dust/src/abstract_tree/assignment.rs

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Rust
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use serde::{Deserialize, Serialize};
use crate::{
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AbstractTree, AssignmentOperator, Error, Format, Identifier, Map, Result, Statement,
SyntaxNode, SyntaxPosition, Type, TypeDefinition, Value,
};
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#[derive(Debug, Clone, Serialize, Deserialize, Eq, PartialEq, PartialOrd, Ord)]
pub struct Assignment {
identifier: Identifier,
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type_definition: Option<TypeDefinition>,
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operator: AssignmentOperator,
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statement: Statement,
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syntax_position: SyntaxPosition,
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}
impl AbstractTree for Assignment {
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fn from_syntax(syntax_node: SyntaxNode, source: &str, context: &Map) -> Result<Self> {
Error::expect_syntax_node(source, "assignment", syntax_node)?;
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let child_count = syntax_node.child_count();
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let identifier_node = syntax_node.child(0).unwrap();
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let identifier = Identifier::from_syntax(identifier_node, source, context)?;
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let type_node = syntax_node.child(1).unwrap();
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let type_definition = if type_node.kind() == "type_definition" {
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Some(TypeDefinition::from_syntax(type_node, source, context)?)
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} else {
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None
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};
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let operator_node = syntax_node.child(child_count - 2).unwrap();
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let operator = AssignmentOperator::from_syntax(operator_node, source, context)?;
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let statement_node = syntax_node.child(child_count - 1).unwrap();
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let statement = Statement::from_syntax(statement_node, source, context)?;
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if let AssignmentOperator::Equal = operator {
context.set_type(
identifier.inner().clone(),
statement.expected_type(context)?,
)?;
}
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Ok(Assignment {
identifier,
type_definition,
operator,
statement,
syntax_position: syntax_node.range().into(),
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})
}
fn check_type(&self, source: &str, context: &Map) -> Result<()> {
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let actual_type = self.statement.expected_type(context)?;
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if let Some(type_definition) = &self.type_definition {
match self.operator {
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AssignmentOperator::Equal => {
type_definition
.inner()
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.check(&actual_type)
.map_err(|error| error.at_source_position(source, self.syntax_position))?;
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}
AssignmentOperator::PlusEqual => {
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if let Type::List(item_type) = type_definition.inner() {
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item_type.check(&actual_type).map_err(|error| {
error.at_source_position(source, self.syntax_position)
})?;
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} else {
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type_definition
.inner()
.check(&self.identifier.expected_type(context)?)
.map_err(|error| {
error.at_source_position(source, self.syntax_position)
})?;
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}
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}
AssignmentOperator::MinusEqual => todo!(),
}
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} else {
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match self.operator {
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AssignmentOperator::Equal => {}
AssignmentOperator::PlusEqual => {
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if let Type::List(item_type) = self.identifier.expected_type(context)? {
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item_type.check(&actual_type).map_err(|error| {
error.at_source_position(source, self.syntax_position)
})?;
}
}
AssignmentOperator::MinusEqual => todo!(),
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}
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}
self.statement
.check_type(source, context)
.map_err(|error| error.at_source_position(source, self.syntax_position))?;
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Ok(())
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}
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fn run(&self, source: &str, context: &Map) -> Result<Value> {
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let key = self.identifier.inner();
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let value = self.statement.run(source, context)?;
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let new_value = match self.operator {
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AssignmentOperator::PlusEqual => {
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if let Some((mut previous_value, _)) = context.variables()?.get(key).cloned() {
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previous_value += value;
previous_value
} else {
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return Err(Error::VariableIdentifierNotFound(key.clone()));
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}
}
AssignmentOperator::MinusEqual => {
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if let Some((mut previous_value, _)) = context.variables()?.get(key).cloned() {
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previous_value -= value;
previous_value
} else {
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return Err(Error::VariableIdentifierNotFound(key.clone()));
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}
}
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AssignmentOperator::Equal => value,
};
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context.set(key.clone(), new_value)?;
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Ok(Value::none())
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}
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fn expected_type(&self, _context: &Map) -> Result<Type> {
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Ok(Type::None)
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}
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}
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impl Format for Assignment {
fn format(&self, output: &mut String, indent_level: u8) {
self.identifier.format(output, indent_level);
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if let Some(type_definition) = &self.type_definition {
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type_definition.format(output, indent_level);
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}
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output.push(' ');
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self.operator.format(output, indent_level);
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output.push(' ');
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self.statement.format(output, 0);
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}
}