33use crate :: arch:: asm;
44use crate :: cell:: UnsafeCell ;
55use crate :: cmp;
6+ use crate :: convert:: TryInto ;
7+ use crate :: intrinsics;
68use crate :: mem;
79use crate :: ops:: { CoerceUnsized , Deref , DerefMut , Index , IndexMut } ;
810use crate :: ptr:: { self , NonNull } ;
@@ -306,20 +308,35 @@ where
306308 }
307309}
308310
309- // Split a memory region ptr..ptr + len into three parts:
310- // +--------+
311- // | small0 | Chunk smaller than 8 bytes
312- // +--------+
313- // | big | Chunk 8-byte aligned, and size a multiple of 8 bytes
314- // +--------+
315- // | small1 | Chunk smaller than 8 bytes
316- // +--------+
317- fn region_as_aligned_chunks ( ptr : * const u8 , len : usize ) -> ( usize , usize , usize ) {
318- let small0_size = if ptr. is_aligned_to ( 8 ) { 0 } else { 8 - ptr. addr ( ) % 8 } ;
319- let small1_size = ( len - small0_size) % 8 ;
320- let big_size = len - small0_size - small1_size;
321-
322- ( small0_size, big_size, small1_size)
311+ /// Divide the slice `(ptr, len)` into three parts, where the middle part is
312+ /// aligned to `u64`.
313+ ///
314+ /// The return values `(prefix_len, mid_len, suffix_len)` add back up to `len`.
315+ /// The return values are such that the memory region `(ptr + prefix_len,
316+ /// mid_len)` is the largest possible region where `ptr + prefix_len` is aligned
317+ /// to `u64` and `mid_len` is a multiple of the byte size of `u64`. This means
318+ /// that `prefix_len` and `suffix_len` are guaranteed to be less than the byte
319+ /// size of `u64`, and that `(ptr, prefix_len)` and `(ptr + prefix_len +
320+ /// mid_len, suffix_len)` don't straddle an alignment boundary.
321+ // Standard Rust functions such as `<[u8]>::align_to::<u64>` and
322+ // `<*const u8>::align_offset` aren't _guaranteed_ to compute the largest
323+ // possible middle region, and as such can't be used.
324+ fn u64_align_to_guaranteed ( ptr : * const u8 , mut len : usize ) -> ( usize , usize , usize ) {
325+ const QWORD_SIZE : usize = mem:: size_of :: < u64 > ( ) ;
326+
327+ let offset = ptr as usize % QWORD_SIZE ;
328+
329+ let prefix_len = if intrinsics:: unlikely ( offset > 0 ) { QWORD_SIZE - offset } else { 0 } ;
330+
331+ len = match len. checked_sub ( prefix_len) {
332+ Some ( remaining_len) => remaining_len,
333+ None => return ( len, 0 , 0 ) ,
334+ } ;
335+
336+ let suffix_len = len % QWORD_SIZE ;
337+ len -= suffix_len;
338+
339+ ( prefix_len, len, suffix_len)
323340}
324341
325342unsafe fn copy_quadwords ( src : * const u8 , dst : * mut u8 , len : usize ) {
@@ -352,7 +369,13 @@ unsafe fn copy_quadwords(src: *const u8, dst: *mut u8, len: usize) {
352369/// - https://www.intel.com/content/www/us/en/security-center/advisory/intel-sa-00615.html
353370/// - https://www.intel.com/content/www/us/en/developer/articles/technical/software-security-guidance/technical-documentation/processor-mmio-stale-data-vulnerabilities.html#inpage-nav-3-2-2
354371pub ( crate ) unsafe fn copy_to_userspace ( src : * const u8 , dst : * mut u8 , len : usize ) {
355- unsafe fn copy_bytewise_to_userspace ( src : * const u8 , dst : * mut u8 , len : usize ) {
372+ /// Like `ptr::copy(src, dst, len)`, except it uses the Intel-recommended
373+ /// instruction sequence for unaligned writes.
374+ unsafe fn write_bytewise_to_userspace ( src : * const u8 , dst : * mut u8 , len : usize ) {
375+ if intrinsics:: likely ( len == 0 ) {
376+ return ;
377+ }
378+
356379 unsafe {
357380 let mut seg_sel: u16 = 0 ;
358381 for off in 0 ..len {
@@ -380,41 +403,15 @@ pub(crate) unsafe fn copy_to_userspace(src: *const u8, dst: *mut u8, len: usize)
380403 assert ! ( !src. addr( ) . overflowing_add( len) . 1 ) ;
381404 assert ! ( !dst. addr( ) . overflowing_add( len) . 1 ) ;
382405
383- if len < 8 {
384- // Can't align on 8 byte boundary: copy safely byte per byte
385- unsafe {
386- copy_bytewise_to_userspace ( src, dst, len) ;
387- }
388- } else if len % 8 == 0 && dst. is_aligned_to ( 8 ) {
389- // Copying 8-byte aligned quadwords: copy quad word per quad word
390- unsafe {
391- copy_quadwords ( src, dst, len) ;
392- }
393- } else {
394- // Split copies into three parts:
395- // +--------+
396- // | small0 | Chunk smaller than 8 bytes
397- // +--------+
398- // | big | Chunk 8-byte aligned, and size a multiple of 8 bytes
399- // +--------+
400- // | small1 | Chunk smaller than 8 bytes
401- // +--------+
402- let ( small0_size, big_size, small1_size) = region_as_aligned_chunks ( dst, len) ;
406+ unsafe {
407+ let ( len1, len2, len3) = u64_align_to_guaranteed ( dst, len) ;
408+ let ( src1, dst1) = ( src, dst) ;
409+ let ( src2, dst2) = ( src1. add ( len1) , dst1. add ( len1) ) ;
410+ let ( src3, dst3) = ( src2. add ( len2) , dst2. add ( len2) ) ;
403411
404- unsafe {
405- // Copy small0
406- copy_bytewise_to_userspace ( src, dst, small0_size) ;
407-
408- // Copy big
409- let big_src = src. add ( small0_size) ;
410- let big_dst = dst. add ( small0_size) ;
411- copy_quadwords ( big_src, big_dst, big_size) ;
412-
413- // Copy small1
414- let small1_src = src. add ( big_size + small0_size) ;
415- let small1_dst = dst. add ( big_size + small0_size) ;
416- copy_bytewise_to_userspace ( small1_src, small1_dst, small1_size) ;
417- }
412+ write_bytewise_to_userspace ( src1, dst1, len1) ;
413+ copy_quadwords ( src2, dst2, len2) ;
414+ write_bytewise_to_userspace ( src3, dst3, len3) ;
418415 }
419416}
420417
@@ -434,87 +431,53 @@ pub(crate) unsafe fn copy_to_userspace(src: *const u8, dst: *mut u8, len: usize)
434431/// - https://www.intel.com/content/www/us/en/security-center/advisory/intel-sa-00657.html
435432/// - https://www.intel.com/content/www/us/en/developer/articles/technical/software-security-guidance/advisory-guidance/stale-data-read-from-xapic.html
436433pub ( crate ) unsafe fn copy_from_userspace ( src : * const u8 , dst : * mut u8 , len : usize ) {
437- // Copies memory region `src..src + len` to the enclave at `dst`. The source memory region
438- // is:
439- // - strictly less than 8 bytes in size and may be
440- // - located at a misaligned memory location
441- fn copy_misaligned_chunk_to_enclave ( src : * const u8 , dst : * mut u8 , len : usize ) {
442- let mut tmp_buff = [ 0u8 ; 16 ] ;
434+ /// Like `ptr::copy(src, dst, len)`, except it uses only u64-aligned reads.
435+ ///
436+ /// # Safety
437+ /// The source memory region must not straddle an alignment boundary.
438+ unsafe fn read_misaligned_from_userspace ( src : * const u8 , dst : * mut u8 , len : usize ) {
439+ if intrinsics:: likely ( len == 0 ) {
440+ return ;
441+ }
443442
444443 unsafe {
445- // Compute an aligned memory region to read from
446- // +--------+ <-- aligned_src + aligned_len (8B-aligned)
447- // | pad1 |
448- // +--------+ <-- src + len (misaligned)
449- // | |
450- // | |
451- // | |
452- // +--------+ <-- src (misaligned)
453- // | pad0 |
454- // +--------+ <-- aligned_src (8B-aligned)
455- let pad0_size = src as usize % 8 ;
456- let aligned_src = src. sub ( pad0_size) ;
457-
458- let pad1_size = 8 - ( src. add ( len) as usize % 8 ) ;
459- let aligned_len = pad0_size + len + pad1_size;
460-
461- debug_assert ! ( len < 8 ) ;
462- debug_assert_eq ! ( aligned_src as usize % 8 , 0 ) ;
463- debug_assert_eq ! ( aligned_len % 8 , 0 ) ;
464- debug_assert ! ( aligned_len <= 16 ) ;
465-
466- // Copy the aligned buffer to a temporary buffer
467- // Note: copying from a slightly different memory location is a bit odd. In this case it
468- // can't lead to page faults or inadvertent copying from the enclave as we only ensured
469- // that the `src` pointer is aligned at an 8 byte boundary. As pages are 4096 bytes
470- // aligned, `aligned_src` must be on the same page as `src`. A similar argument can be made
471- // for `src + len`
472- copy_quadwords ( aligned_src as _ , tmp_buff. as_mut_ptr ( ) , aligned_len) ;
473-
474- // Copy the correct parts of the temporary buffer to the destination
475- ptr:: copy ( tmp_buff. as_ptr ( ) . add ( pad0_size) , dst, len) ;
444+ let offset: usize ;
445+ let data: u64 ;
446+ // doing a memory read that's potentially out of bounds for `src`,
447+ // this isn't supported by Rust, so have to use assembly
448+ asm ! ( "
449+ movl {src:e}, {offset:e}
450+ andl $7, {offset:e}
451+ andq $-8, {src}
452+ movq ({src}), {dst}
453+ " ,
454+ src = inout( reg) src => _,
455+ offset = out( reg) offset,
456+ dst = out( reg) data,
457+ options( nostack, att_syntax, readonly, pure)
458+ ) ;
459+ let data = data. to_le_bytes ( ) ;
460+ ptr:: copy_nonoverlapping ( data. as_ptr ( ) . add ( offset) , dst, len) ;
476461 }
477462 }
478463
479464 assert ! ( !src. is_null( ) ) ;
480465 assert ! ( !dst. is_null( ) ) ;
481466 assert ! ( is_user_range( src, len) ) ;
482467 assert ! ( is_enclave_range( dst, len) ) ;
483- assert ! ( !( src as usize ) . overflowing_add( len + 8 ) . 1 ) ;
484- assert ! ( !( dst as usize ) . overflowing_add( len + 8 ) . 1 ) ;
468+ assert ! ( len < isize :: MAX as usize ) ;
469+ assert ! ( !( src as usize ) . overflowing_add( len) . 1 ) ;
470+ assert ! ( !( dst as usize ) . overflowing_add( len) . 1 ) ;
485471
486- if len < 8 {
487- copy_misaligned_chunk_to_enclave ( src, dst, len) ;
488- } else if len % 8 == 0 && src as usize % 8 == 0 {
489- // Copying 8-byte aligned quadwords: copy quad word per quad word
490- unsafe {
491- copy_quadwords ( src, dst, len) ;
492- }
493- } else {
494- // Split copies into three parts:
495- // +--------+
496- // | small0 | Chunk smaller than 8 bytes
497- // +--------+
498- // | big | Chunk 8-byte aligned, and size a multiple of 8 bytes
499- // +--------+
500- // | small1 | Chunk smaller than 8 bytes
501- // +--------+
502- let ( small0_size, big_size, small1_size) = region_as_aligned_chunks ( dst, len) ;
472+ unsafe {
473+ let ( len1, len2, len3) = u64_align_to_guaranteed ( src, len) ;
474+ let ( src1, dst1) = ( src, dst) ;
475+ let ( src2, dst2) = ( src1. add ( len1) , dst1. add ( len1) ) ;
476+ let ( src3, dst3) = ( src2. add ( len2) , dst2. add ( len2) ) ;
503477
504- unsafe {
505- // Copy small0
506- copy_misaligned_chunk_to_enclave ( src, dst, small0_size) ;
507-
508- // Copy big
509- let big_src = src. add ( small0_size) ;
510- let big_dst = dst. add ( small0_size) ;
511- copy_quadwords ( big_src, big_dst, big_size) ;
512-
513- // Copy small1
514- let small1_src = src. add ( big_size + small0_size) ;
515- let small1_dst = dst. add ( big_size + small0_size) ;
516- copy_misaligned_chunk_to_enclave ( small1_src, small1_dst, small1_size) ;
517- }
478+ read_misaligned_from_userspace ( src1, dst1, len1) ;
479+ copy_quadwords ( src2, dst2, len2) ;
480+ read_misaligned_from_userspace ( src3, dst3, len3) ;
518481 }
519482}
520483
@@ -609,9 +572,9 @@ where
609572 /// Copies the value from user memory into enclave memory.
610573 pub fn to_enclave ( & self ) -> T {
611574 unsafe {
612- let mut data: T = mem:: MaybeUninit :: uninit ( ) . assume_init ( ) ;
613- copy_from_userspace ( self . 0 . get ( ) as _ , & mut data as * mut T as _ , mem:: size_of :: < T > ( ) ) ;
614- data
575+ let mut data = mem:: MaybeUninit :: uninit ( ) ;
576+ copy_from_userspace ( self . 0 . get ( ) as _ , data. as_mut_ptr ( ) as _ , mem:: size_of :: < T > ( ) ) ;
577+ data. assume_init ( )
615578 }
616579 }
617580}
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