1 /* 2 * qemu bsd user main 3 * 4 * Copyright (c) 2003-2008 Fabrice Bellard 5 * Copyright (c) 2013-14 Stacey Son 6 * 7 * This program is free software; you can redistribute it and/or modify 8 * it under the terms of the GNU General Public License as published by 9 * the Free Software Foundation; either version 2 of the License, or 10 * (at your option) any later version. 11 * 12 * This program is distributed in the hope that it will be useful, 13 * but WITHOUT ANY WARRANTY; without even the implied warranty of 14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 15 * GNU General Public License for more details. 16 * 17 * You should have received a copy of the GNU General Public License 18 * along with this program; if not, see <http://www.gnu.org/licenses/>. 19 */ 20 21 #include "qemu/osdep.h" 22 #include <sys/resource.h> 23 #include <sys/sysctl.h> 24 25 #include "qemu/help-texts.h" 26 #include "qemu/units.h" 27 #include "qemu/accel.h" 28 #include "qemu-version.h" 29 #include <machine/trap.h> 30 31 #include "qapi/error.h" 32 #include "qemu.h" 33 #include "qemu/config-file.h" 34 #include "qemu/error-report.h" 35 #include "qemu/path.h" 36 #include "qemu/help_option.h" 37 #include "qemu/module.h" 38 #include "qemu/plugin.h" 39 #include "exec/exec-all.h" 40 #include "user/guest-base.h" 41 #include "user/page-protection.h" 42 #include "tcg/startup.h" 43 #include "qemu/timer.h" 44 #include "qemu/envlist.h" 45 #include "qemu/cutils.h" 46 #include "exec/log.h" 47 #include "trace/control.h" 48 #include "crypto/init.h" 49 #include "qemu/guest-random.h" 50 #include "gdbstub/user.h" 51 #include "exec/page-vary.h" 52 53 #include "host-os.h" 54 #include "target_arch_cpu.h" 55 56 57 /* 58 * TODO: Remove these and rely only on qemu_real_host_page_size(). 59 */ 60 uintptr_t qemu_host_page_size; 61 intptr_t qemu_host_page_mask; 62 63 static bool opt_one_insn_per_tb; 64 static unsigned long opt_tb_size; 65 uintptr_t guest_base; 66 bool have_guest_base; 67 /* 68 * When running 32-on-64 we should make sure we can fit all of the possible 69 * guest address space into a contiguous chunk of virtual host memory. 70 * 71 * This way we will never overlap with our own libraries or binaries or stack 72 * or anything else that QEMU maps. 73 * 74 * Many cpus reserve the high bit (or more than one for some 64-bit cpus) 75 * of the address for the kernel. Some cpus rely on this and user space 76 * uses the high bit(s) for pointer tagging and the like. For them, we 77 * must preserve the expected address space. 78 */ 79 #ifndef MAX_RESERVED_VA 80 # if HOST_LONG_BITS > TARGET_VIRT_ADDR_SPACE_BITS 81 # if TARGET_VIRT_ADDR_SPACE_BITS == 32 && \ 82 (TARGET_LONG_BITS == 32 || defined(TARGET_ABI32)) 83 # define MAX_RESERVED_VA(CPU) 0xfffffffful 84 # else 85 # define MAX_RESERVED_VA(CPU) ((1ul << TARGET_VIRT_ADDR_SPACE_BITS) - 1) 86 # endif 87 # else 88 # define MAX_RESERVED_VA(CPU) 0 89 # endif 90 #endif 91 92 unsigned long reserved_va; 93 94 const char *interp_prefix = CONFIG_QEMU_INTERP_PREFIX; 95 const char *qemu_uname_release; 96 97 unsigned long target_maxtsiz = TARGET_MAXTSIZ; /* max text size */ 98 unsigned long target_dfldsiz = TARGET_DFLDSIZ; /* initial data size limit */ 99 unsigned long target_maxdsiz = TARGET_MAXDSIZ; /* max data size */ 100 unsigned long target_dflssiz = TARGET_DFLSSIZ; /* initial data size limit */ 101 unsigned long target_maxssiz = TARGET_MAXSSIZ; /* max stack size */ 102 unsigned long target_sgrowsiz = TARGET_SGROWSIZ; /* amount to grow stack */ 103 104 /* Helper routines for implementing atomic operations. */ 105 106 void fork_start(void) 107 { 108 start_exclusive(); 109 mmap_fork_start(); 110 cpu_list_lock(); 111 qemu_plugin_user_prefork_lock(); 112 gdbserver_fork_start(); 113 } 114 115 void fork_end(pid_t pid) 116 { 117 bool child = pid == 0; 118 119 qemu_plugin_user_postfork(child); 120 mmap_fork_end(child); 121 if (child) { 122 CPUState *cpu, *next_cpu; 123 /* 124 * Child processes created by fork() only have a single thread. 125 * Discard information about the parent threads. 126 */ 127 CPU_FOREACH_SAFE(cpu, next_cpu) { 128 if (cpu != thread_cpu) { 129 QTAILQ_REMOVE_RCU(&cpus_queue, cpu, node); 130 } 131 } 132 qemu_init_cpu_list(); 133 get_task_state(thread_cpu)->ts_tid = qemu_get_thread_id(); 134 } else { 135 cpu_list_unlock(); 136 } 137 gdbserver_fork_end(thread_cpu, pid); 138 /* 139 * qemu_init_cpu_list() reinitialized the child exclusive state, but we 140 * also need to keep current_cpu consistent, so call end_exclusive() for 141 * both child and parent. 142 */ 143 end_exclusive(); 144 } 145 146 void cpu_loop(CPUArchState *env) 147 { 148 target_cpu_loop(env); 149 } 150 151 static void usage(void) 152 { 153 printf("qemu-" TARGET_NAME " version " QEMU_FULL_VERSION 154 "\n" QEMU_COPYRIGHT "\n" 155 "usage: qemu-" TARGET_NAME " [options] program [arguments...]\n" 156 "BSD CPU emulator (compiled for %s emulation)\n" 157 "\n" 158 "Standard options:\n" 159 "-h print this help\n" 160 "-g port wait gdb connection to port\n" 161 "-L path set the elf interpreter prefix (default=%s)\n" 162 "-s size set the stack size in bytes (default=%ld)\n" 163 "-cpu model select CPU (-cpu help for list)\n" 164 "-drop-ld-preload drop LD_PRELOAD for target process\n" 165 "-E var=value sets/modifies targets environment variable(s)\n" 166 "-U var unsets targets environment variable(s)\n" 167 "-B address set guest_base address to address\n" 168 "\n" 169 "Debug options:\n" 170 "-d item1[,...] enable logging of specified items\n" 171 " (use '-d help' for a list of log items)\n" 172 "-D logfile write logs to 'logfile' (default stderr)\n" 173 "-one-insn-per-tb run with one guest instruction per emulated TB\n" 174 "-tb-size size TCG translation block cache size\n" 175 "-strace log system calls\n" 176 "-trace [[enable=]<pattern>][,events=<file>][,file=<file>]\n" 177 " specify tracing options\n" 178 "\n" 179 "Environment variables:\n" 180 "QEMU_STRACE Print system calls and arguments similar to the\n" 181 " 'strace' program. Enable by setting to any value.\n" 182 "You can use -E and -U options to set/unset environment variables\n" 183 "for target process. It is possible to provide several variables\n" 184 "by repeating the option. For example:\n" 185 " -E var1=val2 -E var2=val2 -U LD_PRELOAD -U LD_DEBUG\n" 186 "Note that if you provide several changes to single variable\n" 187 "last change will stay in effect.\n" 188 "\n" 189 QEMU_HELP_BOTTOM "\n" 190 , 191 TARGET_NAME, 192 interp_prefix, 193 target_dflssiz); 194 exit(1); 195 } 196 197 __thread CPUState *thread_cpu; 198 199 void stop_all_tasks(void) 200 { 201 /* 202 * We trust when using NPTL (pthreads) start_exclusive() handles thread 203 * stopping correctly. 204 */ 205 start_exclusive(); 206 } 207 208 bool qemu_cpu_is_self(CPUState *cpu) 209 { 210 return thread_cpu == cpu; 211 } 212 213 void qemu_cpu_kick(CPUState *cpu) 214 { 215 cpu_exit(cpu); 216 } 217 218 /* Assumes contents are already zeroed. */ 219 static void init_task_state(TaskState *ts) 220 { 221 ts->sigaltstack_used = (struct target_sigaltstack) { 222 .ss_sp = 0, 223 .ss_size = 0, 224 .ss_flags = TARGET_SS_DISABLE, 225 }; 226 } 227 228 void gemu_log(const char *fmt, ...) 229 { 230 va_list ap; 231 232 va_start(ap, fmt); 233 vfprintf(stderr, fmt, ap); 234 va_end(ap); 235 } 236 237 static void 238 adjust_ssize(void) 239 { 240 struct rlimit rl; 241 242 if (getrlimit(RLIMIT_STACK, &rl) != 0) { 243 return; 244 } 245 246 target_maxssiz = MIN(target_maxssiz, rl.rlim_max); 247 target_dflssiz = MIN(MAX(target_dflssiz, rl.rlim_cur), target_maxssiz); 248 249 rl.rlim_max = target_maxssiz; 250 rl.rlim_cur = target_dflssiz; 251 setrlimit(RLIMIT_STACK, &rl); 252 } 253 254 int main(int argc, char **argv) 255 { 256 const char *filename; 257 const char *cpu_model; 258 const char *cpu_type; 259 const char *log_file = NULL; 260 const char *log_mask = NULL; 261 const char *seed_optarg = NULL; 262 struct target_pt_regs regs1, *regs = ®s1; 263 struct image_info info1, *info = &info1; 264 struct bsd_binprm bprm; 265 TaskState *ts; 266 CPUArchState *env; 267 CPUState *cpu; 268 int optind, rv; 269 const char *r; 270 const char *gdbstub = NULL; 271 char **target_environ, **wrk; 272 envlist_t *envlist = NULL; 273 char *argv0 = NULL; 274 int host_page_size; 275 unsigned long max_reserved_va; 276 277 adjust_ssize(); 278 279 if (argc <= 1) { 280 usage(); 281 } 282 283 284 error_init(argv[0]); 285 module_call_init(MODULE_INIT_TRACE); 286 qemu_init_cpu_list(); 287 module_call_init(MODULE_INIT_QOM); 288 289 envlist = envlist_create(); 290 291 /* 292 * add current environment into the list 293 * envlist_setenv adds to the front of the list; to preserve environ 294 * order add from back to front 295 */ 296 for (wrk = environ; *wrk != NULL; wrk++) { 297 continue; 298 } 299 while (wrk != environ) { 300 wrk--; 301 (void) envlist_setenv(envlist, *wrk); 302 } 303 304 qemu_host_page_size = getpagesize(); 305 qemu_host_page_size = MAX(qemu_host_page_size, TARGET_PAGE_SIZE); 306 307 cpu_model = NULL; 308 309 qemu_add_opts(&qemu_trace_opts); 310 311 optind = 1; 312 for (;;) { 313 if (optind >= argc) { 314 break; 315 } 316 r = argv[optind]; 317 if (r[0] != '-') { 318 break; 319 } 320 optind++; 321 r++; 322 if (!strcmp(r, "-")) { 323 break; 324 } else if (!strcmp(r, "d")) { 325 if (optind >= argc) { 326 break; 327 } 328 log_mask = argv[optind++]; 329 } else if (!strcmp(r, "D")) { 330 if (optind >= argc) { 331 break; 332 } 333 log_file = argv[optind++]; 334 } else if (!strcmp(r, "E")) { 335 r = argv[optind++]; 336 if (envlist_setenv(envlist, r) != 0) { 337 usage(); 338 } 339 } else if (!strcmp(r, "ignore-environment")) { 340 envlist_free(envlist); 341 envlist = envlist_create(); 342 } else if (!strcmp(r, "U")) { 343 r = argv[optind++]; 344 if (envlist_unsetenv(envlist, r) != 0) { 345 usage(); 346 } 347 } else if (!strcmp(r, "s")) { 348 r = argv[optind++]; 349 rv = qemu_strtoul(r, &r, 0, &target_dflssiz); 350 if (rv < 0 || target_dflssiz <= 0) { 351 usage(); 352 } 353 if (*r == 'M') { 354 target_dflssiz *= 1024 * 1024; 355 } else if (*r == 'k' || *r == 'K') { 356 target_dflssiz *= 1024; 357 } 358 if (target_dflssiz > target_maxssiz) { 359 usage(); 360 } 361 } else if (!strcmp(r, "L")) { 362 interp_prefix = argv[optind++]; 363 } else if (!strcmp(r, "p")) { 364 unsigned size, want = qemu_real_host_page_size(); 365 366 r = argv[optind++]; 367 if (qemu_strtoui(r, NULL, 10, &size) || size != want) { 368 warn_report("Deprecated page size option cannot " 369 "change host page size (%u)", want); 370 } 371 } else if (!strcmp(r, "g")) { 372 gdbstub = g_strdup(argv[optind++]); 373 } else if (!strcmp(r, "r")) { 374 qemu_uname_release = argv[optind++]; 375 } else if (!strcmp(r, "cpu")) { 376 cpu_model = argv[optind++]; 377 if (is_help_option(cpu_model)) { 378 list_cpus(); 379 exit(1); 380 } 381 } else if (!strcmp(r, "B")) { 382 rv = qemu_strtoul(argv[optind++], NULL, 0, &guest_base); 383 if (rv < 0) { 384 usage(); 385 } 386 have_guest_base = true; 387 } else if (!strcmp(r, "drop-ld-preload")) { 388 (void) envlist_unsetenv(envlist, "LD_PRELOAD"); 389 } else if (!strcmp(r, "seed")) { 390 seed_optarg = optarg; 391 } else if (!strcmp(r, "one-insn-per-tb")) { 392 opt_one_insn_per_tb = true; 393 } else if (!strcmp(r, "tb-size")) { 394 r = argv[optind++]; 395 if (qemu_strtoul(r, NULL, 0, &opt_tb_size)) { 396 usage(); 397 } 398 } else if (!strcmp(r, "strace")) { 399 do_strace = 1; 400 } else if (!strcmp(r, "trace")) { 401 trace_opt_parse(optarg); 402 } else if (!strcmp(r, "0")) { 403 argv0 = argv[optind++]; 404 } else { 405 usage(); 406 } 407 } 408 409 qemu_host_page_mask = -qemu_host_page_size; 410 411 /* init debug */ 412 { 413 int mask = 0; 414 if (log_mask) { 415 mask = qemu_str_to_log_mask(log_mask); 416 if (!mask) { 417 qemu_print_log_usage(stdout); 418 exit(1); 419 } 420 } 421 qemu_set_log_filename_flags(log_file, mask, &error_fatal); 422 } 423 424 if (optind >= argc) { 425 usage(); 426 } 427 filename = argv[optind]; 428 if (argv0) { 429 argv[optind] = argv0; 430 } 431 432 if (!trace_init_backends()) { 433 exit(1); 434 } 435 trace_init_file(); 436 437 /* Zero out regs */ 438 memset(regs, 0, sizeof(struct target_pt_regs)); 439 440 /* Zero bsd params */ 441 memset(&bprm, 0, sizeof(bprm)); 442 443 /* Zero out image_info */ 444 memset(info, 0, sizeof(struct image_info)); 445 446 /* Scan interp_prefix dir for replacement files. */ 447 init_paths(interp_prefix); 448 449 if (cpu_model == NULL) { 450 cpu_model = TARGET_DEFAULT_CPU_MODEL; 451 } 452 453 cpu_type = parse_cpu_option(cpu_model); 454 455 /* init tcg before creating CPUs and to get qemu_host_page_size */ 456 { 457 AccelState *accel = current_accel(); 458 AccelClass *ac = ACCEL_GET_CLASS(accel); 459 460 accel_init_interfaces(ac); 461 object_property_set_bool(OBJECT(accel), "one-insn-per-tb", 462 opt_one_insn_per_tb, &error_abort); 463 object_property_set_int(OBJECT(accel), "tb-size", 464 opt_tb_size, &error_abort); 465 ac->init_machine(NULL); 466 } 467 468 /* 469 * Finalize page size before creating CPUs. 470 * This will do nothing if !TARGET_PAGE_BITS_VARY. 471 * The most efficient setting is to match the host. 472 */ 473 host_page_size = qemu_real_host_page_size(); 474 set_preferred_target_page_bits(ctz32(host_page_size)); 475 finalize_target_page_bits(); 476 477 cpu = cpu_create(cpu_type); 478 env = cpu_env(cpu); 479 cpu_reset(cpu); 480 thread_cpu = cpu; 481 482 /* 483 * Reserving too much vm space via mmap can run into problems with rlimits, 484 * oom due to page table creation, etc. We will still try it, if directed 485 * by the command-line option, but not by default. Unless we're running a 486 * target address space of 32 or fewer bits on a host with 64 bits. 487 */ 488 max_reserved_va = MAX_RESERVED_VA(cpu); 489 if (reserved_va != 0) { 490 if ((reserved_va + 1) % host_page_size) { 491 char *s = size_to_str(host_page_size); 492 fprintf(stderr, "Reserved virtual address not aligned mod %s\n", s); 493 g_free(s); 494 exit(EXIT_FAILURE); 495 } 496 if (max_reserved_va && reserved_va > max_reserved_va) { 497 fprintf(stderr, "Reserved virtual address too big\n"); 498 exit(EXIT_FAILURE); 499 } 500 } else if (HOST_LONG_BITS == 64 && TARGET_VIRT_ADDR_SPACE_BITS <= 32) { 501 /* MAX_RESERVED_VA + 1 is a large power of 2, so is aligned. */ 502 reserved_va = max_reserved_va; 503 } 504 505 if (getenv("QEMU_STRACE")) { 506 do_strace = 1; 507 } 508 509 target_environ = envlist_to_environ(envlist, NULL); 510 envlist_free(envlist); 511 512 { 513 Error *err = NULL; 514 if (seed_optarg != NULL) { 515 qemu_guest_random_seed_main(seed_optarg, &err); 516 } else { 517 qcrypto_init(&err); 518 } 519 if (err) { 520 error_reportf_err(err, "cannot initialize crypto: "); 521 exit(1); 522 } 523 } 524 525 /* 526 * Now that page sizes are configured we can do 527 * proper page alignment for guest_base. 528 */ 529 if (have_guest_base) { 530 if (guest_base & ~qemu_host_page_mask) { 531 error_report("Selected guest base not host page aligned"); 532 exit(1); 533 } 534 } 535 536 /* 537 * If reserving host virtual address space, do so now. 538 * Combined with '-B', ensure that the chosen range is free. 539 */ 540 if (reserved_va) { 541 void *p; 542 543 if (have_guest_base) { 544 p = mmap((void *)guest_base, reserved_va + 1, PROT_NONE, 545 MAP_ANON | MAP_PRIVATE | MAP_FIXED | MAP_EXCL, -1, 0); 546 } else { 547 p = mmap(NULL, reserved_va + 1, PROT_NONE, 548 MAP_ANON | MAP_PRIVATE, -1, 0); 549 } 550 if (p == MAP_FAILED) { 551 const char *err = strerror(errno); 552 char *sz = size_to_str(reserved_va + 1); 553 554 if (have_guest_base) { 555 error_report("Cannot allocate %s bytes at -B %p for guest " 556 "address space: %s", sz, (void *)guest_base, err); 557 } else { 558 error_report("Cannot allocate %s bytes for guest " 559 "address space: %s", sz, err); 560 } 561 exit(1); 562 } 563 guest_base = (uintptr_t)p; 564 have_guest_base = true; 565 566 /* Ensure that mmap_next_start is within range. */ 567 if (reserved_va <= mmap_next_start) { 568 mmap_next_start = (reserved_va / 4 * 3) 569 & TARGET_PAGE_MASK & qemu_host_page_mask; 570 } 571 } 572 573 if (loader_exec(filename, argv + optind, target_environ, regs, info, 574 &bprm) != 0) { 575 printf("Error loading %s\n", filename); 576 _exit(1); 577 } 578 579 for (wrk = target_environ; *wrk; wrk++) { 580 g_free(*wrk); 581 } 582 583 g_free(target_environ); 584 585 if (qemu_loglevel_mask(CPU_LOG_PAGE)) { 586 FILE *f = qemu_log_trylock(); 587 if (f) { 588 fprintf(f, "guest_base %p\n", (void *)guest_base); 589 fprintf(f, "page layout changed following binary load\n"); 590 page_dump(f); 591 592 fprintf(f, "end_code 0x" TARGET_ABI_FMT_lx "\n", 593 info->end_code); 594 fprintf(f, "start_code 0x" TARGET_ABI_FMT_lx "\n", 595 info->start_code); 596 fprintf(f, "start_data 0x" TARGET_ABI_FMT_lx "\n", 597 info->start_data); 598 fprintf(f, "end_data 0x" TARGET_ABI_FMT_lx "\n", 599 info->end_data); 600 fprintf(f, "start_stack 0x" TARGET_ABI_FMT_lx "\n", 601 info->start_stack); 602 fprintf(f, "brk 0x" TARGET_ABI_FMT_lx "\n", info->brk); 603 fprintf(f, "entry 0x" TARGET_ABI_FMT_lx "\n", info->entry); 604 605 qemu_log_unlock(f); 606 } 607 } 608 609 /* build Task State */ 610 ts = g_new0(TaskState, 1); 611 init_task_state(ts); 612 ts->info = info; 613 ts->bprm = &bprm; 614 ts->ts_tid = qemu_get_thread_id(); 615 cpu->opaque = ts; 616 617 target_set_brk(info->brk); 618 syscall_init(); 619 signal_init(); 620 621 /* 622 * Now that we've loaded the binary, GUEST_BASE is fixed. Delay 623 * generating the prologue until now so that the prologue can take 624 * the real value of GUEST_BASE into account. 625 */ 626 tcg_prologue_init(); 627 628 target_cpu_init(env, regs); 629 630 if (gdbstub) { 631 gdbserver_start(gdbstub, &error_fatal); 632 gdb_handlesig(cpu, 0, NULL, NULL, 0); 633 } 634 cpu_loop(env); 635 /* never exits */ 636 return 0; 637 } 638