1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Userfaultfd tests util functions 4 * 5 * Copyright (C) 2015-2023 Red Hat, Inc. 6 */ 7 8 #include "uffd-common.h" 9 10 uffd_test_ops_t *uffd_test_ops; 11 uffd_test_case_ops_t *uffd_test_case_ops; 12 13 14 /* pthread_mutex_t starts at page offset 0 */ 15 pthread_mutex_t *area_mutex(char *area, unsigned long nr, uffd_global_test_opts_t *gopts) 16 { 17 return (pthread_mutex_t *) (area + nr * gopts->page_size); 18 } 19 20 /* 21 * count is placed in the page after pthread_mutex_t naturally aligned 22 * to avoid non alignment faults on non-x86 archs. 23 */ 24 volatile unsigned long long *area_count(char *area, unsigned long nr, 25 uffd_global_test_opts_t *gopts) 26 { 27 return (volatile unsigned long long *) 28 ((unsigned long)(area + nr * gopts->page_size + 29 sizeof(pthread_mutex_t) + sizeof(unsigned long long) - 1) & 30 ~(unsigned long)(sizeof(unsigned long long) - 1)); 31 } 32 33 static int uffd_mem_fd_create(off_t mem_size, bool hugetlb) 34 { 35 unsigned int memfd_flags = 0; 36 int mem_fd; 37 38 if (hugetlb) 39 memfd_flags = MFD_HUGETLB; 40 mem_fd = memfd_create("uffd-test", memfd_flags); 41 if (mem_fd < 0) 42 err("memfd_create"); 43 if (ftruncate(mem_fd, mem_size)) 44 err("ftruncate"); 45 if (fallocate(mem_fd, 46 FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE, 0, 47 mem_size)) 48 err("fallocate"); 49 50 return mem_fd; 51 } 52 53 static void anon_release_pages(uffd_global_test_opts_t *gopts, char *rel_area) 54 { 55 if (madvise(rel_area, gopts->nr_pages * gopts->page_size, MADV_DONTNEED)) 56 err("madvise(MADV_DONTNEED) failed"); 57 } 58 59 static int anon_allocate_area(uffd_global_test_opts_t *gopts, void **alloc_area, bool is_src) 60 { 61 *alloc_area = mmap(NULL, gopts->nr_pages * gopts->page_size, PROT_READ | PROT_WRITE, 62 MAP_ANONYMOUS | MAP_PRIVATE, -1, 0); 63 if (*alloc_area == MAP_FAILED) { 64 *alloc_area = NULL; 65 return -errno; 66 } 67 return 0; 68 } 69 70 static void noop_alias_mapping(uffd_global_test_opts_t *gopts, __u64 *start, 71 size_t len, unsigned long offset) 72 { 73 } 74 75 static void hugetlb_release_pages(uffd_global_test_opts_t *gopts, char *rel_area) 76 { 77 if (!gopts->map_shared) { 78 if (madvise(rel_area, gopts->nr_pages * gopts->page_size, MADV_DONTNEED)) 79 err("madvise(MADV_DONTNEED) failed"); 80 } else { 81 if (madvise(rel_area, gopts->nr_pages * gopts->page_size, MADV_REMOVE)) 82 err("madvise(MADV_REMOVE) failed"); 83 } 84 } 85 86 static int hugetlb_allocate_area(uffd_global_test_opts_t *gopts, void **alloc_area, bool is_src) 87 { 88 off_t size = gopts->nr_pages * gopts->page_size; 89 off_t offset = is_src ? 0 : size; 90 void *area_alias = NULL; 91 char **alloc_area_alias; 92 int mem_fd = uffd_mem_fd_create(size * 2, true); 93 94 *alloc_area = mmap(NULL, size, PROT_READ | PROT_WRITE, 95 (gopts->map_shared ? MAP_SHARED : MAP_PRIVATE) | 96 (is_src ? 0 : MAP_NORESERVE), 97 mem_fd, offset); 98 if (*alloc_area == MAP_FAILED) { 99 *alloc_area = NULL; 100 return -errno; 101 } 102 103 if (gopts->map_shared) { 104 area_alias = mmap(NULL, size, PROT_READ | PROT_WRITE, 105 MAP_SHARED, mem_fd, offset); 106 if (area_alias == MAP_FAILED) 107 return -errno; 108 } 109 110 if (is_src) { 111 alloc_area_alias = &gopts->area_src_alias; 112 } else { 113 alloc_area_alias = &gopts->area_dst_alias; 114 } 115 if (area_alias) 116 *alloc_area_alias = area_alias; 117 118 close(mem_fd); 119 return 0; 120 } 121 122 static void hugetlb_alias_mapping(uffd_global_test_opts_t *gopts, __u64 *start, 123 size_t len, unsigned long offset) 124 { 125 if (!gopts->map_shared) 126 return; 127 128 *start = (unsigned long) gopts->area_dst_alias + offset; 129 } 130 131 static void shmem_release_pages(uffd_global_test_opts_t *gopts, char *rel_area) 132 { 133 if (madvise(rel_area, gopts->nr_pages * gopts->page_size, MADV_REMOVE)) 134 err("madvise(MADV_REMOVE) failed"); 135 } 136 137 static int shmem_allocate_area(uffd_global_test_opts_t *gopts, void **alloc_area, bool is_src) 138 { 139 void *area_alias = NULL; 140 size_t bytes = gopts->nr_pages * gopts->page_size, hpage_size = read_pmd_pagesize(); 141 unsigned long offset = is_src ? 0 : bytes; 142 char *p = NULL, *p_alias = NULL; 143 int mem_fd = uffd_mem_fd_create(bytes * 2, false); 144 size_t region_size = bytes * 2 + hpage_size; 145 146 void *reserve = mmap(NULL, region_size, PROT_NONE, MAP_PRIVATE | MAP_ANONYMOUS, 147 -1, 0); 148 if (reserve == MAP_FAILED) { 149 close(mem_fd); 150 return -errno; 151 } 152 153 p = reserve; 154 p_alias = p; 155 p_alias += bytes; 156 p_alias += hpage_size; /* Prevent src/dst VMA merge */ 157 158 *alloc_area = mmap(p, bytes, PROT_READ | PROT_WRITE, MAP_FIXED | MAP_SHARED, 159 mem_fd, offset); 160 if (*alloc_area == MAP_FAILED) { 161 *alloc_area = NULL; 162 munmap(reserve, region_size); 163 close(mem_fd); 164 return -errno; 165 } 166 if (*alloc_area != p) 167 err("mmap of memfd failed at %p", p); 168 169 area_alias = mmap(p_alias, bytes, PROT_READ | PROT_WRITE, MAP_FIXED | MAP_SHARED, 170 mem_fd, offset); 171 if (area_alias == MAP_FAILED) { 172 *alloc_area = NULL; 173 munmap(reserve, region_size); 174 close(mem_fd); 175 return -errno; 176 } 177 if (area_alias != p_alias) 178 err("mmap of anonymous memory failed at %p", p_alias); 179 180 if (is_src) 181 gopts->area_src_alias = area_alias; 182 else 183 gopts->area_dst_alias = area_alias; 184 185 close(mem_fd); 186 return 0; 187 } 188 189 static void shmem_alias_mapping(uffd_global_test_opts_t *gopts, __u64 *start, 190 size_t len, unsigned long offset) 191 { 192 *start = (unsigned long)gopts->area_dst_alias + offset; 193 } 194 195 static void shmem_check_pmd_mapping(uffd_global_test_opts_t *gopts, void *p, int expect_nr_hpages) 196 { 197 size_t len = expect_nr_hpages * read_pmd_pagesize(); 198 199 if (!check_huge_shmem(gopts->area_dst_alias, len, expect_nr_hpages, 200 read_pmd_pagesize())) 201 err("Did not find expected %d number of hugepages", 202 expect_nr_hpages); 203 } 204 205 struct uffd_test_ops anon_uffd_test_ops = { 206 .allocate_area = anon_allocate_area, 207 .release_pages = anon_release_pages, 208 .alias_mapping = noop_alias_mapping, 209 .check_pmd_mapping = NULL, 210 }; 211 212 struct uffd_test_ops shmem_uffd_test_ops = { 213 .allocate_area = shmem_allocate_area, 214 .release_pages = shmem_release_pages, 215 .alias_mapping = shmem_alias_mapping, 216 .check_pmd_mapping = shmem_check_pmd_mapping, 217 }; 218 219 struct uffd_test_ops hugetlb_uffd_test_ops = { 220 .allocate_area = hugetlb_allocate_area, 221 .release_pages = hugetlb_release_pages, 222 .alias_mapping = hugetlb_alias_mapping, 223 .check_pmd_mapping = NULL, 224 }; 225 226 void uffd_stats_report(struct uffd_args *args, int n_cpus) 227 { 228 int i; 229 unsigned long long miss_total = 0, wp_total = 0, minor_total = 0; 230 231 for (i = 0; i < n_cpus; i++) { 232 miss_total += args[i].missing_faults; 233 wp_total += args[i].wp_faults; 234 minor_total += args[i].minor_faults; 235 } 236 237 printf("userfaults: "); 238 if (miss_total) { 239 printf("%llu missing (", miss_total); 240 for (i = 0; i < n_cpus; i++) 241 printf("%lu+", args[i].missing_faults); 242 printf("\b) "); 243 } 244 if (wp_total) { 245 printf("%llu wp (", wp_total); 246 for (i = 0; i < n_cpus; i++) 247 printf("%lu+", args[i].wp_faults); 248 printf("\b) "); 249 } 250 if (minor_total) { 251 printf("%llu minor (", minor_total); 252 for (i = 0; i < n_cpus; i++) 253 printf("%lu+", args[i].minor_faults); 254 printf("\b)"); 255 } 256 printf("\n"); 257 } 258 259 int userfaultfd_open(uffd_global_test_opts_t *gopts, uint64_t *features) 260 { 261 struct uffdio_api uffdio_api; 262 263 gopts->uffd = uffd_open(UFFD_FLAGS); 264 if (gopts->uffd < 0) 265 return -1; 266 gopts->uffd_flags = fcntl(gopts->uffd, F_GETFD, NULL); 267 268 uffdio_api.api = UFFD_API; 269 uffdio_api.features = *features; 270 if (ioctl(gopts->uffd, UFFDIO_API, &uffdio_api)) 271 /* Probably lack of CAP_PTRACE? */ 272 return -1; 273 if (uffdio_api.api != UFFD_API) 274 err("UFFDIO_API error: %" PRIu64, (uint64_t)uffdio_api.api); 275 276 *features = uffdio_api.features; 277 return 0; 278 } 279 280 static inline void munmap_area(uffd_global_test_opts_t *gopts, void **area) 281 { 282 if (*area) 283 if (munmap(*area, gopts->nr_pages * gopts->page_size)) 284 err("munmap"); 285 286 *area = NULL; 287 } 288 289 void uffd_test_ctx_clear(uffd_global_test_opts_t *gopts) 290 { 291 size_t i; 292 293 if (gopts->pipefd) { 294 for (i = 0; i < gopts->nr_parallel * 2; ++i) { 295 if (close(gopts->pipefd[i])) 296 err("close pipefd"); 297 } 298 free(gopts->pipefd); 299 gopts->pipefd = NULL; 300 } 301 302 if (gopts->count_verify) { 303 free(gopts->count_verify); 304 gopts->count_verify = NULL; 305 } 306 307 if (gopts->uffd != -1) { 308 if (close(gopts->uffd)) 309 err("close uffd"); 310 gopts->uffd = -1; 311 } 312 313 munmap_area(gopts, (void **)&gopts->area_src); 314 munmap_area(gopts, (void **)&gopts->area_src_alias); 315 munmap_area(gopts, (void **)&gopts->area_dst); 316 munmap_area(gopts, (void **)&gopts->area_dst_alias); 317 munmap_area(gopts, (void **)&gopts->area_remap); 318 } 319 320 int uffd_test_ctx_init(uffd_global_test_opts_t *gopts, uint64_t features, const char **errmsg) 321 { 322 unsigned long nr, cpu; 323 int ret; 324 325 gopts->area_src_alias = NULL; 326 gopts->area_dst_alias = NULL; 327 gopts->area_remap = NULL; 328 329 if (uffd_test_case_ops && uffd_test_case_ops->pre_alloc) { 330 ret = uffd_test_case_ops->pre_alloc(gopts, errmsg); 331 if (ret) 332 return ret; 333 } 334 335 ret = uffd_test_ops->allocate_area(gopts, (void **) &gopts->area_src, true); 336 ret |= uffd_test_ops->allocate_area(gopts, (void **) &gopts->area_dst, false); 337 if (ret) { 338 if (errmsg) 339 *errmsg = "memory allocation failed"; 340 return ret; 341 } 342 343 if (uffd_test_case_ops && uffd_test_case_ops->post_alloc) { 344 ret = uffd_test_case_ops->post_alloc(gopts, errmsg); 345 if (ret) 346 return ret; 347 } 348 349 ret = userfaultfd_open(gopts, &features); 350 if (ret) { 351 if (errmsg) 352 *errmsg = "possible lack of privilege"; 353 return ret; 354 } 355 356 gopts->count_verify = malloc(gopts->nr_pages * sizeof(unsigned long long)); 357 if (!gopts->count_verify) 358 err("count_verify"); 359 360 for (nr = 0; nr < gopts->nr_pages; nr++) { 361 *area_mutex(gopts->area_src, nr, gopts) = 362 (pthread_mutex_t)PTHREAD_MUTEX_INITIALIZER; 363 gopts->count_verify[nr] = *area_count(gopts->area_src, nr, gopts) = 1; 364 /* 365 * In the transition between 255 to 256, powerpc will 366 * read out of order in my_bcmp and see both bytes as 367 * zero, so leave a placeholder below always non-zero 368 * after the count, to avoid my_bcmp to trigger false 369 * positives. 370 */ 371 *(area_count(gopts->area_src, nr, gopts) + 1) = 1; 372 } 373 374 /* 375 * After initialization of area_src, we must explicitly release pages 376 * for area_dst to make sure it's fully empty. Otherwise we could have 377 * some area_dst pages be erroneously initialized with zero pages, 378 * hence we could hit memory corruption later in the test. 379 * 380 * One example is when THP is globally enabled, above allocate_area() 381 * calls could have the two areas merged into a single VMA (as they 382 * will have the same VMA flags so they're mergeable). When we 383 * initialize the area_src above, it's possible that some part of 384 * area_dst could have been faulted in via one huge THP that will be 385 * shared between area_src and area_dst. It could cause some of the 386 * area_dst won't be trapped by missing userfaults. 387 * 388 * This release_pages() will guarantee even if that happened, we'll 389 * proactively split the thp and drop any accidentally initialized 390 * pages within area_dst. 391 */ 392 uffd_test_ops->release_pages(gopts, gopts->area_dst); 393 394 gopts->pipefd = malloc(sizeof(int) * gopts->nr_parallel * 2); 395 if (!gopts->pipefd) 396 err("pipefd"); 397 for (cpu = 0; cpu < gopts->nr_parallel; cpu++) 398 if (pipe2(&gopts->pipefd[cpu * 2], O_CLOEXEC | O_NONBLOCK)) 399 err("pipe"); 400 401 return 0; 402 } 403 404 void wp_range(int ufd, __u64 start, __u64 len, bool wp) 405 { 406 struct uffdio_writeprotect prms; 407 408 /* Write protection page faults */ 409 prms.range.start = start; 410 prms.range.len = len; 411 /* Undo write-protect, do wakeup after that */ 412 prms.mode = wp ? UFFDIO_WRITEPROTECT_MODE_WP : 0; 413 414 if (ioctl(ufd, UFFDIO_WRITEPROTECT, &prms)) 415 err("clear WP failed: address=0x%"PRIx64, (uint64_t)start); 416 } 417 418 static void continue_range(int ufd, __u64 start, __u64 len, bool wp) 419 { 420 struct uffdio_continue req; 421 int ret; 422 423 req.range.start = start; 424 req.range.len = len; 425 req.mode = 0; 426 if (wp) 427 req.mode |= UFFDIO_CONTINUE_MODE_WP; 428 429 if (ioctl(ufd, UFFDIO_CONTINUE, &req)) 430 err("UFFDIO_CONTINUE failed for address 0x%" PRIx64, 431 (uint64_t)start); 432 433 /* 434 * Error handling within the kernel for continue is subtly different 435 * from copy or zeropage, so it may be a source of bugs. Trigger an 436 * error (-EEXIST) on purpose, to verify doing so doesn't cause a BUG. 437 */ 438 req.mapped = 0; 439 ret = ioctl(ufd, UFFDIO_CONTINUE, &req); 440 if (ret >= 0 || req.mapped != -EEXIST) 441 err("failed to exercise UFFDIO_CONTINUE error handling, ret=%d, mapped=%" PRId64, 442 ret, (int64_t) req.mapped); 443 } 444 445 int uffd_read_msg(uffd_global_test_opts_t *gopts, struct uffd_msg *msg) 446 { 447 int ret = read(gopts->uffd, msg, sizeof(*msg)); 448 449 if (ret != sizeof(*msg)) { 450 if (ret < 0) { 451 if (errno == EAGAIN || errno == EINTR) 452 return 1; 453 err("blocking read error"); 454 } else { 455 err("short read"); 456 } 457 } 458 459 return 0; 460 } 461 462 void uffd_handle_page_fault(uffd_global_test_opts_t *gopts, struct uffd_msg *msg, 463 struct uffd_args *args) 464 { 465 unsigned long offset; 466 467 if (msg->event != UFFD_EVENT_PAGEFAULT) 468 err("unexpected msg event %u", msg->event); 469 470 if (msg->arg.pagefault.flags & UFFD_PAGEFAULT_FLAG_WP) { 471 /* Write protect page faults */ 472 wp_range(gopts->uffd, msg->arg.pagefault.address, gopts->page_size, false); 473 args->wp_faults++; 474 } else if (msg->arg.pagefault.flags & UFFD_PAGEFAULT_FLAG_MINOR) { 475 uint8_t *area; 476 int b; 477 478 /* 479 * Minor page faults 480 * 481 * To prove we can modify the original range for testing 482 * purposes, we're going to bit flip this range before 483 * continuing. 484 * 485 * Note that this requires all minor page fault tests operate on 486 * area_dst (non-UFFD-registered) and area_dst_alias 487 * (UFFD-registered). 488 */ 489 490 area = (uint8_t *)(gopts->area_dst + 491 ((char *)msg->arg.pagefault.address - 492 gopts->area_dst_alias)); 493 for (b = 0; b < gopts->page_size; ++b) 494 area[b] = ~area[b]; 495 continue_range(gopts->uffd, msg->arg.pagefault.address, gopts->page_size, 496 args->apply_wp); 497 args->minor_faults++; 498 } else { 499 /* 500 * Missing page faults. 501 * 502 * Here we force a write check for each of the missing mode 503 * faults. It's guaranteed because the only threads that 504 * will trigger uffd faults are the locking threads, and 505 * their first instruction to touch the missing page will 506 * always be pthread_mutex_lock(). 507 * 508 * Note that here we relied on an NPTL glibc impl detail to 509 * always read the lock type at the entry of the lock op 510 * (pthread_mutex_t.__data.__type, offset 0x10) before 511 * doing any locking operations to guarantee that. It's 512 * actually not good to rely on this impl detail because 513 * logically a pthread-compatible lib can implement the 514 * locks without types and we can fail when linking with 515 * them. However since we used to find bugs with this 516 * strict check we still keep it around. Hopefully this 517 * could be a good hint when it fails again. If one day 518 * it'll break on some other impl of glibc we'll revisit. 519 */ 520 if (msg->arg.pagefault.flags & UFFD_PAGEFAULT_FLAG_WRITE) 521 err("unexpected write fault"); 522 523 offset = (char *)(unsigned long)msg->arg.pagefault.address - gopts->area_dst; 524 offset &= ~(gopts->page_size-1); 525 526 if (copy_page(gopts, offset, args->apply_wp)) 527 args->missing_faults++; 528 } 529 } 530 531 void *uffd_poll_thread(void *arg) 532 { 533 struct uffd_args *args = (struct uffd_args *)arg; 534 uffd_global_test_opts_t *gopts = args->gopts; 535 unsigned long cpu = args->cpu; 536 struct pollfd pollfd[2]; 537 struct uffd_msg msg; 538 struct uffdio_register uffd_reg; 539 int ret; 540 char tmp_chr; 541 542 if (!args->handle_fault) 543 args->handle_fault = uffd_handle_page_fault; 544 545 pollfd[0].fd = gopts->uffd; 546 pollfd[0].events = POLLIN; 547 pollfd[1].fd = gopts->pipefd[cpu*2]; 548 pollfd[1].events = POLLIN; 549 550 gopts->ready_for_fork = true; 551 552 for (;;) { 553 ret = poll(pollfd, 2, -1); 554 if (ret <= 0) { 555 if (errno == EINTR || errno == EAGAIN) 556 continue; 557 err("poll error: %d", ret); 558 } 559 if (pollfd[1].revents) { 560 if (!(pollfd[1].revents & POLLIN)) 561 err("pollfd[1].revents %d", pollfd[1].revents); 562 if (read(pollfd[1].fd, &tmp_chr, 1) != 1) 563 err("read pipefd error"); 564 break; 565 } 566 if (!(pollfd[0].revents & POLLIN)) 567 err("pollfd[0].revents %d", pollfd[0].revents); 568 if (uffd_read_msg(gopts, &msg)) 569 continue; 570 switch (msg.event) { 571 default: 572 err("unexpected msg event %u\n", msg.event); 573 break; 574 case UFFD_EVENT_PAGEFAULT: 575 args->handle_fault(gopts, &msg, args); 576 break; 577 case UFFD_EVENT_FORK: 578 close(gopts->uffd); 579 gopts->uffd = msg.arg.fork.ufd; 580 pollfd[0].fd = gopts->uffd; 581 break; 582 case UFFD_EVENT_REMOVE: 583 uffd_reg.range.start = msg.arg.remove.start; 584 uffd_reg.range.len = msg.arg.remove.end - 585 msg.arg.remove.start; 586 if (ioctl(gopts->uffd, UFFDIO_UNREGISTER, &uffd_reg.range)) 587 err("remove failure"); 588 break; 589 case UFFD_EVENT_REMAP: 590 gopts->area_remap = gopts->area_dst; /* save for later unmap */ 591 gopts->area_dst = (char *)(unsigned long)msg.arg.remap.to; 592 break; 593 } 594 } 595 596 return NULL; 597 } 598 599 static void retry_copy_page(uffd_global_test_opts_t *gopts, struct uffdio_copy *uffdio_copy, 600 unsigned long offset) 601 { 602 uffd_test_ops->alias_mapping(gopts, 603 &uffdio_copy->dst, 604 uffdio_copy->len, 605 offset); 606 if (ioctl(gopts->uffd, UFFDIO_COPY, uffdio_copy)) { 607 /* real retval in ufdio_copy.copy */ 608 if (uffdio_copy->copy != -EEXIST) 609 err("UFFDIO_COPY retry error: %"PRId64, 610 (int64_t)uffdio_copy->copy); 611 } else { 612 err("UFFDIO_COPY retry unexpected: %"PRId64, 613 (int64_t)uffdio_copy->copy); 614 } 615 } 616 617 static void wake_range(int ufd, unsigned long addr, unsigned long len) 618 { 619 struct uffdio_range uffdio_wake; 620 621 uffdio_wake.start = addr; 622 uffdio_wake.len = len; 623 624 if (ioctl(ufd, UFFDIO_WAKE, &uffdio_wake)) 625 fprintf(stderr, "error waking %lu\n", 626 addr), exit(1); 627 } 628 629 int __copy_page(uffd_global_test_opts_t *gopts, unsigned long offset, bool retry, bool wp) 630 { 631 struct uffdio_copy uffdio_copy; 632 633 if (offset >= gopts->nr_pages * gopts->page_size) 634 err("unexpected offset %lu\n", offset); 635 uffdio_copy.dst = (unsigned long) gopts->area_dst + offset; 636 uffdio_copy.src = (unsigned long) gopts->area_src + offset; 637 uffdio_copy.len = gopts->page_size; 638 if (wp) 639 uffdio_copy.mode = UFFDIO_COPY_MODE_WP; 640 else 641 uffdio_copy.mode = 0; 642 uffdio_copy.copy = 0; 643 if (ioctl(gopts->uffd, UFFDIO_COPY, &uffdio_copy)) { 644 /* 645 * real retval in uffdio_copy.copy 646 * 647 * -EEXIST: the page was faulted in concurrently 648 * -ENOENT: the destination range was concurrently removed 649 */ 650 if (uffdio_copy.copy != -EEXIST && uffdio_copy.copy != -ENOENT) 651 err("UFFDIO_COPY error: %"PRId64, 652 (int64_t)uffdio_copy.copy); 653 wake_range(gopts->uffd, uffdio_copy.dst, gopts->page_size); 654 } else if (uffdio_copy.copy != gopts->page_size) { 655 err("UFFDIO_COPY error: %"PRId64, (int64_t)uffdio_copy.copy); 656 } else { 657 if (gopts->test_uffdio_copy_eexist && retry) { 658 gopts->test_uffdio_copy_eexist = false; 659 retry_copy_page(gopts, &uffdio_copy, offset); 660 } 661 return 1; 662 } 663 return 0; 664 } 665 666 int copy_page(uffd_global_test_opts_t *gopts, unsigned long offset, bool wp) 667 { 668 return __copy_page(gopts, offset, false, wp); 669 } 670 671 int move_page(uffd_global_test_opts_t *gopts, unsigned long offset, unsigned long len) 672 { 673 struct uffdio_move uffdio_move; 674 675 if (offset + len > gopts->nr_pages * gopts->page_size) 676 err("unexpected offset %lu and length %lu\n", offset, len); 677 uffdio_move.dst = (unsigned long) gopts->area_dst + offset; 678 uffdio_move.src = (unsigned long) gopts->area_src + offset; 679 uffdio_move.len = len; 680 uffdio_move.mode = UFFDIO_MOVE_MODE_ALLOW_SRC_HOLES; 681 uffdio_move.move = 0; 682 if (ioctl(gopts->uffd, UFFDIO_MOVE, &uffdio_move)) { 683 /* real retval in uffdio_move.move */ 684 if (uffdio_move.move != -EEXIST) 685 err("UFFDIO_MOVE error: %"PRId64, 686 (int64_t)uffdio_move.move); 687 wake_range(gopts->uffd, uffdio_move.dst, len); 688 } else if (uffdio_move.move != len) { 689 err("UFFDIO_MOVE error: %"PRId64, (int64_t)uffdio_move.move); 690 } else 691 return 1; 692 return 0; 693 } 694 695 int uffd_open_dev(unsigned int flags) 696 { 697 int fd, uffd; 698 699 fd = open("/dev/userfaultfd", O_RDWR | O_CLOEXEC); 700 if (fd < 0) 701 return fd; 702 uffd = ioctl(fd, USERFAULTFD_IOC_NEW, flags); 703 close(fd); 704 705 return uffd; 706 } 707 708 int uffd_open_sys(unsigned int flags) 709 { 710 #ifdef __NR_userfaultfd 711 return syscall(__NR_userfaultfd, flags); 712 #else 713 return -1; 714 #endif 715 } 716 717 int uffd_open(unsigned int flags) 718 { 719 int uffd = uffd_open_sys(flags); 720 721 if (uffd < 0) 722 uffd = uffd_open_dev(flags); 723 724 return uffd; 725 } 726 727 int uffd_get_features(uint64_t *features) 728 { 729 struct uffdio_api uffdio_api = { .api = UFFD_API, .features = 0 }; 730 /* 731 * This should by default work in most kernels; the feature list 732 * will be the same no matter what we pass in here. 733 */ 734 int fd = uffd_open(UFFD_USER_MODE_ONLY); 735 736 if (fd < 0) 737 /* Maybe the kernel is older than user-only mode? */ 738 fd = uffd_open(0); 739 740 if (fd < 0) 741 return fd; 742 743 if (ioctl(fd, UFFDIO_API, &uffdio_api)) { 744 close(fd); 745 return -errno; 746 } 747 748 *features = uffdio_api.features; 749 close(fd); 750 751 return 0; 752 } 753