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use crate::{errors::ExpressionError, program::ConstrainedProgram, value::ConstrainedValue, GroupType};
use leo_ast::{Expression, RangeOrExpression, Span, Type};
use snarkos_models::{
curves::{Field, PrimeField},
gadgets::r1cs::ConstraintSystem,
};
impl<F: Field + PrimeField, G: GroupType<F>> ConstrainedProgram<F, G> {
#[allow(clippy::too_many_arguments)]
pub fn enforce_array_access<CS: ConstraintSystem<F>>(
&mut self,
cs: &mut CS,
file_scope: &str,
function_scope: &str,
expected_type: Option<Type>,
array: Expression,
index: RangeOrExpression,
span: &Span,
) -> Result<ConstrainedValue<F, G>, ExpressionError> {
let array = match self.enforce_operand(cs, file_scope, function_scope, expected_type, array, span)? {
ConstrainedValue::Array(array) => array,
value => return Err(ExpressionError::undefined_array(value.to_string(), span.to_owned())),
};
match index {
RangeOrExpression::Range(from, to) => {
let from_resolved = match from {
Some(from_index) => self.enforce_index(cs, file_scope, function_scope, from_index, span)?,
None => 0usize,
};
let to_resolved = match to {
Some(to_index) => self.enforce_index(cs, file_scope, function_scope, to_index, span)?,
None => array.len(),
};
Ok(ConstrainedValue::Array(array[from_resolved..to_resolved].to_owned()))
}
RangeOrExpression::Expression(index) => {
let index_resolved = self.enforce_index(cs, file_scope, function_scope, index, span)?;
Ok(array[index_resolved].to_owned())
}
}
}
}