1#![no_std]
2
3#[cfg(feature = "alloc")]
4extern crate alloc;
5
6#[cfg(feature = "alloc")]
7use alloc::vec::Vec;
8
9use bobcat_storage::{const_keccak256, keccak256};
10
11pub use bobcat_maths::U;
12
13type Address = [u8; 20];
14
15use array_concat::concat_arrays;
16
17#[cfg(all(target_family = "wasm", target_os = "unknown"))]
18use bobcat_host as impls;
19
20#[cfg(not(all(target_family = "wasm", target_os = "unknown")))]
21mod impls {
22 pub(crate) unsafe fn create1(
25 _code: *const u8,
26 _code_len: usize,
27 _endowment: *const u8,
28 _contract: *mut u8,
29 _revert_data_len: *mut usize,
30 ) {
31 }
32
33 pub(crate) unsafe fn create2(
34 _code: *const u8,
35 _code_len: usize,
36 _endowment: *const u8,
37 _salt: *const u8,
38 _contract: *mut u8,
39 _revert_data_len: *mut usize,
40 ) {
41 }
42
43 pub(crate) unsafe fn read_return_data(_dest: *mut u8, _offset: usize, _size: usize) -> usize {
44 0
45 }
46}
47
48pub fn create1_partial(code: &[u8], endowment: U) -> (Address, usize) {
49 let mut addr = [0u8; 20];
50 let mut revert_len = 0;
51 unsafe {
52 impls::create1(
53 code.as_ptr(),
54 code.len(),
55 endowment.as_ptr(),
56 addr.as_mut_ptr(),
57 &mut revert_len as *mut usize,
58 )
59 }
60 (addr, revert_len)
61}
62
63pub fn create1_unit(code: &[u8], endowment: U) -> Option<Address> {
64 let (addr, _) = create1_partial(code, endowment);
65 if addr == [0u8; 20] {
66 return None;
67 }
68 Some(addr)
69}
70
71pub fn create1_slice<const REVERT_CAP: usize>(
72 code: &[u8],
73 endowment: U,
74) -> (Address, [u8; REVERT_CAP], usize) {
75 let (addr, i) = create1_partial(code, endowment);
76 let mut b = [0u8; REVERT_CAP];
77 let mut l = 0;
78 if addr != [0u8; 20] {
79 assert!(REVERT_CAP >= i, "create1 not enough space");
80 l = unsafe { impls::read_return_data(b.as_mut_ptr(), 0, i) };
81 }
82 (addr, b, l)
83}
84
85pub fn create1_slice_res<const REVERT_CAP: usize>(
86 code: &[u8],
87 endowment: U,
88) -> Result<Address, ([u8; REVERT_CAP], usize)> {
89 let (addr, b, l) = create1_slice(code, endowment);
90 if addr != [0u8; 20] {
91 Ok(addr)
92 } else {
93 Err((b, l))
94 }
95}
96
97#[cfg(feature = "alloc")]
98pub fn create1_vec(code: &[u8], endowment: U) -> (Address, Option<Vec<u8>>) {
99 let (addr, rd) = create1_partial(code, endowment);
100 if addr != [0u8; 20] {
101 (addr, None)
102 } else {
103 let mut b = Vec::with_capacity(rd);
104 unsafe { impls::read_return_data(b.as_mut_ptr(), 0, rd) };
105 unsafe { b.set_len(rd) }
106 (addr, Some(b))
107 }
108}
109
110pub fn create2_partial(code: &[u8], endowment: U, salt: U) -> (Address, usize) {
111 let mut addr = [0u8; 20];
112 let mut revert_len = 0;
113 unsafe {
114 impls::create2(
115 code.as_ptr(),
116 code.len(),
117 endowment.as_ptr(),
118 salt.as_ptr(),
119 addr.as_mut_ptr(),
120 &mut revert_len as *mut usize,
121 )
122 }
123 (addr, revert_len)
124}
125
126pub fn create2_slice<const REVERT_CAP: usize>(
127 code: &[u8],
128 endowment: U,
129 salt: U,
130) -> (Address, [u8; REVERT_CAP], usize) {
131 let (addr, rd) = create2_partial(code, endowment, salt);
132 let mut b = [0u8; REVERT_CAP];
133 if addr == [0u8; 20] {
134 assert!(REVERT_CAP >= rd, "create2 not enough space");
135 unsafe { impls::read_return_data(b.as_mut_ptr(), 0, rd) };
136 }
137 (addr, b, rd)
138}
139
140pub fn create2_slice_res<const REVERT_CAP: usize>(
141 code: &[u8],
142 endowment: U,
143 salt: U,
144) -> Result<Address, ([u8; REVERT_CAP], usize)> {
145 let (addr, b, l) = create2_slice(code, endowment, salt);
146 if addr != [0u8; 20] {
147 Ok(addr)
148 } else {
149 Err((b, l))
150 }
151}
152
153pub fn create2_post_unit(code: &[u8], endowment: U, salt_digest: U) -> Option<Address> {
154 let (addr, _) = create2_partial(code, endowment, salt_digest);
155 if addr == [0u8; 20] {
156 return None;
157 }
158 Some(addr)
159}
160
161pub fn create2_pre_unit(code: &[u8], endowment: U, salt_pre: &[u8]) -> Option<Address> {
162 create2_post_unit(code, endowment, keccak256(salt_pre))
163}
164
165#[cfg(feature = "alloc")]
166pub fn create2_post_vec(code: &[u8], endowment: U, salt: U) -> (Address, Option<Vec<u8>>) {
167 let (addr, rd) = create2_partial(code, endowment, salt);
168 if addr == [0u8; 20] {
169 let mut b = Vec::with_capacity(rd);
170 unsafe { impls::read_return_data(b.as_mut_ptr(), 0, rd) };
171 unsafe {
172 b.set_len(rd);
173 }
174 return (addr, Some(b));
175 }
176 (addr, None)
177}
178
179pub fn create2_slice_pre_keccak256<const REVERT_CAP: usize>(
180 code: &[u8],
181 endowment: U,
182 salt_pre: &[u8],
183) -> (Address, [u8; REVERT_CAP], usize) {
184 create2_slice::<REVERT_CAP>(code, endowment, const_keccak256(salt_pre))
185}
186
187#[cfg(feature = "alloc")]
188pub fn create2_vec_pre_keccak256(
189 code: &[u8],
190 endowment: U,
191 salt_pre: &[u8],
192) -> (Address, Option<Vec<u8>>) {
193 create2_post_vec(code, endowment, keccak256(salt_pre))
194}
195
196pub fn const_estimate_addr_pre(factory: Address, initcode_pre: &[u8], salt_pre: &[u8]) -> Address {
197 const_estimate_addr_post(
198 factory,
199 const_keccak256(initcode_pre),
200 const_keccak256(salt_pre),
201 )
202}
203
204pub fn const_estimate_addr_post(factory: Address, initcode_digest: U, salt_digest: U) -> Address {
206 let b: [u8; 1 + 20 + 32 * 2] =
207 concat_arrays!([0xff], factory, salt_digest.0, initcode_digest.0);
208 const_keccak256(&b).into()
209}
210
211pub fn estimate_addr(factory: Address, initcode: U, salt: U) -> Address {
212 let b: [u8; 1 + 20 + 32 * 2] = concat_arrays!([0xff], factory, salt.0, initcode.0);
213 keccak256(&b).into()
214}
215
216pub fn estimate_addr_pre(factory: Address, initcode_pre: &[u8], salt_pre: &[u8]) -> Address {
218 estimate_addr(factory, keccak256(initcode_pre), keccak256(salt_pre))
219}