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use super::get_string;
use crate::registry::*;
use akar_common::types::Value;
// ==================== Map & Struct ====================
pub(crate) fn evaluate_map(op: MapOp, args: &[Value]) -> Result<Value, String> {
match op {
MapOp::Creation => {
// map_creation(args): args are alternating key, value, key, value, ...
if args.len() % 2 != 0 {
return Err("Map creation requires an even number of arguments (key-value pairs)".into());
}
let mut entries = Vec::new();
let mut i = 0;
while i < args.len() {
let key = match &args[i] {
Value::String(s) => s.clone(),
other => return Err(format!("Map key must be a string, got {:?}", other.logical_type())),
};
let val = args[i + 1].clone();
entries.push((key, val));
i += 2;
}
Ok(Value::Struct(entries))
}
MapOp::MapFromEntries => {
match &args[0] {
Value::List(items) => {
let mut result_entries = Vec::new();
for item in items {
match item {
Value::Struct(s) => {
let mut k = None;
let mut v = None;
for (fname, fval) in s {
if fname == "key" || fname == "k" {
k = Some(fval);
} else if fname == "value" || fname == "v" {
v = Some(fval);
}
}
if let (Some(Value::String(k_str)), Some(val)) = (k, v) {
result_entries.push((k_str.clone(), val.clone()));
} else {
// fallback: use first and second field
if s.len() >= 2 {
if let Value::String(k_str) = &s[0].1 {
result_entries.push((k_str.clone(), s[1].1.clone()));
}
}
}
}
_ => return Err("MapFromEntries requires a list of structs".into()),
}
}
Ok(Value::Struct(result_entries))
}
_ => Err("MapFromEntries requires a list of structs".into()),
}
}
MapOp::Extract => {
let map_val = &args[0];
let key = get_string(&args[1])?;
match map_val {
Value::Struct(entries) => {
for (k, v) in entries {
if *k == key {
return Ok(v.clone());
}
}
Err(format!("Key '{}' not found in map", key))
}
_ => Err("Expected map/struct".into()),
}
}
MapOp::Keys => match &args[0] {
Value::Struct(entries) => Ok(Value::List(
entries.iter().map(|(k, _)| Value::String(k.clone())).collect(),
)),
_ => Err("Expected map/struct".into()),
},
MapOp::Values => match &args[0] {
Value::Struct(entries) => Ok(Value::List(entries.iter().map(|(_, v)| v.clone()).collect())),
_ => Err("Expected map/struct".into()),
},
MapOp::Contains => match &args[0] {
Value::Struct(entries) => {
let key = get_string(&args[1])?;
Ok(Value::Bool(entries.iter().any(|(k, _)| *k == key)))
}
_ => Err("Expected map/struct".into()),
},
}
}
pub(crate) fn evaluate_struct(op: StructOp, args: &[Value]) -> Result<Value, String> {
match op {
StructOp::Creation => {
// struct_creation(args): args are alternating field_name (string), value, ...
if args.len() % 2 != 0 {
return Err("Struct creation requires an even number of arguments (field-value pairs)".into());
}
let mut entries = Vec::new();
let mut i = 0;
while i < args.len() {
let field_name = match &args[i] {
Value::String(s) => s.clone(),
other => {
return Err(format!(
"Struct field name must be a string, got {:?}",
other.logical_type()
));
}
};
let val = args[i + 1].clone();
entries.push((field_name, val));
i += 2;
}
Ok(Value::Struct(entries))
}
StructOp::Extract => {
let struct_val = &args[0];
let key = get_string(&args[1])?;
match struct_val {
Value::Struct(entries) => {
for (k, v) in entries {
if *k == key {
return Ok(v.clone());
}
}
Err(format!("Key '{}' not found in struct", key))
}
_ => Err("Expected struct".into()),
}
}
}
}