1use std::collections::HashMap;
2use std::path::PathBuf;
3use std::sync::Arc;
4use std::time::Duration;
5
6use anyhow::Result;
7use async_trait::async_trait;
8use codewhale_protocol::{ToolKind, ToolOutput, ToolPayload};
9use serde::{Deserialize, Serialize};
10use serde_json::Value;
11use tokio::sync::RwLock;
12
13#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash)]
15pub enum ToolCapability {
16 ReadOnly,
18 WritesFiles,
20 ExecutesCode,
22 Network,
24 Sandboxable,
26 RequiresApproval,
28}
29
30#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
32pub enum ApprovalRequirement {
33 #[default]
35 Auto,
36 Suggest,
38 Required,
40}
41
42#[derive(Debug, Clone)]
44pub enum ToolError {
45 InvalidInput { message: String },
46 MissingField { field: String },
47 PathEscape { path: PathBuf },
48 ExecutionFailed { message: String },
49 Timeout { seconds: u64 },
50 NotAvailable { message: String },
51 PermissionDenied { message: String },
52}
53
54impl std::fmt::Display for ToolError {
55 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
56 match self {
57 Self::InvalidInput { message } => {
58 write!(f, "Failed to validate input: {message}")
59 }
60 Self::MissingField { field } => {
61 write!(
62 f,
63 "Failed to validate input: missing required field '{field}'"
64 )
65 }
66 Self::PathEscape { path } => {
67 write!(
68 f,
69 "Failed to resolve path '{}': path escapes workspace",
70 path.display()
71 )
72 }
73 Self::ExecutionFailed { message } => {
74 write!(f, "Failed to execute tool: {message}")
75 }
76 Self::Timeout { seconds } => {
77 write!(
78 f,
79 "Failed to execute tool: operation timed out after {seconds}s"
80 )
81 }
82 Self::NotAvailable { message } => {
83 write!(f, "Failed to locate tool: {message}")
84 }
85 Self::PermissionDenied { message } => {
86 write!(f, "Failed to authorize tool execution: {message}")
87 }
88 }
89 }
90}
91
92impl std::error::Error for ToolError {}
93
94impl ToolError {
95 #[must_use]
96 pub fn invalid_input(msg: impl Into<String>) -> Self {
97 Self::InvalidInput {
98 message: msg.into(),
99 }
100 }
101
102 #[must_use]
103 pub fn missing_field(field: impl Into<String>) -> Self {
104 Self::MissingField {
105 field: field.into(),
106 }
107 }
108
109 #[must_use]
110 pub fn execution_failed(msg: impl Into<String>) -> Self {
111 Self::ExecutionFailed {
112 message: msg.into(),
113 }
114 }
115
116 #[must_use]
117 pub fn path_escape(path: impl Into<PathBuf>) -> Self {
118 Self::PathEscape { path: path.into() }
119 }
120
121 #[must_use]
122 pub fn not_available(msg: impl Into<String>) -> Self {
123 Self::NotAvailable {
124 message: msg.into(),
125 }
126 }
127
128 #[must_use]
129 pub fn permission_denied(msg: impl Into<String>) -> Self {
130 Self::PermissionDenied {
131 message: msg.into(),
132 }
133 }
134}
135
136#[derive(Debug, Clone, Serialize, Deserialize)]
138pub struct ToolResult {
139 pub content: String,
141 pub success: bool,
143 #[serde(skip_serializing_if = "Option::is_none")]
145 pub metadata: Option<Value>,
146}
147
148impl ToolResult {
149 #[must_use]
151 pub fn success(content: impl Into<String>) -> Self {
152 Self {
153 content: content.into(),
154 success: true,
155 metadata: None,
156 }
157 }
158
159 #[must_use]
161 pub fn error(message: impl Into<String>) -> Self {
162 Self {
163 content: message.into(),
164 success: false,
165 metadata: None,
166 }
167 }
168
169 pub fn json<T: Serialize>(value: &T) -> std::result::Result<Self, serde_json::Error> {
171 Ok(Self {
172 content: serde_json::to_string_pretty(value)?,
173 success: true,
174 metadata: None,
175 })
176 }
177
178 #[must_use]
180 pub fn with_metadata(mut self, metadata: Value) -> Self {
181 self.metadata = Some(metadata);
182 self
183 }
184}
185
186pub fn required_str<'a>(input: &'a Value, field: &str) -> std::result::Result<&'a str, ToolError> {
188 input.get(field).and_then(Value::as_str).ok_or_else(|| {
189 let provided: Vec<&str> = input
192 .as_object()
193 .map(|obj| obj.keys().map(|k| k.as_str()).collect())
194 .unwrap_or_default();
195 if provided.is_empty() {
196 ToolError::missing_field(field)
197 } else {
198 let hint = format!(
199 "missing required field '{field}'. Input provided: {}",
200 provided.join(", ")
201 );
202 ToolError::invalid_input(hint)
203 }
204 })
205}
206
207#[must_use]
209pub fn optional_str<'a>(input: &'a Value, field: &str) -> Option<&'a str> {
210 input.get(field).and_then(Value::as_str)
211}
212
213pub fn required_u64(input: &Value, field: &str) -> std::result::Result<u64, ToolError> {
215 input
216 .get(field)
217 .and_then(Value::as_u64)
218 .ok_or_else(|| ToolError::missing_field(field))
219}
220
221#[must_use]
223pub fn optional_u64(input: &Value, field: &str, default: u64) -> u64 {
224 input.get(field).and_then(Value::as_u64).unwrap_or(default)
225}
226
227#[must_use]
229pub fn optional_bool(input: &Value, field: &str, default: bool) -> bool {
230 input.get(field).and_then(Value::as_bool).unwrap_or(default)
231}
232
233#[derive(Debug, Clone, Serialize, Deserialize)]
234pub struct ToolSpec {
235 pub name: String,
236 pub input_schema: Value,
237 pub output_schema: Value,
238 pub supports_parallel_tool_calls: bool,
239 pub timeout_ms: Option<u64>,
240}
241
242#[derive(Debug, Clone, Serialize, Deserialize)]
243pub struct ConfiguredToolSpec {
244 pub spec: ToolSpec,
245 pub supports_parallel_tool_calls: bool,
246}
247
248#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
249#[serde(rename_all = "snake_case")]
250pub enum ToolCallSource {
251 Direct,
252 JsRepl,
253}
254
255#[derive(Debug, Clone, Serialize, Deserialize)]
256pub struct ToolCall {
257 pub name: String,
258 pub payload: ToolPayload,
259 pub source: ToolCallSource,
260 pub raw_tool_call_id: Option<String>,
261}
262
263impl ToolCall {
264 pub fn execution_subject(&self, fallback_cwd: &str) -> (String, String, &'static str) {
265 match &self.payload {
266 ToolPayload::LocalShell { params } => (
267 params.command.clone(),
268 params
269 .cwd
270 .clone()
271 .unwrap_or_else(|| fallback_cwd.to_string()),
272 "shell",
273 ),
274 _ => (self.name.clone(), fallback_cwd.to_string(), "tool"),
275 }
276 }
277}
278
279#[derive(Debug, Clone)]
280pub struct ToolInvocation {
281 pub call_id: String,
282 pub tool_name: String,
283 pub payload: ToolPayload,
284 pub source: ToolCallSource,
285}
286
287#[derive(Debug, Clone, Serialize, Deserialize)]
288pub enum FunctionCallError {
289 ToolNotFound { name: String },
290 KindMismatch { expected: ToolKind, got: ToolKind },
291 MutatingToolRejected { name: String },
292 TimedOut { name: String, timeout_ms: u64 },
293 Cancelled { name: String },
294 ExecutionFailed { name: String, error: String },
295}
296
297#[async_trait]
298pub trait ToolHandler: Send + Sync {
299 fn kind(&self) -> ToolKind;
300 fn matches_kind(&self, kind: ToolKind) -> bool {
301 self.kind() == kind
302 }
303 fn is_mutating(&self) -> bool {
304 false
305 }
306 async fn handle(
307 &self,
308 invocation: ToolInvocation,
309 ) -> std::result::Result<ToolOutput, FunctionCallError>;
310}
311
312#[derive(Debug, Default)]
313pub struct ToolCallRuntime {
314 pub parallel_execution: Arc<RwLock<()>>,
315}
316
317#[derive(Default)]
318pub struct ToolRegistry {
319 handlers: HashMap<String, Arc<dyn ToolHandler>>,
320 specs: HashMap<String, ConfiguredToolSpec>,
321 runtime: ToolCallRuntime,
322}
323
324impl ToolRegistry {
325 pub fn register(&mut self, spec: ToolSpec, handler: Arc<dyn ToolHandler>) -> Result<()> {
326 let name = spec.name.clone();
327 self.specs.insert(
328 name.clone(),
329 ConfiguredToolSpec {
330 supports_parallel_tool_calls: spec.supports_parallel_tool_calls,
331 spec,
332 },
333 );
334 self.handlers.insert(name, handler);
335 Ok(())
336 }
337
338 pub fn list_specs(&self) -> Vec<ConfiguredToolSpec> {
339 self.specs.values().cloned().collect()
340 }
341
342 pub async fn dispatch(
343 &self,
344 call: ToolCall,
345 allow_mutating: bool,
346 ) -> std::result::Result<ToolOutput, FunctionCallError> {
347 let handler = self.handlers.get(&call.name).cloned().ok_or_else(|| {
348 FunctionCallError::ToolNotFound {
349 name: call.name.clone(),
350 }
351 })?;
352 let configured =
353 self.specs
354 .get(&call.name)
355 .cloned()
356 .ok_or_else(|| FunctionCallError::ToolNotFound {
357 name: call.name.clone(),
358 })?;
359
360 let payload_kind = tool_payload_kind(&call.payload);
361 let expected = handler.kind();
362 if !handler.matches_kind(payload_kind) {
363 return Err(FunctionCallError::KindMismatch {
364 expected,
365 got: payload_kind,
366 });
367 }
368 if handler.is_mutating() && !allow_mutating {
369 return Err(FunctionCallError::MutatingToolRejected { name: call.name });
370 }
371
372 let invocation = ToolInvocation {
373 call_id: call
374 .raw_tool_call_id
375 .clone()
376 .unwrap_or_else(|| format!("tool-call-{}", uuid::Uuid::new_v4())),
377 tool_name: call.name.clone(),
378 payload: call.payload,
379 source: call.source,
380 };
381
382 if configured.supports_parallel_tool_calls {
383 let _guard = self.runtime.parallel_execution.read().await;
384 self.execute_with_timeout(handler, configured.spec.timeout_ms, invocation)
385 .await
386 } else {
387 let _guard = self.runtime.parallel_execution.write().await;
388 self.execute_with_timeout(handler, configured.spec.timeout_ms, invocation)
389 .await
390 }
391 }
392
393 async fn execute_with_timeout(
394 &self,
395 handler: Arc<dyn ToolHandler>,
396 timeout_ms: Option<u64>,
397 invocation: ToolInvocation,
398 ) -> std::result::Result<ToolOutput, FunctionCallError> {
399 if let Some(timeout_ms) = timeout_ms {
400 let name = invocation.tool_name.clone();
401 match tokio::time::timeout(
402 Duration::from_millis(timeout_ms),
403 handler.handle(invocation),
404 )
405 .await
406 {
407 Ok(result) => result,
408 Err(_) => Err(FunctionCallError::TimedOut { name, timeout_ms }),
409 }
410 } else {
411 handler.handle(invocation).await
412 }
413 }
414}
415
416fn tool_payload_kind(payload: &ToolPayload) -> ToolKind {
417 match payload {
418 ToolPayload::Mcp { .. } => ToolKind::Mcp,
419 ToolPayload::Function { .. }
420 | ToolPayload::Custom { .. }
421 | ToolPayload::LocalShell { .. } => ToolKind::Function,
422 }
423}
424
425#[cfg(test)]
426mod tests {
427 use serde_json::json;
428
429 use super::*;
430
431 #[test]
432 fn tool_result_json_round_trips_content() {
433 let result = ToolResult::json(&json!({"ok": true})).expect("json");
434 assert!(result.success);
435 assert!(result.content.contains("\"ok\": true"));
436 }
437
438 #[test]
439 fn helper_extractors_validate_shape() {
440 let input = json!({"name": "demo", "count": 7, "enabled": true});
441 assert_eq!(required_str(&input, "name").expect("name"), "demo");
442 assert_eq!(optional_u64(&input, "count", 0), 7);
443 assert!(optional_bool(&input, "enabled", false));
444 assert!(matches!(
445 required_u64(&input, "name"),
446 Err(ToolError::MissingField { .. })
447 ));
448 }
449
450 #[test]
451 fn required_str_reports_provided_fields_on_missing_required_field() {
452 let input = json!({"path": "src/lib.rs", "content": "new body"});
453 let err = required_str(&input, "replace").expect_err("replace is missing");
454 let message = err.to_string();
455 assert!(message.contains("missing required field 'replace'"));
456 assert!(message.contains("Input provided:"));
457 assert!(message.contains("path"));
458 assert!(message.contains("content"));
459 }
460
461 #[test]
462 fn tool_error_display_matches_legacy_text() {
463 let err = ToolError::missing_field("path");
464 assert_eq!(
465 err.to_string(),
466 "Failed to validate input: missing required field 'path'"
467 );
468 }
469}