hopper_runtime/borrow.rs
1//! Hopper-owned borrow guards for account data.
2//!
3//! `Ref` and `RefMut` are the safe, drop-guarded handles returned by every
4//! Hopper access path: `load()`, `segment_ref()`, `raw_ref()`, and the
5//! mutable variants. The representation is backend-sensitive so the hot
6//! path stays tight:
7//!
8//! - **Solana (on-chain)**. `{ ptr, state_ptr }`. Two pointer words, no
9//! extra guards, no slice fat-pointer, no ZSTs. Drop decrements or
10//! restores the single `borrow_state` byte on the `RuntimeAccount`
11//! directly. This is Hopper Native's pointer-shaped hot path with
12//! deterministic RAII release built into the guard.
13//!
14//! - **non-Solana host tests**.
15//! `{ ptr, guard, token, _marker }`. Richer because host tests rely on
16//! the active backend's borrow machinery (RefCell, etc.) plus Hopper's
17//! own cross-handle alias registry (`BorrowToken`). Both are real RAII
18//! and must live until the runtime guard drops.
19//!
20//! Both reprs expose the same surface: `Deref`/`DerefMut` into `T`,
21//! `as_ptr` / `as_mut_ptr`, byte-slice narrowing (`slice`, `slice_from`),
22//! and byte-level pointer projection (`project`). Generated accessors use the
23//! same API on both targets while the target-specific representation remains
24//! internal.
25
26use core::marker::PhantomData;
27
28use crate::borrow_registry::BorrowToken;
29use crate::error::ProgramError;
30use crate::native_boundary::{BackendRef, BackendRefMut};
31
32// ══════════════════════════════════════════════════════════════════════
33// Ref (shared borrow)
34// ══════════════════════════════════════════════════════════════════════
35
36/// Shared (immutable) borrow guard for account data.
37///
38/// Derefs to the borrowed data. On drop, the shared borrow is released
39///. on Solana by decrementing the single `RuntimeAccount.borrow_state`
40/// byte, on host targets by dropping the backend guard and the
41/// cross-handle alias token.
42#[cfg(target_os = "solana")]
43pub struct Ref<'a, T: ?Sized> {
44 ptr: *const T,
45 state: *mut u8,
46 _marker: PhantomData<&'a T>,
47}
48
49#[cfg(not(target_os = "solana"))]
50pub struct Ref<'a, T: ?Sized> {
51 ptr: *const T,
52 guard: BackendRef<'a, [u8]>,
53 token: BorrowToken,
54 _marker: PhantomData<&'a T>,
55}
56
57impl<'a> Ref<'a, [u8]> {
58 /// Wrap an active-backend byte borrow into a Hopper Ref.
59 ///
60 /// On Solana this extracts the shared-borrow state pointer from the
61 /// native guard without any further wrapping. the resulting `Ref`
62 /// is `{ ptr, state }` only.
63 #[inline(always)]
64 pub(crate) fn from_backend(inner: BackendRef<'a, [u8]>, token: BorrowToken) -> Self {
65 #[cfg(target_os = "solana")]
66 {
67 let _ = token; // ZST on Solana, dropped immediately.
68 let (bytes, state) = inner.into_raw_parts();
69 Self {
70 ptr: bytes as *const [u8],
71 state,
72 _marker: PhantomData,
73 }
74 }
75 #[cfg(not(target_os = "solana"))]
76 {
77 let ptr = (&*inner) as *const [u8];
78 Self {
79 ptr,
80 guard: inner,
81 token,
82 _marker: PhantomData,
83 }
84 }
85 }
86
87 /// Project a byte borrow into another typed view over the same
88 /// underlying bytes. The new guard owns the same release mechanics
89 ///. when the returned `Ref<U>` drops, the underlying account
90 /// borrow is released exactly as if the original byte borrow had
91 /// dropped.
92 ///
93 /// # Safety
94 ///
95 /// `ptr` must point inside the byte slice that this `Ref<[u8]>`
96 /// guards (offset bounds checked by the caller), the pointee must
97 /// be valid `U` for any bit pattern (`U: Pod`-style), and `ptr`
98 /// must satisfy `U`'s alignment requirements. Hopper's typed access
99 /// APIs enforce this by requiring alignment-1 wire/pod types. The
100 /// returned `Ref<U>` inherits the source guard's lifetime, so the
101 /// account stays read-borrowed for as long as the typed view lives.
102 #[inline(always)]
103 pub unsafe fn project<U: ?Sized>(self, ptr: *const U) -> Ref<'a, U> {
104 #[cfg(target_os = "solana")]
105 {
106 let state = self.state;
107 core::mem::forget(self);
108 Ref {
109 ptr,
110 state,
111 _marker: PhantomData,
112 }
113 }
114 #[cfg(not(target_os = "solana"))]
115 {
116 let Self { guard, token, .. } = self;
117 Ref {
118 ptr,
119 guard,
120 token,
121 _marker: PhantomData,
122 }
123 }
124 }
125
126 /// Narrow a shared byte-slice borrow to a tail starting at `offset`.
127 #[inline(always)]
128 pub fn slice_from(self, offset: usize) -> Ref<'a, [u8]> {
129 // SAFETY: `self.ptr` is a valid slice pointer projected from the
130 // currently-held shared borrow; the subslice inherits the same
131 // borrow lifetime.
132 let bytes = unsafe { &*self.ptr };
133 let new_ptr = &bytes[offset..] as *const [u8];
134 // 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.
135 unsafe { self.project(new_ptr) }
136 }
137
138 /// Narrow a shared byte-slice borrow to a checked sub-slice.
139 #[inline(always)]
140 pub fn slice(self, offset: usize, len: usize) -> Result<Ref<'a, [u8]>, ProgramError> {
141 // SAFETY: see `slice_from`.
142 let bytes = unsafe { &*self.ptr };
143 let end = offset
144 .checked_add(len)
145 .ok_or(ProgramError::ArithmeticOverflow)?;
146 if end > bytes.len() {
147 return Err(ProgramError::AccountDataTooSmall);
148 }
149 let new_ptr = &bytes[offset..end] as *const [u8];
150 // 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.
151 Ok(unsafe { self.project(new_ptr) })
152 }
153
154 #[inline(always)]
155 pub fn as_bytes_ptr(&self) -> *const u8 {
156 let bytes: &[u8] = self;
157 bytes.as_ptr()
158 }
159}
160
161impl<T: ?Sized> Ref<'_, T> {
162 #[inline(always)]
163 pub fn as_ptr(&self) -> *const T {
164 self.ptr
165 }
166}
167
168impl<'a, T> Ref<'a, T> {
169 /// Construct a lean Ref from a direct segment pointer plus the
170 /// shared-borrow state pointer that manages the RAII release.
171 ///
172 /// This is the Solana-native segment path: skips every intermediate
173 /// wrapper and materializes the final `{ptr, state}` shape directly.
174 #[cfg(target_os = "solana")]
175 #[inline(always)]
176 pub(crate) fn from_segment(ptr: *const T, state: *mut u8) -> Self {
177 Self {
178 ptr,
179 state,
180 _marker: PhantomData,
181 }
182 }
183}
184
185impl<T: ?Sized> core::ops::Deref for Ref<'_, T> {
186 type Target = T;
187
188 #[inline(always)]
189 fn deref(&self) -> &T {
190 // SAFETY: `self.ptr` was projected from a live shared borrow. On
191 // Solana the borrow is kept alive by the `state` field's Drop
192 // impl; on host targets by the `guard` + `token` fields. Field
193 // drop order guarantees the pointee outlives the `&self` borrow.
194 // 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.
195 unsafe { &*self.ptr }
196 }
197}
198
199#[cfg(target_os = "solana")]
200impl<T: ?Sized> Drop for Ref<'_, T> {
201 #[inline(always)]
202 fn drop(&mut self) {
203 if self.state.is_null() {
204 return;
205 }
206 // Mirror `hopper_native::borrow::Ref::drop`: decrement the
207 // shared count, restoring NOT_BORROWED on the last release.
208 // 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.
209 unsafe {
210 let current = *self.state;
211 if current == 1 {
212 *self.state = hopper_native::NOT_BORROWED;
213 } else {
214 *self.state = current - 1;
215 }
216 }
217 }
218}
219
220// ══════════════════════════════════════════════════════════════════════
221// RefMut (exclusive borrow)
222// ══════════════════════════════════════════════════════════════════════
223
224/// Exclusive (mutable) borrow guard for account data.
225///
226/// See the [module docs](self) for the representation split. On Solana
227/// the guard is `{ptr, state}`; on host targets the full backend-guard
228/// stack is kept so test harnesses behave identically to real runtime.
229#[cfg(target_os = "solana")]
230pub struct RefMut<'a, T: ?Sized> {
231 ptr: *mut T,
232 state: *mut u8,
233 _marker: PhantomData<&'a mut T>,
234}
235
236#[cfg(not(target_os = "solana"))]
237pub struct RefMut<'a, T: ?Sized> {
238 ptr: *mut T,
239 guard: BackendRefMut<'a, [u8]>,
240 token: BorrowToken,
241 _marker: PhantomData<&'a mut T>,
242}
243
244impl<'a> RefMut<'a, [u8]> {
245 /// Wrap an active-backend mutable byte borrow into a Hopper RefMut.
246 #[inline(always)]
247 pub(crate) fn from_backend(inner: BackendRefMut<'a, [u8]>, token: BorrowToken) -> Self {
248 #[cfg(target_os = "solana")]
249 {
250 let _ = token;
251 let (bytes, state) = inner.into_raw_parts();
252 Self {
253 ptr: bytes as *mut [u8],
254 state,
255 _marker: PhantomData,
256 }
257 }
258 #[cfg(not(target_os = "solana"))]
259 {
260 // Take the write pointer from a *mutable* reborrow: deriving it
261 // from `&*inner` (a shared reborrow) and casting would give the
262 // pointer shared provenance, making later writes through it UB
263 // under the aliasing model (Miri flags it). The `mut` rebinding
264 // is host-only so the Solana lane (which consumes `inner` by
265 // value) stays warning-free.
266 let mut inner = inner;
267 let ptr = (&mut *inner) as *mut [u8];
268 Self {
269 ptr,
270 guard: inner,
271 token,
272 _marker: PhantomData,
273 }
274 }
275 }
276
277 /// Project a mutable byte borrow into another mutable view over the
278 /// same underlying bytes. The new guard owns the same release
279 /// mechanics. the exclusive borrow stays held until the returned
280 /// `RefMut<U>` drops.
281 ///
282 /// # Safety
283 ///
284 /// Same contract as [`Ref::project`]: `ptr` must point inside the
285 /// byte slice this guard owns, the pointee must be valid `U`
286 /// for any bit pattern (`U: Pod`-style), and `ptr` must satisfy
287 /// `U` alignment. The returned `RefMut<U>`
288 /// inherits the source guard's lifetime so the account stays
289 /// exclusively borrowed for as long as the typed view lives.
290 #[inline(always)]
291 pub unsafe fn project<U: ?Sized>(self, ptr: *mut U) -> RefMut<'a, U> {
292 #[cfg(target_os = "solana")]
293 {
294 let state = self.state;
295 core::mem::forget(self);
296 RefMut {
297 ptr,
298 state,
299 _marker: PhantomData,
300 }
301 }
302 #[cfg(not(target_os = "solana"))]
303 {
304 let Self { guard, token, .. } = self;
305 RefMut {
306 ptr,
307 guard,
308 token,
309 _marker: PhantomData,
310 }
311 }
312 }
313
314 /// Narrow an exclusive byte-slice borrow to a tail starting at `offset`.
315 #[inline(always)]
316 pub fn slice_from(self, offset: usize) -> RefMut<'a, [u8]> {
317 // 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.
318 let bytes = unsafe { &mut *self.ptr };
319 let new_ptr = &mut bytes[offset..] as *mut [u8];
320 unsafe { self.project(new_ptr) }
321 }
322
323 /// Narrow an exclusive byte-slice borrow to a checked sub-slice.
324 #[inline(always)]
325 pub fn slice(self, offset: usize, len: usize) -> Result<RefMut<'a, [u8]>, ProgramError> {
326 // 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.
327 let bytes = unsafe { &mut *self.ptr };
328 let end = offset
329 .checked_add(len)
330 .ok_or(ProgramError::ArithmeticOverflow)?;
331 if end > bytes.len() {
332 return Err(ProgramError::AccountDataTooSmall);
333 }
334 let new_ptr = &mut bytes[offset..end] as *mut [u8];
335 // 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.
336 Ok(unsafe { self.project(new_ptr) })
337 }
338
339 #[inline(always)]
340 pub fn as_bytes_mut_ptr(&mut self) -> *mut u8 {
341 let bytes: &mut [u8] = self;
342 bytes.as_mut_ptr()
343 }
344}
345
346impl<'a, T> RefMut<'a, T> {
347 /// Construct a lean RefMut from a direct segment pointer plus the
348 /// exclusive-borrow state pointer.
349 #[cfg(target_os = "solana")]
350 #[inline(always)]
351 pub(crate) fn from_segment(ptr: *mut T, state: *mut u8) -> Self {
352 Self {
353 ptr,
354 state,
355 _marker: PhantomData,
356 }
357 }
358}
359
360impl<T: ?Sized> RefMut<'_, T> {
361 #[inline(always)]
362 pub fn as_ptr(&self) -> *const T {
363 self.ptr
364 }
365
366 #[inline(always)]
367 pub fn as_mut_ptr(&mut self) -> *mut T {
368 self.ptr
369 }
370}
371
372impl<T: ?Sized> core::ops::Deref for RefMut<'_, T> {
373 type Target = T;
374
375 #[inline(always)]
376 fn deref(&self) -> &T {
377 // SAFETY: see `Ref::deref`.
378 unsafe { &*self.ptr }
379 }
380}
381
382impl<T: ?Sized> core::ops::DerefMut for RefMut<'_, T> {
383 #[inline(always)]
384 fn deref_mut(&mut self) -> &mut T {
385 // SAFETY: exclusive borrow guaranteed by the guard's lifetime.
386 unsafe { &mut *self.ptr }
387 }
388}
389
390#[cfg(target_os = "solana")]
391impl<T: ?Sized> Drop for RefMut<'_, T> {
392 #[inline(always)]
393 fn drop(&mut self) {
394 if self.state.is_null() {
395 return;
396 }
397 // Exclusive borrow. restore NOT_BORROWED.
398 // 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.
399 unsafe {
400 *self.state = hopper_native::NOT_BORROWED;
401 }
402 }
403}
404
405impl<T: ?Sized> core::fmt::Debug for Ref<'_, T> {
406 fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
407 f.debug_struct("Ref")
408 .field("ptr", &self.ptr)
409 .finish_non_exhaustive()
410 }
411}
412
413impl<T: ?Sized> core::fmt::Debug for RefMut<'_, T> {
414 fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
415 f.debug_struct("RefMut")
416 .field("ptr", &self.ptr)
417 .finish_non_exhaustive()
418 }
419}
420
421// ══════════════════════════════════════════════════════════════════════
422// Size invariants
423// ══════════════════════════════════════════════════════════════════════
424//
425// These `const _: ()` blocks bake the flat-wrapper promise into the
426// build. If a future refactor adds another pointer or RAII field the
427// build fails here, loudly, rather than silently re-inflating the hot
428// path. On Solana a `Ref<u64>` must be exactly two pointer-words
429// (ptr + state); a `Ref<[u8]>` takes one extra word for the slice-ptr
430// length component.
431
432#[cfg(target_os = "solana")]
433const _: () = {
434 assert!(
435 core::mem::size_of::<Ref<'static, u64>>() == core::mem::size_of::<usize>() * 2,
436 "Ref<T: Sized> on Solana must be exactly (ptr, state) = 2 words",
437 );
438 assert!(
439 core::mem::size_of::<RefMut<'static, u64>>() == core::mem::size_of::<usize>() * 2,
440 "RefMut<T: Sized> on Solana must be exactly (ptr, state) = 2 words",
441 );
442};