}
}
-static bool memory_region_big_endian(MemoryRegion *mr)
-{
-#if TARGET_BIG_ENDIAN
- return mr->ops->endianness != DEVICE_LITTLE_ENDIAN;
-#else
- return mr->ops->endianness == DEVICE_BIG_ENDIAN;
-#endif
-}
-
static void adjust_endianness(MemoryRegion *mr, uint64_t *data, MemOp op)
{
if ((op & MO_BSWAP) != devend_memop(mr->ops->endianness)) {
/* FIXME: support unaligned access? */
access_size = MAX(MIN(size, access_size_max), access_size_min);
access_mask = MAKE_64BIT_MASK(0, access_size * 8);
- if (memory_region_big_endian(mr)) {
+ if (devend_big_endian(mr->ops->endianness)) {
for (i = 0; i < size; i += access_size) {
r |= access_fn(mr, addr + i, value, access_size,
(size - access_size - i) * 8, access_mask, attrs);
unsigned i;
if (size) {
- adjust_endianness(mr, &mrfd.data, size_memop(size) | MO_TE);
+ MemOp mop = (target_words_bigendian() ? MO_BE : MO_LE) | size_memop(size);
+ adjust_endianness(mr, &mrfd.data, mop);
}
memory_region_transaction_begin();
for (i = 0; i < mr->ioeventfd_nb; ++i) {
unsigned i;
if (size) {
- adjust_endianness(mr, &mrfd.data, size_memop(size) | MO_TE);
+ MemOp mop = (target_words_bigendian() ? MO_BE : MO_LE) | size_memop(size);
+ adjust_endianness(mr, &mrfd.data, mop);
}
memory_region_transaction_begin();
for (i = 0; i < mr->ioeventfd_nb; ++i) {