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lenso_kernel/
invocation.rs

1use std::time::Duration;
2use std::{collections::BTreeMap, fmt, rc::Rc};
3
4use super::{RequestId, lifecycle::CancellationToken};
5
6/// An opaque extension supplied by a caller Plugin.
7#[derive(Clone, Eq, PartialEq)]
8pub struct InvocationExtension {
9    key: String,
10    value: Vec<u8>,
11}
12
13impl fmt::Debug for InvocationExtension {
14    fn fmt(&self, formatter: &mut fmt::Formatter<'_>) -> fmt::Result {
15        formatter
16            .debug_struct("InvocationExtension")
17            .field("key", &self.key)
18            .field("value", &"<redacted>")
19            .finish()
20    }
21}
22
23impl InvocationExtension {
24    /// Creates one ordinary, caller-supplied extension value.
25    pub fn new(key: impl Into<String>, value: Vec<u8>) -> Self {
26        Self {
27            key: key.into(),
28            value,
29        }
30    }
31
32    /// Returns the stable extension key.
33    pub fn key(&self) -> &str {
34        &self.key
35    }
36
37    /// Returns the opaque extension bytes.
38    pub fn value(&self) -> &[u8] {
39        &self.value
40    }
41}
42
43/// An opaque extension whose issuer and audience must survive Adapter hops.
44#[derive(Clone, Eq, PartialEq)]
45pub struct SealedInvocationExtension {
46    key: String,
47    issuer: String,
48    audience: Vec<String>,
49    value: Vec<u8>,
50    proof: String,
51}
52
53impl SealedInvocationExtension {
54    /// Carries one domain-signed extension without granting it validity.
55    ///
56    /// Domain provider bindings must validate `proof` before projecting the
57    /// payload. The Kernel preserves the signed fields and prevents replacement.
58    pub fn signed(
59        key: impl Into<String>,
60        issuer: impl Into<String>,
61        audience: impl IntoIterator<Item = impl Into<String>>,
62        value: Vec<u8>,
63        proof: impl Into<String>,
64    ) -> Self {
65        Self {
66            key: key.into(),
67            issuer: issuer.into(),
68            audience: audience.into_iter().map(Into::into).collect(),
69            value,
70            proof: proof.into(),
71        }
72    }
73
74    /// Returns the stable extension key.
75    pub fn key(&self) -> &str {
76        &self.key
77    }
78
79    /// Returns the issuer provenance without interpreting its domain.
80    pub fn issuer(&self) -> &str {
81        &self.issuer
82    }
83
84    /// Returns the intended Capability/Operation audience.
85    pub fn audience(&self) -> &[String] {
86        &self.audience
87    }
88
89    /// Returns the opaque extension bytes.
90    pub fn value(&self) -> &[u8] {
91        &self.value
92    }
93
94    /// Returns the domain proof covering issuer, audience, and payload.
95    pub fn proof(&self) -> &str {
96        &self.proof
97    }
98
99    /// Returns whether the signed audience covers one exact target Operation.
100    pub fn covers(&self, capability_id: &str, operation: &str) -> bool {
101        let target = format!("{capability_id}:{operation}");
102        self.audience.iter().any(|audience| audience == &target)
103    }
104}
105
106impl fmt::Debug for SealedInvocationExtension {
107    fn fmt(&self, formatter: &mut fmt::Formatter<'_>) -> fmt::Result {
108        formatter
109            .debug_struct("SealedInvocationExtension")
110            .field("key", &self.key)
111            .field("issuer", &self.issuer)
112            .field("audience", &self.audience)
113            .field("value", &"<redacted>")
114            .field("proof", &"<redacted>")
115            .finish()
116    }
117}
118
119/// Failure returned when an Invocation Context extension cannot be attached.
120#[derive(Clone, Debug, Eq, PartialEq)]
121pub enum InvocationContextError {
122    /// An extension key cannot be empty.
123    EmptyExtensionKey,
124    /// An ordinary extension already occupies the requested key.
125    ExtensionAlreadySet { key: String },
126    /// A sealed extension cannot be replaced by another extension value.
127    SealedExtensionAlreadySet { key: String },
128    /// Sealed provenance must name an issuer and at least one audience entry.
129    InvalidSealedExtension { key: String },
130}
131
132impl std::fmt::Display for InvocationContextError {
133    fn fmt(&self, formatter: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
134        match self {
135            Self::EmptyExtensionKey => {
136                formatter.write_str("Invocation Context extension key is empty")
137            }
138            Self::ExtensionAlreadySet { key } => {
139                write!(
140                    formatter,
141                    "Invocation Context extension `{key}` is already set"
142                )
143            }
144            Self::SealedExtensionAlreadySet { key } => {
145                write!(
146                    formatter,
147                    "sealed Invocation Context extension `{key}` is already set"
148                )
149            }
150            Self::InvalidSealedExtension { key } => {
151                write!(
152                    formatter,
153                    "sealed Invocation Context extension `{key}` has invalid provenance"
154                )
155            }
156        }
157    }
158}
159
160/// Kernel-owned context propagated across one native request invocation.
161#[derive(Clone, Debug)]
162pub struct InvocationContext {
163    pub(crate) execution: Option<super::settlement::ExecutionScope>,
164    pub(super) caller_instance: Option<Rc<str>>,
165    pub(super) request_id: RequestId,
166    pub(super) deadline: Option<Duration>,
167    pub(super) cancellation: CancellationToken,
168    pub(super) extensions: BTreeMap<String, InvocationExtension>,
169    pub(super) sealed_extensions: BTreeMap<String, SealedInvocationExtension>,
170}
171
172impl InvocationContext {
173    /// Retains execution capacity for Adapter-managed work beyond its reply.
174    /// The returned lease must be settled on observed termination, not cancellation acknowledgement.
175    pub fn retain_execution(&self) -> Result<super::ExecutionLease, super::RuntimeFailure> {
176        self.execution
177            .as_ref()
178            .ok_or(super::RuntimeFailure::AdmissionClosed)?
179            .retain()
180    }
181    /// Creates an invocation context with an absolute Driver-monotonic deadline.
182    pub fn new(
183        request_id: RequestId,
184        deadline: Option<Duration>,
185        cancellation: CancellationToken,
186    ) -> Self {
187        Self {
188            execution: None,
189            caller_instance: None,
190            request_id,
191            deadline,
192            cancellation,
193            extensions: BTreeMap::new(),
194            sealed_extensions: BTreeMap::new(),
195        }
196    }
197
198    /// Attaches the resolved Caller Plugin Instance to this context.
199    #[must_use]
200    pub fn with_caller_instance(mut self, caller_instance: impl Into<String>) -> Self {
201        self.caller_instance = Some(Rc::from(caller_instance.into()));
202        self
203    }
204
205    pub(crate) fn with_shared_caller_instance(mut self, caller_instance: Rc<str>) -> Self {
206        self.caller_instance = Some(caller_instance);
207        self
208    }
209
210    pub(super) fn for_caller(mut self, caller_instance: &str) -> Self {
211        if self.caller_instance.as_deref() != Some(caller_instance) {
212            self.caller_instance = Some(Rc::from(caller_instance));
213        }
214        self
215    }
216
217    /// Returns the Caller Plugin Instance, when the App attached one.
218    pub fn caller_instance(&self) -> Option<&str> {
219        self.caller_instance.as_deref()
220    }
221
222    /// Returns the Kernel Request ID used for correlation and cancellation.
223    pub const fn request_id(&self) -> RequestId {
224        self.request_id
225    }
226
227    /// Returns the absolute Driver-monotonic deadline, when one was supplied.
228    pub const fn deadline(&self) -> Option<Duration> {
229        self.deadline
230    }
231
232    /// Returns the caller-owned cooperative cancellation signal.
233    pub fn cancellation(&self) -> CancellationToken {
234        self.cancellation.clone()
235    }
236
237    /// Adds one ordinary opaque extension without replacing an existing value.
238    pub fn with_extension(
239        mut self,
240        key: impl Into<String>,
241        value: Vec<u8>,
242    ) -> Result<Self, InvocationContextError> {
243        let extension = InvocationExtension::new(key, value);
244        if extension.key().is_empty() {
245            return Err(InvocationContextError::EmptyExtensionKey);
246        }
247        if self.sealed_extensions.contains_key(extension.key()) {
248            return Err(InvocationContextError::SealedExtensionAlreadySet {
249                key: extension.key().to_owned(),
250            });
251        }
252        if self.extensions.contains_key(extension.key()) {
253            return Err(InvocationContextError::ExtensionAlreadySet {
254                key: extension.key().to_owned(),
255            });
256        }
257        self.extensions
258            .insert(extension.key().to_owned(), extension);
259        Ok(self)
260    }
261
262    /// Adds one sealed extension while preserving issuer, audience, and key ownership.
263    pub fn with_sealed_extension(
264        mut self,
265        extension: SealedInvocationExtension,
266    ) -> Result<Self, InvocationContextError> {
267        if extension.key().is_empty() {
268            return Err(InvocationContextError::EmptyExtensionKey);
269        }
270        if extension.issuer().is_empty()
271            || extension.audience().is_empty()
272            || extension.proof().is_empty()
273            || extension.audience().iter().any(String::is_empty)
274        {
275            return Err(InvocationContextError::InvalidSealedExtension {
276                key: extension.key().to_owned(),
277            });
278        }
279        if self.sealed_extensions.contains_key(extension.key())
280            || self.extensions.contains_key(extension.key())
281        {
282            return Err(InvocationContextError::SealedExtensionAlreadySet {
283                key: extension.key().to_owned(),
284            });
285        }
286        self.sealed_extensions
287            .insert(extension.key().to_owned(), extension);
288        Ok(self)
289    }
290
291    /// Returns one ordinary extension's opaque bytes.
292    pub fn extension(&self, key: &str) -> Option<&[u8]> {
293        self.extensions.get(key).map(InvocationExtension::value)
294    }
295
296    /// Returns ordinary extensions in deterministic key order.
297    pub fn extensions(&self) -> impl Iterator<Item = &InvocationExtension> {
298        self.extensions.values()
299    }
300
301    /// Returns one sealed extension by key.
302    pub fn sealed_extension(&self, key: &str) -> Option<&SealedInvocationExtension> {
303        self.sealed_extensions.get(key)
304    }
305
306    /// Returns sealed extensions in deterministic key order.
307    pub fn sealed_extensions(&self) -> impl Iterator<Item = &SealedInvocationExtension> {
308        self.sealed_extensions.values()
309    }
310
311    /// Restricts sealed extensions to one exact Capability/Operation target.
312    ///
313    /// Ordinary baggage is preserved. A sealed extension whose audience does
314    /// not cover the target is not disclosed to that provider.
315    #[must_use]
316    pub fn for_target(mut self, capability_id: &str, operation: &str) -> Self {
317        self.sealed_extensions
318            .retain(|_, extension| extension.covers(capability_id, operation));
319        self
320    }
321
322    /// Returns whether the caller has already cancelled this invocation.
323    pub fn is_cancelled(&self) -> bool {
324        self.cancellation.is_cancelled()
325    }
326
327    /// Returns whether the context deadline has passed at a Driver instant.
328    pub fn is_expired(&self, now: Duration) -> bool {
329        self.deadline.is_some_and(|deadline| deadline <= now)
330    }
331}
332
333#[cfg(test)]
334mod tests {
335    use super::*;
336
337    #[test]
338    fn resolved_caller_reuses_matching_storage_and_overrides_spoofed_identity() {
339        let context = InvocationContext::new(1, None, CancellationToken::new())
340            .with_caller_instance("consumer".to_owned());
341        let original = context.caller_instance().unwrap().as_ptr();
342        let context = context.for_caller("consumer");
343        assert_eq!(context.caller_instance().unwrap().as_ptr(), original);
344
345        let context = context.for_caller("resolved-consumer");
346        assert_eq!(context.caller_instance(), Some("resolved-consumer"));
347    }
348
349    #[test]
350    fn cloning_context_reuses_caller_storage() {
351        let context = InvocationContext::new(1, None, CancellationToken::new())
352            .with_caller_instance("consumer".to_owned());
353        let cloned = context.clone();
354
355        assert_eq!(
356            context.caller_instance().unwrap().as_ptr(),
357            cloned.caller_instance().unwrap().as_ptr()
358        );
359    }
360}