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b12bcfc92a
Author | SHA1 | Date |
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annieversary | b12bcfc92a | |
annieversary | b86d5ccb27 |
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@ -13,9 +13,10 @@ pub fn derive(input: proc_macro::TokenStream) -> proc_macro::TokenStream {
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let name = &input.ident;
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let name = &input.ident;
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let mod_name = Ident::new(&get_mod_name(&input), Span::call_site());
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let mod_name = Ident::new(&get_mod_name(&input), Span::call_site());
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let container_name = Ident::new(&get_container_name(&input), Span::call_site());
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let expanded = match input.data {
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let expanded = match input.data {
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syn::Data::Struct(s) => expand_struct(s, name, &mod_name),
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syn::Data::Struct(s) => expand_struct(s, name, &mod_name, &container_name),
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syn::Data::Enum(_) => todo!("not yet implemented for prisms"),
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syn::Data::Enum(_) => todo!("not yet implemented for prisms"),
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syn::Data::Union(_) => panic!("this macro does not work on unions"),
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syn::Data::Union(_) => panic!("this macro does not work on unions"),
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};
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};
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@ -40,7 +41,28 @@ fn get_mod_name(input: &DeriveInput) -> String {
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input.ident.to_string().to_lowercase()
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input.ident.to_string().to_lowercase()
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}
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}
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fn expand_struct(data: DataStruct, name: &Ident, mod_name: &Ident) -> TokenStream {
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fn get_container_name(input: &DeriveInput) -> String {
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for i in &input.attrs {
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if let Ok(Meta::NameValue(meta)) = i.parse_meta() {
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if let Some(ident) = meta.path.get_ident() {
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if ident == "container_name" {
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if let Lit::Str(a) = meta.lit {
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return a.value();
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}
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}
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}
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}
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}
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format!("{}LensContainer", input.ident.to_string())
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}
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fn expand_struct(
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data: DataStruct,
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name: &Ident,
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mod_name: &Ident,
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container_name: &Ident,
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) -> TokenStream {
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let fields = match &data.fields {
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let fields = match &data.fields {
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syn::Fields::Named(n) => n.named.iter(),
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syn::Fields::Named(n) => n.named.iter(),
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syn::Fields::Unnamed(_) => todo!(),
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syn::Fields::Unnamed(_) => todo!(),
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@ -87,8 +109,8 @@ fn expand_struct(data: DataStruct, name: &Ident, mod_name: &Ident) -> TokenStrea
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.collect::<TokenStream>();
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.collect::<TokenStream>();
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quote! {
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quote! {
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impl Lenses<#ty> {
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impl bad_optics::has_lens::HasLensOf<#ty> for #name {
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pub fn get() ->
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fn get() ->
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Vec<
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Vec<
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bad_optics::lenses::Lens<
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bad_optics::lenses::Lens<
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bad_optics::lenses::lens_with_ref::LensWithRef<
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bad_optics::lenses::lens_with_ref::LensWithRef<
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@ -113,12 +135,19 @@ fn expand_struct(data: DataStruct, name: &Ident, mod_name: &Ident) -> TokenStrea
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.collect::<TokenStream>();
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.collect::<TokenStream>();
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quote! {
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quote! {
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pub mod #mod_name {
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mod #mod_name {
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use super::*;
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use super::*;
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#lens_funcs
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pub struct #container_name;
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impl HasLens for #name {
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type Lenses = #container_name;
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}
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impl #container_name {
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#lens_funcs
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}
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pub struct Lenses<T>(std::marker::PhantomData<T>);
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#group_impls
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#group_impls
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}
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}
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}
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}
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@ -1,4 +1,7 @@
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use bad_optics::prelude::Optics;
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use bad_optics::prelude::*;
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#[macro_use]
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extern crate bad_optics;
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// the Optics derive macro will implement lenses for every public field in the struct
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// the Optics derive macro will implement lenses for every public field in the struct
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// it makes a module named whatever the struct is called, but in lower case
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// it makes a module named whatever the struct is called, but in lower case
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@ -26,20 +29,24 @@ fn main() {
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//
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//
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// these lenses work for `MyStruct` with `view` and `over`,
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// these lenses work for `MyStruct` with `view` and `over`,
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// and for `&MyStruct` with `view`
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// and for `&MyStruct` with `view`
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let field1 = mystruct::field1();
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let field1 = <MyStruct as HasLens>::Lenses::field1();
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let field2 = mystruct::field2();
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// short macro for convenience, expands to the line above
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let field2 = lens!(MyStruct::field2);
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// the lenses work normally as any other lens :)
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// the lenses work normally as any other lens :)
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assert_eq!(field1(&o), "first field");
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assert_eq!(field1(&o), "first field");
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assert_eq!(field2(&o), "second field");
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assert_eq!(field2(&o), "second field");
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// we can get a vec with all the lenses that match a type
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// we can get a vec with all the lenses that match a type
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let string_lenses = mystruct::Lenses::<String>::get();
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let string_lenses = <MyStruct as HasLensOf<String>>::get();
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assert_eq!(string_lenses.len(), 2);
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assert_eq!(string_lenses.len(), 2);
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// since _field4 is private, there's no lens for it
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// since _field4 is private, there's no lens for it
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let vec_string_lenses = mystruct::Lenses::<u8>::get();
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let u8_lenses = <MyStruct as HasLensOf<u8>>::get();
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assert_eq!(vec_string_lenses.len(), 1);
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assert_eq!(u8_lenses.len(), 1);
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// short macro for convenience, expands to the line above
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let _u8_lenses = lenses!(MyStruct::u8);
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let mut o = o;
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let mut o = o;
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for lens in string_lenses {
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for lens in string_lenses {
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@ -144,8 +144,7 @@ where
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fn traverse(&self, thing: T) -> Vec<Self::Field> {
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fn traverse(&self, thing: T) -> Vec<Self::Field> {
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let a = A::traverse(&self.0 .0, thing);
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let a = A::traverse(&self.0 .0, thing);
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a.into_iter()
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a.into_iter()
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.map(|v| B::traverse(&self.1 .0, v))
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.flat_map(|v| B::traverse(&self.1 .0, v))
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.flatten()
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.collect()
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.collect()
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}
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}
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}
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}
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30
src/lib.rs
30
src/lib.rs
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@ -1,4 +1,5 @@
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#![feature(unboxed_closures, fn_traits, const_trait_impl)]
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#![feature(unboxed_closures, fn_traits, const_trait_impl)]
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#![allow(clippy::type_complexity)]
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pub mod combinations;
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pub mod combinations;
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mod fns;
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mod fns;
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@ -14,4 +15,33 @@ pub mod prelude {
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pub use crate::lenses::*;
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pub use crate::lenses::*;
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pub use crate::prisms::*;
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pub use crate::prisms::*;
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pub use crate::traversals::*;
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pub use crate::traversals::*;
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pub use crate::has_lens::*;
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}
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pub mod has_lens {
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use crate::prelude::{lens::FuncLens, lens_with_ref::LensWithRef, to::ToRefInner};
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use super::prelude::*;
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pub trait HasLens {
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type Lenses;
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}
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pub trait HasLensOf<T>: Sized {
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fn get() -> Vec<Lens<LensWithRef<Lens<FuncLens<Self, T>>, Lens<ToRefInner<Self, T>>, Self>>>;
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}
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#[macro_export]
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macro_rules! lens {
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($name:ident :: $func:ident) => {
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<$name as HasLens>::Lenses::$func()
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};
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}
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#[macro_export]
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macro_rules! lenses {
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($name:ident :: $ty:ident) => {
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<$name as HasLensOf<$ty>>::get()
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};
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}
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}
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}
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@ -21,11 +21,7 @@ pub trait PrismPreview<T> {
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F: FnOnce(Self::Field) -> Self::Field,
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F: FnOnce(Self::Field) -> Self::Field,
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T: Clone,
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T: Clone,
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{
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{
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if let Some(a) = Self::preview(&self, thing.clone()) {
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Self::preview(self, thing.clone()).map_or(thing, |a| Self::review(self, f(a)))
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Self::review(&self, f(a))
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} else {
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thing
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}
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}
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}
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fn set(&self, thing: T, v: Self::Field) -> T
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fn set(&self, thing: T, v: Self::Field) -> T
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@ -33,7 +29,7 @@ pub trait PrismPreview<T> {
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T: Clone,
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T: Clone,
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Self::Field: Clone,
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Self::Field: Clone,
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{
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{
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Self::over(self, thing, move |_| v.clone())
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Self::over(self, thing, move |_| v)
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}
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}
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}
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}
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