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strictcli

A strict CLI framework for Python.

strictcli makes you declare everything -- every command, flag, argument, and environment variable must have help text or the framework errors at registration time. Four types only: str, bool, int, float. No magic type inference, no implicit defaults.

There are Go and TypeScript implementations too, and this one is not a port of either. The surface here is Python's own -- decorators, keyword arguments, a Flag dataclass, ValueError at registration -- and some of the enforcement exists only in Python, because only Python can see it (a handler parameter bound to an optional flag must default to None, since anything else re-introduces the sentinel the declaration removed). What the three implementations hold identical is behavior: the same semantics, the same help bytes, the same schema, and the same error sentence with Python's spellings inside it.

Installation

pip install strictcli

Or with uv:

uv add strictcli

Requires Python 3.11+. One runtime dependency: tomlkit, for comment-preserving TOML config support.

Quickstart

import strictcli

app = strictcli.App("greet", version="1.0.0", help="A greeting app")

@app.command("hello", help="Say hello", effect="read_only")
@strictcli.flag("name", type=str, help="Who to greet", presence="required")
@strictcli.flag("loud", type=bool, default=False, help="Shout it")
def hello(ctx, name, loud):
    msg = f"Hello, {name}!"
    ctx.info(msg.upper() if loud else msg)

app.run()

Every handler is ctx-first: the framework injects a Context as the first positional argument, and flag and arg values follow as keyword arguments. Every command declares its effect -- "read_only" or "mutating" -- and the declaration is mandatory.

$ python greet.py hello --name World
Hello, World!

$ python greet.py hello --name World --loud
HELLO, WORLD!

$ python greet.py hello --help
greet hello -- Say hello

Flags:
  --name <str>         Who to greet [required]
  --loud, --no-loud    Shout it [default: false]

Features

Commands and groups

Top-level commands with @app.command, nested groups with app.group. Groups nest recursively to arbitrary depth via group.group.

db = app.group("db", help="Database operations")
schema = db.group("schema", help="Schema management")

@schema.command("migrate", help="Run migrations", effect="mutating")
def migrate(ctx):
    ctx.info("migrating")

Invoked as myapp db schema migrate.

The presence declaration

Every flag and every positional argument declares exactly one of three facts about itself. Declaring none of them does not register; declaring two does not register.

Fact Spelling Delivered when nothing supplies a value
required presence="required" nothing -- the parse fails with flag '--x' is required
optional presence="optional" None
default default=<value> the declared value
@strictcli.flag("target", type=str, help="Deploy target", presence="required")
@strictcli.flag("note", type=str, help="A note", presence="optional")
@strictcli.flag("retries", type=int, help="Retry count", default=3)

Nothing about presence is inferred. A bool with no declaration is not "false by default", a list[T] with no declaration is not "empty by default" -- an empty collection is declared with default=[] or default={} -- and default=None is not a spelling of optionality: it is refused at registration with a redirect to presence="optional", which is what delivers None.

Requiredness is satisfied by any source that supplies a value: a command-line token, an environment variable, a config file, or an Implies injection. An optional flag makes real tri-state bools possible (--x true, --no-x false, absent absent), and it makes "" a value again instead of an absence sentinel.

ctx.provided(name) answers whether the invocation caused a value: true for cli, env, config and implied, false for default and infra. ctx.source(name) still answers the narrower question of which origin it was.

A handler parameter bound to an optional flag or argument must default to None if it defaults to anything, so the sentinel the declaration removed cannot come back one line later. A choice flag declares required or a default and never optional -- an absent selection is a choice nobody named, so it is named as a choice of its own.

Four flag types

str, bool, int, and float. No magic coercion -- parse errors are clear and immediate.

@strictcli.flag("port", type=int, help="Port number", presence="required")
@strictcli.flag("threshold", type=float, help="Score threshold", presence="optional")
@strictcli.flag("cache", type=bool, default=True, help="Reuse the build cache")
@strictcli.flag("output", type=str, help="Output path", default="out.txt")

Bool flags support --flag / --no-flag negation (disable with negatable=False). A bool declared presence="required" must be passed as --flag or --no-flag; one declared presence="optional" is real tri-state. Float parsing rejects NaN and Inf.

Compound types

list[T] and dict[str, T] for collecting multiple values.

@strictcli.flag("tags", type=list[str], help="Tags to apply", unique=True, default=[])
@strictcli.flag("env", type=dict[str, str], help="Environment variables", default={})

List flags accept --tags a --tags b. Dict flags accept --env KEY=VALUE pairs or JSON objects.

Positional arguments

Two equivalent declaration forms. Every argument declares its presence exactly as a flag does: presence="required", presence="optional", or a default=. A variadic argument always delivers a list, so it declares required (at least one value) or optional (possibly none) and never a default.

# Decorator form
@app.command("show", help="Show a file", effect="read_only")
@strictcli.arg("path", help="File to show", presence="required")
def show(ctx, path): ...

# Inline form
@app.command("copy", help="Copy files", effect="mutating", args=[
    strictcli.Arg(name="src", help="Source", presence="required"),
    strictcli.Arg(name="dst", help="Destination", presence="required"),
])
def copy(ctx, src, dst): ...

Short flag aliases

Single-character shortcuts for any flag.

@strictcli.flag("recursive", short="r", type=bool, default=False, help="Recurse into subdirectories")
@strictcli.flag("output", short="o", type=str, help="Output path", default=".")

Environment variable binding

Flags can be backed by environment variables. Prefix enforcement keeps your config namespace clean.

app = strictcli.App("myapp", version="1.0.0", help="My app", env_prefix="MYAPP")

@strictcli.flag("region", type=str, help="Cloud region", env="MYAPP_REGION", default="us-east-1")

All env vars must start with the declared prefix. Use prefixed=False for external env vars like GITHUB_TOKEN. Precedence: CLI > env > config > default.

Bool env vars accept 1|true|yes / 0|false|no (case-insensitive).

FlagSets

Reusable bundles of flags shared across commands.

auth_flags = strictcli.FlagSet(
    name="auth",
    flags=[
        strictcli.Flag(name="token", type=str, help="Auth token", presence="required"),
        strictcli.Flag(name="insecure", type=bool, presence="optional", help="Skip TLS verification"),
    ],
)

@app.command("deploy", help="Deploy", effect="mutating", flag_sets=[auth_flags])
def deploy(ctx, token, insecure): ...

Choice flags: a choice is a declaration scope

A choice flag elects exactly one of its declared choices, and each choice owns the flags that exist only while it is elected. A flag supplied outside its elected scope is a distinct parse error naming both sides -- never "unknown flag" -- and the elected value reaches the handler as one tagged record that match consumes exhaustively.

@strictcli.choice("email", help="deliver the notification as an email message")
class Email:
    subject: str = strictcli.sub_flag(help="subject line", presence="required")
    recipient: str = strictcli.sub_flag(help="destination address", presence="required")


@strictcli.choice("sms", help="deliver the notification as a text message")
class Sms:
    phone_number: str = strictcli.sub_flag(help="destination number", presence="required")


@app.command("send", help="Send one notification", effect="mutating")
@strictcli.choice_flag("via", help="Delivery channel", short="v", presence="required",
                       elect_by="selector-token", choices=[Email, Sms])
def send(ctx, via: Email | Sms):
    match via:
        case Email(subject=subject, recipient=recipient): ...
        case Sms(phone_number=number): ...
        case _: assert_never(via)

notify send --via email --subject hi parses; notify send --via sms --subject hi says --subject is only valid under --via email. Order is irrelevant -- nothing is interpreted until every token is collected -- and a choice flag may be declared inside a choice's scope to any depth (strictcli.sub_choice_flag).

elect_by is mandatory and has no default. elect_by="member-flags" spells each choice as its own flag instead (--profile work / --all-profiles), with no selector token ever typed; a member's payload is declared value: str = strictcli.member_value(help=...).

Scoped flags are never top-level handler arguments, at any depth, so every declared top-level key is still always present. Inside the record, strictcli.provided(via, "subject") answers whether the invocation caused a field's value.

Constraints

Four relationship types, all passed via constraints=[...], and every one of them declares a mandatory name -- the name is what a violation prints and what --help shows, and it is what lets one constraint be a member of another.

  • AtLeastOne(name, members) -- at least one member is engaged. Members may co-occur; it has no upper bound and is never exclusivity
  • AllOrNone(name, members) -- either every member is engaged or none is. Nothing engaged is vacuously satisfied
  • Requires(name, flag=..., depends_on=...) -- one-way dependency
  • Implies(name, flag=..., implies=..., value=...) -- auto-set a bool flag when another is provided; explicit contradictions are parse errors

A member is a Member(name, when=...) record naming a command flag, a positional arg, or another named at-least-one or all-or-none (nesting is a cycle-checked DAG). A bare string is refused. when is the closed election vocabulary -- "present" (the default; the value was provided by the invocation, never by a declared default), "true" (bool only), "non_empty" (strings and collections) -- and a bool member must declare it explicitly, so --no-all can never engage a constraint while selecting nothing.

@app.command("rewrite", help="Rewrite author identity", effect="mutating",
             constraints=[
                 strictcli.AllOrNone("author-name", [
                     strictcli.Member("old-name"), strictcli.Member("new-name"),
                 ]),
                 strictcli.AllOrNone("author-email", [
                     strictcli.Member("old-email"), strictcli.Member("new-email"),
                 ]),
                 strictcli.AtLeastOne("author-change", [
                     strictcli.Member("author-name"),
                     strictcli.Member("author-email"),
                 ]),
             ])
@strictcli.flag("old-name", type=str, presence="optional", help="Current name")
@strictcli.flag("new-name", type=str, presence="optional", help="New name")
@strictcli.flag("old-email", type=str, presence="optional", help="Current email")
@strictcli.flag("new-email", type=str, presence="optional", help="New email")
def rewrite(ctx, old_name, new_name, old_email, new_email): ...
Constraints:
  author-name      all or none of --old-name, --new-name
  author-email     all or none of --old-email, --new-email
  author-change    at least one of (--old-name with --new-name), (--old-email with --new-email)

Children are evaluated before parents, so an operator who typed one half of a pair is told the pair is incomplete rather than that the whole selection is missing. No member of a co-occurrence constraint may declare presence="required" -- a member the invocation must always supply leaves the constraint nothing to decide.

Constraints can only reference flags and args you declared, and they operate at root scope only, so the reserved quartet (dry-run, approve-consequential, quiet, verbose) can never appear in one and a scoped flag is a registration error.

Update commands

A command that changes some properties of one resource and leaves the rest alone declares what it updates with update_of=. UpdateOf is a frozen, keyword-only record whose first field is the resource name:

@app.command("update-record", help="Change one DNS record in place", effect="mutating",
             update_of=strictcli.UpdateOf("dns-record", write_mode="sparse",
                                          identity=["zone", "record-id"],
                                          properties=["content", "ttl", "proxied"]))
@strictcli.flag("zone", type=str, presence="required", help="Zone the record belongs to")
@strictcli.flag("record-id", type=str, presence="required", help="Identifier of the record")
@strictcli.flag("content", type=str, presence="optional", help="Record content")
@strictcli.flag("ttl", type=int, presence="optional", nullable=True, help="Time to live in seconds")
@strictcli.flag("proxied", type=bool, presence="optional", help="Whether the record is proxied")
def update_record(ctx, zone, record_id, content, ttl, proxied): ...

write_mode is "sparse" or "full_replace" and carries no default. A property declares presence="optional" and nothing else -- absence is untouched -- and the framework refuses an invocation that supplies none of them:

error: update "dns-record": at least one property is required: --content, --ttl, --proxied

Because absence must never resolve to a value nobody stated, no flag or arg on a mutating command may declare a value default (default=[] and default={} stay legal, as does every default on a read_only command). Inside an update --no-proxied writes False; a nullable property mints --unset-<prop>, answered by ctx.unset(name). Every run that reports what it does renders the write set -- one unnumbered line in the would-do log, and a writes member on the machine envelope:

$ mytool --dry-run update-record --zone z1 --record-id r7 --content hi --unset-ttl
DRY RUN — no changes were made. Would do:
  writes: content; clears: ttl (other properties unchanged)
  1. net: PATCH https://api.example.com/zones/z1/dns_records/r7

Global flags

App-level flags available to all commands, parsed before and after the command token.

app = strictcli.App("myapp", version="1.0.0", help="My app", flags=[
    strictcli.Flag(name="color", type=bool, default=True, help="Colorize output"),
])

Global flag names cannot collide with the framework's reserved names (help, h, version, v, dump-schema, mcp, config, hermetic) or with the reserved quartet.

Passthrough commands

Bypass all parsing -- handler gets raw args plus global flag values.

@app.command("run", help="Run a script", effect="mutating", passthrough=True)
def run(ctx, args, color):
    ctx.effects.run(args)

The reserved quartet is not scanned after a passthrough command's name: its args are forwarded to the child byte-for-byte, so myapp run deploy --dry-run passes --dry-run to the child.

Repeatable flags

Flags that accumulate values across multiple occurrences. Requires explicit unique=True or unique=False.

@strictcli.flag("tag", type=str, help="Add a tag", repeatable=True, unique=True, default=[])

Choices

Restrict flag values to an allowed set. Every entry is a record, and its help is optional:

@strictcli.flag("format", type=str, help="Output format", presence="required",
                choices=[strictcli.Choice("json", help="one JSON document"),
                         strictcli.Choice("csv"),
                         strictcli.Choice("xml")])

Help renders on one line ([choices: json, csv, xml]) until an entry carries help, at which point the whole flag renders as an indented block.

The boundary against a choice flag is structural, not a matter of taste: need a scope or member spelling -> choice flag; a plain constrained value -> choices.

Custom validation

Per-flag validation functions.

@strictcli.flag("port", type=int, help="Port number", validate=lambda v: 1 <= v <= 65535, presence="required")

Deprecated commands

Register retired commands that print a message to stderr and exit 1.

app.deprecate("init", message="Use 'setup' instead")
db.deprecate("reset", message="Use 'db wipe' instead")

Deprecated commands appear in help output under a Deprecated: section.

Hidden commands and groups

Commands and groups can be hidden from help output while remaining functional.

@app.command("internal-debug", help="Debug internals", effect="read_only", hidden=True)
def internal_debug(ctx): ...

JSON config file support

Reads ~/.config/{name}/config.json (or TOML). Auto-registers config show/set/path/edit subcommands, where config set <key> --value <v> writes under a required selector over a value, a clear (--clear) and a reset to the declared default (--default).

app = strictcli.App("myapp", version="1.0.0", help="My app", config=True)

Precedence: CLI > env > config > default. Config fields can be declared with typed validation:

app.config_field("serve.port", type=int, help="Server port", default=8080)

The effects regime

Every command declares effect="read_only" or effect="mutating" -- there is no default and no inference. A read-only command changes nothing and calling a mutating member of ctx.effects from one is a hard error at call time. A mutating command participates in --dry-run, where the eight recorded operations (run, spawn, write, mkdir, remove, rename, chmod, http) are recorded rather than performed and rendered as a would-do log.

Four flag names are owned by the framework and cannot be declared at any level (app flags, command flags, flag sets, and flags declared inside a choice's scope at any depth). They arrive on the context, never as handler kwargs:

Flag Context property
--dry-run ctx.dry_run
--approve-consequential ctx.approve_consequential
--quiet ctx.quiet
--verbose ctx.verbose

A flag named yes is banned outright -- the confirmation skip is --approve-consequential.

A command whose preview would lie declares the refusal instead of rendering one:

@app.command("migrate", help="Run migrations", effect="mutating",
             dry_run_supported=False,
             dry_run_unsupported_reason="each migration reads the schema the previous one wrote")
def migrate(ctx): ...

--dry-run is then refused at parse time with the reason, which also appears in the command's help under a Dry run: section and in the schema.

Consequential commands

consequential=True is the only thing that makes the framework prompt -- a plain mutating command never does. Classification answers "should a dry run record this?"; consequential answers "are these effects worth interrupting someone for?"

@app.command("destroy", help="Destroy the cluster", effect="mutating", consequential=True)
def destroy(ctx): ...

Before dispatch the framework prints about to run consequential command 'destroy'. Proceed? [y/N] to stderr and reads one line from stdin; only y or Y proceeds. --approve-consequential answers in advance, and --dry-run skips the prompt because nothing is being performed. A non-interactive stdin without either flag is a hard error rather than a hang. Declaring consequential=True on a read-only command raises ValueError.

Schema dump

--dump-schema is auto-injected on every app. Writes .strictcli/schema.json at schema_version: 2 describing the full CLI structure (commands, flags, args, groups, checks). Every command entry carries its effect; consequential, dry_run_supported and dry_run_unsupported_reason are emitted only when declared.

Every flag and arg entry carries a value_schema: a real JSON Schema fragment from a closed subset of type, items, additionalProperties and enum, using JSON Schema's own type names. Arity is part of the value's shape, so a repeatable scalar flag and a list[T] flag publish the identical array fragment. A choice flag carries no fragment -- its value is a variant the subset cannot express -- and publishes its nested choices and scopes instead, each scoped entry a full flag entry, with elect_by marking the spelling. A value flag's choices= splits in two: the values as an enum inside the fragment, and the value-plus-help records beside it under choices. Keys are emitted in a declared order at every depth and the document is written in one canonical encoding, so a schema file written by this implementation and one written by the Go or TypeScript implementation for the same declaration are byte-identical.

Check system

First-class check/validation framework with double-entry security. Enabled via checks_path= pointing to a TOML file.

app = strictcli.App("myapp", version="1.0.0", help="My app", checks_path="checks.toml")

@app.error_check("lint")
def lint(ctx, reporter: strictcli.ErrorReporter):
    if problems := find_problems():
        for p in problems:
            reporter.error(p)
        return reporter.found("lint problems found")
    return reporter.passed("All good")

Checks are declared in TOML and registered in code -- both must agree. The registration form must match the declared severity: @app.error_check for severity = "error" (its reporter has error and warn), @app.warn_check for severity = "warn" (its reporter structurally lacks error, so a warn check cannot cascade). An outcome is minted only through a reporter method -- passed(message), skipped(reason), or found(message) after accumulating problems; reporter.note(text) records verdict-inert informational notes. Auto-registers a check command with tag DSL filtering (--tag "release & !slow"), JSON output, and dependency resolution.

Auto-version

App(name="x", help="...") without an explicit version auto-detects from importlib.metadata.

Tool export

app.as_tools() exports non-hidden, non-interactive commands as Tool descriptors for LLM agents.

tools = app.as_tools()
# Each Tool has: name, description, parameters (JSON Schema), effect,
# consequential, execute

effect and consequential publish the effects-regime classification beside the argument schema, so a caller can see before it calls that a tool changes things and that invoking it requires stating consent:

release = next(t for t in tools if t.name == "release")
release.consequential            # True
await release.execute()          # InvokeError: ... the call must carry confirmation
await release.execute(approve_consequential=True)   # proceeds

MCP server

app.serve_mcp() runs a JSON-RPC 2.0 MCP server on stdin/stdout, exposing commands as tools for AI clients. Triggered via --mcp flag.

Help and version

  • --help / -h recognized anywhere in argv, at app, group, and command levels
  • --version / -v prints app version
  • Help is auto-generated with flag types, defaults, env var names, and choices

Testing

app.test(argv) runs the CLI in-process and returns a Result:

result = app.test(["hello", "--name", "World", "--loud"])

assert result.exit_code == 0
assert "HELLO, WORLD!" in result.stdout
assert result.stderr == ""

The confirm protocol never fires on test() or call() -- the programmatic paths have no TTY contract, so a consequential command is dispatched directly.

API reference

Core types

Type Description
App Root CLI application
Flag Flag declaration
Arg Positional argument
FlagSet Reusable flag bundle
Choice One entry of a choices= value flag: a value with optional help
AtLeastOne At least one member must be engaged
AllOrNone Every member is engaged, or none is
Requires One flag depends on another
Implies Auto-set a bool flag from another
Member One operand of a co-occurrence constraint
Result Return type of app.test()
Tool LLM tool descriptor
CheckRunResult Check execution result with wall-clock timing
CheckContext Protocol for check context
ErrorReporter / WarnReporter Problem accumulators passed to check handlers
ConfigField Typed config file field

Decorators

Decorator Description
@app.command(name, help=..., effect=...) Register a command (effect is mandatory)
@strictcli.flag(name, type=, help=..., presence=/default=) Declare a flag (presence is mandatory)
@strictcli.arg(name, help=..., presence=/default=) Declare a positional argument (presence is mandatory)
@strictcli.choice_flag(name, help=..., choices=, elect_by=, presence=/default=) Declare a choice flag (elect_by is mandatory)
@strictcli.choice(name, help=...) Declare one choice of a choice flag, and its scope
strictcli.sub_flag(help=..., presence=/default=, ...) Declare one flag of a choice's scope, inside the choice class body (the field name is the flag name)
strictcli.sub_choice_flag(help=..., choices=, elect_by=, ...) Declare a nested choice flag inside a choice's scope
strictcli.member_value(help=...) Declare a member-spelled choice's own payload, delivered under the reserved name value
strictcli.provided(record, name) Whether the invocation caused a scoped field's value, asked of the delivered record
@app.error_check(name) / @app.warn_check(name) Register a check handler

App methods

Method Description
app.command(name, help=..., effect=...) Register a command (decorator; effect is mandatory)
app.group(name, help=...) Create a command group
app.deprecate(name, message=...) Register a deprecated command
app.run() Parse sys.argv and execute
app.test(argv) Run in-process, return Result
app.as_tools() Export commands as Tool descriptors
app.serve_mcp() Run MCP server on stdin/stdout
app.config_field(name, type=, help=...) Declare a typed config field
app.error_check(name) / app.warn_check(name) Register a check handler (decorator)
app.set_check_context(factory) Set the check context factory

Design principles

  • Help is mandatory. Every command, flag, and argument must have help text. Missing help raises ValueError at registration time.
  • Four types only. str, bool, int, float -- plus compound list[T] and dict[str, T]. No magic type coercion.
  • Handler signatures are validated. Parameter names must match declared flags and args exactly. Extra or missing parameters raise ValueError.
  • Effect classification is mandatory. Every command declares read_only or mutating. There is no default and no inference.
  • Registration-time errors. Misconfigurations fail loud and early, not at parse time.
  • Minimal dependencies. The standard library plus tomlkit for TOML config support.

See also

License

MIT

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0.16.0

2 files

0.15.1

2 files

0.15.0

2 files

0.14.0

2 files

0.13.0

2 files

0.12.0

2 files

0.11.0

2 files

0.10.0

2 files

0.9.1

2 files

0.9.0

2 files

0.8.7

2 files

0.8.6

2 files

0.8.5

2 files

0.8.4

2 files

0.8.3

2 files

0.8.2

2 files

0.5.0

2 files

0.4.1

2 files

0.1.1

2 files

0.1.0

2 files

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