object_rainbow/impls/
option.rs1use std::ops::Add;
2
3use generic_array::{ArrayLength, GenericArray};
4use typenum::{B0, B1, Bit, IsGreater, IsLess, ToInt, U1, U2, U255, U256};
5
6use crate::*;
7
8impl<T: ToOutput + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>, N: Niche<NeedsTag = B>, B: Bit>
9 ToOutput for Option<T>
10{
11 fn to_output(&self, output: &mut dyn Output) {
12 match self {
13 Some(value) => {
14 if B::BOOL {
15 output.write(&[0]);
16 }
17 value.to_output(output);
18 }
19 None => {
20 if B::BOOL {
21 output.write(&[1]);
22 }
23 output.write(N::niche().as_slice());
24 }
25 }
26 }
27}
28
29impl<T: Topological<E>, E: 'static> Topological<E> for Option<T> {
30 fn accept_points(&self, visitor: &mut impl PointVisitor<E>) {
31 self.iter_accept_points(visitor);
32 }
33}
34
35impl<T: Tagged> Tagged for Option<T> {
36 const TAGS: Tags = T::TAGS;
37}
38
39impl<
40 T: MaybeHasNiche<MnArray: MnArray<MaybeNiche: Niche<NeedsTag = B, N: Add<B, Output = N>>>>,
41 B: Bit,
42 N: Unsigned,
43> Size for Option<T>
44{
45 type Size = N;
46}
47
48pub struct UnspecifiedOptionNiche;
49
50pub struct OptionNiche<N, K>(N, K);
51
52pub trait NextNiche {
53 type NextNiche<N: ArrayLength>;
54}
55
56pub trait WrapNext {
57 type Wrap<N: ArrayLength, J>;
58}
59
60impl WrapNext for B1 {
61 type Wrap<N: ArrayLength, J> = SomeNiche<OptionNiche<N, J>>;
62}
63
64impl WrapNext for B0 {
65 type Wrap<N: ArrayLength, J> = UnspecifiedOptionNiche;
66}
67
68impl<
69 K: IsGreater<U1, Output = B1>
70 + IsLess<U256, Output = B1>
71 + Add<B1, Output = J>
72 + IsLess<U255, Output = B>,
73 J,
74 B: WrapNext,
75> NextNiche for K
76{
77 type NextNiche<N: ArrayLength> = B::Wrap<N, J>;
78}
79
80impl<N: ArrayLength, K: ToInt<u8> + NextNiche> Niche for OptionNiche<N, K> {
81 type NeedsTag = B0;
82 type N = N;
83 fn niche() -> GenericArray<u8, Self::N> {
84 let mut niche = GenericArray::default();
85 niche[0] = K::INT;
86 niche
87 }
88 type Next = K::NextNiche<N>;
89}
90
91pub trait OptionNicheWrapper: Bit {
92 type Wrap<Mn: Niche<NeedsTag = Self, N: Add<Self, Output: ArrayLength>>>;
93}
94
95impl OptionNicheWrapper for B0 {
96 type Wrap<Mn: Niche<NeedsTag = Self, N: Add<Self, Output: ArrayLength>>> = Mn::Next;
97}
98
99impl OptionNicheWrapper for B1 {
100 type Wrap<Mn: Niche<NeedsTag = Self, N: Add<Self, Output: ArrayLength>>> =
101 SomeNiche<OptionNiche<<<Mn as Niche>::N as Add<Self>>::Output, U2>>;
102}
103
104impl<
105 T: MaybeHasNiche<MnArray: MnArray<MaybeNiche = Mn>>,
106 Mn: Niche<NeedsTag = B, N: Add<B, Output: ArrayLength>>,
107 B: OptionNicheWrapper,
108> MaybeHasNiche for Option<T>
109{
110 type MnArray = B::Wrap<Mn>;
111}
112
113impl<
114 T: ParseInline<I> + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
115 N: Niche<NeedsTag = B>,
116 B: Bit,
117 I: ParseInput,
118> Parse<I> for Option<T>
119{
120 fn parse(input: I) -> crate::Result<Self> {
121 ParseInline::parse_as_inline(input)
122 }
123}
124
125impl<
126 T: ParseInline<I> + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
127 N: Niche<NeedsTag = B>,
128 B: Bit,
129 I: ParseInput,
130> ParseInline<I> for Option<T>
131{
132 fn parse_inline(input: &mut I) -> crate::Result<Self> {
133 if B::BOOL {
134 if input.parse_inline()? {
135 Ok(None)
136 } else {
137 Ok(Some(input.parse_inline()?))
138 }
139 } else {
140 input.parse_compare(N::N::USIZE, &N::niche())
141 }
142 }
143}
144
145impl<
146 T: Inline<E> + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
147 N: Niche<NeedsTag = B>,
148 B: Bit,
149 E: 'static,
150> Object<E> for Option<T>
151{
152}
153
154impl<
155 T: Inline<E> + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
156 N: Niche<NeedsTag = B>,
157 B: Bit,
158 E: 'static,
159> Inline<E> for Option<T>
160{
161}
162
163impl<
164 T: ReflessInline + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
165 N: Niche<NeedsTag = B>,
166 B: Bit,
167> ReflessObject for Option<T>
168{
169}
170
171impl<
172 T: ReflessInline + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
173 N: Niche<NeedsTag = B>,
174 B: Bit,
175> ReflessInline for Option<T>
176{
177}
178
179impl Equivalent<bool> for Option<()> {
180 fn into_equivalent(self) -> bool {
181 self.is_none()
182 }
183
184 fn from_equivalent(object: bool) -> Self {
185 (!object).then_some(())
186 }
187}
188
189impl<T, U: Equivalent<T>> Equivalent<Option<T>> for Option<U> {
190 fn into_equivalent(self) -> Option<T> {
191 self.map(U::into_equivalent)
192 }
193
194 fn from_equivalent(option: Option<T>) -> Self {
195 option.map(U::from_equivalent)
196 }
197}
198
199#[test]
200fn equivalent_to_bool() {
201 assert_eq!(false.vec(), Option::from_equivalent(false).vec());
202 assert_eq!(true.vec(), Option::from_equivalent(true).vec());
203}
204
205#[test]
206fn unit_none_is_1() {
207 assert_eq!(None::<()>.vec(), [1]);
208}
209
210#[test]
211fn unit_none_none_is_2() {
212 assert_eq!(None::<Option<()>>.vec(), [2]);
213}
214
215#[test]
216fn unit_none_none_none_is_3() {
217 assert_eq!(None::<Option<Option<()>>>.vec(), [3]);
218}