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https://github.com/sigp/lighthouse.git
synced 2026-04-20 14:28:37 +00:00
Revert parent->child optimisation AGAIN
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@@ -1104,26 +1104,6 @@ impl ProtoArray {
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Ok((best_fc_node.root, best_fc_node.payload_status))
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}
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/// Build a parent->children index. Invalid nodes are excluded
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/// (they aren't in store.blocks in the spec).
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fn build_children_index(&self) -> Vec<Vec<usize>> {
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let mut children = vec![vec![]; self.nodes.len()];
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for (i, node) in self.nodes.iter().enumerate() {
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if node
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.execution_status()
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.is_ok_and(|status| status.is_invalid())
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{
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continue;
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}
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if let Some(parent) = node.parent()
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&& parent < children.len()
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{
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children[parent].push(i);
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}
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}
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children
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}
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/// Spec: `get_filtered_block_tree`.
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///
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/// Returns the set of node indices on viable branches — those with at least
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@@ -1134,7 +1114,6 @@ impl ProtoArray {
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current_slot: Slot,
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best_justified_checkpoint: Checkpoint,
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best_finalized_checkpoint: Checkpoint,
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children_index: &[Vec<usize>],
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) -> HashSet<usize> {
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let mut viable = HashSet::new();
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self.filter_block_tree::<E>(
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@@ -1142,7 +1121,6 @@ impl ProtoArray {
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current_slot,
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best_justified_checkpoint,
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best_finalized_checkpoint,
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children_index,
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&mut viable,
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);
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viable
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@@ -1155,17 +1133,25 @@ impl ProtoArray {
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current_slot: Slot,
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best_justified_checkpoint: Checkpoint,
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best_finalized_checkpoint: Checkpoint,
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children_index: &[Vec<usize>],
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viable: &mut HashSet<usize>,
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) -> bool {
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let Some(node) = self.nodes.get(node_index) else {
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return false;
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};
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let children = children_index
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.get(node_index)
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.map(|c| c.as_slice())
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.unwrap_or(&[]);
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// Skip invalid children — they aren't in store.blocks in the spec.
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let children: Vec<usize> = self
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.nodes
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.iter()
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.enumerate()
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.filter(|(_, child)| {
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child.parent() == Some(node_index)
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&& !child
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.execution_status()
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.is_ok_and(|status| status.is_invalid())
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})
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.map(|(i, _)| i)
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.collect();
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if !children.is_empty() {
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// Evaluate ALL children (no short-circuit) to mark all viable branches.
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@@ -1177,7 +1163,6 @@ impl ProtoArray {
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current_slot,
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best_justified_checkpoint,
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best_finalized_checkpoint,
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children_index,
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viable,
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)
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})
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@@ -1222,16 +1207,12 @@ impl ProtoArray {
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payload_status: PayloadStatus::Pending,
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};
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// Build parent->children index once for O(1) lookups.
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let children_index = self.build_children_index();
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// Spec: `get_filtered_block_tree`.
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let viable_nodes = self.get_filtered_block_tree::<E>(
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start_index,
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current_slot,
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best_justified_checkpoint,
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best_finalized_checkpoint,
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&children_index,
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);
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// Compute once rather than per-child per-level.
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@@ -1240,7 +1221,7 @@ impl ProtoArray {
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loop {
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let children: Vec<_> = self
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.get_node_children(&head, &children_index)?
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.get_node_children(&head)?
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.into_iter()
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.filter(|(fc_node, _)| viable_nodes.contains(&fc_node.proto_node_index))
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.collect();
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@@ -1403,7 +1384,6 @@ impl ProtoArray {
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fn get_node_children(
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&self,
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node: &IndexedForkChoiceNode,
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children_index: &[Vec<usize>],
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) -> Result<Vec<(IndexedForkChoiceNode, ProtoNode)>, Error> {
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if node.payload_status == PayloadStatus::Pending {
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let proto_node = self
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@@ -1417,25 +1397,23 @@ impl ProtoArray {
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}
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Ok(children)
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} else {
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let child_indices = children_index
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.get(node.proto_node_index)
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.map(|c| c.as_slice())
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.unwrap_or(&[]);
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Ok(child_indices
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Ok(self
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.nodes
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.iter()
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.filter_map(|&child_index| {
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let child_node = self.nodes.get(child_index)?;
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if child_node.get_parent_payload_status() != node.payload_status {
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return None;
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}
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Some((
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.enumerate()
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.filter(|(_, child_node)| {
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child_node.parent() == Some(node.proto_node_index)
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&& child_node.get_parent_payload_status() == node.payload_status
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})
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.map(|(child_index, child_node)| {
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(
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IndexedForkChoiceNode {
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root: child_node.root(),
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proto_node_index: child_index,
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payload_status: PayloadStatus::Pending,
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},
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child_node.clone(),
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))
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)
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})
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.collect())
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}
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