use fluence_faas::FaaSModuleInterface;
use fluence_faas::FaaSFunctionSignature;
use fluence_faas::IRecordType;
use fluence_faas::RecordTypes;
use fluence_faas::itype_text_view;
use serde::Serialize;
use std::rc::Rc;
#[derive(Serialize)]
pub struct FunctionSignature {
pub name: String,
pub arguments: Vec<(String, String)>,
pub output_types: Vec<String>,
}
#[derive(Serialize)]
pub struct RecordType {
pub name: String,
pub id: u64,
pub fields: Vec<(String, String)>,
}
#[derive(Serialize)]
pub struct ServiceInterface {
pub function_signatures: Vec<FunctionSignature>,
pub record_types: Vec<RecordType>,
}
pub(crate) fn into_service_interface(faas_interface: FaaSModuleInterface<'_>) -> ServiceInterface {
let record_types = faas_interface.record_types;
let function_signatures = faas_interface
.function_signatures
.into_iter()
.map(|sign| serialize_function_signature(sign, record_types))
.collect();
let record_types = record_types
.iter()
.map(|(id, record)| serialize_record_type(*id, record.clone(), record_types))
.collect::<Vec<_>>();
ServiceInterface {
function_signatures,
record_types,
}
}
fn serialize_function_signature(
signature: FaaSFunctionSignature,
record_types: &RecordTypes,
) -> FunctionSignature {
let arguments = signature
.arguments
.iter()
.map(|arg| (arg.name.clone(), itype_text_view(&arg.ty, record_types)))
.collect();
let output_types = signature
.outputs
.iter()
.map(|itype| itype_text_view(itype, record_types))
.collect();
FunctionSignature {
name: signature.name.to_string(),
arguments,
output_types,
}
}
fn serialize_record_type(
id: u64,
record: Rc<IRecordType>,
record_types: &RecordTypes,
) -> RecordType {
let fields = record
.fields
.iter()
.map(|field| (field.name.clone(), itype_text_view(&field.ty, record_types)))
.collect::<Vec<_>>();
RecordType {
name: record.name.clone(),
id,
fields,
}
}