dust/src/abstract_tree/function_call.rs

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use serde::{Deserialize, Serialize};
use tree_sitter::Node;
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use crate::{AbstractTree, Error, Result, Value, VariableMap};
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use super::{expression::Expression, identifier::Identifier};
#[derive(Debug, Clone, Serialize, Deserialize, Eq, PartialEq, PartialOrd, Ord)]
pub struct FunctionCall {
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name: Identifier,
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arguments: Vec<Expression>,
}
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impl AbstractTree for FunctionCall {
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fn from_syntax_node(source: &str, node: Node) -> Result<Self> {
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debug_assert_eq!("function_call", node.kind());
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let name_node = node.child(1).unwrap();
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let name = Identifier::from_syntax_node(source, name_node)?;
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let mut arguments = Vec::new();
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for index in 2..node.child_count() - 1 {
let child = node.child(index).unwrap();
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if child.is_named() {
let expression = Expression::from_syntax_node(source, child)?;
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arguments.push(expression);
}
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}
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Ok(FunctionCall { name, arguments })
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}
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fn run(&self, source: &str, context: &mut VariableMap) -> Result<Value> {
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let key = self.name.inner();
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let definition = if let Some(value) = context.get_value(key)? {
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value.as_function().cloned()?
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} else {
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return Err(Error::FunctionIdentifierNotFound(self.name.clone()));
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};
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let id_expr_pairs = definition.identifiers().iter().zip(self.arguments.iter());
let mut function_context = context.clone();
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for (identifier, expression) in id_expr_pairs {
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let key = identifier.inner().clone();
let value = expression.run(source, context)?;
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function_context.set_value(key, value)?;
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}
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definition.body().run(source, &mut function_context)
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}
}