lc_langgraph/compiled/
parallel.rs1use super::graph::CompiledGraph;
5use super::types::{
6 DynamicInjection, DynamicPlanner, ExecutionStep, GraphInvocation, ParallelBranch,
7 ParallelInvocation,
8};
9use crate::errors::{GraphError, GraphResult};
10use crate::node::NodeConfig;
11use crate::state::StateSchema;
12use crate::END;
13use std::collections::HashMap;
14
15impl<S: StateSchema> CompiledGraph<S> {
16 pub async fn invoke_parallel(&self, input: S) -> GraphResult<ParallelInvocation<S>> {
18 let mut state = input;
19 let mut current_node = self.entry_point.clone();
20 let mut steps: Vec<ExecutionStep> = Vec::new();
21 let mut recursion_count = 0;
22 let mut parallel_branches: Vec<ParallelBranch<S>> = Vec::new();
23
24 if let Some(ref checkpointer) = self.checkpointer {
25 let checkpoint_id = checkpointer.lock().await.save(&state, 0).await?;
26 steps.push(ExecutionStep::checkpoint(
27 checkpoint_id,
28 current_node.clone(),
29 ));
30 }
31
32 loop {
33 if current_node == END {
34 break;
35 }
36
37 if recursion_count >= self.recursion_limit {
39 return Err(GraphError::RecursionLimitReached(self.recursion_limit));
40 }
41
42 if self.interrupt_before.contains(¤t_node) {
43 return Err(GraphError::ExecutionInterrupted(current_node.clone()));
44 }
45
46 recursion_count += 1;
47
48 let fan_out_targets = self.find_fan_out_targets(¤t_node).await;
49
50 if let Some(targets) = fan_out_targets {
51 let branch_results = self
52 .execute_parallel_branches(&targets, &state, recursion_count)
53 .await?;
54
55 for (name, inv) in branch_results {
56 parallel_branches.push(ParallelBranch {
57 name: name.clone(),
58 final_state: inv.final_state.clone(),
59 steps: inv.steps.clone(),
60 });
61 steps.push(ExecutionStep::ParallelNode {
62 branch: name,
63 metadata: HashMap::new(),
64 });
65 }
66
67 let merge_target = self.find_fan_in_target(&targets).await;
68 if let Some(merge_node) = merge_target {
69 state = self.merge_parallel_states(¶llel_branches)?;
70 current_node = merge_node;
71 } else {
72 state = self.merge_parallel_states(¶llel_branches)?;
75 current_node = END.to_string();
76 }
77 } else {
78 let node = self.get_node(¤t_node).await?;
79
80 let config = NodeConfig {
81 recursion_limit: self.recursion_limit,
82 debug: false,
83 metadata: HashMap::new(),
84 };
85
86 let update = node.execute(&state, Some(config)).await?;
87
88 if let Some(new_state) = update.update {
89 state = self.default_reducer.reduce(&state, &new_state);
90 }
91
92 steps.push(ExecutionStep::node(
93 current_node.clone(),
94 update.metadata.clone(),
95 ));
96
97 if self.interrupt_after.contains(¤t_node) {
98 return Err(GraphError::ExecutionInterrupted(format!(
99 "after_{}",
100 current_node
101 )));
102 }
103
104 current_node = self.find_next_node(¤t_node, &state).await?;
105 }
106 }
107
108 Ok(ParallelInvocation {
109 final_state: state,
110 steps,
111 recursion_count,
112 parallel_branches,
113 })
114 }
115
116 pub async fn invoke_dynamic(
122 &self,
123 input: S,
124 planner: &dyn DynamicPlanner<S>,
125 ) -> GraphResult<GraphInvocation<S>> {
126 let mut state = input;
127 let mut current_node = self.entry_point.clone();
128 let mut steps: Vec<ExecutionStep> = Vec::new();
129 let mut recursion_count = 0;
130
131 if let Some(ref checkpointer) = self.checkpointer {
132 let checkpoint_id = checkpointer.lock().await.save(&state, 0).await?;
133 steps.push(ExecutionStep::checkpoint(
134 checkpoint_id,
135 current_node.clone(),
136 ));
137 }
138
139 loop {
140 if current_node == END {
141 break;
142 }
143
144 if recursion_count >= self.recursion_limit {
146 return Err(GraphError::RecursionLimitReached(self.recursion_limit));
147 }
148
149 let pending = {
151 let mut inbox = self.task_inbox.lock().await;
152 inbox.drain(..).collect::<Vec<_>>()
153 };
154 if !pending.is_empty() {
155 let injection: DynamicInjection<S> = planner
156 .plan(&pending, &state)
157 .await
158 .map_err(|e| GraphError::RuntimeError(e.to_string()))?;
159
160 {
161 let mut rn = self.runtime_nodes.write().await;
162 for (name, node) in injection.nodes {
163 rn.insert(name, node);
164 }
165 }
166 {
167 let mut re = self.runtime_edges.write().await;
168 re.extend(injection.edges);
169 }
170 }
171
172 if self.interrupt_before.contains(¤t_node) {
173 return Err(GraphError::ExecutionInterrupted(current_node.clone()));
174 }
175
176 recursion_count += 1;
177
178 let node = self.get_node(¤t_node).await?;
179 let config = NodeConfig {
180 recursion_limit: self.recursion_limit,
181 debug: false,
182 metadata: HashMap::new(),
183 };
184 let update = node.execute(&state, Some(config)).await?;
185
186 if let Some(new_state) = update.update {
187 state = self.default_reducer.reduce(&state, &new_state);
188 }
189 steps.push(ExecutionStep::node(
190 current_node.clone(),
191 update.metadata.clone(),
192 ));
193
194 if self.interrupt_after.contains(¤t_node) {
195 return Err(GraphError::ExecutionInterrupted(format!(
196 "after_{}",
197 current_node
198 )));
199 }
200
201 let next_node = self.find_next_node(¤t_node, &state).await?;
202
203 if let Some(ref checkpointer) = self.checkpointer {
204 let checkpoint_id = checkpointer
205 .lock()
206 .await
207 .save(&state, recursion_count)
208 .await?;
209 steps.push(ExecutionStep::checkpoint(checkpoint_id, next_node.clone()));
210 }
211
212 current_node = next_node;
213 }
214
215 Ok(GraphInvocation {
216 final_state: state,
217 steps,
218 recursion_count,
219 })
220 }
221
222 pub(super) fn merge_parallel_states(&self, branches: &[ParallelBranch<S>]) -> GraphResult<S> {
223 if branches.is_empty() {
224 return Err(GraphError::StateError(
225 "Cannot merge states: no parallel branches completed".to_string(),
226 ));
227 }
228
229 let mut merged = branches[0].final_state.clone();
230 for branch in branches.iter().skip(1) {
231 merged = self.default_reducer.reduce(&merged, &branch.final_state);
232 }
233 Ok(merged)
234 }
235}