block_graph/builtin/
structural.rs1cat_like!(CatLayer,Cat);
2cat_like!(SqueezeLayer,Squeeze);
3cat_like!(StackLayer,Stack);
4cat_like!(UnsqueezeLayer,Unsqueeze);
5macro_rules! cat_like{
7 (@ai $layer:ident,$wrap:ident)=>{
8 impl<A:AI<X,Y>+Op<Output=Y>,X,Y,Z> AI<X,Z> for $wrap<A> where $layer:AI<Y,Z>{
9 fn forward(&self,input:X)->Z{self.layer.forward(self.inner.forward(input))}
10 fn forward_mut(&mut self,input:X)->Z{self.layer.forward_mut(self.inner.forward_mut(input))}
11 }
12 impl<X:crate::ops::$wrap,Y> AI<X,Y> for $layer where X::Output:Into<Y>{
13 fn forward(&self,input:X)->Y{input._apply(self.dim).into()}
14 }
15 };
16 (@declare $layer:ident,$wrap:ident)=>{
17 #[derive(Clone,Copy,Debug,Default,Deserialize,Eq,Hash,PartialEq,Serialize)]
18 pub struct $layer{dim:i32}
20 #[derive(Clone,Copy,Debug,Default,Deserialize,Eq,Hash,PartialEq,Serialize)]
21 pub struct $wrap<A>{inner:A,layer:$layer}
23 };
24 (@decompose $layer:ident,$wrap:ident)=>{
25 impl Decompose for $layer{
26 fn compose(dim:Self::Decomposition)->Self{
27 Self{dim}
28 }
29 fn decompose(self)->Self::Decomposition{self.dim}
30 fn decompose_cloned(&self)->Self::Decomposition{self.dim}
31 type Decomposition=i32;
32 }
33 impl<A:Decompose> Decompose for $wrap<A>{
34 fn compose((inner,layer):Self::Decomposition)->Self{
35 Self{inner:A::compose(inner),layer:$layer::compose(layer)}
36 }
37 fn decompose(self)->Self::Decomposition{(self.inner.decompose(),self.layer.decompose())}
38 fn decompose_cloned(&self)->Self::Decomposition{(self.inner.decompose_cloned(),self.layer.decompose_cloned())}
39 type Decomposition=(A::Decomposition,<$layer as Decompose>::Decomposition);
40 }
41 };
42 (@impl $layer:ident,$wrap:ident)=>{
43 impl $layer{
44 pub fn get_dim(&self)->i32{self.dim}
46 pub fn new(dim:i32)->Self{Self::default().with_dim(dim)}
48 pub fn set_dim(&mut self,dim:i32){self.dim=dim}
50 pub fn with_dim(mut self,dim:i32)->Self{
52 self.dim=dim;
53 self
54 }
55 }
56 impl<A:UnwrapInner> UnwrapInner for $wrap<A>{
57 fn unwrap_inner(self)->A::Inner{self.into_inner().unwrap_inner()}
58 type Inner=A::Inner;
59 }
60 impl<A> $wrap<A>{
61 pub fn get_dim(&self)->i32{self.layer.dim}
62 pub fn inner(&self)->&A{&self.inner}
64 pub fn inner_mut(&mut self)->&mut A{&mut self.inner}
66 pub fn into_inner(self)->A{self.inner}
68 pub fn new(dim:i32,inner:A)->Self where Self:Op{
70 Self{inner,layer:$layer::new(dim)}
71 }
72 pub fn set_dim(&mut self,dim:i32){self.layer.dim=dim}
74 pub fn with_dim(mut self,dim:i32)->Self{
76 self.layer.dim=dim;
77 self
78 }
79 pub fn with_inner<B>(self,inner:B)->$wrap<B> where $wrap<B>:Op{
81 $wrap{inner,layer:self.layer}
82 }
83 }
84 impl<M:AI<M::Output,M::Output>+Op> IntoSequence<M> for $layer where $layer:Into<M>{
85 fn into_sequence(self)->Sequential<Vec<M>>{vec![self.into()].sequential()}
86 }
87 };
88 (@op $layer:ident,$wrap:ident)=>{
89 impl Op for $layer{
90 type Output=Vec<f32>;
91 }
92 impl<A:Op<Output=Y>,Y:crate::ops::$wrap<Output=Z>,Z> Op for $wrap<A> where $layer:AI<Y,Z>{
93 type Output=Z;
94 }
95 };
96 ($layer:ident,$wrap:ident)=>{
97 cat_like!(@ai @declare @decompose @impl @op $layer,$wrap);
98 };
99 ($(@$command:tt)* $layer:ident,$wrap:ident)=>{
100 $(cat_like!(@$command $layer,$wrap);)*
101 };
102}
103use cat_like;
104use crate::{AI,Decompose,IntoSequence,Op,UnwrapInner,builtin::Sequential};
105use serde::{Deserialize,Serialize};