven JVM test suites. Each fails closed: a lane that discovers nothing, or a container that cannot start, is an error rather than a skip. Three defects the contracts found against a real server: - `CommitFailureClassifier` treated only SQLSTATE 40003, class 08, and transport breaks as completion-unknown. A backend terminated mid-commit reports 57P01, and the commit record may already be in the WAL — so a possibly-committed transaction could be re-run. 57P01/57P02/57P03 now classify as completion-unknown. - `SchemaTenantMigrationOrchestrator` recorded `MigrateResult`'s target version, which is empty for a tenant already current, reporting migrated tenants as unmigrated during a partial rollout. It now reads the applied version back from the tenant's schema history. - `JpaStreamExecutor` checked only the declared return type for reactive publishers, and `RegisteredPostgreSqlCopyLoader` passed the COPY timeout to `SET`, which is parsed before parameter binding. `JpaModuleBoundaryTest` enforces the plan's module map as package rules; `verifyCleanArchitectureDependencies` governs edges between leaves and cannot see these. Its first assertion is that the import is non-empty, because every rule under it is a `noClasses()` rule and would pass vacuously on an empty import. Verified: 128 container tests across all seven lanes, 1183 unit tests, `:adapter:outbound:persistence-jpa:check`, `:app-bootstrap:check`, `verifyCleanArchitectureDependencies`, `verifyOneTypePerFile`. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
36 lines
1.5 KiB
Markdown
36 lines
1.5 KiB
Markdown
# ADR-JPA-001 — The domain owns the persistence model
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- Status: Accepted
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- Date: 2026-08-11
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- Design: §10.1, §23.3
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## Context
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A persistence platform can either own the repository abstraction — a `GenericRepository<T, ID>`
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every aggregate inherits — or provide only the pieces domains assemble themselves.
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## Decision
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The domain owns entities, embeddables, repositories, queries, index requirements, and lock,
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soft-delete, and audit policy. The platform provides no generic CRUD repository and no base
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repository. `JpaRepositoryFragmentSupport` exists, has no `save`, `findById`, `findAll`, or
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`delete`, and is enforced not to acquire them.
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## Consequences
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A generic base repository has one property that looks like a benefit and is not: every aggregate
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gets the same operations. That means each aggregate is offered operations that may be wrong for it —
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a `delete` on an append-only ledger, a `findAll` on a table that will never be small — and, worse,
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one aggregate's later requirement changes the shared base and therefore changes behaviour for
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aggregates nobody reviewed.
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Spring Data already implements CRUD. Re-implementing it adds a layer whose only function is to be
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harder to opt out of.
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The cost is a small amount of repetition: each domain declares the repository interface it needs.
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That repetition is the thing that makes each aggregate's persistence surface reviewable.
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## Enforcement
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`JpaArchitectureRules.noGenericRepository()`; `JpaRepositoryFragmentSupportTest`.
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