17509ff7cSJens Wiklander // SPDX-License-Identifier: BSD-2-Clause 27509ff7cSJens Wiklander /* 37509ff7cSJens Wiklander * Copyright (c) 2019, Linaro Limited 4af78e1b1SImre Kis * Copyright (c) 2020-2023, Arm Limited 57509ff7cSJens Wiklander */ 67509ff7cSJens Wiklander 77509ff7cSJens Wiklander #include <assert.h> 8e84a7da4SRuchika Gupta #include <config.h> 9e84a7da4SRuchika Gupta #include <confine_array_index.h> 107509ff7cSJens Wiklander #include <elf32.h> 117509ff7cSJens Wiklander #include <elf64.h> 127509ff7cSJens Wiklander #include <elf_common.h> 1365137432SJens Wiklander #include <ldelf.h> 149d224046SJerome Forissier #include <link.h> 1565137432SJens Wiklander #include <stdio.h> 167509ff7cSJens Wiklander #include <stdlib.h> 177509ff7cSJens Wiklander #include <string_ext.h> 187509ff7cSJens Wiklander #include <string.h> 197509ff7cSJens Wiklander #include <tee_api_types.h> 20791ee55cSJerome Forissier #include <tee_internal_api_extensions.h> 217f752871SJerome Forissier #include <unw/unwind.h> 227509ff7cSJens Wiklander #include <user_ta_header.h> 23bc1d13c1SJens Wiklander #include <util.h> 247509ff7cSJens Wiklander 257509ff7cSJens Wiklander #include "sys.h" 267509ff7cSJens Wiklander #include "ta_elf.h" 277509ff7cSJens Wiklander 289d224046SJerome Forissier /* 299d224046SJerome Forissier * Layout of a 32-bit struct dl_phdr_info for a 64-bit ldelf to access a 32-bit 309d224046SJerome Forissier * TA 319d224046SJerome Forissier */ 329d224046SJerome Forissier struct dl_phdr_info32 { 339d224046SJerome Forissier uint32_t dlpi_addr; 349d224046SJerome Forissier uint32_t dlpi_name; 359d224046SJerome Forissier uint32_t dlpi_phdr; 369d224046SJerome Forissier uint16_t dlpi_phnum; 379d224046SJerome Forissier uint64_t dlpi_adds; 389d224046SJerome Forissier uint64_t dlpi_subs; 399d224046SJerome Forissier uint32_t dlpi_tls_modid; 409d224046SJerome Forissier uint32_t dlpi_tls_data; 419d224046SJerome Forissier }; 429d224046SJerome Forissier 4365137432SJens Wiklander static vaddr_t ta_stack; 440242833aSJens Wiklander static vaddr_t ta_stack_size; 4565137432SJens Wiklander 467509ff7cSJens Wiklander struct ta_elf_queue main_elf_queue = TAILQ_HEAD_INITIALIZER(main_elf_queue); 477509ff7cSJens Wiklander 48c88ba125SJerome Forissier /* 49c88ba125SJerome Forissier * Main application is always ID 1, shared libraries with TLS take IDs 2 and 50c88ba125SJerome Forissier * above 51c88ba125SJerome Forissier */ 52c88ba125SJerome Forissier static void assign_tls_mod_id(struct ta_elf *elf) 53c88ba125SJerome Forissier { 54c88ba125SJerome Forissier static size_t last_tls_mod_id = 1; 55c88ba125SJerome Forissier 56c88ba125SJerome Forissier if (elf->is_main) 57c88ba125SJerome Forissier assert(last_tls_mod_id == 1); /* Main always comes first */ 58c88ba125SJerome Forissier elf->tls_mod_id = last_tls_mod_id++; 59c88ba125SJerome Forissier } 60c88ba125SJerome Forissier 61ebef121cSJerome Forissier static struct ta_elf *queue_elf_helper(const TEE_UUID *uuid) 627509ff7cSJens Wiklander { 63ebef121cSJerome Forissier struct ta_elf *elf = calloc(1, sizeof(*elf)); 647509ff7cSJens Wiklander 657509ff7cSJens Wiklander if (!elf) 66ebef121cSJerome Forissier return NULL; 677509ff7cSJens Wiklander 687509ff7cSJens Wiklander TAILQ_INIT(&elf->segs); 697509ff7cSJens Wiklander 707509ff7cSJens Wiklander elf->uuid = *uuid; 717509ff7cSJens Wiklander TAILQ_INSERT_TAIL(&main_elf_queue, elf, link); 727509ff7cSJens Wiklander return elf; 737509ff7cSJens Wiklander } 747509ff7cSJens Wiklander 75ebef121cSJerome Forissier static struct ta_elf *queue_elf(const TEE_UUID *uuid) 76ebef121cSJerome Forissier { 77ebef121cSJerome Forissier struct ta_elf *elf = ta_elf_find_elf(uuid); 78ebef121cSJerome Forissier 79ebef121cSJerome Forissier if (elf) 80ebef121cSJerome Forissier return NULL; 81ebef121cSJerome Forissier 82ebef121cSJerome Forissier elf = queue_elf_helper(uuid); 83ebef121cSJerome Forissier if (!elf) 84ebef121cSJerome Forissier err(TEE_ERROR_OUT_OF_MEMORY, "queue_elf_helper"); 85ebef121cSJerome Forissier 86ebef121cSJerome Forissier return elf; 87ebef121cSJerome Forissier } 88ebef121cSJerome Forissier 89ebef121cSJerome Forissier struct ta_elf *ta_elf_find_elf(const TEE_UUID *uuid) 90ebef121cSJerome Forissier { 91ebef121cSJerome Forissier struct ta_elf *elf = NULL; 92ebef121cSJerome Forissier 93ebef121cSJerome Forissier TAILQ_FOREACH(elf, &main_elf_queue, link) 94ebef121cSJerome Forissier if (!memcmp(uuid, &elf->uuid, sizeof(*uuid))) 95ebef121cSJerome Forissier return elf; 96ebef121cSJerome Forissier 97ebef121cSJerome Forissier return NULL; 98ebef121cSJerome Forissier } 99ebef121cSJerome Forissier 1008fab4371Sliushiwei #if defined(ARM32) || defined(ARM64) 1017509ff7cSJens Wiklander static TEE_Result e32_parse_ehdr(struct ta_elf *elf, Elf32_Ehdr *ehdr) 1027509ff7cSJens Wiklander { 1037509ff7cSJens Wiklander if (ehdr->e_ident[EI_VERSION] != EV_CURRENT || 1047509ff7cSJens Wiklander ehdr->e_ident[EI_CLASS] != ELFCLASS32 || 1057509ff7cSJens Wiklander ehdr->e_ident[EI_DATA] != ELFDATA2LSB || 1065f7f88c6SSumit Garg (ehdr->e_ident[EI_OSABI] != ELFOSABI_NONE && 1075f7f88c6SSumit Garg ehdr->e_ident[EI_OSABI] != ELFOSABI_ARM) || 1087509ff7cSJens Wiklander ehdr->e_type != ET_DYN || ehdr->e_machine != EM_ARM || 1097509ff7cSJens Wiklander #ifndef CFG_WITH_VFP 1107509ff7cSJens Wiklander (ehdr->e_flags & EF_ARM_ABI_FLOAT_HARD) || 1117509ff7cSJens Wiklander #endif 1127509ff7cSJens Wiklander ehdr->e_phentsize != sizeof(Elf32_Phdr) || 1137509ff7cSJens Wiklander ehdr->e_shentsize != sizeof(Elf32_Shdr)) 1147509ff7cSJens Wiklander return TEE_ERROR_BAD_FORMAT; 1157509ff7cSJens Wiklander 1165f7f88c6SSumit Garg if (ehdr->e_ident[EI_OSABI] == ELFOSABI_NONE && 1175f7f88c6SSumit Garg (ehdr->e_flags & EF_ARM_ABIMASK) != EF_ARM_ABI_V5) 1185f7f88c6SSumit Garg return TEE_ERROR_BAD_FORMAT; 1195f7f88c6SSumit Garg 1205f7f88c6SSumit Garg if (ehdr->e_ident[EI_OSABI] == ELFOSABI_ARM && 1215f7f88c6SSumit Garg (ehdr->e_flags & EF_ARM_ABIMASK) != EF_ARM_ABI_UNKNOWN) 1225f7f88c6SSumit Garg return TEE_ERROR_BAD_FORMAT; 1235f7f88c6SSumit Garg 1247509ff7cSJens Wiklander elf->is_32bit = true; 1257509ff7cSJens Wiklander elf->e_entry = ehdr->e_entry; 1267509ff7cSJens Wiklander elf->e_phoff = ehdr->e_phoff; 1277509ff7cSJens Wiklander elf->e_shoff = ehdr->e_shoff; 1287509ff7cSJens Wiklander elf->e_phnum = ehdr->e_phnum; 1297509ff7cSJens Wiklander elf->e_shnum = ehdr->e_shnum; 1307509ff7cSJens Wiklander elf->e_phentsize = ehdr->e_phentsize; 1317509ff7cSJens Wiklander elf->e_shentsize = ehdr->e_shentsize; 1327509ff7cSJens Wiklander 1337509ff7cSJens Wiklander return TEE_SUCCESS; 1347509ff7cSJens Wiklander } 1357509ff7cSJens Wiklander 1367509ff7cSJens Wiklander #ifdef ARM64 1377509ff7cSJens Wiklander static TEE_Result e64_parse_ehdr(struct ta_elf *elf, Elf64_Ehdr *ehdr) 1387509ff7cSJens Wiklander { 1397509ff7cSJens Wiklander if (ehdr->e_ident[EI_VERSION] != EV_CURRENT || 1407509ff7cSJens Wiklander ehdr->e_ident[EI_CLASS] != ELFCLASS64 || 1417509ff7cSJens Wiklander ehdr->e_ident[EI_DATA] != ELFDATA2LSB || 1427509ff7cSJens Wiklander ehdr->e_ident[EI_OSABI] != ELFOSABI_NONE || 1437509ff7cSJens Wiklander ehdr->e_type != ET_DYN || ehdr->e_machine != EM_AARCH64 || 1447509ff7cSJens Wiklander ehdr->e_flags || ehdr->e_phentsize != sizeof(Elf64_Phdr) || 1457509ff7cSJens Wiklander ehdr->e_shentsize != sizeof(Elf64_Shdr)) 1467509ff7cSJens Wiklander return TEE_ERROR_BAD_FORMAT; 1477509ff7cSJens Wiklander 1487509ff7cSJens Wiklander 1497509ff7cSJens Wiklander elf->is_32bit = false; 1507509ff7cSJens Wiklander elf->e_entry = ehdr->e_entry; 1517509ff7cSJens Wiklander elf->e_phoff = ehdr->e_phoff; 1527509ff7cSJens Wiklander elf->e_shoff = ehdr->e_shoff; 1537509ff7cSJens Wiklander elf->e_phnum = ehdr->e_phnum; 1547509ff7cSJens Wiklander elf->e_shnum = ehdr->e_shnum; 1557509ff7cSJens Wiklander elf->e_phentsize = ehdr->e_phentsize; 1567509ff7cSJens Wiklander elf->e_shentsize = ehdr->e_shentsize; 1577509ff7cSJens Wiklander 1587509ff7cSJens Wiklander return TEE_SUCCESS; 1597509ff7cSJens Wiklander } 1607509ff7cSJens Wiklander #else /*ARM64*/ 1617509ff7cSJens Wiklander static TEE_Result e64_parse_ehdr(struct ta_elf *elf __unused, 1627509ff7cSJens Wiklander Elf64_Ehdr *ehdr __unused) 1637509ff7cSJens Wiklander { 1647509ff7cSJens Wiklander return TEE_ERROR_NOT_SUPPORTED; 1657509ff7cSJens Wiklander } 1667509ff7cSJens Wiklander #endif /*ARM64*/ 1678fab4371Sliushiwei #endif /* ARM32 || ARM64 */ 1688fab4371Sliushiwei 1698fab4371Sliushiwei #if defined(RV64) 1708fab4371Sliushiwei static TEE_Result e32_parse_ehdr(struct ta_elf *elf __unused, 1718fab4371Sliushiwei Elf32_Ehdr *ehdr __unused) 1728fab4371Sliushiwei { 1738fab4371Sliushiwei return TEE_ERROR_BAD_FORMAT; 1748fab4371Sliushiwei } 1758fab4371Sliushiwei 1768fab4371Sliushiwei static TEE_Result e64_parse_ehdr(struct ta_elf *elf, Elf64_Ehdr *ehdr) 1778fab4371Sliushiwei { 1788fab4371Sliushiwei if (ehdr->e_ident[EI_VERSION] != EV_CURRENT || 1798fab4371Sliushiwei ehdr->e_ident[EI_CLASS] != ELFCLASS64 || 1808fab4371Sliushiwei ehdr->e_ident[EI_DATA] != ELFDATA2LSB || 1818fab4371Sliushiwei ehdr->e_ident[EI_OSABI] != ELFOSABI_NONE || 1828fab4371Sliushiwei ehdr->e_type != ET_DYN || ehdr->e_machine != EM_RISCV || 1838fab4371Sliushiwei ehdr->e_phentsize != sizeof(Elf64_Phdr) || 1848fab4371Sliushiwei ehdr->e_shentsize != sizeof(Elf64_Shdr)) 1858fab4371Sliushiwei return TEE_ERROR_BAD_FORMAT; 1868fab4371Sliushiwei 1878fab4371Sliushiwei elf->is_32bit = false; 1888fab4371Sliushiwei elf->e_entry = ehdr->e_entry; 1898fab4371Sliushiwei elf->e_phoff = ehdr->e_phoff; 1908fab4371Sliushiwei elf->e_shoff = ehdr->e_shoff; 1918fab4371Sliushiwei elf->e_phnum = ehdr->e_phnum; 1928fab4371Sliushiwei elf->e_shnum = ehdr->e_shnum; 1938fab4371Sliushiwei elf->e_phentsize = ehdr->e_phentsize; 1948fab4371Sliushiwei elf->e_shentsize = ehdr->e_shentsize; 1958fab4371Sliushiwei 1968fab4371Sliushiwei return TEE_SUCCESS; 1978fab4371Sliushiwei } 1988fab4371Sliushiwei #endif /* RV64 */ 1997509ff7cSJens Wiklander 200bc1d13c1SJens Wiklander static void check_phdr_in_range(struct ta_elf *elf, unsigned int type, 201bc1d13c1SJens Wiklander vaddr_t addr, size_t memsz) 202bc1d13c1SJens Wiklander { 203bc1d13c1SJens Wiklander vaddr_t max_addr = 0; 204bc1d13c1SJens Wiklander 205bc1d13c1SJens Wiklander if (ADD_OVERFLOW(addr, memsz, &max_addr)) 206bc1d13c1SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Program header %#x overflow", type); 207bc1d13c1SJens Wiklander 208bc1d13c1SJens Wiklander /* 209bc1d13c1SJens Wiklander * elf->load_addr and elf->max_addr are both using the 210bc1d13c1SJens Wiklander * final virtual addresses, while this program header is 211bc1d13c1SJens Wiklander * relative to 0. 212bc1d13c1SJens Wiklander */ 213bc1d13c1SJens Wiklander if (max_addr > elf->max_addr - elf->load_addr) 214bc1d13c1SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Program header %#x out of bounds", 215bc1d13c1SJens Wiklander type); 216bc1d13c1SJens Wiklander } 217bc1d13c1SJens Wiklander 2187509ff7cSJens Wiklander static void read_dyn(struct ta_elf *elf, vaddr_t addr, 2197509ff7cSJens Wiklander size_t idx, unsigned int *tag, size_t *val) 2207509ff7cSJens Wiklander { 2217509ff7cSJens Wiklander if (elf->is_32bit) { 2227509ff7cSJens Wiklander Elf32_Dyn *dyn = (Elf32_Dyn *)(addr + elf->load_addr); 2237509ff7cSJens Wiklander 2247509ff7cSJens Wiklander *tag = dyn[idx].d_tag; 2257509ff7cSJens Wiklander *val = dyn[idx].d_un.d_val; 2267509ff7cSJens Wiklander } else { 2277509ff7cSJens Wiklander Elf64_Dyn *dyn = (Elf64_Dyn *)(addr + elf->load_addr); 2287509ff7cSJens Wiklander 2297509ff7cSJens Wiklander *tag = dyn[idx].d_tag; 2307509ff7cSJens Wiklander *val = dyn[idx].d_un.d_val; 2317509ff7cSJens Wiklander } 2327509ff7cSJens Wiklander } 2337509ff7cSJens Wiklander 234ab49cb75SJens Wiklander static void check_range(struct ta_elf *elf, const char *name, const void *ptr, 235ab49cb75SJens Wiklander size_t sz) 236ab49cb75SJens Wiklander { 237ab49cb75SJens Wiklander size_t max_addr = 0; 238ab49cb75SJens Wiklander 239ab49cb75SJens Wiklander if ((vaddr_t)ptr < elf->load_addr) 240e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "%s %p out of range", name, ptr); 241ab49cb75SJens Wiklander 242ab49cb75SJens Wiklander if (ADD_OVERFLOW((vaddr_t)ptr, sz, &max_addr)) 243e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "%s range overflow", name); 244ab49cb75SJens Wiklander 245ab49cb75SJens Wiklander if (max_addr > elf->max_addr) 246e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, 247ab49cb75SJens Wiklander "%s %p..%#zx out of range", name, ptr, max_addr); 248ab49cb75SJens Wiklander } 249ab49cb75SJens Wiklander 2504f5bc11dSJens Wiklander static void check_hashtab(struct ta_elf *elf, void *ptr, size_t num_buckets, 2514f5bc11dSJens Wiklander size_t num_chains) 2524f5bc11dSJens Wiklander { 2534f5bc11dSJens Wiklander /* 2544f5bc11dSJens Wiklander * Starting from 2 as the first two words are mandatory and hold 2554f5bc11dSJens Wiklander * num_buckets and num_chains. So this function is called twice, 2564f5bc11dSJens Wiklander * first to see that there's indeed room for num_buckets and 2574f5bc11dSJens Wiklander * num_chains and then to see that all of it fits. 2584f5bc11dSJens Wiklander * See http://www.sco.com/developers/gabi/latest/ch5.dynamic.html#hash 2594f5bc11dSJens Wiklander */ 2604f5bc11dSJens Wiklander size_t num_words = 2; 2614f5bc11dSJens Wiklander size_t sz = 0; 2624f5bc11dSJens Wiklander 263be501eb1SJorge Ramirez-Ortiz if (!IS_ALIGNED_WITH_TYPE(ptr, uint32_t)) 264dcf64f87SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Bad alignment of DT_HASH %p", ptr); 2654f5bc11dSJens Wiklander 2664f5bc11dSJens Wiklander if (ADD_OVERFLOW(num_words, num_buckets, &num_words) || 2674f5bc11dSJens Wiklander ADD_OVERFLOW(num_words, num_chains, &num_words) || 268ab49cb75SJens Wiklander MUL_OVERFLOW(num_words, sizeof(uint32_t), &sz)) 269dcf64f87SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "DT_HASH overflow"); 2704f5bc11dSJens Wiklander 271dcf64f87SJens Wiklander check_range(elf, "DT_HASH", ptr, sz); 2724f5bc11dSJens Wiklander } 2734f5bc11dSJens Wiklander 274bdf82531SJerome Forissier static void check_gnu_hashtab(struct ta_elf *elf, void *ptr) 275bdf82531SJerome Forissier { 276bdf82531SJerome Forissier struct gnu_hashtab *h = ptr; 277bdf82531SJerome Forissier size_t num_words = 4; /* nbuckets, symoffset, bloom_size, bloom_shift */ 278bdf82531SJerome Forissier size_t bloom_words = 0; 279bdf82531SJerome Forissier size_t sz = 0; 280bdf82531SJerome Forissier 281bdf82531SJerome Forissier if (!IS_ALIGNED_WITH_TYPE(ptr, uint32_t)) 282bdf82531SJerome Forissier err(TEE_ERROR_BAD_FORMAT, "Bad alignment of DT_GNU_HASH %p", 283bdf82531SJerome Forissier ptr); 284bdf82531SJerome Forissier 285bdf82531SJerome Forissier if (elf->gnu_hashtab_size < sizeof(*h)) 286bdf82531SJerome Forissier err(TEE_ERROR_BAD_FORMAT, "DT_GNU_HASH too small"); 287bdf82531SJerome Forissier 288bdf82531SJerome Forissier /* Check validity of h->nbuckets and h->bloom_size */ 289bdf82531SJerome Forissier 290bdf82531SJerome Forissier if (elf->is_32bit) 291bdf82531SJerome Forissier bloom_words = h->bloom_size; 292bdf82531SJerome Forissier else 293bdf82531SJerome Forissier bloom_words = h->bloom_size * 2; 294bdf82531SJerome Forissier if (ADD_OVERFLOW(num_words, h->nbuckets, &num_words) || 295bdf82531SJerome Forissier ADD_OVERFLOW(num_words, bloom_words, &num_words) || 296bdf82531SJerome Forissier MUL_OVERFLOW(num_words, sizeof(uint32_t), &sz) || 297bdf82531SJerome Forissier sz > elf->gnu_hashtab_size) 298bdf82531SJerome Forissier err(TEE_ERROR_BAD_FORMAT, "DT_GNU_HASH overflow"); 299bdf82531SJerome Forissier } 300bdf82531SJerome Forissier 3019f392760SJerome Forissier static void save_hashtab(struct ta_elf *elf) 3029f392760SJerome Forissier { 3034f5bc11dSJens Wiklander uint32_t *hashtab = NULL; 3049f392760SJerome Forissier size_t n = 0; 3059f392760SJerome Forissier 3069f392760SJerome Forissier if (elf->is_32bit) { 3076627f23eSJerome Forissier Elf32_Shdr *shdr = elf->shdr; 3089f392760SJerome Forissier 3096627f23eSJerome Forissier for (n = 0; n < elf->e_shnum; n++) { 310bdf82531SJerome Forissier void *addr = (void *)(vaddr_t)(shdr[n].sh_addr + 3116627f23eSJerome Forissier elf->load_addr); 312bdf82531SJerome Forissier 313bdf82531SJerome Forissier if (shdr[n].sh_type == SHT_HASH) { 314bdf82531SJerome Forissier elf->hashtab = addr; 315bdf82531SJerome Forissier } else if (shdr[n].sh_type == SHT_GNU_HASH) { 316bdf82531SJerome Forissier elf->gnu_hashtab = addr; 317bdf82531SJerome Forissier elf->gnu_hashtab_size = shdr[n].sh_size; 3186627f23eSJerome Forissier } 3196627f23eSJerome Forissier } 3209f392760SJerome Forissier } else { 3216627f23eSJerome Forissier Elf64_Shdr *shdr = elf->shdr; 3229f392760SJerome Forissier 3236627f23eSJerome Forissier for (n = 0; n < elf->e_shnum; n++) { 324bdf82531SJerome Forissier void *addr = (void *)(vaddr_t)(shdr[n].sh_addr + 3256627f23eSJerome Forissier elf->load_addr); 326bdf82531SJerome Forissier 327bdf82531SJerome Forissier if (shdr[n].sh_type == SHT_HASH) { 328bdf82531SJerome Forissier elf->hashtab = addr; 329bdf82531SJerome Forissier } else if (shdr[n].sh_type == SHT_GNU_HASH) { 330bdf82531SJerome Forissier elf->gnu_hashtab = addr; 331bdf82531SJerome Forissier elf->gnu_hashtab_size = shdr[n].sh_size; 3326627f23eSJerome Forissier } 3336627f23eSJerome Forissier } 3349f392760SJerome Forissier } 3354f5bc11dSJens Wiklander 336bdf82531SJerome Forissier if (elf->hashtab) { 3374f5bc11dSJens Wiklander check_hashtab(elf, elf->hashtab, 0, 0); 3384f5bc11dSJens Wiklander hashtab = elf->hashtab; 3394f5bc11dSJens Wiklander check_hashtab(elf, elf->hashtab, hashtab[0], hashtab[1]); 3409f392760SJerome Forissier } 341bdf82531SJerome Forissier if (elf->gnu_hashtab) 342bdf82531SJerome Forissier check_gnu_hashtab(elf, elf->gnu_hashtab); 343bdf82531SJerome Forissier } 3449f392760SJerome Forissier 3459d224046SJerome Forissier static void save_soname_from_segment(struct ta_elf *elf, unsigned int type, 3469d224046SJerome Forissier vaddr_t addr, size_t memsz) 3479d224046SJerome Forissier { 3489d224046SJerome Forissier size_t dyn_entsize = 0; 3499d224046SJerome Forissier size_t num_dyns = 0; 3509d224046SJerome Forissier size_t n = 0; 3519d224046SJerome Forissier unsigned int tag = 0; 3529d224046SJerome Forissier size_t val = 0; 3539d224046SJerome Forissier char *str_tab = NULL; 3549d224046SJerome Forissier 3559d224046SJerome Forissier if (type != PT_DYNAMIC) 3569d224046SJerome Forissier return; 3579d224046SJerome Forissier 3589d224046SJerome Forissier if (elf->is_32bit) 3599d224046SJerome Forissier dyn_entsize = sizeof(Elf32_Dyn); 3609d224046SJerome Forissier else 3619d224046SJerome Forissier dyn_entsize = sizeof(Elf64_Dyn); 3629d224046SJerome Forissier 3639d224046SJerome Forissier assert(!(memsz % dyn_entsize)); 3649d224046SJerome Forissier num_dyns = memsz / dyn_entsize; 3659d224046SJerome Forissier 3669d224046SJerome Forissier for (n = 0; n < num_dyns; n++) { 3679d224046SJerome Forissier read_dyn(elf, addr, n, &tag, &val); 3689d224046SJerome Forissier if (tag == DT_STRTAB) { 3699d224046SJerome Forissier str_tab = (char *)(val + elf->load_addr); 3709d224046SJerome Forissier break; 3719d224046SJerome Forissier } 3729d224046SJerome Forissier } 3739d224046SJerome Forissier for (n = 0; n < num_dyns; n++) { 3749d224046SJerome Forissier read_dyn(elf, addr, n, &tag, &val); 3759d224046SJerome Forissier if (tag == DT_SONAME) { 3769d224046SJerome Forissier elf->soname = str_tab + val; 3779d224046SJerome Forissier break; 3789d224046SJerome Forissier } 3799d224046SJerome Forissier } 3809d224046SJerome Forissier } 3819d224046SJerome Forissier 3829d224046SJerome Forissier static void save_soname(struct ta_elf *elf) 3839d224046SJerome Forissier { 3849d224046SJerome Forissier size_t n = 0; 3859d224046SJerome Forissier 3869d224046SJerome Forissier if (elf->is_32bit) { 3879d224046SJerome Forissier Elf32_Phdr *phdr = elf->phdr; 3889d224046SJerome Forissier 3899d224046SJerome Forissier for (n = 0; n < elf->e_phnum; n++) 3909d224046SJerome Forissier save_soname_from_segment(elf, phdr[n].p_type, 3919d224046SJerome Forissier phdr[n].p_vaddr, 3929d224046SJerome Forissier phdr[n].p_memsz); 3939d224046SJerome Forissier } else { 3949d224046SJerome Forissier Elf64_Phdr *phdr = elf->phdr; 3959d224046SJerome Forissier 3969d224046SJerome Forissier for (n = 0; n < elf->e_phnum; n++) 3979d224046SJerome Forissier save_soname_from_segment(elf, phdr[n].p_type, 3989d224046SJerome Forissier phdr[n].p_vaddr, 3999d224046SJerome Forissier phdr[n].p_memsz); 4009d224046SJerome Forissier } 4019d224046SJerome Forissier } 4029d224046SJerome Forissier 4037509ff7cSJens Wiklander static void e32_save_symtab(struct ta_elf *elf, size_t tab_idx) 4047509ff7cSJens Wiklander { 4057509ff7cSJens Wiklander Elf32_Shdr *shdr = elf->shdr; 4067509ff7cSJens Wiklander size_t str_idx = shdr[tab_idx].sh_link; 4077509ff7cSJens Wiklander 4087509ff7cSJens Wiklander elf->dynsymtab = (void *)(shdr[tab_idx].sh_addr + elf->load_addr); 409be501eb1SJorge Ramirez-Ortiz if (!IS_ALIGNED_WITH_TYPE(elf->dynsymtab, Elf32_Sym)) 410e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Bad alignment of dynsymtab %p", 411ab49cb75SJens Wiklander elf->dynsymtab); 412ab49cb75SJens Wiklander check_range(elf, "Dynsymtab", elf->dynsymtab, shdr[tab_idx].sh_size); 413ab49cb75SJens Wiklander 414ab49cb75SJens Wiklander if (shdr[tab_idx].sh_size % sizeof(Elf32_Sym)) 415e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, 416ab49cb75SJens Wiklander "Size of dynsymtab not an even multiple of Elf32_Sym"); 4177509ff7cSJens Wiklander elf->num_dynsyms = shdr[tab_idx].sh_size / sizeof(Elf32_Sym); 4187509ff7cSJens Wiklander 419ab49cb75SJens Wiklander if (str_idx >= elf->e_shnum) 420e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Dynstr section index out of range"); 4217509ff7cSJens Wiklander elf->dynstr = (void *)(shdr[str_idx].sh_addr + elf->load_addr); 422ab49cb75SJens Wiklander check_range(elf, "Dynstr", elf->dynstr, shdr[str_idx].sh_size); 423ab49cb75SJens Wiklander 4247509ff7cSJens Wiklander elf->dynstr_size = shdr[str_idx].sh_size; 4257509ff7cSJens Wiklander } 4267509ff7cSJens Wiklander 4277509ff7cSJens Wiklander static void e64_save_symtab(struct ta_elf *elf, size_t tab_idx) 4287509ff7cSJens Wiklander { 4297509ff7cSJens Wiklander Elf64_Shdr *shdr = elf->shdr; 4307509ff7cSJens Wiklander size_t str_idx = shdr[tab_idx].sh_link; 4317509ff7cSJens Wiklander 4327509ff7cSJens Wiklander elf->dynsymtab = (void *)(vaddr_t)(shdr[tab_idx].sh_addr + 4337509ff7cSJens Wiklander elf->load_addr); 434ab49cb75SJens Wiklander 435be501eb1SJorge Ramirez-Ortiz if (!IS_ALIGNED_WITH_TYPE(elf->dynsymtab, Elf64_Sym)) 436dcf64f87SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Bad alignment of .dynsym/DYNSYM %p", 437ab49cb75SJens Wiklander elf->dynsymtab); 438dcf64f87SJens Wiklander check_range(elf, ".dynsym/DYNSYM", elf->dynsymtab, 439dcf64f87SJens Wiklander shdr[tab_idx].sh_size); 440ab49cb75SJens Wiklander 441ab49cb75SJens Wiklander if (shdr[tab_idx].sh_size % sizeof(Elf64_Sym)) 442e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, 443dcf64f87SJens Wiklander "Size of .dynsym/DYNSYM not an even multiple of Elf64_Sym"); 4447509ff7cSJens Wiklander elf->num_dynsyms = shdr[tab_idx].sh_size / sizeof(Elf64_Sym); 4457509ff7cSJens Wiklander 446ab49cb75SJens Wiklander if (str_idx >= elf->e_shnum) 447dcf64f87SJens Wiklander err(TEE_ERROR_BAD_FORMAT, 448dcf64f87SJens Wiklander ".dynstr/STRTAB section index out of range"); 4497509ff7cSJens Wiklander elf->dynstr = (void *)(vaddr_t)(shdr[str_idx].sh_addr + elf->load_addr); 450dcf64f87SJens Wiklander check_range(elf, ".dynstr/STRTAB", elf->dynstr, shdr[str_idx].sh_size); 451ab49cb75SJens Wiklander 4527509ff7cSJens Wiklander elf->dynstr_size = shdr[str_idx].sh_size; 4537509ff7cSJens Wiklander } 4547509ff7cSJens Wiklander 4557509ff7cSJens Wiklander static void save_symtab(struct ta_elf *elf) 4567509ff7cSJens Wiklander { 4577509ff7cSJens Wiklander size_t n = 0; 4587509ff7cSJens Wiklander 4597509ff7cSJens Wiklander if (elf->is_32bit) { 4607509ff7cSJens Wiklander Elf32_Shdr *shdr = elf->shdr; 4617509ff7cSJens Wiklander 4627509ff7cSJens Wiklander for (n = 0; n < elf->e_shnum; n++) { 4637509ff7cSJens Wiklander if (shdr[n].sh_type == SHT_DYNSYM) { 4647509ff7cSJens Wiklander e32_save_symtab(elf, n); 4657509ff7cSJens Wiklander break; 4667509ff7cSJens Wiklander } 4677509ff7cSJens Wiklander } 4687509ff7cSJens Wiklander } else { 4697509ff7cSJens Wiklander Elf64_Shdr *shdr = elf->shdr; 4707509ff7cSJens Wiklander 4717509ff7cSJens Wiklander for (n = 0; n < elf->e_shnum; n++) { 4727509ff7cSJens Wiklander if (shdr[n].sh_type == SHT_DYNSYM) { 4737509ff7cSJens Wiklander e64_save_symtab(elf, n); 4747509ff7cSJens Wiklander break; 4757509ff7cSJens Wiklander } 4767509ff7cSJens Wiklander } 4777509ff7cSJens Wiklander 4787509ff7cSJens Wiklander } 4799f392760SJerome Forissier 4809f392760SJerome Forissier save_hashtab(elf); 4819d224046SJerome Forissier save_soname(elf); 4827509ff7cSJens Wiklander } 4837509ff7cSJens Wiklander 4847509ff7cSJens Wiklander static void init_elf(struct ta_elf *elf) 4857509ff7cSJens Wiklander { 4867509ff7cSJens Wiklander TEE_Result res = TEE_SUCCESS; 4877509ff7cSJens Wiklander vaddr_t va = 0; 488baa5161dSBalint Dobszay uint32_t flags = LDELF_MAP_FLAG_SHAREABLE; 489d2a6dea7SJens Wiklander size_t sz = 0; 4907509ff7cSJens Wiklander 4917509ff7cSJens Wiklander res = sys_open_ta_bin(&elf->uuid, &elf->handle); 4927509ff7cSJens Wiklander if (res) 4937509ff7cSJens Wiklander err(res, "sys_open_ta_bin(%pUl)", (void *)&elf->uuid); 4947509ff7cSJens Wiklander 4957509ff7cSJens Wiklander /* 4967509ff7cSJens Wiklander * Map it read-only executable when we're loading a library where 4977509ff7cSJens Wiklander * the ELF header is included in a load segment. 4987509ff7cSJens Wiklander */ 4997509ff7cSJens Wiklander if (!elf->is_main) 500baa5161dSBalint Dobszay flags |= LDELF_MAP_FLAG_EXECUTABLE; 50188796f89SJens Wiklander res = sys_map_ta_bin(&va, SMALL_PAGE_SIZE, flags, elf->handle, 0, 0, 0); 5027509ff7cSJens Wiklander if (res) 5037509ff7cSJens Wiklander err(res, "sys_map_ta_bin"); 5047509ff7cSJens Wiklander elf->ehdr_addr = va; 5057509ff7cSJens Wiklander if (!elf->is_main) { 5067509ff7cSJens Wiklander elf->load_addr = va; 5077509ff7cSJens Wiklander elf->max_addr = va + SMALL_PAGE_SIZE; 5087509ff7cSJens Wiklander elf->max_offs = SMALL_PAGE_SIZE; 5097509ff7cSJens Wiklander } 5107509ff7cSJens Wiklander 5117509ff7cSJens Wiklander if (!IS_ELF(*(Elf32_Ehdr *)va)) 5127509ff7cSJens Wiklander err(TEE_ERROR_BAD_FORMAT, "TA is not an ELF"); 5137509ff7cSJens Wiklander 5147509ff7cSJens Wiklander res = e32_parse_ehdr(elf, (void *)va); 5157509ff7cSJens Wiklander if (res == TEE_ERROR_BAD_FORMAT) 5167509ff7cSJens Wiklander res = e64_parse_ehdr(elf, (void *)va); 5177509ff7cSJens Wiklander if (res) 5187509ff7cSJens Wiklander err(res, "Cannot parse ELF"); 5197509ff7cSJens Wiklander 520d2a6dea7SJens Wiklander if (MUL_OVERFLOW(elf->e_phnum, elf->e_phentsize, &sz) || 521d2a6dea7SJens Wiklander ADD_OVERFLOW(sz, elf->e_phoff, &sz)) 522d2a6dea7SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Program headers size overflow"); 523d2a6dea7SJens Wiklander 524d2a6dea7SJens Wiklander if (sz > SMALL_PAGE_SIZE) 5257509ff7cSJens Wiklander err(TEE_ERROR_NOT_SUPPORTED, "Cannot read program headers"); 5267509ff7cSJens Wiklander 5277509ff7cSJens Wiklander elf->phdr = (void *)(va + elf->e_phoff); 5287509ff7cSJens Wiklander } 5297509ff7cSJens Wiklander 5307509ff7cSJens Wiklander static size_t roundup(size_t v) 5317509ff7cSJens Wiklander { 5327509ff7cSJens Wiklander return ROUNDUP(v, SMALL_PAGE_SIZE); 5337509ff7cSJens Wiklander } 5347509ff7cSJens Wiklander 5357509ff7cSJens Wiklander static size_t rounddown(size_t v) 5367509ff7cSJens Wiklander { 5377509ff7cSJens Wiklander return ROUNDDOWN(v, SMALL_PAGE_SIZE); 5387509ff7cSJens Wiklander } 5397509ff7cSJens Wiklander 5407509ff7cSJens Wiklander static void add_segment(struct ta_elf *elf, size_t offset, size_t vaddr, 5417509ff7cSJens Wiklander size_t filesz, size_t memsz, size_t flags, size_t align) 5427509ff7cSJens Wiklander { 5437509ff7cSJens Wiklander struct segment *seg = calloc(1, sizeof(*seg)); 5447509ff7cSJens Wiklander 5457509ff7cSJens Wiklander if (!seg) 5467509ff7cSJens Wiklander err(TEE_ERROR_OUT_OF_MEMORY, "calloc"); 5477509ff7cSJens Wiklander 548c5a3ce04SJens Wiklander if (memsz < filesz) 549c5a3ce04SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Memsz smaller than filesz"); 550c5a3ce04SJens Wiklander 5517509ff7cSJens Wiklander seg->offset = offset; 5527509ff7cSJens Wiklander seg->vaddr = vaddr; 5537509ff7cSJens Wiklander seg->filesz = filesz; 5547509ff7cSJens Wiklander seg->memsz = memsz; 5557509ff7cSJens Wiklander seg->flags = flags; 5567509ff7cSJens Wiklander seg->align = align; 5577509ff7cSJens Wiklander 5587509ff7cSJens Wiklander TAILQ_INSERT_TAIL(&elf->segs, seg, link); 5597509ff7cSJens Wiklander } 5607509ff7cSJens Wiklander 5617509ff7cSJens Wiklander static void parse_load_segments(struct ta_elf *elf) 5627509ff7cSJens Wiklander { 5637509ff7cSJens Wiklander size_t n = 0; 5647509ff7cSJens Wiklander 5657509ff7cSJens Wiklander if (elf->is_32bit) { 5667509ff7cSJens Wiklander Elf32_Phdr *phdr = elf->phdr; 5677509ff7cSJens Wiklander 5687509ff7cSJens Wiklander for (n = 0; n < elf->e_phnum; n++) 5690242833aSJens Wiklander if (phdr[n].p_type == PT_LOAD) { 5707509ff7cSJens Wiklander add_segment(elf, phdr[n].p_offset, 5717509ff7cSJens Wiklander phdr[n].p_vaddr, phdr[n].p_filesz, 5727509ff7cSJens Wiklander phdr[n].p_memsz, phdr[n].p_flags, 5737509ff7cSJens Wiklander phdr[n].p_align); 5740242833aSJens Wiklander } else if (phdr[n].p_type == PT_ARM_EXIDX) { 5750242833aSJens Wiklander elf->exidx_start = phdr[n].p_vaddr; 5760242833aSJens Wiklander elf->exidx_size = phdr[n].p_filesz; 577c88ba125SJerome Forissier } else if (phdr[n].p_type == PT_TLS) { 578c88ba125SJerome Forissier assign_tls_mod_id(elf); 5790242833aSJens Wiklander } 5807509ff7cSJens Wiklander } else { 5817509ff7cSJens Wiklander Elf64_Phdr *phdr = elf->phdr; 5827509ff7cSJens Wiklander 5837509ff7cSJens Wiklander for (n = 0; n < elf->e_phnum; n++) 584fe684948SJerome Forissier if (phdr[n].p_type == PT_LOAD) { 5857509ff7cSJens Wiklander add_segment(elf, phdr[n].p_offset, 5867509ff7cSJens Wiklander phdr[n].p_vaddr, phdr[n].p_filesz, 5877509ff7cSJens Wiklander phdr[n].p_memsz, phdr[n].p_flags, 5887509ff7cSJens Wiklander phdr[n].p_align); 589fe684948SJerome Forissier } else if (phdr[n].p_type == PT_TLS) { 590fe684948SJerome Forissier elf->tls_start = phdr[n].p_vaddr; 591fe684948SJerome Forissier elf->tls_filesz = phdr[n].p_filesz; 592fe684948SJerome Forissier elf->tls_memsz = phdr[n].p_memsz; 593e84a7da4SRuchika Gupta } else if (IS_ENABLED(CFG_TA_BTI) && 594e84a7da4SRuchika Gupta phdr[n].p_type == PT_GNU_PROPERTY) { 595e84a7da4SRuchika Gupta elf->prop_start = phdr[n].p_vaddr; 596e84a7da4SRuchika Gupta elf->prop_align = phdr[n].p_align; 597e84a7da4SRuchika Gupta elf->prop_memsz = phdr[n].p_memsz; 598fe684948SJerome Forissier } 5997509ff7cSJens Wiklander } 6007509ff7cSJens Wiklander } 6017509ff7cSJens Wiklander 6027509ff7cSJens Wiklander static void copy_remapped_to(struct ta_elf *elf, const struct segment *seg) 6037509ff7cSJens Wiklander { 6047509ff7cSJens Wiklander uint8_t *dst = (void *)(seg->vaddr + elf->load_addr); 6057509ff7cSJens Wiklander size_t n = 0; 6067509ff7cSJens Wiklander size_t offs = seg->offset; 6077509ff7cSJens Wiklander size_t num_bytes = seg->filesz; 6087509ff7cSJens Wiklander 6097509ff7cSJens Wiklander if (offs < elf->max_offs) { 6107509ff7cSJens Wiklander n = MIN(elf->max_offs - offs, num_bytes); 6117509ff7cSJens Wiklander memcpy(dst, (void *)(elf->max_addr + offs - elf->max_offs), n); 6127509ff7cSJens Wiklander dst += n; 6137509ff7cSJens Wiklander offs += n; 6147509ff7cSJens Wiklander num_bytes -= n; 6157509ff7cSJens Wiklander } 6167509ff7cSJens Wiklander 6177509ff7cSJens Wiklander if (num_bytes) { 6187509ff7cSJens Wiklander TEE_Result res = sys_copy_from_ta_bin(dst, num_bytes, 6197509ff7cSJens Wiklander elf->handle, offs); 6207509ff7cSJens Wiklander 6217509ff7cSJens Wiklander if (res) 6227509ff7cSJens Wiklander err(res, "sys_copy_from_ta_bin"); 6237509ff7cSJens Wiklander elf->max_offs += offs; 6247509ff7cSJens Wiklander } 6257509ff7cSJens Wiklander } 6267509ff7cSJens Wiklander 6277509ff7cSJens Wiklander static void adjust_segments(struct ta_elf *elf) 6287509ff7cSJens Wiklander { 6297509ff7cSJens Wiklander struct segment *seg = NULL; 6307509ff7cSJens Wiklander struct segment *prev_seg = NULL; 6317509ff7cSJens Wiklander size_t prev_end_addr = 0; 6327509ff7cSJens Wiklander size_t align = 0; 6337509ff7cSJens Wiklander size_t mask = 0; 6347509ff7cSJens Wiklander 6357509ff7cSJens Wiklander /* Sanity check */ 6367509ff7cSJens Wiklander TAILQ_FOREACH(seg, &elf->segs, link) { 6377509ff7cSJens Wiklander size_t dummy __maybe_unused = 0; 6387509ff7cSJens Wiklander 6397509ff7cSJens Wiklander assert(seg->align >= SMALL_PAGE_SIZE); 6407509ff7cSJens Wiklander assert(!ADD_OVERFLOW(seg->vaddr, seg->memsz, &dummy)); 6417509ff7cSJens Wiklander assert(seg->filesz <= seg->memsz); 6427509ff7cSJens Wiklander assert((seg->offset & SMALL_PAGE_MASK) == 6437509ff7cSJens Wiklander (seg->vaddr & SMALL_PAGE_MASK)); 6447509ff7cSJens Wiklander 6457509ff7cSJens Wiklander prev_seg = TAILQ_PREV(seg, segment_head, link); 6467509ff7cSJens Wiklander if (prev_seg) { 6477509ff7cSJens Wiklander assert(seg->vaddr >= prev_seg->vaddr + prev_seg->memsz); 6487509ff7cSJens Wiklander assert(seg->offset >= 6497509ff7cSJens Wiklander prev_seg->offset + prev_seg->filesz); 6507509ff7cSJens Wiklander } 6517509ff7cSJens Wiklander if (!align) 6527509ff7cSJens Wiklander align = seg->align; 6537509ff7cSJens Wiklander assert(align == seg->align); 6547509ff7cSJens Wiklander } 6557509ff7cSJens Wiklander 6567509ff7cSJens Wiklander mask = align - 1; 6577509ff7cSJens Wiklander 6587509ff7cSJens Wiklander seg = TAILQ_FIRST(&elf->segs); 6597509ff7cSJens Wiklander if (seg) 6607509ff7cSJens Wiklander seg = TAILQ_NEXT(seg, link); 6617509ff7cSJens Wiklander while (seg) { 6627509ff7cSJens Wiklander prev_seg = TAILQ_PREV(seg, segment_head, link); 6637509ff7cSJens Wiklander prev_end_addr = prev_seg->vaddr + prev_seg->memsz; 6647509ff7cSJens Wiklander 6657509ff7cSJens Wiklander /* 6667509ff7cSJens Wiklander * This segment may overlap with the last "page" in the 6677509ff7cSJens Wiklander * previous segment in two different ways: 6687509ff7cSJens Wiklander * 1. Virtual address (and offset) overlaps => 6697509ff7cSJens Wiklander * Permissions needs to be merged. The offset must have 6707509ff7cSJens Wiklander * the SMALL_PAGE_MASK bits set as vaddr and offset must 6717509ff7cSJens Wiklander * add up with prevsion segment. 6727509ff7cSJens Wiklander * 6737509ff7cSJens Wiklander * 2. Only offset overlaps => 6747509ff7cSJens Wiklander * The same page in the ELF is mapped at two different 6757509ff7cSJens Wiklander * virtual addresses. As a limitation this segment must 6767509ff7cSJens Wiklander * be mapped as writeable. 6777509ff7cSJens Wiklander */ 6787509ff7cSJens Wiklander 6797509ff7cSJens Wiklander /* Case 1. */ 6807509ff7cSJens Wiklander if (rounddown(seg->vaddr) < prev_end_addr) { 6817509ff7cSJens Wiklander assert((seg->vaddr & mask) == (seg->offset & mask)); 6827509ff7cSJens Wiklander assert(prev_seg->memsz == prev_seg->filesz); 6837509ff7cSJens Wiklander 6847509ff7cSJens Wiklander /* 6857509ff7cSJens Wiklander * Merge the segments and their permissions. 6867509ff7cSJens Wiklander * Note that the may be a small hole between the 6877509ff7cSJens Wiklander * two sections. 6887509ff7cSJens Wiklander */ 6897509ff7cSJens Wiklander prev_seg->filesz = seg->vaddr + seg->filesz - 6907509ff7cSJens Wiklander prev_seg->vaddr; 6917509ff7cSJens Wiklander prev_seg->memsz = seg->vaddr + seg->memsz - 6927509ff7cSJens Wiklander prev_seg->vaddr; 6937509ff7cSJens Wiklander prev_seg->flags |= seg->flags; 6947509ff7cSJens Wiklander 6957509ff7cSJens Wiklander TAILQ_REMOVE(&elf->segs, seg, link); 6967509ff7cSJens Wiklander free(seg); 6977509ff7cSJens Wiklander seg = TAILQ_NEXT(prev_seg, link); 6987509ff7cSJens Wiklander continue; 6997509ff7cSJens Wiklander } 7007509ff7cSJens Wiklander 7017509ff7cSJens Wiklander /* Case 2. */ 7027509ff7cSJens Wiklander if ((seg->offset & mask) && 7037509ff7cSJens Wiklander rounddown(seg->offset) < 7047509ff7cSJens Wiklander (prev_seg->offset + prev_seg->filesz)) { 7057509ff7cSJens Wiklander 7067509ff7cSJens Wiklander assert(seg->flags & PF_W); 7077509ff7cSJens Wiklander seg->remapped_writeable = true; 7087509ff7cSJens Wiklander } 7097509ff7cSJens Wiklander 7107509ff7cSJens Wiklander /* 7117509ff7cSJens Wiklander * No overlap, but we may need to align address, offset and 7127509ff7cSJens Wiklander * size. 7137509ff7cSJens Wiklander */ 7147509ff7cSJens Wiklander seg->filesz += seg->vaddr - rounddown(seg->vaddr); 7157509ff7cSJens Wiklander seg->memsz += seg->vaddr - rounddown(seg->vaddr); 7167509ff7cSJens Wiklander seg->vaddr = rounddown(seg->vaddr); 7177509ff7cSJens Wiklander seg->offset = rounddown(seg->offset); 7187509ff7cSJens Wiklander seg = TAILQ_NEXT(seg, link); 7197509ff7cSJens Wiklander } 7207509ff7cSJens Wiklander 7217509ff7cSJens Wiklander } 7227509ff7cSJens Wiklander 7237509ff7cSJens Wiklander static void populate_segments_legacy(struct ta_elf *elf) 7247509ff7cSJens Wiklander { 7257509ff7cSJens Wiklander TEE_Result res = TEE_SUCCESS; 7267509ff7cSJens Wiklander struct segment *seg = NULL; 7277509ff7cSJens Wiklander vaddr_t va = 0; 7287509ff7cSJens Wiklander 729c35dfd95SJens Wiklander assert(elf->is_legacy); 7307509ff7cSJens Wiklander TAILQ_FOREACH(seg, &elf->segs, link) { 7317509ff7cSJens Wiklander struct segment *last_seg = TAILQ_LAST(&elf->segs, segment_head); 7327509ff7cSJens Wiklander size_t pad_end = roundup(last_seg->vaddr + last_seg->memsz - 7337509ff7cSJens Wiklander seg->vaddr - seg->memsz); 7347509ff7cSJens Wiklander size_t num_bytes = roundup(seg->memsz); 7357509ff7cSJens Wiklander 7367509ff7cSJens Wiklander if (!elf->load_addr) 7377509ff7cSJens Wiklander va = 0; 7387509ff7cSJens Wiklander else 7397509ff7cSJens Wiklander va = seg->vaddr + elf->load_addr; 7407509ff7cSJens Wiklander 7417509ff7cSJens Wiklander 7427509ff7cSJens Wiklander if (!(seg->flags & PF_R)) 7437509ff7cSJens Wiklander err(TEE_ERROR_NOT_SUPPORTED, 7447509ff7cSJens Wiklander "Segment must be readable"); 7457509ff7cSJens Wiklander 7467509ff7cSJens Wiklander res = sys_map_zi(num_bytes, 0, &va, 0, pad_end); 7477509ff7cSJens Wiklander if (res) 7487509ff7cSJens Wiklander err(res, "sys_map_zi"); 7497509ff7cSJens Wiklander res = sys_copy_from_ta_bin((void *)va, seg->filesz, 7507509ff7cSJens Wiklander elf->handle, seg->offset); 7517509ff7cSJens Wiklander if (res) 7527509ff7cSJens Wiklander err(res, "sys_copy_from_ta_bin"); 7537509ff7cSJens Wiklander 7547509ff7cSJens Wiklander if (!elf->load_addr) 7557509ff7cSJens Wiklander elf->load_addr = va; 7567509ff7cSJens Wiklander elf->max_addr = va + num_bytes; 7577509ff7cSJens Wiklander elf->max_offs = seg->offset + seg->filesz; 7587509ff7cSJens Wiklander } 7597509ff7cSJens Wiklander } 7607509ff7cSJens Wiklander 7616720dd49SJens Wiklander static size_t get_pad_begin(void) 7626720dd49SJens Wiklander { 7636720dd49SJens Wiklander #ifdef CFG_TA_ASLR 7646720dd49SJens Wiklander size_t min = CFG_TA_ASLR_MIN_OFFSET_PAGES; 7656720dd49SJens Wiklander size_t max = CFG_TA_ASLR_MAX_OFFSET_PAGES; 7666720dd49SJens Wiklander TEE_Result res = TEE_SUCCESS; 7676720dd49SJens Wiklander uint32_t rnd32 = 0; 7686720dd49SJens Wiklander size_t rnd = 0; 7696720dd49SJens Wiklander 7706720dd49SJens Wiklander COMPILE_TIME_ASSERT(CFG_TA_ASLR_MIN_OFFSET_PAGES < 7716720dd49SJens Wiklander CFG_TA_ASLR_MAX_OFFSET_PAGES); 7726720dd49SJens Wiklander if (max > min) { 773baa5161dSBalint Dobszay res = sys_gen_random_num(&rnd32, sizeof(rnd32)); 7746720dd49SJens Wiklander if (res) { 7756720dd49SJens Wiklander DMSG("Random read failed: %#"PRIx32, res); 7766720dd49SJens Wiklander return min * SMALL_PAGE_SIZE; 7776720dd49SJens Wiklander } 7786720dd49SJens Wiklander rnd = rnd32 % (max - min); 7796720dd49SJens Wiklander } 7806720dd49SJens Wiklander 7816720dd49SJens Wiklander return (min + rnd) * SMALL_PAGE_SIZE; 7826720dd49SJens Wiklander #else /*!CFG_TA_ASLR*/ 7836720dd49SJens Wiklander return 0; 7846720dd49SJens Wiklander #endif /*!CFG_TA_ASLR*/ 7856720dd49SJens Wiklander } 7866720dd49SJens Wiklander 7877509ff7cSJens Wiklander static void populate_segments(struct ta_elf *elf) 7887509ff7cSJens Wiklander { 7897509ff7cSJens Wiklander TEE_Result res = TEE_SUCCESS; 7907509ff7cSJens Wiklander struct segment *seg = NULL; 7917509ff7cSJens Wiklander vaddr_t va = 0; 7926720dd49SJens Wiklander size_t pad_begin = 0; 7937509ff7cSJens Wiklander 794c35dfd95SJens Wiklander assert(!elf->is_legacy); 7957509ff7cSJens Wiklander TAILQ_FOREACH(seg, &elf->segs, link) { 7967509ff7cSJens Wiklander struct segment *last_seg = TAILQ_LAST(&elf->segs, segment_head); 7977509ff7cSJens Wiklander size_t pad_end = roundup(last_seg->vaddr + last_seg->memsz - 7987509ff7cSJens Wiklander seg->vaddr - seg->memsz); 7997509ff7cSJens Wiklander 8007509ff7cSJens Wiklander if (seg->remapped_writeable) { 8017509ff7cSJens Wiklander size_t num_bytes = roundup(seg->vaddr + seg->memsz) - 8027509ff7cSJens Wiklander rounddown(seg->vaddr); 8037509ff7cSJens Wiklander 8047509ff7cSJens Wiklander assert(elf->load_addr); 8057509ff7cSJens Wiklander va = rounddown(elf->load_addr + seg->vaddr); 8067509ff7cSJens Wiklander assert(va >= elf->max_addr); 8077509ff7cSJens Wiklander res = sys_map_zi(num_bytes, 0, &va, 0, pad_end); 8087509ff7cSJens Wiklander if (res) 8097509ff7cSJens Wiklander err(res, "sys_map_zi"); 8107509ff7cSJens Wiklander 8117509ff7cSJens Wiklander copy_remapped_to(elf, seg); 8127509ff7cSJens Wiklander elf->max_addr = va + num_bytes; 8137509ff7cSJens Wiklander } else { 8147509ff7cSJens Wiklander uint32_t flags = 0; 8157509ff7cSJens Wiklander size_t filesz = seg->filesz; 8167509ff7cSJens Wiklander size_t memsz = seg->memsz; 8177509ff7cSJens Wiklander size_t offset = seg->offset; 8187509ff7cSJens Wiklander size_t vaddr = seg->vaddr; 8197509ff7cSJens Wiklander 8207509ff7cSJens Wiklander if (offset < elf->max_offs) { 8217509ff7cSJens Wiklander /* 8227509ff7cSJens Wiklander * We're in a load segment which overlaps 8237509ff7cSJens Wiklander * with (or is covered by) the first page 8247509ff7cSJens Wiklander * of a shared library. 8257509ff7cSJens Wiklander */ 8267509ff7cSJens Wiklander if (vaddr + filesz < SMALL_PAGE_SIZE) { 8277509ff7cSJens Wiklander size_t num_bytes = 0; 8287509ff7cSJens Wiklander 8297509ff7cSJens Wiklander /* 8307509ff7cSJens Wiklander * If this segment is completely 8317509ff7cSJens Wiklander * covered, take next. 8327509ff7cSJens Wiklander */ 8337509ff7cSJens Wiklander if (vaddr + memsz <= SMALL_PAGE_SIZE) 8347509ff7cSJens Wiklander continue; 8357509ff7cSJens Wiklander 8367509ff7cSJens Wiklander /* 8377509ff7cSJens Wiklander * All data of the segment is 8387509ff7cSJens Wiklander * loaded, but we need to zero 8397509ff7cSJens Wiklander * extend it. 8407509ff7cSJens Wiklander */ 8417509ff7cSJens Wiklander va = elf->max_addr; 8427509ff7cSJens Wiklander num_bytes = roundup(vaddr + memsz) - 8437509ff7cSJens Wiklander roundup(vaddr) - 8447509ff7cSJens Wiklander SMALL_PAGE_SIZE; 8457509ff7cSJens Wiklander assert(num_bytes); 8467509ff7cSJens Wiklander res = sys_map_zi(num_bytes, 0, &va, 0, 8477509ff7cSJens Wiklander 0); 8487509ff7cSJens Wiklander if (res) 8497509ff7cSJens Wiklander err(res, "sys_map_zi"); 8507509ff7cSJens Wiklander elf->max_addr = roundup(va + num_bytes); 8517509ff7cSJens Wiklander continue; 8527509ff7cSJens Wiklander } 8537509ff7cSJens Wiklander 8547509ff7cSJens Wiklander /* Partial overlap, remove the first page. */ 8557509ff7cSJens Wiklander vaddr += SMALL_PAGE_SIZE; 8567509ff7cSJens Wiklander filesz -= SMALL_PAGE_SIZE; 8577509ff7cSJens Wiklander memsz -= SMALL_PAGE_SIZE; 8587509ff7cSJens Wiklander offset += SMALL_PAGE_SIZE; 8597509ff7cSJens Wiklander } 8607509ff7cSJens Wiklander 8616720dd49SJens Wiklander if (!elf->load_addr) { 8627509ff7cSJens Wiklander va = 0; 8636720dd49SJens Wiklander pad_begin = get_pad_begin(); 8646720dd49SJens Wiklander /* 8656720dd49SJens Wiklander * If mapping with pad_begin fails we'll 8666720dd49SJens Wiklander * retry without pad_begin, effectively 8676720dd49SJens Wiklander * disabling ASLR for the current ELF file. 8686720dd49SJens Wiklander */ 8696720dd49SJens Wiklander } else { 8707509ff7cSJens Wiklander va = vaddr + elf->load_addr; 8716720dd49SJens Wiklander pad_begin = 0; 8726720dd49SJens Wiklander } 8737509ff7cSJens Wiklander 8747509ff7cSJens Wiklander if (seg->flags & PF_W) 875baa5161dSBalint Dobszay flags |= LDELF_MAP_FLAG_WRITEABLE; 8767509ff7cSJens Wiklander else 877baa5161dSBalint Dobszay flags |= LDELF_MAP_FLAG_SHAREABLE; 8787509ff7cSJens Wiklander if (seg->flags & PF_X) 879baa5161dSBalint Dobszay flags |= LDELF_MAP_FLAG_EXECUTABLE; 8807509ff7cSJens Wiklander if (!(seg->flags & PF_R)) 8817509ff7cSJens Wiklander err(TEE_ERROR_NOT_SUPPORTED, 8827509ff7cSJens Wiklander "Segment must be readable"); 883baa5161dSBalint Dobszay if (flags & LDELF_MAP_FLAG_WRITEABLE) { 8846720dd49SJens Wiklander res = sys_map_zi(memsz, 0, &va, pad_begin, 8856720dd49SJens Wiklander pad_end); 8866720dd49SJens Wiklander if (pad_begin && res == TEE_ERROR_OUT_OF_MEMORY) 8876720dd49SJens Wiklander res = sys_map_zi(memsz, 0, &va, 0, 8886720dd49SJens Wiklander pad_end); 8897509ff7cSJens Wiklander if (res) 8907509ff7cSJens Wiklander err(res, "sys_map_zi"); 8917509ff7cSJens Wiklander res = sys_copy_from_ta_bin((void *)va, filesz, 8927509ff7cSJens Wiklander elf->handle, offset); 8937509ff7cSJens Wiklander if (res) 8947509ff7cSJens Wiklander err(res, "sys_copy_from_ta_bin"); 8957509ff7cSJens Wiklander } else { 896c5a3ce04SJens Wiklander if (filesz != memsz) 897c5a3ce04SJens Wiklander err(TEE_ERROR_BAD_FORMAT, 898c5a3ce04SJens Wiklander "Filesz and memsz mismatch"); 8997509ff7cSJens Wiklander res = sys_map_ta_bin(&va, filesz, flags, 9007509ff7cSJens Wiklander elf->handle, offset, 9016720dd49SJens Wiklander pad_begin, pad_end); 9026720dd49SJens Wiklander if (pad_begin && res == TEE_ERROR_OUT_OF_MEMORY) 9036720dd49SJens Wiklander res = sys_map_ta_bin(&va, filesz, flags, 9046720dd49SJens Wiklander elf->handle, 9056720dd49SJens Wiklander offset, 0, 9066720dd49SJens Wiklander pad_end); 9077509ff7cSJens Wiklander if (res) 9087509ff7cSJens Wiklander err(res, "sys_map_ta_bin"); 9097509ff7cSJens Wiklander } 9107509ff7cSJens Wiklander 9117509ff7cSJens Wiklander if (!elf->load_addr) 9127509ff7cSJens Wiklander elf->load_addr = va; 913c5a3ce04SJens Wiklander elf->max_addr = roundup(va + memsz); 9147509ff7cSJens Wiklander elf->max_offs += filesz; 9157509ff7cSJens Wiklander } 9167509ff7cSJens Wiklander } 9177509ff7cSJens Wiklander } 9187509ff7cSJens Wiklander 9190d482f82SRuchika Gupta static void ta_elf_add_bti(struct ta_elf *elf) 9200d482f82SRuchika Gupta { 9210d482f82SRuchika Gupta TEE_Result res = TEE_SUCCESS; 9220d482f82SRuchika Gupta struct segment *seg = NULL; 9230d482f82SRuchika Gupta uint32_t flags = LDELF_MAP_FLAG_EXECUTABLE | LDELF_MAP_FLAG_BTI; 9240d482f82SRuchika Gupta 9250d482f82SRuchika Gupta TAILQ_FOREACH(seg, &elf->segs, link) { 9260d482f82SRuchika Gupta vaddr_t va = elf->load_addr + seg->vaddr; 9270d482f82SRuchika Gupta 9280d482f82SRuchika Gupta if (seg->flags & PF_X) { 9290d482f82SRuchika Gupta res = sys_set_prot(va, seg->memsz, flags); 9300d482f82SRuchika Gupta if (res) 9310d482f82SRuchika Gupta err(res, "sys_set_prot"); 9320d482f82SRuchika Gupta } 9330d482f82SRuchika Gupta } 9340d482f82SRuchika Gupta } 9350d482f82SRuchika Gupta 936e84a7da4SRuchika Gupta static void parse_property_segment(struct ta_elf *elf) 937e84a7da4SRuchika Gupta { 938e84a7da4SRuchika Gupta char *desc = NULL; 939e84a7da4SRuchika Gupta size_t align = elf->prop_align; 940e84a7da4SRuchika Gupta size_t desc_offset = 0; 941e84a7da4SRuchika Gupta size_t prop_offset = 0; 942e84a7da4SRuchika Gupta vaddr_t va = 0; 943e84a7da4SRuchika Gupta Elf_Note *note = NULL; 944e84a7da4SRuchika Gupta char *name = NULL; 945e84a7da4SRuchika Gupta 946e84a7da4SRuchika Gupta if (!IS_ENABLED(CFG_TA_BTI) || !elf->prop_start) 947e84a7da4SRuchika Gupta return; 948e84a7da4SRuchika Gupta 949e84a7da4SRuchika Gupta check_phdr_in_range(elf, PT_GNU_PROPERTY, elf->prop_start, 950e84a7da4SRuchika Gupta elf->prop_memsz); 951e84a7da4SRuchika Gupta 952e84a7da4SRuchika Gupta va = elf->load_addr + elf->prop_start; 953e84a7da4SRuchika Gupta note = (void *)va; 954e84a7da4SRuchika Gupta name = (char *)(note + 1); 955e84a7da4SRuchika Gupta 956e84a7da4SRuchika Gupta if (elf->prop_memsz < sizeof(*note) + sizeof(ELF_NOTE_GNU)) 957e84a7da4SRuchika Gupta return; 958e84a7da4SRuchika Gupta 959e84a7da4SRuchika Gupta if (note->n_type != NT_GNU_PROPERTY_TYPE_0 || 960e84a7da4SRuchika Gupta note->n_namesz != sizeof(ELF_NOTE_GNU) || 961e84a7da4SRuchika Gupta memcmp(name, ELF_NOTE_GNU, sizeof(ELF_NOTE_GNU)) || 962e84a7da4SRuchika Gupta !IS_POWER_OF_TWO(align)) 963e84a7da4SRuchika Gupta return; 964e84a7da4SRuchika Gupta 965e84a7da4SRuchika Gupta desc_offset = ROUNDUP(sizeof(*note) + sizeof(ELF_NOTE_GNU), align); 966e84a7da4SRuchika Gupta 967e84a7da4SRuchika Gupta if (desc_offset > elf->prop_memsz || 968e84a7da4SRuchika Gupta ROUNDUP(desc_offset + note->n_descsz, align) > elf->prop_memsz) 969e84a7da4SRuchika Gupta return; 970e84a7da4SRuchika Gupta 971e84a7da4SRuchika Gupta desc = (char *)(va + desc_offset); 972e84a7da4SRuchika Gupta 973e84a7da4SRuchika Gupta do { 974e84a7da4SRuchika Gupta Elf_Prop *prop = (void *)(desc + prop_offset); 975e84a7da4SRuchika Gupta size_t data_offset = prop_offset + sizeof(*prop); 976e84a7da4SRuchika Gupta 977e84a7da4SRuchika Gupta if (note->n_descsz < data_offset) 978e84a7da4SRuchika Gupta return; 979e84a7da4SRuchika Gupta 980e84a7da4SRuchika Gupta data_offset = confine_array_index(data_offset, note->n_descsz); 981e84a7da4SRuchika Gupta 982e84a7da4SRuchika Gupta if (prop->pr_type == GNU_PROPERTY_AARCH64_FEATURE_1_AND) { 983e84a7da4SRuchika Gupta uint32_t *pr_data = (void *)(desc + data_offset); 984e84a7da4SRuchika Gupta 985e84a7da4SRuchika Gupta if (note->n_descsz < (data_offset + sizeof(*pr_data)) && 986e84a7da4SRuchika Gupta prop->pr_datasz != sizeof(*pr_data)) 987e84a7da4SRuchika Gupta return; 988e84a7da4SRuchika Gupta 989e84a7da4SRuchika Gupta if (*pr_data & GNU_PROPERTY_AARCH64_FEATURE_1_BTI) { 990e84a7da4SRuchika Gupta DMSG("BTI Feature present in note property"); 991e84a7da4SRuchika Gupta elf->bti_enabled = true; 992e84a7da4SRuchika Gupta } 993e84a7da4SRuchika Gupta } 994e84a7da4SRuchika Gupta 995e84a7da4SRuchika Gupta prop_offset += ROUNDUP(sizeof(*prop) + prop->pr_datasz, align); 996e84a7da4SRuchika Gupta } while (prop_offset < note->n_descsz); 997e84a7da4SRuchika Gupta } 998e84a7da4SRuchika Gupta 9997509ff7cSJens Wiklander static void map_segments(struct ta_elf *elf) 10007509ff7cSJens Wiklander { 100188796f89SJens Wiklander TEE_Result res = TEE_SUCCESS; 100288796f89SJens Wiklander 10037509ff7cSJens Wiklander parse_load_segments(elf); 10047509ff7cSJens Wiklander adjust_segments(elf); 100588796f89SJens Wiklander if (TAILQ_FIRST(&elf->segs)->offset < SMALL_PAGE_SIZE) { 100688796f89SJens Wiklander vaddr_t va = 0; 100788796f89SJens Wiklander size_t sz = elf->max_addr - elf->load_addr; 100888796f89SJens Wiklander struct segment *seg = TAILQ_LAST(&elf->segs, segment_head); 10096720dd49SJens Wiklander size_t pad_begin = get_pad_begin(); 101088796f89SJens Wiklander 101188796f89SJens Wiklander /* 101288796f89SJens Wiklander * We're loading a library, if not other parts of the code 101388796f89SJens Wiklander * need to be updated too. 101488796f89SJens Wiklander */ 101588796f89SJens Wiklander assert(!elf->is_main); 101688796f89SJens Wiklander 101788796f89SJens Wiklander /* 101888796f89SJens Wiklander * Now that we know how much virtual memory is needed move 101988796f89SJens Wiklander * the already mapped part to a location which can 102088796f89SJens Wiklander * accommodate us. 102188796f89SJens Wiklander */ 10226720dd49SJens Wiklander res = sys_remap(elf->load_addr, &va, sz, pad_begin, 10236720dd49SJens Wiklander roundup(seg->vaddr + seg->memsz)); 10246720dd49SJens Wiklander if (res == TEE_ERROR_OUT_OF_MEMORY) 102588796f89SJens Wiklander res = sys_remap(elf->load_addr, &va, sz, 0, 102688796f89SJens Wiklander roundup(seg->vaddr + seg->memsz)); 102788796f89SJens Wiklander if (res) 102888796f89SJens Wiklander err(res, "sys_remap"); 102988796f89SJens Wiklander elf->ehdr_addr = va; 103088796f89SJens Wiklander elf->load_addr = va; 103188796f89SJens Wiklander elf->max_addr = va + sz; 103288796f89SJens Wiklander elf->phdr = (void *)(va + elf->e_phoff); 103388796f89SJens Wiklander } 10347509ff7cSJens Wiklander } 10357509ff7cSJens Wiklander 10367509ff7cSJens Wiklander static void add_deps_from_segment(struct ta_elf *elf, unsigned int type, 10377509ff7cSJens Wiklander vaddr_t addr, size_t memsz) 10387509ff7cSJens Wiklander { 10397509ff7cSJens Wiklander size_t dyn_entsize = 0; 10407509ff7cSJens Wiklander size_t num_dyns = 0; 10417509ff7cSJens Wiklander size_t n = 0; 10427509ff7cSJens Wiklander unsigned int tag = 0; 10437509ff7cSJens Wiklander size_t val = 0; 10447509ff7cSJens Wiklander TEE_UUID uuid = { }; 10457509ff7cSJens Wiklander char *str_tab = NULL; 10469318ba35SJens Wiklander size_t str_tab_sz = 0; 10477509ff7cSJens Wiklander 10487509ff7cSJens Wiklander if (type != PT_DYNAMIC) 10497509ff7cSJens Wiklander return; 10507509ff7cSJens Wiklander 1051bc1d13c1SJens Wiklander check_phdr_in_range(elf, type, addr, memsz); 1052bc1d13c1SJens Wiklander 10537509ff7cSJens Wiklander if (elf->is_32bit) 10547509ff7cSJens Wiklander dyn_entsize = sizeof(Elf32_Dyn); 10557509ff7cSJens Wiklander else 10567509ff7cSJens Wiklander dyn_entsize = sizeof(Elf64_Dyn); 10577509ff7cSJens Wiklander 10587509ff7cSJens Wiklander assert(!(memsz % dyn_entsize)); 10597509ff7cSJens Wiklander num_dyns = memsz / dyn_entsize; 10607509ff7cSJens Wiklander 10619318ba35SJens Wiklander for (n = 0; n < num_dyns && !(str_tab && str_tab_sz); n++) { 10627509ff7cSJens Wiklander read_dyn(elf, addr, n, &tag, &val); 10639318ba35SJens Wiklander if (tag == DT_STRTAB) 10647509ff7cSJens Wiklander str_tab = (char *)(val + elf->load_addr); 10659318ba35SJens Wiklander else if (tag == DT_STRSZ) 10669318ba35SJens Wiklander str_tab_sz = val; 10677509ff7cSJens Wiklander } 1068dcf64f87SJens Wiklander check_range(elf, ".dynstr/STRTAB", str_tab, str_tab_sz); 10697509ff7cSJens Wiklander 10707509ff7cSJens Wiklander for (n = 0; n < num_dyns; n++) { 1071*fa21a1fbSClement Faure TEE_Result res = TEE_SUCCESS; 1072*fa21a1fbSClement Faure 10737509ff7cSJens Wiklander read_dyn(elf, addr, n, &tag, &val); 10747509ff7cSJens Wiklander if (tag != DT_NEEDED) 10757509ff7cSJens Wiklander continue; 10769318ba35SJens Wiklander if (val >= str_tab_sz) 1077e97bbbb2SJens Wiklander err(TEE_ERROR_BAD_FORMAT, 1078dcf64f87SJens Wiklander "Offset into .dynstr/STRTAB out of range"); 1079*fa21a1fbSClement Faure res = tee_uuid_from_str(&uuid, str_tab + val); 1080*fa21a1fbSClement Faure if (res) 1081*fa21a1fbSClement Faure err(res, "Fail to get UUID from string"); 10827509ff7cSJens Wiklander queue_elf(&uuid); 10837509ff7cSJens Wiklander } 10847509ff7cSJens Wiklander } 10857509ff7cSJens Wiklander 10867509ff7cSJens Wiklander static void add_dependencies(struct ta_elf *elf) 10877509ff7cSJens Wiklander { 10887509ff7cSJens Wiklander size_t n = 0; 10897509ff7cSJens Wiklander 10907509ff7cSJens Wiklander if (elf->is_32bit) { 10917509ff7cSJens Wiklander Elf32_Phdr *phdr = elf->phdr; 10927509ff7cSJens Wiklander 10937509ff7cSJens Wiklander for (n = 0; n < elf->e_phnum; n++) 10947509ff7cSJens Wiklander add_deps_from_segment(elf, phdr[n].p_type, 10957509ff7cSJens Wiklander phdr[n].p_vaddr, phdr[n].p_memsz); 10967509ff7cSJens Wiklander } else { 10977509ff7cSJens Wiklander Elf64_Phdr *phdr = elf->phdr; 10987509ff7cSJens Wiklander 10997509ff7cSJens Wiklander for (n = 0; n < elf->e_phnum; n++) 11007509ff7cSJens Wiklander add_deps_from_segment(elf, phdr[n].p_type, 11017509ff7cSJens Wiklander phdr[n].p_vaddr, phdr[n].p_memsz); 11027509ff7cSJens Wiklander } 11037509ff7cSJens Wiklander } 11047509ff7cSJens Wiklander 11057509ff7cSJens Wiklander static void copy_section_headers(struct ta_elf *elf) 11067509ff7cSJens Wiklander { 11077509ff7cSJens Wiklander TEE_Result res = TEE_SUCCESS; 1108cfd9b9f7SJens Wiklander size_t sz = 0; 11097509ff7cSJens Wiklander size_t offs = 0; 11107509ff7cSJens Wiklander 1111cfd9b9f7SJens Wiklander if (MUL_OVERFLOW(elf->e_shnum, elf->e_shentsize, &sz)) 1112dcf64f87SJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Section headers size overflow"); 1113cfd9b9f7SJens Wiklander 11147509ff7cSJens Wiklander elf->shdr = malloc(sz); 11157509ff7cSJens Wiklander if (!elf->shdr) 11167509ff7cSJens Wiklander err(TEE_ERROR_OUT_OF_MEMORY, "malloc"); 11177509ff7cSJens Wiklander 11187509ff7cSJens Wiklander /* 11197509ff7cSJens Wiklander * We're assuming that section headers comes after the load segments, 11207509ff7cSJens Wiklander * but if it's a very small dynamically linked library the section 11217509ff7cSJens Wiklander * headers can still end up (partially?) in the first mapped page. 11227509ff7cSJens Wiklander */ 11237509ff7cSJens Wiklander if (elf->e_shoff < SMALL_PAGE_SIZE) { 11247509ff7cSJens Wiklander assert(!elf->is_main); 11257509ff7cSJens Wiklander offs = MIN(SMALL_PAGE_SIZE - elf->e_shoff, sz); 11267509ff7cSJens Wiklander memcpy(elf->shdr, (void *)(elf->load_addr + elf->e_shoff), 11277509ff7cSJens Wiklander offs); 11287509ff7cSJens Wiklander } 11297509ff7cSJens Wiklander 11307509ff7cSJens Wiklander if (offs < sz) { 11317509ff7cSJens Wiklander res = sys_copy_from_ta_bin((uint8_t *)elf->shdr + offs, 11327509ff7cSJens Wiklander sz - offs, elf->handle, 11337509ff7cSJens Wiklander elf->e_shoff + offs); 11347509ff7cSJens Wiklander if (res) 11357509ff7cSJens Wiklander err(res, "sys_copy_from_ta_bin"); 11367509ff7cSJens Wiklander } 11377509ff7cSJens Wiklander } 11387509ff7cSJens Wiklander 11397509ff7cSJens Wiklander static void close_handle(struct ta_elf *elf) 11407509ff7cSJens Wiklander { 11417509ff7cSJens Wiklander TEE_Result res = sys_close_ta_bin(elf->handle); 11427509ff7cSJens Wiklander 11437509ff7cSJens Wiklander if (res) 11447509ff7cSJens Wiklander err(res, "sys_close_ta_bin"); 11457509ff7cSJens Wiklander elf->handle = -1; 11467509ff7cSJens Wiklander } 11477509ff7cSJens Wiklander 1148c35dfd95SJens Wiklander static void clean_elf_load_main(struct ta_elf *elf) 1149c35dfd95SJens Wiklander { 1150c35dfd95SJens Wiklander TEE_Result res = TEE_SUCCESS; 1151c35dfd95SJens Wiklander 1152c35dfd95SJens Wiklander /* 1153c35dfd95SJens Wiklander * Clean up from last attempt to load 1154c35dfd95SJens Wiklander */ 1155c35dfd95SJens Wiklander res = sys_unmap(elf->ehdr_addr, SMALL_PAGE_SIZE); 1156c35dfd95SJens Wiklander if (res) 1157c35dfd95SJens Wiklander err(res, "sys_unmap"); 1158c35dfd95SJens Wiklander 1159c35dfd95SJens Wiklander while (!TAILQ_EMPTY(&elf->segs)) { 1160c35dfd95SJens Wiklander struct segment *seg = TAILQ_FIRST(&elf->segs); 1161c35dfd95SJens Wiklander vaddr_t va = 0; 1162c35dfd95SJens Wiklander size_t num_bytes = 0; 1163c35dfd95SJens Wiklander 1164c35dfd95SJens Wiklander va = rounddown(elf->load_addr + seg->vaddr); 1165c35dfd95SJens Wiklander if (seg->remapped_writeable) 1166c35dfd95SJens Wiklander num_bytes = roundup(seg->vaddr + seg->memsz) - 1167c35dfd95SJens Wiklander rounddown(seg->vaddr); 1168c35dfd95SJens Wiklander else 1169c35dfd95SJens Wiklander num_bytes = seg->memsz; 1170c35dfd95SJens Wiklander 1171c35dfd95SJens Wiklander res = sys_unmap(va, num_bytes); 1172c35dfd95SJens Wiklander if (res) 1173c35dfd95SJens Wiklander err(res, "sys_unmap"); 1174c35dfd95SJens Wiklander 1175c35dfd95SJens Wiklander TAILQ_REMOVE(&elf->segs, seg, link); 1176c35dfd95SJens Wiklander free(seg); 1177c35dfd95SJens Wiklander } 1178c35dfd95SJens Wiklander 1179c35dfd95SJens Wiklander free(elf->shdr); 1180c35dfd95SJens Wiklander memset(&elf->is_32bit, 0, 1181c35dfd95SJens Wiklander (vaddr_t)&elf->uuid - (vaddr_t)&elf->is_32bit); 1182c35dfd95SJens Wiklander 1183c35dfd95SJens Wiklander TAILQ_INIT(&elf->segs); 1184c35dfd95SJens Wiklander } 1185c35dfd95SJens Wiklander 1186fe684948SJerome Forissier #ifdef ARM64 1187fe684948SJerome Forissier /* 1188fe684948SJerome Forissier * Allocates an offset in the TA's Thread Control Block for the TLS segment of 1189fe684948SJerome Forissier * the @elf module. 1190fe684948SJerome Forissier */ 1191fe684948SJerome Forissier #define TCB_HEAD_SIZE (2 * sizeof(long)) 1192fe684948SJerome Forissier static void set_tls_offset(struct ta_elf *elf) 1193fe684948SJerome Forissier { 1194fe684948SJerome Forissier static size_t next_offs = TCB_HEAD_SIZE; 1195fe684948SJerome Forissier 1196fe684948SJerome Forissier if (!elf->tls_start) 1197fe684948SJerome Forissier return; 1198fe684948SJerome Forissier 1199fe684948SJerome Forissier /* Module has a TLS segment */ 1200fe684948SJerome Forissier elf->tls_tcb_offs = next_offs; 1201fe684948SJerome Forissier next_offs += elf->tls_memsz; 1202fe684948SJerome Forissier } 1203fe684948SJerome Forissier #else 1204fe684948SJerome Forissier static void set_tls_offset(struct ta_elf *elf __unused) {} 1205fe684948SJerome Forissier #endif 1206fe684948SJerome Forissier 1207c35dfd95SJens Wiklander static void load_main(struct ta_elf *elf) 1208c35dfd95SJens Wiklander { 12096cfa381eSJens Wiklander vaddr_t va = 0; 12106cfa381eSJens Wiklander 1211c35dfd95SJens Wiklander init_elf(elf); 1212c35dfd95SJens Wiklander map_segments(elf); 1213c35dfd95SJens Wiklander populate_segments(elf); 1214c35dfd95SJens Wiklander add_dependencies(elf); 1215c35dfd95SJens Wiklander copy_section_headers(elf); 1216c35dfd95SJens Wiklander save_symtab(elf); 1217c35dfd95SJens Wiklander close_handle(elf); 1218fe684948SJerome Forissier set_tls_offset(elf); 12190d482f82SRuchika Gupta parse_property_segment(elf); 12200d482f82SRuchika Gupta if (elf->bti_enabled) 12210d482f82SRuchika Gupta ta_elf_add_bti(elf); 1222c35dfd95SJens Wiklander 12236cfa381eSJens Wiklander if (!ta_elf_resolve_sym("ta_head", &va, NULL, elf)) 12246cfa381eSJens Wiklander elf->head = (struct ta_head *)va; 12256cfa381eSJens Wiklander else 1226c35dfd95SJens Wiklander elf->head = (struct ta_head *)elf->load_addr; 1227c35dfd95SJens Wiklander if (elf->head->depr_entry != UINT64_MAX) { 1228c35dfd95SJens Wiklander /* 1229c35dfd95SJens Wiklander * Legacy TAs sets their entry point in ta_head. For 1230c35dfd95SJens Wiklander * non-legacy TAs the entry point of the ELF is set instead 1231c35dfd95SJens Wiklander * and leaving the ta_head entry point set to UINT64_MAX to 1232c35dfd95SJens Wiklander * indicate that it's not used. 1233c35dfd95SJens Wiklander * 1234c35dfd95SJens Wiklander * NB, everything before the commit a73b5878c89d ("Replace 1235c35dfd95SJens Wiklander * ta_head.entry with elf entry") is considered legacy TAs 1236c35dfd95SJens Wiklander * for ldelf. 1237c35dfd95SJens Wiklander * 1238c35dfd95SJens Wiklander * Legacy TAs cannot be mapped with shared memory segments 1239c35dfd95SJens Wiklander * so restart the mapping if it turned out we're loading a 1240c35dfd95SJens Wiklander * legacy TA. 1241c35dfd95SJens Wiklander */ 1242c35dfd95SJens Wiklander 1243c35dfd95SJens Wiklander DMSG("Reloading TA %pUl as legacy TA", (void *)&elf->uuid); 1244c35dfd95SJens Wiklander clean_elf_load_main(elf); 1245c35dfd95SJens Wiklander elf->is_legacy = true; 1246c35dfd95SJens Wiklander init_elf(elf); 1247c35dfd95SJens Wiklander map_segments(elf); 1248c35dfd95SJens Wiklander populate_segments_legacy(elf); 1249c35dfd95SJens Wiklander add_dependencies(elf); 1250c35dfd95SJens Wiklander copy_section_headers(elf); 1251c35dfd95SJens Wiklander save_symtab(elf); 1252c35dfd95SJens Wiklander close_handle(elf); 1253c35dfd95SJens Wiklander elf->head = (struct ta_head *)elf->load_addr; 1254c35dfd95SJens Wiklander /* 1255c35dfd95SJens Wiklander * Check that the TA is still a legacy TA, if it isn't give 1256c35dfd95SJens Wiklander * up now since we're likely under attack. 1257c35dfd95SJens Wiklander */ 1258c35dfd95SJens Wiklander if (elf->head->depr_entry == UINT64_MAX) 1259c35dfd95SJens Wiklander err(TEE_ERROR_GENERIC, 1260c35dfd95SJens Wiklander "TA %pUl was changed on disk to non-legacy", 1261c35dfd95SJens Wiklander (void *)&elf->uuid); 1262c35dfd95SJens Wiklander } 1263c35dfd95SJens Wiklander 1264c35dfd95SJens Wiklander } 1265c35dfd95SJens Wiklander 1266c35dfd95SJens Wiklander void ta_elf_load_main(const TEE_UUID *uuid, uint32_t *is_32bit, uint64_t *sp, 1267c35dfd95SJens Wiklander uint32_t *ta_flags) 12687509ff7cSJens Wiklander { 12697509ff7cSJens Wiklander struct ta_elf *elf = queue_elf(uuid); 12707509ff7cSJens Wiklander vaddr_t va = 0; 12717509ff7cSJens Wiklander TEE_Result res = TEE_SUCCESS; 12727509ff7cSJens Wiklander 12737509ff7cSJens Wiklander assert(elf); 12747509ff7cSJens Wiklander elf->is_main = true; 12757509ff7cSJens Wiklander 1276c35dfd95SJens Wiklander load_main(elf); 12777509ff7cSJens Wiklander 12787509ff7cSJens Wiklander *is_32bit = elf->is_32bit; 1279c35dfd95SJens Wiklander res = sys_map_zi(elf->head->stack_size, 0, &va, 0, 0); 12807509ff7cSJens Wiklander if (res) 12817509ff7cSJens Wiklander err(res, "sys_map_zi stack"); 12827509ff7cSJens Wiklander 1283c35dfd95SJens Wiklander if (elf->head->flags & ~TA_FLAGS_MASK) 12847509ff7cSJens Wiklander err(TEE_ERROR_BAD_FORMAT, "Invalid TA flags(s) %#"PRIx32, 1285c35dfd95SJens Wiklander elf->head->flags & ~TA_FLAGS_MASK); 12867509ff7cSJens Wiklander 1287c35dfd95SJens Wiklander *ta_flags = elf->head->flags; 1288c35dfd95SJens Wiklander *sp = va + elf->head->stack_size; 128965137432SJens Wiklander ta_stack = va; 1290c35dfd95SJens Wiklander ta_stack_size = elf->head->stack_size; 12917509ff7cSJens Wiklander } 12927509ff7cSJens Wiklander 1293af78e1b1SImre Kis void ta_elf_finalize_load_main(uint64_t *entry, uint64_t *load_addr) 1294c35dfd95SJens Wiklander { 1295c35dfd95SJens Wiklander struct ta_elf *elf = TAILQ_FIRST(&main_elf_queue); 1296dd655cb9SJerome Forissier TEE_Result res = TEE_SUCCESS; 1297c35dfd95SJens Wiklander 1298c35dfd95SJens Wiklander assert(elf->is_main); 1299c35dfd95SJens Wiklander 130001b02a16SJerome Forissier res = ta_elf_set_init_fini_info_compat(elf->is_32bit); 1301dd655cb9SJerome Forissier if (res) 130201b02a16SJerome Forissier err(res, "ta_elf_set_init_fini_info_compat"); 13039d224046SJerome Forissier res = ta_elf_set_elf_phdr_info(elf->is_32bit); 13049d224046SJerome Forissier if (res) 13059d224046SJerome Forissier err(res, "ta_elf_set_elf_phdr_info"); 1306dd655cb9SJerome Forissier 1307c35dfd95SJens Wiklander if (elf->is_legacy) 1308c35dfd95SJens Wiklander *entry = elf->head->depr_entry; 1309c35dfd95SJens Wiklander else 1310c35dfd95SJens Wiklander *entry = elf->e_entry + elf->load_addr; 1311af78e1b1SImre Kis 1312af78e1b1SImre Kis *load_addr = elf->load_addr; 1313c35dfd95SJens Wiklander } 1314c35dfd95SJens Wiklander 1315c35dfd95SJens Wiklander 13167509ff7cSJens Wiklander void ta_elf_load_dependency(struct ta_elf *elf, bool is_32bit) 13177509ff7cSJens Wiklander { 13187509ff7cSJens Wiklander if (elf->is_main) 13197509ff7cSJens Wiklander return; 13207509ff7cSJens Wiklander 13217509ff7cSJens Wiklander init_elf(elf); 13227509ff7cSJens Wiklander if (elf->is_32bit != is_32bit) 13237509ff7cSJens Wiklander err(TEE_ERROR_BAD_FORMAT, "ELF %pUl is %sbit (expected %sbit)", 13247509ff7cSJens Wiklander (void *)&elf->uuid, elf->is_32bit ? "32" : "64", 13257509ff7cSJens Wiklander is_32bit ? "32" : "64"); 13267509ff7cSJens Wiklander 13277509ff7cSJens Wiklander map_segments(elf); 1328c35dfd95SJens Wiklander populate_segments(elf); 13297509ff7cSJens Wiklander add_dependencies(elf); 13307509ff7cSJens Wiklander copy_section_headers(elf); 13317509ff7cSJens Wiklander save_symtab(elf); 13327509ff7cSJens Wiklander close_handle(elf); 1333fe684948SJerome Forissier set_tls_offset(elf); 13340d482f82SRuchika Gupta parse_property_segment(elf); 13350d482f82SRuchika Gupta if (elf->bti_enabled) 13360d482f82SRuchika Gupta ta_elf_add_bti(elf); 13377509ff7cSJens Wiklander } 13387509ff7cSJens Wiklander 13397509ff7cSJens Wiklander void ta_elf_finalize_mappings(struct ta_elf *elf) 13407509ff7cSJens Wiklander { 13417509ff7cSJens Wiklander TEE_Result res = TEE_SUCCESS; 13427509ff7cSJens Wiklander struct segment *seg = NULL; 13437509ff7cSJens Wiklander 13447509ff7cSJens Wiklander if (!elf->is_legacy) 13457509ff7cSJens Wiklander return; 13467509ff7cSJens Wiklander 13477509ff7cSJens Wiklander TAILQ_FOREACH(seg, &elf->segs, link) { 13487509ff7cSJens Wiklander vaddr_t va = elf->load_addr + seg->vaddr; 13497509ff7cSJens Wiklander uint32_t flags = 0; 13507509ff7cSJens Wiklander 13517509ff7cSJens Wiklander if (seg->flags & PF_W) 1352baa5161dSBalint Dobszay flags |= LDELF_MAP_FLAG_WRITEABLE; 13537509ff7cSJens Wiklander if (seg->flags & PF_X) 1354baa5161dSBalint Dobszay flags |= LDELF_MAP_FLAG_EXECUTABLE; 13557509ff7cSJens Wiklander 13567509ff7cSJens Wiklander res = sys_set_prot(va, seg->memsz, flags); 13577509ff7cSJens Wiklander if (res) 13587509ff7cSJens Wiklander err(res, "sys_set_prot"); 13597509ff7cSJens Wiklander } 13607509ff7cSJens Wiklander } 136165137432SJens Wiklander 1362c86f218cSJens Wiklander static void __printf(3, 4) print_wrapper(void *pctx, print_func_t print_func, 1363c86f218cSJens Wiklander const char *fmt, ...) 1364c86f218cSJens Wiklander { 1365c86f218cSJens Wiklander va_list ap; 1366c86f218cSJens Wiklander 1367c86f218cSJens Wiklander va_start(ap, fmt); 1368c86f218cSJens Wiklander print_func(pctx, fmt, ap); 1369c86f218cSJens Wiklander va_end(ap); 1370c86f218cSJens Wiklander } 1371c86f218cSJens Wiklander 1372c86f218cSJens Wiklander static void print_seg(void *pctx, print_func_t print_func, 1373c86f218cSJens Wiklander size_t idx __maybe_unused, int elf_idx __maybe_unused, 137465137432SJens Wiklander vaddr_t va __maybe_unused, paddr_t pa __maybe_unused, 137565137432SJens Wiklander size_t sz __maybe_unused, uint32_t flags) 137665137432SJens Wiklander { 1377e6e0ed52SJens Wiklander int rc __maybe_unused = 0; 137865137432SJens Wiklander int width __maybe_unused = 8; 137965137432SJens Wiklander char desc[14] __maybe_unused = ""; 138065137432SJens Wiklander char flags_str[] __maybe_unused = "----"; 138165137432SJens Wiklander 138265137432SJens Wiklander if (elf_idx > -1) { 1383e6e0ed52SJens Wiklander rc = snprintf(desc, sizeof(desc), " [%d]", elf_idx); 1384e6e0ed52SJens Wiklander assert(rc >= 0); 138565137432SJens Wiklander } else { 1386e6e0ed52SJens Wiklander if (flags & DUMP_MAP_EPHEM) { 1387e6e0ed52SJens Wiklander rc = snprintf(desc, sizeof(desc), " (param)"); 1388e6e0ed52SJens Wiklander assert(rc >= 0); 1389e6e0ed52SJens Wiklander } 1390e6e0ed52SJens Wiklander if (flags & DUMP_MAP_LDELF) { 1391e6e0ed52SJens Wiklander rc = snprintf(desc, sizeof(desc), " (ldelf)"); 1392e6e0ed52SJens Wiklander assert(rc >= 0); 1393e6e0ed52SJens Wiklander } 1394e6e0ed52SJens Wiklander if (va == ta_stack) { 1395e6e0ed52SJens Wiklander rc = snprintf(desc, sizeof(desc), " (stack)"); 1396e6e0ed52SJens Wiklander assert(rc >= 0); 1397e6e0ed52SJens Wiklander } 139865137432SJens Wiklander } 139965137432SJens Wiklander 140065137432SJens Wiklander if (flags & DUMP_MAP_READ) 140165137432SJens Wiklander flags_str[0] = 'r'; 140265137432SJens Wiklander if (flags & DUMP_MAP_WRITE) 140365137432SJens Wiklander flags_str[1] = 'w'; 140465137432SJens Wiklander if (flags & DUMP_MAP_EXEC) 140565137432SJens Wiklander flags_str[2] = 'x'; 140665137432SJens Wiklander if (flags & DUMP_MAP_SECURE) 140765137432SJens Wiklander flags_str[3] = 's'; 140865137432SJens Wiklander 1409c86f218cSJens Wiklander print_wrapper(pctx, print_func, 1410c86f218cSJens Wiklander "region %2zu: va 0x%0*"PRIxVA" pa 0x%0*"PRIxPA" size 0x%06zx flags %s%s\n", 141165137432SJens Wiklander idx, width, va, width, pa, sz, flags_str, desc); 141265137432SJens Wiklander } 141365137432SJens Wiklander 14146720dd49SJens Wiklander static bool get_next_in_order(struct ta_elf_queue *elf_queue, 14156720dd49SJens Wiklander struct ta_elf **elf, struct segment **seg, 14166720dd49SJens Wiklander size_t *elf_idx) 14176720dd49SJens Wiklander { 14186720dd49SJens Wiklander struct ta_elf *e = NULL; 14196720dd49SJens Wiklander struct segment *s = NULL; 14206720dd49SJens Wiklander size_t idx = 0; 14216720dd49SJens Wiklander vaddr_t va = 0; 14226720dd49SJens Wiklander struct ta_elf *e2 = NULL; 14236720dd49SJens Wiklander size_t i2 = 0; 14246720dd49SJens Wiklander 14256720dd49SJens Wiklander assert(elf && seg && elf_idx); 14266720dd49SJens Wiklander e = *elf; 14276720dd49SJens Wiklander s = *seg; 14286720dd49SJens Wiklander assert((e == NULL && s == NULL) || (e != NULL && s != NULL)); 14296720dd49SJens Wiklander 14306720dd49SJens Wiklander if (s) { 14316720dd49SJens Wiklander s = TAILQ_NEXT(s, link); 14326720dd49SJens Wiklander if (s) { 14336720dd49SJens Wiklander *seg = s; 14346720dd49SJens Wiklander return true; 14356720dd49SJens Wiklander } 14366720dd49SJens Wiklander } 14376720dd49SJens Wiklander 14386720dd49SJens Wiklander if (e) 14396720dd49SJens Wiklander va = e->load_addr; 14406720dd49SJens Wiklander 14416720dd49SJens Wiklander /* Find the ELF with next load address */ 14426720dd49SJens Wiklander e = NULL; 14436720dd49SJens Wiklander TAILQ_FOREACH(e2, elf_queue, link) { 14446720dd49SJens Wiklander if (e2->load_addr > va) { 14456720dd49SJens Wiklander if (!e || e2->load_addr < e->load_addr) { 14466720dd49SJens Wiklander e = e2; 14476720dd49SJens Wiklander idx = i2; 14486720dd49SJens Wiklander } 14496720dd49SJens Wiklander } 14506720dd49SJens Wiklander i2++; 14516720dd49SJens Wiklander } 14526720dd49SJens Wiklander if (!e) 14536720dd49SJens Wiklander return false; 14546720dd49SJens Wiklander 14556720dd49SJens Wiklander *elf = e; 14566720dd49SJens Wiklander *seg = TAILQ_FIRST(&e->segs); 14576720dd49SJens Wiklander *elf_idx = idx; 14586720dd49SJens Wiklander return true; 14596720dd49SJens Wiklander } 14606720dd49SJens Wiklander 1461c86f218cSJens Wiklander void ta_elf_print_mappings(void *pctx, print_func_t print_func, 1462c86f218cSJens Wiklander struct ta_elf_queue *elf_queue, size_t num_maps, 146365137432SJens Wiklander struct dump_map *maps, vaddr_t mpool_base) 146465137432SJens Wiklander { 146565137432SJens Wiklander struct segment *seg = NULL; 146665137432SJens Wiklander struct ta_elf *elf = NULL; 146765137432SJens Wiklander size_t elf_idx = 0; 146865137432SJens Wiklander size_t idx = 0; 146965137432SJens Wiklander size_t map_idx = 0; 147065137432SJens Wiklander 147165137432SJens Wiklander /* 147265137432SJens Wiklander * Loop over all segments and maps, printing virtual address in 147365137432SJens Wiklander * order. Segment has priority if the virtual address is present 147465137432SJens Wiklander * in both map and segment. 147565137432SJens Wiklander */ 14766720dd49SJens Wiklander get_next_in_order(elf_queue, &elf, &seg, &elf_idx); 147765137432SJens Wiklander while (true) { 147865137432SJens Wiklander vaddr_t va = -1; 147965137432SJens Wiklander size_t sz = 0; 148065137432SJens Wiklander uint32_t flags = DUMP_MAP_SECURE; 148165137432SJens Wiklander size_t offs = 0; 148265137432SJens Wiklander 148365137432SJens Wiklander if (seg) { 148465137432SJens Wiklander va = rounddown(seg->vaddr + elf->load_addr); 148565137432SJens Wiklander sz = roundup(seg->vaddr + seg->memsz) - 148665137432SJens Wiklander rounddown(seg->vaddr); 148765137432SJens Wiklander } 148865137432SJens Wiklander 148965137432SJens Wiklander while (map_idx < num_maps && maps[map_idx].va <= va) { 149065137432SJens Wiklander uint32_t f = 0; 149165137432SJens Wiklander 149265137432SJens Wiklander /* If there's a match, it should be the same map */ 149365137432SJens Wiklander if (maps[map_idx].va == va) { 149465137432SJens Wiklander /* 149565137432SJens Wiklander * In shared libraries the first page is 149665137432SJens Wiklander * mapped separately with the rest of that 149765137432SJens Wiklander * segment following back to back in a 149865137432SJens Wiklander * separate entry. 149965137432SJens Wiklander */ 150065137432SJens Wiklander if (map_idx + 1 < num_maps && 150165137432SJens Wiklander maps[map_idx].sz == SMALL_PAGE_SIZE) { 150265137432SJens Wiklander vaddr_t next_va = maps[map_idx].va + 150365137432SJens Wiklander maps[map_idx].sz; 150465137432SJens Wiklander size_t comb_sz = maps[map_idx].sz + 150565137432SJens Wiklander maps[map_idx + 1].sz; 150665137432SJens Wiklander 150765137432SJens Wiklander if (next_va == maps[map_idx + 1].va && 150865137432SJens Wiklander comb_sz == sz && 150965137432SJens Wiklander maps[map_idx].flags == 151065137432SJens Wiklander maps[map_idx + 1].flags) { 151165137432SJens Wiklander /* Skip this and next entry */ 151265137432SJens Wiklander map_idx += 2; 151365137432SJens Wiklander continue; 151465137432SJens Wiklander } 151565137432SJens Wiklander } 151665137432SJens Wiklander assert(maps[map_idx].sz == sz); 151765137432SJens Wiklander } else if (maps[map_idx].va < va) { 151865137432SJens Wiklander if (maps[map_idx].va == mpool_base) 151965137432SJens Wiklander f |= DUMP_MAP_LDELF; 1520c86f218cSJens Wiklander print_seg(pctx, print_func, idx, -1, 1521c86f218cSJens Wiklander maps[map_idx].va, maps[map_idx].pa, 1522c86f218cSJens Wiklander maps[map_idx].sz, 152365137432SJens Wiklander maps[map_idx].flags | f); 152465137432SJens Wiklander idx++; 152565137432SJens Wiklander } 152665137432SJens Wiklander map_idx++; 152765137432SJens Wiklander } 152865137432SJens Wiklander 152965137432SJens Wiklander if (!seg) 153065137432SJens Wiklander break; 153165137432SJens Wiklander 153265137432SJens Wiklander offs = rounddown(seg->offset); 153365137432SJens Wiklander if (seg->flags & PF_R) 153465137432SJens Wiklander flags |= DUMP_MAP_READ; 153565137432SJens Wiklander if (seg->flags & PF_W) 153665137432SJens Wiklander flags |= DUMP_MAP_WRITE; 153765137432SJens Wiklander if (seg->flags & PF_X) 153865137432SJens Wiklander flags |= DUMP_MAP_EXEC; 153965137432SJens Wiklander 1540c86f218cSJens Wiklander print_seg(pctx, print_func, idx, elf_idx, va, offs, sz, flags); 154165137432SJens Wiklander idx++; 154265137432SJens Wiklander 15436720dd49SJens Wiklander if (!get_next_in_order(elf_queue, &elf, &seg, &elf_idx)) 15446720dd49SJens Wiklander seg = NULL; 154565137432SJens Wiklander } 154665137432SJens Wiklander 154765137432SJens Wiklander elf_idx = 0; 154865137432SJens Wiklander TAILQ_FOREACH(elf, elf_queue, link) { 1549c86f218cSJens Wiklander print_wrapper(pctx, print_func, 1550c86f218cSJens Wiklander " [%zu] %pUl @ 0x%0*"PRIxVA"\n", 155165137432SJens Wiklander elf_idx, (void *)&elf->uuid, 8, elf->load_addr); 155265137432SJens Wiklander elf_idx++; 155365137432SJens Wiklander } 155465137432SJens Wiklander } 15550242833aSJens Wiklander 15560242833aSJens Wiklander #ifdef CFG_UNWIND 1557ba2a6adbSAlvin Chang 1558ba2a6adbSAlvin Chang #if defined(ARM32) || defined(ARM64) 15597f752871SJerome Forissier /* Called by libunw */ 15607f752871SJerome Forissier bool find_exidx(vaddr_t addr, vaddr_t *idx_start, vaddr_t *idx_end) 15617f752871SJerome Forissier { 15627f752871SJerome Forissier struct segment *seg = NULL; 15637f752871SJerome Forissier struct ta_elf *elf = NULL; 15647f752871SJerome Forissier vaddr_t a = 0; 15657f752871SJerome Forissier 15667f752871SJerome Forissier TAILQ_FOREACH(elf, &main_elf_queue, link) { 15677f752871SJerome Forissier if (addr < elf->load_addr) 15687f752871SJerome Forissier continue; 15697f752871SJerome Forissier a = addr - elf->load_addr; 15707f752871SJerome Forissier TAILQ_FOREACH(seg, &elf->segs, link) { 15717f752871SJerome Forissier if (a < seg->vaddr) 15727f752871SJerome Forissier continue; 15737f752871SJerome Forissier if (a - seg->vaddr < seg->filesz) { 15747f752871SJerome Forissier *idx_start = elf->exidx_start + elf->load_addr; 15757f752871SJerome Forissier *idx_end = elf->exidx_start + elf->load_addr + 15767f752871SJerome Forissier elf->exidx_size; 15777f752871SJerome Forissier return true; 15787f752871SJerome Forissier } 15797f752871SJerome Forissier } 15807f752871SJerome Forissier } 15817f752871SJerome Forissier 15827f752871SJerome Forissier return false; 15837f752871SJerome Forissier } 15847f752871SJerome Forissier 15850242833aSJens Wiklander void ta_elf_stack_trace_a32(uint32_t regs[16]) 15860242833aSJens Wiklander { 15870242833aSJens Wiklander struct unwind_state_arm32 state = { }; 15880242833aSJens Wiklander 15890242833aSJens Wiklander memcpy(state.registers, regs, sizeof(state.registers)); 15900242833aSJens Wiklander print_stack_arm32(&state, ta_stack, ta_stack_size); 15910242833aSJens Wiklander } 15920242833aSJens Wiklander 15930242833aSJens Wiklander void ta_elf_stack_trace_a64(uint64_t fp, uint64_t sp, uint64_t pc) 15940242833aSJens Wiklander { 15950242833aSJens Wiklander struct unwind_state_arm64 state = { .fp = fp, .sp = sp, .pc = pc }; 15960242833aSJens Wiklander 15970242833aSJens Wiklander print_stack_arm64(&state, ta_stack, ta_stack_size); 15980242833aSJens Wiklander } 1599ba2a6adbSAlvin Chang #elif defined(RV32) || defined(RV64) 1600ba2a6adbSAlvin Chang void ta_elf_stack_trace_riscv(uint64_t fp, uint64_t pc) 1601ba2a6adbSAlvin Chang { 1602ba2a6adbSAlvin Chang struct unwind_state_riscv state = { .fp = fp, .pc = pc }; 1603ba2a6adbSAlvin Chang 1604ba2a6adbSAlvin Chang print_stack_riscv(&state, ta_stack, ta_stack_size); 1605ba2a6adbSAlvin Chang } 16060242833aSJens Wiklander #endif 1607ebef121cSJerome Forissier 1608ba2a6adbSAlvin Chang #endif /* CFG_UNWIND */ 1609ba2a6adbSAlvin Chang 1610ebef121cSJerome Forissier TEE_Result ta_elf_add_library(const TEE_UUID *uuid) 1611ebef121cSJerome Forissier { 16129d224046SJerome Forissier TEE_Result res = TEE_ERROR_GENERIC; 1613ebef121cSJerome Forissier struct ta_elf *ta = TAILQ_FIRST(&main_elf_queue); 1614ebef121cSJerome Forissier struct ta_elf *lib = ta_elf_find_elf(uuid); 1615ebef121cSJerome Forissier struct ta_elf *elf = NULL; 1616ebef121cSJerome Forissier 1617ebef121cSJerome Forissier if (lib) 1618ebef121cSJerome Forissier return TEE_SUCCESS; /* Already mapped */ 1619ebef121cSJerome Forissier 1620ebef121cSJerome Forissier lib = queue_elf_helper(uuid); 1621ebef121cSJerome Forissier if (!lib) 1622ebef121cSJerome Forissier return TEE_ERROR_OUT_OF_MEMORY; 1623ebef121cSJerome Forissier 1624ebef121cSJerome Forissier for (elf = lib; elf; elf = TAILQ_NEXT(elf, link)) 1625ebef121cSJerome Forissier ta_elf_load_dependency(elf, ta->is_32bit); 1626ebef121cSJerome Forissier 1627ebef121cSJerome Forissier for (elf = lib; elf; elf = TAILQ_NEXT(elf, link)) { 1628ebef121cSJerome Forissier ta_elf_relocate(elf); 1629ebef121cSJerome Forissier ta_elf_finalize_mappings(elf); 1630ebef121cSJerome Forissier } 1631ebef121cSJerome Forissier 1632ebef121cSJerome Forissier for (elf = lib; elf; elf = TAILQ_NEXT(elf, link)) 1633ebef121cSJerome Forissier DMSG("ELF (%pUl) at %#"PRIxVA, 1634ebef121cSJerome Forissier (void *)&elf->uuid, elf->load_addr); 1635ebef121cSJerome Forissier 163601b02a16SJerome Forissier res = ta_elf_set_init_fini_info_compat(ta->is_32bit); 16379d224046SJerome Forissier if (res) 16389d224046SJerome Forissier return res; 16399d224046SJerome Forissier 16409d224046SJerome Forissier return ta_elf_set_elf_phdr_info(ta->is_32bit); 1641dd655cb9SJerome Forissier } 1642dd655cb9SJerome Forissier 1643dd655cb9SJerome Forissier /* Get address/size of .init_array and .fini_array from the dynamic segment */ 1644dd655cb9SJerome Forissier static void get_init_fini_array(struct ta_elf *elf, unsigned int type, 1645dd655cb9SJerome Forissier vaddr_t addr, size_t memsz, vaddr_t *init, 1646dd655cb9SJerome Forissier size_t *init_cnt, vaddr_t *fini, 1647dd655cb9SJerome Forissier size_t *fini_cnt) 1648dd655cb9SJerome Forissier { 1649dd655cb9SJerome Forissier size_t addrsz = 0; 1650dd655cb9SJerome Forissier size_t dyn_entsize = 0; 1651dd655cb9SJerome Forissier size_t num_dyns = 0; 1652dd655cb9SJerome Forissier size_t n = 0; 1653dd655cb9SJerome Forissier unsigned int tag = 0; 1654dd655cb9SJerome Forissier size_t val = 0; 1655dd655cb9SJerome Forissier 1656dd655cb9SJerome Forissier assert(type == PT_DYNAMIC); 1657dd655cb9SJerome Forissier 1658bc1d13c1SJens Wiklander check_phdr_in_range(elf, type, addr, memsz); 1659bc1d13c1SJens Wiklander 1660dd655cb9SJerome Forissier if (elf->is_32bit) { 1661dd655cb9SJerome Forissier dyn_entsize = sizeof(Elf32_Dyn); 1662dd655cb9SJerome Forissier addrsz = 4; 1663dd655cb9SJerome Forissier } else { 1664dd655cb9SJerome Forissier dyn_entsize = sizeof(Elf64_Dyn); 1665dd655cb9SJerome Forissier addrsz = 8; 1666dd655cb9SJerome Forissier } 1667dd655cb9SJerome Forissier 1668dd655cb9SJerome Forissier assert(!(memsz % dyn_entsize)); 1669dd655cb9SJerome Forissier num_dyns = memsz / dyn_entsize; 1670dd655cb9SJerome Forissier 1671dd655cb9SJerome Forissier for (n = 0; n < num_dyns; n++) { 1672dd655cb9SJerome Forissier read_dyn(elf, addr, n, &tag, &val); 1673dd655cb9SJerome Forissier if (tag == DT_INIT_ARRAY) 1674dd655cb9SJerome Forissier *init = val + elf->load_addr; 1675dd655cb9SJerome Forissier else if (tag == DT_FINI_ARRAY) 1676dd655cb9SJerome Forissier *fini = val + elf->load_addr; 1677dd655cb9SJerome Forissier else if (tag == DT_INIT_ARRAYSZ) 1678dd655cb9SJerome Forissier *init_cnt = val / addrsz; 1679dd655cb9SJerome Forissier else if (tag == DT_FINI_ARRAYSZ) 1680dd655cb9SJerome Forissier *fini_cnt = val / addrsz; 1681dd655cb9SJerome Forissier } 1682dd655cb9SJerome Forissier } 1683dd655cb9SJerome Forissier 1684dd655cb9SJerome Forissier /* Get address/size of .init_array and .fini_array in @elf (if present) */ 1685dd655cb9SJerome Forissier static void elf_get_init_fini_array(struct ta_elf *elf, vaddr_t *init, 1686dd655cb9SJerome Forissier size_t *init_cnt, vaddr_t *fini, 1687dd655cb9SJerome Forissier size_t *fini_cnt) 1688dd655cb9SJerome Forissier { 1689dd655cb9SJerome Forissier size_t n = 0; 1690dd655cb9SJerome Forissier 1691dd655cb9SJerome Forissier if (elf->is_32bit) { 1692dd655cb9SJerome Forissier Elf32_Phdr *phdr = elf->phdr; 1693dd655cb9SJerome Forissier 1694dd655cb9SJerome Forissier for (n = 0; n < elf->e_phnum; n++) { 1695dd655cb9SJerome Forissier if (phdr[n].p_type == PT_DYNAMIC) { 1696dd655cb9SJerome Forissier get_init_fini_array(elf, phdr[n].p_type, 1697dd655cb9SJerome Forissier phdr[n].p_vaddr, 1698dd655cb9SJerome Forissier phdr[n].p_memsz, 1699dd655cb9SJerome Forissier init, init_cnt, fini, 1700dd655cb9SJerome Forissier fini_cnt); 1701dd655cb9SJerome Forissier return; 1702dd655cb9SJerome Forissier } 1703dd655cb9SJerome Forissier } 1704dd655cb9SJerome Forissier } else { 1705dd655cb9SJerome Forissier Elf64_Phdr *phdr = elf->phdr; 1706dd655cb9SJerome Forissier 1707dd655cb9SJerome Forissier for (n = 0; n < elf->e_phnum; n++) { 1708dd655cb9SJerome Forissier if (phdr[n].p_type == PT_DYNAMIC) { 1709dd655cb9SJerome Forissier get_init_fini_array(elf, phdr[n].p_type, 1710dd655cb9SJerome Forissier phdr[n].p_vaddr, 1711dd655cb9SJerome Forissier phdr[n].p_memsz, 1712dd655cb9SJerome Forissier init, init_cnt, fini, 1713dd655cb9SJerome Forissier fini_cnt); 1714dd655cb9SJerome Forissier return; 1715dd655cb9SJerome Forissier } 1716dd655cb9SJerome Forissier } 1717dd655cb9SJerome Forissier } 1718dd655cb9SJerome Forissier } 1719dd655cb9SJerome Forissier 172001b02a16SJerome Forissier /* 172101b02a16SJerome Forissier * Deprecated by __elf_phdr_info below. Kept for compatibility. 172201b02a16SJerome Forissier * 172301b02a16SJerome Forissier * Pointers to ELF initialization and finalization functions are extracted by 172401b02a16SJerome Forissier * ldelf and stored on the TA heap, then exported to the TA via the global 172501b02a16SJerome Forissier * symbol __init_fini_info. libutee in OP-TEE 3.9.0 uses this mechanism. 172601b02a16SJerome Forissier */ 172701b02a16SJerome Forissier 172801b02a16SJerome Forissier struct __init_fini { 172901b02a16SJerome Forissier uint32_t flags; 173001b02a16SJerome Forissier uint16_t init_size; 173101b02a16SJerome Forissier uint16_t fini_size; 173201b02a16SJerome Forissier 173301b02a16SJerome Forissier void (**init)(void); /* @init_size entries */ 173401b02a16SJerome Forissier void (**fini)(void); /* @fini_size entries */ 173501b02a16SJerome Forissier }; 173601b02a16SJerome Forissier 173701b02a16SJerome Forissier #define __IFS_VALID BIT(0) 173801b02a16SJerome Forissier #define __IFS_INIT_HAS_RUN BIT(1) 173901b02a16SJerome Forissier #define __IFS_FINI_HAS_RUN BIT(2) 174001b02a16SJerome Forissier 174101b02a16SJerome Forissier struct __init_fini_info { 174201b02a16SJerome Forissier uint32_t reserved; 174301b02a16SJerome Forissier uint16_t size; 174401b02a16SJerome Forissier uint16_t pad; 174501b02a16SJerome Forissier struct __init_fini *ifs; /* @size entries */ 174601b02a16SJerome Forissier }; 174701b02a16SJerome Forissier 174801b02a16SJerome Forissier /* 32-bit variants for a 64-bit ldelf to access a 32-bit TA */ 174901b02a16SJerome Forissier 175001b02a16SJerome Forissier struct __init_fini32 { 175101b02a16SJerome Forissier uint32_t flags; 175201b02a16SJerome Forissier uint16_t init_size; 175301b02a16SJerome Forissier uint16_t fini_size; 175401b02a16SJerome Forissier uint32_t init; 175501b02a16SJerome Forissier uint32_t fini; 175601b02a16SJerome Forissier }; 175701b02a16SJerome Forissier 175801b02a16SJerome Forissier struct __init_fini_info32 { 175901b02a16SJerome Forissier uint32_t reserved; 176001b02a16SJerome Forissier uint16_t size; 176101b02a16SJerome Forissier uint16_t pad; 176201b02a16SJerome Forissier uint32_t ifs; 176301b02a16SJerome Forissier }; 176401b02a16SJerome Forissier 1765dd655cb9SJerome Forissier static TEE_Result realloc_ifs(vaddr_t va, size_t cnt, bool is_32bit) 1766dd655cb9SJerome Forissier { 1767dd655cb9SJerome Forissier struct __init_fini_info32 *info32 = (struct __init_fini_info32 *)va; 1768dd655cb9SJerome Forissier struct __init_fini_info *info = (struct __init_fini_info *)va; 1769dd655cb9SJerome Forissier struct __init_fini32 *ifs32 = NULL; 1770dd655cb9SJerome Forissier struct __init_fini *ifs = NULL; 1771dd655cb9SJerome Forissier size_t prev_cnt = 0; 1772dd655cb9SJerome Forissier void *ptr = NULL; 1773dd655cb9SJerome Forissier 1774dd655cb9SJerome Forissier if (is_32bit) { 1775dd655cb9SJerome Forissier ptr = (void *)(vaddr_t)info32->ifs; 1776dd655cb9SJerome Forissier ptr = realloc(ptr, cnt * sizeof(struct __init_fini32)); 1777dd655cb9SJerome Forissier if (!ptr) 1778dd655cb9SJerome Forissier return TEE_ERROR_OUT_OF_MEMORY; 1779dd655cb9SJerome Forissier ifs32 = ptr; 1780dd655cb9SJerome Forissier prev_cnt = info32->size; 1781dd655cb9SJerome Forissier if (cnt > prev_cnt) 1782dd655cb9SJerome Forissier memset(ifs32 + prev_cnt, 0, 1783dd655cb9SJerome Forissier (cnt - prev_cnt) * sizeof(*ifs32)); 1784dd655cb9SJerome Forissier info32->ifs = (uint32_t)(vaddr_t)ifs32; 1785dd655cb9SJerome Forissier info32->size = cnt; 1786dd655cb9SJerome Forissier } else { 1787dd655cb9SJerome Forissier ptr = realloc(info->ifs, cnt * sizeof(struct __init_fini)); 1788dd655cb9SJerome Forissier if (!ptr) 1789dd655cb9SJerome Forissier return TEE_ERROR_OUT_OF_MEMORY; 1790dd655cb9SJerome Forissier ifs = ptr; 1791dd655cb9SJerome Forissier prev_cnt = info->size; 1792dd655cb9SJerome Forissier if (cnt > prev_cnt) 1793dd655cb9SJerome Forissier memset(ifs + prev_cnt, 0, 1794dd655cb9SJerome Forissier (cnt - prev_cnt) * sizeof(*ifs)); 1795dd655cb9SJerome Forissier info->ifs = ifs; 1796dd655cb9SJerome Forissier info->size = cnt; 1797dd655cb9SJerome Forissier } 1798dd655cb9SJerome Forissier 1799ebef121cSJerome Forissier return TEE_SUCCESS; 1800ebef121cSJerome Forissier } 1801dd655cb9SJerome Forissier 1802dd655cb9SJerome Forissier static void fill_ifs(vaddr_t va, size_t idx, struct ta_elf *elf, bool is_32bit) 1803dd655cb9SJerome Forissier { 1804dd655cb9SJerome Forissier struct __init_fini_info32 *info32 = (struct __init_fini_info32 *)va; 1805dd655cb9SJerome Forissier struct __init_fini_info *info = (struct __init_fini_info *)va; 1806dd655cb9SJerome Forissier struct __init_fini32 *ifs32 = NULL; 1807dd655cb9SJerome Forissier struct __init_fini *ifs = NULL; 1808dd655cb9SJerome Forissier size_t init_cnt = 0; 1809dd655cb9SJerome Forissier size_t fini_cnt = 0; 1810dd655cb9SJerome Forissier vaddr_t init = 0; 1811dd655cb9SJerome Forissier vaddr_t fini = 0; 1812dd655cb9SJerome Forissier 1813dd655cb9SJerome Forissier if (is_32bit) { 1814dd655cb9SJerome Forissier assert(idx < info32->size); 1815dd655cb9SJerome Forissier ifs32 = &((struct __init_fini32 *)(vaddr_t)info32->ifs)[idx]; 1816dd655cb9SJerome Forissier 1817dd655cb9SJerome Forissier if (ifs32->flags & __IFS_VALID) 1818dd655cb9SJerome Forissier return; 1819dd655cb9SJerome Forissier 1820dd655cb9SJerome Forissier elf_get_init_fini_array(elf, &init, &init_cnt, &fini, 1821dd655cb9SJerome Forissier &fini_cnt); 1822dd655cb9SJerome Forissier 1823dd655cb9SJerome Forissier ifs32->init = (uint32_t)init; 1824dd655cb9SJerome Forissier ifs32->init_size = init_cnt; 1825dd655cb9SJerome Forissier 1826dd655cb9SJerome Forissier ifs32->fini = (uint32_t)fini; 1827dd655cb9SJerome Forissier ifs32->fini_size = fini_cnt; 1828dd655cb9SJerome Forissier 1829dd655cb9SJerome Forissier ifs32->flags |= __IFS_VALID; 1830dd655cb9SJerome Forissier } else { 1831dd655cb9SJerome Forissier assert(idx < info->size); 1832dd655cb9SJerome Forissier ifs = &info->ifs[idx]; 1833dd655cb9SJerome Forissier 1834dd655cb9SJerome Forissier if (ifs->flags & __IFS_VALID) 1835dd655cb9SJerome Forissier return; 1836dd655cb9SJerome Forissier 1837dd655cb9SJerome Forissier elf_get_init_fini_array(elf, &init, &init_cnt, &fini, 1838dd655cb9SJerome Forissier &fini_cnt); 1839dd655cb9SJerome Forissier 1840dd655cb9SJerome Forissier ifs->init = (void (**)(void))init; 1841dd655cb9SJerome Forissier ifs->init_size = init_cnt; 1842dd655cb9SJerome Forissier 1843dd655cb9SJerome Forissier ifs->fini = (void (**)(void))fini; 1844dd655cb9SJerome Forissier ifs->fini_size = fini_cnt; 1845dd655cb9SJerome Forissier 1846dd655cb9SJerome Forissier ifs->flags |= __IFS_VALID; 1847dd655cb9SJerome Forissier } 1848dd655cb9SJerome Forissier } 1849dd655cb9SJerome Forissier 1850dd655cb9SJerome Forissier /* 1851dd655cb9SJerome Forissier * Set or update __init_fini_info in the TA with information from the ELF 1852dd655cb9SJerome Forissier * queue 1853dd655cb9SJerome Forissier */ 185401b02a16SJerome Forissier TEE_Result ta_elf_set_init_fini_info_compat(bool is_32bit) 1855dd655cb9SJerome Forissier { 1856dd655cb9SJerome Forissier struct __init_fini_info *info = NULL; 1857dd655cb9SJerome Forissier TEE_Result res = TEE_SUCCESS; 1858dd655cb9SJerome Forissier struct ta_elf *elf = NULL; 1859dd655cb9SJerome Forissier vaddr_t info_va = 0; 1860dd655cb9SJerome Forissier size_t cnt = 0; 1861dd655cb9SJerome Forissier 1862c88ba125SJerome Forissier res = ta_elf_resolve_sym("__init_fini_info", &info_va, NULL, NULL); 1863dd655cb9SJerome Forissier if (res) { 1864dd655cb9SJerome Forissier if (res == TEE_ERROR_ITEM_NOT_FOUND) { 186501b02a16SJerome Forissier /* 186601b02a16SJerome Forissier * Not an error, only TAs linked against libutee from 186701b02a16SJerome Forissier * OP-TEE 3.9.0 have this symbol. 186801b02a16SJerome Forissier */ 1869dd655cb9SJerome Forissier return TEE_SUCCESS; 1870dd655cb9SJerome Forissier } 1871dd655cb9SJerome Forissier return res; 1872dd655cb9SJerome Forissier } 1873dd655cb9SJerome Forissier assert(info_va); 1874dd655cb9SJerome Forissier 1875dd655cb9SJerome Forissier info = (struct __init_fini_info *)info_va; 1876dd655cb9SJerome Forissier if (info->reserved) 1877dd655cb9SJerome Forissier return TEE_ERROR_NOT_SUPPORTED; 1878dd655cb9SJerome Forissier 1879dd655cb9SJerome Forissier TAILQ_FOREACH(elf, &main_elf_queue, link) 1880dd655cb9SJerome Forissier cnt++; 1881dd655cb9SJerome Forissier 1882dd655cb9SJerome Forissier /* Queue has at least one file (main) */ 1883dd655cb9SJerome Forissier assert(cnt); 1884dd655cb9SJerome Forissier 1885dd655cb9SJerome Forissier res = realloc_ifs(info_va, cnt, is_32bit); 1886dd655cb9SJerome Forissier if (res) 1887dd655cb9SJerome Forissier goto err; 1888dd655cb9SJerome Forissier 1889dd655cb9SJerome Forissier cnt = 0; 1890dd655cb9SJerome Forissier TAILQ_FOREACH(elf, &main_elf_queue, link) { 1891dd655cb9SJerome Forissier fill_ifs(info_va, cnt, elf, is_32bit); 1892dd655cb9SJerome Forissier cnt++; 1893dd655cb9SJerome Forissier } 1894dd655cb9SJerome Forissier 1895dd655cb9SJerome Forissier return TEE_SUCCESS; 1896dd655cb9SJerome Forissier err: 1897dd655cb9SJerome Forissier free(info); 1898dd655cb9SJerome Forissier return res; 1899dd655cb9SJerome Forissier } 19009d224046SJerome Forissier 19019d224046SJerome Forissier static TEE_Result realloc_elf_phdr_info(vaddr_t va, size_t cnt, bool is_32bit) 19029d224046SJerome Forissier { 19039d224046SJerome Forissier struct __elf_phdr_info32 *info32 = (struct __elf_phdr_info32 *)va; 19049d224046SJerome Forissier struct __elf_phdr_info *info = (struct __elf_phdr_info *)va; 19059d224046SJerome Forissier struct dl_phdr_info32 *dlpi32 = NULL; 19069d224046SJerome Forissier struct dl_phdr_info *dlpi = NULL; 19079d224046SJerome Forissier size_t prev_cnt = 0; 19089d224046SJerome Forissier void *ptr = NULL; 19099d224046SJerome Forissier 19109d224046SJerome Forissier if (is_32bit) { 19119d224046SJerome Forissier ptr = (void *)(vaddr_t)info32->dlpi; 19129d224046SJerome Forissier ptr = realloc(ptr, cnt * sizeof(*dlpi32)); 19139d224046SJerome Forissier if (!ptr) 19149d224046SJerome Forissier return TEE_ERROR_OUT_OF_MEMORY; 19159d224046SJerome Forissier dlpi32 = ptr; 19169d224046SJerome Forissier prev_cnt = info32->count; 19179d224046SJerome Forissier if (cnt > prev_cnt) 19189d224046SJerome Forissier memset(dlpi32 + prev_cnt, 0, 19199d224046SJerome Forissier (cnt - prev_cnt) * sizeof(*dlpi32)); 19209d224046SJerome Forissier info32->dlpi = (uint32_t)(vaddr_t)dlpi32; 19219d224046SJerome Forissier info32->count = cnt; 19229d224046SJerome Forissier } else { 19239d224046SJerome Forissier ptr = realloc(info->dlpi, cnt * sizeof(*dlpi)); 19249d224046SJerome Forissier if (!ptr) 19259d224046SJerome Forissier return TEE_ERROR_OUT_OF_MEMORY; 19269d224046SJerome Forissier dlpi = ptr; 19279d224046SJerome Forissier prev_cnt = info->count; 19289d224046SJerome Forissier if (cnt > prev_cnt) 19299d224046SJerome Forissier memset(dlpi + prev_cnt, 0, 19309d224046SJerome Forissier (cnt - prev_cnt) * sizeof(*dlpi)); 19319d224046SJerome Forissier info->dlpi = dlpi; 19329d224046SJerome Forissier info->count = cnt; 19339d224046SJerome Forissier } 19349d224046SJerome Forissier 19359d224046SJerome Forissier return TEE_SUCCESS; 19369d224046SJerome Forissier } 19379d224046SJerome Forissier 19389d224046SJerome Forissier static void fill_elf_phdr_info(vaddr_t va, size_t idx, struct ta_elf *elf, 19399d224046SJerome Forissier bool is_32bit) 19409d224046SJerome Forissier { 19419d224046SJerome Forissier struct __elf_phdr_info32 *info32 = (struct __elf_phdr_info32 *)va; 19429d224046SJerome Forissier struct __elf_phdr_info *info = (struct __elf_phdr_info *)va; 19439d224046SJerome Forissier struct dl_phdr_info32 *dlpi32 = NULL; 19449d224046SJerome Forissier struct dl_phdr_info *dlpi = NULL; 19459d224046SJerome Forissier 19469d224046SJerome Forissier if (is_32bit) { 19479d224046SJerome Forissier assert(idx < info32->count); 19489d224046SJerome Forissier dlpi32 = (struct dl_phdr_info32 *)(vaddr_t)info32->dlpi + idx; 19499d224046SJerome Forissier 19509d224046SJerome Forissier dlpi32->dlpi_addr = elf->load_addr; 19519d224046SJerome Forissier if (elf->soname) 19529d224046SJerome Forissier dlpi32->dlpi_name = (vaddr_t)elf->soname; 19539d224046SJerome Forissier else 19549d224046SJerome Forissier dlpi32->dlpi_name = (vaddr_t)&info32->zero; 19559d224046SJerome Forissier dlpi32->dlpi_phdr = (vaddr_t)elf->phdr; 19569d224046SJerome Forissier dlpi32->dlpi_phnum = elf->e_phnum; 19579d224046SJerome Forissier dlpi32->dlpi_adds = 1; /* No unloading on dlclose() currently */ 19589d224046SJerome Forissier dlpi32->dlpi_subs = 0; /* No unloading on dlclose() currently */ 19599d224046SJerome Forissier dlpi32->dlpi_tls_modid = elf->tls_mod_id; 19609d224046SJerome Forissier dlpi32->dlpi_tls_data = elf->tls_start; 19619d224046SJerome Forissier } else { 19629d224046SJerome Forissier assert(idx < info->count); 19639d224046SJerome Forissier dlpi = info->dlpi + idx; 19649d224046SJerome Forissier 19659d224046SJerome Forissier dlpi->dlpi_addr = elf->load_addr; 19669d224046SJerome Forissier if (elf->soname) 19679d224046SJerome Forissier dlpi->dlpi_name = elf->soname; 19689d224046SJerome Forissier else 19699d224046SJerome Forissier dlpi->dlpi_name = &info32->zero; 19709d224046SJerome Forissier dlpi->dlpi_phdr = elf->phdr; 19719d224046SJerome Forissier dlpi->dlpi_phnum = elf->e_phnum; 19729d224046SJerome Forissier dlpi->dlpi_adds = 1; /* No unloading on dlclose() currently */ 19739d224046SJerome Forissier dlpi->dlpi_subs = 0; /* No unloading on dlclose() currently */ 19749d224046SJerome Forissier dlpi->dlpi_tls_modid = elf->tls_mod_id; 19759d224046SJerome Forissier dlpi->dlpi_tls_data = (void *)elf->tls_start; 19769d224046SJerome Forissier } 19779d224046SJerome Forissier } 19789d224046SJerome Forissier 19799d224046SJerome Forissier /* Set or update __elf_hdr_info in the TA with information from the ELF queue */ 19809d224046SJerome Forissier TEE_Result ta_elf_set_elf_phdr_info(bool is_32bit) 19819d224046SJerome Forissier { 19829d224046SJerome Forissier struct __elf_phdr_info *info = NULL; 19839d224046SJerome Forissier TEE_Result res = TEE_SUCCESS; 19849d224046SJerome Forissier struct ta_elf *elf = NULL; 19859d224046SJerome Forissier vaddr_t info_va = 0; 19869d224046SJerome Forissier size_t cnt = 0; 19879d224046SJerome Forissier 19889d224046SJerome Forissier res = ta_elf_resolve_sym("__elf_phdr_info", &info_va, NULL, NULL); 19899d224046SJerome Forissier if (res) { 19909d224046SJerome Forissier if (res == TEE_ERROR_ITEM_NOT_FOUND) { 19919d224046SJerome Forissier /* Older TA */ 19929d224046SJerome Forissier return TEE_SUCCESS; 19939d224046SJerome Forissier } 19949d224046SJerome Forissier return res; 19959d224046SJerome Forissier } 19969d224046SJerome Forissier assert(info_va); 19979d224046SJerome Forissier 19989d224046SJerome Forissier info = (struct __elf_phdr_info *)info_va; 19999d224046SJerome Forissier if (info->reserved) 20009d224046SJerome Forissier return TEE_ERROR_NOT_SUPPORTED; 20019d224046SJerome Forissier 20029d224046SJerome Forissier TAILQ_FOREACH(elf, &main_elf_queue, link) 20039d224046SJerome Forissier cnt++; 20049d224046SJerome Forissier 20059d224046SJerome Forissier res = realloc_elf_phdr_info(info_va, cnt, is_32bit); 20069d224046SJerome Forissier if (res) 20079d224046SJerome Forissier return res; 20089d224046SJerome Forissier 20099d224046SJerome Forissier cnt = 0; 20109d224046SJerome Forissier TAILQ_FOREACH(elf, &main_elf_queue, link) { 20119d224046SJerome Forissier fill_elf_phdr_info(info_va, cnt, elf, is_32bit); 20129d224046SJerome Forissier cnt++; 20139d224046SJerome Forissier } 20149d224046SJerome Forissier 20159d224046SJerome Forissier return TEE_SUCCESS; 20169d224046SJerome Forissier } 2017