hopper_native/mem.rs
1//! Memory operations backed by Solana SVM syscalls.
2//!
3//! On Solana SBF, these dispatch to `sol_memcpy_`, `sol_memmove_`, `sol_memcmp_`,
4//! and `sol_memset_`. Off-chain, they fall back to standard library
5//! implementations.
6
7use crate::error::ProgramError;
8
9/// Copy `n` bytes from `src` to `dst`.
10///
11/// The memory regions **must not overlap**. For overlapping copies, use
12/// `memmove`. This is enforced by the SVM runtime on BPF.
13///
14/// # Safety
15///
16/// Both `src` and `dst` must be valid for `n` bytes. Regions must not overlap.
17#[inline(always)]
18pub unsafe fn memcpy(dst: *mut u8, src: *const u8, n: usize) {
19 #[cfg(target_os = "solana")]
20 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
21 unsafe {
22 crate::syscalls::sol_memcpy_(dst, src, n as u64);
23 }
24 #[cfg(not(target_os = "solana"))]
25 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
26 unsafe {
27 core::ptr::copy_nonoverlapping(src, dst, n);
28 }
29}
30
31/// Copy `n` bytes from `src` to `dst`, handling overlapping regions.
32///
33/// Safe for any src/dst alignment and overlap pattern.
34///
35/// # Safety
36///
37/// Both `src` and `dst` must be valid for `n` bytes.
38#[inline(always)]
39pub unsafe fn memmove(dst: *mut u8, src: *const u8, n: usize) {
40 #[cfg(target_os = "solana")]
41 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
42 unsafe {
43 crate::syscalls::sol_memmove_(dst, src, n as u64);
44 }
45 #[cfg(not(target_os = "solana"))]
46 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
47 unsafe {
48 core::ptr::copy(src, dst, n);
49 }
50}
51
52/// Fill `n` bytes starting at `dst` with `byte`.
53///
54/// Uses the SVM `sol_memset_` syscall on-chain.
55///
56/// # Safety
57///
58/// `dst` must be valid for `n` bytes.
59#[inline(always)]
60pub unsafe fn memset(dst: *mut u8, byte: u8, n: usize) {
61 #[cfg(target_os = "solana")]
62 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
63 unsafe {
64 crate::syscalls::sol_memset_(dst, byte, n as u64);
65 }
66 #[cfg(not(target_os = "solana"))]
67 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
68 unsafe {
69 core::ptr::write_bytes(dst, byte, n);
70 }
71}
72
73/// Compare `n` bytes between two memory regions.
74///
75/// Returns `Ordering::Equal` if the regions are identical, or the
76/// ordering of the first differing byte (lexicographic comparison).
77///
78/// # Safety
79///
80/// Both `a` and `b` must be valid for `n` bytes.
81#[inline(always)]
82pub unsafe fn memcmp(a: *const u8, b: *const u8, n: usize) -> core::cmp::Ordering {
83 #[cfg(target_os = "solana")]
84 {
85 let mut result: i32 = 0;
86 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
87 unsafe {
88 crate::syscalls::sol_memcmp_(a, b, n as u64, &mut result as *mut i32);
89 }
90 match result {
91 0 => core::cmp::Ordering::Equal,
92 x if x < 0 => core::cmp::Ordering::Less,
93 _ => core::cmp::Ordering::Greater,
94 }
95 }
96 #[cfg(not(target_os = "solana"))]
97 {
98 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
99 let a_slice = unsafe { core::slice::from_raw_parts(a, n) };
100 let b_slice = unsafe { core::slice::from_raw_parts(b, n) };
101 a_slice.cmp(b_slice)
102 }
103}
104
105// ---- Safe wrappers ---------------------------------------------------
106
107/// Zero-fill a mutable byte slice using the SVM-optimized memset.
108#[inline(always)]
109pub fn zero_fill(buf: &mut [u8]) {
110 if buf.is_empty() {
111 return;
112 }
113 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
114 unsafe {
115 memset(buf.as_mut_ptr(), 0, buf.len());
116 }
117}
118
119/// Copy bytes from one slice to another (no overlap).
120///
121/// Copies `src.len()` bytes into the front of `dst`. Returns
122/// `Err(InvalidArgument)` if `dst` is shorter than `src`; a longer `dst`
123/// keeps its trailing bytes unchanged.
124#[inline]
125pub fn copy_bytes(dst: &mut [u8], src: &[u8]) -> Result<(), ProgramError> {
126 if dst.len() < src.len() {
127 return Err(ProgramError::InvalidArgument);
128 }
129 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
130 unsafe {
131 memcpy(dst.as_mut_ptr(), src.as_ptr(), src.len());
132 }
133 Ok(())
134}
135
136/// Compare two byte slices for equality using SVM-optimized memcmp.
137#[inline]
138pub fn bytes_eq(a: &[u8], b: &[u8]) -> bool {
139 if a.len() != b.len() {
140 return false;
141 }
142 if a.is_empty() {
143 return true;
144 }
145 // SAFETY: This block is part of Hopper's reviewed zero-copy/backend boundary; surrounding checks and caller contracts uphold the required raw-pointer, layout, and aliasing invariants.
146 unsafe { memcmp(a.as_ptr(), b.as_ptr(), a.len()) == core::cmp::Ordering::Equal }
147}
148
149/// Zero-fill account data using SVM-optimized memset.
150///
151/// Use this when you need to clear account data without closing the account.
152///
153/// Fails with `AccountBorrowFailed` if any data borrow (shared or exclusive)
154/// is outstanding: the memset would mutate memory a live `Ref`/`RefMut`
155/// still points at.
156#[inline]
157pub fn zero_account_data(
158 account: &crate::account_view::AccountView<'_>,
159) -> Result<(), ProgramError> {
160 account.check_borrow_mut()?;
161 let len = account.data_len();
162 if len == 0 {
163 return Ok(());
164 }
165 // SAFETY: no data borrow is outstanding (checked above); the pointer and
166 // length describe this account's SVM-owned data region.
167 unsafe {
168 memset(account.data_ptr_unchecked(), 0, len);
169 }
170 Ok(())
171}