1fe85eae5SJens Wiklander // SPDX-License-Identifier: BSD-2-Clause 2fe85eae5SJens Wiklander /* 3fe85eae5SJens Wiklander * Copyright (c) 2024, Linaro Limited 4fe85eae5SJens Wiklander */ 5fe85eae5SJens Wiklander 6fe85eae5SJens Wiklander #include <assert.h> 7fe85eae5SJens Wiklander #include <kernel/boot.h> 8fe85eae5SJens Wiklander #include <mm/core_memprot.h> 9fe85eae5SJens Wiklander #include <mm/core_mmu.h> 10fe85eae5SJens Wiklander #include <mm/phys_mem.h> 11fe85eae5SJens Wiklander #include <mm/tee_mm.h> 12fe85eae5SJens Wiklander #include <stdalign.h> 13fe85eae5SJens Wiklander #include <string.h> 14fe85eae5SJens Wiklander #include <util.h> 15fe85eae5SJens Wiklander 16fe85eae5SJens Wiklander /* 17fe85eae5SJens Wiklander * struct boot_mem_reloc - Pointers relocated in memory during boot 18fe85eae5SJens Wiklander * @ptrs: Array of relocation 19fe85eae5SJens Wiklander * @count: Number of cells used in @ptrs 20fe85eae5SJens Wiklander * @next: Next relocation array when @ptrs is fully used 21fe85eae5SJens Wiklander */ 22fe85eae5SJens Wiklander struct boot_mem_reloc { 23fe85eae5SJens Wiklander void **ptrs[64]; 24fe85eae5SJens Wiklander size_t count; 25fe85eae5SJens Wiklander struct boot_mem_reloc *next; 26fe85eae5SJens Wiklander }; 27fe85eae5SJens Wiklander 28fe85eae5SJens Wiklander /* 29fe85eae5SJens Wiklander * struct boot_mem_desc - Stack like boot memory allocation pool 30fe85eae5SJens Wiklander * @orig_mem_start: Boot memory stack base address 31fe85eae5SJens Wiklander * @orig_mem_end: Boot memory start end address 32fe85eae5SJens Wiklander * @mem_start: Boot memory free space start address 33fe85eae5SJens Wiklander * @mem_end: Boot memory free space end address 34fe85eae5SJens Wiklander * @reloc: Boot memory pointers requiring relocation 35fe85eae5SJens Wiklander */ 36fe85eae5SJens Wiklander struct boot_mem_desc { 37fe85eae5SJens Wiklander vaddr_t orig_mem_start; 38fe85eae5SJens Wiklander vaddr_t orig_mem_end; 39fe85eae5SJens Wiklander vaddr_t mem_start; 40fe85eae5SJens Wiklander vaddr_t mem_end; 41fe85eae5SJens Wiklander struct boot_mem_reloc *reloc; 42fe85eae5SJens Wiklander }; 43fe85eae5SJens Wiklander 44fe85eae5SJens Wiklander static struct boot_mem_desc *boot_mem_desc; 45fe85eae5SJens Wiklander 46fe85eae5SJens Wiklander static void *mem_alloc_tmp(struct boot_mem_desc *desc, size_t len, size_t align) 47fe85eae5SJens Wiklander { 48fe85eae5SJens Wiklander vaddr_t va = 0; 49fe85eae5SJens Wiklander 50fe85eae5SJens Wiklander assert(desc && desc->mem_start && desc->mem_end); 51fe85eae5SJens Wiklander assert(IS_POWER_OF_TWO(align) && !(len % align)); 52fe85eae5SJens Wiklander if (SUB_OVERFLOW(desc->mem_end, len, &va)) 53fe85eae5SJens Wiklander panic(); 5476d6685eSEtienne Carriere va = ROUNDDOWN2(va, align); 55fe85eae5SJens Wiklander if (va < desc->mem_start) 56fe85eae5SJens Wiklander panic(); 57fe85eae5SJens Wiklander desc->mem_end = va; 58fe85eae5SJens Wiklander return (void *)va; 59fe85eae5SJens Wiklander } 60fe85eae5SJens Wiklander 61fe85eae5SJens Wiklander static void *mem_alloc(struct boot_mem_desc *desc, size_t len, size_t align) 62fe85eae5SJens Wiklander { 63fe85eae5SJens Wiklander vaddr_t va = 0; 64fe85eae5SJens Wiklander vaddr_t ve = 0; 65fe85eae5SJens Wiklander 66fe85eae5SJens Wiklander runtime_assert(!IS_ENABLED(CFG_WITH_PAGER)); 67fe85eae5SJens Wiklander assert(desc && desc->mem_start && desc->mem_end); 68fe85eae5SJens Wiklander assert(IS_POWER_OF_TWO(align) && !(len % align)); 6976d6685eSEtienne Carriere va = ROUNDUP2(desc->mem_start, align); 70fe85eae5SJens Wiklander if (ADD_OVERFLOW(va, len, &ve)) 71fe85eae5SJens Wiklander panic(); 72fe85eae5SJens Wiklander if (ve > desc->mem_end) 73fe85eae5SJens Wiklander panic(); 74fe85eae5SJens Wiklander desc->mem_start = ve; 75fe85eae5SJens Wiklander return (void *)va; 76fe85eae5SJens Wiklander } 77fe85eae5SJens Wiklander 78fe85eae5SJens Wiklander void boot_mem_init(vaddr_t start, vaddr_t end, vaddr_t orig_end) 79fe85eae5SJens Wiklander { 80fe85eae5SJens Wiklander struct boot_mem_desc desc = { 81fe85eae5SJens Wiklander .orig_mem_start = start, 82fe85eae5SJens Wiklander .orig_mem_end = orig_end, 83fe85eae5SJens Wiklander .mem_start = start, 84fe85eae5SJens Wiklander .mem_end = end, 85fe85eae5SJens Wiklander }; 86fe85eae5SJens Wiklander 87fe85eae5SJens Wiklander boot_mem_desc = mem_alloc_tmp(&desc, sizeof(desc), alignof(desc)); 88fe85eae5SJens Wiklander *boot_mem_desc = desc; 89fe85eae5SJens Wiklander boot_mem_desc->reloc = mem_alloc_tmp(boot_mem_desc, 90fe85eae5SJens Wiklander sizeof(*boot_mem_desc->reloc), 91fe85eae5SJens Wiklander alignof(*boot_mem_desc->reloc)); 92fe85eae5SJens Wiklander memset(boot_mem_desc->reloc, 0, sizeof(*boot_mem_desc->reloc)); 93fe85eae5SJens Wiklander } 94fe85eae5SJens Wiklander 95fe85eae5SJens Wiklander void boot_mem_add_reloc(void *ptr) 96fe85eae5SJens Wiklander { 97fe85eae5SJens Wiklander struct boot_mem_reloc *reloc = NULL; 98fe85eae5SJens Wiklander 99fe85eae5SJens Wiklander assert(boot_mem_desc && boot_mem_desc->reloc); 100fe85eae5SJens Wiklander reloc = boot_mem_desc->reloc; 101fe85eae5SJens Wiklander 102fe85eae5SJens Wiklander /* If the reloc struct is full, allocate a new and link it first */ 103fe85eae5SJens Wiklander if (reloc->count == ARRAY_SIZE(reloc->ptrs)) { 104fe85eae5SJens Wiklander reloc = boot_mem_alloc_tmp(sizeof(*reloc), alignof(*reloc)); 105fe85eae5SJens Wiklander reloc->next = boot_mem_desc->reloc; 106fe85eae5SJens Wiklander boot_mem_desc->reloc = reloc; 107fe85eae5SJens Wiklander } 108fe85eae5SJens Wiklander 109fe85eae5SJens Wiklander reloc->ptrs[reloc->count] = ptr; 110fe85eae5SJens Wiklander reloc->count++; 111fe85eae5SJens Wiklander } 112fe85eae5SJens Wiklander 113fe85eae5SJens Wiklander static void *add_offs(void *p, size_t offs) 114fe85eae5SJens Wiklander { 115fe85eae5SJens Wiklander assert(p); 116fe85eae5SJens Wiklander return (uint8_t *)p + offs; 117fe85eae5SJens Wiklander } 118fe85eae5SJens Wiklander 119*6b61de6cSJens Wiklander static void *add_offs_or_null(void *p, size_t offs) 120*6b61de6cSJens Wiklander { 121*6b61de6cSJens Wiklander if (!p) 122*6b61de6cSJens Wiklander return NULL; 123*6b61de6cSJens Wiklander return (uint8_t *)p + offs; 124*6b61de6cSJens Wiklander } 125*6b61de6cSJens Wiklander 126fe85eae5SJens Wiklander void boot_mem_relocate(size_t offs) 127fe85eae5SJens Wiklander { 128fe85eae5SJens Wiklander struct boot_mem_reloc *reloc = NULL; 129fe85eae5SJens Wiklander size_t n = 0; 130fe85eae5SJens Wiklander 131fe85eae5SJens Wiklander boot_mem_desc = add_offs(boot_mem_desc, offs); 132fe85eae5SJens Wiklander 133fe85eae5SJens Wiklander boot_mem_desc->orig_mem_start += offs; 134fe85eae5SJens Wiklander boot_mem_desc->orig_mem_end += offs; 135fe85eae5SJens Wiklander boot_mem_desc->mem_start += offs; 136fe85eae5SJens Wiklander boot_mem_desc->mem_end += offs; 137fe85eae5SJens Wiklander boot_mem_desc->reloc = add_offs(boot_mem_desc->reloc, offs); 138fe85eae5SJens Wiklander 139fe85eae5SJens Wiklander for (reloc = boot_mem_desc->reloc;; reloc = reloc->next) { 140fe85eae5SJens Wiklander for (n = 0; n < reloc->count; n++) { 141fe85eae5SJens Wiklander reloc->ptrs[n] = add_offs(reloc->ptrs[n], offs); 142*6b61de6cSJens Wiklander *reloc->ptrs[n] = add_offs_or_null(*reloc->ptrs[n], 143*6b61de6cSJens Wiklander offs); 144fe85eae5SJens Wiklander } 145fe85eae5SJens Wiklander if (!reloc->next) 146fe85eae5SJens Wiklander break; 147fe85eae5SJens Wiklander reloc->next = add_offs(reloc->next, offs); 148fe85eae5SJens Wiklander } 149fe85eae5SJens Wiklander } 150fe85eae5SJens Wiklander 151fe85eae5SJens Wiklander void *boot_mem_alloc(size_t len, size_t align) 152fe85eae5SJens Wiklander { 153fe85eae5SJens Wiklander return mem_alloc(boot_mem_desc, len, align); 154fe85eae5SJens Wiklander } 155fe85eae5SJens Wiklander 156fe85eae5SJens Wiklander void *boot_mem_alloc_tmp(size_t len, size_t align) 157fe85eae5SJens Wiklander { 158fe85eae5SJens Wiklander return mem_alloc_tmp(boot_mem_desc, len, align); 159fe85eae5SJens Wiklander } 160fe85eae5SJens Wiklander 161fe85eae5SJens Wiklander vaddr_t boot_mem_release_unused(void) 162fe85eae5SJens Wiklander { 163fe85eae5SJens Wiklander tee_mm_entry_t *mm = NULL; 164fe85eae5SJens Wiklander paddr_t pa = 0; 165fe85eae5SJens Wiklander vaddr_t va = 0; 166fe85eae5SJens Wiklander size_t n = 0; 167fe85eae5SJens Wiklander vaddr_t tmp_va = 0; 168fe85eae5SJens Wiklander paddr_t tmp_pa = 0; 169fe85eae5SJens Wiklander size_t tmp_n = 0; 170fe85eae5SJens Wiklander 171fe85eae5SJens Wiklander assert(boot_mem_desc); 172fe85eae5SJens Wiklander 173fe85eae5SJens Wiklander n = boot_mem_desc->mem_start - boot_mem_desc->orig_mem_start; 174fe85eae5SJens Wiklander DMSG("Allocated %zu bytes at va %#"PRIxVA" pa %#"PRIxPA, 175fe85eae5SJens Wiklander n, boot_mem_desc->orig_mem_start, 176fe85eae5SJens Wiklander vaddr_to_phys(boot_mem_desc->orig_mem_start)); 177fe85eae5SJens Wiklander 178fe85eae5SJens Wiklander DMSG("Tempalloc %zu bytes at va %#"PRIxVA, 179fe85eae5SJens Wiklander (size_t)(boot_mem_desc->orig_mem_end - boot_mem_desc->mem_end), 180fe85eae5SJens Wiklander boot_mem_desc->mem_end); 181fe85eae5SJens Wiklander 182fe85eae5SJens Wiklander if (IS_ENABLED(CFG_WITH_PAGER)) 183fe85eae5SJens Wiklander goto out; 184fe85eae5SJens Wiklander 185fe85eae5SJens Wiklander pa = vaddr_to_phys(ROUNDUP(boot_mem_desc->orig_mem_start, 186fe85eae5SJens Wiklander SMALL_PAGE_SIZE)); 187fe85eae5SJens Wiklander mm = nex_phys_mem_mm_find(pa); 188fe85eae5SJens Wiklander if (!mm) 189fe85eae5SJens Wiklander panic(); 190fe85eae5SJens Wiklander 191fe85eae5SJens Wiklander va = ROUNDUP(boot_mem_desc->mem_start, SMALL_PAGE_SIZE); 192fe85eae5SJens Wiklander 193fe85eae5SJens Wiklander tmp_va = ROUNDDOWN(boot_mem_desc->mem_end, SMALL_PAGE_SIZE); 194fe85eae5SJens Wiklander tmp_n = boot_mem_desc->orig_mem_end - tmp_va; 195fe85eae5SJens Wiklander tmp_pa = vaddr_to_phys(tmp_va); 196fe85eae5SJens Wiklander 197fe85eae5SJens Wiklander pa = tee_mm_get_smem(mm); 198fe85eae5SJens Wiklander n = vaddr_to_phys(boot_mem_desc->mem_start) - pa; 199fe85eae5SJens Wiklander tee_mm_free(mm); 200fe85eae5SJens Wiklander DMSG("Carving out %#"PRIxPA"..%#"PRIxPA, pa, pa + n - 1); 201fe85eae5SJens Wiklander mm = nex_phys_mem_alloc2(pa, n); 202fe85eae5SJens Wiklander if (!mm) 203fe85eae5SJens Wiklander panic(); 204fe85eae5SJens Wiklander mm = nex_phys_mem_alloc2(tmp_pa, tmp_n); 205fe85eae5SJens Wiklander if (!mm) 206fe85eae5SJens Wiklander panic(); 207fe85eae5SJens Wiklander 208fe85eae5SJens Wiklander n = tmp_va - boot_mem_desc->mem_start; 209fe85eae5SJens Wiklander DMSG("Releasing %zu bytes from va %#"PRIxVA, n, va); 210fe85eae5SJens Wiklander 211fe85eae5SJens Wiklander /* Unmap the now unused pages */ 212fe85eae5SJens Wiklander core_mmu_unmap_pages(va, n / SMALL_PAGE_SIZE); 213fe85eae5SJens Wiklander 214fe85eae5SJens Wiklander out: 215fe85eae5SJens Wiklander /* Stop further allocations. */ 216fe85eae5SJens Wiklander boot_mem_desc->mem_start = boot_mem_desc->mem_end; 217fe85eae5SJens Wiklander return va; 218fe85eae5SJens Wiklander } 219fe85eae5SJens Wiklander 220fe85eae5SJens Wiklander void boot_mem_release_tmp_alloc(void) 221fe85eae5SJens Wiklander { 222fe85eae5SJens Wiklander tee_mm_entry_t *mm = NULL; 223fe85eae5SJens Wiklander vaddr_t va = 0; 224fe85eae5SJens Wiklander paddr_t pa = 0; 225fe85eae5SJens Wiklander size_t n = 0; 226fe85eae5SJens Wiklander 227fe85eae5SJens Wiklander assert(boot_mem_desc && 228fe85eae5SJens Wiklander boot_mem_desc->mem_start == boot_mem_desc->mem_end); 229fe85eae5SJens Wiklander 230fe85eae5SJens Wiklander if (IS_ENABLED(CFG_WITH_PAGER)) { 231fe85eae5SJens Wiklander n = boot_mem_desc->orig_mem_end - boot_mem_desc->mem_end; 232fe85eae5SJens Wiklander va = boot_mem_desc->mem_end; 233fe85eae5SJens Wiklander boot_mem_desc = NULL; 234fe85eae5SJens Wiklander DMSG("Releasing %zu bytes from va %#"PRIxVA, n, va); 235fe85eae5SJens Wiklander return; 236fe85eae5SJens Wiklander } 237fe85eae5SJens Wiklander 238fe85eae5SJens Wiklander va = ROUNDDOWN(boot_mem_desc->mem_end, SMALL_PAGE_SIZE); 239fe85eae5SJens Wiklander pa = vaddr_to_phys(va); 240fe85eae5SJens Wiklander 241fe85eae5SJens Wiklander mm = nex_phys_mem_mm_find(pa); 242fe85eae5SJens Wiklander if (!mm) 243fe85eae5SJens Wiklander panic(); 244fe85eae5SJens Wiklander assert(pa == tee_mm_get_smem(mm)); 245fe85eae5SJens Wiklander n = tee_mm_get_bytes(mm); 246fe85eae5SJens Wiklander 247fe85eae5SJens Wiklander /* Boot memory allocation is now done */ 248fe85eae5SJens Wiklander boot_mem_desc = NULL; 249fe85eae5SJens Wiklander 250fe85eae5SJens Wiklander DMSG("Releasing %zu bytes from va %#"PRIxVA, n, va); 251fe85eae5SJens Wiklander 252fe85eae5SJens Wiklander /* Unmap the now unused pages */ 253fe85eae5SJens Wiklander core_mmu_unmap_pages(va, n / SMALL_PAGE_SIZE); 254fe85eae5SJens Wiklander } 255