#ifndef APOS_MEM_H #define APOS_MEM_H #include #include enum mm_mode_t { Sv48, Sv39, Sv32, }; #define MM_OINFO_WIDTH (sizeof(mm_info_t) * 8) #define pnum_to_index(pnum, order) (((pnum) >> __o_offset(order)) & (__o_width(order) - 1)) #define pm_to_index(paddr, order) (pnum_to_index(pm_to_pnum(paddr), (order))) #define pm_to_pnum(paddr) ((paddr) >> __mm_page_shift) #define pnum_to_paddr(pnum) ((pnum) << __mm_page_shift) #define move_forward(var, num) (((var) += (num)) - (num)) #define move_paddr(paddr, base, offset) ((((pm_t)(paddr)) - (base)) + (offset)) #define num_elems(num) (((num) + MM_OINFO_WIDTH - 1) / MM_OINFO_WIDTH) #define num_indexes(num) ((num) / MM_OINFO_WIDTH) #define index_elems(num) ((num) / MM_OINFO_WIDTH) #define state_elems(num) (sizeof(mm_info_t) * (num_elems(num))) #define next_elems(num) (sizeof(void *) * (num)) #define max_index(order) (__o_width(order) - 1) #define __o_offset(order) (__mm_shifts[order]) #define __o_width(order) (__mm_widths[order]) #define __o_elems(order) (__mm_widths[order] / MM_OINFO_WIDTH) #define __o_container(idx) ((idx) / MM_OINFO_WIDTH) #define __o_bit(idx) ((idx) & (MM_OINFO_WIDTH - 1)) extern size_t __mm_shifts[10]; extern size_t __mm_widths[10]; extern size_t __mm_sizes[10]; extern size_t __mm_page_shift; extern size_t __mm_max_order; void init_mem(size_t max_order, size_t shifts[10], size_t page_shift); enum mm_mode_t get_mmode(void *fdt); #endif /* APOS_MEM_H */