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Fensu

Keeping Python, TypeScript, JavaScript, Svelte, and Rust repos from turning into spaghetti.

Fensu means "fence" in Japanese.

Most linters catch bad code inside files. Fensu catches architectural drift: code crossing the wrong boundary, living in the wrong module, or growing into the wrong shape.

As a repository grows, code moves, lessons get forgotten, and the mental map decays. Tests preserve behavior and types preserve interfaces. Fensu makes the repository's architectural expectations executable.

Fensu enforces:

  • which layers may import which;
  • what each module or role file may contain;
  • whether orchestrator functions stay small;
  • whether dataflow and mutation are explicit;
  • whether names such as validate_* mean what they claim.

It ships a coherent default architecture rather than a blank rule framework, then lets projects disable, extend, or replace parts deliberately.

Fensu is functional and self-hosting, but remains pre-release.

Installation

pip install fensu

The authoring/API distribution is fensu. It installs the lockstep fensu-cli binary package, which exclusively owns the fensu command. Core-only check, init, rule, map, skills, and --version execution is native. Configured Python custom rules launch one compatible Python host only for the policy metadata or callbacks they require.

Built-in commands are available only through the native fensu executable; python -m fensu is retired. Installing fensu-cli from its source distribution requires Rust 1.95 or newer.

Fensu requires Python 3.12+ and includes a compiled analysis core. Prebuilt wheels cover Linux (x86_64, aarch64), macOS (Intel, Apple silicon), and Windows (x86_64). On other platforms, pip builds from source and requires a Rust toolchain at version 1.95 or newer.

Quick Start

From the directory containing an existing repository's pyproject.toml, detect the layout, write a validated configuration with the full ruleset enabled, run an initial check, and install repository-local agent guidance:

fensu init --yes

For an empty repository, provide the package name to scaffold src/ and tests/:

fensu init --yes --name my_package

Pass --no-skills only when automation explicitly requires configuration without repository-local guidance. Do not call onboarding complete until this succeeds:

fensu skills --check

Then run:

fensu check

To configure manually instead, add a minimal fensu.toml at the repository root:

roots = ["src/my_package"]

tests defaults to ["tests"], tooling is optional, caching is enabled by default, and every rule family is on by default. Install and verify agent guidance after writing configuration manually:

fensu skills
fensu skills --check
fensu check

Product roots and tooling receive structural rules; tests receive test-convention and annotation rules.

Rust workspaces

Rust rules run directly in the fensu-rust analyzer through the normal Fensu CLI. Configure a Cargo workspace in fensu.toml:

[targets.rust]
analyzer = "rust"
roots = ["crates"]
tests = []
tooling = []
rule_packs = ["rust"]
select = ["FPRS"]

Run fensu check --target rust. Cargo discovers workspace members, package names, and targets; use roots = ["src"] for a single-package repository. The Rust pack enables all 117 FPRS* rules, covering layout, imports, dependency boundaries, naming, function shape, hygiene, and test conventions. Existing structural thresholds are the defaults.

Adjust individual rules in the same file:

[targets.rust.rule_options.FPRSS010]
max_arguments = 8

Selection, warnings, ignores, file exceptions, and caching use the usual Fensu settings. Cargo manifests, the lockfile when present, Rust sources, and target configuration participate in cache identity. Analysis does not create or update a lockfile. See Rust analyzer configuration for rule options and tooling boundaries.

Default Structure

The default architecture follows SQLBuild Compiler Rules v0.101.1.

Product code uses domain, optional subdomain, then role. Every leaf domain or subdomain owns meaningful behavior through a direct main/ containing at least one entry module. Branch-domain parents do not need their own main/; their leaf subdomains do. Tests mirror the code they cover; tooling uses one ownership level because scripts/ already establishes the outer boundary.

src/my_package/
└── domain/
    └── subdomain/
        ├── main/
        │   └── run.py
        ├── _helpers/
        ├── classes/
        ├── models.py
        ├── types.py
        ├── constants.py
        └── exceptions.py
tests/unit/src/my_package/domain/subdomain/
├── _test_types.py
└── test_run.py
scripts/
├── run_tool.py
└── tool_name/
    ├── main/
    ├── _helpers/
    └── classes/

Do not create an empty or initializer-only main/ to satisfy the layout. If a package contains only passive models, types, constants, exceptions, or classes, move those declarations into the closest domain or subdomain whose main/ behavior owns and uses them. Fixed role files are siblings of _helpers/, never descendants such as _helpers/entry/models.py.

Direct scripts/*.py files are thin command adapters. Supporting logic belongs under scripts/<tool>/<role>/.

Targets may declare path-scoped ownership roots when domains begin at different physical depths. The first package below each matched ownership root is a domain; the next non-role package is its optional subdomain. Without this setting, each Python source root, Cargo source root, or web lib/ directory is the ownership root:

[targets.app]
analyzer = "python"
roots = ["src/example"]
ownership_roots = [
  "src/example/sources/*",
  "src/example/runtime",
]
src/example/
├── sources/
│   ├── region_a/
│   │   ├── orders/main/process.py
│   │   └── partners/importing/main/load.py
│   └── region_b/
│       └── inventory/main/refresh.py
└── runtime/
    ├── scraping/main/collect.py
    └── observability/main/report.py

Here each directory matched by sources/* and the explicit runtime/ directory establishes an ownership root. orders, partners, inventory, scraping, and observability are domains; importing is a subdomain. The most-specific matching ownership root wins. Structural directories above and including an ownership root cannot contain role files or role directories directly. Mirrored tests inherit the production ownership root they cover. Rust, TypeScript, and Svelte use the same path-scoped model. Declarations must resolve beneath a configured runtime source, select analyzable files, and own at least one effective path after more-specific matches are applied.

Core Commands

fensu init
fensu check
fensu rule FFS131
fensu map run_plan --depth 3

fensu init detects and validates an onboarding configuration, fensu check enforces the configured architecture, fensu rule explains one rule and its remediation, and fensu map renders a conservative project call tree. Downstream mapping is the default; --direction upstream shows proven callers. Mapping follows project functions and class methods when imports, annotations, constructors, or return types prove the receiver. Unique protocol dispatch can resolve to one concrete implementation; ambiguous protocols and untyped parameters remain visible as unresolved dispatch seams rather than guessed implementations. Mapping does not require Fensu configuration or rule adoption.

fensu check stores disposable evaluation results in a repository-local SQLite database under .fensu/cache/ and reuses them only after validating source, configuration, rule, implementation, and project-query inputs. Caching is enabled by default; set cache.enabled = false in configuration or pass --no-cache for an explicit uncached check. --cache overrides a disabled project preference for one invocation. Deleting .fensu/cache/ is always safe; ignore that directory rather than the complete .fensu/ namespace, which is reserved for other Fensu-owned state.

Enforce It, Then See It

Because Fensu enforces the structure, it can also render it. fensu map produces a deterministic call tree with clickable path:line locations, class-qualified method names, and explicit protocol seams while marking unresolved dynamic calls, depth limits, and cycles. Downstream walks follow proven callees; upstream walks invert those proven edges and omit callers Fensu cannot resolve.

$ fensu map run_map --depth 4

run_map(...)  src/fensu/cli/main/map.py:21
├── _parser(...)  src/fensu/cli/main/map.py:53
├── resolve_mapping_project(...)  src/fensu/mapping/main/resolve_project.py:11
│   └── resolve_mapping_project(...)  src/fensu/mapping/_helpers/project.py:15
│       ├── _find_project_root(...)  src/fensu/mapping/_helpers/project.py:73
│       ├── _explicit_source(...)  src/fensu/mapping/_helpers/project.py:65
│       ├── _optional_config_source(...)  src/fensu/mapping/_helpers/project.py:38
│       │   └── find_config_source(...)  src/fensu/config/main/find_config.py:12  (depth limit)
│       └── _configured_project(...)  src/fensu/mapping/_helpers/project.py:45
│           ├── load_config(...)  src/fensu/config/main/load_config.py:15  (depth limit)
│           └── _configured_source(...)  src/fensu/mapping/_helpers/project.py:57
└── build_call_map(...)  src/fensu/mapping/main/build.py:12
    ├── provider(...)  src/fensu/mapping/main/build.py:24  (unresolved parameter call)
    └── render_tree(...)  src/fensu/mapping/_helpers/render.py:19
        ├── _child_lines(...)  src/fensu/mapping/_helpers/render.py:41
        │   └── _child_lines(...)  src/fensu/mapping/_helpers/render.py:41  (cycle)
        └── _label(...)  src/fensu/mapping/_helpers/render.py:88

The map is useful precisely because it is not guessing. fensu check enforces layers, roles, and public surfaces first, and fensu map then renders the structure the code is required to expose.

Philosophy

Fensu is strict by default wherever it can make an honest deterministic claim. Following the rules should remove repeated architectural decisions from everyday work. Deliberate differences belong in selection, configuration, or custom rules, where they remain visible, rather than in scattered inline suppressions.

Unavoidable external calling conventions can use exact symbol-scoped exceptions:

[[rule_exceptions]]
rule = "FFS120"
path = "src/my_package/integrations/_helpers/callbacks.py"
symbols = ["ProgressCollector.update"]
reason = "The external API invokes this callback positionally."

Python and web exceptions accept one exact rule code, repository-relative source file, and one or more qualified symbols. Rust exceptions are file-level and may target an exact .rs or Cargo.toml path. Globs, directories, line numbers, and inline suppression comments are not supported. fensu check rejects stale exceptions that no longer suppress a fault.

For a justified rule/path intersection that is broader than one exact finding, keep the rules and project context active with [[rule_ignores]]:

[[rule_ignores]]
rules = ["FFA", "XGENERATED"]
paths = ["src/my_package/generated/**"]
reason = "Generated interfaces are checked by their source schema."

One declaration must match both the finding's rule code and its reported path. Unlike exact exceptions, path-scoped ignores are not stale-checked.

Agent Skills

Generate repository-aware guidance from the active ruleset:

fensu skills
fensu skills --global

The generated skill includes Fensu usage, rule-supported architecture examples, navigation and work-handoff guidance, and every enabled core and custom rule. Existing user-authored skill files are preserved unless --force is supplied.

Custom Rules

Custom checks use X... codes and the same RuleContext as core rules. Once configured, they participate in fensu check, fensu rule, and generated agent skills. Rules can declare typed RuleOption values, repositories can override them under [rule_options.<CODE>], and checks read the validated current value through ctx.option(). Rules can also use ctx.facts, ctx.project, ctx.text, ctx.syntax, and ctx.relations; these are the same backend-neutral analysis zones used by Fensu's built-in rules. Project and filesystem reads made through ctx.project are tracked for cache invalidation. Raw ast.Module access remains available for checks that need unrestricted Python syntax traversal. Semantic fact contracts and author-facing models are public Python APIs, while their production extraction has one native Rust owner; raw AST, syntax, and relation artifacts remain lazy CPython capabilities. Keep project-owned checks in the canonical scripts/fensu_policy/rules/ tooling role and load them explicitly:

tooling = ["scripts"]
rule_paths = ["scripts/fensu_policy/rules"]

See the custom-rule guide for the complete API and configuration.

Documentation

The quickstart, architecture model, configuration reference, adoption guide, and CLI reference live at docs.fensu.dev.

Release files for fensu 0.22.0

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fensu-0.22.0-cp312-abi3-manylinux_2_17_x86_64.manylinux2014_x86_64.whl CPython 3.12 abi3 Linux glibc 2.17+ x86-64 Details
fensu-0.22.0-cp312-abi3-manylinux_2_17_aarch64.manylinux2014_aarch64.whl CPython 3.12 abi3 Linux glibc 2.17+ ARM64 Details
fensu-0.22.0-cp312-abi3-macosx_11_0_arm64.whl CPython 3.12 abi3 macOS 11.0+ ARM64 Details
fensu-0.22.0-cp312-abi3-macosx_10_12_x86_64.whl CPython 3.12 abi3 macOS 10.12+ x86-64 Details

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