13124c3e0SJohn Polstra /*- 23124c3e0SJohn Polstra * Copyright 1996-1998 John D. Polstra. 33124c3e0SJohn Polstra * All rights reserved. 43124c3e0SJohn Polstra * 53124c3e0SJohn Polstra * Redistribution and use in source and binary forms, with or without 63124c3e0SJohn Polstra * modification, are permitted provided that the following conditions 73124c3e0SJohn Polstra * are met: 83124c3e0SJohn Polstra * 1. Redistributions of source code must retain the above copyright 93124c3e0SJohn Polstra * notice, this list of conditions and the following disclaimer. 103124c3e0SJohn Polstra * 2. Redistributions in binary form must reproduce the above copyright 113124c3e0SJohn Polstra * notice, this list of conditions and the following disclaimer in the 123124c3e0SJohn Polstra * documentation and/or other materials provided with the distribution. 133124c3e0SJohn Polstra * 143124c3e0SJohn Polstra * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 153124c3e0SJohn Polstra * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 163124c3e0SJohn Polstra * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 173124c3e0SJohn Polstra * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 183124c3e0SJohn Polstra * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 193124c3e0SJohn Polstra * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 203124c3e0SJohn Polstra * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 213124c3e0SJohn Polstra * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 223124c3e0SJohn Polstra * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 233124c3e0SJohn Polstra * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 243124c3e0SJohn Polstra * 257f3dea24SPeter Wemm * $FreeBSD$ 263124c3e0SJohn Polstra */ 273124c3e0SJohn Polstra 283124c3e0SJohn Polstra #include <sys/param.h> 293124c3e0SJohn Polstra #include <sys/mman.h> 307360ae0fSJohn Polstra #include <sys/stat.h> 313124c3e0SJohn Polstra 323124c3e0SJohn Polstra #include <errno.h> 333124c3e0SJohn Polstra #include <stddef.h> 34926ea445SJohn Polstra #include <stdlib.h> 353124c3e0SJohn Polstra #include <string.h> 363124c3e0SJohn Polstra #include <unistd.h> 373124c3e0SJohn Polstra 38b5393d9fSDoug Rabson #include "debug.h" 393124c3e0SJohn Polstra #include "rtld.h" 403124c3e0SJohn Polstra 417fd852f8SMaxim Sobolev static Elf_Ehdr *get_elf_header(int, const char *, const struct stat *); 42fa7dd9c5SMatthew Dillon static int convert_flags(int); /* Elf flags -> mmap flags */ 433124c3e0SJohn Polstra 443124c3e0SJohn Polstra /* 45bfb1ef60SJohn Polstra * Map a shared object into memory. The "fd" argument is a file descriptor, 463124c3e0SJohn Polstra * which must be open on the object and positioned at its beginning. 47bfb1ef60SJohn Polstra * The "path" argument is a pathname that is used only for error messages. 483124c3e0SJohn Polstra * 493124c3e0SJohn Polstra * The return value is a pointer to a newly-allocated Obj_Entry structure 503124c3e0SJohn Polstra * for the shared object. Returns NULL on failure. 513124c3e0SJohn Polstra */ 523124c3e0SJohn Polstra Obj_Entry * 537360ae0fSJohn Polstra map_object(int fd, const char *path, const struct stat *sb) 543124c3e0SJohn Polstra { 553124c3e0SJohn Polstra Obj_Entry *obj; 56341b3de6SMatthew N. Dodd Elf_Ehdr *hdr; 5778af18bdSDavid E. O'Brien int i; 5813575fc4SDoug Rabson Elf_Phdr *phdr; 5913575fc4SDoug Rabson Elf_Phdr *phlimit; 608b7f25d4SAlexander Kabaev Elf_Phdr **segs; 613124c3e0SJohn Polstra int nsegs; 6213575fc4SDoug Rabson Elf_Phdr *phdyn; 63a607e5d7SJohn Polstra Elf_Phdr *phinterp; 64017246d0SDoug Rabson Elf_Phdr *phtls; 653124c3e0SJohn Polstra caddr_t mapbase; 663124c3e0SJohn Polstra size_t mapsize; 6713575fc4SDoug Rabson Elf_Addr base_vaddr; 6813575fc4SDoug Rabson Elf_Addr base_vlimit; 693124c3e0SJohn Polstra caddr_t base_addr; 70ea8577c7SAlan Cox int base_flags; 7113575fc4SDoug Rabson Elf_Off data_offset; 7213575fc4SDoug Rabson Elf_Addr data_vaddr; 7313575fc4SDoug Rabson Elf_Addr data_vlimit; 743124c3e0SJohn Polstra caddr_t data_addr; 758b7f25d4SAlexander Kabaev int data_prot; 76fa7dd9c5SMatthew Dillon int data_flags; 7713575fc4SDoug Rabson Elf_Addr clear_vaddr; 783124c3e0SJohn Polstra caddr_t clear_addr; 798b7f25d4SAlexander Kabaev caddr_t clear_page; 8049f90ad2SAlexander Kabaev Elf_Addr phdr_vaddr; 8149f90ad2SAlexander Kabaev size_t nclear, phsize; 8213575fc4SDoug Rabson Elf_Addr bss_vaddr; 8313575fc4SDoug Rabson Elf_Addr bss_vlimit; 843124c3e0SJohn Polstra caddr_t bss_addr; 85212f264cSKonstantin Belousov Elf_Word stack_flags; 866d7610d7SKonstantin Belousov Elf_Addr relro_page; 876d7610d7SKonstantin Belousov size_t relro_size; 8883aa9cc0SKonstantin Belousov Elf_Addr note_start; 8983aa9cc0SKonstantin Belousov Elf_Addr note_end; 90bd56d410SKonstantin Belousov char *note_map; 91bd56d410SKonstantin Belousov size_t note_map_len; 923124c3e0SJohn Polstra 937fd852f8SMaxim Sobolev hdr = get_elf_header(fd, path, sb); 94341b3de6SMatthew N. Dodd if (hdr == NULL) 95341b3de6SMatthew N. Dodd return (NULL); 963124c3e0SJohn Polstra 973124c3e0SJohn Polstra /* 983124c3e0SJohn Polstra * Scan the program header entries, and save key information. 993124c3e0SJohn Polstra * 10011e0093fSKonstantin Belousov * We expect that the loadable segments are ordered by load address. 1013124c3e0SJohn Polstra */ 102341b3de6SMatthew N. Dodd phdr = (Elf_Phdr *) ((char *)hdr + hdr->e_phoff); 10349f90ad2SAlexander Kabaev phsize = hdr->e_phnum * sizeof (phdr[0]); 104341b3de6SMatthew N. Dodd phlimit = phdr + hdr->e_phnum; 1058b7f25d4SAlexander Kabaev nsegs = -1; 10649f90ad2SAlexander Kabaev phdyn = phinterp = phtls = NULL; 10749f90ad2SAlexander Kabaev phdr_vaddr = 0; 1086d7610d7SKonstantin Belousov relro_page = 0; 1096d7610d7SKonstantin Belousov relro_size = 0; 11083aa9cc0SKonstantin Belousov note_start = 0; 11183aa9cc0SKonstantin Belousov note_end = 0; 112bd56d410SKonstantin Belousov note_map = NULL; 113341b3de6SMatthew N. Dodd segs = alloca(sizeof(segs[0]) * hdr->e_phnum); 114cb38d494SKonstantin Belousov stack_flags = RTLD_DEFAULT_STACK_PF_EXEC | PF_R | PF_W; 1153124c3e0SJohn Polstra while (phdr < phlimit) { 1163124c3e0SJohn Polstra switch (phdr->p_type) { 1173124c3e0SJohn Polstra 118a607e5d7SJohn Polstra case PT_INTERP: 119a607e5d7SJohn Polstra phinterp = phdr; 120a607e5d7SJohn Polstra break; 121a607e5d7SJohn Polstra 1223124c3e0SJohn Polstra case PT_LOAD: 1238b7f25d4SAlexander Kabaev segs[++nsegs] = phdr; 12449f90ad2SAlexander Kabaev if ((segs[nsegs]->p_align & (PAGE_SIZE - 1)) != 0) { 1258b7f25d4SAlexander Kabaev _rtld_error("%s: PT_LOAD segment %d not page-aligned", 1268b7f25d4SAlexander Kabaev path, nsegs); 127e474e51eSKonstantin Belousov goto error; 128bfb1ef60SJohn Polstra } 1293124c3e0SJohn Polstra break; 1303124c3e0SJohn Polstra 1313124c3e0SJohn Polstra case PT_PHDR: 13249f90ad2SAlexander Kabaev phdr_vaddr = phdr->p_vaddr; 13349f90ad2SAlexander Kabaev phsize = phdr->p_memsz; 1343124c3e0SJohn Polstra break; 1353124c3e0SJohn Polstra 1363124c3e0SJohn Polstra case PT_DYNAMIC: 1373124c3e0SJohn Polstra phdyn = phdr; 1383124c3e0SJohn Polstra break; 139017246d0SDoug Rabson 140017246d0SDoug Rabson case PT_TLS: 141017246d0SDoug Rabson phtls = phdr; 142017246d0SDoug Rabson break; 143212f264cSKonstantin Belousov 144212f264cSKonstantin Belousov case PT_GNU_STACK: 145212f264cSKonstantin Belousov stack_flags = phdr->p_flags; 146212f264cSKonstantin Belousov break; 1476d7610d7SKonstantin Belousov 1486d7610d7SKonstantin Belousov case PT_GNU_RELRO: 1496d7610d7SKonstantin Belousov relro_page = phdr->p_vaddr; 1506d7610d7SKonstantin Belousov relro_size = phdr->p_memsz; 1516d7610d7SKonstantin Belousov break; 15283aa9cc0SKonstantin Belousov 15383aa9cc0SKonstantin Belousov case PT_NOTE: 1545eab36f2SKonstantin Belousov if (phdr->p_offset > PAGE_SIZE || 155bd56d410SKonstantin Belousov phdr->p_offset + phdr->p_filesz > PAGE_SIZE) { 156bd56d410SKonstantin Belousov note_map_len = round_page(phdr->p_offset + 157bd56d410SKonstantin Belousov phdr->p_filesz) - trunc_page(phdr->p_offset); 158bd56d410SKonstantin Belousov note_map = mmap(NULL, note_map_len, PROT_READ, 159bd56d410SKonstantin Belousov MAP_PRIVATE, fd, trunc_page(phdr->p_offset)); 160bd56d410SKonstantin Belousov if (note_map == MAP_FAILED) { 161bd56d410SKonstantin Belousov _rtld_error("%s: error mapping PT_NOTE (%d)", path, errno); 162bd56d410SKonstantin Belousov goto error; 163bd56d410SKonstantin Belousov } 164bd56d410SKonstantin Belousov note_start = (Elf_Addr)(note_map + phdr->p_offset - 165bd56d410SKonstantin Belousov trunc_page(phdr->p_offset)); 166bd56d410SKonstantin Belousov } else { 1675eab36f2SKonstantin Belousov note_start = (Elf_Addr)(char *)hdr + phdr->p_offset; 168bd56d410SKonstantin Belousov } 16983aa9cc0SKonstantin Belousov note_end = note_start + phdr->p_filesz; 17083aa9cc0SKonstantin Belousov break; 1713124c3e0SJohn Polstra } 1723124c3e0SJohn Polstra 1733124c3e0SJohn Polstra ++phdr; 1743124c3e0SJohn Polstra } 1753124c3e0SJohn Polstra if (phdyn == NULL) { 176bfb1ef60SJohn Polstra _rtld_error("%s: object is not dynamically-linked", path); 177e474e51eSKonstantin Belousov goto error; 1783124c3e0SJohn Polstra } 1793124c3e0SJohn Polstra 1808b7f25d4SAlexander Kabaev if (nsegs < 0) { 181bfb1ef60SJohn Polstra _rtld_error("%s: too few PT_LOAD segments", path); 182e474e51eSKonstantin Belousov goto error; 183bfb1ef60SJohn Polstra } 1843124c3e0SJohn Polstra 1853124c3e0SJohn Polstra /* 1863124c3e0SJohn Polstra * Map the entire address space of the object, to stake out our 1873124c3e0SJohn Polstra * contiguous region, and to establish the base address for relocation. 1883124c3e0SJohn Polstra */ 1893124c3e0SJohn Polstra base_vaddr = trunc_page(segs[0]->p_vaddr); 1908b7f25d4SAlexander Kabaev base_vlimit = round_page(segs[nsegs]->p_vaddr + segs[nsegs]->p_memsz); 1913124c3e0SJohn Polstra mapsize = base_vlimit - base_vaddr; 19215789513STijl Coosemans base_addr = (caddr_t) base_vaddr; 193ea8577c7SAlan Cox base_flags = MAP_PRIVATE | MAP_ANON | MAP_NOCORE; 194ea8577c7SAlan Cox if (npagesizes > 1 && round_page(segs[0]->p_filesz) >= pagesizes[1]) 195ea8577c7SAlan Cox base_flags |= MAP_ALIGNED_SUPER; 1963124c3e0SJohn Polstra 197ea8577c7SAlan Cox mapbase = mmap(base_addr, mapsize, PROT_NONE, base_flags, -1, 0); 1983124c3e0SJohn Polstra if (mapbase == (caddr_t) -1) { 199bfb1ef60SJohn Polstra _rtld_error("%s: mmap of entire address space failed: %s", 2006fea10fbSKonstantin Belousov path, rtld_strerror(errno)); 201e474e51eSKonstantin Belousov goto error; 2023124c3e0SJohn Polstra } 2033124c3e0SJohn Polstra if (base_addr != NULL && mapbase != base_addr) { 204bfb1ef60SJohn Polstra _rtld_error("%s: mmap returned wrong address: wanted %p, got %p", 205bfb1ef60SJohn Polstra path, base_addr, mapbase); 206e474e51eSKonstantin Belousov goto error1; 2073124c3e0SJohn Polstra } 2083124c3e0SJohn Polstra 2098b7f25d4SAlexander Kabaev for (i = 0; i <= nsegs; i++) { 2108b7f25d4SAlexander Kabaev /* Overlay the segment onto the proper region. */ 2118b7f25d4SAlexander Kabaev data_offset = trunc_page(segs[i]->p_offset); 2128b7f25d4SAlexander Kabaev data_vaddr = trunc_page(segs[i]->p_vaddr); 2138b7f25d4SAlexander Kabaev data_vlimit = round_page(segs[i]->p_vaddr + segs[i]->p_filesz); 2143124c3e0SJohn Polstra data_addr = mapbase + (data_vaddr - base_vaddr); 215fa7dd9c5SMatthew Dillon data_prot = convert_prot(segs[i]->p_flags); 216fa7dd9c5SMatthew Dillon data_flags = convert_flags(segs[i]->p_flags) | MAP_FIXED; 217a3c8e04eSKonstantin Belousov if (mmap(data_addr, data_vlimit - data_vaddr, data_prot, 218e474e51eSKonstantin Belousov data_flags | MAP_PREFAULT_READ, fd, data_offset) == (caddr_t) -1) { 2196fea10fbSKonstantin Belousov _rtld_error("%s: mmap of data failed: %s", path, 2206fea10fbSKonstantin Belousov rtld_strerror(errno)); 221e474e51eSKonstantin Belousov goto error1; 2223124c3e0SJohn Polstra } 2233124c3e0SJohn Polstra 22469ca61baSKonstantin Belousov /* Do BSS setup */ 22569ca61baSKonstantin Belousov if (segs[i]->p_filesz != segs[i]->p_memsz) { 22669ca61baSKonstantin Belousov 2278b7f25d4SAlexander Kabaev /* Clear any BSS in the last page of the segment. */ 2288b7f25d4SAlexander Kabaev clear_vaddr = segs[i]->p_vaddr + segs[i]->p_filesz; 2293124c3e0SJohn Polstra clear_addr = mapbase + (clear_vaddr - base_vaddr); 2308b7f25d4SAlexander Kabaev clear_page = mapbase + (trunc_page(clear_vaddr) - base_vaddr); 23169ca61baSKonstantin Belousov 2328b7f25d4SAlexander Kabaev if ((nclear = data_vlimit - clear_vaddr) > 0) { 2338b7f25d4SAlexander Kabaev /* Make sure the end of the segment is writable */ 23469ca61baSKonstantin Belousov if ((data_prot & PROT_WRITE) == 0 && -1 == 23569ca61baSKonstantin Belousov mprotect(clear_page, PAGE_SIZE, data_prot|PROT_WRITE)) { 2368b7f25d4SAlexander Kabaev _rtld_error("%s: mprotect failed: %s", path, 2376fea10fbSKonstantin Belousov rtld_strerror(errno)); 238e474e51eSKonstantin Belousov goto error1; 2398b7f25d4SAlexander Kabaev } 2408b7f25d4SAlexander Kabaev 2413124c3e0SJohn Polstra memset(clear_addr, 0, nclear); 2423124c3e0SJohn Polstra 2438b7f25d4SAlexander Kabaev /* Reset the data protection back */ 2448b7f25d4SAlexander Kabaev if ((data_prot & PROT_WRITE) == 0) 2458b7f25d4SAlexander Kabaev mprotect(clear_page, PAGE_SIZE, data_prot); 2468b7f25d4SAlexander Kabaev } 2478b7f25d4SAlexander Kabaev 2483124c3e0SJohn Polstra /* Overlay the BSS segment onto the proper region. */ 2493124c3e0SJohn Polstra bss_vaddr = data_vlimit; 2508b7f25d4SAlexander Kabaev bss_vlimit = round_page(segs[i]->p_vaddr + segs[i]->p_memsz); 2513124c3e0SJohn Polstra bss_addr = mapbase + (bss_vaddr - base_vaddr); 2523124c3e0SJohn Polstra if (bss_vlimit > bss_vaddr) { /* There is something to do */ 253750b5e31SKonstantin Belousov if (mmap(bss_addr, bss_vlimit - bss_vaddr, data_prot, 254750b5e31SKonstantin Belousov data_flags | MAP_ANON, -1, 0) == (caddr_t)-1) { 255750b5e31SKonstantin Belousov _rtld_error("%s: mmap of bss failed: %s", path, 2566fea10fbSKonstantin Belousov rtld_strerror(errno)); 257e474e51eSKonstantin Belousov goto error1; 2583124c3e0SJohn Polstra } 2593124c3e0SJohn Polstra } 26069ca61baSKonstantin Belousov } 26169ca61baSKonstantin Belousov 26249f90ad2SAlexander Kabaev if (phdr_vaddr == 0 && data_offset <= hdr->e_phoff && 26349f90ad2SAlexander Kabaev (data_vlimit - data_vaddr + data_offset) >= 26449f90ad2SAlexander Kabaev (hdr->e_phoff + hdr->e_phnum * sizeof (Elf_Phdr))) { 26549f90ad2SAlexander Kabaev phdr_vaddr = data_vaddr + hdr->e_phoff - data_offset; 26649f90ad2SAlexander Kabaev } 2678b7f25d4SAlexander Kabaev } 2683124c3e0SJohn Polstra 269926ea445SJohn Polstra obj = obj_new(); 2707360ae0fSJohn Polstra if (sb != NULL) { 2717360ae0fSJohn Polstra obj->dev = sb->st_dev; 2727360ae0fSJohn Polstra obj->ino = sb->st_ino; 2737360ae0fSJohn Polstra } 2743124c3e0SJohn Polstra obj->mapbase = mapbase; 2753124c3e0SJohn Polstra obj->mapsize = mapsize; 2763124c3e0SJohn Polstra obj->textsize = round_page(segs[0]->p_vaddr + segs[0]->p_memsz) - 2773124c3e0SJohn Polstra base_vaddr; 2783124c3e0SJohn Polstra obj->vaddrbase = base_vaddr; 2793124c3e0SJohn Polstra obj->relocbase = mapbase - base_vaddr; 280a607e5d7SJohn Polstra obj->dynamic = (const Elf_Dyn *) (obj->relocbase + phdyn->p_vaddr); 281341b3de6SMatthew N. Dodd if (hdr->e_entry != 0) 282341b3de6SMatthew N. Dodd obj->entry = (caddr_t) (obj->relocbase + hdr->e_entry); 28349f90ad2SAlexander Kabaev if (phdr_vaddr != 0) { 28449f90ad2SAlexander Kabaev obj->phdr = (const Elf_Phdr *) (obj->relocbase + phdr_vaddr); 28549f90ad2SAlexander Kabaev } else { 28649f90ad2SAlexander Kabaev obj->phdr = malloc(phsize); 28749f90ad2SAlexander Kabaev if (obj->phdr == NULL) { 28849f90ad2SAlexander Kabaev obj_free(obj); 28949f90ad2SAlexander Kabaev _rtld_error("%s: cannot allocate program header", path); 290e474e51eSKonstantin Belousov goto error1; 2913124c3e0SJohn Polstra } 29249f90ad2SAlexander Kabaev memcpy((char *)obj->phdr, (char *)hdr + hdr->e_phoff, phsize); 29349f90ad2SAlexander Kabaev obj->phdr_alloc = true; 29449f90ad2SAlexander Kabaev } 29549f90ad2SAlexander Kabaev obj->phsize = phsize; 296a607e5d7SJohn Polstra if (phinterp != NULL) 297a607e5d7SJohn Polstra obj->interp = (const char *) (obj->relocbase + phinterp->p_vaddr); 298017246d0SDoug Rabson if (phtls != NULL) { 299017246d0SDoug Rabson tls_dtv_generation++; 300017246d0SDoug Rabson obj->tlsindex = ++tls_max_index; 301017246d0SDoug Rabson obj->tlssize = phtls->p_memsz; 302017246d0SDoug Rabson obj->tlsalign = phtls->p_align; 303017246d0SDoug Rabson obj->tlsinitsize = phtls->p_filesz; 304017246d0SDoug Rabson obj->tlsinit = mapbase + phtls->p_vaddr; 305017246d0SDoug Rabson } 306212f264cSKonstantin Belousov obj->stack_flags = stack_flags; 3076d7610d7SKonstantin Belousov obj->relro_page = obj->relocbase + trunc_page(relro_page); 3086d7610d7SKonstantin Belousov obj->relro_size = round_page(relro_size); 309d958a71bSAlexander Kabaev if (note_start < note_end) 310d958a71bSAlexander Kabaev digest_notes(obj, note_start, note_end); 311bd56d410SKonstantin Belousov if (note_map != NULL) 312bd56d410SKonstantin Belousov munmap(note_map, note_map_len); 313e474e51eSKonstantin Belousov munmap(hdr, PAGE_SIZE); 314e474e51eSKonstantin Belousov return (obj); 315e474e51eSKonstantin Belousov 316e474e51eSKonstantin Belousov error1: 317e474e51eSKonstantin Belousov munmap(mapbase, mapsize); 318e474e51eSKonstantin Belousov error: 319bd56d410SKonstantin Belousov if (note_map != NULL && note_map != MAP_FAILED) 320bd56d410SKonstantin Belousov munmap(note_map, note_map_len); 321e474e51eSKonstantin Belousov munmap(hdr, PAGE_SIZE); 322e474e51eSKonstantin Belousov return (NULL); 3233124c3e0SJohn Polstra } 3243124c3e0SJohn Polstra 325341b3de6SMatthew N. Dodd static Elf_Ehdr * 3267fd852f8SMaxim Sobolev get_elf_header(int fd, const char *path, const struct stat *sbp) 327341b3de6SMatthew N. Dodd { 328e474e51eSKonstantin Belousov Elf_Ehdr *hdr; 329341b3de6SMatthew N. Dodd 3307fd852f8SMaxim Sobolev /* Make sure file has enough data for the ELF header */ 3317fd852f8SMaxim Sobolev if (sbp != NULL && sbp->st_size < sizeof(Elf_Ehdr)) { 3327fd852f8SMaxim Sobolev _rtld_error("%s: invalid file format", path); 3337fd852f8SMaxim Sobolev return (NULL); 3347fd852f8SMaxim Sobolev } 3357fd852f8SMaxim Sobolev 336e474e51eSKonstantin Belousov hdr = mmap(NULL, PAGE_SIZE, PROT_READ, MAP_PRIVATE | MAP_PREFAULT_READ, 337e474e51eSKonstantin Belousov fd, 0); 338e474e51eSKonstantin Belousov if (hdr == (Elf_Ehdr *)MAP_FAILED) { 3396fea10fbSKonstantin Belousov _rtld_error("%s: read error: %s", path, rtld_strerror(errno)); 340e474e51eSKonstantin Belousov return (NULL); 341341b3de6SMatthew N. Dodd } 342341b3de6SMatthew N. Dodd 343341b3de6SMatthew N. Dodd /* Make sure the file is valid */ 344e474e51eSKonstantin Belousov if (!IS_ELF(*hdr)) { 345341b3de6SMatthew N. Dodd _rtld_error("%s: invalid file format", path); 346e474e51eSKonstantin Belousov goto error; 347341b3de6SMatthew N. Dodd } 348e474e51eSKonstantin Belousov if (hdr->e_ident[EI_CLASS] != ELF_TARG_CLASS || 349e474e51eSKonstantin Belousov hdr->e_ident[EI_DATA] != ELF_TARG_DATA) { 350341b3de6SMatthew N. Dodd _rtld_error("%s: unsupported file layout", path); 351e474e51eSKonstantin Belousov goto error; 352341b3de6SMatthew N. Dodd } 353e474e51eSKonstantin Belousov if (hdr->e_ident[EI_VERSION] != EV_CURRENT || 354e474e51eSKonstantin Belousov hdr->e_version != EV_CURRENT) { 355341b3de6SMatthew N. Dodd _rtld_error("%s: unsupported file version", path); 356e474e51eSKonstantin Belousov goto error; 357341b3de6SMatthew N. Dodd } 358e474e51eSKonstantin Belousov if (hdr->e_type != ET_EXEC && hdr->e_type != ET_DYN) { 359341b3de6SMatthew N. Dodd _rtld_error("%s: unsupported file type", path); 360e474e51eSKonstantin Belousov goto error; 361341b3de6SMatthew N. Dodd } 362e474e51eSKonstantin Belousov if (hdr->e_machine != ELF_TARG_MACH) { 363341b3de6SMatthew N. Dodd _rtld_error("%s: unsupported machine", path); 364e474e51eSKonstantin Belousov goto error; 365341b3de6SMatthew N. Dodd } 366341b3de6SMatthew N. Dodd 367341b3de6SMatthew N. Dodd /* 368341b3de6SMatthew N. Dodd * We rely on the program header being in the first page. This is 369341b3de6SMatthew N. Dodd * not strictly required by the ABI specification, but it seems to 370341b3de6SMatthew N. Dodd * always true in practice. And, it simplifies things considerably. 371341b3de6SMatthew N. Dodd */ 372e474e51eSKonstantin Belousov if (hdr->e_phentsize != sizeof(Elf_Phdr)) { 373341b3de6SMatthew N. Dodd _rtld_error( 374341b3de6SMatthew N. Dodd "%s: invalid shared object: e_phentsize != sizeof(Elf_Phdr)", path); 375e474e51eSKonstantin Belousov goto error; 376341b3de6SMatthew N. Dodd } 377e474e51eSKonstantin Belousov if (hdr->e_phoff + hdr->e_phnum * sizeof(Elf_Phdr) > 378e474e51eSKonstantin Belousov (size_t)PAGE_SIZE) { 379341b3de6SMatthew N. Dodd _rtld_error("%s: program header too large", path); 380e474e51eSKonstantin Belousov goto error; 381341b3de6SMatthew N. Dodd } 382e474e51eSKonstantin Belousov return (hdr); 383341b3de6SMatthew N. Dodd 384e474e51eSKonstantin Belousov error: 385e474e51eSKonstantin Belousov munmap(hdr, PAGE_SIZE); 386e474e51eSKonstantin Belousov return (NULL); 387341b3de6SMatthew N. Dodd } 388341b3de6SMatthew N. Dodd 389926ea445SJohn Polstra void 390926ea445SJohn Polstra obj_free(Obj_Entry *obj) 391926ea445SJohn Polstra { 392926ea445SJohn Polstra Objlist_Entry *elm; 393926ea445SJohn Polstra 3940eb88f20SAlexander Kabaev if (obj->tls_done) 395ddab7ee8SDoug Rabson free_tls_offset(obj); 396926ea445SJohn Polstra while (obj->needed != NULL) { 397926ea445SJohn Polstra Needed_Entry *needed = obj->needed; 398926ea445SJohn Polstra obj->needed = needed->next; 399926ea445SJohn Polstra free(needed); 400926ea445SJohn Polstra } 4010eb88f20SAlexander Kabaev while (!STAILQ_EMPTY(&obj->names)) { 4020eb88f20SAlexander Kabaev Name_Entry *entry = STAILQ_FIRST(&obj->names); 4030eb88f20SAlexander Kabaev STAILQ_REMOVE_HEAD(&obj->names, link); 4040eb88f20SAlexander Kabaev free(entry); 4050eb88f20SAlexander Kabaev } 406926ea445SJohn Polstra while (!STAILQ_EMPTY(&obj->dldags)) { 407926ea445SJohn Polstra elm = STAILQ_FIRST(&obj->dldags); 408926ea445SJohn Polstra STAILQ_REMOVE_HEAD(&obj->dldags, link); 409926ea445SJohn Polstra free(elm); 410926ea445SJohn Polstra } 411926ea445SJohn Polstra while (!STAILQ_EMPTY(&obj->dagmembers)) { 412926ea445SJohn Polstra elm = STAILQ_FIRST(&obj->dagmembers); 413926ea445SJohn Polstra STAILQ_REMOVE_HEAD(&obj->dagmembers, link); 414926ea445SJohn Polstra free(elm); 415926ea445SJohn Polstra } 41649f90ad2SAlexander Kabaev if (obj->vertab) 4170eb88f20SAlexander Kabaev free(obj->vertab); 41849f90ad2SAlexander Kabaev if (obj->origin_path) 419da9f2454SMatthew N. Dodd free(obj->origin_path); 42028551690SKonstantin Belousov if (obj->z_origin) 42128551690SKonstantin Belousov free(obj->rpath); 42249f90ad2SAlexander Kabaev if (obj->priv) 42363c1e7cbSAlexander Kabaev free(obj->priv); 42449f90ad2SAlexander Kabaev if (obj->path) 42549f90ad2SAlexander Kabaev free(obj->path); 42649f90ad2SAlexander Kabaev if (obj->phdr_alloc) 42749f90ad2SAlexander Kabaev free((void *)obj->phdr); 428926ea445SJohn Polstra free(obj); 429926ea445SJohn Polstra } 430926ea445SJohn Polstra 431926ea445SJohn Polstra Obj_Entry * 432926ea445SJohn Polstra obj_new(void) 433926ea445SJohn Polstra { 434926ea445SJohn Polstra Obj_Entry *obj; 435926ea445SJohn Polstra 436926ea445SJohn Polstra obj = CNEW(Obj_Entry); 437926ea445SJohn Polstra STAILQ_INIT(&obj->dldags); 438926ea445SJohn Polstra STAILQ_INIT(&obj->dagmembers); 4390eb88f20SAlexander Kabaev STAILQ_INIT(&obj->names); 440926ea445SJohn Polstra return obj; 441926ea445SJohn Polstra } 442926ea445SJohn Polstra 4433124c3e0SJohn Polstra /* 4443124c3e0SJohn Polstra * Given a set of ELF protection flags, return the corresponding protection 4453124c3e0SJohn Polstra * flags for MMAP. 4463124c3e0SJohn Polstra */ 447*ca8c8dc3SKonstantin Belousov int 448fa7dd9c5SMatthew Dillon convert_prot(int elfflags) 4493124c3e0SJohn Polstra { 4503124c3e0SJohn Polstra int prot = 0; 4513124c3e0SJohn Polstra if (elfflags & PF_R) 4523124c3e0SJohn Polstra prot |= PROT_READ; 4533124c3e0SJohn Polstra if (elfflags & PF_W) 4543124c3e0SJohn Polstra prot |= PROT_WRITE; 4553124c3e0SJohn Polstra if (elfflags & PF_X) 4563124c3e0SJohn Polstra prot |= PROT_EXEC; 4573124c3e0SJohn Polstra return prot; 4583124c3e0SJohn Polstra } 459fa7dd9c5SMatthew Dillon 460fa7dd9c5SMatthew Dillon static int 461fa7dd9c5SMatthew Dillon convert_flags(int elfflags) 462fa7dd9c5SMatthew Dillon { 463fa7dd9c5SMatthew Dillon int flags = MAP_PRIVATE; /* All mappings are private */ 464fa7dd9c5SMatthew Dillon 465fa7dd9c5SMatthew Dillon /* 466fa7dd9c5SMatthew Dillon * Readonly mappings are marked "MAP_NOCORE", because they can be 467fa7dd9c5SMatthew Dillon * reconstructed by a debugger. 468fa7dd9c5SMatthew Dillon */ 469fa7dd9c5SMatthew Dillon if (!(elfflags & PF_W)) 470fa7dd9c5SMatthew Dillon flags |= MAP_NOCORE; 471fa7dd9c5SMatthew Dillon return flags; 472fa7dd9c5SMatthew Dillon } 473