1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Base unit test (KUnit) API. 4 * 5 * Copyright (C) 2019, Google LLC. 6 * Author: Brendan Higgins <brendanhiggins@google.com> 7 */ 8 9 #include <kunit/test.h> 10 #include <linux/kernel.h> 11 #include <linux/kref.h> 12 #include <linux/sched/debug.h> 13 #include <linux/sched.h> 14 15 #include "debugfs.h" 16 #include "string-stream.h" 17 #include "try-catch-impl.h" 18 19 /* 20 * Append formatted message to log, size of which is limited to 21 * KUNIT_LOG_SIZE bytes (including null terminating byte). 22 */ 23 void kunit_log_append(char *log, const char *fmt, ...) 24 { 25 char line[KUNIT_LOG_SIZE]; 26 va_list args; 27 int len_left; 28 29 if (!log) 30 return; 31 32 len_left = KUNIT_LOG_SIZE - strlen(log) - 1; 33 if (len_left <= 0) 34 return; 35 36 va_start(args, fmt); 37 vsnprintf(line, sizeof(line), fmt, args); 38 va_end(args); 39 40 strncat(log, line, len_left); 41 } 42 EXPORT_SYMBOL_GPL(kunit_log_append); 43 44 size_t kunit_suite_num_test_cases(struct kunit_suite *suite) 45 { 46 struct kunit_case *test_case; 47 size_t len = 0; 48 49 kunit_suite_for_each_test_case(suite, test_case) 50 len++; 51 52 return len; 53 } 54 EXPORT_SYMBOL_GPL(kunit_suite_num_test_cases); 55 56 static void kunit_print_subtest_start(struct kunit_suite *suite) 57 { 58 kunit_log(KERN_INFO, suite, KUNIT_SUBTEST_INDENT "# Subtest: %s", 59 suite->name); 60 kunit_log(KERN_INFO, suite, KUNIT_SUBTEST_INDENT "1..%zd", 61 kunit_suite_num_test_cases(suite)); 62 } 63 64 static void kunit_print_ok_not_ok(void *test_or_suite, 65 bool is_test, 66 bool is_ok, 67 size_t test_number, 68 const char *description) 69 { 70 struct kunit_suite *suite = is_test ? NULL : test_or_suite; 71 struct kunit *test = is_test ? test_or_suite : NULL; 72 73 /* 74 * We do not log the test suite results as doing so would 75 * mean debugfs display would consist of the test suite 76 * description and status prior to individual test results. 77 * Hence directly printk the suite status, and we will 78 * separately seq_printf() the suite status for the debugfs 79 * representation. 80 */ 81 if (suite) 82 pr_info("%s %zd - %s\n", 83 kunit_status_to_string(is_ok), 84 test_number, description); 85 else 86 kunit_log(KERN_INFO, test, KUNIT_SUBTEST_INDENT "%s %zd - %s", 87 kunit_status_to_string(is_ok), 88 test_number, description); 89 } 90 91 bool kunit_suite_has_succeeded(struct kunit_suite *suite) 92 { 93 const struct kunit_case *test_case; 94 95 kunit_suite_for_each_test_case(suite, test_case) { 96 if (!test_case->success) 97 return false; 98 } 99 100 return true; 101 } 102 EXPORT_SYMBOL_GPL(kunit_suite_has_succeeded); 103 104 static void kunit_print_subtest_end(struct kunit_suite *suite) 105 { 106 static size_t kunit_suite_counter = 1; 107 108 kunit_print_ok_not_ok((void *)suite, false, 109 kunit_suite_has_succeeded(suite), 110 kunit_suite_counter++, 111 suite->name); 112 } 113 114 unsigned int kunit_test_case_num(struct kunit_suite *suite, 115 struct kunit_case *test_case) 116 { 117 struct kunit_case *tc; 118 unsigned int i = 1; 119 120 kunit_suite_for_each_test_case(suite, tc) { 121 if (tc == test_case) 122 return i; 123 i++; 124 } 125 126 return 0; 127 } 128 EXPORT_SYMBOL_GPL(kunit_test_case_num); 129 130 static void kunit_print_string_stream(struct kunit *test, 131 struct string_stream *stream) 132 { 133 struct string_stream_fragment *fragment; 134 char *buf; 135 136 if (string_stream_is_empty(stream)) 137 return; 138 139 buf = string_stream_get_string(stream); 140 if (!buf) { 141 kunit_err(test, 142 "Could not allocate buffer, dumping stream:\n"); 143 list_for_each_entry(fragment, &stream->fragments, node) { 144 kunit_err(test, "%s", fragment->fragment); 145 } 146 kunit_err(test, "\n"); 147 } else { 148 kunit_err(test, "%s", buf); 149 kunit_kfree(test, buf); 150 } 151 } 152 153 static void kunit_fail(struct kunit *test, struct kunit_assert *assert) 154 { 155 struct string_stream *stream; 156 157 kunit_set_failure(test); 158 159 stream = alloc_string_stream(test, GFP_KERNEL); 160 if (!stream) { 161 WARN(true, 162 "Could not allocate stream to print failed assertion in %s:%d\n", 163 assert->file, 164 assert->line); 165 return; 166 } 167 168 assert->format(assert, stream); 169 170 kunit_print_string_stream(test, stream); 171 172 WARN_ON(string_stream_destroy(stream)); 173 } 174 175 static void __noreturn kunit_abort(struct kunit *test) 176 { 177 kunit_try_catch_throw(&test->try_catch); /* Does not return. */ 178 179 /* 180 * Throw could not abort from test. 181 * 182 * XXX: we should never reach this line! As kunit_try_catch_throw is 183 * marked __noreturn. 184 */ 185 WARN_ONCE(true, "Throw could not abort from test!\n"); 186 } 187 188 void kunit_do_assertion(struct kunit *test, 189 struct kunit_assert *assert, 190 bool pass, 191 const char *fmt, ...) 192 { 193 va_list args; 194 195 if (pass) 196 return; 197 198 va_start(args, fmt); 199 200 assert->message.fmt = fmt; 201 assert->message.va = &args; 202 203 kunit_fail(test, assert); 204 205 va_end(args); 206 207 if (assert->type == KUNIT_ASSERTION) 208 kunit_abort(test); 209 } 210 EXPORT_SYMBOL_GPL(kunit_do_assertion); 211 212 void kunit_init_test(struct kunit *test, const char *name, char *log) 213 { 214 spin_lock_init(&test->lock); 215 INIT_LIST_HEAD(&test->resources); 216 test->name = name; 217 test->log = log; 218 if (test->log) 219 test->log[0] = '\0'; 220 test->success = true; 221 } 222 EXPORT_SYMBOL_GPL(kunit_init_test); 223 224 /* 225 * Initializes and runs test case. Does not clean up or do post validations. 226 */ 227 static void kunit_run_case_internal(struct kunit *test, 228 struct kunit_suite *suite, 229 struct kunit_case *test_case) 230 { 231 if (suite->init) { 232 int ret; 233 234 ret = suite->init(test); 235 if (ret) { 236 kunit_err(test, "failed to initialize: %d\n", ret); 237 kunit_set_failure(test); 238 return; 239 } 240 } 241 242 test_case->run_case(test); 243 } 244 245 static void kunit_case_internal_cleanup(struct kunit *test) 246 { 247 kunit_cleanup(test); 248 } 249 250 /* 251 * Performs post validations and cleanup after a test case was run. 252 * XXX: Should ONLY BE CALLED AFTER kunit_run_case_internal! 253 */ 254 static void kunit_run_case_cleanup(struct kunit *test, 255 struct kunit_suite *suite) 256 { 257 if (suite->exit) 258 suite->exit(test); 259 260 kunit_case_internal_cleanup(test); 261 } 262 263 struct kunit_try_catch_context { 264 struct kunit *test; 265 struct kunit_suite *suite; 266 struct kunit_case *test_case; 267 }; 268 269 static void kunit_try_run_case(void *data) 270 { 271 struct kunit_try_catch_context *ctx = data; 272 struct kunit *test = ctx->test; 273 struct kunit_suite *suite = ctx->suite; 274 struct kunit_case *test_case = ctx->test_case; 275 276 #if (IS_ENABLED(CONFIG_KASAN) && IS_ENABLED(CONFIG_KUNIT)) 277 current->kunit_test = test; 278 #endif /* IS_ENABLED(CONFIG_KASAN) && IS_ENABLED(CONFIG_KUNIT) */ 279 280 /* 281 * kunit_run_case_internal may encounter a fatal error; if it does, 282 * abort will be called, this thread will exit, and finally the parent 283 * thread will resume control and handle any necessary clean up. 284 */ 285 kunit_run_case_internal(test, suite, test_case); 286 /* This line may never be reached. */ 287 kunit_run_case_cleanup(test, suite); 288 } 289 290 static void kunit_catch_run_case(void *data) 291 { 292 struct kunit_try_catch_context *ctx = data; 293 struct kunit *test = ctx->test; 294 struct kunit_suite *suite = ctx->suite; 295 int try_exit_code = kunit_try_catch_get_result(&test->try_catch); 296 297 if (try_exit_code) { 298 kunit_set_failure(test); 299 /* 300 * Test case could not finish, we have no idea what state it is 301 * in, so don't do clean up. 302 */ 303 if (try_exit_code == -ETIMEDOUT) { 304 kunit_err(test, "test case timed out\n"); 305 /* 306 * Unknown internal error occurred preventing test case from 307 * running, so there is nothing to clean up. 308 */ 309 } else { 310 kunit_err(test, "internal error occurred preventing test case from running: %d\n", 311 try_exit_code); 312 } 313 return; 314 } 315 316 /* 317 * Test case was run, but aborted. It is the test case's business as to 318 * whether it failed or not, we just need to clean up. 319 */ 320 kunit_run_case_cleanup(test, suite); 321 } 322 323 /* 324 * Performs all logic to run a test case. It also catches most errors that 325 * occur in a test case and reports them as failures. 326 */ 327 static void kunit_run_case_catch_errors(struct kunit_suite *suite, 328 struct kunit_case *test_case) 329 { 330 struct kunit_try_catch_context context; 331 struct kunit_try_catch *try_catch; 332 struct kunit test; 333 334 kunit_init_test(&test, test_case->name, test_case->log); 335 try_catch = &test.try_catch; 336 337 kunit_try_catch_init(try_catch, 338 &test, 339 kunit_try_run_case, 340 kunit_catch_run_case); 341 context.test = &test; 342 context.suite = suite; 343 context.test_case = test_case; 344 kunit_try_catch_run(try_catch, &context); 345 346 test_case->success = test.success; 347 348 kunit_print_ok_not_ok(&test, true, test_case->success, 349 kunit_test_case_num(suite, test_case), 350 test_case->name); 351 } 352 353 int kunit_run_tests(struct kunit_suite *suite) 354 { 355 struct kunit_case *test_case; 356 357 kunit_print_subtest_start(suite); 358 359 kunit_suite_for_each_test_case(suite, test_case) 360 kunit_run_case_catch_errors(suite, test_case); 361 362 kunit_print_subtest_end(suite); 363 364 return 0; 365 } 366 EXPORT_SYMBOL_GPL(kunit_run_tests); 367 368 static void kunit_init_suite(struct kunit_suite *suite) 369 { 370 kunit_debugfs_create_suite(suite); 371 } 372 373 int __kunit_test_suites_init(struct kunit_suite * const * const suites) 374 { 375 unsigned int i; 376 377 for (i = 0; suites[i] != NULL; i++) { 378 kunit_init_suite(suites[i]); 379 kunit_run_tests(suites[i]); 380 } 381 return 0; 382 } 383 EXPORT_SYMBOL_GPL(__kunit_test_suites_init); 384 385 static void kunit_exit_suite(struct kunit_suite *suite) 386 { 387 kunit_debugfs_destroy_suite(suite); 388 } 389 390 void __kunit_test_suites_exit(struct kunit_suite **suites) 391 { 392 unsigned int i; 393 394 for (i = 0; suites[i] != NULL; i++) 395 kunit_exit_suite(suites[i]); 396 } 397 EXPORT_SYMBOL_GPL(__kunit_test_suites_exit); 398 399 /* 400 * Used for static resources and when a kunit_resource * has been created by 401 * kunit_alloc_resource(). When an init function is supplied, @data is passed 402 * into the init function; otherwise, we simply set the resource data field to 403 * the data value passed in. 404 */ 405 int kunit_add_resource(struct kunit *test, 406 kunit_resource_init_t init, 407 kunit_resource_free_t free, 408 struct kunit_resource *res, 409 void *data) 410 { 411 int ret = 0; 412 413 res->free = free; 414 kref_init(&res->refcount); 415 416 if (init) { 417 ret = init(res, data); 418 if (ret) 419 return ret; 420 } else { 421 res->data = data; 422 } 423 424 spin_lock(&test->lock); 425 list_add_tail(&res->node, &test->resources); 426 /* refcount for list is established by kref_init() */ 427 spin_unlock(&test->lock); 428 429 return ret; 430 } 431 EXPORT_SYMBOL_GPL(kunit_add_resource); 432 433 int kunit_add_named_resource(struct kunit *test, 434 kunit_resource_init_t init, 435 kunit_resource_free_t free, 436 struct kunit_resource *res, 437 const char *name, 438 void *data) 439 { 440 struct kunit_resource *existing; 441 442 if (!name) 443 return -EINVAL; 444 445 existing = kunit_find_named_resource(test, name); 446 if (existing) { 447 kunit_put_resource(existing); 448 return -EEXIST; 449 } 450 451 res->name = name; 452 453 return kunit_add_resource(test, init, free, res, data); 454 } 455 EXPORT_SYMBOL_GPL(kunit_add_named_resource); 456 457 struct kunit_resource *kunit_alloc_and_get_resource(struct kunit *test, 458 kunit_resource_init_t init, 459 kunit_resource_free_t free, 460 gfp_t internal_gfp, 461 void *data) 462 { 463 struct kunit_resource *res; 464 int ret; 465 466 res = kzalloc(sizeof(*res), internal_gfp); 467 if (!res) 468 return NULL; 469 470 ret = kunit_add_resource(test, init, free, res, data); 471 if (!ret) { 472 /* 473 * bump refcount for get; kunit_resource_put() should be called 474 * when done. 475 */ 476 kunit_get_resource(res); 477 return res; 478 } 479 return NULL; 480 } 481 EXPORT_SYMBOL_GPL(kunit_alloc_and_get_resource); 482 483 void kunit_remove_resource(struct kunit *test, struct kunit_resource *res) 484 { 485 spin_lock(&test->lock); 486 list_del(&res->node); 487 spin_unlock(&test->lock); 488 kunit_put_resource(res); 489 } 490 EXPORT_SYMBOL_GPL(kunit_remove_resource); 491 492 int kunit_destroy_resource(struct kunit *test, kunit_resource_match_t match, 493 void *match_data) 494 { 495 struct kunit_resource *res = kunit_find_resource(test, match, 496 match_data); 497 498 if (!res) 499 return -ENOENT; 500 501 kunit_remove_resource(test, res); 502 503 /* We have a reference also via _find(); drop it. */ 504 kunit_put_resource(res); 505 506 return 0; 507 } 508 EXPORT_SYMBOL_GPL(kunit_destroy_resource); 509 510 struct kunit_kmalloc_params { 511 size_t size; 512 gfp_t gfp; 513 }; 514 515 static int kunit_kmalloc_init(struct kunit_resource *res, void *context) 516 { 517 struct kunit_kmalloc_params *params = context; 518 519 res->data = kmalloc(params->size, params->gfp); 520 if (!res->data) 521 return -ENOMEM; 522 523 return 0; 524 } 525 526 static void kunit_kmalloc_free(struct kunit_resource *res) 527 { 528 kfree(res->data); 529 } 530 531 void *kunit_kmalloc(struct kunit *test, size_t size, gfp_t gfp) 532 { 533 struct kunit_kmalloc_params params = { 534 .size = size, 535 .gfp = gfp 536 }; 537 538 return kunit_alloc_resource(test, 539 kunit_kmalloc_init, 540 kunit_kmalloc_free, 541 gfp, 542 ¶ms); 543 } 544 EXPORT_SYMBOL_GPL(kunit_kmalloc); 545 546 void kunit_kfree(struct kunit *test, const void *ptr) 547 { 548 struct kunit_resource *res; 549 550 res = kunit_find_resource(test, kunit_resource_instance_match, 551 (void *)ptr); 552 553 /* 554 * Removing the resource from the list of resources drops the 555 * reference count to 1; the final put will trigger the free. 556 */ 557 kunit_remove_resource(test, res); 558 559 kunit_put_resource(res); 560 561 } 562 EXPORT_SYMBOL_GPL(kunit_kfree); 563 564 void kunit_cleanup(struct kunit *test) 565 { 566 struct kunit_resource *res; 567 568 /* 569 * test->resources is a stack - each allocation must be freed in the 570 * reverse order from which it was added since one resource may depend 571 * on another for its entire lifetime. 572 * Also, we cannot use the normal list_for_each constructs, even the 573 * safe ones because *arbitrary* nodes may be deleted when 574 * kunit_resource_free is called; the list_for_each_safe variants only 575 * protect against the current node being deleted, not the next. 576 */ 577 while (true) { 578 spin_lock(&test->lock); 579 if (list_empty(&test->resources)) { 580 spin_unlock(&test->lock); 581 break; 582 } 583 res = list_last_entry(&test->resources, 584 struct kunit_resource, 585 node); 586 /* 587 * Need to unlock here as a resource may remove another 588 * resource, and this can't happen if the test->lock 589 * is held. 590 */ 591 spin_unlock(&test->lock); 592 kunit_remove_resource(test, res); 593 } 594 #if (IS_ENABLED(CONFIG_KASAN) && IS_ENABLED(CONFIG_KUNIT)) 595 current->kunit_test = NULL; 596 #endif /* IS_ENABLED(CONFIG_KASAN) && IS_ENABLED(CONFIG_KUNIT)*/ 597 } 598 EXPORT_SYMBOL_GPL(kunit_cleanup); 599 600 static int __init kunit_init(void) 601 { 602 kunit_debugfs_init(); 603 604 return 0; 605 } 606 late_initcall(kunit_init); 607 608 static void __exit kunit_exit(void) 609 { 610 kunit_debugfs_cleanup(); 611 } 612 module_exit(kunit_exit); 613 614 MODULE_LICENSE("GPL v2"); 615