1use 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
8pub trait TaggedOption {
9 const TAGGED_OPTION: bool = true;
10 fn none_data() -> impl AsRef<[u8]> {
11 []
12 }
13}
14
15impl<T: MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>, N: Niche<NeedsTag = B>, B: Bit>
16 TaggedOption for T
17{
18 const TAGGED_OPTION: bool = B::BOOL;
19 fn none_data() -> impl AsRef<[u8]> {
20 N::niche()
21 }
22}
23
24impl<T: ToOutput + TaggedOption> ToOutput for Option<T> {
25 fn to_output(&self, output: &mut dyn Output) {
26 match self {
27 Some(value) => {
28 if T::TAGGED_OPTION {
29 output.write(&[0]);
30 }
31 value.to_output(output);
32 }
33 None => {
34 if T::TAGGED_OPTION {
35 output.write(&[1]);
36 } else {
37 output.write(T::none_data().as_ref());
38 }
39 }
40 }
41 }
42}
43
44impl<T: InlineOutput + TaggedOption> InlineOutput for Option<T> {}
45
46impl<T: ListHashes> ListHashes for Option<T> {
47 fn list_hashes(&self, f: &mut impl FnMut(Hash)) {
48 self.iter_list_hashes(f);
49 }
50}
51
52impl<T: Topological> Topological for Option<T> {
53 fn traverse(&self, visitor: &mut impl PointVisitor) {
54 self.iter_traverse(visitor);
55 }
56}
57
58impl<T: Tagged> Tagged for Option<T> {
59 const TAGS: Tags = T::TAGS;
60}
61
62impl<
63 T: Size + MaybeHasNiche<MnArray: MnArray<MaybeNiche: Niche<NeedsTag = B, N: Add<B, Output = N>>>>,
64 B: Bit,
65 N: Unsigned,
66> Size for Option<T>
67{
68 type Size = N;
69}
70
71pub struct UnspecifiedOptionNiche;
72
73pub struct OptionNiche<N, K>(N, K);
74
75pub trait NextNiche {
76 type NextNiche<N: ArrayLength>;
77}
78
79pub trait WrapNext {
80 type Wrap<N: ArrayLength, J>;
81}
82
83impl WrapNext for B1 {
84 type Wrap<N: ArrayLength, J> = SomeNiche<OptionNiche<N, J>>;
85}
86
87impl WrapNext for B0 {
88 type Wrap<N: ArrayLength, J> = UnspecifiedOptionNiche;
89}
90
91impl<
92 K: IsGreater<U1, Output = B1>
93 + IsLess<U256, Output = B1>
94 + Add<B1, Output = J>
95 + IsLess<U255, Output = B>,
96 J,
97 B: WrapNext,
98> NextNiche for K
99{
100 type NextNiche<N: ArrayLength> = B::Wrap<N, J>;
101}
102
103impl<N: ArrayLength, K: ToInt<u8> + NextNiche> Niche for OptionNiche<N, K> {
104 type NeedsTag = B0;
105 type N = N;
106 fn niche() -> GenericArray<u8, Self::N> {
107 let mut niche = GenericArray::default();
108 niche[0] = K::INT;
109 niche
110 }
111 type Next = K::NextNiche<N>;
112}
113
114pub trait OptionNicheWrapper: Bit {
115 type Wrap<Mn: Niche<NeedsTag = Self, N: Add<Self, Output: ArrayLength>>>;
116}
117
118impl OptionNicheWrapper for B0 {
119 type Wrap<Mn: Niche<NeedsTag = Self, N: Add<Self, Output: ArrayLength>>> = Mn::Next;
120}
121
122impl OptionNicheWrapper for B1 {
123 type Wrap<Mn: Niche<NeedsTag = Self, N: Add<Self, Output: ArrayLength>>> =
124 SomeNiche<OptionNiche<<<Mn as Niche>::N as Add<Self>>::Output, U2>>;
125}
126
127impl<
128 T: MaybeHasNiche<MnArray: MnArray<MaybeNiche = Mn>>,
129 Mn: Niche<NeedsTag = B, N: Add<B, Output: ArrayLength>>,
130 B: OptionNicheWrapper,
131> MaybeHasNiche for Option<T>
132{
133 type MnArray = B::Wrap<Mn>;
134}
135
136pub trait OptionParseBit<T, I>: Bit {
137 fn parse_option(input: I) -> crate::Result<Option<T>>;
138}
139
140impl<T: Parse<I>, I: ParseInput> OptionParseBit<T, I> for B1 {
141 fn parse_option(mut input: I) -> crate::Result<Option<T>> {
142 if input.parse_inline()? {
143 input.empty()?;
144 Ok(None)
145 } else {
146 Ok(Some(input.parse()?))
147 }
148 }
149}
150
151impl<
152 T: ParseInline<I> + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
153 N: Niche<NeedsTag = B0>,
154 I: ParseInput,
155> OptionParseBit<T, I> for B0
156{
157 fn parse_option(input: I) -> crate::Result<Option<T>> {
158 Option::<T>::parse_as_inline(input)
159 }
160}
161
162pub trait OptionParseBitInline<T, I>: OptionParseBit<T, I> {
163 fn parse_option_inline(input: &mut I) -> crate::Result<Option<T>>;
164}
165
166impl<T: ParseInline<I>, I: ParseInput> OptionParseBitInline<T, I> for B1 {
167 fn parse_option_inline(input: &mut I) -> crate::Result<Option<T>> {
168 if input.parse_inline()? {
169 Ok(None)
170 } else {
171 Ok(Some(input.parse_inline()?))
172 }
173 }
174}
175
176impl<
177 T: ParseInline<I> + MaybeHasNiche<MnArray: MnArray<MaybeNiche = N>>,
178 N: Niche<NeedsTag = B0>,
179 I: ParseInput,
180> OptionParseBitInline<T, I> for B0
181{
182 fn parse_option_inline(input: &mut I) -> crate::Result<Option<T>> {
183 input.parse_compare(N::N::USIZE, &N::niche())
184 }
185}
186
187impl<
188 T: Parse<I> + MaybeHasNiche<MnArray: MnArray<MaybeNiche: Niche<NeedsTag = B>>>,
189 B: OptionParseBit<T, I>,
190 I: ParseInput,
191> Parse<I> for Option<T>
192{
193 fn parse(input: I) -> crate::Result<Self> {
194 B::parse_option(input)
195 }
196}
197
198impl<
199 T: ParseInline<I> + MaybeHasNiche<MnArray: MnArray<MaybeNiche: Niche<NeedsTag = B>>>,
200 B: OptionParseBitInline<T, I>,
201 I: ParseInput,
202> ParseInline<I> for Option<T>
203{
204 fn parse_inline(input: &mut I) -> crate::Result<Self> {
205 B::parse_option_inline(input)
206 }
207}
208
209impl Equivalent<bool> for Option<()> {
210 fn into_equivalent(self) -> bool {
211 self.is_none()
212 }
213
214 fn from_equivalent(object: bool) -> Self {
215 (!object).then_some(())
216 }
217}
218
219impl<T, U: Equivalent<T>> Equivalent<Option<T>> for Option<U> {
220 fn into_equivalent(self) -> Option<T> {
221 self.map(U::into_equivalent)
222 }
223
224 fn from_equivalent(option: Option<T>) -> Self {
225 option.map(U::from_equivalent)
226 }
227}
228
229assert_impl!(
230 impl<T, E> Inline<E> for Option<T>
231 where
232 T: Inline<E> + MaybeHasNiche<MnArray: MaybeNiche + Niche<NeedsTag = B0>>,
233 E: Clone,
234 {
235 }
236);
237
238assert_impl!(
239 impl<T, E> Inline<E> for Option<T>
240 where
241 T: Inline<E> + MaybeHasNiche<MnArray: MaybeNiche + Niche<NeedsTag = B1>>,
242 E: Clone,
243 {
244 }
245);
246
247assert_impl!(
248 impl<T, E> Object<E> for Option<T>
249 where
250 T: Object<E> + MaybeHasNiche<MnArray: MaybeNiche + Niche<NeedsTag = B1>>,
251 E: Clone,
252 {
253 }
254);
255
256#[test]
257fn equivalent_to_bool() {
258 assert_eq!(false.vec(), Option::from_equivalent(false).vec());
259 assert_eq!(true.vec(), Option::from_equivalent(true).vec());
260}
261
262#[test]
263fn unit_none_is_1() {
264 assert_eq!(None::<()>.vec(), [1]);
265}
266
267#[test]
268fn unit_none_none_is_2() {
269 assert_eq!(None::<Option<()>>.vec(), [2]);
270}
271
272#[test]
273fn unit_none_none_none_is_3() {
274 assert_eq!(None::<Option<Option<()>>>.vec(), [3]);
275}