lc_langgraph/compiled/
graph.rs1use super::types::{DynamicTask, GraphExecution};
5use crate::checkpointer::Checkpointer;
6use crate::edge::{ConditionalEdge, GraphEdge};
7use crate::errors::{GraphError, GraphResult};
8use crate::node::GraphNode;
9use crate::state::{Reducer, StateSchema};
10use crate::subgraph::SubgraphNode;
11use std::collections::HashMap;
12use std::sync::Arc;
13use tokio::sync::Mutex;
14use tokio::sync::RwLock;
15
16#[allow(clippy::type_complexity)]
24#[derive(Clone)]
25pub struct CompiledGraph<S: StateSchema> {
26 pub(super) nodes: HashMap<String, Arc<dyn GraphNode<S>>>,
27 pub(super) edges: Vec<GraphEdge>,
28 pub(super) entry_point: String,
29 pub(super) default_reducer: Arc<dyn Reducer<S>>,
30 pub(super) conditional_routers: HashMap<String, Arc<dyn ConditionalEdge<S>>>,
31 pub(super) checkpointer: Option<Arc<Mutex<dyn Checkpointer<S> + Send>>>,
32 pub(super) recursion_limit: usize,
33 pub(super) interrupt_before: Vec<String>,
34 pub(super) interrupt_after: Vec<String>,
35
36 pub(super) runtime_nodes: Arc<RwLock<HashMap<String, Arc<dyn GraphNode<S>>>>>,
37 pub(super) runtime_edges: Arc<RwLock<Vec<GraphEdge>>>,
38 pub(super) runtime_conditional_routers:
39 Arc<RwLock<HashMap<String, Arc<dyn ConditionalEdge<S>>>>>,
40 pub(super) task_inbox: Arc<Mutex<Vec<DynamicTask>>>,
41}
42
43impl<S: StateSchema> std::fmt::Debug for CompiledGraph<S> {
44 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
45 f.debug_struct("CompiledGraph")
46 .field("nodes", &self.nodes.keys().collect::<Vec<_>>())
47 .field("edges", &self.edges)
48 .field("entry_point", &self.entry_point)
49 .field("recursion_limit", &self.recursion_limit)
50 .field("interrupt_before", &self.interrupt_before)
51 .field("interrupt_after", &self.interrupt_after)
52 .finish()
53 }
54}
55
56impl<S: StateSchema> CompiledGraph<S> {
57 pub(crate) fn new(
58 nodes: HashMap<String, Arc<dyn GraphNode<S>>>,
59 edges: Vec<GraphEdge>,
60 entry_point: String,
61 default_reducer: Arc<dyn Reducer<S>>,
62 ) -> Self {
63 Self {
64 nodes,
65 edges,
66 entry_point,
67 default_reducer,
68 conditional_routers: HashMap::new(),
69 checkpointer: None,
70 recursion_limit: 25,
71 interrupt_before: Vec::new(),
72 interrupt_after: Vec::new(),
73 runtime_nodes: Arc::new(RwLock::new(HashMap::new())),
74 runtime_edges: Arc::new(RwLock::new(Vec::new())),
75 runtime_conditional_routers: Arc::new(RwLock::new(HashMap::new())),
76 task_inbox: Arc::new(Mutex::new(Vec::new())),
77 }
78 }
79
80 pub(crate) fn add_router(&mut self, name: String, router: Arc<dyn ConditionalEdge<S>>) {
81 self.conditional_routers.insert(name, router);
82 }
83
84 pub fn with_checkpointer<C: Checkpointer<S> + 'static>(mut self, checkpointer: C) -> Self {
85 self.checkpointer = Some(Arc::new(Mutex::new(checkpointer)));
86 self
87 }
88
89 pub fn with_recursion_limit(mut self, limit: usize) -> Self {
90 self.recursion_limit = limit;
91 self
92 }
93
94 pub fn with_interrupt_before(mut self, nodes: Vec<String>) -> Self {
95 self.interrupt_before = nodes;
96 self
97 }
98
99 pub fn with_interrupt_after(mut self, nodes: Vec<String>) -> Self {
100 self.interrupt_after = nodes;
101 self
102 }
103
104 pub fn node_names(&self) -> Vec<String> {
105 self.nodes.keys().cloned().collect()
106 }
107
108 pub fn get_edges(&self) -> &[GraphEdge] {
109 &self.edges
110 }
111
112 pub fn entry_point(&self) -> &str {
113 &self.entry_point
114 }
115
116 pub fn recursion_limit(&self) -> usize {
117 self.recursion_limit
118 }
119
120 pub fn interrupt_before(&self) -> &[String] {
121 &self.interrupt_before
122 }
123
124 pub fn interrupt_after(&self) -> &[String] {
125 &self.interrupt_after
126 }
127
128 pub async fn last_checkpoint_state(&self) -> Option<S> {
130 if let Some(ref cp) = self.checkpointer {
131 let guard = cp.lock().await;
132 let ids = guard.list().await.ok()?;
133 let last_id = ids.last()?.clone();
134 guard.load(&last_id).await.ok()
135 } else {
136 None
137 }
138 }
139
140 pub async fn create_resume_execution(
143 &self,
144 interrupted_node: &str,
145 ) -> Option<GraphExecution<S>> {
146 let state = self.last_checkpoint_state().await?;
147 let current = interrupted_node
148 .strip_prefix("after_")
149 .unwrap_or(interrupted_node);
150 Some(GraphExecution {
151 state,
152 current_node: current.to_string(),
153 steps: Vec::new(),
154 recursion_count: 0,
155 interrupted_at: interrupted_node.to_string(),
156 })
157 }
158
159 pub(super) async fn get_node(&self, name: &str) -> GraphResult<Arc<dyn GraphNode<S>>> {
160 if let Some(node) = self.nodes.get(name) {
161 return Ok(node.clone());
162 }
163 if let Some(node) = self.runtime_nodes.read().await.get(name) {
164 return Ok(node.clone());
165 }
166 Err(GraphError::ExecutionError(format!(
167 "Node '{}' not found",
168 name
169 )))
170 }
171
172 pub fn submit_task(&self, description: String) {
174 if let Ok(mut inbox) = self.task_inbox.try_lock() {
175 inbox.push(DynamicTask {
176 id: uuid::Uuid::new_v4().to_string(),
177 description,
178 });
179 }
180 }
181
182 pub async fn inject_node(&self, name: &str, node: Arc<dyn GraphNode<S>>) -> GraphResult<()> {
184 self.runtime_nodes
185 .write()
186 .await
187 .insert(name.to_string(), node);
188 Ok(())
189 }
190
191 pub async fn inject_edge(&self, source: &str, target: &str) -> GraphResult<()> {
193 self.runtime_edges
194 .write()
195 .await
196 .push(GraphEdge::fixed(source, target));
197 Ok(())
198 }
199
200 pub async fn inject_subgraph<SubS: StateSchema + 'static>(
202 &self,
203 name: &str,
204 subgraph: CompiledGraph<SubS>,
205 input_mapper: impl Fn(&S) -> SubS + Send + Sync + 'static,
206 output_mapper: impl Fn(&SubS, &mut S) + Send + Sync + 'static,
207 ) -> GraphResult<()> {
208 let node = SubgraphNode::new(name, subgraph, input_mapper, output_mapper);
209 self.runtime_nodes
210 .write()
211 .await
212 .insert(name.to_string(), Arc::new(node));
213 Ok(())
214 }
215}