/* SPDX-License-Identifier: GPL-3.0-or-later */ /* Copyright 2021 - 2022, Kim Kuparinen < kimi.h.kuparinen@gmail.com > */ #ifndef APOS_MEM_H #define APOS_MEM_H /** * @file mem.h * Generic memory, common to both physical and virtual memory. */ #include #include /** * Convert physical memory address \c paddr to index of page order \c order. * * @param p Physical memory address. * @param order Order page index to convert to. * @return Index of page order \c order. */ #define pm_to_index(p, order) \ ((p >> order_shift(order)) & (order_width(order) - 1)) /** * Get highest possible index in an order. * * @param order Order to query. * @return Highest possible index in the order \c order. */ #define max_index(order) (order_width(order) - 1) /** * Get starting offset of order bits in address. * * @param order Order to query. * @return Starting offset of order bits. */ #define order_shift(order) (__mm_shifts[order]) /** * Get number of order bits in an address. * * @param order Order to query. * @return Width in bits of order bits. */ #define order_width(order) (__mm_widths[order]) /** * Get size of order, as in how many pages of one order lower it can contain. * * @param order Order to query. * @return Number of pages of one order lower this order can contain. */ #define order_size(order) (__mm_sizes[order]) /** * Get highest order supported by the current configuration. * * @return Max supported order. */ #define max_order() (__mm_max_order) /** * Get base page shift. * * @return Page shift. */ #define page_shift() (__mm_page_shift) /** * Get number of elements needed to represent this order. * * @param order Order to query. * @return Number of elements needed to represent this order. */ #define order_elems(order) (__mm_widths[order] / MM_OINFO_WIDTH) /** * Entry index to element index that contains the entry. * * @param idx Index of entry. * @return Index of element. */ #define order_container(idx) ((idx) / MM_OINFO_WIDTH) /** \todo Get rid of slightly ugly __* syntax, as these aren't static. */ /** * Convert physical address to virtual address in direct mapping. * * @param x Physical address. * @return Corresponding virtual address. */ #define __va(x) (void *)(((uintptr_t)(x)) + VM_DMAP - RAM_BASE) /** * Convert virtual address to physical address in direct mapping. * * @param x Virtual address. * @return Corresponding physical address. */ #define __pa(x) (void *)(((uintptr_t)(x)) - VM_DMAP + RAM_BASE) /** * Get page number of physical address. * * @param x Physical address. * @return Corresponding page number. */ #define __page(x) ((x) / BASE_PAGE_SIZE) /** * Get physical address of page number. * * @param x Page number. * @return Corresponding physical address. */ #define __addr(x) ((x) * BASE_PAGE_SIZE) /** * Convert bytes to number of base pages. * * @param x Number of bytes. * @return Corresponding number of page pages. */ #define __pages(x) \ (is_aligned((x), BASE_PAGE_SIZE) ? __page((x)) : \ __page((x) + BASE_PAGE_SIZE)) /** @name Memory region flags. */ /** @{ */ /** Memory region is used. */ #define MR_USED (1 << 8) /** Don't free memory on clear. */ #define MR_KEEP (1 << 9) /** @} */ /** Maximum number of page orders allowed. Likely massively overkill. */ #define NUM_ORDERS 10 /** Give names to page orders. */ enum mm_order { /** NULL marker. */ MM_MIN = -1, /** Base order. */ MM_O0 = 0, /** Order 1. */ MM_O1 = 1, /** Order 2. */ MM_O2 = 2, /** Order 3. */ MM_O3 = 3, /** Order 4. */ MM_O4 = 4, /** Order 5. */ MM_O5 = 5, /** Order 6. */ MM_O6 = 6, /** Order 7. */ MM_O7 = 7, /** Order 8. */ MM_O8 = 8, /** Order 9. */ MM_O9 = 9, /** Number of orders */ MM_NUM, }; /** Gives access to global page order shift information. \global */ extern size_t __mm_shifts[NUM_ORDERS]; /** Gives access to global page order width information. \global */ extern size_t __mm_widths[NUM_ORDERS]; /** Gives access to global page order size information. \global */ extern size_t __mm_sizes[NUM_ORDERS]; /** Gives access to global base page shift. \global */ extern size_t __mm_page_shift; /** Gives access to global maximum order size. \global */ extern enum mm_order __mm_max_order; /** * Initialize memory subsystem data. Populates __mm_* with data given. * * @param max_order Maximum order the current system supports. * @param shifts Offsets to start of each memory order in address. * @param page_shift Width in bits of base page size. * \todo Should likely also be stat_t? */ void init_mem(size_t max_order, size_t shifts[10], size_t page_shift); /** Base page size. */ #define BASE_PAGE_SIZE (order_size(BASE_PAGE)) /** Base page order. */ #define BASE_PAGE (MM_O0) #endif /* APOS_MEM_H */