Memoize closure calls

This commit is contained in:
Laurenz 2023-02-17 16:41:27 +01:00
parent c1637054a4
commit 090831c9cb

View File

@ -2,7 +2,7 @@ use std::fmt::{self, Debug, Formatter};
use std::hash::{Hash, Hasher};
use std::sync::Arc;
use comemo::{Track, Tracked, TrackedMut};
use comemo::{Prehashed, Track, Tracked, TrackedMut};
use super::{
Args, CastInfo, Dict, Eval, Flow, Node, NodeId, Route, Scope, Scopes, Selector,
@ -11,12 +11,13 @@ use super::{
use crate::diag::{bail, SourceResult, StrResult};
use crate::syntax::ast::{self, AstNode, Expr};
use crate::syntax::{SourceId, Span, SyntaxNode};
use crate::util::hash128;
use crate::util::EcoString;
use crate::World;
/// An evaluatable function.
#[derive(Clone, Hash)]
pub struct Func(Arc<Repr>, Span);
pub struct Func(Arc<Prehashed<Repr>>, Span);
/// The different kinds of function representations.
#[derive(Hash)]
@ -41,7 +42,12 @@ impl Func {
info: FuncInfo,
) -> Self {
Self(
Arc::new(Repr::Native(Native { func, set: None, node: None, info })),
Arc::new(Prehashed::new(Repr::Native(Native {
func,
set: None,
node: None,
info,
}))),
Span::detached(),
)
}
@ -50,7 +56,7 @@ impl Func {
pub fn from_node<T: Node>(mut info: FuncInfo) -> Self {
info.params.extend(T::properties());
Self(
Arc::new(Repr::Native(Native {
Arc::new(Prehashed::new(Repr::Native(Native {
func: |ctx, args| {
let styles = T::set(args, true)?;
let content = T::construct(ctx, args)?;
@ -59,19 +65,19 @@ impl Func {
set: Some(|args| T::set(args, false)),
node: Some(NodeId::of::<T>()),
info,
})),
}))),
Span::detached(),
)
}
/// Create a new function from a closure.
pub(super) fn from_closure(closure: Closure, span: Span) -> Self {
Self(Arc::new(Repr::Closure(closure)), span)
Self(Arc::new(Prehashed::new(Repr::Closure(closure))), span)
}
/// The name of the function.
pub fn name(&self) -> Option<&str> {
match self.0.as_ref() {
match &**self.0 {
Repr::Native(native) => Some(native.info.name),
Repr::Closure(closure) => closure.name.as_deref(),
Repr::With(func, _) => func.name(),
@ -80,7 +86,7 @@ impl Func {
/// Extract details the function.
pub fn info(&self) -> Option<&FuncInfo> {
match self.0.as_ref() {
match &**self.0 {
Repr::Native(native) => Some(&native.info),
Repr::With(func, _) => func.info(),
_ => None,
@ -100,7 +106,7 @@ impl Func {
/// The number of positional arguments this function takes, if known.
pub fn argc(&self) -> Option<usize> {
match self.0.as_ref() {
match &**self.0 {
Repr::Closure(closure) => closure.argc(),
Repr::With(wrapped, applied) => Some(wrapped.argc()?.saturating_sub(
applied.items.iter().filter(|arg| arg.name.is_none()).count(),
@ -111,16 +117,32 @@ impl Func {
/// Call the function with the given arguments.
pub fn call(&self, vm: &mut Vm, mut args: Args) -> SourceResult<Value> {
let value = match self.0.as_ref() {
Repr::Native(native) => (native.func)(vm, &mut args)?,
Repr::Closure(closure) => closure.call(vm, self, &mut args)?,
match &**self.0 {
Repr::Native(native) => {
let value = (native.func)(vm, &mut args)?;
args.finish()?;
Ok(value)
}
Repr::Closure(closure) => {
// Determine the route inside the closure.
let fresh = Route::new(closure.location);
let route =
if vm.location.is_detached() { fresh.track() } else { vm.route };
Closure::call(
self,
vm.world,
route,
TrackedMut::reborrow_mut(&mut vm.tracer),
vm.depth + 1,
args,
)
}
Repr::With(wrapped, applied) => {
args.items.splice(..0, applied.items.iter().cloned());
return wrapped.call(vm, args);
wrapped.call(vm, args)
}
};
args.finish()?;
Ok(value)
}
}
/// Call the function without an existing virtual machine.
@ -140,7 +162,7 @@ impl Func {
/// Apply the given arguments to the function.
pub fn with(self, args: Args) -> Self {
let span = self.1;
Self(Arc::new(Repr::With(self, args)), span)
Self(Arc::new(Prehashed::new(Repr::With(self, args))), span)
}
/// Create a selector for this function's node type, filtering by node's
@ -153,7 +175,7 @@ impl Func {
/// Execute the function's set rule and return the resulting style map.
pub fn set(&self, mut args: Args) -> SourceResult<StyleMap> {
Ok(match self.0.as_ref() {
Ok(match &**self.0 {
Repr::Native(Native { set: Some(set), .. }) => {
let styles = set(&mut args)?;
args.finish()?;
@ -165,8 +187,8 @@ impl Func {
/// Create a selector for this function's node type.
pub fn select(&self, fields: Option<Dict>) -> StrResult<Selector> {
match self.0.as_ref() {
&Repr::Native(Native { node: Some(id), .. }) => {
match **self.0 {
Repr::Native(Native { node: Some(id), .. }) => {
if id == item!(text_id) {
Err("to select text, please use a string or regex instead")?;
}
@ -189,7 +211,7 @@ impl Debug for Func {
impl PartialEq for Func {
fn eq(&self, other: &Self) -> bool {
Arc::ptr_eq(&self.0, &other.0)
hash128(&self.0) == hash128(&other.0)
}
}
@ -287,19 +309,32 @@ pub(super) struct Closure {
impl Closure {
/// Call the function in the context with the arguments.
fn call(&self, vm: &mut Vm, this: &Func, args: &mut Args) -> SourceResult<Value> {
#[comemo::memoize]
fn call(
this: &Func,
world: Tracked<dyn World>,
route: Tracked<Route>,
tracer: TrackedMut<Tracer>,
depth: usize,
mut args: Args,
) -> SourceResult<Value> {
let closure = match &**this.0 {
Repr::Closure(closure) => closure,
_ => panic!("`this` must be a closure"),
};
// Don't leak the scopes from the call site. Instead, we use the scope
// of captured variables we collected earlier.
let mut scopes = Scopes::new(None);
scopes.top = self.captured.clone();
scopes.top = closure.captured.clone();
// Provide the closure itself for recursive calls.
if let Some(name) = &self.name {
if let Some(name) = &closure.name {
scopes.top.define(name.clone(), Value::Func(this.clone()));
}
// Parse the arguments according to the parameter list.
for (param, default) in &self.params {
for (param, default) in &closure.params {
scopes.top.define(
param.clone(),
match default {
@ -312,25 +347,16 @@ impl Closure {
}
// Put the remaining arguments into the sink.
if let Some(sink) = &self.sink {
if let Some(sink) = &closure.sink {
scopes.top.define(sink.clone(), args.take());
}
// Determine the route inside the closure.
let detached = vm.location.is_detached();
let fresh = Route::new(self.location);
let route = if detached { fresh.track() } else { vm.route };
// Ensure all arguments have been used.
args.finish()?;
// Evaluate the body.
let mut sub = Vm::new(
vm.world,
route,
TrackedMut::reborrow_mut(&mut vm.tracer),
self.location,
scopes,
vm.depth + 1,
);
let result = self.body.eval(&mut sub);
let mut sub = Vm::new(world, route, tracer, closure.location, scopes, depth);
let result = closure.body.eval(&mut sub);
// Handle control flow.
match sub.flow {