bamboo_engine/runtime/managers/adapters/
llm_mini_loop.rs1use async_trait::async_trait;
2use bamboo_agent_core::tools::ToolCall;
3use bamboo_agent_core::{AgentError, Session};
4use bamboo_domain::{Message, Role};
5use bamboo_llm::LLMProvider;
6
7use crate::runtime::managers::mini_loop::{MiniLoopDecision, MiniLoopExecutor};
8
9pub struct LLMMiniLoopExecutor {
14 provider: std::sync::Arc<dyn LLMProvider>,
15 model: String,
16 timeout_context: crate::runtime::stream::handler::StreamTimeoutContext,
17}
18
19impl LLMMiniLoopExecutor {
20 pub fn new(provider: std::sync::Arc<dyn LLMProvider>, model: String) -> Self {
21 Self {
22 provider,
23 model,
24 timeout_context: crate::runtime::stream::handler::StreamTimeoutContext::default(),
25 }
26 }
27
28 pub fn with_timeout_policy(
29 provider: std::sync::Arc<dyn LLMProvider>,
30 model: String,
31 policy: bamboo_config::StreamTimeoutConfig,
32 provider_name: Option<&str>,
33 ) -> Self {
34 let timeout_context = crate::runtime::stream::handler::StreamTimeoutContext::new(
35 policy,
36 provider_name,
37 Some(&model),
38 );
39 Self {
40 provider,
41 model,
42 timeout_context,
43 }
44 }
45}
46
47#[async_trait]
48impl MiniLoopExecutor for LLMMiniLoopExecutor {
49 async fn decide(
50 &self,
51 _session: &Session,
52 prompt: &str,
53 context: &str,
54 ) -> Result<MiniLoopDecision, AgentError> {
55 let user_content = if context.is_empty() {
56 prompt.to_string()
57 } else {
58 format!("Context:\n{}\n\n{}", context, prompt)
59 };
60
61 let now = chrono::Utc::now();
62 let messages = vec![
63 Message {
64 id: String::new(),
65 role: Role::System,
66 content: "You are a task complexity classifier. Respond with exactly one word: simple, standard, or complex.".to_string(),
67 reasoning: None,
68 reasoning_signature: None,
69 content_parts: None,
70 image_ocr: None,
71 phase: None,
72 tool_calls: None,
73 tool_call_id: None,
74 tool_success: None,
75 compressed: false,
76 compressed_by_event_id: None,
77 never_compress: false,
78 compression_level: 0,
79 created_at: now,
80 metadata: None,
81 },
82 Message {
83 id: String::new(),
84 role: Role::User,
85 content: user_content,
86 reasoning: None,
87 reasoning_signature: None,
88 content_parts: None,
89 image_ocr: None,
90 phase: None,
91 tool_calls: None,
92 tool_call_id: None,
93 tool_success: None,
94 compressed: false,
95 compressed_by_event_id: None,
96 never_compress: false,
97 compression_level: 0,
98 created_at: now,
99 metadata: None,
100 },
101 ];
102
103 let options = bamboo_llm::provider::LLMRequestOptions {
104 session_id: None,
105 reasoning_effort: None,
106 parallel_tool_calls: None,
107 required_tool: None,
108 responses: None,
109 request_purpose: Some("mini_loop".to_string()),
110 cache: None,
111 };
112 let stream = self
113 .provider
114 .chat_stream_with_options(&messages, &[], Some(256), &self.model, Some(&options))
115 .await
116 .map_err(|e| AgentError::LLM(e.to_string()))?;
117
118 let output = crate::runtime::stream::handler::consume_llm_stream_silent_with_context(
119 stream,
120 &tokio_util::sync::CancellationToken::new(),
121 "mini-loop",
122 &self.timeout_context,
123 )
124 .await?;
125
126 Ok(MiniLoopDecision {
127 answer: output.content.trim().to_string(),
128 prompt_tokens: 0,
129 completion_tokens: 0,
130 })
131 }
132
133 async fn evaluate_task(
134 &self,
135 _session: &Session,
136 _tool_calls: &[ToolCall],
137 _round: usize,
138 ) -> Result<MiniLoopDecision, AgentError> {
139 Ok(MiniLoopDecision {
142 answer: String::new(),
143 prompt_tokens: 0,
144 completion_tokens: 0,
145 })
146 }
147}
148
149#[cfg(test)]
150mod tests {
151 use super::*;
152 use bamboo_agent_core::tools::ToolSchema;
153 use bamboo_domain::ReasoningEffort;
154 use bamboo_llm::provider::LLMRequestOptions;
155 use bamboo_llm::{LLMChunk, LLMError, LLMProvider, LLMStream};
156 use futures::stream;
157 use std::sync::{Arc, Mutex};
158
159 #[derive(Default)]
160 struct CaptureProvider {
161 captured_max_tokens: Mutex<Vec<Option<u32>>>,
162 captured_reasoning: Mutex<Vec<Option<ReasoningEffort>>>,
163 }
164
165 #[async_trait]
166 impl LLMProvider for CaptureProvider {
167 async fn chat_stream(
168 &self,
169 _messages: &[Message],
170 _tools: &[ToolSchema],
171 _max_output_tokens: Option<u32>,
172 _model: &str,
173 ) -> Result<LLMStream, LLMError> {
174 Ok(Box::pin(stream::iter(vec![
175 Ok::<LLMChunk, LLMError>(LLMChunk::Token("simple".to_string())),
176 Ok::<LLMChunk, LLMError>(LLMChunk::Done),
177 ])))
178 }
179
180 async fn chat_stream_with_options(
181 &self,
182 messages: &[Message],
183 tools: &[ToolSchema],
184 max_output_tokens: Option<u32>,
185 model: &str,
186 options: Option<&LLMRequestOptions>,
187 ) -> Result<LLMStream, LLMError> {
188 self.captured_max_tokens
189 .lock()
190 .expect("lock should not be poisoned")
191 .push(max_output_tokens);
192 self.captured_reasoning
193 .lock()
194 .expect("lock should not be poisoned")
195 .push(options.and_then(|o| o.reasoning_effort));
196 self.chat_stream(messages, tools, max_output_tokens, model)
197 .await
198 }
199 }
200
201 #[tokio::test]
202 async fn mini_loop_sends_no_reasoning_effort() {
203 let provider = Arc::new(CaptureProvider::default());
204 let executor = LLMMiniLoopExecutor::new(provider.clone(), "fast-model".to_string());
205 let session = Session::new("test", "model");
206
207 let decision = executor
208 .decide(&session, "classify this task", "")
209 .await
210 .expect("decide should succeed");
211 assert_eq!(decision.answer, "simple");
212
213 let captured_reasoning = provider
214 .captured_reasoning
215 .lock()
216 .expect("lock should not be poisoned");
217 assert_eq!(
218 captured_reasoning.as_slice(),
219 [None],
220 "mini_loop should not request reasoning to avoid thinking budget consuming output tokens"
221 );
222 }
223
224 #[tokio::test]
225 async fn mini_loop_max_tokens_accommodates_provider_default_reasoning() {
226 let provider = Arc::new(CaptureProvider::default());
227 let executor = LLMMiniLoopExecutor::new(provider.clone(), "fast-model".to_string());
228 let session = Session::new("test", "model");
229
230 let _ = executor
231 .decide(&session, "classify this task", "")
232 .await
233 .expect("decide should succeed");
234
235 let captured = provider
236 .captured_max_tokens
237 .lock()
238 .expect("lock should not be poisoned");
239 let max_tokens = captured[0].expect("max_output_tokens should be set");
240 assert!(
243 max_tokens >= 256,
244 "max_output_tokens ({}) should be at least 256 to accommodate potential provider default reasoning",
245 max_tokens
246 );
247 }
248}