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dust/src/abstract_tree/assignment.rs

211 lines
5.9 KiB
Rust
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use crate::{
error::{RuntimeError, ValidationError},
Context,
};
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use super::{AbstractTree, Action, Identifier, Statement, Type, WithPosition};
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#[derive(Clone, Debug, Eq, PartialEq, PartialOrd, Ord)]
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pub struct Assignment {
identifier: Identifier,
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r#type: Option<WithPosition<Type>>,
operator: AssignmentOperator,
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statement: Box<WithPosition<Statement>>,
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}
#[derive(Clone, Debug, Eq, PartialEq, PartialOrd, Ord)]
pub enum AssignmentOperator {
Assign,
AddAssign,
SubAssign,
}
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impl Assignment {
pub fn new(
identifier: Identifier,
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r#type: Option<WithPosition<Type>>,
operator: AssignmentOperator,
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statement: WithPosition<Statement>,
) -> Self {
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Self {
identifier,
r#type,
operator,
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statement: Box::new(statement),
}
}
}
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impl AbstractTree for Assignment {
fn expected_type(&self, _context: &Context) -> Result<Type, ValidationError> {
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Ok(Type::None)
}
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fn validate(&self, context: &Context) -> Result<(), ValidationError> {
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let statement_type = self.statement.node.expected_type(context)?;
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if let Some(WithPosition {
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node: expected_type,
position: expected_position,
}) = &self.r#type
{
expected_type.check(&statement_type).map_err(|conflict| {
ValidationError::TypeCheck {
conflict,
actual_position: self.statement.position,
expected_position: expected_position.clone(),
}
})?;
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context.set_type(self.identifier.clone(), expected_type.clone())?;
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} else {
context.set_type(self.identifier.clone(), statement_type)?;
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}
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self.identifier.validate(context)?;
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self.statement.node.validate(context)?;
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Ok(())
}
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fn run(self, context: &Context) -> Result<Action, RuntimeError> {
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let action = self.statement.node.run(context)?;
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let value = match action {
Action::Return(value) => value,
r#break => return Ok(r#break),
};
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match self.operator {
AssignmentOperator::Assign => {
context.set_value(self.identifier, value)?;
}
AssignmentOperator::AddAssign => {
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if let Some(previous_value) = context.get_value(&self.identifier)? {
let new_value = previous_value.add(&value)?;
context.set_value(self.identifier, new_value)?;
} else {
return Err(RuntimeError::ValidationFailure(
ValidationError::VariableNotFound(self.identifier),
));
}
}
AssignmentOperator::SubAssign => {
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if let Some(previous_value) = context.get_value(&self.identifier)? {
let new_value = previous_value.subtract(&value)?;
context.set_value(self.identifier, new_value)?;
} else {
return Err(RuntimeError::ValidationFailure(
ValidationError::VariableNotFound(self.identifier),
));
}
}
}
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Ok(Action::None)
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}
}
#[cfg(test)]
mod tests {
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use crate::{
abstract_tree::{Expression, ValueNode},
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error::TypeConflict,
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Value,
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};
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use super::*;
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#[test]
fn assign_value() {
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let context = Context::new();
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Assignment::new(
Identifier::new("foobar"),
None,
AssignmentOperator::Assign,
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Statement::Expression(Expression::Value(ValueNode::Integer(42))).with_position((0, 0)),
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)
.run(&context)
.unwrap();
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assert_eq!(
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context.get_value(&Identifier::new("foobar")),
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Ok(Some(Value::integer(42)))
)
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}
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#[test]
fn add_assign_value() {
let context = Context::new();
context
.set_value(Identifier::new("foobar"), Value::integer(1))
.unwrap();
Assignment::new(
Identifier::new("foobar"),
None,
AssignmentOperator::AddAssign,
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Statement::Expression(Expression::Value(ValueNode::Integer(41))).with_position((0, 0)),
)
.run(&context)
.unwrap();
assert_eq!(
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context.get_value(&Identifier::new("foobar")),
Ok(Some(Value::integer(42)))
)
}
#[test]
fn subtract_assign_value() {
let context = Context::new();
context
.set_value(Identifier::new("foobar"), Value::integer(43))
.unwrap();
Assignment::new(
Identifier::new("foobar"),
None,
AssignmentOperator::SubAssign,
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Statement::Expression(Expression::Value(ValueNode::Integer(1))).with_position((0, 0)),
)
.run(&context)
.unwrap();
assert_eq!(
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context.get_value(&Identifier::new("foobar")),
Ok(Some(Value::integer(42)))
)
}
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#[test]
fn type_check() {
let validation = Assignment::new(
Identifier::new("foobar"),
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Some(WithPosition {
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node: Type::Boolean,
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position: (0, 0).into(),
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}),
AssignmentOperator::Assign,
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Statement::Expression(Expression::Value(ValueNode::Integer(42))).with_position((0, 0)),
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)
.validate(&Context::new());
assert_eq!(
validation,
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Err(ValidationError::TypeCheck {
conflict: TypeConflict {
actual: Type::Integer,
expected: Type::Boolean
},
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actual_position: (0, 0).into(),
expected_position: (0, 0).into(),
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})
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)
}
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}