mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-04-30 08:27:55 +00:00
b83bf4784e
* globally upgrade quote to latest 1.0.x (1.0.26) * globally upgrade syn to final 1.0.x version (1.0.109) * globally upgrade proc-macro2 to 1.0.56 * upgrade to syn v2.0.13 and fix everything except NestedMeta * fix parse nested metadata code in decl_runtime_apis.rs * Port more stuff to syn 2.0 * Make the rest compile * Ignore error * update to syn 2.0.14 --------- Co-authored-by: Bastian Köcher <info@kchr.de>
223 lines
6.3 KiB
Rust
223 lines
6.3 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: GPL-3.0-or-later WITH Classpath-exception-2.0
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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use proc_macro2::{Span, TokenStream};
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use proc_macro_crate::{crate_name, FoundCrate};
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use quote::quote;
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use syn::{DeriveInput, Error, Ident};
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const CRATE_NAME: &str = "sc-chain-spec";
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const ATTRIBUTE_NAME: &str = "forks";
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/// Implements `Extension's` `Group` accessor.
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///
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/// The struct that derives this implementation will be usable within the `ChainSpec` file.
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/// The derive implements a by-type accessor method.
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pub fn extension_derive(ast: &DeriveInput) -> proc_macro::TokenStream {
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derive(ast, |crate_name, name, generics: &syn::Generics, field_names, field_types, fields| {
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let (impl_generics, ty_generics, where_clause) = generics.split_for_impl();
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let forks = fields
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.named
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.iter()
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.find_map(|f| {
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if f.attrs.iter().any(|attr| attr.path().is_ident(ATTRIBUTE_NAME)) {
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let typ = &f.ty;
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Some(quote! { #typ })
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} else {
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None
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}
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})
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.unwrap_or_else(|| quote! { #crate_name::NoExtension });
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quote! {
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impl #impl_generics #crate_name::Extension for #name #ty_generics #where_clause {
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type Forks = #forks;
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fn get<T: 'static>(&self) -> Option<&T> {
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use std::any::{Any, TypeId};
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match TypeId::of::<T>() {
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#( x if x == TypeId::of::<#field_types>() => <dyn Any>::downcast_ref(&self.#field_names) ),*,
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_ => None,
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}
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}
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fn get_any(&self, t: std::any::TypeId) -> &dyn std::any::Any {
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use std::any::{Any, TypeId};
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match t {
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#( x if x == TypeId::of::<#field_types>() => &self.#field_names ),*,
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_ => self,
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}
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}
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fn get_any_mut(&mut self, t: std::any::TypeId) -> &mut dyn std::any::Any {
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use std::any::{Any, TypeId};
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match t {
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#( x if x == TypeId::of::<#field_types>() => &mut self.#field_names ),*,
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_ => self,
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}
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}
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}
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}
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})
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}
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/// Implements required traits and creates `Fork` structs for `ChainSpec` custom parameter group.
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pub fn group_derive(ast: &DeriveInput) -> proc_macro::TokenStream {
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derive(ast, |crate_name, name, generics: &syn::Generics, field_names, field_types, _fields| {
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let (impl_generics, ty_generics, where_clause) = generics.split_for_impl();
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let fork_name = Ident::new(&format!("{}Fork", name), Span::call_site());
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let fork_fields = generate_fork_fields(crate_name, &field_names, &field_types);
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let to_fork = generate_base_to_fork(&fork_name, &field_names);
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let combine_with = generate_combine_with(&field_names);
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let to_base = generate_fork_to_base(name, &field_names);
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let serde_crate_name = match proc_macro_crate::crate_name("serde") {
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Ok(FoundCrate::Itself) => Ident::new("serde", Span::call_site()),
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Ok(FoundCrate::Name(name)) => Ident::new(&name, Span::call_site()),
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Err(e) => {
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let err =
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Error::new(Span::call_site(), &format!("Could not find `serde` crate: {}", e))
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.to_compile_error();
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return quote!( #err )
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},
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};
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quote! {
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#[derive(
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Debug,
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Clone,
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PartialEq,
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#serde_crate_name::Serialize,
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#serde_crate_name::Deserialize,
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ChainSpecExtension,
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)]
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pub struct #fork_name #ty_generics #where_clause {
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#fork_fields
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}
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impl #impl_generics #crate_name::Group for #name #ty_generics #where_clause {
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type Fork = #fork_name #ty_generics;
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fn to_fork(self) -> Self::Fork {
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use #crate_name::Group;
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#to_fork
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}
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}
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impl #impl_generics #crate_name::Fork for #fork_name #ty_generics #where_clause {
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type Base = #name #ty_generics;
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fn combine_with(&mut self, other: Self) {
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use #crate_name::Fork;
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#combine_with
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}
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fn to_base(self) -> Option<Self::Base> {
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use #crate_name::Fork;
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#to_base
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}
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}
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}
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})
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}
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pub fn derive(
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ast: &DeriveInput,
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derive: impl Fn(
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&Ident,
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&Ident,
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&syn::Generics,
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Vec<&Ident>,
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Vec<&syn::Type>,
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&syn::FieldsNamed,
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) -> TokenStream,
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) -> proc_macro::TokenStream {
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let err = || {
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let err = Error::new(
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Span::call_site(),
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"ChainSpecGroup is only available for structs with named fields.",
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)
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.to_compile_error();
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quote!( #err ).into()
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};
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let data = match &ast.data {
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syn::Data::Struct(ref data) => data,
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_ => return err(),
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};
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let fields = match &data.fields {
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syn::Fields::Named(ref named) => named,
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_ => return err(),
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};
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let name = &ast.ident;
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let crate_name = match crate_name(CRATE_NAME) {
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Ok(FoundCrate::Itself) => CRATE_NAME.replace("-", "_"),
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Ok(FoundCrate::Name(chain_spec_name)) => chain_spec_name,
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Err(e) => {
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let err = Error::new(Span::call_site(), &e).to_compile_error();
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return quote!( #err ).into()
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},
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};
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let crate_name = Ident::new(&crate_name, Span::call_site());
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let field_names = fields.named.iter().flat_map(|x| x.ident.as_ref()).collect::<Vec<_>>();
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let field_types = fields.named.iter().map(|x| &x.ty).collect::<Vec<_>>();
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derive(&crate_name, name, &ast.generics, field_names, field_types, fields).into()
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}
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fn generate_fork_fields(crate_name: &Ident, names: &[&Ident], types: &[&syn::Type]) -> TokenStream {
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let crate_name = std::iter::repeat(crate_name);
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quote! {
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#( pub #names: Option<<#types as #crate_name::Group>::Fork>, )*
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}
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}
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fn generate_base_to_fork(fork_name: &Ident, names: &[&Ident]) -> TokenStream {
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let names2 = names.to_vec();
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quote! {
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#fork_name {
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#( #names: Some(self.#names2.to_fork()), )*
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}
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}
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}
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fn generate_combine_with(names: &[&Ident]) -> TokenStream {
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let names2 = names.to_vec();
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quote! {
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#( self.#names.combine_with(other.#names2); )*
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}
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}
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fn generate_fork_to_base(fork: &Ident, names: &[&Ident]) -> TokenStream {
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let names2 = names.to_vec();
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quote! {
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Some(#fork {
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#( #names: self.#names2?.to_base()?, )*
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})
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}
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}
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