1use crate::{Decimal, NumericValue};
4use candid::{CandidType, Int as WrappedInt};
5use derive_more::{Add, AddAssign, Sub, SubAssign};
6use num_bigint::BigInt;
7use serde::{Deserialize, Serialize};
8use std::{
9 fmt,
10 iter::{Product, Sum},
11 ops::{Div, DivAssign, Mul, MulAssign, Neg},
12 str::FromStr,
13};
14
15#[derive(
20 Add,
21 AddAssign,
22 CandidType,
23 Clone,
24 Debug,
25 Default,
26 Eq,
27 PartialEq,
28 Hash,
29 Ord,
30 PartialOrd,
31 Serialize,
32 Deserialize,
33 Sub,
34 SubAssign,
35)]
36pub struct IntBig(WrappedInt);
38
39impl IntBig {
40 #[must_use]
42 pub fn magnitude_bits(&self) -> u64 {
43 self.0.0.bits()
44 }
45
46 #[must_use]
48 pub fn leb128_len(&self) -> u64 {
49 let bits = self.magnitude_bits();
50 let negative_boundary = self.0.0.sign() == num_bigint::Sign::Minus
54 && bits.is_multiple_of(7)
55 && self.0.0.trailing_zeros() == Some(bits.saturating_sub(1));
56 bits / 7 + 1 - u64::from(negative_boundary)
57 }
58
59 #[must_use]
61 pub const fn from_candid(value: WrappedInt) -> Self {
62 Self(value)
63 }
64
65 #[must_use]
67 pub fn from_bigint(value: BigInt) -> Self {
68 Self::from_candid(WrappedInt::from(value))
69 }
70
71 #[must_use]
75 pub fn sign_and_u32_digits(&self) -> (bool, Vec<u32>) {
76 (
77 self.0.0.cmp(&0.into()).is_lt(),
78 self.0.0.magnitude().to_u32_digits(),
79 )
80 }
81
82 #[must_use]
84 pub fn to_i128(&self) -> Option<i128> {
85 let big = &self.0.0;
86
87 i128::try_from(big).ok()
88 }
89
90 #[must_use]
92 pub fn to_i64(&self) -> Option<i64> {
93 let big = &self.0.0;
94
95 i64::try_from(big).ok()
96 }
97
98 #[must_use]
100 pub fn to_leb128(&self) -> Vec<u8> {
101 let mut out = Vec::new();
102 let encoded = self.0.encode(&mut out);
103 debug_assert!(encoded.is_ok(), "Vec-backed signed LEB128 encoding failed");
104
105 out
106 }
107
108 pub(crate) fn to_sign_and_magnitude_bytes(&self) -> (bool, Vec<u8>) {
109 let (sign, magnitude) = self.0.0.to_bytes_be();
110 (sign == num_bigint::Sign::Minus, magnitude)
111 }
112
113 pub(crate) fn from_sign_and_magnitude_bytes(negative: bool, magnitude: &[u8]) -> Self {
114 let sign = if magnitude.is_empty() {
115 num_bigint::Sign::NoSign
116 } else if negative {
117 num_bigint::Sign::Minus
118 } else {
119 num_bigint::Sign::Plus
120 };
121 Self::from_bigint(BigInt::from_bytes_be(sign, magnitude))
122 }
123
124 #[must_use]
126 pub fn saturating_add(self, rhs: Self) -> Self {
127 Self(self.0 + rhs.0)
128 }
129
130 #[must_use]
132 pub fn saturating_sub(self, rhs: Self) -> Self {
133 Self(self.0 - rhs.0)
134 }
135}
136
137impl fmt::Display for IntBig {
138 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
139 self.0.fmt(f)
140 }
141}
142
143impl FromStr for IntBig {
144 type Err = <WrappedInt as FromStr>::Err;
145
146 fn from_str(s: &str) -> Result<Self, Self::Err> {
147 WrappedInt::from_str(s).map(Self::from_candid)
148 }
149}
150
151impl Div for IntBig {
152 type Output = Self;
153
154 fn div(self, other: Self) -> Self::Output {
155 Self(self.0 / other.0)
156 }
157}
158
159impl DivAssign for IntBig {
160 fn div_assign(&mut self, other: Self) {
161 self.0 /= other.0;
162 }
163}
164
165impl From<i32> for IntBig {
166 fn from(n: i32) -> Self {
167 Self::from_candid(WrappedInt::from(n))
168 }
169}
170
171impl From<i64> for IntBig {
172 fn from(n: i64) -> Self {
173 Self::from_candid(WrappedInt::from(n))
174 }
175}
176
177impl Mul for IntBig {
178 type Output = Self;
179
180 fn mul(self, other: Self) -> Self::Output {
181 Self(self.0 * other.0)
182 }
183}
184
185impl MulAssign for IntBig {
186 fn mul_assign(&mut self, other: Self) {
187 self.0 *= other.0;
188 }
189}
190
191impl Neg for IntBig {
192 type Output = Self;
193
194 fn neg(self) -> Self::Output {
195 Self::from_bigint(-self.0.0)
196 }
197}
198
199impl NumericValue for IntBig {
200 fn try_to_decimal(&self) -> Option<Decimal> {
201 self.to_i128().and_then(Decimal::from_i128)
202 }
203
204 fn try_from_decimal(value: Decimal) -> Option<Self> {
205 value.to_i128().map(WrappedInt::from).map(Self::from_candid)
206 }
207}
208
209impl Product for IntBig {
210 fn product<I: Iterator<Item = Self>>(iter: I) -> Self {
211 iter.fold(Self::from(1), |acc, value| acc * value)
212 }
213}
214
215impl Sum for IntBig {
216 fn sum<I: Iterator<Item = Self>>(iter: I) -> Self {
217 iter.fold(Self::default(), |acc, x| acc + x)
218 }
219}