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just-value
...
master
105
src/twopass.rs
105
src/twopass.rs
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@ -1,9 +1,6 @@
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use std::{cell::RefCell, rc::Rc};
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use crate::{
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ast,
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types::{self, Nil, Value},
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};
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use crate::{ast, types};
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#[derive(Debug, Clone)]
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pub struct OpenFunction(Function);
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@ -276,14 +273,14 @@ pub fn build(code: &ast::Function) -> OpenFunction {
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}
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#[derive(Debug, Clone)]
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struct Variable(RefCell<Value>);
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struct Variable(RefCell<types::Value>);
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impl Variable {
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fn get(&self) -> Value {
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fn get(&self) -> types::Value {
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self.0.borrow().clone()
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}
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fn set(&self, value: Value) {
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fn set(&self, value: types::Value) {
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*self.0.borrow_mut() = value
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}
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}
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@ -310,28 +307,28 @@ impl RunContext {
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}
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trait Eval {
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fn eval(&self, ctx: &RunContext) -> Value;
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fn eval(&self, ctx: &RunContext) -> types::Value;
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}
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impl Eval for ast::Constant {
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fn eval(&self, _ctx: &RunContext) -> Value {
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fn eval(&self, _ctx: &RunContext) -> types::Value {
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match self {
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ast::Constant::Nil => Nil,
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ast::Constant::Boolean(value) => Value::Boolean(*value),
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ast::Constant::Number(value) => Value::Number(*value),
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ast::Constant::String(value) => Value::String(value.clone()),
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ast::Constant::Nil => None,
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ast::Constant::Boolean(value) => Some(types::ValueInner::Boolean(*value)),
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ast::Constant::Number(value) => Some(types::ValueInner::Number(*value)),
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ast::Constant::String(value) => Some(types::ValueInner::String(value.clone())),
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}
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}
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}
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impl Eval for Location {
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fn eval(&self, ctx: &RunContext) -> Value {
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fn eval(&self, ctx: &RunContext) -> types::Value {
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match self {
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Location::Variable { id } => ctx.var(*id).get(),
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Location::Field { table, index } => {
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let table = table.eval(ctx);
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let index = index.eval(ctx);
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let Value::Table(table) = table else {
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let table = table.eval(ctx).expect("attempt to index a nil value");
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let index = index.eval(ctx).expect("attempt to index with a nil value");
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let types::ValueInner::Table(table) = table else {
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panic!("attempt to index a non-table");
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};
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table.get(index)
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@ -341,10 +338,10 @@ impl Eval for Location {
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}
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impl Eval for Call {
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fn eval(&self, ctx: &RunContext) -> Value {
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fn eval(&self, ctx: &RunContext) -> types::Value {
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let callee = self.callee.eval(ctx);
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let args: Vec<_> = self.args.iter().map(|arg| arg.eval(ctx)).collect();
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let Value::Function(f) = callee else {
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let Some(types::ValueInner::Function(f)) = callee else {
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panic!("attempt to call a non-function");
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};
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f.call(&args)
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@ -352,31 +349,33 @@ impl Eval for Call {
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}
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impl Eval for Function {
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fn eval(&self, ctx: &RunContext) -> Value {
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fn eval(&self, ctx: &RunContext) -> types::Value {
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let upvalues: Vec<_> = self
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.upvalues
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.iter()
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.map(|(_name, id)| ctx.var(*id))
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.collect();
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let self_ = self.clone(); // TODO reference, somehow
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types::Function::new(self.name.clone(), move |args| self_.call(&upvalues, args)).into()
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Some(
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types::Function::new(self.name.clone(), move |args| self_.call(&upvalues, args)).into(),
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)
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}
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}
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impl Eval for Table {
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fn eval(&self, ctx: &RunContext) -> Value {
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fn eval(&self, ctx: &RunContext) -> types::Value {
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let table = types::Table::default();
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for field in &self.fields {
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let key = field.key.eval(ctx);
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let key = field.key.eval(ctx).expect("attempt to set a nil index");
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let value = field.value.eval(ctx);
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table.set(key, value);
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}
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table.into()
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Some(table.into())
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}
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}
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impl Eval for Expression {
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fn eval(&self, ctx: &RunContext) -> Value {
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fn eval(&self, ctx: &RunContext) -> types::Value {
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match self {
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Expression::Constant(inner) => inner.eval(ctx),
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Expression::Variable(inner) => inner.eval(ctx),
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@ -388,16 +387,16 @@ impl Eval for Expression {
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}
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impl Eval for Statement {
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fn eval(&self, ctx: &RunContext) -> Value {
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fn eval(&self, ctx: &RunContext) -> types::Value {
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match self {
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Statement::Assign { target, source } => {
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let source = source.eval(ctx);
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match target {
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Location::Variable { id } => ctx.var(*id).set(source),
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Location::Field { table, index } => {
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let table = table.eval(ctx);
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let index = index.eval(ctx);
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let Value::Table(table) = table else {
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let table = table.eval(ctx).expect("attempt to index a nil value");
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let index = index.eval(ctx).expect("attempt to index with a nil value");
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let types::ValueInner::Table(table) = table else {
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panic!("attempt to index a non-table");
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};
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table.set(index, source)
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@ -408,21 +407,21 @@ impl Eval for Statement {
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call.eval(ctx);
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}
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};
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Nil
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None
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}
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}
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fn new_var(value: &Value) -> VariableRef {
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fn new_var(value: &types::Value) -> VariableRef {
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Rc::new(Variable(RefCell::new(value.clone())))
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}
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impl Function {
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fn call(&self, upvalues: &[VariableRef], args: &[Value]) -> Value {
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fn call(&self, upvalues: &[VariableRef], args: &[types::Value]) -> types::Value {
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assert_eq!(upvalues.len(), self.upvalues.len());
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assert_eq!(args.len(), self.args.len());
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let ctx = RunContext {
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args: args.iter().map(new_var).collect(),
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locals: (0..self.locals.len()).map(|_| new_var(&Nil)).collect(),
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locals: (0..self.locals.len()).map(|_| new_var(&None)).collect(),
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upvalues: upvalues.to_vec(),
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};
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for statement in &self.body {
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@ -433,7 +432,7 @@ impl Function {
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}
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impl OpenFunction {
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pub fn call(&self, env: Value, args: &[Value]) -> Value {
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pub fn call(&self, env: types::Value, args: &[types::Value]) -> types::Value {
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match self.0.upvalues.as_slice() {
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[] => self.0.call(&[], args),
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[up] if up.0 == "_ENV" => self.0.call(&[new_var(&env)], args),
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@ -446,27 +445,27 @@ impl OpenFunction {
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mod tests {
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use crate::{
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ast::*,
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types::{Nil, Value},
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types::{Value, ValueInner},
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};
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use super::build;
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fn get(table: &Value, index: &str) -> Value {
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let Value::Table(table) = table else {
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let Some(ValueInner::Table(table)) = table else {
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panic!("a table expected");
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};
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table.get(index.into())
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}
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fn set(table: &Value, index: &str, value: Value) {
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let Value::Table(table) = table else {
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let Some(ValueInner::Table(table)) = table else {
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panic!("a table expected");
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};
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table.set(index.into(), value);
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}
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fn call(func: &Value, args: &[Value]) -> Value {
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let Value::Function(func) = func else {
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let Some(ValueInner::Function(func)) = func else {
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panic!("a function expected");
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};
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func.call(args)
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@ -495,9 +494,9 @@ mod tests {
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};
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let env = crate::types::Table::default();
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let testee = build(&testee);
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let ret = testee.call(env.clone().into(), &[]);
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assert_eq!(ret, 3.into());
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assert_eq!(env.get("x".into()), 1.into());
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let ret = testee.call(Some(env.clone().into()), &[]);
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assert_eq!(ret, Some(3.into()));
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assert_eq!(env.get("x".into()), Some(1.into()));
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}
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#[test]
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@ -527,9 +526,9 @@ mod tests {
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};
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let env = crate::types::Table::default();
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let testee = build(&testee);
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let ret = testee.call(env.clone().into(), &[]);
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assert_eq!(ret, 42.into());
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assert_eq!(env.get("x".into()), 666.into());
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let ret = testee.call(Some(env.clone().into()), &[]);
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assert_eq!(ret, Some(42.into()));
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assert_eq!(env.get("x".into()), Some(666.into()));
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}
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#[test]
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@ -546,8 +545,8 @@ mod tests {
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}))),
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};
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let remember = build(&remember);
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let the_answerer = remember.call(Nil, &[42.into()]);
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assert_eq!(call(&the_answerer, &[]), 42.into());
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let the_answerer = remember.call(None, &[Some(42.into())]);
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assert_eq!(call(&the_answerer, &[]), Some(42.into()));
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}
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#[test]
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@ -587,13 +586,13 @@ mod tests {
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))),
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};
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let make_cell = build(&make_cell);
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let cell1 = make_cell.call(Nil, &[]);
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let cell2 = make_cell.call(Nil, &[]);
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assert_eq!(call(&get(&cell1, "get"), &[]), Nil);
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call(&get(&cell1, "set"), &[42.into()]);
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call(&get(&cell2, "set"), &["foobar".into()]);
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assert_eq!(call(&get(&cell1, "get"), &[]), 42.into());
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let cell1 = make_cell.call(None, &[]);
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let cell2 = make_cell.call(None, &[]);
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assert_eq!(call(&get(&cell1, "get"), &[]), None);
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call(&get(&cell1, "set"), &[Some(42.into())]);
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call(&get(&cell2, "set"), &[Some("foobar".into())]);
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assert_eq!(call(&get(&cell1, "get"), &[]), Some(42.into()));
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call(&get(&cell1, "set"), &[call(&get(&cell2, "get"), &[])]);
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assert_eq!(call(&get(&cell1, "get"), &[]), "foobar".into());
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assert_eq!(call(&get(&cell1, "get"), &[]), Some("foobar".into()));
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}
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}
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30
src/types.rs
30
src/types.rs
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@ -1,9 +1,7 @@
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use std::{cell::RefCell, collections::HashMap, fmt::Debug, hash::Hash, rc::Rc};
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#[derive(Debug, Clone, PartialEq, Eq, Hash, Default)]
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pub enum Value {
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#[default]
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Nil,
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub enum ValueInner {
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Boolean(bool),
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Number(i64),
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String(String),
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@ -11,18 +9,16 @@ pub enum Value {
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Function(Function),
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}
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pub use Value::Nil;
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macro_rules! impl_from {
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($as: ident, $from: ty) => {
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impl From<$from> for Value {
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impl From<$from> for ValueInner {
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fn from(value: $from) -> Self {
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Self::$as(value.into())
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}
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}
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};
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(try $as: ident, $from: ty) => {
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impl TryFrom<$from> for Value {
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impl TryFrom<$from> for ValueInner {
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type Error = ::std::num::TryFromIntError;
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fn try_from(value: $from) -> Result<Self, Self::Error> {
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Ok(Self::$as(value.try_into()?))
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@ -43,9 +39,11 @@ impl_from!(String, &str);
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impl_from!(Table, Table);
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impl_from!(Function, Function);
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pub type Value = Option<ValueInner>;
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#[derive(Debug, Clone, Default)]
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struct TableInner {
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content: HashMap<Value, Value>,
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content: HashMap<ValueInner, ValueInner>,
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}
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#[derive(Debug, Clone, Default)]
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@ -66,19 +64,13 @@ impl Hash for Table {
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}
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impl Table {
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pub fn get(&self, key: Value) -> Value {
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self.0
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.borrow()
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.content
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.get(&key)
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.cloned()
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.unwrap_or_default()
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pub fn get(&self, key: ValueInner) -> Value {
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self.0.borrow().content.get(&key).cloned()
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}
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pub fn set(&self, key: Value, value: Value) {
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assert!(key != Nil);
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pub fn set(&self, key: ValueInner, value: Value) {
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let mut this = self.0.borrow_mut();
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if value != Nil {
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if let Some(value) = value {
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this.content.insert(key, value);
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} else {
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this.content.remove(&key);
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