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pmcp_server_toolkit/
tools.rs

1// Net-new code for Phase 83 TKIT-07.
2// Lands the `[[tools]]`-config-driven synthesizer that turns config rows into
3// `ToolInfo` + `Arc<dyn ToolHandler>` pairs.
4
5//! `[[tools]]` → `ToolInfo` + `Arc<dyn ToolHandler>` synthesizer.
6//!
7//! Net-new code for Phase 83 TKIT-07. Turns curated `[[tools]]` config entries
8//! into complete pmcp [`ToolInfo`] + [`Arc<dyn ToolHandler>`] pairs with zero
9//! per-tool Rust handlers.
10//!
11//! # Invariants enforced
12//!
13//! - **JSON Schema object envelope, CHECKED HERE.** Every synthesized
14//!   [`ToolInfo`] carries an `input_schema` with `"type": "object"`, an explicit
15//!   `properties` map, a `required` array, and `"additionalProperties": false`
16//!   (`true` only when `[server.validation] additional_properties` opts out).
17//!   Unknown argument keys are refused by
18//!   `pmcp::server::schema_validation::validate_input`, called from the
19//!   `ValidatingToolHandler` decorator that `enforce_input_schema` wraps
20//!   around every handler this module pushes — **in the toolkit, before the
21//!   backend call**. Threat T-83-05-02.
22//!
23//!   Both halves matter, and stating only the first is what made this comment a
24//!   defect for two phases. Core `pmcp`'s `tools/call` dispatch does **not**
25//!   validate request arguments against a tool's declared `inputSchema`; that
26//!   wiring is deliberately deferred (Phase 128 D-01), so a comment locating the
27//!   enforcement "upstream" described a mitigation that did not exist. It exists
28//!   now, and it exists *here*.
29//!
30//!   Condition: the `input-validation` feature must be on. It is on via this
31//!   crate's `default` feature set and by that route ALONE — measured: `http =
32//!   ["dep:reqwest", "dep:url", "dep:openapiv3", "dep:serde_yaml", "dep:base64",
33//!   "dep:regex", "dep:tokio", "pmcp/streamable-http"]` and `openapi-code-mode =
34//!   ["http", "code-mode", "pmcp-code-mode/js-runtime"]`, neither of which names
35//!   it. Those two umbrellas do NOT forward it, so a
36//!   `--no-default-features --features http` build — exactly the shape a
37//!   consumer reaches for — turns it off, and then
38//!   `enforce_input_schema` is the identity function and says so in a
39//!   `tracing::warn!`. Second condition: `[server.validation]
40//!   enforce_input_schema` must not be `false`.
41//!
42//!   Backed by `tests/input_validation_acceptance.rs`'s
43//!   `input_validation_refuses_undeclared_argument_without_contacting_upstream`
44//!   (row 10) and `input_validation_refuses_absent_arguments_when_required_declared`
45//!   (row 9), each of which fails if the `validate_input` call is removed, plus
46//!   `input_validation_accepts_compliant_call_with_one_upstream_request` (row 11)
47//!   as the passing control that catches an over-refusing decorator.
48//! - **`handler.metadata()` returns `Some(ToolInfo)`.** Phase 82's `tool_arc`
49//!   consumes `handler.metadata()` at registration; returning `None` would
50//!   silently degrade the schema enforcement to "anything goes" (RESEARCH
51//!   §Risks #2 — threat T-83-05-01).
52//! - **Constructors, never struct-literals.** Both [`ToolInfo`] and
53//!   [`ToolAnnotations`] are `#[non_exhaustive]` (PATTERNS §Pattern C). The
54//!   synthesizer uses [`ToolInfo::with_annotations`] / [`ToolInfo::new`] and
55//!   the [`ToolAnnotations::new()`]-then-`.with_*` fluent builder.
56//! - **Cognitive complexity ≤25 per function.** Decomposed into
57//!   [`build_input_schema`], [`build_param_property`], and [`build_annotations`]
58//!   per Phase 75 D-03 + PATTERNS §Pattern G. No `#[allow]` annotations.
59
60use std::sync::Arc;
61
62use async_trait::async_trait;
63use pmcp::server::ToolHandler;
64use pmcp::types::{ToolAnnotations, ToolInfo};
65use pmcp::RequestHandlerExtra;
66use serde_json::{json, Map, Value};
67
68use crate::config::{AnnotationsDecl, ParamDecl, ServerConfig, ToolDecl, ValidationSection};
69use crate::error::Result;
70use crate::policy::ToolkitHooks;
71// Every use of the trait object itself lives inside a `#[cfg(feature =
72// "input-validation")]` item (`ValidatingToolHandler`'s field and `wrap`'s
73// parameter), so an ungated import is an `unused_imports` warning — and a hard
74// error — in the `--no-default-features --features http` build this module's own
75// header names as the shape a consumer reaches for.
76#[cfg(feature = "input-validation")]
77use crate::policy::ArgumentValidator;
78use crate::sql::SqlConnector;
79
80#[cfg(feature = "http")]
81use crate::error::ToolkitError;
82#[cfg(feature = "http")]
83use crate::http::{HttpConnector, Operation, Parameter, ParameterLocation};
84
85#[cfg(feature = "openapi-code-mode")]
86use crate::code_mode::HttpCodeExecutor;
87#[cfg(feature = "openapi-code-mode")]
88use pmcp_code_mode::ExecutionConfig;
89
90/// Type alias for one synthesized tool tuple: `(name, ToolInfo, Arc<dyn ToolHandler>)`.
91///
92/// Exists so [`synthesize_from_config`]'s return type does not trip
93/// `clippy::type_complexity` while preserving the exact `(name, ToolInfo, Arc)`
94/// shape consumers register with `pmcp::ServerBuilder::tool_arc` (PATTERNS §9).
95pub type SynthesizedTool = (String, ToolInfo, Arc<dyn ToolHandler>);
96
97/// Synthesize one `ToolInfo` + handler per `[[tools]]` config entry.
98///
99/// Each returned tuple is `(name, ToolInfo, Arc<dyn ToolHandler>)` and is
100/// ready to feed into `pmcp::ServerBuilder::tool_arc(name, handler)`. The
101/// `ToolInfo` carries the full input schema (synthesized from
102/// `[[tools.parameters]]`) and `ToolAnnotations` (from `[tools.annotations]`)
103/// so the builder's metadata cache will never fall back to the empty schema.
104///
105/// # Errors
106///
107/// Returns [`crate::ToolkitError::Synth`] if a tool declaration is internally
108/// inconsistent. The Plan 05 GREEN body never produces this error path —
109/// synthesis is total over the parsed [`ServerConfig`] surface — but the
110/// `Result` return is kept for forward compatibility with Plan 06 (code-mode
111/// wiring) and Phase 84 (SQL backend resolution).
112///
113/// # Example
114///
115/// ```
116/// use pmcp_server_toolkit::config::ServerConfig;
117/// use pmcp_server_toolkit::tools::synthesize_from_config;
118///
119/// let cfg = ServerConfig::default();
120/// let synthesized = synthesize_from_config(&cfg).unwrap();
121/// assert_eq!(synthesized.len(), 0);
122/// ```
123pub fn synthesize_from_config(config: &ServerConfig) -> Result<Vec<SynthesizedTool>> {
124    synthesize_inner(config, None, &ToolkitHooks::default())
125}
126
127/// [`synthesize_from_config`] with registered E2 hooks (Phase 128).
128///
129/// PUBLIC, not `pub(crate)`: `crates/pmcp-openapi-server` is a DIFFERENT crate and
130/// calls the free synthesizers directly rather than going through
131/// [`crate::ServerBuilderExt`], so a crate-private variant would leave the shipped
132/// OpenAPI binary unable to pass hooks at all — a registration surface that exists
133/// and cannot be reached from the deployment that most needs it.
134///
135/// # Errors
136///
137/// As [`synthesize_from_config`].
138pub fn synthesize_from_config_and_hooks(
139    config: &ServerConfig,
140    hooks: &ToolkitHooks,
141) -> Result<Vec<SynthesizedTool>> {
142    synthesize_inner(config, None, hooks)
143}
144
145/// Synthesize tools that execute against a wired [`SqlConnector`] (Phase 84
146/// CONN-01 / D-06). ADDITIVE variant alongside [`synthesize_from_config`] — the
147/// existing API is unchanged and all P83 callers compile without modification.
148///
149/// Each synthesized [`SynthesizedToolHandler`] holds the shared `connector`, so
150/// its `handle()` body calls [`SqlConnector::execute`] with the tool's declared
151/// `sql` + the named parameters extracted from the validated args. When a tool
152/// declares `ui_resource_uri`, the synthesized [`ToolInfo`] also carries widget
153/// metadata so pmcp core's `with_widget_enrichment` populates `structuredContent`
154/// (D-06) — that flip lives in the shared [`synthesize_inner`] helper and so
155/// fires for both entry points.
156///
157/// # Errors
158///
159/// Returns [`crate::ToolkitError::Synth`] if a tool declaration is internally
160/// inconsistent. Synthesis is total over the parsed [`ServerConfig`] surface —
161/// the connector is threaded into each handler for runtime use, not consulted at
162/// synthesis time.
163///
164/// # Example
165///
166/// ```no_run
167/// use std::sync::Arc;
168/// use pmcp_server_toolkit::config::ServerConfig;
169/// use pmcp_server_toolkit::sql::SqlConnector;
170/// use pmcp_server_toolkit::tools::synthesize_from_config_with_connector;
171///
172/// fn build(connector: Arc<dyn SqlConnector>) {
173///     let cfg = ServerConfig::default();
174///     let tools = synthesize_from_config_with_connector(&cfg, connector).unwrap();
175///     assert_eq!(tools.len(), 0);
176/// }
177/// ```
178pub fn synthesize_from_config_with_connector(
179    config: &ServerConfig,
180    connector: Arc<dyn SqlConnector>,
181) -> Result<Vec<SynthesizedTool>> {
182    synthesize_inner(config, Some(connector), &ToolkitHooks::default())
183}
184
185/// [`synthesize_from_config_with_connector`] with registered E2 hooks (Phase 128).
186///
187/// PUBLIC for the reason given on [`synthesize_from_config_and_hooks`].
188///
189/// # Errors
190///
191/// As [`synthesize_from_config_with_connector`].
192pub fn synthesize_from_config_with_connector_and_hooks(
193    config: &ServerConfig,
194    connector: Arc<dyn SqlConnector>,
195    hooks: &ToolkitHooks,
196) -> Result<Vec<SynthesizedTool>> {
197    synthesize_inner(config, Some(connector), hooks)
198}
199
200/// Shared synthesizer body for both [`synthesize_from_config`] (no connector)
201/// and [`synthesize_from_config_with_connector`] (connector wired).
202///
203/// Keeps the two public entry points one-liners so the widget_meta flip (D-06)
204/// and the handler construction logic are not duplicated. Decomposed per
205/// PATTERNS §Pattern G — the per-tool body delegates to [`build_input_schema`],
206/// [`build_annotations`], and [`apply_widget_meta`] to stay under cog 25.
207fn synthesize_inner(
208    config: &ServerConfig,
209    connector: Option<Arc<dyn SqlConnector>>,
210    hooks: &ToolkitHooks,
211) -> Result<Vec<SynthesizedTool>> {
212    let validation = &config.server.validation;
213    let mut out = Vec::with_capacity(config.tools.len());
214    for decl in &config.tools {
215        let info = build_tool_info(decl, validation);
216        let handler: Arc<dyn ToolHandler> = Arc::new(SynthesizedToolHandler {
217            info: info.clone(),
218            decl: decl.clone(),
219            connector: connector.clone(),
220        });
221        // Push site 1 of 3 (SQL handler) — D1 enforcement + E2 validator.
222        let handler = enforce_input_schema(handler, &info, decl, validation, hooks);
223        out.push((decl.name.clone(), info, handler));
224    }
225    Ok(out)
226}
227
228/// Enforce a synthesized tool's declared `inputSchema` before its inner handler
229/// runs (Phase 128, D1 / T-128-01).
230///
231/// # Enforcing function
232///
233/// `pmcp::server::schema_validation::validate_input`, called from BOTH
234/// [`ValidatingToolHandler::handle`] and [`ValidatingToolHandler::handle_output`].
235/// Backed by `tests/input_validation_acceptance.rs` acceptance rows 8–11, which
236/// fail if either call is removed.
237///
238/// Wrapping happens at every handler push site in this module, so all four public
239/// entry points inherit the enforcement with none forgotten.
240///
241/// With the `input-validation` feature OFF this is the identity function, and the
242/// opt-out is logged once per synthesized tool at synthesis time: a validation rule
243/// that is off must never read as on.
244///
245/// # `[server.validation] enforce_input_schema = false`
246///
247/// That flag is an operator opt-out from the SCHEMA CHECK, not from the decorator.
248/// `ValidatingToolHandler` carries an `enforce_schema: bool` and skips only the
249/// `validate_input` call, so a future explicitly-registered argument validator
250/// living in the same decorator keeps running. Turning off one enforcement must
251/// never silently turn off another — and losing an explicit custom validator
252/// because schema enforcement was disabled is the worst form of that class, since
253/// the operator turned off A and lost B without being told.
254///
255/// The decorator is constructed when schema enforcement is ON **or** a validator is
256/// registered for this tool. The registry is [`ToolkitHooks`], consulted below via
257/// [`ToolkitHooks::argument_validator_for`], so the decorator is skipped entirely
258/// only when `enforce_input_schema = false` AND no validator is registered for this
259/// tool name — which preserves the "no added allocation for a server that uses
260/// neither" property.
261///
262/// Until Phase 128 plan 09 this paragraph read "No validator registry exists yet
263/// (it lands with E2), so `has_registered_validator` is `false` today". That
264/// sentence outlived the registry by one plan and is kept named here rather than
265/// silently deleted: it is the documented-but-absent defect this phase exists to
266/// close, INVERTED — a comment in the very function that closes the gap still
267/// describing the machinery as absent. The binding it named no longer exists.
268///
269/// Backed by `tools::argument_validator_seam::a_registered_validator_still_runs_with_enforce_input_schema_false`,
270/// which fails if the `registered_validator.is_none()` conjunct is dropped from the
271/// early return, and by
272/// `tools::argument_validator_seam::a_registered_validator_refuses_a_combination_the_schema_permits`,
273/// which fails if the lookup is removed.
274#[cfg(feature = "input-validation")]
275fn enforce_input_schema(
276    handler: Arc<dyn ToolHandler>,
277    info: &ToolInfo,
278    decl: &ToolDecl,
279    validation: &ValidationSection,
280    hooks: &ToolkitHooks,
281) -> Arc<dyn ToolHandler> {
282    // Phase 128 E2 — the registry lookup that replaced plan 03's
283    // `let has_registered_validator = false;` placeholder.
284    let registered_validator = hooks.argument_validator_for(&decl.name);
285    if !validation.enforce_input_schema && registered_validator.is_none() {
286        tracing::warn!(
287            tool = %decl.name,
288            "[server.validation] enforce_input_schema = false: this tool's arguments are \
289             NOT checked against its declared inputSchema before the backend call"
290        );
291        return handler;
292    }
293    ValidatingToolHandler::wrap(
294        handler,
295        info,
296        decl,
297        validation.enforce_input_schema,
298        registered_validator,
299    )
300}
301
302/// The `input-validation`-off half of [`enforce_input_schema`]: the identity
303/// function, with the absence logged once per synthesized tool.
304///
305/// A `#[cfg]` SIBLING rather than one function with two inner blocks, because the
306/// off arm reads none of the schema inputs and the single-function form needed an
307/// `#[allow(unused_variables)]` — which this module's own header rules out ("No
308/// `#[allow]` annotations"). This is the same sibling-pair idiom
309/// `check_tool_input_schema_compiles`, `warn_if_pattern_checking_unavailable`,
310/// `spec_placeholder_rules` and `lint_declared_cap_above_placeholder_floor`
311/// already use in this crate for exactly this situation.
312#[cfg(not(feature = "input-validation"))]
313fn enforce_input_schema(
314    handler: Arc<dyn ToolHandler>,
315    _info: &ToolInfo,
316    decl: &ToolDecl,
317    _validation: &ValidationSection,
318    hooks: &ToolkitHooks,
319) -> Arc<dyn ToolHandler> {
320    tracing::warn!(
321        tool = %decl.name,
322        "the `input-validation` feature is OFF: this tool's arguments are NOT checked \
323         against its declared inputSchema before the backend call"
324    );
325    // `ToolkitHooks::argument_validator_for` is NOT feature-gated, so
326    // `with_argument_validator` compiles and appears to succeed in this build —
327    // while `ValidatingToolHandler`, the only thing that can RUN a registered
328    // validator, is gated away. Naming the drop is the difference between an
329    // enforcement that is off and one that silently reads as on; the schema warning
330    // above does not cover it, because a registered validator is a SEPARATE switch
331    // (see `ValidatingToolHandler::enforce_schema`).
332    if hooks.argument_validator_for(&decl.name).is_some() {
333        tracing::warn!(
334            tool = %decl.name,
335            "an E2 ArgumentValidator IS registered for this tool and is DISCARDED: \
336             running it requires the `input-validation` feature"
337        );
338    }
339    handler
340}
341
342/// Decorator that refuses a `tools/call` whose arguments violate the tool's
343/// declared `inputSchema`, WITHOUT invoking the inner handler.
344///
345/// Crate-private by design: the validator and the value-free refusal renderer both
346/// live in core `pmcp` (D-01), so this type holds no schema logic of its own.
347#[cfg(feature = "input-validation")]
348struct ValidatingToolHandler {
349    inner: Arc<dyn ToolHandler>,
350    /// The synthesized `ToolInfo`'s `input_schema`, verbatim.
351    input_schema: Value,
352    /// `input_schema.to_string()`, computed ONCE at synthesis so the hot
353    /// `tools/call` path never re-serializes the whole schema to hit the core
354    /// validator cache.
355    schema_key: String,
356    /// Declared parameter names in declaration order — the ONLY names a refusal
357    /// message may echo (SC-7).
358    declared: Vec<String>,
359    /// Whether the SCHEMA CHECK runs, from `[server.validation]
360    /// enforce_input_schema`.
361    ///
362    /// A SEPARATE switch from the decorator's existence on purpose: when the E2
363    /// argument-validator registry lands in the same decorator, an operator who
364    /// turns schema enforcement off must not silently lose an
365    /// explicitly-registered validator too.
366    enforce_schema: bool,
367    /// The E2 [`ArgumentValidator`] registered for this tool, if any (Phase 128).
368    ///
369    /// Looked up by tool NAME once at synthesis, so the `tools/call` path does no
370    /// map lookup. `None` is the overwhelmingly common case and costs one
371    /// `Option` discriminant test per call.
372    validator: Option<Arc<dyn ArgumentValidator>>,
373}
374
375#[cfg(feature = "input-validation")]
376impl ValidatingToolHandler {
377    /// Wrap `handler`, taking the schema from the already-built `info` and the
378    /// declared parameter names from `decl`.
379    fn wrap(
380        inner: Arc<dyn ToolHandler>,
381        info: &ToolInfo,
382        decl: &ToolDecl,
383        enforce_schema: bool,
384        validator: Option<Arc<dyn ArgumentValidator>>,
385    ) -> Arc<dyn ToolHandler> {
386        let input_schema = info.input_schema.clone();
387        let schema_key = input_schema.to_string();
388        Arc::new(Self {
389            inner,
390            input_schema,
391            schema_key,
392            declared: decl.parameters.iter().map(|p| p.name.clone()).collect(),
393            enforce_schema,
394            validator,
395        })
396    }
397
398    /// Validate `args`, mapping any violation to a value-free
399    /// `pmcp::Error::ToolRejected`. Kept a separate helper so both trait entry
400    /// points stay one-liners and well under the cog-25 gate.
401    ///
402    /// # Why a tool-level rejection and not `Error::Validation`
403    ///
404    /// A refused argument is the CALLER's to fix, and `Error::ToolRejected` is the
405    /// SDK's variant for exactly that: its own docs name "schema-mismatched input"
406    /// as an intended use, and `execute_code` already returns it for a bad approval
407    /// token. `Error::Validation` surfaces as a JSON-RPC error, which reads to a
408    /// model as a server fault and gives it nothing to retry with. Measured on the
409    /// 2.21.0 stack: 14 of 15 refusals in a 24-probe matrix reached the client as
410    /// protocol errors, and the Triarii UMLS server wrote an adapter to remap them.
411    /// The message is unchanged and stays value-free; only the channel moves.
412    ///
413    /// Returns `Ok(())` without consulting the schema when `enforce_schema` is
414    /// `false` — skipping the CHECK, not the decorator, so anything else this
415    /// decorator does still happens.
416    fn check(&self, args: &Value) -> pmcp::Result<()> {
417        self.check_schema(args)?;
418        self.check_registered_validator(args)
419    }
420
421    /// The D1 declared-schema check.
422    ///
423    /// Returns `Ok(())` without consulting the schema when `enforce_schema` is
424    /// `false` — skipping the CHECK, not the decorator, so the E2 validator below
425    /// still runs.
426    fn check_schema(&self, args: &Value) -> pmcp::Result<()> {
427        use pmcp::server::schema_validation::{render_refusal, validate_input};
428
429        if !self.enforce_schema {
430            return Ok(());
431        }
432        validate_input(&self.input_schema, Some(args), Some(&self.schema_key)).map_err(
433            |violations| {
434                let declared: Vec<&str> = self.declared.iter().map(String::as_str).collect();
435                pmcp::Error::tool_rejected(render_refusal(&violations, &declared), None)
436            },
437        )
438    }
439
440    /// The E2 registered-validator check (Phase 128).
441    ///
442    /// Called by [`Self::check`] STRICTLY AFTER [`Self::check_schema`] returns
443    /// `Ok`, which is the E2 ordering contract: a custom rule never sees arguments
444    /// the declared schema already refused (T-128-41). Inverting the two calls is
445    /// what `a_registered_validator_is_not_invoked_when_the_schema_refuses` fails
446    /// on.
447    ///
448    /// The refusal message is the VALIDATOR's own, authored outside this crate, so
449    /// unlike `render_refusal` above the toolkit cannot guarantee it is value-free.
450    /// That residual is documented on [`crate::policy::ArgumentRefusal`].
451    fn check_registered_validator(&self, args: &Value) -> pmcp::Result<()> {
452        let Some(validator) = self.validator.as_ref() else {
453            return Ok(());
454        };
455        validator
456            .validate(args)
457            .map_err(|refusal| pmcp::Error::tool_rejected(refusal.message().to_string(), None))
458    }
459}
460
461#[cfg(feature = "input-validation")]
462#[async_trait]
463impl ToolHandler for ValidatingToolHandler {
464    async fn handle(&self, args: Value, extra: RequestHandlerExtra) -> pmcp::Result<Value> {
465        self.check(&args)?;
466        self.inner.handle(args, extra).await
467    }
468
469    fn metadata(&self) -> Option<ToolInfo> {
470        self.inner.metadata()
471    }
472
473    /// Validates, then DELEGATES to the inner handler's own `handle_output`.
474    ///
475    /// Implementing only `handle` would silently replace an inner handler's
476    /// `handle_output` override with the trait default
477    /// (`handle(..).map(ToolOutput::Payload)`), stripping that handler's ability to
478    /// own its `CallToolResult` envelope. A decorator must not narrow the contract
479    /// of what it wraps — and both entry points must validate, or an inner handler
480    /// that overrides `handle_output` becomes an unvalidated path.
481    async fn handle_output(
482        &self,
483        args: Value,
484        extra: RequestHandlerExtra,
485    ) -> pmcp::Result<pmcp::server::ToolOutput> {
486        self.check(&args)?;
487        self.inner.handle_output(args, extra).await
488    }
489}
490
491/// Flip widget metadata onto `info` when the declaration carries a
492/// `ui_resource_uri` (D-06 / REVIEWS M1).
493///
494/// Uses the feature-independent [`ToolInfo::with_meta_entry`] surface to insert
495/// `_meta.ui.resourceUri`. This is the verified-correct API: `with_widget_meta`
496/// is gated on pmcp's `mcp-apps` feature (which the toolkit does not enable),
497/// whereas `with_meta_entry` is always available and produces the `ui.resourceUri`
498/// shape that `ToolInfo::widget_meta()` recognises — so pmcp core's
499/// `with_widget_enrichment` populates `structuredContent`. Annotations on `info`
500/// are preserved (chained, not reconstructed).
501fn apply_widget_meta(info: ToolInfo, decl: &ToolDecl) -> ToolInfo {
502    match decl.ui_resource_uri.as_deref() {
503        Some(uri) => info.with_meta_entry("ui", json!({ "resourceUri": uri })),
504        None => info,
505    }
506}
507
508/// Build the [`ToolInfo`] for a synthesized tool from its declaration.
509///
510/// The schema + annotations + widget-meta sequence is identical for every tool
511/// kind (single-call HTTP, SQL, and script), so it lives here once — keeping the
512/// `#[non_exhaustive]` [`ToolInfo`] constructor discipline (the `with_annotations`
513/// vs `new` arms) in a single place rather than copy-pasted per synthesizer.
514fn build_tool_info(decl: &ToolDecl, validation: &ValidationSection) -> ToolInfo {
515    let schema = build_input_schema(decl, validation);
516    let annotations = build_annotations(decl.annotations.as_ref());
517    let base = match annotations {
518        Some(ann) => {
519            ToolInfo::with_annotations(decl.name.clone(), decl.description.clone(), schema, ann)
520        },
521        None => ToolInfo::new(decl.name.clone(), decl.description.clone(), schema),
522    };
523    apply_widget_meta(base, decl)
524}
525
526/// Build the JSON Schema `properties` + `required` envelope from a
527/// `[[tools.parameters]]` list.
528///
529/// Decomposed from [`synthesize_from_config`] to keep cognitive complexity ≤25
530/// (Phase 75 D-03 + PATTERNS §Pattern G).
531///
532/// `pub(crate)` since Phase 128 SC-2: [`crate::config::ServerConfig::validate`]
533/// builds each tool's schema through THIS function and compiles it at config time,
534/// so the schema the compile gate checks is byte-identical to the one the runtime
535/// validator enforces. A second construction path there would let the gate pass a
536/// schema the server never serves.
537///
538/// Takes the whole [`ToolDecl`] rather than just its parameters because the D3
539/// default cap is POSITION-scoped, and position is a property of the tool's `path`
540/// and `method` — see [`crate::config::ToolDecl::param_position`].
541///
542/// `properties` and `required` are emitted in `[[tools.parameters]]` declaration
543/// order, so two synthesis runs over one config produce byte-identical output.
544pub(crate) fn build_input_schema(decl: &ToolDecl, validation: &ValidationSection) -> Value {
545    let mut props = Map::new();
546    let mut required = Vec::new();
547    for p in &decl.parameters {
548        let mut prop = build_param_property(p);
549        apply_position_cap(&mut prop, p, decl.param_position(&p.name), validation);
550        props.insert(p.name.clone(), prop);
551        if p.required {
552            required.push(Value::String(p.name.clone()));
553        }
554    }
555    json!({
556        "type": "object",
557        "properties": props,
558        "required": required,
559        "additionalProperties": validation.additional_properties,
560    })
561}
562
563/// Apply the D3 position-scoped default length cap to ONE already-built property
564/// object (Phase 128).
565///
566/// Emits `maxLength = validation.default_max_length` only when ALL of:
567/// the parameter's effective type is `string`; it declares no `max_length` of its
568/// own; `default_max_length` is non-zero; and `position` is `Path` or `Query`.
569/// BODY position emits nothing — capping a `POST` payload's free-text field is
570/// exactly the breakage D-05 exists to avoid, and `ServerConfig::lint` surfaces
571/// those instead.
572///
573/// A DECLARED `max_length` is never overridden and never merged with the default in
574/// either direction: the author's number wins outright, and the always-on
575/// `PLACEHOLDER_MAX_LENGTH` floor is what bounds a URL segment regardless.
576///
577/// The four conditions live in `crate::config::default_cap_applies` rather than
578/// here, so `lint()` and this function cannot disagree about which parameters are
579/// covered — a disagreement would make `lint()` report a parameter as uncapped
580/// while the schema caps it, or the reverse.
581///
582/// Its own free function (not inlined into [`build_input_schema`]) to keep that
583/// function's cognitive complexity well under the 25 gate.
584fn apply_position_cap(
585    prop: &mut Value,
586    p: &ParamDecl,
587    position: crate::config::ParamPosition,
588    validation: &ValidationSection,
589) {
590    if crate::config::default_cap_applies(p, position, validation) {
591        prop["maxLength"] = json!(validation.default_max_length);
592    }
593}
594
595/// Build a single JSON Schema property object from a [`ParamDecl`].
596///
597/// Per-parameter constraints (`minimum`, `maximum`, `maxLength`, `minLength`,
598/// `pattern`, `format`, `maxItems`, `items`, `default`, `enum`) are folded in only
599/// when present — an undeclared keyword is ABSENT from the emitted schema, never
600/// present-and-empty, because an empty `pattern` matches everything and an empty
601/// `items` object constrains nothing while both read like rules.
602///
603/// The param's `param_type` defaults to `"string"` when omitted in TOML to match
604/// JSON Schema's permissive default.
605fn build_param_property(p: &ParamDecl) -> Value {
606    let ty = p.param_type.as_deref().unwrap_or("string");
607    let mut prop = json!({ "type": ty });
608    if let Some(desc) = &p.description {
609        prop["description"] = Value::String(desc.clone());
610    }
611    if let Some(min) = p.minimum {
612        prop["minimum"] = json!(min);
613    }
614    if let Some(max) = p.maximum {
615        prop["maximum"] = json!(max);
616    }
617    if let Some(max_len) = p.max_length {
618        prop["maxLength"] = json!(max_len);
619    }
620    if let Some(min_len) = p.min_length {
621        prop["minLength"] = json!(min_len);
622    }
623    if let Some(pattern) = &p.pattern {
624        prop["pattern"] = Value::String(pattern.clone());
625    }
626    if let Some(format) = &p.format {
627        prop["format"] = Value::String(format.clone());
628    }
629    if let Some(max_items) = p.max_items {
630        prop["maxItems"] = json!(max_items);
631    }
632    if let Some(items) = &p.items {
633        prop["items"] = build_items_property(items);
634    }
635    if let Some(default) = &p.default {
636        // toml::Value serializes losslessly into serde_json::Value via serde.
637        if let Ok(v) = serde_json::to_value(default) {
638            prop["default"] = v;
639        }
640    }
641    if let Some(enum_vals) = &p.enum_values {
642        if let Ok(v) = serde_json::to_value(enum_vals) {
643            prop["enum"] = v;
644        }
645    }
646    prop
647}
648
649/// Build the OBJECT-form JSON Schema `items` value from an [`ItemsDecl`]
650/// (Phase 128, D2).
651///
652/// A separate free function for two reasons. First, cognitive complexity:
653/// [`build_param_property`] gained five arms in this phase and RESEARCH assumption
654/// A4 (that they stay under cog 25) was explicitly unmeasured, so the construction
655/// lives outside it. Second, and more importantly, there is exactly ONE place that
656/// can decide the SHAPE of `items`, and it returns a [`Value::Object`]
657/// unconditionally. The array form of `items` is a draft-07 tuple construct that
658/// does NOT compile under the Draft 2020-12 pin, and a schema that does not compile
659/// takes the whole tool's validator down — so "never an array here" is a safety
660/// property, not a style preference, and it is enforced by this function having no
661/// code path that builds a JSON array.
662fn build_items_property(items: &crate::config::ItemsDecl) -> Value {
663    let ty = items.item_type.as_deref().unwrap_or("string");
664    let mut prop = json!({ "type": ty });
665    if let Some(max_len) = items.max_length {
666        prop["maxLength"] = json!(max_len);
667    }
668    if let Some(pattern) = &items.pattern {
669        prop["pattern"] = Value::String(pattern.clone());
670    }
671    prop
672}
673
674/// Build [`ToolAnnotations`] from an optional `[tools.annotations]` block.
675///
676/// Per PATTERNS §Pattern C, the constructor + fluent builder is used (never a
677/// struct literal — [`ToolAnnotations`] is `#[non_exhaustive]`). The `cost_hint`
678/// field has no `ToolAnnotations` accessor and is therefore not propagated at
679/// this layer; it lives on the toolkit's [`AnnotationsDecl`] and is consumed
680/// by future plans that surface cost into rate-limiting policy.
681fn build_annotations(decl: Option<&AnnotationsDecl>) -> Option<ToolAnnotations> {
682    let d = decl?;
683    let a = ToolAnnotations::new()
684        .with_read_only(d.read_only_hint)
685        .with_destructive(d.destructive_hint)
686        .with_idempotent(d.idempotent_hint)
687        .with_open_world(d.open_world_hint);
688    Some(a)
689}
690
691// -----------------------------------------------------------------------------
692// SynthesizedToolHandler — crate-private
693// -----------------------------------------------------------------------------
694
695/// Crate-private handler wrapping a synthesized [`ToolInfo`].
696///
697/// [`ToolHandler::metadata`] MUST return `Some(self.info.clone())` — Phase 82's
698/// `tool_arc` consumes `handler.metadata()` at registration time; returning
699/// `None` would cause the builder to fall back to an empty schema (RESEARCH
700/// §Risks #2 — threat T-83-05-01). The unit + property tests in
701/// [`crate::tools`] and `tests/tool_synthesis_props.rs` lock this in.
702///
703/// `handle()` reads the declared `sql`, extracts named parameters from the
704/// validated args, and calls [`SqlConnector::execute`] when a `connector` is
705/// wired (handlers built via [`synthesize_from_config_with_connector`]).
706/// Handlers built via the no-connector [`synthesize_from_config`] carry
707/// `connector = None` and return an explicit `Err` on invocation — preserving
708/// P83 behaviour where the no-connector path was test-only (T-84-03-05). The
709/// `decl` is held so the handler can read `sql` / `ui_resource_uri` /
710/// `parameters` without re-walking the config.
711struct SynthesizedToolHandler {
712    info: ToolInfo,
713    decl: ToolDecl,
714    /// `Some` only for handlers built via [`synthesize_from_config_with_connector`].
715    connector: Option<Arc<dyn SqlConnector>>,
716}
717
718/// Extract the named `(name, value)` parameter pairs the connector binds from,
719/// filtering the caller's `args` against the declared parameter list
720/// (T-84-03-01: only declared parameter names reach `execute()`; an extra key is
721/// dropped HERE, and separately refused one layer out).
722///
723/// The refusal is not "upstream". It is
724/// `pmcp::server::schema_validation::validate_input` inside the
725/// `ValidatingToolHandler` decorator that [`enforce_input_schema`] wraps around
726/// this handler at its push site, so an undeclared key normally never reaches this
727/// function at all. Conditional on the `input-validation` feature AND on
728/// `[server.validation]` leaving both `enforce_input_schema` (`true`) and
729/// `additional_properties` (`false`) at their defaults — with `additional_properties
730/// = true` an undeclared key is ADMITTED by the schema and this filter is the only
731/// thing that keeps it out of `execute()`. That is why the drop stays here rather
732/// than being replaced by an assertion: the two layers close the case under
733/// different configurations. Backed by
734/// `tests/input_validation_acceptance.rs::input_validation_refuses_undeclared_argument_without_contacting_upstream`
735/// for the schema layer; the filter layer is covered by this module's
736/// `extract_params` unit tests.
737///
738/// Found by this phase's SC-6 candidate-phrase sweep, not by the plan's named
739/// list: the phrasing "rejects them upstream" is the same defect class as
740/// the retired `HttpToolHandler::handle` claim one function-group away, which
741/// located the same envelope check "upstream" in the same way.
742///
743/// The retired phrasings are deliberately NOT quoted verbatim anywhere in `src/`.
744/// This phase's SC-6 gates grep for each retired phrase and require a count of
745/// zero, and a gate that a historical citation can satisfy is a gate that has
746/// stopped distinguishing a surviving claim from a note about one — the first
747/// draft of THIS comment quoted one of them and turned the gate red on itself,
748/// which is the cheapest possible demonstration that the gate is sensitive. The
749/// full before/after text lives in `128-10-SUMMARY.md`.
750///
751/// When the caller omits an optional parameter that declares a `default`, the
752/// default is applied so the bound SQL sees a concrete value. Without this an
753/// omitted `:limit` / `:offset` would bind as unbound `NULL` and SQLite rejects
754/// `LIMIT NULL` with a "datatype mismatch" — so the declared default is the
755/// difference between a working and a broken tool call (the reference
756/// `search_tracks` / `list_artists` calls rely on it).
757///
758/// An EXPLICIT JSON `null` for a declared-default parameter is treated the SAME
759/// as an omitted parameter — the declared default is applied (85-10 WR-02
760/// secondary fix). Without the `is_null` filter a caller sending
761/// `{"limit": null}` would bind `LIMIT NULL` and SQLite would reject the query
762/// with "datatype mismatch", even though the tool declares `default = 20`.
763fn extract_named_params(decl: &ToolDecl, args: &Value) -> Vec<(String, Value)> {
764    decl.parameters
765        .iter()
766        .filter_map(|p| {
767            args.get(&p.name)
768                // Explicit JSON `null` falls through to the declared default,
769                // exactly like an omitted key (no `LIMIT NULL` bind).
770                .filter(|v| !v.is_null())
771                .cloned()
772                .or_else(|| {
773                    p.default
774                        .as_ref()
775                        .and_then(|d| serde_json::to_value(d).ok())
776                })
777                .map(|v| (p.name.clone(), v))
778        })
779        .collect()
780}
781
782#[async_trait]
783impl ToolHandler for SynthesizedToolHandler {
784    async fn handle(&self, args: Value, _extra: RequestHandlerExtra) -> pmcp::Result<Value> {
785        let sql = self.decl.sql.as_deref().ok_or_else(|| {
786            pmcp::Error::Internal(format!("tool '{}' has no `sql` declared", self.info.name))
787        })?;
788        let connector = self.connector.as_ref().ok_or_else(|| {
789            pmcp::Error::Internal(format!(
790                "tool '{}' requires connector wiring — build via synthesize_from_config_with_connector",
791                self.info.name
792            ))
793        })?;
794        let named_params = extract_named_params(&self.decl, &args);
795        // T-84-03-02: format!("{e}") uses ConnectorError::Display, which Plan 01
796        // Task 2 guarantees does not echo credentials.
797        let rows = connector
798            .execute(sql, &named_params)
799            .await
800            .map_err(|e| pmcp::Error::Internal(format!("connector error: {e}")))?;
801        Ok(Value::Array(rows))
802    }
803
804    fn metadata(&self) -> Option<ToolInfo> {
805        Some(self.info.clone())
806    }
807}
808
809// -----------------------------------------------------------------------------
810// Single-call HTTP synthesizer (Phase 90 OAPI-02a) — feature `http`
811// -----------------------------------------------------------------------------
812
813/// Synthesize one `ToolInfo` + handler per single-call `[[tools]]` entry,
814/// executing against a wired [`HttpConnector`] (Phase 90 OAPI-02a / D-01).
815///
816/// Mirrors [`synthesize_from_config_with_connector`] (the SQL analog) in shape.
817/// For each `[[tools]]` where [`ToolDecl::is_script_tool`] is `false` and a
818/// `path` + `method` pair is present, an [`Operation`] is built from the path
819/// template (the `{...}` segments become path parameters), the declared
820/// `[[tools.parameters]]` (non-path params become query params; `POST`/`PUT`/
821/// `PATCH` carry a request body), and the per-tool `base_url` override — which is
822/// reflected onto the [`Operation`] so the connector targets the per-tool host
823/// (never silently dropped, Codex MEDIUM). The synthesized [`ToolInfo`] uses the
824/// EXISTING [`build_input_schema`] (object envelope + `additionalProperties:false`)
825/// and [`build_annotations`] helpers; the handler calls
826/// [`HttpConnector::execute`] and returns the JSON.
827///
828/// # Script-tool seam (Plan 05)
829///
830/// A `script` tool encountered here returns a typed [`ToolkitError::Synth`] — it
831/// is an EXPLICIT, clearly-marked seam, NOT a silent skip and NOT a `todo!()`.
832/// Plan 05 widens this function's signature (adding the shared `http_exec` +
833/// `exec_config`) and fills the `is_script_tool()` arm with a `ScriptToolHandler`
834/// branch; that change is a localized, anticipated edit because the seam is
835/// surfaced here.
836///
837/// # Errors
838///
839/// Returns [`ToolkitError::Synth`] when a `[[tools]]` entry is a `script` tool
840/// (Plan 05 seam) or is neither a valid single-call (missing `path` OR `method`)
841/// nor a script tool (T-90-03-04 negative validation — an ill-formed tool is
842/// rejected, never silently registered).
843#[cfg(feature = "http")]
844pub fn synthesize_from_config_with_http_connector(
845    config: &ServerConfig,
846    connector: Arc<dyn HttpConnector>,
847) -> Result<Vec<SynthesizedTool>> {
848    // No script-tool builder is supplied on this (single-call-only) entry point,
849    // so the `is_script_tool()` arm of [`synthesize_http_inner`] returns the
850    // typed Plan 05 seam error. The OpenAPI Code Mode build calls
851    // [`synthesize_from_config_with_http_connector_and_scripts`], which supplies
852    // a [`ScriptToolHandler`] builder so a `script` tool synthesizes a real
853    // handler over the shared engine (OAPI-02b / D-01 / D-02).
854    synthesize_from_config_with_http_connector_and_hooks(
855        config,
856        connector,
857        &ToolkitHooks::default(),
858    )
859}
860
861/// [`synthesize_from_config_with_http_connector`] with registered E2 hooks
862/// (Phase 128).
863///
864/// PUBLIC for the reason given on [`synthesize_from_config_and_hooks`].
865///
866/// # Errors
867///
868/// As [`synthesize_from_config_with_http_connector`].
869#[cfg(feature = "http")]
870pub fn synthesize_from_config_with_http_connector_and_hooks(
871    config: &ServerConfig,
872    connector: Arc<dyn HttpConnector>,
873    hooks: &ToolkitHooks,
874) -> Result<Vec<SynthesizedTool>> {
875    // No script-tool builder is supplied on this (single-call-only) entry point,
876    // so the `is_script_tool()` arm of [`synthesize_http_inner`] returns the
877    // typed Plan 05 seam error. The OpenAPI Code Mode build calls
878    // [`synthesize_from_config_with_http_connector_and_scripts`], which supplies
879    // a [`ScriptToolHandler`] builder so a `script` tool synthesizes a real
880    // handler over the shared engine (OAPI-02b / D-01 / D-02).
881    synthesize_http_inner(
882        config,
883        connector,
884        |decl| {
885            Err(ToolkitError::Synth(format!(
886                "tool '{}' is a script tool — script tools require the `openapi-code-mode` \
887                 feature (use synthesize_from_config_with_http_connector_and_scripts)",
888                decl.name
889            )))
890        },
891        hooks,
892    )
893}
894
895/// Synthesize single-call AND script `[[tools]]` against a wired
896/// [`HttpConnector`] plus a shared [`HttpCodeExecutor`] + [`ExecutionConfig`]
897/// (Phase 90 OAPI-02b / D-01 / D-02).
898///
899/// This is the OpenAPI Code Mode entry point (gated `openapi-code-mode`): it
900/// adds the `http_exec` + `exec_config` the script-tool path needs, threading
901/// the SAME `HttpCodeExecutor` instance that feeds Code Mode (D-02 — one engine,
902/// two surfaces). Single-call tools synthesize exactly as in
903/// [`synthesize_from_config_with_http_connector`]; a `script` tool synthesizes a
904/// [`ScriptToolHandler`] that compiles + runs the embedded JS through the SAME
905/// `PlanCompiler` + `PlanExecutor` + `HttpCodeExecutor` seam Code Mode uses,
906/// with NO validate/token cycle (admin-authored, `ExecutionConfig`-bounded —
907/// Pitfall 7).
908///
909/// The binary (Plan 06) supplies `http_exec` (built once over the resolved
910/// backend `base_url` + auth provider) and `exec_config` (from the
911/// `[code_mode.limits]` / defaults: `max_api_calls=50`, `max_loop_iterations=100`,
912/// `timeout_seconds=30`).
913///
914/// # Errors
915///
916/// Returns [`ToolkitError::Synth`] when a `[[tools]]` entry is neither a valid
917/// single-call (missing `path` OR `method`) nor a script tool (T-90-03-04
918/// negative validation), or when a script tool fails to build its `ToolInfo`.
919#[cfg(feature = "openapi-code-mode")]
920pub fn synthesize_from_config_with_http_connector_and_scripts(
921    config: &ServerConfig,
922    connector: Arc<dyn HttpConnector>,
923    http_exec: HttpCodeExecutor,
924    exec_config: ExecutionConfig,
925) -> Result<Vec<SynthesizedTool>> {
926    synthesize_from_config_with_http_connector_and_scripts_and_hooks(
927        config,
928        connector,
929        http_exec,
930        exec_config,
931        &ToolkitHooks::default(),
932    )
933}
934
935/// [`synthesize_from_config_with_http_connector_and_scripts`] with registered E2
936/// hooks (Phase 128).
937///
938/// This is THE variant `crates/pmcp-openapi-server`'s `build_server` calls, which
939/// is why it is PUBLIC rather than `pub(crate)`: that crate reaches the
940/// synthesizer directly and never through [`crate::ServerBuilderExt`], so a
941/// crate-private variant would ship E2 as present-but-inert on this phase's
942/// principal HTTP surface (T-128-39b).
943///
944/// # Errors
945///
946/// As [`synthesize_from_config_with_http_connector_and_scripts`].
947#[cfg(feature = "openapi-code-mode")]
948pub fn synthesize_from_config_with_http_connector_and_scripts_and_hooks(
949    config: &ServerConfig,
950    connector: Arc<dyn HttpConnector>,
951    http_exec: HttpCodeExecutor,
952    exec_config: ExecutionConfig,
953    hooks: &ToolkitHooks,
954) -> Result<Vec<SynthesizedTool>> {
955    let validation = &config.server.validation;
956    // Script tools re-check the class policy on every resolved request, when
957    // the config sets an operation-class key.
958    let http_exec = match config.code_mode.as_ref() {
959        Some(section) if !section.class_keys_set().is_empty() => {
960            http_exec.with_class_policy(section)
961        },
962        _ => http_exec,
963    };
964    synthesize_http_inner(
965        config,
966        connector,
967        |decl| {
968            let handler =
969                ScriptToolHandler::new(decl, http_exec.clone(), exec_config.clone(), validation)?;
970            let info = handler.tool_info.clone();
971            let arc: Arc<dyn ToolHandler> = Arc::new(handler);
972            Ok((info, arc))
973        },
974        hooks,
975    )
976}
977
978/// Refuse a curated tool the `[code_mode]` class policy refuses: a script
979/// tool by its calls, a single-call tool by its `(method, path)`. A tool that
980/// is neither is left to the synthesizer's own validation. No gate (no class
981/// key set) refuses nothing.
982#[cfg(feature = "openapi-code-mode")]
983fn check_curated_tool(
984    gate: Option<&crate::code_mode::ClassGate>,
985    decl: &ToolDecl,
986) -> std::result::Result<(), crate::error::ConfigValidationError> {
987    let Some(gate) = gate else {
988        return Ok(());
989    };
990    if let Some(script) = decl.script.as_deref() {
991        return gate.check_script(&decl.name, script);
992    }
993    match (decl.method.as_deref(), decl.path.as_deref()) {
994        (Some(method), Some(path)) => gate.check_single_call(&decl.name, method, path),
995        _ => Ok(()),
996    }
997}
998
999/// Shared synthesizer body for the single-call HTTP entry points.
1000///
1001/// `build_script_tool` is invoked for each `script` tool: the single-call-only
1002/// entry point passes a closure that returns the typed Plan 05 / `openapi-code-mode`
1003/// seam error, while the OpenAPI Code Mode entry point passes a closure that
1004/// constructs a [`ScriptToolHandler`]. Decomposed per PATTERNS §Pattern G to keep
1005/// the per-tool loop body under cog ≤25.
1006#[cfg(feature = "http")]
1007fn synthesize_http_inner(
1008    config: &ServerConfig,
1009    connector: Arc<dyn HttpConnector>,
1010    mut build_script_tool: impl FnMut(&ToolDecl) -> Result<(ToolInfo, Arc<dyn ToolHandler>)>,
1011    hooks: &ToolkitHooks,
1012) -> Result<Vec<SynthesizedTool>> {
1013    let validation = &config.server.validation;
1014    // A curated tool the `[code_mode]` class policy refuses could never
1015    // succeed, so it fails the boot. Applies only when the config sets an
1016    // operation-class key (see `ClassGate::for_curated_tools`).
1017    #[cfg(feature = "openapi-code-mode")]
1018    let class_gate = crate::code_mode::ClassGate::for_curated_tools(config);
1019    let mut out = Vec::with_capacity(config.tools.len());
1020    for decl in &config.tools {
1021        #[cfg(feature = "openapi-code-mode")]
1022        check_curated_tool(class_gate.as_ref(), decl)?;
1023        if decl.is_script_tool() {
1024            let (info, handler) = build_script_tool(decl)?;
1025            // Push site 2 of 3 (SCRIPT tool) — D1 enforcement. This site is
1026            // SEPARATE from the HTTP push below because of the `continue`; wrapping
1027            // only the HTTP push would leave every script tool unvalidated.
1028            let handler = enforce_input_schema(handler, &info, decl, validation, hooks);
1029            out.push((decl.name.clone(), info, handler));
1030            continue;
1031        }
1032
1033        // Single-call requires BOTH path and method. A `[[tools]]` that is
1034        // neither a valid single-call nor a script tool is rejected (T-90-03-04).
1035        let (path, method) = match (decl.path.as_deref(), decl.method.as_deref()) {
1036            (Some(p), Some(m)) => (p, m),
1037            _ => {
1038                return Err(ToolkitError::Synth(format!(
1039                    "tool '{}' is not a valid single-call tool: both `path` and `method` are required",
1040                    decl.name
1041                )));
1042            },
1043        };
1044
1045        let operation = build_operation(path, method, decl);
1046        let info = build_tool_info(decl, validation);
1047        let handler: Arc<dyn ToolHandler> = Arc::new(HttpToolHandler {
1048            info: info.clone(),
1049            operation,
1050            connector: connector.clone(),
1051        });
1052        // Push site 3 of 3 (single-call HTTP handler) — D1 enforcement + E2 validator.
1053        let handler = enforce_input_schema(handler, &info, decl, validation, hooks);
1054        out.push((decl.name.clone(), info, handler));
1055    }
1056    Ok(out)
1057}
1058
1059/// Build the [`Operation`] for a single-call tool from its `path` template,
1060/// `method`, declared parameters, and per-tool `base_url`.
1061///
1062/// Path parameters are the `{...}` segments of the path template. Every other
1063/// declared `[[tools.parameters]]` becomes a QUERY parameter, or — when the method
1064/// carries a request body (`POST`/`PUT`/`PATCH`) — a
1065/// [`ParameterLocation::Body`] parameter that
1066/// [`crate::http::HttpClient`]'s `build_body` folds into the JSON payload. The
1067/// per-tool `base_url` is reflected onto the [`Operation`] (Codex MEDIUM — never
1068/// dropped).
1069///
1070/// # Agreement with `ToolDecl::param_position` — structural, not documentary
1071///
1072/// Both splits this function performs read a shared helper, so neither can drift
1073/// from [`crate::config::ToolDecl::param_position`]:
1074///
1075/// - the PATH split and `param_position`'s `Path` arm both read
1076///   [`crate::config::path_placeholder_names`];
1077/// - the QUERY/BODY split and `param_position`'s `Query`/`Body` arms both read
1078///   `crate::config::method_carries_request_body`, which is also the sole source of
1079///   [`Operation::has_request_body`].
1080///
1081/// That second agreement is Phase 128 CR-02/CR-03. Before it, this function marked
1082/// every non-path declared parameter `ParameterLocation::Query` regardless of
1083/// method while `param_position` classified a mutating tool's as `Body`, and the
1084/// divergence was documented here as deliberate. It was not survivable: a `POST`
1085/// tool's declared parameters travelled in the URL — so the D3 cap was withheld
1086/// from values that genuinely land in a request line — and `build_body`, which
1087/// collects only args ABSENT from `operation.parameters`, found nothing, so no
1088/// payload reached the backend at all once `additionalProperties: false` began to
1089/// be enforced.
1090///
1091/// D-05 is still honoured, and now by the routing rather than despite it: a
1092/// `Body`-located parameter really is a payload field, and
1093/// `crate::config::default_cap_applies` emits no default `maxLength` for it.
1094#[cfg(feature = "http")]
1095fn build_operation(path: &str, method: &str, decl: &ToolDecl) -> Operation {
1096    let method_upper = method.to_uppercase();
1097    let path_param_names: Vec<&str> = crate::config::path_placeholder_names(path).collect();
1098
1099    let mut parameters = Vec::with_capacity(decl.parameters.len());
1100    // Path params (template `{...}` segments) — always required.
1101    //
1102    // Phase 128 D4(b): this loop iterates the TEMPLATE, not `decl.parameters`, so
1103    // the declared narrowing is looked up BY NAME and falls back to "no declared
1104    // rules" when the template names a segment the config never declared. Such a
1105    // parameter still gets the unconditional character floor and the always-on cap
1106    // at substitution time — it simply gets no narrowing on top (D-10).
1107    for name in &path_param_names {
1108        let declared = decl.parameters.iter().find(|p| p.name == **name);
1109        parameters.push(
1110            Parameter::new((*name).to_string(), ParameterLocation::Path, true).with_rules(
1111                declared.and_then(|p| p.pattern.clone()),
1112                declared.and_then(|p| p.max_length),
1113                // D-11: the config is the ONE legitimate source of this permission.
1114                declared.is_some_and(|p| p.allow_slash),
1115            ),
1116        );
1117    }
1118    // Remaining declared params → the QUERY STRING, or the JSON BODY when the
1119    // method carries one (Phase 128 CR-02).
1120    //
1121    // `has_request_body` and this location are derived from the SAME
1122    // `method_carries_request_body` predicate `ToolDecl::param_position` reads, so
1123    // a `Body`-located parameter on a body-less request is not constructible and
1124    // the D3 cap's scope cannot drift from the request's actual routing.
1125    let has_request_body = crate::config::method_carries_request_body(&method_upper);
1126    let non_path_location = if has_request_body {
1127        ParameterLocation::Body
1128    } else {
1129        ParameterLocation::Query
1130    };
1131    for p in &decl.parameters {
1132        if path_param_names.iter().any(|n| *n == p.name) {
1133            continue;
1134        }
1135        parameters.push(
1136            Parameter::new(p.name.clone(), non_path_location, p.required).with_rules(
1137                p.pattern.clone(),
1138                p.max_length,
1139                p.allow_slash,
1140            ),
1141        );
1142    }
1143
1144    Operation {
1145        method: method_upper,
1146        path: path.to_string(),
1147        parameters,
1148        has_request_body,
1149        base_url: decl.base_url.clone(),
1150    }
1151}
1152
1153/// Crate-private handler for a single-call HTTP tool (Phase 90 OAPI-02a).
1154///
1155/// Holds the synthesized [`ToolInfo`], the built [`Operation`], and the shared
1156/// [`HttpConnector`]. [`ToolHandler::metadata`] returns `Some(self.info.clone())`
1157/// (the same RESEARCH §Risks #2 invariant the SQL handler upholds); `handle()`
1158/// calls [`HttpConnector::execute`] and returns the JSON response.
1159#[cfg(feature = "http")]
1160struct HttpToolHandler {
1161    info: ToolInfo,
1162    operation: Operation,
1163    connector: Arc<dyn HttpConnector>,
1164}
1165
1166#[cfg(feature = "http")]
1167#[async_trait]
1168impl ToolHandler for HttpToolHandler {
1169    async fn handle(&self, args: Value, _extra: RequestHandlerExtra) -> pmcp::Result<Value> {
1170        // T-90-03-01: arg injection is bounded by TWO checks, both of which run
1171        // before this handler's connector call and both of which live in this
1172        // repository rather than "upstream":
1173        //
1174        // (1) the object-envelope schema (additionalProperties:false) is checked by
1175        //     `pmcp::server::schema_validation::validate_input`, called from the
1176        //     `ValidatingToolHandler` decorator that `enforce_input_schema` wraps
1177        //     around this handler at its push site — so a call carrying an
1178        //     undeclared key never reaches `handle` at all. Conditional on the
1179        //     `input-validation` feature and on `[server.validation]
1180        //     enforce_input_schema` not being `false`. Backed by
1181        //     `tests/input_validation_acceptance.rs::input_validation_refuses_undeclared_argument_without_contacting_upstream`,
1182        //     which fails if the decorator or its `validate_input` call is removed.
1183        //
1184        // (2) path substitution touches only declared `{params}`, and EVERY
1185        //     substituted value additionally faces
1186        //     `pmcp::server::schema_validation::validate_path_placeholder` inside
1187        //     `HttpClient::substitute_path`, with the composed result facing
1188        //     `validate_resolved_path` through `check_composed_path` before
1189        //     dispatch. Backed by
1190        //     `tests/curated_path_injection.rs::curated_path_injection_refuses_traversal_via_a_placeholder_value`
1191        //     and `..._refuses_a_query_via_a_placeholder_value`, with
1192        //     `..._accepts_a_compliant_call_with_one_upstream_request` as the
1193        //     passing control.
1194        //
1195        // Until Phase 128 this comment located the envelope check somewhere
1196        // "upstream" of here (the retired phrasing is quoted in full in
1197        // `128-10-SUMMARY.md` and deliberately nowhere in `src/`, so the SC-6 grep
1198        // gate keeps distinguishing a surviving claim from a note about one).
1199        // Core `pmcp`'s `tools/call` dispatch does not validate request arguments
1200        // against a declared `inputSchema` — that wiring is deliberately deferred
1201        // (D-01) — so the claim named a mitigation that did not exist. Restated
1202        // rather than deleted, because as of this phase it is true and local.
1203        // The connector's Display is redaction-safe (T-90-01-01); no URL/credential
1204        // reaches the client error.
1205        //
1206        // Phase 128 E1: `execute_for_tool`, not `execute`, so a registered
1207        // `RequestPolicy` is told WHICH tool the call came from. An `Operation`
1208        // describes an endpoint and cannot carry a tool name; the default trait
1209        // body delegates to `execute`, so an out-of-repo connector is unaffected.
1210        self.connector
1211            .execute_for_tool(&self.info.name, &self.operation, &args)
1212            .await
1213            .map_err(|e| pmcp::Error::Internal(format!("connector error: {e}")))
1214    }
1215
1216    fn metadata(&self) -> Option<ToolInfo> {
1217        Some(self.info.clone())
1218    }
1219}
1220
1221// -----------------------------------------------------------------------------
1222// Script-tool handler (Phase 90 OAPI-02b / D-01 / D-02) — feature
1223// `openapi-code-mode`
1224// -----------------------------------------------------------------------------
1225
1226/// Crate-private handler for a **script** `[[tools]]` entry (OAPI-02b / D-01).
1227///
1228/// A script tool runs admin-authored embedded JS through the EXACT SAME
1229/// `pmcp_code_mode` engine that Code Mode uses (D-02 — one engine, two
1230/// surfaces): [`pmcp_code_mode::PlanCompiler`] compiles the `script` to an
1231/// execution plan, then [`pmcp_code_mode::PlanExecutor`] over the shared
1232/// [`HttpCodeExecutor`] walks it. The client's validated `args` are bound to the
1233/// `args` variable BEFORE the script runs — identical to the `JsCodeExecutor`
1234/// path's `set_variable("args", …)`, which is what makes the engine-parity proof
1235/// (Plan 05 Task 2) hold byte-for-byte.
1236///
1237/// # No token cycle (Pitfall 7 / T-90-05-01)
1238///
1239/// A script tool is admin-authored + trusted (like a `sql=` curated query), so it
1240/// skips the Code Mode validation + HMAC-token gate entirely. It is bounded ONLY by
1241/// the [`ExecutionConfig`] caps (`max_api_calls`, `max_loop_iterations`,
1242/// `timeout_seconds`) the [`PlanExecutor`](pmcp_code_mode::PlanExecutor) enforces,
1243/// and by the `PlanCompiler`-accepted JS subset (no `eval` / FFI).
1244///
1245/// # Feature gate (RESEARCH Pitfall 4)
1246///
1247/// Gated `openapi-code-mode` (the umbrella that forwards
1248/// `pmcp-code-mode/js-runtime`) — `PlanCompiler` / `PlanExecutor` are NOT in
1249/// scope under bare `code-mode`, so the light / curated-only build (`http
1250/// code-mode`) compiles without this type (single-call only).
1251#[cfg(feature = "openapi-code-mode")]
1252struct ScriptToolHandler {
1253    /// The admin-authored script, compiled ONCE at synthesis (the body is fixed
1254    /// content). Executed per `handle` over a fresh
1255    /// [`PlanExecutor`](pmcp_code_mode::PlanExecutor).
1256    plan: pmcp_code_mode::ExecutionPlan,
1257    /// The SAME executor instance that feeds Code Mode (D-02). Cloned per request
1258    /// to construct a fresh [`PlanExecutor`](pmcp_code_mode::PlanExecutor).
1259    http_exec: HttpCodeExecutor,
1260    /// The execution bounds (Pitfall 7 — the only limit on an admin script).
1261    exec_config: ExecutionConfig,
1262    /// The synthesized `ToolInfo` (object-envelope schema from
1263    /// `[[tools.parameters]]`, `additionalProperties:false`).
1264    ///
1265    /// `args` are checked against THIS schema before the script runs (T-90-05-03),
1266    /// by `pmcp::server::schema_validation::validate_input` inside the
1267    /// `ValidatingToolHandler` decorator that [`enforce_input_schema`] wraps
1268    /// around this handler at its push site — so a refusal happens before
1269    /// [`ToolHandler::handle`] is entered and therefore before
1270    /// `PlanExecutor::execute` makes any backend call.
1271    ///
1272    /// Conditional on the `input-validation` feature and on `[server.validation]
1273    /// enforce_input_schema` not being `false`; with either off,
1274    /// [`enforce_input_schema`] logs the opt-out and returns the handler undecorated.
1275    ///
1276    /// Backed by
1277    /// `tests/script_tool.rs::script_tool_refuses_a_schema_violating_arg_before_the_script_runs`,
1278    /// which asserts the refusal AND that the mock backend observed zero requests —
1279    /// it fails if the decorator or its `validate_input` call is removed. The
1280    /// sibling `script_tool_args_max_lines_binding_is_honored` asserts argument
1281    /// BINDING, which is a different (also true) property; before this phase it was
1282    /// the only row carrying this threat ID, and a binding assertion is not a
1283    /// validation assertion.
1284    tool_info: ToolInfo,
1285}
1286
1287#[cfg(feature = "openapi-code-mode")]
1288impl ScriptToolHandler {
1289    /// Build a [`ScriptToolHandler`] from a script `[[tools]]` declaration,
1290    /// the shared [`HttpCodeExecutor`], and the [`ExecutionConfig`] bounds.
1291    ///
1292    /// The `tool_info` is built from `[[tools.parameters]]` via the SAME
1293    /// [`build_input_schema`] / [`build_annotations`] / [`apply_widget_meta`]
1294    /// helpers the single-call path uses, so a script tool's `args` are checked
1295    /// against an identically-shaped schema (object envelope,
1296    /// `additionalProperties:false` unless `[server.validation]
1297    /// additional_properties` opts out) by the same enforcer — one
1298    /// [`enforce_input_schema`] call per push site, one
1299    /// `pmcp::server::schema_validation::validate_input` inside
1300    /// `ValidatingToolHandler`. There is no second validator for script tools;
1301    /// see [`ScriptToolHandler::tool_info`] for the condition and the acceptance
1302    /// row.
1303    ///
1304    /// `validation` is threaded in so a script tool's schema is built under the SAME
1305    /// `[server.validation]` policy as every other tool kind — a script tool whose
1306    /// parameters escaped the D3 cap would be a hole in exactly the surface this
1307    /// phase closes. A script tool's parameters are BODY position (it declares no
1308    /// `path`/`method`), so in practice the cap does not apply to them; the point is
1309    /// that the decision is made by one rule rather than by which synthesizer ran.
1310    ///
1311    /// # Errors
1312    ///
1313    /// Returns [`ToolkitError::Synth`] if the declaration carries no `script`
1314    /// (a defensive guard — callers route only `is_script_tool()` entries here),
1315    /// or if the script fails to compile (surfaced here at server build time,
1316    /// failing fast rather than on the first tool call).
1317    fn new(
1318        decl: &ToolDecl,
1319        http_exec: HttpCodeExecutor,
1320        exec_config: ExecutionConfig,
1321        validation: &ValidationSection,
1322    ) -> Result<Self> {
1323        let script = decl.script.clone().ok_or_else(|| {
1324            ToolkitError::Synth(format!(
1325                "tool '{}' has no `script` body — not a script tool",
1326                decl.name
1327            ))
1328        })?;
1329        // Compile the admin-authored JS ONCE at synthesis time — the script is
1330        // fixed content, so compiling per request would re-run a full SWC parse
1331        // on the hot path (the PlanCompiler-accepted subset, no eval / FFI, is
1332        // the static bound). A compile error surfaces here at server build.
1333        let plan = pmcp_code_mode::PlanCompiler::with_config(&exec_config)
1334            .compile_code(&script)
1335            .map_err(|e| {
1336                ToolkitError::Synth(format!(
1337                    "tool '{}' script failed to compile: {e}",
1338                    decl.name
1339                ))
1340            })?;
1341        let tool_info = build_tool_info(decl, validation);
1342        Ok(Self {
1343            plan,
1344            // Phase 128 E1: this handler owns a per-tool CLONE of the shared
1345            // executor, which is the one place a script tool's name can be
1346            // attached — `HttpExecutor::execute_request` is a `pmcp-code-mode`
1347            // trait method and carries no tool name.
1348            http_exec: http_exec.with_tool_label(&decl.name),
1349            exec_config,
1350            tool_info,
1351        })
1352    }
1353}
1354
1355#[cfg(feature = "openapi-code-mode")]
1356#[pmcp_code_mode::async_trait]
1357impl ToolHandler for ScriptToolHandler {
1358    /// Run the pre-compiled admin-authored script over the shared engine, binding
1359    /// the validated `args` to the `args` variable (D-02 — identical to the
1360    /// `JsCodeExecutor` path's `set_variable("args", …)`).
1361    async fn handle(&self, args: Value, extra: RequestHandlerExtra) -> pmcp::Result<Value> {
1362        // (1) Execute the plan (compiled once in `new`) over a PER-REQUEST clone
1363        //     of the shared HttpCodeExecutor (D-02), threading the captured
1364        //     inbound MCP token (Plan 90-10 / OAPI-03 / OAPI-05) so an
1365        //     `oauth_passthrough` backend forwards it. Bounded by ExecutionConfig
1366        //     (Pitfall 7 — no token cycle, only these caps).
1367        let mut executor = pmcp_code_mode::PlanExecutor::new(
1368            crate::code_mode::request_executor_from_extra(&self.http_exec, &extra),
1369            self.exec_config.clone(),
1370        );
1371        // (2) Bind the client args to `args` (T-90-05-03) — byte-identical to
1372        //     compile_and_execute's set_variable("args", …). These args have
1373        //     ALREADY been checked against `self.tool_info.input_schema` by
1374        //     `pmcp::server::schema_validation::validate_input`, in the
1375        //     `ValidatingToolHandler` decorator wrapped around this handler — a
1376        //     violating call never reaches this line. That is a fact about the
1377        //     DECORATOR, not about this function: `handle` performs no validation
1378        //     of its own and must not be read as if it did. Condition and
1379        //     acceptance row: see `ScriptToolHandler::tool_info`.
1380        executor.set_variable("args", args);
1381
1382        let result = executor
1383            .execute(&self.plan)
1384            .await
1385            .map_err(|e| pmcp::Error::Internal(format!("script execution failed: {e}")))?;
1386        Ok(result.value)
1387    }
1388
1389    fn metadata(&self) -> Option<ToolInfo> {
1390        Some(self.tool_info.clone())
1391    }
1392}
1393
1394// -----------------------------------------------------------------------------
1395// Tests — Plan 05 Task 1 (RED) → GREEN in Task 2
1396// -----------------------------------------------------------------------------
1397
1398#[cfg(test)]
1399mod tests {
1400    use super::*;
1401    use crate::config::{
1402        AnnotationsDecl, ItemsDecl, ParamDecl, ServerConfig, ServerSection, ToolDecl,
1403        ValidationSection,
1404    };
1405    use serde_json::Value;
1406
1407    /// Construct a minimal `ServerConfig` that satisfies `validate()` (non-empty
1408    /// `name` + `version`) so the synthesizer path is the system under test —
1409    /// not the parser/validator from Plan 04.
1410    fn cfg_with_tools(tools: Vec<ToolDecl>) -> ServerConfig {
1411        ServerConfig {
1412            server: ServerSection {
1413                name: "demo".to_string(),
1414                version: "0.1.0".to_string(),
1415                ..Default::default()
1416            },
1417            tools,
1418            ..Default::default()
1419        }
1420    }
1421
1422    #[test]
1423    fn empty_tools_returns_empty_vec() {
1424        let cfg = cfg_with_tools(vec![]);
1425        let out = synthesize_from_config(&cfg).expect("synthesize");
1426        assert_eq!(out.len(), 0);
1427    }
1428
1429    #[test]
1430    fn one_tool_no_params_yields_object_schema() {
1431        let cfg = cfg_with_tools(vec![ToolDecl {
1432            name: "ping".to_string(),
1433            description: Some("Ping the server".to_string()),
1434            parameters: vec![],
1435            annotations: None,
1436            ..Default::default()
1437        }]);
1438        let out = synthesize_from_config(&cfg).expect("synthesize");
1439        assert_eq!(out.len(), 1);
1440        let (name, info, _handler) = &out[0];
1441        assert_eq!(name, "ping");
1442        assert_eq!(info.name, "ping");
1443        assert_eq!(info.description.as_deref(), Some("Ping the server"));
1444        let schema = &info.input_schema;
1445        assert_eq!(schema["type"], Value::String("object".to_string()));
1446        assert_eq!(schema["properties"], serde_json::json!({}));
1447        assert_eq!(schema["required"], serde_json::json!([]));
1448        assert_eq!(schema["additionalProperties"], Value::Bool(false));
1449    }
1450
1451    #[test]
1452    fn required_and_optional_params_partitioned() {
1453        let cfg = cfg_with_tools(vec![ToolDecl {
1454            name: "search".to_string(),
1455            description: Some("Search".to_string()),
1456            parameters: vec![
1457                ParamDecl {
1458                    name: "query".to_string(),
1459                    param_type: Some("string".to_string()),
1460                    description: Some("the search query".to_string()),
1461                    required: true,
1462                    ..Default::default()
1463                },
1464                ParamDecl {
1465                    name: "max_results".to_string(),
1466                    param_type: Some("integer".to_string()),
1467                    description: Some("maximum result count".to_string()),
1468                    required: false,
1469                    default: Some(toml::Value::Integer(100)),
1470                    minimum: Some(1.0),
1471                    maximum: Some(1000.0),
1472                    ..Default::default()
1473                },
1474            ],
1475            ..Default::default()
1476        }]);
1477        let out = synthesize_from_config(&cfg).expect("synthesize");
1478        let (_, info, _) = &out[0];
1479        let schema = &info.input_schema;
1480        assert_eq!(schema["required"], serde_json::json!(["query"]));
1481        let props = schema["properties"].as_object().expect("object");
1482        assert_eq!(props["query"]["type"], "string");
1483        assert_eq!(props["max_results"]["type"], "integer");
1484        assert_eq!(props["max_results"]["minimum"], serde_json::json!(1.0));
1485        assert_eq!(props["max_results"]["maximum"], serde_json::json!(1000.0));
1486        assert_eq!(props["max_results"]["default"], serde_json::json!(100));
1487    }
1488
1489    #[test]
1490    fn param_max_length_propagates() {
1491        let cfg = cfg_with_tools(vec![ToolDecl {
1492            name: "echo".to_string(),
1493            description: Some("Echo".to_string()),
1494            parameters: vec![ParamDecl {
1495                name: "text".to_string(),
1496                param_type: Some("string".to_string()),
1497                description: Some("input text".to_string()),
1498                required: true,
1499                max_length: Some(256),
1500                ..Default::default()
1501            }],
1502            ..Default::default()
1503        }]);
1504        let out = synthesize_from_config(&cfg).expect("synthesize");
1505        let (_, info, _) = &out[0];
1506        assert_eq!(
1507            info.input_schema["properties"]["text"]["maxLength"],
1508            serde_json::json!(256)
1509        );
1510    }
1511
1512    #[test]
1513    fn annotations_round_trip_via_fluent_builder() {
1514        let cfg = cfg_with_tools(vec![ToolDecl {
1515            name: "destroy_all".to_string(),
1516            description: Some("Destroy all data (test)".to_string()),
1517            parameters: vec![],
1518            annotations: Some(AnnotationsDecl {
1519                read_only_hint: false,
1520                destructive_hint: true,
1521                idempotent_hint: false,
1522                open_world_hint: false,
1523                cost_hint: Some("high".to_string()),
1524            }),
1525            ..Default::default()
1526        }]);
1527        let out = synthesize_from_config(&cfg).expect("synthesize");
1528        let (_, info, _) = &out[0];
1529        let ann = info.annotations.as_ref().expect("annotations");
1530        assert_eq!(ann.read_only_hint, Some(false));
1531        assert_eq!(ann.destructive_hint, Some(true));
1532        assert_eq!(ann.idempotent_hint, Some(false));
1533        assert_eq!(ann.open_world_hint, Some(false));
1534    }
1535
1536    /// REVIEWS H1 (in-plan widget_meta flip — no SqliteConnector dependency).
1537    ///
1538    /// When a `[[tools]]` entry declares `ui_resource_uri`, the synthesized
1539    /// `ToolInfo` must carry widget metadata so pmcp core's
1540    /// `with_widget_enrichment` (gated on `info.widget_meta().is_some()`)
1541    /// populates `structuredContent` (D-06). The flip lives in the shared
1542    /// `synthesize_inner` helper, so it fires for BOTH entry points; this test
1543    /// exercises it via the no-connector `synthesize_from_config` path.
1544    #[test]
1545    fn widget_meta_flips_when_ui_resource_uri_present() {
1546        let cfg = cfg_with_tools(vec![ToolDecl {
1547            name: "widget_tool".to_string(),
1548            description: Some("renders a widget".to_string()),
1549            ui_resource_uri: Some("ui://test".to_string()),
1550            ..Default::default()
1551        }]);
1552        let out = synthesize_from_config(&cfg).expect("synthesize");
1553        let (_, info, _) = &out[0];
1554        assert!(
1555            info.widget_meta().is_some(),
1556            "ui_resource_uri set ⇒ widget_meta() must be Some so D-06 structuredContent fires"
1557        );
1558    }
1559
1560    /// REVIEWS H1 negative case — a tool WITHOUT `ui_resource_uri` must NOT
1561    /// carry widget metadata (T-84-03-03: no accidental flip on non-widget
1562    /// tools).
1563    #[test]
1564    fn widget_meta_absent_when_ui_resource_uri_none() {
1565        let cfg = cfg_with_tools(vec![ToolDecl {
1566            name: "plain_tool".to_string(),
1567            description: Some("no widget".to_string()),
1568            ui_resource_uri: None,
1569            ..Default::default()
1570        }]);
1571        let out = synthesize_from_config(&cfg).expect("synthesize");
1572        let (_, info, _) = &out[0];
1573        assert!(
1574            info.widget_meta().is_none(),
1575            "ui_resource_uri absent ⇒ widget_meta() must be None (no accidental flip)"
1576        );
1577    }
1578
1579    #[tokio::test]
1580    async fn synthesized_handler_metadata_returns_some() {
1581        let cfg = cfg_with_tools(vec![ToolDecl {
1582            name: "ping".to_string(),
1583            description: Some("ping".to_string()),
1584            parameters: vec![],
1585            annotations: None,
1586            ..Default::default()
1587        }]);
1588        let out = synthesize_from_config(&cfg).expect("synthesize");
1589        let (_, expected_info, handler) = &out[0];
1590        let actual = handler.metadata();
1591        assert!(
1592            actual.is_some(),
1593            "RESEARCH §Risks #2 invariant: SynthesizedToolHandler::metadata() MUST return Some(ToolInfo)"
1594        );
1595        assert_eq!(actual.unwrap().name, expected_info.name);
1596    }
1597
1598    /// A `[[tools]]` declaration with one defaulted `limit` param (default=20),
1599    /// used to exercise [`extract_named_params`]'s default / explicit-null logic.
1600    fn decl_with_limit_default() -> ToolDecl {
1601        ToolDecl {
1602            name: "search".to_string(),
1603            description: Some("Search".to_string()),
1604            sql: Some("SELECT * FROM t LIMIT :limit".to_string()),
1605            parameters: vec![ParamDecl {
1606                name: "limit".to_string(),
1607                param_type: Some("integer".to_string()),
1608                description: Some("row limit".to_string()),
1609                required: false,
1610                default: Some(toml::Value::Integer(20)),
1611                ..Default::default()
1612            }],
1613            ..Default::default()
1614        }
1615    }
1616
1617    #[test]
1618    fn extract_named_params_applies_default_when_absent() {
1619        // `{}` → declared default (20) is bound (the reference search/list calls
1620        // rely on this so an omitted :limit never binds NULL).
1621        let decl = decl_with_limit_default();
1622        let params = extract_named_params(&decl, &serde_json::json!({}));
1623        assert_eq!(params, vec![("limit".to_string(), serde_json::json!(20))]);
1624    }
1625
1626    #[test]
1627    fn extract_named_params_explicit_null_applies_default() {
1628        // 85-10 WR-02 secondary fix: an EXPLICIT JSON null must NOT bind
1629        // `LIMIT NULL` — it falls through to the declared default exactly like
1630        // an omitted key.
1631        let decl = decl_with_limit_default();
1632        let params = extract_named_params(&decl, &serde_json::json!({ "limit": null }));
1633        assert_eq!(
1634            params,
1635            vec![("limit".to_string(), serde_json::json!(20))],
1636            "explicit null must apply the declared default, not bind LIMIT NULL"
1637        );
1638    }
1639
1640    #[test]
1641    fn extract_named_params_explicit_value_overrides_default() {
1642        // A concrete value wins over the default.
1643        let decl = decl_with_limit_default();
1644        let params = extract_named_params(&decl, &serde_json::json!({ "limit": 5 }));
1645        assert_eq!(params, vec![("limit".to_string(), serde_json::json!(5))]);
1646    }
1647
1648    // -------------------------------------------------------------------------
1649    // Phase 128 D2 — the six new `ParamDecl` keywords reach `inputSchema`
1650    // -------------------------------------------------------------------------
1651
1652    /// Fetch the synthesized property object for `param` of the single tool in
1653    /// `tools`.
1654    fn prop_of(tools: Vec<ToolDecl>, param: &str) -> Value {
1655        let cfg = cfg_with_tools(tools);
1656        let out = synthesize_from_config(&cfg).expect("synthesize");
1657        let (_name, info, _handler) = &out[0];
1658        info.input_schema["properties"][param].clone()
1659    }
1660
1661    /// D2 / SC-2: `pattern`, `minLength`, `format` and `maxItems` all reach the
1662    /// emitted `inputSchema`.
1663    #[test]
1664    fn input_schema_emits_d2_scalar_keywords() {
1665        let prop = prop_of(
1666            vec![ToolDecl {
1667                name: "lookup".to_string(),
1668                parameters: vec![ParamDecl {
1669                    name: "region".to_string(),
1670                    param_type: Some("string".to_string()),
1671                    required: true,
1672                    pattern: Some("^[A-Z]{3}$".to_string()),
1673                    min_length: Some(3),
1674                    format: Some("uuid".to_string()),
1675                    max_items: Some(5),
1676                    ..Default::default()
1677                }],
1678                ..Default::default()
1679            }],
1680            "region",
1681        );
1682        assert_eq!(prop["pattern"], serde_json::json!("^[A-Z]{3}$"));
1683        assert_eq!(prop["minLength"], serde_json::json!(3));
1684        assert_eq!(prop["format"], serde_json::json!("uuid"));
1685        assert_eq!(prop["maxItems"], serde_json::json!(5));
1686    }
1687
1688    /// D2 / RESEARCH Finding 1h: `items` is emitted in OBJECT form. The array
1689    /// (draft-07 tuple) form does not compile under the Draft 2020-12 pin and
1690    /// would take the whole tool's validator down.
1691    #[test]
1692    fn input_schema_emits_items_as_object_never_array() {
1693        let prop = prop_of(
1694            vec![ToolDecl {
1695                name: "batch".to_string(),
1696                parameters: vec![ParamDecl {
1697                    name: "codes".to_string(),
1698                    param_type: Some("array".to_string()),
1699                    required: true,
1700                    items: Some(ItemsDecl {
1701                        item_type: Some("string".to_string()),
1702                        max_length: Some(8),
1703                        pattern: Some("^[a-z]+$".to_string()),
1704                    }),
1705                    max_items: Some(10),
1706                    ..Default::default()
1707                }],
1708                ..Default::default()
1709            }],
1710            "codes",
1711        );
1712        assert!(
1713            prop["items"].is_object(),
1714            "items must be an OBJECT, got: {}",
1715            prop["items"]
1716        );
1717        assert!(
1718            !prop["items"].is_array(),
1719            "array-form items does not compile under the 2020-12 pin"
1720        );
1721        assert_eq!(
1722            prop["items"],
1723            serde_json::json!({
1724                "type": "string",
1725                "maxLength": 8,
1726                "pattern": "^[a-z]+$",
1727            })
1728        );
1729    }
1730
1731    /// D2 edge (empty): a `ParamDecl` carrying NONE of the six new keywords emits
1732    /// exactly the five it emits today — no empty `pattern` string and no empty
1733    /// `items` object appears.
1734    #[test]
1735    fn input_schema_omits_d2_keywords_when_undeclared() {
1736        let prop = prop_of(
1737            vec![ToolDecl {
1738                name: "legacy".to_string(),
1739                parameters: vec![ParamDecl {
1740                    name: "count".to_string(),
1741                    param_type: Some("integer".to_string()),
1742                    description: Some("how many".to_string()),
1743                    required: false,
1744                    minimum: Some(1.0),
1745                    maximum: Some(10.0),
1746                    max_length: Some(4),
1747                    ..Default::default()
1748                }],
1749                ..Default::default()
1750            }],
1751            "count",
1752        );
1753        let obj = prop.as_object().expect("property object");
1754        let mut keys: Vec<&str> = obj.keys().map(String::as_str).collect();
1755        keys.sort_unstable();
1756        assert_eq!(
1757            keys,
1758            vec!["description", "maxLength", "maximum", "minimum", "type"],
1759            "exactly the five pre-D2 keywords, and no more"
1760        );
1761        for absent in ["pattern", "minLength", "format", "items", "maxItems"] {
1762            assert!(
1763                obj.get(absent).is_none(),
1764                "undeclared keyword {absent} must not be emitted"
1765            );
1766        }
1767    }
1768
1769    /// D2 edge (ordering): two synthesis runs over ONE config produce
1770    /// byte-identical `input_schema` values, so `properties` and `required` follow
1771    /// `[[tools.parameters]]` declaration order deterministically.
1772    #[test]
1773    fn input_schema_is_byte_identical_across_two_synthesis_runs() {
1774        let tools = vec![ToolDecl {
1775            name: "search".to_string(),
1776            parameters: vec![
1777                ParamDecl {
1778                    name: "zebra".to_string(),
1779                    param_type: Some("string".to_string()),
1780                    required: true,
1781                    pattern: Some("^z".to_string()),
1782                    ..Default::default()
1783                },
1784                ParamDecl {
1785                    name: "alpha".to_string(),
1786                    param_type: Some("string".to_string()),
1787                    required: true,
1788                    min_length: Some(1),
1789                    ..Default::default()
1790                },
1791                ParamDecl {
1792                    name: "middle".to_string(),
1793                    param_type: Some("integer".to_string()),
1794                    required: false,
1795                    ..Default::default()
1796                },
1797            ],
1798            ..Default::default()
1799        }];
1800        let cfg = cfg_with_tools(tools);
1801        let first = synthesize_from_config(&cfg).expect("synthesize")[0]
1802            .1
1803            .input_schema
1804            .to_string();
1805        let second = synthesize_from_config(&cfg).expect("synthesize")[0]
1806            .1
1807            .input_schema
1808            .to_string();
1809        assert_eq!(first, second, "synthesis must be byte-deterministic");
1810        // Declaration order, not sorted order.
1811        assert!(
1812            first.find("\"zebra\"").unwrap() < first.find("\"alpha\"").unwrap(),
1813            "properties must follow declaration order: {first}"
1814        );
1815    }
1816
1817    /// D2 edge (adjacency): `min_length == max_length` accepts exactly that length
1818    /// and refuses one code point either side, through the SAME core validator the
1819    /// D1 decorator uses.
1820    #[cfg(feature = "input-validation")]
1821    #[test]
1822    fn min_length_equal_to_max_length_accepts_exactly_that_length() {
1823        use pmcp::server::schema_validation::validate_input;
1824
1825        let cfg = cfg_with_tools(vec![ToolDecl {
1826            name: "exact".to_string(),
1827            parameters: vec![ParamDecl {
1828                name: "code".to_string(),
1829                param_type: Some("string".to_string()),
1830                required: true,
1831                min_length: Some(3),
1832                max_length: Some(3),
1833                ..Default::default()
1834            }],
1835            ..Default::default()
1836        }]);
1837        let out = synthesize_from_config(&cfg).expect("synthesize");
1838        let schema = &out[0].1.input_schema;
1839
1840        validate_input(schema, Some(&serde_json::json!({ "code": "abc" })), None)
1841            .expect("exactly three code points must be accepted");
1842        validate_input(schema, Some(&serde_json::json!({ "code": "ab" })), None)
1843            .expect_err("two code points must be refused");
1844        validate_input(schema, Some(&serde_json::json!({ "code": "abcd" })), None)
1845            .expect_err("four code points must be refused");
1846    }
1847
1848    // -------------------------------------------------------------------------
1849    // Phase 128 D3 — position-scoped default cap and `[server.validation]`
1850    // -------------------------------------------------------------------------
1851
1852    /// Synthesize `tools` under `validation` and return the property object for
1853    /// `param` of the FIRST tool.
1854    fn prop_under(tools: Vec<ToolDecl>, validation: ValidationSection, param: &str) -> Value {
1855        let mut cfg = cfg_with_tools(tools);
1856        cfg.server.validation = validation;
1857        let out = synthesize_from_config(&cfg).expect("synthesize");
1858        out[0].1.input_schema["properties"][param].clone()
1859    }
1860
1861    /// A single-call `GET` tool declaring one path parameter and one query
1862    /// parameter, both uncapped strings.
1863    fn get_tool_with_path_and_query() -> Vec<ToolDecl> {
1864        vec![ToolDecl {
1865            name: "line_status".to_string(),
1866            path: Some("/lines/{line_id}/status".to_string()),
1867            method: Some("GET".to_string()),
1868            parameters: vec![
1869                ParamDecl {
1870                    name: "line_id".to_string(),
1871                    param_type: Some("string".to_string()),
1872                    required: true,
1873                    ..Default::default()
1874                },
1875                ParamDecl {
1876                    name: "detail".to_string(),
1877                    param_type: Some("string".to_string()),
1878                    required: false,
1879                    ..Default::default()
1880                },
1881            ],
1882            ..Default::default()
1883        }]
1884    }
1885
1886    /// D3: a PATH-position string with no `max_length` is capped at the configured
1887    /// default.
1888    #[test]
1889    fn default_cap_applies_to_path_position_string() {
1890        let prop = prop_under(
1891            get_tool_with_path_and_query(),
1892            ValidationSection::default(),
1893            "line_id",
1894        );
1895        assert_eq!(prop["maxLength"], serde_json::json!(256));
1896    }
1897
1898    /// D3: a QUERY-position string (non-path parameter of a `GET` tool) with no
1899    /// `max_length` is capped at the configured default.
1900    #[test]
1901    fn default_cap_applies_to_query_position_string() {
1902        let prop = prop_under(
1903            get_tool_with_path_and_query(),
1904            ValidationSection::default(),
1905            "detail",
1906        );
1907        assert_eq!(prop["maxLength"], serde_json::json!(256));
1908    }
1909
1910    /// D3 / D-05 / T-128-13d: a BODY-position string on a mutating single-call tool
1911    /// receives NO cap. Capping a `POST` payload's free-text field is exactly the
1912    /// breakage review note C objected to.
1913    #[test]
1914    fn default_cap_never_applies_to_body_position_string() {
1915        let tools = vec![ToolDecl {
1916            name: "add_comment".to_string(),
1917            path: Some("/issues/{id}/comments".to_string()),
1918            method: Some("POST".to_string()),
1919            parameters: vec![
1920                ParamDecl {
1921                    name: "id".to_string(),
1922                    param_type: Some("string".to_string()),
1923                    required: true,
1924                    ..Default::default()
1925                },
1926                ParamDecl {
1927                    name: "body_text".to_string(),
1928                    param_type: Some("string".to_string()),
1929                    required: true,
1930                    ..Default::default()
1931                },
1932            ],
1933            ..Default::default()
1934        }];
1935        let path_prop = prop_under(tools.clone(), ValidationSection::default(), "id");
1936        assert_eq!(
1937            path_prop["maxLength"],
1938            serde_json::json!(256),
1939            "the path parameter of a POST tool IS still capped"
1940        );
1941        let body_prop = prop_under(tools, ValidationSection::default(), "body_text");
1942        assert!(
1943            body_prop.get("maxLength").is_none(),
1944            "a POST payload field must receive no default cap, got: {body_prop}"
1945        );
1946    }
1947
1948    /// D3 edge (adjacency): a DECLARED `max_length` is never overridden and never
1949    /// merged with the default, in either direction.
1950    #[test]
1951    fn declared_max_length_wins_over_the_default_cap() {
1952        let mut tools = get_tool_with_path_and_query();
1953        tools[0].parameters[0].max_length = Some(12);
1954        let prop = prop_under(tools, ValidationSection::default(), "line_id");
1955        assert_eq!(prop["maxLength"], serde_json::json!(12));
1956    }
1957
1958    /// D3 edge (empty): `default_max_length = 0` emits no `maxLength` in ANY
1959    /// position and disables the cap entirely.
1960    #[test]
1961    fn default_max_length_zero_disables_the_cap_in_every_position() {
1962        let validation = ValidationSection {
1963            default_max_length: 0,
1964            ..Default::default()
1965        };
1966        for param in ["line_id", "detail"] {
1967            let prop = prop_under(get_tool_with_path_and_query(), validation.clone(), param);
1968            assert!(
1969                prop.get("maxLength").is_none(),
1970                "{param} must carry no maxLength when the default is 0, got: {prop}"
1971            );
1972        }
1973    }
1974
1975    /// D3 edge (boundary + encoding): the cap is counted in Unicode CODE POINTS,
1976    /// not bytes — so exactly `default_max_length` multi-byte characters are
1977    /// accepted and one more is refused, through the SAME core validator.
1978    #[cfg(feature = "input-validation")]
1979    #[test]
1980    fn default_cap_boundary_is_counted_in_code_points_not_bytes() {
1981        use pmcp::server::schema_validation::validate_input;
1982
1983        let validation = ValidationSection {
1984            default_max_length: 8,
1985            ..Default::default()
1986        };
1987        let mut cfg = cfg_with_tools(get_tool_with_path_and_query());
1988        cfg.server.validation = validation;
1989        let out = synthesize_from_config(&cfg).expect("synthesize");
1990        let schema = &out[0].1.input_schema;
1991
1992        // Each `é` is TWO bytes and ONE code point. Eight of them are 16 bytes.
1993        let at_limit: String = "é".repeat(8);
1994        let over_limit: String = "é".repeat(9);
1995        assert_eq!(
1996            at_limit.len(),
1997            16,
1998            "the fixture must actually be multi-byte"
1999        );
2000        validate_input(
2001            schema,
2002            Some(&serde_json::json!({ "line_id": at_limit })),
2003            None,
2004        )
2005        .expect("exactly 8 code points must be accepted even though they are 16 bytes");
2006        validate_input(
2007            schema,
2008            Some(&serde_json::json!({ "line_id": over_limit })),
2009            None,
2010        )
2011        .expect_err("9 code points must be refused");
2012    }
2013
2014    /// `additional_properties = true` flips the emitted envelope, re-opening the
2015    /// unknown-argument class for this server.
2016    #[test]
2017    fn additional_properties_opt_out_flips_the_envelope() {
2018        let mut cfg = cfg_with_tools(get_tool_with_path_and_query());
2019        cfg.server.validation = ValidationSection {
2020            additional_properties: true,
2021            ..Default::default()
2022        };
2023        let out = synthesize_from_config(&cfg).expect("synthesize");
2024        assert_eq!(
2025            out[0].1.input_schema["additionalProperties"],
2026            Value::Bool(true)
2027        );
2028
2029        let mut cfg = cfg_with_tools(get_tool_with_path_and_query());
2030        cfg.server.validation = ValidationSection::default();
2031        let out = synthesize_from_config(&cfg).expect("synthesize");
2032        assert_eq!(
2033            out[0].1.input_schema["additionalProperties"],
2034            Value::Bool(false),
2035            "the default must remain a closed envelope"
2036        );
2037    }
2038
2039    /// T-128-13c: `enforce_input_schema = false` skips the SCHEMA CHECK, not the
2040    /// decorator. This test pins the separation the E2 argument-validator registry
2041    /// will depend on: with the flag off an undeclared argument is ACCEPTED (schema
2042    /// off), while the inner handler's own rule still REFUSES (the non-schema
2043    /// enforcement is untouched). Without this test the two collapse back together
2044    /// on the next refactor.
2045    #[cfg(feature = "input-validation")]
2046    #[tokio::test]
2047    async fn enforce_input_schema_false_skips_the_check_not_the_decorator() {
2048        /// Stands in for an explicitly-registered argument validator: a rule that
2049        /// lives INSIDE the decorated stack and is not the JSON Schema check.
2050        struct RefusingInner;
2051
2052        #[async_trait]
2053        impl ToolHandler for RefusingInner {
2054            async fn handle(
2055                &self,
2056                _args: Value,
2057                _extra: RequestHandlerExtra,
2058            ) -> pmcp::Result<Value> {
2059                Err(pmcp::Error::Validation(
2060                    "the registered validator refused".to_string(),
2061                ))
2062            }
2063        }
2064
2065        let decl = ToolDecl {
2066            name: "guarded".to_string(),
2067            parameters: vec![ParamDecl {
2068                name: "declared".to_string(),
2069                param_type: Some("string".to_string()),
2070                required: false,
2071                ..Default::default()
2072            }],
2073            ..Default::default()
2074        };
2075        let info = build_tool_info(&decl, &ValidationSection::default());
2076        let undeclared = serde_json::json!({ "not_declared_at_all": "x" });
2077
2078        // (a) enforcement ON: the SCHEMA refuses before the inner handler runs, so
2079        //     the message is the schema refusal, not the inner one.
2080        let on = ValidatingToolHandler::wrap(Arc::new(RefusingInner), &info, &decl, true, None);
2081        let err = on
2082            .handle(undeclared.clone(), RequestHandlerExtra::default())
2083            .await
2084            .expect_err("an undeclared argument must be refused when enforcement is on");
2085        assert!(
2086            !err.to_string().contains("registered validator"),
2087            "the schema check must run FIRST when enforcement is on: {err}"
2088        );
2089
2090        // (b) enforcement OFF: the schema check is skipped (the undeclared argument
2091        //     is accepted by it), and the inner rule STILL refuses. That is the
2092        //     separation — A off must not silently turn B off.
2093        let off = ValidatingToolHandler::wrap(Arc::new(RefusingInner), &info, &decl, false, None);
2094        let err = off
2095            .handle(undeclared, RequestHandlerExtra::default())
2096            .await
2097            .expect_err("the inner (non-schema) rule must still refuse");
2098        assert!(
2099            err.to_string().contains("registered validator"),
2100            "with the schema check off, the refusal must come from the inner rule: {err}"
2101        );
2102    }
2103}
2104
2105// -----------------------------------------------------------------------------
2106// Tests — Phase 128 D4(b): `build_operation` carries the declared placeholder
2107// rules onto every `Parameter`.
2108// -----------------------------------------------------------------------------
2109
2110/// Named `build_operation` deliberately: libtest matches the FULL test path, so a
2111/// test placed in the crate's existing `mod tests` would be
2112/// `tools::tests::build_operation_…` and this plan's `--lib tools::build_operation`
2113/// verify filter would select ZERO tests while exiting 0. As a SIBLING of `tests`
2114/// at the `tools` module level the filter resolves as written. Do not fold these
2115/// into `mod tests`.
2116#[cfg(all(test, feature = "http"))]
2117mod build_operation {
2118    use super::*;
2119
2120    /// A single-call `GET` tool on `path` carrying `parameters`.
2121    fn decl(path: &str, parameters: Vec<ParamDecl>) -> ToolDecl {
2122        ToolDecl {
2123            name: "t".to_string(),
2124            description: Some("t".to_string()),
2125            path: Some(path.to_string()),
2126            method: Some("GET".to_string()),
2127            parameters,
2128            ..Default::default()
2129        }
2130    }
2131
2132    fn param_named<'a>(op: &'a Operation, name: &str) -> &'a Parameter {
2133        op.parameters
2134            .iter()
2135            .find(|p| p.name == name)
2136            .unwrap_or_else(|| panic!("parameter {name} present"))
2137    }
2138
2139    /// A path parameter declaring a `pattern` produces a `Parameter` carrying it.
2140    #[test]
2141    fn build_operation_carries_a_declared_path_pattern() {
2142        let d = decl(
2143            "/content/{version}",
2144            vec![ParamDecl {
2145                name: "version".to_string(),
2146                param_type: Some("string".to_string()),
2147                required: true,
2148                pattern: Some("^C[0-9]+$".to_string()),
2149                ..Default::default()
2150            }],
2151        );
2152        let op = super::build_operation("/content/{version}", "GET", &d);
2153        let p = param_named(&op, "version");
2154        assert_eq!(p.location, ParameterLocation::Path);
2155        assert_eq!(p.pattern.as_deref(), Some("^C[0-9]+$"));
2156    }
2157
2158    /// A query parameter declaring `max_length = 64` produces a `Parameter`
2159    /// carrying `max_length: Some(64)`.
2160    #[test]
2161    fn build_operation_carries_a_declared_query_max_length() {
2162        let d = decl(
2163            "/search",
2164            vec![ParamDecl {
2165                name: "q".to_string(),
2166                param_type: Some("string".to_string()),
2167                max_length: Some(64),
2168                ..Default::default()
2169            }],
2170        );
2171        let op = super::build_operation("/search", "GET", &d);
2172        let p = param_named(&op, "q");
2173        assert_eq!(p.location, ParameterLocation::Query);
2174        assert_eq!(p.max_length, Some(64));
2175    }
2176
2177    /// A template segment the config never declared carries NO declared rules and
2178    /// `allow_slash: false` — the path loop iterates the TEMPLATE, so it must look
2179    /// the `ParamDecl` up by name and fall back cleanly when there is none.
2180    #[test]
2181    fn build_operation_leaves_rules_absent_for_an_undeclared_template_segment() {
2182        let d = decl("/content/{version}", vec![]);
2183        let op = super::build_operation("/content/{version}", "GET", &d);
2184        let p = param_named(&op, "version");
2185        assert_eq!(p.pattern, None);
2186        assert_eq!(p.max_length, None);
2187        assert!(!p.allow_slash);
2188        assert!(p.required, "a template path parameter stays required");
2189    }
2190
2191    /// D-11: `allow_slash` reaches the `Parameter` from the server's OWN config —
2192    /// the one legitimate source.
2193    #[test]
2194    fn build_operation_carries_allow_slash_from_the_config() {
2195        let d = decl(
2196            "/files/{subpath}",
2197            vec![ParamDecl {
2198                name: "subpath".to_string(),
2199                param_type: Some("string".to_string()),
2200                required: true,
2201                allow_slash: true,
2202                ..Default::default()
2203            }],
2204        );
2205        let op = super::build_operation("/files/{subpath}", "GET", &d);
2206        assert!(param_named(&op, "subpath").allow_slash);
2207    }
2208
2209    /// The three rule fields round-trip into the core rules type the substitution
2210    /// point reads.
2211    #[cfg(feature = "input-validation")]
2212    #[test]
2213    fn build_operation_rules_reach_placeholder_rules() {
2214        let d = decl(
2215            "/files/{subpath}",
2216            vec![ParamDecl {
2217                name: "subpath".to_string(),
2218                param_type: Some("string".to_string()),
2219                required: true,
2220                pattern: Some("^[a-z/]+$".to_string()),
2221                max_length: Some(128),
2222                allow_slash: true,
2223                ..Default::default()
2224            }],
2225        );
2226        let op = super::build_operation("/files/{subpath}", "GET", &d);
2227        let rules = param_named(&op, "subpath").placeholder_rules();
2228        assert_eq!(rules.declared_pattern, Some("^[a-z/]+$"));
2229        assert_eq!(rules.declared_max_length, Some(128));
2230        assert!(rules.allow_slash);
2231    }
2232
2233    /// Phase 128 CR-02 — a body-bearing method routes its non-path declared
2234    /// parameters to [`ParameterLocation::Body`], not to the query string.
2235    ///
2236    /// Before the fix every one of these was `Query`, so the payload
2237    /// `build_body` assembles was empty and the values travelled in the URL.
2238    #[test]
2239    fn build_operation_routes_a_post_non_path_param_to_the_body() {
2240        for method in ["POST", "PUT", "PATCH", "post"] {
2241            let mut d = decl(
2242                "/issues/{id}/comments",
2243                vec![
2244                    ParamDecl {
2245                        name: "id".to_string(),
2246                        param_type: Some("string".to_string()),
2247                        required: true,
2248                        ..Default::default()
2249                    },
2250                    ParamDecl {
2251                        name: "body_text".to_string(),
2252                        param_type: Some("string".to_string()),
2253                        required: true,
2254                        ..Default::default()
2255                    },
2256                ],
2257            );
2258            d.method = Some(method.to_string());
2259            let op = super::build_operation("/issues/{id}/comments", method, &d);
2260            assert!(
2261                op.has_request_body,
2262                "{method} carries a request body by definition"
2263            );
2264            assert_eq!(param_named(&op, "id").location, ParameterLocation::Path);
2265            assert_eq!(
2266                param_named(&op, "body_text").location,
2267                ParameterLocation::Body,
2268                "{method}: a non-path declared parameter must be routed to the payload"
2269            );
2270            assert_eq!(
2271                op.body_parameters().len(),
2272                1,
2273                "{method}: exactly the one non-path parameter is a body parameter"
2274            );
2275            assert!(
2276                op.query_parameters().is_empty(),
2277                "{method}: nothing may travel in the query string as well"
2278            );
2279        }
2280    }
2281
2282    /// The other half of the same rule: a method that carries NO request body has
2283    /// nowhere but the URL to put a non-path parameter, so it stays `Query`. Without
2284    /// this row the fix above is satisfiable by routing everything to the body,
2285    /// which would drop a `GET` tool's parameters entirely.
2286    #[test]
2287    fn build_operation_keeps_a_body_less_method_non_path_param_in_the_query() {
2288        for method in ["GET", "HEAD", "DELETE", "OPTIONS"] {
2289            let mut d = decl(
2290                "/search",
2291                vec![ParamDecl {
2292                    name: "q".to_string(),
2293                    param_type: Some("string".to_string()),
2294                    required: true,
2295                    ..Default::default()
2296                }],
2297            );
2298            d.method = Some(method.to_string());
2299            let op = super::build_operation("/search", method, &d);
2300            assert!(!op.has_request_body, "{method} carries no request body");
2301            assert_eq!(
2302                param_named(&op, "q").location,
2303                ParameterLocation::Query,
2304                "{method}: a non-path parameter must stay in the query string"
2305            );
2306            assert!(
2307                op.body_parameters().is_empty(),
2308                "{method}: a body-less request can have no body parameter"
2309            );
2310        }
2311    }
2312
2313    /// Phase 128 CR-03 — the D3 cap's POSITION and the request's ROUTING agree for
2314    /// EVERY method this connector can send, so the cap can no longer be withheld
2315    /// from a value that travels in the query string.
2316    ///
2317    /// This is the row that would have caught the original defect: it does not
2318    /// assert a particular location, it asserts the PAIRING. Before the fix
2319    /// `param_position` said `Body` for `POST` while `build_operation` said `Query`,
2320    /// and `apply_position_cap` emitted nothing for `Body` — so a `POST` parameter
2321    /// reached the request line with no `maxLength`.
2322    ///
2323    /// Fails on removal: point either side at its own method list again and the
2324    /// `POST`/`PUT`/`PATCH` rows (or the `OPTIONS` row) go red.
2325    #[test]
2326    fn param_position_agrees_with_the_built_parameter_location_for_every_method() {
2327        use crate::config::ParamPosition;
2328
2329        // Every method `HttpClient::convert_method` accepts.
2330        for method in [
2331            "GET", "POST", "PUT", "PATCH", "DELETE", "HEAD", "OPTIONS", "patch",
2332        ] {
2333            let mut d = decl(
2334                "/things/{id}",
2335                vec![
2336                    ParamDecl {
2337                        name: "id".to_string(),
2338                        param_type: Some("string".to_string()),
2339                        required: true,
2340                        ..Default::default()
2341                    },
2342                    ParamDecl {
2343                        name: "note".to_string(),
2344                        param_type: Some("string".to_string()),
2345                        required: false,
2346                        ..Default::default()
2347                    },
2348                ],
2349            );
2350            d.method = Some(method.to_string());
2351            let op = super::build_operation("/things/{id}", method, &d);
2352
2353            for p in &op.parameters {
2354                let expected_location = match d.param_position(&p.name) {
2355                    ParamPosition::Path => ParameterLocation::Path,
2356                    ParamPosition::Query => ParameterLocation::Query,
2357                    ParamPosition::Body => ParameterLocation::Body,
2358                };
2359                assert_eq!(
2360                    p.location,
2361                    expected_location,
2362                    "{method}: `{}` is {:?} for the D3 cap but {:?} on the wire — the cap's \
2363                     scope and the request's routing must not disagree",
2364                    p.name,
2365                    d.param_position(&p.name),
2366                    p.location
2367                );
2368            }
2369
2370            // And the routing is self-consistent: a Body location exists exactly
2371            // when the request carries a body.
2372            assert_eq!(
2373                op.has_request_body,
2374                !op.body_parameters().is_empty(),
2375                "{method}: a Body-located parameter on a body-less request would be \
2376                 silently dropped"
2377            );
2378        }
2379    }
2380
2381    /// The consequence CR-03 is really about: the D3 default `maxLength` is emitted
2382    /// for a parameter that travels in the query string and withheld from one that
2383    /// travels in the JSON payload — checked against the BUILT location rather than
2384    /// against a method list, so the two cannot drift.
2385    #[test]
2386    fn the_default_cap_is_emitted_exactly_where_the_value_travels_in_the_url() {
2387        use crate::config::{default_cap_applies, ValidationSection};
2388
2389        let validation = ValidationSection::default();
2390        assert_ne!(
2391            validation.default_max_length, 0,
2392            "the default cap must be on for this row to mean anything"
2393        );
2394
2395        for method in ["GET", "HEAD", "DELETE", "OPTIONS", "POST", "PUT", "PATCH"] {
2396            let param = ParamDecl {
2397                name: "note".to_string(),
2398                param_type: Some("string".to_string()),
2399                required: false,
2400                ..Default::default()
2401            };
2402            let mut d = decl("/things", vec![param.clone()]);
2403            d.method = Some(method.to_string());
2404            let op = super::build_operation("/things", method, &d);
2405            let location = param_named(&op, "note").location;
2406            let capped = default_cap_applies(&param, d.param_position("note"), &validation);
2407
2408            assert_eq!(
2409                capped,
2410                location == ParameterLocation::Query,
2411                "{method}: an uncapped string in a {location:?} position is the CR-03 defect \
2412                 when that position is the query string, and the D-05 requirement when it is \
2413                 the payload"
2414            );
2415        }
2416    }
2417}
2418
2419// -----------------------------------------------------------------------------
2420// Tests — Phase 90 OAPI-02a single-call HTTP synthesizer (feature `http`)
2421// -----------------------------------------------------------------------------
2422
2423#[cfg(all(test, feature = "http"))]
2424mod synth_http_tests {
2425    use super::*;
2426    use crate::config::{ParamDecl, ServerConfig, ServerSection, ToolDecl};
2427    use crate::http::{HttpConnector, HttpConnectorError, Operation};
2428    use pmcp::RequestHandlerExtra;
2429    use serde_json::{json, Value};
2430    use std::sync::{Arc, Mutex};
2431
2432    /// A mock [`HttpConnector`] that records the [`Operation`] it last received
2433    /// and returns a fixed JSON payload — so a synthesized handler can be
2434    /// invoked without any network.
2435    struct MockHttpConnector {
2436        last: Mutex<Option<Operation>>,
2437        payload: Value,
2438    }
2439
2440    impl MockHttpConnector {
2441        fn new(payload: Value) -> Arc<Self> {
2442            Arc::new(Self {
2443                last: Mutex::new(None),
2444                payload,
2445            })
2446        }
2447    }
2448
2449    #[async_trait]
2450    impl HttpConnector for MockHttpConnector {
2451        async fn execute(
2452            &self,
2453            operation: &Operation,
2454            _args: &Value,
2455        ) -> std::result::Result<Value, HttpConnectorError> {
2456            *self.last.lock().unwrap() = Some(operation.clone());
2457            Ok(self.payload.clone())
2458        }
2459        fn base_url(&self) -> &str {
2460            "https://mock.example.com"
2461        }
2462    }
2463
2464    fn cfg_with_tools(tools: Vec<ToolDecl>) -> ServerConfig {
2465        ServerConfig {
2466            server: ServerSection {
2467                name: "demo".to_string(),
2468                version: "0.1.0".to_string(),
2469                ..Default::default()
2470            },
2471            tools,
2472            ..Default::default()
2473        }
2474    }
2475
2476    /// (1) A single-call `[[tools]]` with a `{id}` path param synthesizes a
2477    /// `ToolInfo` whose input schema marks `id` required (object envelope), and
2478    /// the handler (wired to a mock connector) returns the mocked JSON.
2479    #[tokio::test]
2480    async fn synth_http_single_call_path_param_required_and_handler_returns_json() {
2481        let cfg = cfg_with_tools(vec![ToolDecl {
2482            name: "line_status".to_string(),
2483            description: Some("Line status".to_string()),
2484            path: Some("/Line/{id}/Status".to_string()),
2485            method: Some("GET".to_string()),
2486            parameters: vec![ParamDecl {
2487                name: "id".to_string(),
2488                param_type: Some("string".to_string()),
2489                required: true,
2490                ..Default::default()
2491            }],
2492            ..Default::default()
2493        }]);
2494        let connector = MockHttpConnector::new(json!({ "status": "Good Service" }));
2495        let out = synthesize_from_config_with_http_connector(&cfg, connector.clone())
2496            .expect("synthesize");
2497        assert_eq!(out.len(), 1);
2498        let (name, info, handler) = &out[0];
2499        assert_eq!(name, "line_status");
2500        let schema = &info.input_schema;
2501        assert_eq!(schema["type"], "object");
2502        assert_eq!(schema["required"], json!(["id"]));
2503        assert_eq!(schema["additionalProperties"], Value::Bool(false));
2504
2505        let extra = RequestHandlerExtra::default();
2506        let result = handler
2507            .handle(json!({ "id": "victoria" }), extra)
2508            .await
2509            .expect("handle");
2510        assert_eq!(result, json!({ "status": "Good Service" }));
2511
2512        // The operation carried the `{id}` path param as a Path parameter.
2513        let op = connector
2514            .last
2515            .lock()
2516            .unwrap()
2517            .clone()
2518            .expect("operation recorded");
2519        let path_params: Vec<&str> = op
2520            .path_parameters()
2521            .iter()
2522            .map(|p| p.name.as_str())
2523            .collect();
2524        assert_eq!(path_params, vec!["id"]);
2525    }
2526
2527    /// (2) A `POST` tool routes non-path args to the request body
2528    /// (`has_request_body` true) and the non-path param is NOT a path param.
2529    #[tokio::test]
2530    async fn synth_http_post_sets_request_body() {
2531        let cfg = cfg_with_tools(vec![ToolDecl {
2532            name: "create_item".to_string(),
2533            description: Some("Create".to_string()),
2534            path: Some("/items".to_string()),
2535            method: Some("post".to_string()),
2536            parameters: vec![ParamDecl {
2537                name: "title".to_string(),
2538                param_type: Some("string".to_string()),
2539                required: true,
2540                ..Default::default()
2541            }],
2542            ..Default::default()
2543        }]);
2544        let connector = MockHttpConnector::new(json!({ "ok": true }));
2545        let out = synthesize_from_config_with_http_connector(&cfg, connector.clone())
2546            .expect("synthesize");
2547        let (_, _, handler) = &out[0];
2548        let extra = RequestHandlerExtra::default();
2549        handler
2550            .handle(json!({ "title": "widget" }), extra)
2551            .await
2552            .expect("handle");
2553        let op = connector
2554            .last
2555            .lock()
2556            .unwrap()
2557            .clone()
2558            .expect("operation recorded");
2559        assert_eq!(op.method, "POST");
2560        assert!(op.has_request_body, "POST must carry a request body");
2561        assert!(op.path_parameters().is_empty());
2562    }
2563
2564    /// (3) A tool with path + query params lands them in the right schema slots /
2565    /// `Operation` parameter locations.
2566    #[tokio::test]
2567    async fn synth_http_path_and_query_param_slots() {
2568        let cfg = cfg_with_tools(vec![ToolDecl {
2569            name: "search".to_string(),
2570            description: Some("Search".to_string()),
2571            path: Some("/repos/{owner}/issues".to_string()),
2572            method: Some("GET".to_string()),
2573            parameters: vec![
2574                ParamDecl {
2575                    name: "owner".to_string(),
2576                    param_type: Some("string".to_string()),
2577                    required: true,
2578                    ..Default::default()
2579                },
2580                ParamDecl {
2581                    name: "state".to_string(),
2582                    param_type: Some("string".to_string()),
2583                    required: false,
2584                    ..Default::default()
2585                },
2586            ],
2587            ..Default::default()
2588        }]);
2589        let connector = MockHttpConnector::new(json!([]));
2590        let out = synthesize_from_config_with_http_connector(&cfg, connector.clone())
2591            .expect("synthesize");
2592        let (_, _, handler) = &out[0];
2593        let extra = RequestHandlerExtra::default();
2594        handler
2595            .handle(json!({ "owner": "rust-lang", "state": "open" }), extra)
2596            .await
2597            .expect("handle");
2598        let op = connector
2599            .last
2600            .lock()
2601            .unwrap()
2602            .clone()
2603            .expect("operation recorded");
2604        let path_params: Vec<&str> = op
2605            .path_parameters()
2606            .iter()
2607            .map(|p| p.name.as_str())
2608            .collect();
2609        assert_eq!(path_params, vec!["owner"]);
2610        let query_params: Vec<&str> = op
2611            .query_parameters()
2612            .iter()
2613            .map(|p| p.name.as_str())
2614            .collect();
2615        assert_eq!(query_params, vec!["state"]);
2616    }
2617
2618    /// (4) A per-tool `base_url` is reflected in the synthesized `Operation`
2619    /// (Codex MEDIUM — not dropped).
2620    #[tokio::test]
2621    async fn synth_http_per_tool_base_url_reflected() {
2622        let cfg = cfg_with_tools(vec![ToolDecl {
2623            name: "other_host".to_string(),
2624            description: Some("Other host".to_string()),
2625            path: Some("/ping".to_string()),
2626            method: Some("GET".to_string()),
2627            base_url: Some("https://other.example.com/v2".to_string()),
2628            ..Default::default()
2629        }]);
2630        let connector = MockHttpConnector::new(json!({ "pong": true }));
2631        let out = synthesize_from_config_with_http_connector(&cfg, connector.clone())
2632            .expect("synthesize");
2633        let (_, _, handler) = &out[0];
2634        let extra = RequestHandlerExtra::default();
2635        handler.handle(json!({}), extra).await.expect("handle");
2636        let op = connector
2637            .last
2638            .lock()
2639            .unwrap()
2640            .clone()
2641            .expect("operation recorded");
2642        assert_eq!(
2643            op.base_url.as_deref(),
2644            Some("https://other.example.com/v2"),
2645            "per-tool base_url must be reflected on the Operation, not dropped"
2646        );
2647    }
2648
2649    /// (5) NEGATIVE: a `[[tools]]` missing `method` (and without `script`) is
2650    /// rejected with a typed `ToolkitError` (T-90-03-04 — never silently
2651    /// registered).
2652    #[test]
2653    fn synth_http_missing_method_rejected() {
2654        let cfg = cfg_with_tools(vec![ToolDecl {
2655            name: "broken".to_string(),
2656            description: Some("missing method".to_string()),
2657            path: Some("/items".to_string()),
2658            method: None,
2659            ..Default::default()
2660        }]);
2661        let connector = MockHttpConnector::new(json!(null));
2662        let err = synthesize_from_config_with_http_connector(&cfg, connector)
2663            .err()
2664            .expect("ill-formed single-call tool must be rejected");
2665        assert!(matches!(err, ToolkitError::Synth(_)));
2666    }
2667
2668    /// (5b) NEGATIVE: on the single-call-only entry point, a `script` tool is
2669    /// rejected with a typed `ToolkitError` pointing at the `openapi-code-mode`
2670    /// script path — NOT a silent skip, NOT a panic. (The OpenAPI Code Mode
2671    /// entry point `synthesize_from_config_with_http_connector_and_scripts`
2672    /// synthesizes a real `ScriptToolHandler` — proven in `script_tool` tests.)
2673    #[test]
2674    fn synth_http_script_tool_without_engine_is_rejected() {
2675        let cfg = cfg_with_tools(vec![ToolDecl {
2676            name: "scripted".to_string(),
2677            description: Some("script tool".to_string()),
2678            script: Some("await api.get('/x')".to_string()),
2679            ..Default::default()
2680        }]);
2681        let connector = MockHttpConnector::new(json!(null));
2682        let err = synthesize_from_config_with_http_connector(&cfg, connector)
2683            .err()
2684            .expect("script tool on the single-call-only entry point must be rejected");
2685        match err {
2686            ToolkitError::Synth(msg) => {
2687                assert!(
2688                    msg.contains("openapi-code-mode"),
2689                    "seam message must point at the openapi-code-mode script path: {msg}"
2690                );
2691            },
2692            other => panic!("expected Synth error, got {other:?}"),
2693        }
2694    }
2695}
2696
2697// -----------------------------------------------------------------------------
2698// Phase 128 E2 — the per-tool ArgumentValidator seam.
2699//
2700// A SIBLING of `mod tests`, selected by the `--lib tools::` filter. It drives the
2701// PUBLIC `*_and_hooks` synthesizer so the assertions hold through the surface an
2702// out-of-crate caller (`pmcp-openapi-server`) actually uses.
2703// -----------------------------------------------------------------------------
2704
2705/// E2 ordering, the schema opt-out, and the empty case.
2706#[cfg(all(test, feature = "input-validation"))]
2707mod argument_validator_seam {
2708    use super::synthesize_from_config_and_hooks;
2709    use crate::config::ServerConfig;
2710    use crate::policy::{ArgumentRefusal, ArgumentValidator, ToolkitHooks};
2711    use pmcp::RequestHandlerExtra;
2712    use serde_json::{json, Value};
2713    use std::sync::atomic::{AtomicUsize, Ordering};
2714    use std::sync::Arc;
2715
2716    /// Counts its invocations, then refuses when `end < start`. The refusal is a
2717    /// FIXED string: it names the rule, never a value.
2718    struct EndAfterStart {
2719        calls: Arc<AtomicUsize>,
2720    }
2721
2722    impl ArgumentValidator for EndAfterStart {
2723        fn validate(&self, args: &Value) -> Result<(), ArgumentRefusal> {
2724            self.calls.fetch_add(1, Ordering::SeqCst);
2725            let start = args.get("start").and_then(Value::as_i64);
2726            let end = args.get("end").and_then(Value::as_i64);
2727            match (start, end) {
2728                (Some(s), Some(e)) if e < s => {
2729                    Err(ArgumentRefusal::new("`end` must not precede `start`"))
2730                },
2731                _ => Ok(()),
2732            }
2733        }
2734    }
2735
2736    /// A `[[tools]]` whose declared schema permits any two integers, so the
2737    /// cross-field rule is one only E2 can express.
2738    fn cfg(enforce: bool) -> ServerConfig {
2739        let toml = format!(
2740            r#"
2741[server]
2742name = "range"
2743version = "0.1.0"
2744
2745[server.validation]
2746enforce_input_schema = {enforce}
2747
2748[[tools]]
2749name = "range_query"
2750description = "Query a range"
2751sql = "SELECT 1"
2752
2753[[tools.parameters]]
2754name = "start"
2755type = "integer"
2756required = true
2757
2758[[tools.parameters]]
2759name = "end"
2760type = "integer"
2761required = true
2762"#
2763        );
2764        ServerConfig::from_toml_strict_validated(&toml).expect("parse")
2765    }
2766
2767    fn extra() -> RequestHandlerExtra {
2768        RequestHandlerExtra::default()
2769    }
2770
2771    fn hooks(calls: &Arc<AtomicUsize>) -> ToolkitHooks {
2772        ToolkitHooks::default().with_argument_validator(
2773            "range_query",
2774            Arc::new(EndAfterStart {
2775                calls: Arc::clone(calls),
2776            }),
2777        )
2778    }
2779
2780    #[tokio::test]
2781    async fn a_registered_validator_refuses_a_combination_the_schema_permits() {
2782        let calls = Arc::new(AtomicUsize::new(0));
2783        let tools = synthesize_from_config_and_hooks(&cfg(true), &hooks(&calls)).expect("synth");
2784        let (_name, _info, handler) = &tools[0];
2785        let err = handler
2786            .handle(json!({ "start": 10, "end": 2 }), extra())
2787            .await
2788            .expect_err("the validator refuses");
2789        assert!(
2790            err.to_string().contains("`end` must not precede `start`"),
2791            "the refusal must carry the validator's own message, got: {err}"
2792        );
2793        assert_eq!(calls.load(Ordering::SeqCst), 1);
2794    }
2795
2796    /// The E2 refusal takes the same TOOL-LEVEL channel as the D1 schema refusal.
2797    /// A cross-field rule is as much the caller's to fix as a bad type is, and a
2798    /// model can only act on a tool result, not on a JSON-RPC error.
2799    #[tokio::test]
2800    async fn a_validator_refusal_is_a_tool_level_rejection_not_a_protocol_error() {
2801        let calls = Arc::new(AtomicUsize::new(0));
2802        let tools = synthesize_from_config_and_hooks(&cfg(true), &hooks(&calls)).expect("synth");
2803        let (_name, _info, handler) = &tools[0];
2804        let err = handler
2805            .handle(json!({ "start": 10, "end": 2 }), extra())
2806            .await
2807            .expect_err("the validator refuses");
2808        assert!(
2809            matches!(err, pmcp::Error::ToolRejected { .. }),
2810            "a validator refusal must be a tool-level rejection, got: {err:?}"
2811        );
2812        assert!(
2813            err.to_string().contains("`end` must not precede `start`"),
2814            "the validator's own message must survive the channel change, got: {err}"
2815        );
2816    }
2817
2818    #[tokio::test]
2819    async fn a_registered_validator_allows_a_valid_combination() {
2820        let calls = Arc::new(AtomicUsize::new(0));
2821        let tools = synthesize_from_config_and_hooks(&cfg(true), &hooks(&calls)).expect("synth");
2822        let (_name, _info, handler) = &tools[0];
2823        // No SQL connector is wired, so the INNER handler errors — which is itself
2824        // the proof that the validator allowed the call through to it.
2825        let err = handler
2826            .handle(json!({ "start": 2, "end": 10 }), extra())
2827            .await
2828            .expect_err("no connector is wired");
2829        assert!(
2830            !err.to_string().contains("must not precede"),
2831            "the validator must NOT have refused, got: {err}"
2832        );
2833        assert_eq!(calls.load(Ordering::SeqCst), 1);
2834    }
2835
2836    /// T-128-41: the ordering is the contract. A validator must never see
2837    /// arguments that failed the declared schema.
2838    #[tokio::test]
2839    async fn a_registered_validator_is_not_invoked_when_the_schema_refuses() {
2840        let calls = Arc::new(AtomicUsize::new(0));
2841        let tools = synthesize_from_config_and_hooks(&cfg(true), &hooks(&calls)).expect("synth");
2842        let (_name, _info, handler) = &tools[0];
2843        // `start` is a declared integer; a string violates the schema.
2844        let err = handler
2845            .handle(json!({ "start": "ten", "end": 2 }), extra())
2846            .await
2847            .expect_err("D1 refuses");
2848        assert!(
2849            !err.to_string().contains("must not precede"),
2850            "D1 must be the refuser, not E2, got: {err}"
2851        );
2852        assert_eq!(
2853            calls.load(Ordering::SeqCst),
2854            0,
2855            "the validator was invoked on arguments the schema already refused"
2856        );
2857    }
2858
2859    /// The joint test also present in plan 03: turning off one enforcement must
2860    /// never silently turn off another.
2861    #[tokio::test]
2862    async fn a_registered_validator_still_runs_with_enforce_input_schema_false() {
2863        let calls = Arc::new(AtomicUsize::new(0));
2864        let tools = synthesize_from_config_and_hooks(&cfg(false), &hooks(&calls)).expect("synth");
2865        let (_name, _info, handler) = &tools[0];
2866
2867        // Half one: the SCHEMA check is off, so an undeclared key is accepted.
2868        let err = handler
2869            .handle(json!({ "start": 2, "end": 10, "undeclared": 1 }), extra())
2870            .await
2871            .expect_err("no connector is wired");
2872        assert!(
2873            !err.to_string().contains("undeclared"),
2874            "with enforce_input_schema=false an undeclared key must be accepted, got: {err}"
2875        );
2876
2877        // Half two: the VALIDATOR still refuses.
2878        let err = handler
2879            .handle(json!({ "start": 10, "end": 2 }), extra())
2880            .await
2881            .expect_err("the validator refuses");
2882        assert!(
2883            err.to_string().contains("`end` must not precede `start`"),
2884            "a registered validator must survive the schema opt-out, got: {err}"
2885        );
2886        assert_eq!(calls.load(Ordering::SeqCst), 2);
2887    }
2888
2889    #[tokio::test]
2890    async fn a_tool_with_no_registered_validator_runs_d1_only() {
2891        let tools =
2892            synthesize_from_config_and_hooks(&cfg(true), &ToolkitHooks::default()).expect("synth");
2893        let (_name, _info, handler) = &tools[0];
2894        // D1 still refuses a schema violation.
2895        handler
2896            .handle(json!({ "start": "ten", "end": 2 }), extra())
2897            .await
2898            .expect_err("D1 refuses");
2899        // And a schema-valid call reaches the inner handler (which has no connector).
2900        let err = handler
2901            .handle(json!({ "start": 10, "end": 2 }), extra())
2902            .await
2903            .expect_err("no connector is wired");
2904        assert!(!err.to_string().contains("must not precede"));
2905    }
2906
2907    /// `handle_output` must validate too, or an inner handler that overrides it
2908    /// becomes a path with schema enforcement and no custom rule.
2909    #[tokio::test]
2910    async fn handle_output_runs_the_validator_as_well() {
2911        let calls = Arc::new(AtomicUsize::new(0));
2912        let tools = synthesize_from_config_and_hooks(&cfg(true), &hooks(&calls)).expect("synth");
2913        let (_name, _info, handler) = &tools[0];
2914        let err = handler
2915            .handle_output(json!({ "start": 10, "end": 2 }), extra())
2916            .await
2917            .expect_err("the validator refuses");
2918        assert!(
2919            err.to_string().contains("`end` must not precede `start`"),
2920            "handle_output must run the validator too, got: {err}"
2921        );
2922        assert_eq!(calls.load(Ordering::SeqCst), 1);
2923    }
2924}
2925
2926/// The once-at-startup enforcement report's line formats (Phase 128 D-07).
2927#[cfg(all(test, feature = "input-validation"))]
2928mod enforcement_report {
2929    use crate::config::ServerConfig;
2930    use crate::policy::{
2931        render_validation_report, ArgumentRefusal, ArgumentValidator, ReportLevel, ToolkitHooks,
2932    };
2933    use serde_json::Value;
2934    use std::sync::Arc;
2935
2936    struct Never;
2937    impl ArgumentValidator for Never {
2938        fn validate(&self, _args: &Value) -> Result<(), ArgumentRefusal> {
2939            Err(ArgumentRefusal::new("disabled"))
2940        }
2941    }
2942
2943    fn cfg(extra_validation: &str) -> ServerConfig {
2944        let toml = format!(
2945            r#"
2946[server]
2947name = "report"
2948version = "0.1.0"
2949
2950[server.validation]
2951{extra_validation}
2952
2953[[tools]]
2954name = "get_thing"
2955description = "Get a thing"
2956path = "/things/{{id}}"
2957method = "GET"
2958
2959[[tools.parameters]]
2960name = "id"
2961type = "string"
2962required = true
2963pattern = "^[0-9]+$"
2964"#
2965        );
2966        ServerConfig::from_toml_strict_validated(&toml).expect("parse")
2967    }
2968
2969    fn texts(lines: &[crate::policy::ReportLine]) -> String {
2970        lines
2971            .iter()
2972            .map(|l| l.text.clone())
2973            .collect::<Vec<_>>()
2974            .join("\n")
2975    }
2976
2977    #[test]
2978    fn a_fully_enforcing_config_states_that_no_opt_out_is_active() {
2979        let lines = render_validation_report(&cfg(""), &ToolkitHooks::default());
2980        let joined = texts(&lines);
2981        assert!(
2982            joined.contains("input validation: schema_check=ON"),
2983            "{joined}"
2984        );
2985        assert!(
2986            joined.contains("tool 'get_thing' enforces"),
2987            "one line per tool: {joined}"
2988        );
2989        assert!(
2990            joined.contains("no [server.validation] opt-out is active"),
2991            "the report must state the ABSENCE of an opt-out, not stay silent: {joined}"
2992        );
2993        assert!(
2994            joined.contains("E1 RequestPolicy registered=false"),
2995            "{joined}"
2996        );
2997        assert!(
2998            joined.contains("no E2 ArgumentValidator is registered"),
2999            "{joined}"
3000        );
3001        assert!(
3002            lines.iter().all(|l| l.level == ReportLevel::Info),
3003            "a fully enforcing config emits no warning"
3004        );
3005    }
3006
3007    #[test]
3008    fn every_active_opt_out_is_reported_at_warn_level() {
3009        let lines = render_validation_report(
3010            &cfg("enforce_input_schema = false\ndefault_max_length = 0\nadditional_properties = true"),
3011            &ToolkitHooks::default(),
3012        );
3013        let joined = texts(&lines);
3014        assert!(joined.contains("schema_check=OFF"), "{joined}");
3015        let warns: Vec<&str> = lines
3016            .iter()
3017            .filter(|l| l.level == ReportLevel::Warn)
3018            .map(|l| l.text.as_str())
3019            .collect();
3020        assert!(
3021            warns.len() >= 4,
3022            "an enforcement that is OFF must never read as on; got {warns:#?}"
3023        );
3024        assert!(
3025            warns.iter().any(|w| w.contains("opt-out ACTIVE")),
3026            "{warns:#?}"
3027        );
3028    }
3029
3030    #[test]
3031    fn a_validator_for_an_undeclared_tool_name_is_warned_not_refused() {
3032        let hooks = ToolkitHooks::default()
3033            .with_argument_validator("get_thing", Arc::new(Never))
3034            .with_argument_validator("typoed_name", Arc::new(Never));
3035        let lines = render_validation_report(&cfg(""), &hooks);
3036        let joined = texts(&lines);
3037        assert!(
3038            joined.contains("E2 ArgumentValidator registered for get_thing, typoed_name"),
3039            "{joined}"
3040        );
3041        let warns: Vec<&str> = lines
3042            .iter()
3043            .filter(|l| l.level == ReportLevel::Warn)
3044            .map(|l| l.text.as_str())
3045            .collect();
3046        assert_eq!(warns.len(), 1, "exactly the typo warns: {warns:#?}");
3047        assert!(warns[0].contains("'typoed_name'"), "{:?}", warns[0]);
3048        assert!(warns[0].contains("will never run"), "{:?}", warns[0]);
3049    }
3050
3051    /// SC-7: the report is built from declarations, so it cannot carry request
3052    /// data. Asserted rather than trusted, because the log is a channel.
3053    #[test]
3054    fn the_report_never_echoes_an_argument_value() {
3055        let lines = render_validation_report(&cfg(""), &ToolkitHooks::default());
3056        let joined = texts(&lines);
3057        for forbidden in ["Bearer", "app_key", "super-secret"] {
3058            assert!(!joined.contains(forbidden), "{joined}");
3059        }
3060    }
3061}