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use std::collections::BTreeSet;
use std::collections::HashMap;
use std::fmt;
use std::ops::Index;
use std::ops::IndexMut;
use smallvec::SmallVec;
use tree_sitter::Node;
use crate::execution::ExecutionError;
use crate::Context;
use crate::Identifier;
#[derive(Default)]
pub struct Graph<'tree> {
syntax_nodes: HashMap<SyntaxNodeRef, Node<'tree>>,
graph_nodes: Vec<GraphNode>,
}
type SyntaxNodeID = u32;
type GraphNodeID = u32;
impl<'tree> Graph<'tree> {
pub fn new() -> Graph<'tree> {
Graph::default()
}
pub fn add_syntax_node(&mut self, node: Node<'tree>) -> SyntaxNodeRef {
let index = SyntaxNodeRef(node.id() as SyntaxNodeID);
self.syntax_nodes.insert(index, node);
index
}
pub fn add_graph_node(&mut self) -> GraphNodeRef {
let graph_node = GraphNode::new();
let index = self.graph_nodes.len() as GraphNodeID;
self.graph_nodes.push(graph_node);
GraphNodeRef(index)
}
pub fn display_with<'a>(&'a self, ctx: &'a Context) -> impl fmt::Display + 'a {
struct DisplayGraph<'a, 'tree>(&'a Graph<'tree>, &'a Context);
impl<'a, 'tree> fmt::Display for DisplayGraph<'a, 'tree> {
fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
let graph = self.0;
let ctx = self.1;
for (node_index, node) in graph.graph_nodes.iter().enumerate() {
write!(
f,
"node {}\n{}",
node_index,
node.attributes.display_with(ctx, graph)
)?;
for (sink, edge) in &node.outgoing_edges {
write!(
f,
"edge {} -> {}\n{}",
node_index,
*sink,
edge.attributes.display_with(ctx, graph)
)?;
}
}
Ok(())
}
}
DisplayGraph(self, ctx)
}
}
impl<'tree> Index<SyntaxNodeRef> for Graph<'tree> {
type Output = Node<'tree>;
fn index(&self, index: SyntaxNodeRef) -> &Node<'tree> {
&self.syntax_nodes[&index]
}
}
impl Index<GraphNodeRef> for Graph<'_> {
type Output = GraphNode;
fn index(&self, index: GraphNodeRef) -> &GraphNode {
&self.graph_nodes[index.0 as usize]
}
}
impl<'tree> IndexMut<GraphNodeRef> for Graph<'_> {
fn index_mut(&mut self, index: GraphNodeRef) -> &mut GraphNode {
&mut self.graph_nodes[index.0 as usize]
}
}
pub struct GraphNode {
outgoing_edges: SmallVec<[(GraphNodeID, Edge); 8]>,
pub attributes: Attributes,
}
impl GraphNode {
fn new() -> GraphNode {
GraphNode {
outgoing_edges: SmallVec::new(),
attributes: Attributes::new(),
}
}
pub fn add_edge(&mut self, sink: GraphNodeRef) -> Result<&mut Edge, &mut Edge> {
let sink = sink.0;
match self
.outgoing_edges
.binary_search_by_key(&sink, |(sink, _)| *sink)
{
Ok(index) => Err(&mut self.outgoing_edges[index].1),
Err(index) => {
self.outgoing_edges.insert(index, (sink, Edge::new()));
Ok(&mut self.outgoing_edges[index].1)
}
}
}
pub fn get_edge(&self, sink: GraphNodeRef) -> Option<&Edge> {
let sink = sink.0;
self.outgoing_edges
.binary_search_by_key(&sink, |(sink, _)| *sink)
.ok()
.map(|index| &self.outgoing_edges[index].1)
}
pub fn get_edge_mut(&mut self, sink: GraphNodeRef) -> Option<&mut Edge> {
let sink = sink.0;
self.outgoing_edges
.binary_search_by_key(&sink, |(sink, _)| *sink)
.ok()
.map(move |index| &mut self.outgoing_edges[index].1)
}
}
pub struct Edge {
pub attributes: Attributes,
}
impl Edge {
fn new() -> Edge {
Edge {
attributes: Attributes::new(),
}
}
}
pub struct Attributes {
values: SmallVec<[(Identifier, Value); 8]>,
}
impl Attributes {
pub fn new() -> Attributes {
Attributes {
values: SmallVec::new(),
}
}
pub fn add<V: Into<Value>>(&mut self, name: Identifier, value: V) -> Result<(), ()> {
match self.values.binary_search_by_key(&name, |(name, _)| *name) {
Ok(index) => {
self.values[index].1 = value.into();
Err(())
}
Err(index) => {
self.values.insert(index, (name, value.into()));
Ok(())
}
}
}
pub fn get(&self, name: Identifier) -> Option<&Value> {
self.values
.binary_search_by_key(&name, |(name, _)| *name)
.ok()
.map(|index| &self.values[index].1)
}
pub fn display_with<'a>(
&'a self,
ctx: &'a Context,
graph: &'a Graph,
) -> impl fmt::Display + 'a {
struct DisplayAttributes<'a, 'tree>(&'a Attributes, &'a Context, &'a Graph<'tree>);
impl<'a, 'tree> fmt::Display for DisplayAttributes<'a, 'tree> {
fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
let attributes = self.0;
let ctx = self.1;
let graph = self.2;
for (name, value) in &attributes.values {
write!(
f,
" {}: {}\n",
ctx.resolve(*name),
value.display_with(graph),
)?;
}
Ok(())
}
}
DisplayAttributes(self, ctx, graph)
}
}
#[derive(Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
pub enum Value {
Null,
Boolean(bool),
Integer(u32),
String(String),
List(Vec<Value>),
Set(BTreeSet<Value>),
SyntaxNode(SyntaxNodeRef),
GraphNode(GraphNodeRef),
}
impl Value {
pub fn into_integer(self, graph: &Graph) -> Result<u32, ExecutionError> {
match self {
Value::Integer(value) => Ok(value),
_ => Err(ExecutionError::ExpectedInteger(format!(
"got {}",
self.display_with(graph)
))),
}
}
pub fn into_string(self, graph: &Graph) -> Result<String, ExecutionError> {
match self {
Value::String(value) => Ok(value),
_ => Err(ExecutionError::ExpectedString(format!(
"got {}",
self.display_with(graph)
))),
}
}
pub fn into_syntax_node<'a, 'tree>(
self,
graph: &'a Graph<'tree>,
) -> Result<&'a Node<'tree>, ExecutionError> {
match self {
Value::SyntaxNode(node) => Ok(&graph[node]),
_ => Err(ExecutionError::ExpectedSyntaxNode(format!(
"got {}",
self.display_with(graph)
))),
}
}
}
impl From<u32> for Value {
fn from(value: u32) -> Value {
Value::Integer(value)
}
}
impl From<&str> for Value {
fn from(value: &str) -> Value {
Value::String(value.to_string())
}
}
impl From<String> for Value {
fn from(value: String) -> Value {
Value::String(value)
}
}
impl DisplayWithGraph for Value {
fn fmt(&self, f: &mut fmt::Formatter, graph: &Graph) -> fmt::Result {
match self {
Value::Null => write!(f, "#null"),
Value::Boolean(value) => {
if *value {
write!(f, "#true")
} else {
write!(f, "#false")
}
}
Value::Integer(value) => write!(f, "{}", value),
Value::String(value) => write!(f, "{:?}", value),
Value::List(value) => {
write!(f, "[")?;
let mut first = true;
for element in value {
if first {
write!(f, "{}", element.display_with(graph))?;
first = false;
} else {
write!(f, ", {}", element.display_with(graph))?;
}
}
write!(f, "]")
}
Value::Set(value) => {
write!(f, "{{")?;
let mut first = true;
for element in value {
if first {
write!(f, "{}", element.display_with(graph))?;
first = false;
} else {
write!(f, ", {}", element.display_with(graph))?;
}
}
write!(f, "}}")
}
Value::SyntaxNode(node) => node.fmt(f, graph),
Value::GraphNode(node) => node.fmt(f, graph),
}
}
}
#[derive(Clone, Copy, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
pub struct SyntaxNodeRef(SyntaxNodeID);
impl From<SyntaxNodeRef> for Value {
fn from(value: SyntaxNodeRef) -> Value {
Value::SyntaxNode(value)
}
}
impl DisplayWithGraph for SyntaxNodeRef {
fn fmt(&self, f: &mut fmt::Formatter, graph: &Graph) -> fmt::Result {
let node = graph[*self];
write!(f, "[syntax node {} {}]", node.kind(), node.start_position())
}
}
#[derive(Clone, Copy, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
pub struct GraphNodeRef(GraphNodeID);
impl From<GraphNodeRef> for Value {
fn from(value: GraphNodeRef) -> Value {
Value::GraphNode(value)
}
}
impl DisplayWithGraph for GraphNodeRef {
fn fmt(&self, f: &mut fmt::Formatter, _graph: &Graph) -> fmt::Result {
write!(f, "[graph node {}]", self.0)
}
}
pub trait DisplayWithGraph
where
Self: Sized,
{
fn fmt<'tree>(&self, f: &mut fmt::Formatter, graph: &Graph<'tree>) -> fmt::Result;
fn display_with<'a, 'tree>(&'a self, graph: &'a Graph<'tree>) -> Box<dyn fmt::Display + 'a> {
struct Impl<'a, 'tree, T: DisplayWithGraph>(&'a T, &'a Graph<'tree>);
impl<'a, 'tree, T: DisplayWithGraph> fmt::Display for Impl<'a, 'tree, T> {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
self.0.fmt(f, self.1)
}
}
Box::new(Impl(self, graph))
}
}