#![allow(internal_features)] #![feature(proc_macro_diagnostic)] #![feature(allow_internal_unstable)] #![feature(box_patterns)] mod assert_fields; mod derive; mod func; mod function_macro; mod generic_type_macro; mod primitive_macro; mod value_impl_macro; mod value_macro; mod value_trait_macro; extern crate proc_macro; use proc_macro::TokenStream; use proc_macro_error::proc_macro_error; #[proc_macro_derive(TraceRawVcs, attributes(turbo_tasks))] pub fn derive_trace_raw_vcs_attr(input: TokenStream) -> TokenStream { derive::derive_trace_raw_vcs(input) } #[proc_macro_derive(NonLocalValue, attributes(turbo_tasks))] pub fn derive_non_local_value_attr(input: TokenStream) -> TokenStream { derive::derive_non_local_value(input) } #[proc_macro_derive(OperationValue, attributes(turbo_tasks))] pub fn derive_operation_value_attr(input: TokenStream) -> TokenStream { derive::derive_operation_value(input) } #[proc_macro_derive(ValueDebug, attributes(turbo_tasks))] pub fn derive_value_debug_attr(input: TokenStream) -> TokenStream { derive::derive_value_debug(input) } #[proc_macro_derive(ValueDebugFormat, attributes(turbo_tasks))] pub fn derive_value_debug_format_attr(input: TokenStream) -> TokenStream { derive::derive_value_debug_format(input) } #[proc_macro_derive(DeterministicHash, attributes(turbo_tasks))] pub fn derive_deterministic_hash(input: TokenStream) -> TokenStream { derive::derive_deterministic_hash(input) } #[proc_macro_derive(TaskInput, attributes(turbo_tasks))] pub fn derive_task_input(input: TokenStream) -> TokenStream { derive::derive_task_input(input) } /// #[proc_macro_derive(KeyValuePair)] pub fn derive_key_value_pair(input: TokenStream) -> TokenStream { derive::derive_key_value_pair(input) } /// #[allow_internal_unstable(min_specialization, into_future, trivial_bounds)] #[proc_macro_error] #[proc_macro_attribute] pub fn value(args: TokenStream, input: TokenStream) -> TokenStream { value_macro::value(args, input) } /// #[allow_internal_unstable(min_specialization, into_future, trivial_bounds)] #[proc_macro_error] #[proc_macro_attribute] pub fn value_trait(args: TokenStream, input: TokenStream) -> TokenStream { value_trait_macro::value_trait(args, input) } #[allow_internal_unstable(min_specialization, into_future, trivial_bounds)] #[proc_macro_error] #[proc_macro_attribute] pub fn function(args: TokenStream, input: TokenStream) -> TokenStream { function_macro::function(args, input) } #[allow_internal_unstable(min_specialization, into_future, trivial_bounds)] #[proc_macro_error] #[proc_macro_attribute] pub fn test_tt(_args: TokenStream, input: TokenStream) -> TokenStream { derive::derive_value_debug(input) } #[allow_internal_unstable(min_specialization, into_future, trivial_bounds)] #[proc_macro_error] #[proc_macro_attribute] pub fn value_impl(args: TokenStream, input: TokenStream) -> TokenStream { value_impl_macro::value_impl(args, input) } #[allow_internal_unstable(min_specialization, into_future, trivial_bounds)] #[proc_macro_error] #[proc_macro] pub fn primitive(input: TokenStream) -> TokenStream { primitive_macro::primitive(input) } /// Registers a value type that is generic over the `Vc` it contains. /// /// # Example /// /// ``` /// use crate::generic_type as __turbo_tasks_internal_generic_type; /// /// __turbo_tasks_internal_generic_type!(, GenericType, Vc>); /// /// // Now you can do the following, for any `A` and `B` value types: /// /// let vc: Vc, Vc>> = Vc::cell( /// GenericType::new( /// Vc::cell(42), /// Vc::cell("hello".to_string()) /// ) /// ); /// ``` #[allow_internal_unstable(min_specialization, into_future, trivial_bounds)] #[proc_macro_error] #[proc_macro] pub fn generic_type(input: TokenStream) -> TokenStream { generic_type_macro::generic_type(input) }