#![allow(missing_docs)]
use std::cmp::{min, Ordering};
use std::collections::{BTreeMap, HashSet};
use crate::backend::CommitId;
use crate::default_index::{CompositeIndex, IndexEntry, IndexPosition};
use crate::revset_graph::{RevsetGraphEdge, RevsetGraphEdgeType};
#[derive(Clone, Copy, Debug, Eq, Hash, PartialEq)]
struct IndexGraphEdge {
target: IndexPosition,
edge_type: RevsetGraphEdgeType,
}
impl IndexGraphEdge {
fn missing(target: IndexPosition) -> Self {
let edge_type = RevsetGraphEdgeType::Missing;
IndexGraphEdge { target, edge_type }
}
fn direct(target: IndexPosition) -> Self {
let edge_type = RevsetGraphEdgeType::Direct;
IndexGraphEdge { target, edge_type }
}
fn indirect(target: IndexPosition) -> Self {
let edge_type = RevsetGraphEdgeType::Indirect;
IndexGraphEdge { target, edge_type }
}
fn to_revset_edge(self, index: CompositeIndex<'_>) -> RevsetGraphEdge {
RevsetGraphEdge {
target: index.entry_by_pos(self.target).commit_id(),
edge_type: self.edge_type,
}
}
}
pub struct RevsetGraphIterator<'revset, 'index> {
index: CompositeIndex<'index>,
input_set_iter: Box<dyn Iterator<Item = IndexEntry<'index>> + 'revset>,
look_ahead: BTreeMap<IndexPosition, IndexEntry<'index>>,
min_position: IndexPosition,
edges: BTreeMap<IndexPosition, Vec<IndexGraphEdge>>,
skip_transitive_edges: bool,
}
impl<'revset, 'index> RevsetGraphIterator<'revset, 'index> {
pub fn new(
index: CompositeIndex<'index>,
input_set_iter: Box<dyn Iterator<Item = IndexEntry<'index>> + 'revset>,
) -> RevsetGraphIterator<'revset, 'index> {
RevsetGraphIterator {
index,
input_set_iter,
look_ahead: Default::default(),
min_position: IndexPosition::MAX,
edges: Default::default(),
skip_transitive_edges: true,
}
}
pub fn set_skip_transitive_edges(mut self, skip_transitive_edges: bool) -> Self {
self.skip_transitive_edges = skip_transitive_edges;
self
}
fn next_index_entry(&mut self) -> Option<IndexEntry<'index>> {
if let Some(index_entry) = self.look_ahead.last_entry().map(|x| x.remove()) {
return Some(index_entry);
}
self.input_set_iter.next()
}
fn edges_from_internal_commit(
&mut self,
index_entry: &IndexEntry<'index>,
) -> &[IndexGraphEdge] {
let position = index_entry.position();
if self.edges.contains_key(&position) {
return self.edges.get(&position).unwrap();
}
let edges = self.new_edges_from_internal_commit(index_entry);
self.edges.entry(position).or_insert(edges)
}
fn pop_edges_from_internal_commit(
&mut self,
index_entry: &IndexEntry<'index>,
) -> Vec<IndexGraphEdge> {
let position = index_entry.position();
while let Some(entry) = self.edges.last_entry() {
match entry.key().cmp(&position) {
Ordering::Less => break, Ordering::Equal => return entry.remove(),
Ordering::Greater => entry.remove(),
};
}
self.new_edges_from_internal_commit(index_entry)
}
fn new_edges_from_internal_commit(
&mut self,
index_entry: &IndexEntry<'index>,
) -> Vec<IndexGraphEdge> {
let mut edges = Vec::new();
let mut known_ancestors = HashSet::new();
for parent in index_entry.parents() {
let parent_position = parent.position();
self.consume_to(parent_position);
if self.look_ahead.contains_key(&parent_position) {
edges.push(IndexGraphEdge::direct(parent_position));
} else {
let parent_edges = self.edges_from_external_commit(parent);
if parent_edges
.iter()
.all(|edge| edge.edge_type == RevsetGraphEdgeType::Missing)
{
edges.push(IndexGraphEdge::missing(parent_position));
} else {
edges.extend(
parent_edges
.iter()
.filter(|edge| known_ancestors.insert(edge.target)),
)
}
}
}
edges
}
fn edges_from_external_commit(&mut self, index_entry: IndexEntry<'index>) -> &[IndexGraphEdge] {
let position = index_entry.position();
let mut stack = vec![index_entry];
while let Some(entry) = stack.last() {
let position = entry.position();
if self.edges.contains_key(&position) {
stack.pop().unwrap();
continue;
}
let mut edges = Vec::new();
let mut known_ancestors = HashSet::new();
let mut parents_complete = true;
for parent in entry.parents() {
let parent_position = parent.position();
self.consume_to(parent_position);
if self.look_ahead.contains_key(&parent_position) {
edges.push(IndexGraphEdge::indirect(parent_position));
} else if let Some(parent_edges) = self.edges.get(&parent_position) {
if parent_edges
.iter()
.all(|edge| edge.edge_type == RevsetGraphEdgeType::Missing)
{
edges.push(IndexGraphEdge::missing(parent_position));
} else {
edges.extend(
parent_edges
.iter()
.filter(|edge| known_ancestors.insert(edge.target)),
);
}
} else if parent_position < self.min_position {
edges.push(IndexGraphEdge::missing(parent_position));
} else {
stack.push(parent);
parents_complete = false;
}
}
if parents_complete {
stack.pop().unwrap();
self.edges.insert(position, edges);
}
}
self.edges.get(&position).unwrap()
}
fn remove_transitive_edges(&mut self, edges: Vec<IndexGraphEdge>) -> Vec<IndexGraphEdge> {
if !edges
.iter()
.any(|edge| edge.edge_type == RevsetGraphEdgeType::Indirect)
{
return edges;
}
let mut min_generation = u32::MAX;
let mut initial_targets = HashSet::new();
let mut work = vec![];
for edge in &edges {
initial_targets.insert(edge.target);
if edge.edge_type != RevsetGraphEdgeType::Missing {
let entry = self.look_ahead.get(&edge.target).unwrap().clone();
min_generation = min(min_generation, entry.generation_number());
work.extend_from_slice(self.edges_from_internal_commit(&entry));
}
}
let mut unwanted = HashSet::new();
while let Some(edge) = work.pop() {
if edge.edge_type == RevsetGraphEdgeType::Missing || edge.target < self.min_position {
continue;
}
if !unwanted.insert(edge.target) {
continue;
}
if initial_targets.contains(&edge.target) {
continue;
}
let entry = self.look_ahead.get(&edge.target).unwrap().clone();
if entry.generation_number() < min_generation {
continue;
}
work.extend_from_slice(self.edges_from_internal_commit(&entry));
}
edges
.into_iter()
.filter(|edge| !unwanted.contains(&edge.target))
.collect()
}
fn consume_to(&mut self, pos: IndexPosition) {
while pos < self.min_position {
if let Some(next_entry) = self.input_set_iter.next() {
let next_position = next_entry.position();
self.look_ahead.insert(next_position, next_entry);
self.min_position = next_position;
} else {
break;
}
}
}
}
impl<'revset, 'index> Iterator for RevsetGraphIterator<'revset, 'index> {
type Item = (CommitId, Vec<RevsetGraphEdge>);
fn next(&mut self) -> Option<Self::Item> {
let index_entry = self.next_index_entry()?;
let mut edges = self.pop_edges_from_internal_commit(&index_entry);
if self.skip_transitive_edges {
edges = self.remove_transitive_edges(edges);
}
let edges = edges
.iter()
.map(|edge| edge.to_revset_edge(self.index))
.collect();
Some((index_entry.commit_id(), edges))
}
}