__alloc_cake(unsigned int cake_pg)
{
uintptr_t pa = pmm_alloc_cpage(KERNEL_PID, cake_pg, 0);
+ if (!pa) {
+ return NULL;
+ }
return vmm_vmap(pa, cake_pg * PG_SIZE, PG_PREM_RW);
}
{
struct cake_s* cake = __alloc_cake(pile->pg_per_cake);
+ if (!cake) {
+ return NULL;
+ }
+
int max_piece = pile->pieces_per_cake;
cake->first_piece = (void*)((uintptr_t)cake + pile->offset);
cake->next_free = 0;
- piece_index_t* free_list = &cake->free_list;
+ piece_index_t* free_list = cake->free_list;
for (size_t i = 0; i < max_piece - 1; i++) {
free_list[i] = i + 1;
}
unsigned int pg_per_cake,
int options)
{
+ if (!pile) {
+ return;
+ }
+
unsigned int offset = sizeof(long);
// 默认每块儿蛋糕对齐到地址总线宽度
(piece_size + sizeof(piece_index_t)),
.pg_per_cake = pg_per_cake };
- unsigned int overhead_size =
- sizeof(struct cake_s) + pile->pieces_per_cake * sizeof(piece_index_t);
+ unsigned int free_list_size = pile->pieces_per_cake * sizeof(piece_index_t);
- pile->offset = ROUNDUP(overhead_size, offset);
+ pile->offset = ROUNDUP(sizeof(struct cake_s) + free_list_size, offset);
+ pile->pieces_per_cake -= ICEIL((pile->offset - free_list_size), piece_size);
- strncpy(&pile->pile_name, name, PILE_NAME_MAXLEN);
+ strncpy(pile->pile_name, name, PILE_NAME_MAXLEN);
llist_init_head(&pile->free);
llist_init_head(&pile->full);
pos = list_entry(pile->free.next, typeof(*pos), cakes);
}
+ if (!pos)
+ return NULL;
+
piece_index_t found_index = pos->next_free;
pos->next_free = pos->free_list[found_index];
pos->used_pieces++;
pos->used_pieces--;
pile->alloced_pieces--;
- llist_delete(pos);
+ llist_delete(&pos->cakes);
if (!pos->used_pieces) {
llist_append(&pile->free, &pos->cakes);
} else {