1 /* SPDX-License-Identifier: GPL-2.0 */ 2 3 #define _GNU_SOURCE 4 #define _LARGEFILE64_SOURCE 5 #define _FILE_OFFSET_BITS 64 6 7 /* libc-specific include files 8 * The program may be built in 3 ways: 9 * $(CC) -nostdlib -include /path/to/nolibc.h => NOLIBC already defined 10 * $(CC) -nostdlib -I/path/to/nolibc/sysroot => _NOLIBC_* guards are present 11 * $(CC) with default libc => NOLIBC* never defined 12 */ 13 #include <stdio.h> 14 #include <stdlib.h> 15 #include <string.h> 16 #include <sys/auxv.h> 17 #include <sys/ioctl.h> 18 #include <sys/mman.h> 19 #include <sys/mount.h> 20 #include <sys/prctl.h> 21 #include <sys/ptrace.h> 22 #include <sys/random.h> 23 #include <sys/reboot.h> 24 #include <sys/resource.h> 25 #include <sys/stat.h> 26 #include <sys/syscall.h> 27 #include <sys/sysmacros.h> 28 #include <sys/time.h> 29 #include <sys/timerfd.h> 30 #include <sys/uio.h> 31 #include <sys/utsname.h> 32 #include <sys/wait.h> 33 #include <dirent.h> 34 #include <errno.h> 35 #include <fcntl.h> 36 #include <poll.h> 37 #include <sched.h> 38 #include <signal.h> 39 #include <stdarg.h> 40 #include <stddef.h> 41 #include <stdint.h> 42 #include <time.h> 43 #include <unistd.h> 44 #include <limits.h> 45 #include <ctype.h> 46 #include <stdbool.h> 47 #include <byteswap.h> 48 #include <endian.h> 49 #include <alloca.h> 50 51 #pragma GCC diagnostic ignored "-Wmissing-prototypes" 52 53 #include "nolibc-test-linkage.h" 54 55 /* for the type of int_fast16_t and int_fast32_t, musl differs from glibc and nolibc */ 56 #define SINT_MAX_OF_TYPE(type) (((type)1 << (sizeof(type) * 8 - 2)) - (type)1 + ((type)1 << (sizeof(type) * 8 - 2))) 57 #define SINT_MIN_OF_TYPE(type) (-SINT_MAX_OF_TYPE(type) - 1) 58 59 /* will be used to test initialization of environ */ 60 static char **test_envp; 61 62 /* will be used to test initialization of argv */ 63 static char **test_argv; 64 65 /* will be used to test initialization of argc */ 66 static int test_argc; 67 68 /* will be used by some test cases as readable file, please don't write it */ 69 static const char *argv0; 70 71 /* will be used by constructor tests */ 72 static int constructor_test_value; 73 74 static const int is_le = __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__; 75 76 static const int is_nolibc = 77 #ifdef NOLIBC 78 1 79 #else 80 0 81 #endif 82 ; 83 84 static const int is_glibc = 85 #ifdef __GLIBC__ 86 1 87 #else 88 0 89 #endif 90 ; 91 92 #if !defined(NOLIBC) 93 /* Some disabled tests may not compile. */ 94 95 /* strlcat() and strlcpy() may not be in the system headers. */ 96 #undef strlcat 97 #undef strlcpy 98 #define strlcat(d, s, l) 0 99 #define strlcpy(d, s, l) 0 100 101 /* readdir_r() is likely to be marked deprecated */ 102 #undef readdir_r 103 #define readdir_r(dir, dirent, result) ((errno = EINVAL), -1) 104 105 #define _syscall(...) 0 106 #endif 107 108 /* definition of a series of tests */ 109 struct test { 110 const char *name; /* test name */ 111 int (*func)(int min, int max); /* handler */ 112 }; 113 114 #ifndef _NOLIBC_STDLIB_H 115 char *itoa(int i) 116 { 117 static char buf[12]; 118 int ret; 119 120 ret = snprintf(buf, sizeof(buf), "%d", i); 121 return (ret >= 0 && ret < sizeof(buf)) ? buf : "#err"; 122 } 123 #endif 124 125 #define CASE_ERR(err) \ 126 case err: return #err 127 128 /* returns the error name (e.g. "ENOENT") for common errors, "SUCCESS" for 0, 129 * or the decimal value for less common ones. 130 */ 131 static const char *errorname(int err) 132 { 133 switch (err) { 134 case 0: return "SUCCESS"; 135 CASE_ERR(EPERM); 136 CASE_ERR(ENOENT); 137 CASE_ERR(ESRCH); 138 CASE_ERR(EINTR); 139 CASE_ERR(EIO); 140 CASE_ERR(ENXIO); 141 CASE_ERR(E2BIG); 142 CASE_ERR(ENOEXEC); 143 CASE_ERR(EBADF); 144 CASE_ERR(ECHILD); 145 CASE_ERR(EAGAIN); 146 CASE_ERR(ENOMEM); 147 CASE_ERR(EACCES); 148 CASE_ERR(EFAULT); 149 CASE_ERR(ENOTBLK); 150 CASE_ERR(EBUSY); 151 CASE_ERR(EEXIST); 152 CASE_ERR(EXDEV); 153 CASE_ERR(ENODEV); 154 CASE_ERR(ENOTDIR); 155 CASE_ERR(EISDIR); 156 CASE_ERR(EINVAL); 157 CASE_ERR(ENFILE); 158 CASE_ERR(EMFILE); 159 CASE_ERR(ENOTTY); 160 CASE_ERR(ETXTBSY); 161 CASE_ERR(EFBIG); 162 CASE_ERR(ENOSPC); 163 CASE_ERR(ESPIPE); 164 CASE_ERR(EROFS); 165 CASE_ERR(EMLINK); 166 CASE_ERR(EPIPE); 167 CASE_ERR(EDOM); 168 CASE_ERR(ERANGE); 169 CASE_ERR(ENOSYS); 170 CASE_ERR(EOVERFLOW); 171 default: 172 return itoa(err); 173 } 174 } 175 176 enum RESULT { 177 OK, 178 FAIL, 179 SKIPPED, 180 }; 181 182 static void result(int llen, enum RESULT r) 183 { 184 const char *msg; 185 186 if (r == OK) 187 msg = " [OK]"; 188 else if (r == SKIPPED) 189 msg = "[SKIPPED]"; 190 else 191 msg = " [FAIL]"; 192 193 llen = 64 - llen; 194 if (llen < 0) 195 llen = 0; 196 printf("%*s%s\n", llen, "", msg); 197 } 198 199 /* The tests below are intended to be used by the macroes, which evaluate 200 * expression <expr>, print the status to stdout, and update the "ret" 201 * variable to count failures. The functions themselves return the number 202 * of failures, thus either 0 or 1. 203 */ 204 205 #define EXPECT_ZR(cond, expr) \ 206 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_zr(expr, llen); } while (0) 207 208 static __attribute__((unused)) 209 int expect_zr(int expr, int llen) 210 { 211 int ret = !(expr == 0); 212 213 llen += printf(" = %d ", expr); 214 result(llen, ret ? FAIL : OK); 215 return ret; 216 } 217 218 219 #define EXPECT_NZ(cond, expr) \ 220 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_nz(expr, llen); } while (0) 221 222 static __attribute__((unused)) 223 int expect_nz(int expr, int llen) 224 { 225 int ret = !(expr != 0); 226 227 llen += printf(" = %d ", expr); 228 result(llen, ret ? FAIL : OK); 229 return ret; 230 } 231 232 233 #define EXPECT_EQ(cond, expr, val) \ 234 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_eq(expr, llen, val); } while (0) 235 236 static __attribute__((unused)) 237 int expect_eq(uint64_t expr, int llen, uint64_t val) 238 { 239 int ret = !(expr == val); 240 241 llen += printf(" = %lld ", (long long)expr); 242 result(llen, ret ? FAIL : OK); 243 return ret; 244 } 245 246 247 #define EXPECT_NE(cond, expr, val) \ 248 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ne(expr, llen, val); } while (0) 249 250 static __attribute__((unused)) 251 int expect_ne(int expr, int llen, int val) 252 { 253 int ret = !(expr != val); 254 255 llen += printf(" = %d ", expr); 256 result(llen, ret ? FAIL : OK); 257 return ret; 258 } 259 260 261 #define EXPECT_GE(cond, expr, val) \ 262 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ge(expr, llen, val); } while (0) 263 264 static __attribute__((unused)) 265 int expect_ge(int expr, int llen, int val) 266 { 267 int ret = !(expr >= val); 268 269 llen += printf(" = %d ", expr); 270 result(llen, ret ? FAIL : OK); 271 return ret; 272 } 273 274 275 #define EXPECT_GT(cond, expr, val) \ 276 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_gt(expr, llen, val); } while (0) 277 278 static __attribute__((unused)) 279 int expect_gt(int expr, int llen, int val) 280 { 281 int ret = !(expr > val); 282 283 llen += printf(" = %d ", expr); 284 result(llen, ret ? FAIL : OK); 285 return ret; 286 } 287 288 289 #define EXPECT_LE(cond, expr, val) \ 290 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_le(expr, llen, val); } while (0) 291 292 static __attribute__((unused)) 293 int expect_le(int expr, int llen, int val) 294 { 295 int ret = !(expr <= val); 296 297 llen += printf(" = %d ", expr); 298 result(llen, ret ? FAIL : OK); 299 return ret; 300 } 301 302 303 #define EXPECT_LT(cond, expr, val) \ 304 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_lt(expr, llen, val); } while (0) 305 306 static __attribute__((unused)) 307 int expect_lt(int expr, int llen, int val) 308 { 309 int ret = !(expr < val); 310 311 llen += printf(" = %d ", expr); 312 result(llen, ret ? FAIL : OK); 313 return ret; 314 } 315 316 317 #define EXPECT_SYSZR(cond, expr) \ 318 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_syszr(expr, llen); } while (0) 319 320 static __attribute__((unused)) 321 int expect_syszr(int expr, int llen) 322 { 323 int ret = 0; 324 325 if (expr) { 326 ret = 1; 327 llen += printf(" = %d %s ", expr, errorname(errno)); 328 result(llen, FAIL); 329 } else { 330 llen += printf(" = %d ", expr); 331 result(llen, OK); 332 } 333 return ret; 334 } 335 336 337 #define EXPECT_SYSEQ(cond, expr, val) \ 338 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_syseq(expr, llen, val); } while (0) 339 340 static __attribute__((unused)) 341 int expect_syseq(int expr, int llen, int val) 342 { 343 int ret = 0; 344 345 if (expr != val) { 346 ret = 1; 347 llen += printf(" = %d %s ", expr, errorname(errno)); 348 result(llen, FAIL); 349 } else { 350 llen += printf(" = %d ", expr); 351 result(llen, OK); 352 } 353 return ret; 354 } 355 356 357 #define EXPECT_SYSNE(cond, expr, val) \ 358 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_sysne(expr, llen, val); } while (0) 359 360 static __attribute__((unused)) 361 int expect_sysne(int expr, int llen, int val) 362 { 363 int ret = 0; 364 365 if (expr == val) { 366 ret = 1; 367 llen += printf(" = %d %s ", expr, errorname(errno)); 368 result(llen, FAIL); 369 } else { 370 llen += printf(" = %d ", expr); 371 result(llen, OK); 372 } 373 return ret; 374 } 375 376 377 #define EXPECT_SYSER2(cond, expr, expret, experr1, experr2) \ 378 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_syserr2(expr, expret, experr1, experr2, llen); } while (0) 379 380 #define EXPECT_SYSER(cond, expr, expret, experr) \ 381 EXPECT_SYSER2(cond, expr, expret, experr, 0) 382 383 static __attribute__((unused)) 384 int expect_syserr2(int expr, int expret, int experr1, int experr2, int llen) 385 { 386 int ret = 0; 387 int _errno = errno; 388 389 llen += printf(" = %d %s ", expr, errorname(_errno)); 390 if (expr != expret || (_errno != experr1 && _errno != experr2)) { 391 ret = 1; 392 if (experr2 == 0) 393 llen += printf(" != (%d %s) ", expret, errorname(experr1)); 394 else 395 llen += printf(" != (%d %s %s) ", expret, errorname(experr1), errorname(experr2)); 396 result(llen, FAIL); 397 } else { 398 result(llen, OK); 399 } 400 return ret; 401 } 402 403 404 #define EXPECT_PTRZR(cond, expr) \ 405 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrzr(expr, llen); } while (0) 406 407 static __attribute__((unused)) 408 int expect_ptrzr(const void *expr, int llen) 409 { 410 int ret = 0; 411 412 llen += printf(" = <%p> ", expr); 413 if (expr) { 414 ret = 1; 415 result(llen, FAIL); 416 } else { 417 result(llen, OK); 418 } 419 return ret; 420 } 421 422 423 #define EXPECT_PTRNZ(cond, expr) \ 424 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrnz(expr, llen); } while (0) 425 426 static __attribute__((unused)) 427 int expect_ptrnz(const void *expr, int llen) 428 { 429 int ret = 0; 430 431 llen += printf(" = <%p> ", expr); 432 if (!expr) { 433 ret = 1; 434 result(llen, FAIL); 435 } else { 436 result(llen, OK); 437 } 438 return ret; 439 } 440 441 #define EXPECT_PTREQ(cond, expr, cmp) \ 442 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptreq(expr, llen, cmp); } while (0) 443 444 static __attribute__((unused)) 445 int expect_ptreq(const void *expr, int llen, const void *cmp) 446 { 447 int ret = 0; 448 449 llen += printf(" = <%p> ", expr); 450 if (expr != cmp) { 451 ret = 1; 452 result(llen, FAIL); 453 } else { 454 result(llen, OK); 455 } 456 return ret; 457 } 458 459 #define EXPECT_PTRNE(cond, expr, cmp) \ 460 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrne(expr, llen, cmp); } while (0) 461 462 static __attribute__((unused)) 463 int expect_ptrne(const void *expr, int llen, const void *cmp) 464 { 465 int ret = 0; 466 467 llen += printf(" = <%p> ", expr); 468 if (expr == cmp) { 469 ret = 1; 470 result(llen, FAIL); 471 } else { 472 result(llen, OK); 473 } 474 return ret; 475 } 476 477 #define EXPECT_PTRGE(cond, expr, cmp) \ 478 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrge(expr, llen, cmp); } while (0) 479 480 static __attribute__((unused)) 481 int expect_ptrge(const void *expr, int llen, const void *cmp) 482 { 483 int ret = !(expr >= cmp); 484 485 llen += printf(" = <%p> ", expr); 486 result(llen, ret ? FAIL : OK); 487 return ret; 488 } 489 490 #define EXPECT_PTRGT(cond, expr, cmp) \ 491 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrgt(expr, llen, cmp); } while (0) 492 493 static __attribute__((unused)) 494 int expect_ptrgt(const void *expr, int llen, const void *cmp) 495 { 496 int ret = !(expr > cmp); 497 498 llen += printf(" = <%p> ", expr); 499 result(llen, ret ? FAIL : OK); 500 return ret; 501 } 502 503 504 #define EXPECT_PTRLE(cond, expr, cmp) \ 505 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrle(expr, llen, cmp); } while (0) 506 507 static __attribute__((unused)) 508 int expect_ptrle(const void *expr, int llen, const void *cmp) 509 { 510 int ret = !(expr <= cmp); 511 512 llen += printf(" = <%p> ", expr); 513 result(llen, ret ? FAIL : OK); 514 return ret; 515 } 516 517 518 #define EXPECT_PTRLT(cond, expr, cmp) \ 519 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrlt(expr, llen, cmp); } while (0) 520 521 static __attribute__((unused)) 522 int expect_ptrlt(const void *expr, int llen, const void *cmp) 523 { 524 int ret = !(expr < cmp); 525 526 llen += printf(" = <%p> ", expr); 527 result(llen, ret ? FAIL : OK); 528 return ret; 529 } 530 531 #define EXPECT_PTRER2(cond, expr, expret, experr1, experr2) \ 532 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrerr2(expr, expret, experr1, experr2, llen); } while (0) 533 534 #define EXPECT_PTRER(cond, expr, expret, experr) \ 535 EXPECT_PTRER2(cond, expr, expret, experr, 0) 536 537 static __attribute__((unused)) 538 int expect_ptrerr2(const void *expr, const void *expret, int experr1, int experr2, int llen) 539 { 540 int ret = 0; 541 int _errno = errno; 542 543 llen += printf(" = <%p> %s ", expr, errorname(_errno)); 544 if (expr != expret || (_errno != experr1 && _errno != experr2)) { 545 ret = 1; 546 if (experr2 == 0) 547 llen += printf(" != (<%p> %s) ", expret, errorname(experr1)); 548 else 549 llen += printf(" != (<%p> %s %s) ", expret, errorname(experr1), errorname(experr2)); 550 result(llen, FAIL); 551 } else { 552 result(llen, OK); 553 } 554 return ret; 555 } 556 557 #define EXPECT_STRZR(cond, expr) \ 558 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strzr(expr, llen); } while (0) 559 560 static __attribute__((unused)) 561 int expect_strzr(const char *expr, int llen) 562 { 563 int ret = 0; 564 565 llen += printf(" = <%s> ", expr ? expr : "(null)"); 566 if (expr) { 567 ret = 1; 568 result(llen, FAIL); 569 } else { 570 result(llen, OK); 571 } 572 return ret; 573 } 574 575 576 #define EXPECT_STRNZ(cond, expr) \ 577 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strnz(expr, llen); } while (0) 578 579 static __attribute__((unused)) 580 int expect_strnz(const char *expr, int llen) 581 { 582 int ret = 0; 583 584 llen += printf(" = <%s> ", expr ? expr : "(null)"); 585 if (!expr) { 586 ret = 1; 587 result(llen, FAIL); 588 } else { 589 result(llen, OK); 590 } 591 return ret; 592 } 593 594 595 #define EXPECT_STREQ(cond, expr, cmp) \ 596 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_streq(expr, llen, cmp); } while (0) 597 598 static __attribute__((unused)) 599 int expect_streq(const char *expr, int llen, const char *cmp) 600 { 601 int ret = 0; 602 603 llen += printf(" = <%s> ", expr); 604 if (strcmp(expr, cmp) != 0) { 605 ret = 1; 606 result(llen, FAIL); 607 } else { 608 result(llen, OK); 609 } 610 return ret; 611 } 612 613 614 #define EXPECT_STRNE(cond, expr, cmp) \ 615 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strne(expr, llen, cmp); } while (0) 616 617 static __attribute__((unused)) 618 int expect_strne(const char *expr, int llen, const char *cmp) 619 { 620 int ret = 0; 621 622 llen += printf(" = <%s> ", expr); 623 if (strcmp(expr, cmp) == 0) { 624 ret = 1; 625 result(llen, FAIL); 626 } else { 627 result(llen, OK); 628 } 629 return ret; 630 } 631 632 #define EXPECT_STRBUFEQ(cond, expr, buf, val, cmp) \ 633 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_str_buf_eq(expr, buf, val, llen, cmp); } while (0) 634 635 static __attribute__((unused)) 636 int expect_str_buf_eq(size_t expr, const char *buf, size_t val, int llen, const char *cmp) 637 { 638 llen += printf(" = %lu <%s> ", (unsigned long)expr, buf); 639 if (strcmp(buf, cmp) != 0) { 640 result(llen, FAIL); 641 return 1; 642 } 643 if (expr != val) { 644 result(llen, FAIL); 645 return 1; 646 } 647 648 result(llen, OK); 649 return 0; 650 } 651 652 enum strtox_func { 653 strtox_func_strtol, 654 strtox_func_strtoul, 655 }; 656 657 #define EXPECT_STRTOX(cond, func, input, base, expected, chars, expected_errno) \ 658 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strtox(llen, strtox_func_ ## func, input, base, expected, chars, expected_errno); } while (0) 659 660 static __attribute__((unused)) 661 int expect_strtox(int llen, enum strtox_func func, const char *input, int base, intmax_t expected, int expected_chars, int expected_errno) 662 { 663 char *endptr; 664 int actual_errno, actual_chars; 665 intmax_t r; 666 667 errno = 0; 668 if (func == strtox_func_strtol) { 669 r = strtol(input, &endptr, base); 670 } else if (func == strtox_func_strtoul) { 671 r = strtoul(input, &endptr, base); 672 } else { 673 result(llen, FAIL); 674 return 1; 675 } 676 actual_errno = errno; 677 actual_chars = endptr - input; 678 679 llen += printf(" %lld = %lld", (long long)expected, (long long)r); 680 if (r != expected) { 681 result(llen, FAIL); 682 return 1; 683 } 684 if (expected_chars == -1) { 685 if (*endptr != '\0') { 686 result(llen, FAIL); 687 return 1; 688 } 689 } else if (expected_chars != actual_chars) { 690 result(llen, FAIL); 691 return 1; 692 } 693 if (actual_errno != expected_errno) { 694 result(llen, FAIL); 695 return 1; 696 } 697 698 result(llen, OK); 699 return 0; 700 } 701 702 /* declare tests based on line numbers. There must be exactly one test per line. */ 703 #define CASE_TEST(name) \ 704 case __LINE__: llen += printf("%d %s", test, #name); 705 706 __attribute__((constructor)) 707 static void constructor1(void) 708 { 709 constructor_test_value |= 1 << 0; 710 } 711 712 __attribute__((constructor)) 713 static void constructor2(int argc, char **argv, char **envp) 714 { 715 if (argc && argv && envp) 716 constructor_test_value |= 1 << 1; 717 } 718 719 int test_program_invocation_name(void) 720 { 721 char buf[100]; 722 char *dirsep; 723 ssize_t r; 724 int fd; 725 726 fd = open("/proc/self/cmdline", O_RDONLY); 727 if (fd == -1) 728 return 1; 729 730 r = read(fd, buf, sizeof(buf)); 731 close(fd); 732 if (r < 1 || r == sizeof(buf)) 733 return 1; 734 735 buf[r - 1] = '\0'; 736 737 if (strcmp(program_invocation_name, buf) != 0) 738 return 1; 739 740 dirsep = strrchr(buf, '/'); 741 if (!dirsep || dirsep[1] == '\0') 742 return 1; 743 744 if (strcmp(program_invocation_short_name, dirsep + 1) != 0) 745 return 1; 746 747 return 0; 748 } 749 750 int run_startup(int min, int max) 751 { 752 int test; 753 int ret = 0; 754 /* kernel at least passes HOME and TERM, shell passes more */ 755 int env_total = 2; 756 /* checking NULL for argv/argv0, environ and _auxv is not enough, let's compare with sbrk(0) or &end */ 757 extern char end; 758 char *brk = sbrk(0) != (void *)-1 ? sbrk(0) : &end; 759 #if defined(__alpha__) 760 /* the ordering above does not work on an alpha kernel due to STACK_TOP != TASK_SIZE */ 761 brk = NULL; 762 #endif 763 /* differ from nolibc, both glibc and musl have no global _auxv */ 764 const unsigned long *test_auxv = (void *)-1; 765 #ifdef NOLIBC 766 test_auxv = _auxv; 767 #endif 768 bool proc = access("/proc", R_OK) == 0; 769 770 for (test = min; test >= 0 && test <= max; test++) { 771 int llen = 0; /* line length */ 772 773 /* avoid leaving empty lines below, this will insert holes into 774 * test numbers. 775 */ 776 switch (test + __LINE__ + 1) { 777 CASE_TEST(argc); EXPECT_GE(1, test_argc, 1); break; 778 CASE_TEST(argv_addr); EXPECT_PTRGT(1, test_argv, brk); break; 779 CASE_TEST(argv_environ); EXPECT_PTRLT(1, test_argv, environ); break; 780 CASE_TEST(argv_total); EXPECT_EQ(1, environ - test_argv - 1, test_argc ?: 1); break; 781 CASE_TEST(argv0_addr); EXPECT_PTRGT(1, argv0, brk); break; 782 CASE_TEST(argv0_str); EXPECT_STRNZ(1, argv0 > brk ? argv0 : NULL); break; 783 CASE_TEST(argv0_len); EXPECT_GE(1, argv0 > brk ? strlen(argv0) : 0, 1); break; 784 CASE_TEST(environ_addr); EXPECT_PTRGT(1, environ, brk); break; 785 CASE_TEST(environ_envp); EXPECT_PTREQ(1, environ, test_envp); break; 786 CASE_TEST(environ_auxv); EXPECT_PTRLT(test_auxv != (void *)-1, environ, test_auxv); break; 787 CASE_TEST(environ_total); EXPECT_GE(test_auxv != (void *)-1, (void *)test_auxv - (void *)environ - 1, env_total); break; 788 CASE_TEST(environ_HOME); EXPECT_PTRNZ(1, getenv("HOME")); break; 789 CASE_TEST(auxv_addr); EXPECT_PTRGT(test_auxv != (void *)-1, test_auxv, brk); break; 790 CASE_TEST(auxv_AT_UID); EXPECT_EQ(1, getauxval(AT_UID), getuid()); break; 791 CASE_TEST(constructor); EXPECT_EQ(is_nolibc, constructor_test_value, 0x3); break; 792 CASE_TEST(linkage_errno); EXPECT_PTREQ(1, linkage_test_errno_addr(), &errno); break; 793 CASE_TEST(linkage_constr); EXPECT_EQ(1, linkage_test_constructor_test_value, 0x3); break; 794 CASE_TEST(prog_name); EXPECT_ZR(proc, test_program_invocation_name()); break; 795 case __LINE__: 796 return ret; /* must be last */ 797 /* note: do not set any defaults so as to permit holes above */ 798 } 799 } 800 return ret; 801 } 802 803 804 /* used by some syscall tests below */ 805 int test_getdents64(const char *dir) 806 { 807 char buffer[4096]; 808 int fd, ret; 809 int err; 810 811 ret = fd = open(dir, O_RDONLY | O_DIRECTORY); 812 if (ret < 0) 813 return ret; 814 815 ret = getdents64(fd, (void *)buffer, sizeof(buffer)); 816 err = errno; 817 close(fd); 818 819 errno = err; 820 return ret; 821 } 822 823 static int test_dirent(void) 824 { 825 int comm = 0, cmdline = 0; 826 struct dirent dirent, *result; 827 DIR *dir; 828 int ret; 829 830 dir = opendir("/proc/self"); 831 if (!dir) 832 return 1; 833 834 while (1) { 835 errno = 0; 836 ret = readdir_r(dir, &dirent, &result); 837 if (ret != 0) 838 return 1; 839 if (!result) 840 break; 841 842 if (strcmp(dirent.d_name, "comm") == 0) 843 comm++; 844 else if (strcmp(dirent.d_name, "cmdline") == 0) 845 cmdline++; 846 } 847 848 if (errno) 849 return 1; 850 851 ret = closedir(dir); 852 if (ret) 853 return 1; 854 855 if (comm != 1 || cmdline != 1) 856 return 1; 857 858 return 0; 859 } 860 861 int test_getcwd(void) 862 { 863 char cwd_syscall[PATH_MAX]; 864 char cwd_proc[PATH_MAX]; 865 ssize_t len; 866 867 /* Read where the link /proc/self/cwd points */ 868 len = readlink("/proc/self/cwd", cwd_proc, sizeof(cwd_proc) - 1); 869 if (len <= 0) 870 return __LINE__; 871 872 /* Terminate the string from readlink() */ 873 cwd_proc[len] = '\0'; 874 875 /* Get the cwd via syscall */ 876 if (getcwd(cwd_syscall, sizeof(cwd_syscall)) == NULL) 877 return __LINE__; 878 879 /* Fail if they aren't the same */ 880 if (strcmp(cwd_proc, cwd_syscall) != 0) 881 return __LINE__; 882 883 /* Try getcwd() with NULL for the buffer, 884 * should return NULL and an error in errno. 885 * Other libc's allow this by allocating a buffer 886 * internally. 887 */ 888 if (is_nolibc) { 889 errno = 0; 890 if (getcwd(NULL, 0) != NULL || !errno) 891 return __LINE__; 892 } 893 894 /* Try getcwd() with a buffer but make the size 0, 895 * should return NULL and an error in errno. 896 */ 897 errno = 0; 898 if (getcwd(cwd_syscall, 0) != NULL || !errno) 899 return __LINE__; 900 901 /* Try getcwd() with a buffer but make the size 1, 902 * should return NULL and an error in errno because 903 * the string written to the buffer is terminated 904 * so you need at least 2 bytes even for "/". 905 */ 906 errno = 0; 907 if (getcwd(cwd_syscall, 1) != NULL || !errno) 908 return __LINE__; 909 910 return 0; 911 } 912 913 int test_getrandom(void) 914 { 915 uint64_t rng = 0; 916 ssize_t ret; 917 918 ret = getrandom(&rng, sizeof(rng), GRND_NONBLOCK); 919 if (ret == -1 && errno == EAGAIN) 920 return 0; /* No entropy available yet */ 921 922 if (ret != sizeof(rng)) 923 return ret; 924 925 if (!rng) { 926 errno = EINVAL; 927 return -1; 928 } 929 930 return 0; 931 } 932 933 int test_getpagesize(void) 934 { 935 int x = getpagesize(); 936 int c; 937 938 if (x < 0) 939 return x; 940 941 #if defined(__x86_64__) || defined(__i386__) || defined(__i486__) || defined(__i586__) || defined(__i686__) 942 /* 943 * x86 family is always 4K page. 944 */ 945 c = (x == 4096); 946 #elif defined(__aarch64__) 947 /* 948 * Linux aarch64 supports three values of page size: 4K, 16K, and 64K 949 * which are selected at kernel compilation time. 950 */ 951 c = (x == 4096 || x == (16 * 1024) || x == (64 * 1024)); 952 #else 953 /* 954 * Assuming other architectures must have at least 4K page. 955 */ 956 c = (x >= 4096); 957 #endif 958 959 return !c; 960 } 961 962 int test_file_stream(void) 963 { 964 FILE *f; 965 int r; 966 967 f = fopen("/dev/null", "r"); 968 if (!f) 969 return -1; 970 971 errno = 0; 972 r = fwrite("foo", 1, 3, f); 973 if (r != 0 || ((is_nolibc || is_glibc) && errno != EBADF)) { 974 fclose(f); 975 return -1; 976 } 977 978 r = fclose(f); 979 if (r == EOF) 980 return -1; 981 982 return 0; 983 } 984 985 int test_file_stream_wsr(void) 986 { 987 const char dataout[] = "foo"; 988 const size_t datasz = sizeof(dataout); 989 char datain[datasz]; 990 int fd, r; 991 FILE *f; 992 993 fd = open("/tmp", O_TMPFILE | O_RDWR, 0644); 994 if (fd == -1) 995 return -1; 996 997 f = fdopen(fd, "w+"); 998 if (!f) 999 return -1; 1000 1001 errno = 0; 1002 r = fwrite(dataout, 1, datasz, f); 1003 if (r != datasz) 1004 return -1; 1005 1006 /* Attempt to read from the file without rewinding, 1007 * we should read 0 items. 1008 */ 1009 r = fread(datain, 1, datasz, f); 1010 if (r) 1011 return -1; 1012 1013 /* Rewind the file to the start */ 1014 r = fseek(f, 0, SEEK_SET); 1015 if (r) 1016 return -1; 1017 1018 /* Attempt to read back more than was written to 1019 * make sure we handle short reads properly. 1020 * fread() should return the number of complete items. 1021 */ 1022 r = fread(datain, 1, datasz + 1, f); 1023 if (r != datasz) 1024 return -1; 1025 1026 /* Data we read should match the data we just wrote */ 1027 if (memcmp(datain, dataout, datasz) != 0) 1028 return -1; 1029 1030 r = fclose(f); 1031 if (r) 1032 return -1; 1033 1034 return 0; 1035 } 1036 1037 enum fork_type { 1038 FORK_STANDARD, 1039 FORK_VFORK, 1040 }; 1041 1042 int test_fork(enum fork_type type) 1043 { 1044 int status; 1045 pid_t pid; 1046 1047 /* flush the printf buffer to avoid child flush it */ 1048 fflush(stdout); 1049 fflush(stderr); 1050 1051 switch (type) { 1052 case FORK_STANDARD: 1053 pid = fork(); 1054 break; 1055 case FORK_VFORK: 1056 pid = vfork(); 1057 break; 1058 default: 1059 return 1; 1060 } 1061 1062 switch (pid) { 1063 case -1: 1064 return 1; 1065 1066 case 0: 1067 _exit(123); 1068 1069 default: 1070 pid = waitpid(pid, &status, 0); 1071 1072 return pid == -1 || !WIFEXITED(status) || WEXITSTATUS(status) != 123; 1073 } 1074 } 1075 1076 int test_ftruncate(void) 1077 { 1078 struct stat stat_buf; 1079 int ret, fd; 1080 1081 ret = ftruncate(-1, 0); 1082 if (ret != -1 || errno != EBADF) { 1083 errno = EINVAL; 1084 return __LINE__; 1085 } 1086 1087 fd = memfd_create(__func__, 0); 1088 if (fd == -1) 1089 return __LINE__; 1090 1091 /* 1092 * This also tests that the high 32-bit half is passed through correctly. 1093 * If it gets lost, the kernel will see a positive number and not fail. 1094 */ 1095 ret = ftruncate(fd, -1); 1096 if (!(ret == -1 && errno == EINVAL)) { 1097 if (ret == 0) 1098 errno = EINVAL; 1099 ret = __LINE__; 1100 goto end; 1101 } 1102 1103 ret = ftruncate(fd, 42); 1104 if (ret != 0) { 1105 ret = __LINE__; 1106 goto end; 1107 } 1108 1109 ret = fstat(fd, &stat_buf); 1110 if (ret != 0) { 1111 ret = __LINE__; 1112 goto end; 1113 } 1114 1115 if (stat_buf.st_size != 42) { 1116 errno = EINVAL; 1117 ret = __LINE__; 1118 goto end; 1119 } 1120 1121 end: 1122 close(fd); 1123 1124 return ret; 1125 } 1126 1127 int test_stat_timestamps(void) 1128 { 1129 struct stat st; 1130 1131 if (sizeof(st.st_atim.tv_sec) != sizeof(st.st_atime)) 1132 return 1; 1133 1134 if (stat("/proc/self/", &st) && stat(argv0, &st) && stat("/", &st)) 1135 return 1; 1136 1137 if (st.st_atim.tv_sec != st.st_atime || st.st_atim.tv_nsec > 1000000000) 1138 return 1; 1139 1140 if (st.st_mtim.tv_sec != st.st_mtime || st.st_mtim.tv_nsec > 1000000000) 1141 return 1; 1142 1143 if (st.st_ctim.tv_sec != st.st_ctime || st.st_ctim.tv_nsec > 1000000000) 1144 return 1; 1145 1146 return 0; 1147 } 1148 1149 int test_timer(void) 1150 { 1151 struct itimerspec timerspec; 1152 struct sigevent evp; 1153 timer_t timer; 1154 int ret; 1155 1156 evp.sigev_notify = SIGEV_NONE; 1157 1158 ret = timer_create(CLOCK_MONOTONIC, &evp, &timer); 1159 if (ret) 1160 return ret; 1161 1162 timerspec = (struct itimerspec) { 1163 .it_value.tv_sec = 1000000, 1164 }; 1165 ret = timer_settime(timer, 0, &timerspec, NULL); 1166 if (ret) 1167 goto err; 1168 1169 timerspec = (struct itimerspec) { 1170 .it_value.tv_sec = -1, 1171 .it_value.tv_nsec = -1, 1172 .it_interval.tv_sec = -1, 1173 .it_interval.tv_nsec = -1, 1174 }; 1175 ret = timer_gettime(timer, &timerspec); 1176 if (ret) 1177 goto err; 1178 1179 errno = EINVAL; 1180 ret = -1; 1181 1182 if (timerspec.it_interval.tv_sec || timerspec.it_interval.tv_nsec) 1183 goto err; 1184 1185 if (timerspec.it_value.tv_sec > 1000000) 1186 goto err; 1187 1188 ret = timer_delete(timer); 1189 if (ret) 1190 return ret; 1191 1192 return 0; 1193 1194 err: 1195 timer_delete(timer); 1196 return ret; 1197 } 1198 1199 int test_timerfd(void) 1200 { 1201 struct itimerspec timerspec; 1202 int timer, ret; 1203 1204 timer = timerfd_create(CLOCK_MONOTONIC, 0); 1205 if (timer == -1) 1206 return -1; 1207 1208 timerspec = (struct itimerspec) { 1209 .it_value.tv_sec = 1000000, 1210 }; 1211 ret = timerfd_settime(timer, 0, &timerspec, NULL); 1212 if (ret) 1213 goto err; 1214 1215 timerspec = (struct itimerspec) { 1216 .it_value.tv_sec = -1, 1217 .it_value.tv_nsec = -1, 1218 .it_interval.tv_sec = -1, 1219 .it_interval.tv_nsec = -1, 1220 }; 1221 ret = timerfd_gettime(timer, &timerspec); 1222 if (ret) 1223 goto err; 1224 1225 errno = EINVAL; 1226 ret = -1; 1227 1228 if (timerspec.it_interval.tv_sec || timerspec.it_interval.tv_nsec) 1229 goto err; 1230 1231 if (timerspec.it_value.tv_sec > 1000000) 1232 goto err; 1233 1234 ret = close(timer); 1235 if (ret) 1236 return ret; 1237 1238 return 0; 1239 1240 err: 1241 close(timer); 1242 return ret; 1243 } 1244 1245 int test_uname(void) 1246 { 1247 struct utsname buf; 1248 char osrelease[sizeof(buf.release)]; 1249 ssize_t r; 1250 int fd; 1251 1252 memset(&buf.domainname, 'P', sizeof(buf.domainname)); 1253 1254 if (uname(&buf)) 1255 return 1; 1256 1257 if (strncmp("Linux", buf.sysname, sizeof(buf.sysname))) 1258 return 1; 1259 1260 fd = open("/proc/sys/kernel/osrelease", O_RDONLY); 1261 if (fd == -1) 1262 return 1; 1263 1264 r = read(fd, osrelease, sizeof(osrelease)); 1265 if (r == -1) 1266 return 1; 1267 1268 close(fd); 1269 1270 if (osrelease[r - 1] == '\n') 1271 r--; 1272 1273 /* Validate one of the later fields to ensure field sizes are correct */ 1274 if (strncmp(osrelease, buf.release, r)) 1275 return 1; 1276 1277 /* Ensure the field domainname is set, it is missing from struct old_utsname */ 1278 if (strnlen(buf.domainname, sizeof(buf.domainname)) == sizeof(buf.domainname)) 1279 return 1; 1280 1281 return 0; 1282 } 1283 1284 int test_mmap_munmap(void) 1285 { 1286 int ret, fd, i, page_size; 1287 void *mem; 1288 size_t file_size, length, mem_length; 1289 off_t offset, pa_offset; 1290 struct stat stat_buf; 1291 const char * const files[] = { 1292 "/dev/zero", 1293 "/proc/1/exe", "/proc/self/exe", 1294 argv0, 1295 NULL 1296 }; 1297 1298 page_size = getpagesize(); 1299 if (page_size < 0) 1300 return 1; 1301 1302 /* find a right file to mmap, existed and accessible */ 1303 for (i = 0; files[i] != NULL; i++) { 1304 ret = fd = open(files[i], O_RDONLY); 1305 if (ret == -1) 1306 continue; 1307 else 1308 break; 1309 } 1310 if (ret == -1) 1311 return 1; 1312 1313 ret = stat(files[i], &stat_buf); 1314 if (ret == -1) 1315 goto end; 1316 1317 /* file size of the special /dev/zero is 0, let's assign one manually */ 1318 if (i == 0) 1319 file_size = 3*page_size; 1320 else 1321 file_size = stat_buf.st_size; 1322 1323 offset = file_size - 1; 1324 if (offset < 0) 1325 offset = 0; 1326 length = file_size - offset; 1327 pa_offset = offset & ~(page_size - 1); 1328 mem_length = length + offset - pa_offset; 1329 1330 mem = mmap(NULL, mem_length, PROT_READ, MAP_SHARED, fd, pa_offset); 1331 if (mem == MAP_FAILED) { 1332 ret = 1; 1333 goto end; 1334 } 1335 1336 mem = mremap(mem, mem_length, mem_length * 2, MREMAP_MAYMOVE, 0); 1337 if (mem == MAP_FAILED) { 1338 munmap(mem, mem_length); 1339 ret = 1; 1340 goto end; 1341 } 1342 1343 ret = munmap(mem, mem_length * 2); 1344 1345 end: 1346 close(fd); 1347 return !!ret; 1348 } 1349 1350 int test_pipe(void) 1351 { 1352 const char *const msg = "hello, nolibc"; 1353 int pipefd[2]; 1354 char buf[32]; 1355 size_t len; 1356 1357 if (pipe(pipefd) == -1) 1358 return 1; 1359 1360 write(pipefd[1], msg, strlen(msg)); 1361 close(pipefd[1]); 1362 len = read(pipefd[0], buf, sizeof(buf)); 1363 close(pipefd[0]); 1364 1365 if (len != strlen(msg)) 1366 return 1; 1367 1368 return !!memcmp(buf, msg, len); 1369 } 1370 1371 int test_rlimit(void) 1372 { 1373 struct rlimit rlim = { 1374 .rlim_cur = 1 << 20, 1375 .rlim_max = 1 << 21, 1376 }; 1377 int ret; 1378 1379 ret = setrlimit(RLIMIT_CORE, &rlim); 1380 if (ret) 1381 return -1; 1382 1383 rlim.rlim_cur = 0; 1384 rlim.rlim_max = 0; 1385 1386 ret = getrlimit(RLIMIT_CORE, &rlim); 1387 if (ret) 1388 return -1; 1389 1390 if (rlim.rlim_cur != 1 << 20) 1391 return -1; 1392 if (rlim.rlim_max != 1 << 21) 1393 return -1; 1394 1395 return 0; 1396 } 1397 1398 int test_openat(void) 1399 { 1400 int dev, null; 1401 1402 dev = openat(AT_FDCWD, "/dev", O_DIRECTORY); 1403 if (dev < 0) 1404 return -1; 1405 1406 null = openat(dev, "null", O_RDONLY); 1407 close(dev); 1408 if (null < 0) 1409 return -1; 1410 1411 close(null); 1412 return 0; 1413 } 1414 1415 int test_open_mode(void) 1416 { 1417 const mode_t mode = 0444; 1418 struct stat stat_buf; 1419 int fd, ret; 1420 1421 fd = open("/tmp", O_TMPFILE | O_RDWR, mode); 1422 if (fd == -1) 1423 return -1; 1424 1425 ret = fstat(fd, &stat_buf); 1426 close(fd); 1427 1428 if (ret == -1) 1429 return -1; 1430 1431 if ((stat_buf.st_mode & 0777) != mode) 1432 return -1; 1433 1434 return 0; 1435 } 1436 1437 int test_nolibc_enosys(void) 1438 { 1439 if (true) 1440 return 0; 1441 1442 #if defined(NOLIBC) 1443 /* 1444 * __nolibc_enosys() will fail the compilation. 1445 * Make sure it can be optimized away if not actually called. 1446 */ 1447 if (__nolibc_enosys("something") != -ENOSYS) 1448 return 1; 1449 #endif 1450 1451 return 0; 1452 } 1453 1454 int test_namespace(void) 1455 { 1456 int original_ns, new_ns, ret; 1457 ino_t original_ns_ino; 1458 struct stat stat_buf; 1459 1460 original_ns = open("/proc/self/ns/uts", O_RDONLY); 1461 if (original_ns == -1) 1462 return -1; 1463 1464 ret = fstat(original_ns, &stat_buf); 1465 if (ret) 1466 goto out; 1467 1468 original_ns_ino = stat_buf.st_ino; 1469 1470 ret = unshare(CLONE_NEWUTS); 1471 if (ret) 1472 goto out; 1473 1474 new_ns = open("/proc/self/ns/uts", O_RDONLY); 1475 if (new_ns == -1) { 1476 ret = new_ns; 1477 goto out; 1478 } 1479 1480 ret = fstat(new_ns, &stat_buf); 1481 close(new_ns); 1482 if (ret) 1483 goto out; 1484 1485 if (stat_buf.st_ino == original_ns_ino) { 1486 errno = EINVAL; 1487 ret = -1; 1488 goto out; 1489 } 1490 1491 ret = setns(original_ns, CLONE_NEWUTS); 1492 if (ret) 1493 goto out; 1494 1495 new_ns = open("/proc/self/ns/uts", O_RDONLY); 1496 if (new_ns == -1) { 1497 ret = new_ns; 1498 goto out; 1499 } 1500 1501 ret = fstat(new_ns, &stat_buf); 1502 if (ret) 1503 goto out; 1504 1505 close(new_ns); 1506 1507 if (stat_buf.st_ino != original_ns_ino) { 1508 errno = EINVAL; 1509 ret = -1; 1510 goto out; 1511 } 1512 1513 ret = 0; 1514 1515 out: 1516 close(original_ns); 1517 return ret; 1518 } 1519 1520 int test_large_file(void) 1521 { 1522 off_t large_seek = ((off_t)UINT32_MAX) + 100; 1523 int fd, ret, saved_errno; 1524 ssize_t written; 1525 off_t off; 1526 1527 #if defined(__mips__) && defined(_ABIN32) 1528 /* https://lore.kernel.org/qemu-devel/fed03914-a95a-4522-a432-f129264cb2ac@t-8ch.de/ */ 1529 if (getpid() != 1) 1530 return 0; 1531 #endif 1532 1533 if (large_seek < UINT32_MAX) { 1534 errno = EOVERFLOW; 1535 return -1; 1536 } 1537 1538 fd = open("/tmp", O_TMPFILE | O_RDWR, 0644); 1539 if (fd == -1) 1540 return -1; 1541 1542 off = lseek(fd, large_seek, SEEK_CUR); 1543 if (off == -1) { 1544 ret = off; 1545 goto out; 1546 } else if (off != large_seek) { 1547 errno = ERANGE; 1548 ret = -1; 1549 goto out; 1550 } 1551 1552 written = write(fd, "1", 1); 1553 if (written == -1) { 1554 ret = written; 1555 goto out; 1556 } 1557 1558 ret = 0; 1559 out: 1560 saved_errno = errno; 1561 close(fd); 1562 errno = saved_errno; 1563 return ret; 1564 } 1565 1566 /* Run syscall tests between IDs <min> and <max>. 1567 * Return 0 on success, non-zero on failure. 1568 */ 1569 int run_syscall(int min, int max) 1570 { 1571 struct timeval tv; 1572 struct timezone tz; 1573 struct timespec ts; 1574 struct stat stat_buf; 1575 int euid0; 1576 int proc; 1577 int test; 1578 int tmp; 1579 struct iovec iov_one = { 1580 .iov_base = &tmp, 1581 .iov_len = 1, 1582 }; 1583 int ret = 0; 1584 void *p1, *p2; 1585 int has_gettid = 1; 1586 int has_brk; 1587 1588 /* <proc> indicates whether or not /proc is mounted */ 1589 proc = stat("/proc", &stat_buf) == 0; 1590 1591 /* this will be used to skip certain tests that can't be run unprivileged */ 1592 euid0 = geteuid() == 0; 1593 1594 /* from 2.30, glibc provides gettid() */ 1595 #if defined(__GLIBC_MINOR__) && defined(__GLIBC__) 1596 has_gettid = __GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 30); 1597 #endif 1598 1599 /* on musl setting brk()/sbrk() always fails */ 1600 has_brk = brk(0) == 0; 1601 1602 for (test = min; test >= 0 && test <= max; test++) { 1603 int llen = 0; /* line length */ 1604 1605 /* avoid leaving empty lines below, this will insert holes into 1606 * test numbers. 1607 */ 1608 switch (test + __LINE__ + 1) { 1609 CASE_TEST(access); EXPECT_SYSZR(proc, access("/proc/self", R_OK)); break; 1610 CASE_TEST(access_bad); EXPECT_SYSER(proc, access("/proc/self", W_OK), -1, EPERM); break; 1611 CASE_TEST(clock_getres); EXPECT_SYSZR(1, clock_getres(CLOCK_MONOTONIC, &ts)); break; 1612 CASE_TEST(clock_gettime); EXPECT_SYSZR(1, clock_gettime(CLOCK_MONOTONIC, &ts)); break; 1613 CASE_TEST(clock_settime); EXPECT_SYSER(1, clock_settime(CLOCK_MONOTONIC, &ts), -1, EINVAL); break; 1614 CASE_TEST(getcwd); EXPECT_SYSZR(proc, test_getcwd()); break; 1615 CASE_TEST(getpid); EXPECT_SYSNE(1, getpid(), -1); break; 1616 CASE_TEST(getppid); EXPECT_SYSNE(1, getppid(), -1); break; 1617 CASE_TEST(gettid); EXPECT_SYSNE(has_gettid, gettid(), -1); break; 1618 CASE_TEST(getpgid_self); EXPECT_SYSNE(1, getpgid(0), -1); break; 1619 CASE_TEST(getpgid_bad); EXPECT_SYSER(1, getpgid(-1), -1, ESRCH); break; 1620 CASE_TEST(kill_0); EXPECT_SYSZR(1, kill(getpid(), 0)); break; 1621 CASE_TEST(kill_CONT); EXPECT_SYSZR(1, kill(getpid(), 0)); break; 1622 CASE_TEST(kill_BADPID); EXPECT_SYSER(1, kill(INT_MAX, 0), -1, ESRCH); break; 1623 CASE_TEST(sbrk_0); EXPECT_PTRNE(has_brk, sbrk(0), (void *)-1); break; 1624 CASE_TEST(sbrk); if ((p1 = p2 = sbrk(4096)) != (void *)-1) p2 = sbrk(-4096); EXPECT_SYSZR(has_brk, (p2 == (void *)-1) || p2 == p1); break; 1625 CASE_TEST(brk); EXPECT_SYSZR(has_brk, brk(sbrk(0))); break; 1626 CASE_TEST(chdir_root); EXPECT_SYSZR(1, chdir("/")); chdir(getenv("PWD")); break; 1627 CASE_TEST(chdir_dot); EXPECT_SYSZR(1, chdir(".")); break; 1628 CASE_TEST(chdir_blah); EXPECT_SYSER(1, chdir("/blah"), -1, ENOENT); break; 1629 CASE_TEST(chmod_argv0); EXPECT_SYSZR(1, chmod(argv0, 0555)); break; 1630 CASE_TEST(chmod_self); EXPECT_SYSER(proc, chmod("/proc/self", 0555), -1, EPERM); break; 1631 CASE_TEST(chown_self); EXPECT_SYSER(proc, chown("/proc/self", 0, 0), -1, EPERM); break; 1632 CASE_TEST(chroot_root); EXPECT_SYSZR(euid0, chroot("/")); break; 1633 CASE_TEST(chroot_blah); EXPECT_SYSER(1, chroot("/proc/self/blah"), -1, ENOENT); break; 1634 CASE_TEST(chroot_exe); EXPECT_SYSER(1, chroot(argv0), -1, ENOTDIR); break; 1635 CASE_TEST(clock_nanosleep); ts.tv_nsec = -1; EXPECT_EQ(1, EINVAL, clock_nanosleep(CLOCK_REALTIME, 0, &ts, NULL)); break; 1636 CASE_TEST(close_m1); EXPECT_SYSER(1, close(-1), -1, EBADF); break; 1637 CASE_TEST(close_dup); EXPECT_SYSZR(1, close(dup(0))); break; 1638 CASE_TEST(dup_0); tmp = dup(0); EXPECT_SYSNE(1, tmp, -1); close(tmp); break; 1639 CASE_TEST(dup_m1); tmp = dup(-1); EXPECT_SYSER(1, tmp, -1, EBADF); if (tmp != -1) close(tmp); break; 1640 CASE_TEST(dup2_0); tmp = dup2(0, 100); EXPECT_SYSNE(1, tmp, -1); close(tmp); break; 1641 CASE_TEST(dup2_m1); tmp = dup2(-1, 100); EXPECT_SYSER(1, tmp, -1, EBADF); if (tmp != -1) close(tmp); break; 1642 CASE_TEST(dup3_0); tmp = dup3(0, 100, 0); EXPECT_SYSNE(1, tmp, -1); close(tmp); break; 1643 CASE_TEST(dup3_m1); tmp = dup3(-1, 100, 0); EXPECT_SYSER(1, tmp, -1, EBADF); if (tmp != -1) close(tmp); break; 1644 CASE_TEST(execve_root); EXPECT_SYSER(1, execve("/", (char*[]){ [0] = (char []){"/"}, [1] = NULL }, NULL), -1, EACCES); break; 1645 CASE_TEST(fchdir_stdin); EXPECT_SYSER(1, fchdir(STDIN_FILENO), -1, ENOTDIR); break; 1646 CASE_TEST(fchdir_badfd); EXPECT_SYSER(1, fchdir(-1), -1, EBADF); break; 1647 CASE_TEST(file_stream); EXPECT_SYSZR(1, test_file_stream()); break; 1648 CASE_TEST(file_stream_wsr); EXPECT_SYSZR(1, test_file_stream_wsr()); break; 1649 CASE_TEST(fork); EXPECT_SYSZR(1, test_fork(FORK_STANDARD)); break; 1650 CASE_TEST(ftruncate); EXPECT_SYSZR(1, test_ftruncate()); break; 1651 CASE_TEST(getdents64_root); EXPECT_SYSNE(1, test_getdents64("/"), -1); break; 1652 CASE_TEST(getdents64_null); EXPECT_SYSER(1, test_getdents64("/dev/null"), -1, ENOTDIR); break; 1653 CASE_TEST(directories); EXPECT_SYSZR(is_nolibc && proc, test_dirent()); break; 1654 CASE_TEST(getrandom); EXPECT_SYSZR(1, test_getrandom()); break; 1655 CASE_TEST(gettimeofday_tv); EXPECT_SYSZR(1, gettimeofday(&tv, NULL)); break; 1656 CASE_TEST(gettimeofday_tv_tz);EXPECT_SYSZR(1, gettimeofday(&tv, &tz)); break; 1657 CASE_TEST(getpagesize); EXPECT_SYSZR(1, test_getpagesize()); break; 1658 CASE_TEST(ioctl_tiocinq); EXPECT_SYSZR(1, ioctl(0, TIOCINQ, &tmp)); break; 1659 CASE_TEST(link_root1); EXPECT_SYSER(1, link("/", "/"), -1, EEXIST); break; 1660 CASE_TEST(link_blah); EXPECT_SYSER(1, link("/proc/self/blah", "/blah"), -1, ENOENT); break; 1661 CASE_TEST(link_dir); EXPECT_SYSER(euid0, link("/", "/blah"), -1, EPERM); break; 1662 CASE_TEST(link_cross); EXPECT_SYSER(proc, link("/proc/self/cmdline", "/blah"), -1, EXDEV); break; 1663 CASE_TEST(lseek_m1); EXPECT_SYSER(1, lseek(-1, 0, SEEK_SET), -1, EBADF); break; 1664 CASE_TEST(lseek_0); EXPECT_SYSER(1, lseek(0, 0, SEEK_SET), -1, ESPIPE); break; 1665 CASE_TEST(mkdir_root); EXPECT_SYSER(1, mkdir("/", 0755), -1, EEXIST); break; 1666 CASE_TEST(mmap_bad); EXPECT_PTRER(1, mmap(NULL, 0, PROT_READ, MAP_PRIVATE, 0, 0), MAP_FAILED, EINVAL); break; 1667 CASE_TEST(munmap_bad); EXPECT_SYSER(1, munmap(NULL, 0), -1, EINVAL); break; 1668 CASE_TEST(mmap_munmap_good); EXPECT_SYSZR(1, test_mmap_munmap()); break; 1669 CASE_TEST(nanosleep); ts.tv_nsec = -1; EXPECT_SYSER(1, nanosleep(&ts, NULL), -1, EINVAL); break; 1670 CASE_TEST(nolibc_enosys); EXPECT_ZR(is_nolibc, test_nolibc_enosys()); break; 1671 CASE_TEST(open_tty); EXPECT_SYSNE(1, tmp = open("/dev/null", O_RDONLY), -1); if (tmp != -1) close(tmp); break; 1672 CASE_TEST(open_blah); EXPECT_SYSER(1, tmp = open("/proc/self/blah", O_RDONLY), -1, ENOENT); if (tmp != -1) close(tmp); break; 1673 CASE_TEST(openat_dir); EXPECT_SYSZR(1, test_openat()); break; 1674 CASE_TEST(open_mode); EXPECT_SYSZR(1, test_open_mode()); break; 1675 CASE_TEST(pipe); EXPECT_SYSZR(1, test_pipe()); break; 1676 CASE_TEST(poll_null); EXPECT_SYSZR(1, poll(NULL, 0, 0)); break; 1677 CASE_TEST(poll_stdout); EXPECT_SYSNE(1, ({ struct pollfd fds = { 1, POLLOUT, 0}; poll(&fds, 1, 0); }), -1); break; 1678 CASE_TEST(poll_fault); EXPECT_SYSER(1, poll(NULL, 1, 0), -1, EFAULT); break; 1679 CASE_TEST(prctl); EXPECT_SYSER(1, prctl(PR_SET_NAME, (unsigned long)NULL, 0, 0, 0), -1, EFAULT); break; 1680 CASE_TEST(read_badf); EXPECT_SYSER(1, read(-1, &tmp, 1), -1, EBADF); break; 1681 CASE_TEST(rlimit); EXPECT_SYSZR(1, test_rlimit()); break; 1682 CASE_TEST(rmdir_blah); EXPECT_SYSER(1, rmdir("/blah"), -1, ENOENT); break; 1683 CASE_TEST(sched_yield); EXPECT_SYSZR(1, sched_yield()); break; 1684 CASE_TEST(select_null); EXPECT_SYSZR(1, ({ struct timeval tv = { 0 }; select(0, NULL, NULL, NULL, &tv); })); break; 1685 CASE_TEST(select_stdout); EXPECT_SYSNE(1, ({ fd_set fds; FD_ZERO(&fds); FD_SET(1, &fds); select(2, NULL, &fds, NULL, NULL); }), -1); break; 1686 CASE_TEST(select_fault); EXPECT_SYSER(1, select(1, (void *)1, NULL, NULL, 0), -1, EFAULT); break; 1687 CASE_TEST(stat_blah); EXPECT_SYSER(1, stat("/proc/self/blah", &stat_buf), -1, ENOENT); break; 1688 CASE_TEST(stat_fault); EXPECT_SYSER(1, stat(NULL, &stat_buf), -1, EFAULT); break; 1689 CASE_TEST(stat_rdev); EXPECT_SYSZR(1, ({ int ret = stat("/dev/null", &stat_buf); ret ?: stat_buf.st_rdev != makedev(1, 3); })); break; 1690 CASE_TEST(stat_timestamps); EXPECT_SYSZR(1, test_stat_timestamps()); break; 1691 CASE_TEST(symlink_root); EXPECT_SYSER(1, symlink("/", "/"), -1, EEXIST); break; 1692 CASE_TEST(timer); EXPECT_SYSZR(1, test_timer()); break; 1693 CASE_TEST(timerfd); EXPECT_SYSZR(1, test_timerfd()); break; 1694 CASE_TEST(uname); EXPECT_SYSZR(proc, test_uname()); break; 1695 CASE_TEST(uname_fault); EXPECT_SYSER(1, uname(NULL), -1, EFAULT); break; 1696 CASE_TEST(unlink_root); EXPECT_SYSER(1, unlink("/"), -1, EISDIR); break; 1697 CASE_TEST(unlink_blah); EXPECT_SYSER(1, unlink("/proc/self/blah"), -1, ENOENT); break; 1698 CASE_TEST(vfork); EXPECT_SYSZR(1, test_fork(FORK_VFORK)); break; 1699 CASE_TEST(wait_child); EXPECT_SYSER(1, wait(&tmp), -1, ECHILD); break; 1700 CASE_TEST(waitpid_min); EXPECT_SYSER(1, waitpid(INT_MIN, &tmp, WNOHANG), -1, ESRCH); break; 1701 CASE_TEST(waitpid_child); EXPECT_SYSER(1, waitpid(getpid(), &tmp, WNOHANG), -1, ECHILD); break; 1702 CASE_TEST(write_badf); EXPECT_SYSER(1, write(-1, &tmp, 1), -1, EBADF); break; 1703 CASE_TEST(write_zero); EXPECT_SYSZR(1, write(1, &tmp, 0)); break; 1704 CASE_TEST(readv_badf); EXPECT_SYSER(1, readv(-1, &iov_one, 1), -1, EBADF); break; 1705 CASE_TEST(readv_zero); EXPECT_SYSZR(1, readv(0, NULL, 0)); break; 1706 CASE_TEST(writev_badf); EXPECT_SYSER(1, writev(-1, &iov_one, 1), -1, EBADF); break; 1707 CASE_TEST(writev_zero); EXPECT_SYSZR(1, writev(1, NULL, 0)); break; 1708 CASE_TEST(ptrace); tmp = ptrace(PTRACE_CONT, getpid(), NULL, NULL); EXPECT_SYSER(tmp != -1 && errno != ENOSYS, tmp, -1, EFAULT); break; 1709 CASE_TEST(syscall_noargs); EXPECT_SYSEQ(1, syscall(__NR_getpid), getpid()); break; 1710 CASE_TEST(syscall_args); EXPECT_SYSER(1, syscall(__NR_statx, 0, NULL, 0, 0, NULL), -1, EFAULT); break; 1711 CASE_TEST(_syscall_noargs); EXPECT_SYSEQ(is_nolibc, _syscall(__NR_getpid), getpid()); break; 1712 CASE_TEST(_syscall_args); EXPECT_SYSEQ(is_nolibc, _syscall(__NR_statx, 0, NULL, 0, 0, NULL), -EFAULT); break; 1713 CASE_TEST(namespace); EXPECT_SYSZR(euid0 && proc, test_namespace()); break; 1714 CASE_TEST(largefile); EXPECT_SYSZR(1, test_large_file()); break; 1715 case __LINE__: 1716 return ret; /* must be last */ 1717 /* note: do not set any defaults so as to permit holes above */ 1718 } 1719 } 1720 return ret; 1721 } 1722 1723 int test_alloca(void) 1724 { 1725 uint64_t *x; 1726 1727 x = alloca(sizeof(*x)); 1728 1729 *x = 0x1234; 1730 __asm__ ("" : "+r" (x)); 1731 1732 return *x - 0x1234; 1733 } 1734 1735 int test_difftime(void) 1736 { 1737 if (difftime(200., 100.) != 100.) 1738 return 1; 1739 1740 if (difftime(100., 200.) != -100.) 1741 return 1; 1742 1743 return 0; 1744 } 1745 1746 int test_time_types(void) 1747 { 1748 #ifdef NOLIBC 1749 struct __kernel_timespec kts; 1750 struct timespec ts; 1751 1752 if (!__builtin_types_compatible_p(time_t, __kernel_time64_t)) 1753 return 1; 1754 1755 if (sizeof(ts) != sizeof(kts)) 1756 return 1; 1757 1758 if (!__builtin_types_compatible_p(__typeof__(ts.tv_sec), __typeof__(kts.tv_sec))) 1759 return 1; 1760 1761 if (!__builtin_types_compatible_p(__typeof__(ts.tv_nsec), __typeof__(kts.tv_nsec))) 1762 return 1; 1763 1764 if (offsetof(__typeof__(ts), tv_sec) != offsetof(__typeof__(kts), tv_sec)) 1765 return 1; 1766 1767 if (offsetof(__typeof__(ts), tv_nsec) != offsetof(__typeof__(kts), tv_nsec)) 1768 return 1; 1769 #endif /* NOLIBC */ 1770 1771 return 0; 1772 } 1773 1774 int test_malloc(void) 1775 { 1776 size_t sz_array1, sz_array2, sz_array3; 1777 int *array1, *array2, *array3; 1778 int pagesize = getpagesize(); 1779 size_t idx; 1780 1781 if (pagesize < 0) 1782 return 1; 1783 1784 /* Dependent on the page size, as that is the granularity of our allocator. */ 1785 sz_array1 = pagesize / 2; 1786 array1 = malloc(sz_array1 * sizeof(*array1)); 1787 if (!array1) 1788 return 2; 1789 1790 for (idx = 0; idx < sz_array1; idx++) 1791 array1[idx] = idx; 1792 1793 sz_array2 = pagesize * 2; 1794 array2 = calloc(sz_array2, sizeof(*array2)); 1795 if (!array2) { 1796 free(array1); 1797 return 3; 1798 } 1799 1800 for (idx = 0; idx < sz_array2; idx++) { 1801 if (array2[idx] != 0) { 1802 free(array2); 1803 return 4; 1804 } 1805 array2[idx] = idx + sz_array1; 1806 } 1807 1808 /* Resize array1 into array3 and append array2 at the end. */ 1809 sz_array3 = sz_array1 + sz_array2; 1810 array3 = realloc(array1, sz_array3 * sizeof(*array3)); 1811 if (!array3) { 1812 free(array2); 1813 free(array1); 1814 return 5; 1815 } 1816 memcpy(array3 + sz_array1, array2, sizeof(*array2) * sz_array2); 1817 free(array2); 1818 1819 /* The contents must be contiguous now. */ 1820 for (idx = 0; idx < sz_array3; idx++) 1821 if (array3[idx] != (int)idx) 1822 return 6; 1823 1824 free(array3); 1825 return 0; 1826 } 1827 1828 int run_stdlib(int min, int max) 1829 { 1830 int test; 1831 int ret = 0; 1832 1833 for (test = min; test >= 0 && test <= max; test++) { 1834 int llen = 0; /* line length */ 1835 1836 /* For functions that take a long buffer, like strlcat() 1837 * Add some more chars after the \0, to test functions that overwrite the buffer set 1838 * the \0 at the exact right position. 1839 */ 1840 char buf[11] = "test123456"; 1841 buf[4] = '\0'; 1842 1843 1844 /* avoid leaving empty lines below, this will insert holes into 1845 * test numbers. 1846 */ 1847 switch (test + __LINE__ + 1) { 1848 CASE_TEST(getenv_TERM); EXPECT_STRNZ(1, getenv("TERM")); break; 1849 CASE_TEST(getenv_blah); EXPECT_STRZR(1, getenv("blah")); break; 1850 CASE_TEST(setcmp_blah_blah); EXPECT_EQ(1, strcmp("blah", "blah"), 0); break; 1851 CASE_TEST(setcmp_blah_blah2); EXPECT_NE(1, strcmp("blah", "blah2"), 0); break; 1852 CASE_TEST(setncmp_blah_blah); EXPECT_EQ(1, strncmp("blah", "blah", 10), 0); break; 1853 CASE_TEST(setncmp_blah_blah4); EXPECT_EQ(1, strncmp("blah", "blah4", 4), 0); break; 1854 CASE_TEST(setncmp_blah_blah5); EXPECT_NE(1, strncmp("blah", "blah5", 5), 0); break; 1855 CASE_TEST(setncmp_blah_blah6); EXPECT_NE(1, strncmp("blah", "blah6", 6), 0); break; 1856 CASE_TEST(strchr_foobar_o); EXPECT_STREQ(1, strchr("foobar", 'o'), "oobar"); break; 1857 CASE_TEST(strchr_foobar_z); EXPECT_STRZR(1, strchr("foobar", 'z')); break; 1858 CASE_TEST(strrchr_foobar_o); EXPECT_STREQ(1, strrchr("foobar", 'o'), "obar"); break; 1859 CASE_TEST(strrchr_foobar_z); EXPECT_STRZR(1, strrchr("foobar", 'z')); break; 1860 CASE_TEST(strlcat_0); EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 0), buf, 3, "test"); break; 1861 CASE_TEST(strlcat_1); EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 1), buf, 4, "test"); break; 1862 CASE_TEST(strlcat_5); EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 5), buf, 7, "test"); break; 1863 CASE_TEST(strlcat_6); EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 6), buf, 7, "testb"); break; 1864 CASE_TEST(strlcat_7); EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 7), buf, 7, "testba"); break; 1865 CASE_TEST(strlcat_8); EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 8), buf, 7, "testbar"); break; 1866 CASE_TEST(strlcpy_0); EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 0), buf, 3, "test"); break; 1867 CASE_TEST(strlcpy_1); EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 1), buf, 3, ""); break; 1868 CASE_TEST(strlcpy_2); EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 2), buf, 3, "b"); break; 1869 CASE_TEST(strlcpy_3); EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 3), buf, 3, "ba"); break; 1870 CASE_TEST(strlcpy_4); EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 4), buf, 3, "bar"); break; 1871 CASE_TEST(strstr_foobar_foo); EXPECT_STREQ(1, strstr("foobar", "foo"), "foobar"); break; 1872 CASE_TEST(strstr_foobar_bar); EXPECT_STREQ(1, strstr("foobar", "bar"), "bar"); break; 1873 CASE_TEST(strstr_foobar_baz); EXPECT_PTREQ(1, strstr("foobar", "baz"), NULL); break; 1874 CASE_TEST(memcmp_20_20); EXPECT_EQ(1, memcmp("aaa\x20", "aaa\x20", 4), 0); break; 1875 CASE_TEST(memcmp_20_60); EXPECT_LT(1, memcmp("aaa\x20", "aaa\x60", 4), 0); break; 1876 CASE_TEST(memcmp_60_20); EXPECT_GT(1, memcmp("aaa\x60", "aaa\x20", 4), 0); break; 1877 CASE_TEST(memcmp_20_e0); EXPECT_LT(1, memcmp("aaa\x20", "aaa\xe0", 4), 0); break; 1878 CASE_TEST(memcmp_e0_20); EXPECT_GT(1, memcmp("aaa\xe0", "aaa\x20", 4), 0); break; 1879 CASE_TEST(memcmp_80_e0); EXPECT_LT(1, memcmp("aaa\x80", "aaa\xe0", 4), 0); break; 1880 CASE_TEST(memcmp_e0_80); EXPECT_GT(1, memcmp("aaa\xe0", "aaa\x80", 4), 0); break; 1881 CASE_TEST(limit_int8_max); EXPECT_EQ(1, INT8_MAX, (int8_t) 0x7f); break; 1882 CASE_TEST(limit_int8_min); EXPECT_EQ(1, INT8_MIN, (int8_t) 0x80); break; 1883 CASE_TEST(limit_uint8_max); EXPECT_EQ(1, UINT8_MAX, (uint8_t) 0xff); break; 1884 CASE_TEST(limit_int16_max); EXPECT_EQ(1, INT16_MAX, (int16_t) 0x7fff); break; 1885 CASE_TEST(limit_int16_min); EXPECT_EQ(1, INT16_MIN, (int16_t) 0x8000); break; 1886 CASE_TEST(limit_uint16_max); EXPECT_EQ(1, UINT16_MAX, (uint16_t) 0xffff); break; 1887 CASE_TEST(limit_int32_max); EXPECT_EQ(1, INT32_MAX, (int32_t) 0x7fffffff); break; 1888 CASE_TEST(limit_int32_min); EXPECT_EQ(1, INT32_MIN, (int32_t) 0x80000000); break; 1889 CASE_TEST(limit_uint32_max); EXPECT_EQ(1, UINT32_MAX, (uint32_t) 0xffffffff); break; 1890 CASE_TEST(limit_int64_max); EXPECT_EQ(1, INT64_MAX, (int64_t) 0x7fffffffffffffff); break; 1891 CASE_TEST(limit_int64_min); EXPECT_EQ(1, INT64_MIN, (int64_t) 0x8000000000000000); break; 1892 CASE_TEST(limit_uint64_max); EXPECT_EQ(1, UINT64_MAX, (uint64_t) 0xffffffffffffffff); break; 1893 CASE_TEST(limit_int_least8_max); EXPECT_EQ(1, INT_LEAST8_MAX, (int_least8_t) 0x7f); break; 1894 CASE_TEST(limit_int_least8_min); EXPECT_EQ(1, INT_LEAST8_MIN, (int_least8_t) 0x80); break; 1895 CASE_TEST(limit_uint_least8_max); EXPECT_EQ(1, UINT_LEAST8_MAX, (uint_least8_t) 0xff); break; 1896 CASE_TEST(limit_int_least16_max); EXPECT_EQ(1, INT_LEAST16_MAX, (int_least16_t) 0x7fff); break; 1897 CASE_TEST(limit_int_least16_min); EXPECT_EQ(1, INT_LEAST16_MIN, (int_least16_t) 0x8000); break; 1898 CASE_TEST(limit_uint_least16_max); EXPECT_EQ(1, UINT_LEAST16_MAX, (uint_least16_t) 0xffff); break; 1899 CASE_TEST(limit_int_least32_max); EXPECT_EQ(1, INT_LEAST32_MAX, (int_least32_t) 0x7fffffff); break; 1900 CASE_TEST(limit_int_least32_min); EXPECT_EQ(1, INT_LEAST32_MIN, (int_least32_t) 0x80000000); break; 1901 CASE_TEST(limit_uint_least32_max); EXPECT_EQ(1, UINT_LEAST32_MAX, (uint_least32_t) 0xffffffffU); break; 1902 CASE_TEST(limit_int_least64_min); EXPECT_EQ(1, INT_LEAST64_MIN, (int_least64_t) 0x8000000000000000LL); break; 1903 CASE_TEST(limit_int_least64_max); EXPECT_EQ(1, INT_LEAST64_MAX, (int_least64_t) 0x7fffffffffffffffLL); break; 1904 CASE_TEST(limit_uint_least64_max); EXPECT_EQ(1, UINT_LEAST64_MAX, (uint_least64_t) 0xffffffffffffffffULL); break; 1905 CASE_TEST(limit_int_fast8_max); EXPECT_EQ(1, INT_FAST8_MAX, (int_fast8_t) 0x7f); break; 1906 CASE_TEST(limit_int_fast8_min); EXPECT_EQ(1, INT_FAST8_MIN, (int_fast8_t) 0x80); break; 1907 CASE_TEST(limit_uint_fast8_max); EXPECT_EQ(1, UINT_FAST8_MAX, (uint_fast8_t) 0xff); break; 1908 CASE_TEST(limit_int_fast16_min); EXPECT_EQ(1, INT_FAST16_MIN, (int_fast16_t) SINT_MIN_OF_TYPE(int_fast16_t)); break; 1909 CASE_TEST(limit_int_fast16_max); EXPECT_EQ(1, INT_FAST16_MAX, (int_fast16_t) SINT_MAX_OF_TYPE(int_fast16_t)); break; 1910 CASE_TEST(limit_uint_fast16_max); EXPECT_EQ(1, UINT_FAST16_MAX, (uint_fast16_t) UINTPTR_MAX); break; 1911 CASE_TEST(limit_int_fast32_min); EXPECT_EQ(1, INT_FAST32_MIN, (int_fast32_t) SINT_MIN_OF_TYPE(int_fast32_t)); break; 1912 CASE_TEST(limit_int_fast32_max); EXPECT_EQ(1, INT_FAST32_MAX, (int_fast32_t) SINT_MAX_OF_TYPE(int_fast32_t)); break; 1913 CASE_TEST(limit_uint_fast32_max); EXPECT_EQ(1, UINT_FAST32_MAX, (uint_fast32_t) UINTPTR_MAX); break; 1914 CASE_TEST(limit_int_fast64_min); EXPECT_EQ(1, INT_FAST64_MIN, (int_fast64_t) INT64_MIN); break; 1915 CASE_TEST(limit_int_fast64_max); EXPECT_EQ(1, INT_FAST64_MAX, (int_fast64_t) INT64_MAX); break; 1916 CASE_TEST(limit_uint_fast64_max); EXPECT_EQ(1, UINT_FAST64_MAX, (uint_fast64_t) UINT64_MAX); break; 1917 CASE_TEST(sizeof_long_sane); EXPECT_EQ(1, sizeof(long) == 8 || sizeof(long) == 4, 1); break; 1918 CASE_TEST(limit_intptr_min); EXPECT_EQ(1, INTPTR_MIN, sizeof(long) == 8 ? (intptr_t) 0x8000000000000000LL : (intptr_t) 0x80000000); break; 1919 CASE_TEST(limit_intptr_max); EXPECT_EQ(1, INTPTR_MAX, sizeof(long) == 8 ? (intptr_t) 0x7fffffffffffffffLL : (intptr_t) 0x7fffffff); break; 1920 CASE_TEST(limit_uintptr_max); EXPECT_EQ(1, UINTPTR_MAX, sizeof(long) == 8 ? (uintptr_t) 0xffffffffffffffffULL : (uintptr_t) 0xffffffffU); break; 1921 CASE_TEST(limit_ptrdiff_min); EXPECT_EQ(1, PTRDIFF_MIN, sizeof(long) == 8 ? (ptrdiff_t) 0x8000000000000000LL : (ptrdiff_t) 0x80000000); break; 1922 CASE_TEST(limit_ptrdiff_max); EXPECT_EQ(1, PTRDIFF_MAX, sizeof(long) == 8 ? (ptrdiff_t) 0x7fffffffffffffffLL : (ptrdiff_t) 0x7fffffff); break; 1923 CASE_TEST(limit_size_max); EXPECT_EQ(1, SIZE_MAX, sizeof(long) == 8 ? (size_t) 0xffffffffffffffffULL : (size_t) 0xffffffffU); break; 1924 CASE_TEST(strtol_simple); EXPECT_STRTOX(1, strtol, "35", 10, 35, -1, 0); break; 1925 CASE_TEST(strtol_positive); EXPECT_STRTOX(1, strtol, "+35", 10, 35, -1, 0); break; 1926 CASE_TEST(strtol_negative); EXPECT_STRTOX(1, strtol, "-35", 10, -35, -1, 0); break; 1927 CASE_TEST(strtol_hex_auto); EXPECT_STRTOX(1, strtol, "0xFF", 0, 255, -1, 0); break; 1928 CASE_TEST(strtol_base36); EXPECT_STRTOX(1, strtol, "12yZ", 36, 50507, -1, 0); break; 1929 CASE_TEST(strtol_cutoff); EXPECT_STRTOX(1, strtol, "1234567890", 8, 342391, 7, 0); break; 1930 CASE_TEST(strtol_octal_auto); EXPECT_STRTOX(1, strtol, "011", 0, 9, -1, 0); break; 1931 CASE_TEST(strtol_hex_00); EXPECT_STRTOX(1, strtol, "0x00", 16, 0, -1, 0); break; 1932 CASE_TEST(strtol_hex_FF); EXPECT_STRTOX(1, strtol, "FF", 16, 255, -1, 0); break; 1933 CASE_TEST(strtol_hex_ff); EXPECT_STRTOX(1, strtol, "ff", 16, 255, -1, 0); break; 1934 CASE_TEST(strtol_hex_prefix); EXPECT_STRTOX(1, strtol, "0xFF", 16, 255, -1, 0); break; 1935 CASE_TEST(strtol_trailer); EXPECT_STRTOX(1, strtol, "35foo", 10, 35, 2, 0); break; 1936 CASE_TEST(strtol_overflow); EXPECT_STRTOX(1, strtol, "0x8000000000000000", 16, LONG_MAX, -1, ERANGE); break; 1937 CASE_TEST(strtol_underflow); EXPECT_STRTOX(1, strtol, "-0x8000000000000001", 16, LONG_MIN, -1, ERANGE); break; 1938 CASE_TEST(strtoul_negative); EXPECT_STRTOX(1, strtoul, "-0x1", 16, ULONG_MAX, 4, 0); break; 1939 CASE_TEST(strtoul_overflow); EXPECT_STRTOX(1, strtoul, "0x10000000000000000", 16, ULONG_MAX, -1, ERANGE); break; 1940 CASE_TEST(strerror_success); EXPECT_STREQ(is_nolibc, strerror(0), "errno=0"); break; 1941 CASE_TEST(strerror_EINVAL); EXPECT_STREQ(is_nolibc, strerror(EINVAL), "errno=22"); break; 1942 CASE_TEST(strerror_int_max); EXPECT_STREQ(is_nolibc, strerror(INT_MAX), "errno=2147483647"); break; 1943 CASE_TEST(strerror_int_min); EXPECT_STREQ(is_nolibc, strerror(INT_MIN), "errno=-2147483648"); break; 1944 CASE_TEST(tolower); EXPECT_EQ(1, tolower('A'), 'a'); break; 1945 CASE_TEST(tolower_noop); EXPECT_EQ(1, tolower('a'), 'a'); break; 1946 CASE_TEST(toupper); EXPECT_EQ(1, toupper('a'), 'A'); break; 1947 CASE_TEST(toupper_noop); EXPECT_EQ(1, toupper('A'), 'A'); break; 1948 CASE_TEST(abs); EXPECT_EQ(1, abs(-10), 10); break; 1949 CASE_TEST(abs_noop); EXPECT_EQ(1, abs(10), 10); break; 1950 CASE_TEST(alloca); EXPECT_ZR(1, test_alloca()); break; 1951 CASE_TEST(difftime); EXPECT_ZR(1, test_difftime()); break; 1952 CASE_TEST(memchr_foobar6_o); EXPECT_STREQ(1, memchr("foobar", 'o', 6), "oobar"); break; 1953 CASE_TEST(memchr_foobar3_b); EXPECT_STRZR(1, memchr("foobar", 'b', 3)); break; 1954 CASE_TEST(time_types); EXPECT_ZR(is_nolibc, test_time_types()); break; 1955 CASE_TEST(makedev); EXPECT_EQ(1, makedev(0x12, 0x34), 0x1234); break; 1956 CASE_TEST(major); EXPECT_EQ(1, major(0x1234), 0x12); break; 1957 CASE_TEST(minor); EXPECT_EQ(1, minor(0x1234), 0x34); break; 1958 CASE_TEST(makedev_big); EXPECT_EQ(1, makedev(0x11223344, 0x55667788), 0x1122355667734488); break; 1959 CASE_TEST(major_big); EXPECT_EQ(1, major(0x1122355667734488), 0x11223344); break; 1960 CASE_TEST(minor_big); EXPECT_EQ(1, minor(0x1122355667734488), 0x55667788); break; 1961 CASE_TEST(malloc); EXPECT_ZR(1, test_malloc()); break; 1962 CASE_TEST(bswap_16); EXPECT_EQ(1, bswap_16(0x0123), 0x2301); break; 1963 CASE_TEST(bswap_32); EXPECT_EQ(1, bswap_32(0x01234567), 0x67452301); break; 1964 CASE_TEST(bswap_64); EXPECT_EQ(1, bswap_64(0x0123456789abcdef), 0xefcdab8967452301); break; 1965 CASE_TEST(htobe16); EXPECT_EQ(1, htobe16(is_le ? 0x0123 : 0x2301), 0x2301); break; 1966 CASE_TEST(htole16); EXPECT_EQ(1, htole16(is_le ? 0x0123 : 0x2301), 0x0123); break; 1967 CASE_TEST(htobe32); EXPECT_EQ(1, htobe32(is_le ? 0x01234567 : 0x67452301), 0x67452301); break; 1968 CASE_TEST(htole32); EXPECT_EQ(1, htole32(is_le ? 0x01234567 : 0x67452301), 0x01234567); break; 1969 CASE_TEST(htobe64); EXPECT_EQ(1, htobe64(is_le ? 0x0123456789000000 : 0x8967452301), 0x8967452301); break; 1970 CASE_TEST(htole64); EXPECT_EQ(1, htole64(is_le ? 0x0123456789 : 0x8967452301000000), 0x0123456789); break; 1971 1972 case __LINE__: 1973 return ret; /* must be last */ 1974 /* note: do not set any defaults so as to permit holes above */ 1975 } 1976 } 1977 return ret; 1978 } 1979 1980 #define EXPECT_VFPRINTF(cond, expected, fmt, ...) \ 1981 do { if (!(cond)) result(llen, SKIPPED); else ret += expect_vfprintf(llen, expected, fmt, ##__VA_ARGS__); } while (0) 1982 1983 #define VFPRINTF_LEN 25 1984 static int expect_vfprintf(int llen, const char *expected, const char *fmt, ...) 1985 { 1986 char buf[VFPRINTF_LEN + 80]; 1987 unsigned int cmp_len; 1988 va_list args; 1989 ssize_t written, expected_len; 1990 1991 /* Fill and terminate buf[] to check for overlong/absent writes */ 1992 memset(buf, 0xa5, sizeof(buf) - 1); 1993 buf[sizeof(buf) - 1] = 0; 1994 1995 va_start(args, fmt); 1996 /* Limit buffer length to test truncation */ 1997 written = vsnprintf(buf, VFPRINTF_LEN + 1, fmt, args); 1998 va_end(args); 1999 2000 llen += printf(" \"%s\"", buf); 2001 2002 expected_len = strlen(expected); 2003 if (expected_len > VFPRINTF_LEN) { 2004 /* Indicate truncated in test output */ 2005 llen += printf("+"); 2006 cmp_len = VFPRINTF_LEN; 2007 } else { 2008 cmp_len = expected_len; 2009 } 2010 2011 if (memcmp(expected, buf, cmp_len) || buf[cmp_len]) { 2012 llen += printf(" should be \"%.*s\"", VFPRINTF_LEN, expected); 2013 result(llen, FAIL); 2014 return 1; 2015 } 2016 2017 if (written != expected_len) { 2018 llen += printf(" written(%d) != %d", (int)written, (int)expected_len); 2019 result(llen, FAIL); 2020 return 1; 2021 } 2022 2023 /* Check for any overwrites after the actual data. */ 2024 while (++cmp_len < sizeof(buf) - 1) { 2025 if ((unsigned char)buf[cmp_len] != 0xa5) { 2026 llen += printf(" overwrote buf[%d] with 0x%x", cmp_len, buf[cmp_len]); 2027 result(llen, FAIL); 2028 return 1; 2029 } 2030 } 2031 2032 result(llen, OK); 2033 return 0; 2034 } 2035 2036 static int test_scanf(void) 2037 { 2038 unsigned long long ull; 2039 unsigned long ul; 2040 unsigned int u; 2041 long long ll; 2042 long l; 2043 void *p; 2044 int i; 2045 2046 /* return __LINE__ to point to the specific failure */ 2047 2048 /* test EOF */ 2049 if (sscanf("", "foo") != EOF) 2050 return __LINE__; 2051 2052 /* test simple literal without placeholder */ 2053 if (sscanf("foo", "foo") != 0) 2054 return __LINE__; 2055 2056 /* test single placeholder */ 2057 if (sscanf("123", "%d", &i) != 1) 2058 return __LINE__; 2059 2060 if (i != 123) 2061 return __LINE__; 2062 2063 /* test multiple place holders and separators */ 2064 if (sscanf("a123b456c0x90", "a%db%uc%p", &i, &u, &p) != 3) 2065 return __LINE__; 2066 2067 if (i != 123) 2068 return __LINE__; 2069 2070 if (u != 456) 2071 return __LINE__; 2072 2073 if (p != (void *)0x90) 2074 return __LINE__; 2075 2076 /* test space handling */ 2077 if (sscanf("a b1", "a b%d", &i) != 1) 2078 return __LINE__; 2079 2080 if (i != 1) 2081 return __LINE__; 2082 2083 /* test literal percent */ 2084 if (sscanf("a%1", "a%%%d", &i) != 1) 2085 return __LINE__; 2086 2087 if (i != 1) 2088 return __LINE__; 2089 2090 /* test stdint.h types */ 2091 if (sscanf("1|2|3|4|5|6", 2092 "%d|%ld|%lld|%u|%lu|%llu", 2093 &i, &l, &ll, &u, &ul, &ull) != 6) 2094 return __LINE__; 2095 2096 if (i != 1 || l != 2 || ll != 3 || 2097 u != 4 || ul != 5 || ull != 6) 2098 return __LINE__; 2099 2100 return 0; 2101 } 2102 2103 static int test_printf_error(void) 2104 { 2105 int fd, ret, saved_errno; 2106 2107 fd = open("/dev/full", O_RDWR); 2108 if (fd == -1) 2109 return 1; 2110 2111 errno = 0; 2112 ret = dprintf(fd, "foo"); 2113 saved_errno = errno; 2114 close(fd); 2115 2116 if (ret != -1) 2117 return 2; 2118 2119 if (saved_errno != ENOSPC) 2120 return 3; 2121 2122 return 0; 2123 } 2124 2125 int test_asprintf(void) 2126 { 2127 char *str; 2128 int ret; 2129 2130 ret = asprintf(&str, "foo%s", "bar"); 2131 if (ret == -1) 2132 return 1; 2133 2134 if (ret != 6) { 2135 free(str); 2136 return 2; 2137 } 2138 2139 if (memcmp(str, "foobar", 6) != 0) { 2140 free(str); 2141 return 3; 2142 } 2143 2144 free(str); 2145 return 0; 2146 } 2147 2148 static int run_printf(int min, int max) 2149 { 2150 int test; 2151 int ret = 0; 2152 2153 for (test = min; test >= 0 && test <= max; test++) { 2154 int llen = 0; /* line length */ 2155 2156 /* avoid leaving empty lines below, this will insert holes into 2157 * test numbers. 2158 */ 2159 switch (test + __LINE__ + 1) { 2160 CASE_TEST(empty); EXPECT_VFPRINTF(1, "", ""); break; 2161 CASE_TEST(simple); EXPECT_VFPRINTF(1, "foo", "foo"); break; 2162 CASE_TEST(string); EXPECT_VFPRINTF(1, "foo", "%s", "foo"); break; 2163 CASE_TEST(number); EXPECT_VFPRINTF(1, "1234", "%d", 1234); break; 2164 CASE_TEST(negnumber); EXPECT_VFPRINTF(1, "-1234", "%d", -1234); break; 2165 CASE_TEST(num_sign); EXPECT_VFPRINTF(1, "| 1|+2|+3|+4|5|", "|% d|%+d|% +d|%+ d|%#d|", 1, 2, 3, 4, 5); break; 2166 CASE_TEST(unsigned); EXPECT_VFPRINTF(1, "12345", "%u", 12345); break; 2167 CASE_TEST(signed_max); EXPECT_VFPRINTF(1, "2147483647", "%i", ~0u >> 1); break; 2168 CASE_TEST(signed_min); EXPECT_VFPRINTF(1, "-2147483648", "%i", (~0u >> 1) + 1); break; 2169 CASE_TEST(unsigned_max); EXPECT_VFPRINTF(1, "4294967295", "%u", ~0u); break; 2170 CASE_TEST(char); EXPECT_VFPRINTF(1, "|c|d| e|", "|%c|%.0c|%4c|", 'c', 'd', 'e'); break; 2171 CASE_TEST(octal); EXPECT_VFPRINTF(1, "|17| 0033||", "|%o|%6.4o|%.0o|", 017, 033, 0); break; 2172 CASE_TEST(octal_max); EXPECT_VFPRINTF(1, "1777777777777777777777", "%llo", ~0ULL); break; 2173 CASE_TEST(octal_alt); EXPECT_VFPRINTF(1, "|0|01|02|034|0|0|", "|%#o|%#o|%#02o|%#02o|%#.0o|%0-#o|", 0, 1, 2, 034, 0, 0); break; 2174 CASE_TEST(hex_nolibc); EXPECT_VFPRINTF(is_nolibc, "|f|d|", "|%x|%X|", 0xf, 0xd); break; 2175 CASE_TEST(hex_libc); EXPECT_VFPRINTF(!is_nolibc, "|f|D|", "|%x|%X|", 0xf, 0xd); break; 2176 CASE_TEST(hex_alt); EXPECT_VFPRINTF(1, "|0x1| 0x2| 0|", "|%#x|%#5x|%#5x|", 1, 2, 0); break; 2177 CASE_TEST(hex_alt_prec); EXPECT_VFPRINTF(1, "| 0x02|0x03| 0x123|", "|%#5.2x|%#04x|%#6.2x|", 2, 3, 0x123); break; 2178 CASE_TEST(hex_0_alt); EXPECT_VFPRINTF(1, "|0|0000| 00|", "|%#x|%#04x|%#5.2x|", 0, 0, 0); break; 2179 CASE_TEST(pointer); EXPECT_VFPRINTF(1, "0x1", "%p", (void *) 0x1); break; 2180 CASE_TEST(pointer_NULL); EXPECT_VFPRINTF(is_nolibc || is_glibc, "|(nil)|(nil)|", "|%p|%.4p|", (void *)0, (void *)0); break; 2181 CASE_TEST(string_NULL); EXPECT_VFPRINTF(is_nolibc || is_glibc, "|(null)||(null)|", "|%s|%.5s|%.6s|", (void *)0, (void *)0, (void *)0); break; 2182 CASE_TEST(percent); EXPECT_VFPRINTF(1, "a%d42%69%", "a%%d%d%%%d%%", 42, 69); break; 2183 CASE_TEST(perc_qual); EXPECT_VFPRINTF(is_nolibc || is_glibc, "a%d2", "a%-14l%d%d", 2); break; 2184 CASE_TEST(invalid); EXPECT_VFPRINTF(is_nolibc || is_glibc, "a%12yx3%y42%P", "a%12yx%d%y%d%P", 3, 42); break; 2185 CASE_TEST(intmax_max); EXPECT_VFPRINTF(1, "9223372036854775807", "%lld", ~0ULL >> 1); break; 2186 CASE_TEST(intmax_min); EXPECT_VFPRINTF(is_nolibc || is_glibc, "-9223372036854775808", "%Li", (~0ULL >> 1) + 1); break; 2187 CASE_TEST(uintmax_max); EXPECT_VFPRINTF(1, "18446744073709551615", "%ju", ~0ULL); break; 2188 CASE_TEST(truncation); EXPECT_VFPRINTF(1, "012345678901234567890123456789", "%s", "012345678901234567890123456789"); break; 2189 CASE_TEST(string_width); EXPECT_VFPRINTF(1, " 1", "%10s", "1"); break; 2190 CASE_TEST(string_trunc); EXPECT_VFPRINTF(1, " 12345", "%10.5s", "1234567890"); break; 2191 CASE_TEST(string_var); EXPECT_VFPRINTF(1, "| ab|ef | ij|kl |", "|%*.*s|%*.*s|%*.*s|%*.*s|", 3, 2, "abcd", -3, 2, "efgh", 3, -1, "ij", -3, -1, "kl"); break; 2192 CASE_TEST(number_width); EXPECT_VFPRINTF(1, " 1", "%10d", 1); break; 2193 CASE_TEST(number_left); EXPECT_VFPRINTF(1, "|-5 |", "|%-8d|", -5); break; 2194 CASE_TEST(string_align); EXPECT_VFPRINTF(1, "|foo |", "|%-8s|", "foo"); break; 2195 CASE_TEST(width_trunc); EXPECT_VFPRINTF(1, " 1", "%30d", 1); break; 2196 CASE_TEST(width_tr_lft); EXPECT_VFPRINTF(1, "1 ", "%-30d", 1); break; 2197 CASE_TEST(number_pad); EXPECT_VFPRINTF(1, "0000000005", "%010d", 5); break; 2198 CASE_TEST(number_pad); EXPECT_VFPRINTF(1, "|0000000005|0x1234|", "|%010d|%#01x|", 5, 0x1234); break; 2199 CASE_TEST(num_pad_neg); EXPECT_VFPRINTF(1, "-000000005", "%010d", -5); break; 2200 CASE_TEST(num_pad_hex); EXPECT_VFPRINTF(1, "00fffffffb", "%010x", -5); break; 2201 CASE_TEST(num_pad_trunc);EXPECT_VFPRINTF(is_nolibc, " 0000000000000000000000000000005", "%035d", 5); break; /* max 31 '0' can be added */ 2202 CASE_TEST(num_p_tr_libc);EXPECT_VFPRINTF(!is_nolibc, "00000000000000000000000000000000005", "%035d", 5); break; 2203 CASE_TEST(number_prec); EXPECT_VFPRINTF(1, " 00005", "%10.5d", 5); break; 2204 CASE_TEST(num_prec_neg); EXPECT_VFPRINTF(1, " -00005", "%10.5d", -5); break; 2205 CASE_TEST(number_var); EXPECT_VFPRINTF(1, "| -00005|5 |", "|%*.*d|%*.*d|", 10, 5, -5, -2, -10, 5); break; 2206 CASE_TEST(num_0_prec_0); EXPECT_VFPRINTF(1, "|| |+||||", "|%.0d|% .0d|%+.0d|%.0u|%.0x|%#.0x|", 0, 0, 0, 0, 0, 0); break; 2207 CASE_TEST(errno); errno = 22; EXPECT_VFPRINTF(is_nolibc, "errno=22", "%m"); break; 2208 CASE_TEST(errno-neg); errno = -22; EXPECT_VFPRINTF(is_nolibc, "errno=-22 ", "%-12m"); break; 2209 CASE_TEST(scanf); EXPECT_ZR(1, test_scanf()); break; 2210 CASE_TEST(printf_error); EXPECT_ZR(1, test_printf_error()); break; 2211 CASE_TEST(asprintf); EXPECT_ZR(1, test_asprintf()); break; 2212 case __LINE__: 2213 return ret; /* must be last */ 2214 /* note: do not set any defaults so as to permit holes above */ 2215 } 2216 } 2217 return ret; 2218 } 2219 2220 __attribute__((no_sanitize("undefined"))) 2221 static int smash_stack(void) 2222 { 2223 char buf[100]; 2224 volatile char *ptr = buf; 2225 size_t i; 2226 2227 for (i = 0; i < 200; i++) 2228 ptr[i] = 'P'; 2229 2230 return 1; 2231 } 2232 2233 static int run_protection(int min __attribute__((unused)), 2234 int max __attribute__((unused))) 2235 { 2236 pid_t pid; 2237 int llen = 0, status; 2238 struct rlimit rlimit = { 0, 0 }; 2239 2240 llen += printf("0 -fstackprotector "); 2241 2242 #if !defined(_NOLIBC_STACKPROTECTOR) 2243 llen += printf("not supported"); 2244 result(llen, SKIPPED); 2245 return 0; 2246 #endif 2247 2248 #if defined(_NOLIBC_STACKPROTECTOR) 2249 if (!__stack_chk_guard) { 2250 llen += printf("__stack_chk_guard not initialized"); 2251 result(llen, FAIL); 2252 return 1; 2253 } 2254 #endif 2255 2256 pid = -1; 2257 pid = fork(); 2258 2259 switch (pid) { 2260 case -1: 2261 llen += printf("fork()"); 2262 result(llen, FAIL); 2263 return 1; 2264 2265 case 0: 2266 close(STDOUT_FILENO); 2267 close(STDERR_FILENO); 2268 2269 prctl(PR_SET_DUMPABLE, 0, 0, 0, 0); 2270 setrlimit(RLIMIT_CORE, &rlimit); 2271 smash_stack(); 2272 return 1; 2273 2274 default: 2275 pid = waitpid(pid, &status, 0); 2276 2277 if (pid == -1 || !WIFSIGNALED(status) || WTERMSIG(status) != SIGABRT) { 2278 llen += printf("waitpid()"); 2279 result(llen, FAIL); 2280 return 1; 2281 } 2282 result(llen, OK); 2283 return 0; 2284 } 2285 } 2286 2287 /* prepare what needs to be prepared for pid 1 (stdio, /dev, /proc, etc) */ 2288 int prepare(void) 2289 { 2290 struct stat stat_buf; 2291 2292 /* It's possible that /dev doesn't even exist or was not mounted, so 2293 * we'll try to create it, mount it, or create minimal entries into it. 2294 * We want at least /dev/null and /dev/console. 2295 */ 2296 if (stat("/dev/.", &stat_buf) == 0 || mkdir("/dev", 0755) == 0) { 2297 if (stat("/dev/console", &stat_buf) != 0 || 2298 stat("/dev/null", &stat_buf) != 0 || 2299 stat("/dev/zero", &stat_buf) != 0 || 2300 stat("/dev/full", &stat_buf) != 0) { 2301 /* try devtmpfs first, otherwise fall back to manual creation */ 2302 if (mount("/dev", "/dev", "devtmpfs", 0, 0) != 0) { 2303 mknod("/dev/console", 0600 | S_IFCHR, makedev(5, 1)); 2304 mknod("/dev/null", 0666 | S_IFCHR, makedev(1, 3)); 2305 mknod("/dev/zero", 0666 | S_IFCHR, makedev(1, 5)); 2306 mknod("/dev/full", 0666 | S_IFCHR, makedev(1, 7)); 2307 } 2308 } 2309 } 2310 2311 /* If no /dev/console was found before calling init, stdio is closed so 2312 * we need to reopen it from /dev/console. If it failed above, it will 2313 * still fail here and we cannot emit a message anyway. 2314 */ 2315 if (close(dup(1)) == -1) { 2316 int fd = open("/dev/console", O_RDWR); 2317 2318 if (fd >= 0) { 2319 if (fd != 0) 2320 dup2(fd, 0); 2321 if (fd != 1) 2322 dup2(fd, 1); 2323 if (fd != 2) 2324 dup2(fd, 2); 2325 if (fd > 2) 2326 close(fd); 2327 puts("\nSuccessfully reopened /dev/console."); 2328 } 2329 } 2330 2331 /* try to mount /proc if not mounted. Silently fail otherwise */ 2332 if (stat("/proc/.", &stat_buf) == 0 || mkdir("/proc", 0755) == 0) { 2333 if (stat("/proc/self", &stat_buf) != 0) { 2334 /* If not mountable, remove /proc completely to avoid misuse */ 2335 if (mount("none", "/proc", "proc", 0, 0) != 0) 2336 rmdir("/proc"); 2337 } 2338 } 2339 2340 /* some tests rely on a writable /tmp */ 2341 mkdir("/tmp", 0755); 2342 2343 return 0; 2344 } 2345 2346 /* This is the definition of known test names, with their functions */ 2347 static const struct test test_names[] = { 2348 /* add new tests here */ 2349 { .name = "startup", .func = run_startup }, 2350 { .name = "syscall", .func = run_syscall }, 2351 { .name = "stdlib", .func = run_stdlib }, 2352 { .name = "printf", .func = run_printf }, 2353 { .name = "protection", .func = run_protection }, 2354 { 0 } 2355 }; 2356 2357 static int is_setting_valid(char *test) 2358 { 2359 int idx, len, test_len, valid = 0; 2360 char delimiter; 2361 2362 if (!test) 2363 return valid; 2364 2365 test_len = strlen(test); 2366 2367 for (idx = 0; test_names[idx].name; idx++) { 2368 len = strlen(test_names[idx].name); 2369 if (test_len < len) 2370 continue; 2371 2372 if (strncmp(test, test_names[idx].name, len) != 0) 2373 continue; 2374 2375 delimiter = test[len]; 2376 if (delimiter != ':' && delimiter != ',' && delimiter != '\0') 2377 continue; 2378 2379 valid = 1; 2380 break; 2381 } 2382 2383 return valid; 2384 } 2385 2386 int main(int argc, char **argv, char **envp) 2387 { 2388 int min = 0; 2389 int max = INT_MAX; 2390 int ret = 0; 2391 int err; 2392 int idx; 2393 char *test; 2394 2395 argv0 = argv[0]; 2396 test_argc = argc; 2397 test_argv = argv; 2398 test_envp = envp; 2399 2400 /* when called as init, it's possible that no console was opened, for 2401 * example if no /dev file system was provided. We'll check that fd#1 2402 * was opened, and if not we'll attempt to create and open /dev/console 2403 * and /dev/null that we'll use for later tests. 2404 */ 2405 if (getpid() == 1) 2406 prepare(); 2407 2408 /* the definition of a series of tests comes from either argv[1] or the 2409 * "NOLIBC_TEST" environment variable. It's made of a comma-delimited 2410 * series of test names and optional ranges: 2411 * syscall:5-15[:.*],stdlib:8-10 2412 */ 2413 test = argv[1]; 2414 if (!is_setting_valid(test)) 2415 test = getenv("NOLIBC_TEST"); 2416 2417 if (is_setting_valid(test)) { 2418 char *comma, *colon, *dash, *value; 2419 2420 do { 2421 comma = strchr(test, ','); 2422 if (comma) 2423 *(comma++) = '\0'; 2424 2425 colon = strchr(test, ':'); 2426 if (colon) 2427 *(colon++) = '\0'; 2428 2429 for (idx = 0; test_names[idx].name; idx++) { 2430 if (strcmp(test, test_names[idx].name) == 0) 2431 break; 2432 } 2433 2434 if (test_names[idx].name) { 2435 /* The test was named, it will be called at least 2436 * once. We may have an optional range at <colon> 2437 * here, which defaults to the full range. 2438 */ 2439 do { 2440 min = 0; max = INT_MAX; 2441 value = colon; 2442 if (value && *value) { 2443 colon = strchr(value, ':'); 2444 if (colon) 2445 *(colon++) = '\0'; 2446 2447 dash = strchr(value, '-'); 2448 if (dash) 2449 *(dash++) = '\0'; 2450 2451 /* support :val: :min-max: :min-: :-max: */ 2452 if (*value) 2453 min = atoi(value); 2454 if (!dash) 2455 max = min; 2456 else if (*dash) 2457 max = atoi(dash); 2458 2459 value = colon; 2460 } 2461 2462 /* now's time to call the test */ 2463 printf("Running test '%s'\n", test_names[idx].name); 2464 err = test_names[idx].func(min, max); 2465 ret += err; 2466 printf("Errors during this test: %d\n\n", err); 2467 } while (colon && *colon); 2468 } else 2469 printf("Ignoring unknown test name '%s'\n", test); 2470 2471 test = comma; 2472 } while (test && *test); 2473 } else { 2474 /* no test mentioned, run everything */ 2475 for (idx = 0; test_names[idx].name; idx++) { 2476 printf("Running test '%s'\n", test_names[idx].name); 2477 err = test_names[idx].func(min, max); 2478 ret += err; 2479 printf("Errors during this test: %d\n\n", err); 2480 } 2481 } 2482 2483 printf("Total number of errors: %d\n", ret); 2484 2485 if (getpid() == 1) { 2486 /* we're running as init, there's no other process on the 2487 * system, thus likely started from a VM for a quick check. 2488 * Exiting will provoke a kernel panic that may be reported 2489 * as an error by Qemu or the hypervisor, while stopping 2490 * cleanly will often be reported as a success. This allows 2491 * to use the output of this program for bisecting kernels. 2492 */ 2493 printf("Leaving init with final status: %d\n", !!ret); 2494 if (ret == 0) 2495 reboot(RB_POWER_OFF); 2496 #if defined(__x86_64__) 2497 /* QEMU started with "-device isa-debug-exit -no-reboot" will 2498 * exit with status code 2N+1 when N is written to 0x501. We 2499 * hard-code the syscall here as it's arch-dependent. 2500 */ 2501 else if (syscall(__NR_ioperm, 0x501, 1, 1) == 0) 2502 __asm__ volatile ("outb %%al, %%dx" :: "d"(0x501), "a"(0)); 2503 /* if it does nothing, fall back to the regular panic */ 2504 #endif 2505 } 2506 2507 printf("Exiting with status %d\n", !!ret); 2508 return !!ret; 2509 } 2510