use super::NapiBackend;
use super::methods::{gen_tagged_enum_binding_to_core, gen_tagged_enum_core_to_binding};
use crate::core::backend::Backend;
use crate::core::config::Language;
use crate::core::ir::{EnumDef, EnumVariant, FieldDef, TypeRef};
use ahash::AHashSet;
#[test]
fn napi_backend_name_is_napi() {
let b = NapiBackend;
assert_eq!(b.name(), "napi");
}
#[test]
fn napi_backend_language_is_node() {
let b = NapiBackend;
assert_eq!(b.language(), Language::Node);
}
#[test]
fn cfg_gated_field_accepted_when_in_never_skip_list() {
let never_skip_cfg_field_names = ["visitor".to_string()];
let field_is_target = "visitor";
let field_has_cfg = Some("feature = \"visitor\"");
let accepted = field_has_cfg.is_none() || never_skip_cfg_field_names.iter().any(|n| n == field_is_target);
assert!(
accepted,
"cfg-gated field 'visitor' should pass filter when in never_skip_cfg_field_names"
);
}
#[test]
fn plain_data_enum_in_input_type_struct_gets_binding_to_core_impl() {
use crate::codegen::conversions::{
ConversionConfig, can_generate_enum_conversion, can_generate_enum_conversion_from_core,
gen_enum_from_binding_to_core_cfg, gen_enum_from_core_to_binding_cfg,
};
use crate::core::ir::{EnumDef, EnumVariant, FieldDef, TypeRef};
let auth_format_enum = EnumDef {
name: "AuthHeaderFormat".to_string(),
rust_path: "fixture_core::AuthHeaderFormat".to_string(),
variants: vec![
EnumVariant {
name: "Bearer".to_string(),
fields: vec![],
..Default::default()
},
EnumVariant {
name: "ApiKey".to_string(),
fields: vec![FieldDef {
name: "_0".to_string(),
ty: TypeRef::String,
..Default::default()
}],
..Default::default()
},
EnumVariant {
name: "None".to_string(),
fields: vec![],
..Default::default()
},
],
serde_tag: None,
serde_untagged: false,
..Default::default()
};
let has_data_variants = auth_format_enum.variants.iter().any(|v| !v.fields.is_empty());
assert!(has_data_variants, "AuthHeaderFormat should have data variants");
let is_tagged = auth_format_enum.serde_tag.is_some();
let is_untagged = auth_format_enum.serde_untagged;
assert!(
!(is_tagged && has_data_variants),
"AuthHeaderFormat should not be tagged data enum"
);
assert!(
!(is_untagged && has_data_variants),
"AuthHeaderFormat should not be untagged data enum"
);
assert!(
can_generate_enum_conversion(&auth_format_enum),
"plain data enum should be eligible for binding-to-core conversion"
);
assert!(
can_generate_enum_conversion_from_core(&auth_format_enum),
"plain data enum should be eligible for core-to-binding conversion"
);
let config = ConversionConfig {
type_name_prefix: "Js",
..Default::default()
};
let binding_to_core = gen_enum_from_binding_to_core_cfg(&auth_format_enum, "fixture_core", &config);
assert!(
binding_to_core.contains("impl From<JsAuthHeaderFormat> for fixture_core::AuthHeaderFormat"),
"should emit binding-to-core impl for plain data enum; got:\n{binding_to_core}"
);
let core_to_binding = gen_enum_from_core_to_binding_cfg(&auth_format_enum, "fixture_core", &config);
assert!(
core_to_binding.contains("impl From<fixture_core::AuthHeaderFormat> for JsAuthHeaderFormat"),
"should emit core-to-binding impl for plain data enum; got:\n{core_to_binding}"
);
}
#[test]
fn napi_opaque_type_with_default_and_static_new_emits_constructor() {
use super::constructors::napi_default_constructor;
use crate::backends::napi::type_map::NapiMapper;
use crate::core::ir::{MethodDef, TypeDef, TypeRef};
let app_type = TypeDef {
name: "App".to_string(),
rust_path: "sample_crate::App".to_string(),
is_opaque: true,
has_default: true,
methods: vec![MethodDef {
name: "new".to_string(),
receiver: None,
params: vec![],
return_type: TypeRef::Named("App".to_string()),
is_async: false,
is_static: true,
doc: "Create a new application".to_string(),
..Default::default()
}],
..Default::default()
};
let mapper = NapiMapper::new("Js".to_string());
let constructor = napi_default_constructor(&app_type, &mapper, "sample_crate", "Js");
assert!(
constructor.is_some(),
"opaque type with has_default=true should emit constructor even with static new()"
);
let constructor_code = constructor.unwrap();
assert!(
constructor_code.contains("#[napi(constructor)]"),
"constructor should be marked with #[napi(constructor)]"
);
assert!(
constructor_code.contains("pub fn new_constructor()"),
"constructor should use new_constructor() to avoid conflict with static new()"
);
assert!(
constructor_code.contains("Self { inner: std::sync::Arc::new(sample_crate::App::new())"),
"constructor should create new App via sample_crate::App::new()"
);
}
#[test]
fn napi_self_ref_builder_shares_arc_instead_of_cloning_returned_ref() {
use super::types::gen_opaque_instance_method;
use crate::backends::napi::type_map::NapiMapper;
use crate::core::ir::{MethodDef, ParamDef, ReceiverKind, TypeDef, TypeRef};
use ahash::AHashSet;
use std::collections::HashMap;
let method = MethodDef {
name: "register_route".to_string(),
params: vec![ParamDef {
name: "config".to_string(),
ty: TypeRef::Named("RouteCfg".to_string()),
..ParamDef::default()
}],
return_type: TypeRef::Named("App".to_string()),
error_type: Some("AppError".to_string()),
doc: "Register a route, returning the app for chaining.".to_string(),
receiver: Some(ReceiverKind::RefMut),
returns_ref: true,
..MethodDef::default()
};
let typ = TypeDef {
name: "App".to_string(),
rust_path: "sample_crate::App".to_string(),
is_opaque: true,
methods: vec![method.clone()],
..Default::default()
};
let mapper = NapiMapper::new("Js".to_string());
let cfg = super::NapiBackend::binding_config("sample_crate", "Js", true);
let mut opaque = AHashSet::new();
opaque.insert("App".to_string());
opaque.insert("RouteCfg".to_string());
let mut mutex = AHashSet::new();
mutex.insert("App".to_string());
let adapter_bodies = crate::adapters::AdapterBodies::new();
let streaming: ahash::AHashMap<String, String> = ahash::AHashMap::new();
let capsule: HashMap<String, crate::core::config::NodeCapsuleTypeConfig> = HashMap::new();
let code = gen_opaque_instance_method(
&method,
&mapper,
&typ,
&cfg,
&opaque,
"Js",
&adapter_bodies,
&streaming,
&mutex,
&capsule,
);
assert!(
code.contains("Ok(Self { inner: self.inner.clone() })"),
"self-returning builder should share the existing Arc, got:\n{code}"
);
assert!(
!code.contains("result.clone()"),
"must not clone the returned &mut ref, got:\n{code}"
);
assert!(
!code.contains("let result ="),
"self-returning builder must not bind the returned &mut ref, got:\n{code}"
);
}
fn sanitized_field_test_enum(ty: TypeRef, optional: bool) -> EnumDef {
EnumDef {
name: "NodeContent".to_string(),
rust_path: "fixture_core::NodeContent".to_string(),
variants: vec![EnumVariant {
name: "MetadataBlock".to_string(),
fields: vec![FieldDef {
name: "entries".to_string(),
ty,
optional,
sanitized: true,
..Default::default()
}],
..Default::default()
}],
serde_tag: Some("node_type".to_string()),
serde_rename_all: Some("snake_case".to_string()),
..Default::default()
}
}
fn sanitized_field_conversions(enum_def: &EnumDef) -> (String, String) {
let struct_names = AHashSet::new();
(
gen_tagged_enum_binding_to_core(enum_def, "fixture_core", "Js", &struct_names),
gen_tagged_enum_core_to_binding(enum_def, "fixture_core", "Js", &struct_names),
)
}
#[test]
fn tagged_enum_conversions_use_serde_wire_names() {
let enum_def = EnumDef {
name: "NodeContent".to_string(),
rust_path: "fixture_core::NodeContent".to_string(),
variants: vec![
EnumVariant {
name: "ListItem".to_string(),
fields: vec![FieldDef {
name: "text".to_string(),
ty: TypeRef::String,
..Default::default()
}],
..Default::default()
},
EnumVariant {
name: "PageBreak".to_string(),
serde_rename: Some("explicit-page-break".to_string()),
..Default::default()
},
],
serde_tag: Some("node_type".to_string()),
serde_rename_all: Some("snake_case".to_string()),
..Default::default()
};
let (binding_to_core, core_to_binding) = sanitized_field_conversions(&enum_def);
for generated in [&binding_to_core, &core_to_binding] {
assert!(generated.contains("\"list_item\""), "generated:\n{generated}");
assert!(generated.contains("\"explicit-page-break\""), "generated:\n{generated}");
assert!(!generated.contains("\"listitem\""), "generated:\n{generated}");
assert!(!generated.contains("\"pagebreak\""), "generated:\n{generated}");
}
}
struct SanitizedFieldCase {
label: &'static str,
ty: TypeRef,
optional: bool,
binding_to_core_expect: &'static str,
core_to_binding_expect: &'static str,
core_to_binding_forbid: &'static [&'static str],
}
#[test]
fn sanitized_tagged_enum_field_conversions_table() {
let cases = [
SanitizedFieldCase {
label: "vec_vec_string non-optional (issue #217)",
ty: TypeRef::Vec(Box::new(TypeRef::Vec(Box::new(TypeRef::String)))),
optional: false,
binding_to_core_expect: "entries: val.entries.as_deref().unwrap_or_default().iter().filter_map",
core_to_binding_expect: "entries: Some(entries.iter().map(|(a, b)| vec![a.to_string(), b.to_string()]).collect::<Vec<Vec<String>>>())",
core_to_binding_forbid: &["entries: None", "entries: _entries"],
},
SanitizedFieldCase {
label: "vec_vec_string optional",
ty: TypeRef::Vec(Box::new(TypeRef::Vec(Box::new(TypeRef::String)))),
optional: true,
binding_to_core_expect: "entries: val.entries.map(|v| v.iter().filter_map(|inner| { let mut it = inner.iter().cloned(); Some((it.next()?, it.next()?)) }).collect())",
core_to_binding_expect: "entries: entries.map(|v| v.iter().map(|(a, b)| vec![a.to_string(), b.to_string()]).collect::<Vec<Vec<String>>>())",
core_to_binding_forbid: &["entries: None", "entries: _entries"],
},
SanitizedFieldCase {
label: "map_string_string non-optional",
ty: TypeRef::Map(Box::new(TypeRef::String), Box::new(TypeRef::String)),
optional: false,
binding_to_core_expect: "entries: val.entries.unwrap_or_default().into_iter().map(|(k, v)| (k.into(), v.into())).collect()",
core_to_binding_expect: "entries: Some(entries.into_iter().map(|(k, v)| (k.to_string(), v.to_string())).collect())",
core_to_binding_forbid: &["entries: None", "entries: _entries"],
},
SanitizedFieldCase {
label: "map_string_string optional",
ty: TypeRef::Map(Box::new(TypeRef::String), Box::new(TypeRef::String)),
optional: true,
binding_to_core_expect: "entries: val.entries.map(|m| m.into_iter().map(|(k, v)| (k.into(), v.into())).collect())",
core_to_binding_expect: "entries: entries.map(|v| v.into_iter().map(|(k, v)| (k.to_string(), v.to_string())).collect())",
core_to_binding_forbid: &["entries: None", "entries: _entries"],
},
SanitizedFieldCase {
label: "unsupported vec_named shape falls back to Default/None",
ty: TypeRef::Vec(Box::new(TypeRef::Named("Widget".to_string()))),
optional: false,
binding_to_core_expect: "entries: Default::default()",
core_to_binding_expect: "entries: None",
core_to_binding_forbid: &[],
},
];
for case in cases {
let enum_def = sanitized_field_test_enum(case.ty, case.optional);
let (binding_to_core, core_to_binding) = sanitized_field_conversions(&enum_def);
assert!(
binding_to_core.contains(case.binding_to_core_expect),
"[{}] binding->core missing expected fragment {:?}, got:\n{binding_to_core}",
case.label,
case.binding_to_core_expect
);
assert!(
core_to_binding.contains(case.core_to_binding_expect),
"[{}] core->binding missing expected fragment {:?}, got:\n{core_to_binding}",
case.label,
case.core_to_binding_expect
);
for forbidden in case.core_to_binding_forbid {
assert!(
!core_to_binding.contains(forbidden),
"[{}] core->binding must not contain {:?}, got:\n{core_to_binding}",
case.label,
forbidden
);
}
assert!(
!binding_to_core.contains("format!(\"{:?}\""),
"[{}] binding->core must never re-parse a Debug-formatted string, got:\n{binding_to_core}",
case.label
);
}
}
#[test]
fn core_to_binding_uses_shorthand_for_self_assigned_optional_field() {
let enum_def = EnumDef {
name: "Content".to_string(),
rust_path: "fixture_core::Content".to_string(),
variants: vec![EnumVariant {
name: "Text".to_string(),
fields: vec![FieldDef {
name: "text".to_string(),
ty: TypeRef::String,
optional: true,
..Default::default()
}],
..Default::default()
}],
serde_tag: Some("type".to_string()),
serde_rename_all: Some("snake_case".to_string()),
..Default::default()
};
let struct_names = AHashSet::new();
let core_to_binding = gen_tagged_enum_core_to_binding(&enum_def, "fixture_core", "Js", &struct_names);
assert!(
!core_to_binding.contains("text: text"),
"self-assigned optional field must use shorthand, not `text: text`:\n{core_to_binding}"
);
assert!(
core_to_binding.contains("text }") || core_to_binding.contains("text,"),
"expected field-init shorthand for `text`:\n{core_to_binding}"
);
}
#[test]
fn core_to_binding_keeps_expr_form_when_conversion_is_required() {
let enum_def = EnumDef {
name: "Content".to_string(),
rust_path: "fixture_core::Content".to_string(),
variants: vec![EnumVariant {
name: "Items".to_string(),
fields: vec![FieldDef {
name: "items".to_string(),
ty: TypeRef::Vec(Box::new(TypeRef::Named("Widget".to_string()))),
optional: true,
..Default::default()
}],
..Default::default()
}],
serde_tag: Some("type".to_string()),
serde_rename_all: Some("snake_case".to_string()),
..Default::default()
};
let struct_names = AHashSet::new();
let core_to_binding = gen_tagged_enum_core_to_binding(&enum_def, "fixture_core", "Js", &struct_names);
assert!(
core_to_binding.contains("items: items.map(|v| v.into_iter().map(Into::into).collect())"),
"Vec<Named> optional field must keep its real conversion expression:\n{core_to_binding}"
);
}