1 /* 2 * CDDL HEADER START 3 * 4 * The contents of this file are subject to the terms of the 5 * Common Development and Distribution License (the "License"). 6 * You may not use this file except in compliance with the License. 7 * 8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9 * or http://www.opensolaris.org/os/licensing. 10 * See the License for the specific language governing permissions 11 * and limitations under the License. 12 * 13 * When distributing Covered Code, include this CDDL HEADER in each 14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15 * If applicable, add the following below this CDDL HEADER, with the 16 * fields enclosed by brackets "[]" replaced with your own identifying 17 * information: Portions Copyright [yyyy] [name of copyright owner] 18 * 19 * CDDL HEADER END 20 */ 21 22 /* 23 * Copyright 2006 Sun Microsystems, Inc. All rights reserved. 24 * Use is subject to license terms. 25 */ 26 27 #pragma ident "%Z%%M% %I% %E% SMI" 28 29 #include <sys/types.h> 30 #include <sys/fm/protocol.h> 31 #include <fm/libtopo.h> 32 33 #include <unistd.h> 34 #include <signal.h> 35 #include <limits.h> 36 #include <syslog.h> 37 #include <alloca.h> 38 39 #include <fmd_module.h> 40 #include <fmd_api.h> 41 #include <fmd_string.h> 42 #include <fmd_subr.h> 43 #include <fmd_error.h> 44 #include <fmd_event.h> 45 #include <fmd_eventq.h> 46 #include <fmd_dispq.h> 47 #include <fmd_timerq.h> 48 #include <fmd_thread.h> 49 #include <fmd_ustat.h> 50 #include <fmd_case.h> 51 #include <fmd_protocol.h> 52 #include <fmd_buf.h> 53 #include <fmd_asru.h> 54 #include <fmd_fmri.h> 55 #include <fmd_ckpt.h> 56 #include <fmd_xprt.h> 57 58 #include <fmd.h> 59 60 /* 61 * Table of configuration file variable types ops-vector pointers. We use this 62 * to convert from the property description array specified by the module to an 63 * array of fmd_conf_formal_t's. The order of this array must match the order 64 * of #define values specified in <fmd_api.h> (i.e. FMD_TYPE_BOOL must be 0). 65 * For now, the fmd_conf_list and fmd_conf_path types are not supported as we 66 * do not believe modules need them and they would require more complexity. 67 */ 68 static const fmd_conf_ops_t *const _fmd_prop_ops[] = { 69 &fmd_conf_bool, /* FMD_TYPE_BOOL */ 70 &fmd_conf_int32, /* FMD_TYPE_INT32 */ 71 &fmd_conf_uint32, /* FMD_TYPE_UINT32 */ 72 &fmd_conf_int64, /* FMD_TYPE_INT64 */ 73 &fmd_conf_uint64, /* FMD_TYPE_UINT64 */ 74 &fmd_conf_string, /* FMD_TYPE_STRING */ 75 &fmd_conf_time, /* FMD_TYPE_TIME */ 76 &fmd_conf_size, /* FMD_TYPE_SIZE */ 77 }; 78 79 static void fmd_api_verror(fmd_module_t *, int, const char *, va_list) 80 __NORETURN; 81 static void fmd_api_error(fmd_module_t *, int, const char *, ...) __NORETURN; 82 83 /* 84 * fmd_api_vxerror() provides the engine underlying the fmd_hdl_[v]error() API 85 * calls and the fmd_api_[v]error() utility routine defined below. The routine 86 * formats the error, optionally associated with a particular errno code 'err', 87 * and logs it as an ereport associated with the calling module. Depending on 88 * other optional properties, we also emit a message to stderr and to syslog. 89 */ 90 static void 91 fmd_api_vxerror(fmd_module_t *mp, int err, const char *format, va_list ap) 92 { 93 int raw_err = err; 94 nvlist_t *nvl; 95 fmd_event_t *e; 96 char *class, *msg; 97 size_t len1, len2; 98 char c; 99 100 /* 101 * fmd_api_vxerror() counts as both an error of class EFMD_MODULE 102 * as well as an instance of 'err' w.r.t. our internal bean counters. 103 */ 104 (void) pthread_mutex_lock(&fmd.d_err_lock); 105 fmd.d_errstats[EFMD_MODULE - EFMD_UNKNOWN].fmds_value.ui64++; 106 107 if (err > EFMD_UNKNOWN && err < EFMD_END) 108 fmd.d_errstats[err - EFMD_UNKNOWN].fmds_value.ui64++; 109 110 (void) pthread_mutex_unlock(&fmd.d_err_lock); 111 112 /* 113 * Format the message using vsnprintf(). As usual, if the format has a 114 * newline in it, it is printed alone; otherwise strerror() is added. 115 */ 116 if (strchr(format, '\n') != NULL) 117 err = 0; /* err is not relevant in the message */ 118 119 len1 = vsnprintf(&c, 1, format, ap); 120 len2 = err != 0 ? snprintf(&c, 1, ": %s\n", fmd_strerror(err)) : 0; 121 122 msg = fmd_alloc(len1 + len2 + 1, FMD_SLEEP); 123 (void) vsnprintf(msg, len1 + 1, format, ap); 124 125 if (err != 0) { 126 (void) snprintf(&msg[len1], len2 + 1, 127 ": %s\n", fmd_strerror(err)); 128 } 129 130 /* 131 * Create an error event corresponding to the error, insert it into the 132 * error log, and dispatch it to the fmd-self-diagnosis engine. 133 */ 134 if (mp != fmd.d_self && (raw_err != EFMD_HDL_ABORT || fmd.d_running)) { 135 if ((c = msg[len1 + len2 - 1]) == '\n') 136 msg[len1 + len2 - 1] = '\0'; /* strip \n for event */ 137 138 nvl = fmd_protocol_moderror(mp, err, msg); 139 140 if (c == '\n') 141 msg[len1 + len2 - 1] = c; 142 143 (void) nvlist_lookup_string(nvl, FM_CLASS, &class); 144 e = fmd_event_create(FMD_EVT_PROTOCOL, FMD_HRT_NOW, nvl, class); 145 146 (void) pthread_rwlock_rdlock(&fmd.d_log_lock); 147 fmd_log_append(fmd.d_errlog, e, NULL); 148 (void) pthread_rwlock_unlock(&fmd.d_log_lock); 149 150 fmd_event_transition(e, FMD_EVS_ACCEPTED); 151 fmd_event_commit(e); 152 153 fmd_dispq_dispatch(fmd.d_disp, e, class); 154 } 155 156 /* 157 * Similar to fmd_vdebug(), if the debugging switches are enabled we 158 * echo the module name and message to stderr and/or syslog. Unlike 159 * fmd_vdebug(), we also print to stderr if foreground mode is enabled. 160 * We also print the message if a built-in module is aborting before 161 * fmd has detached from its parent (e.g. default transport failure). 162 */ 163 if (fmd.d_fg || (fmd.d_hdl_dbout & FMD_DBOUT_STDERR) || ( 164 raw_err == EFMD_HDL_ABORT && !fmd.d_running)) { 165 (void) pthread_mutex_lock(&fmd.d_err_lock); 166 (void) fprintf(stderr, "%s: %s: %s", 167 fmd.d_pname, mp->mod_name, msg); 168 (void) pthread_mutex_unlock(&fmd.d_err_lock); 169 } 170 171 if (fmd.d_hdl_dbout & FMD_DBOUT_SYSLOG) { 172 syslog(LOG_ERR | LOG_DAEMON, "%s ERROR: %s: %s", 173 fmd.d_pname, mp->mod_name, msg); 174 } 175 176 fmd_free(msg, len1 + len2 + 1); 177 } 178 179 /*PRINTFLIKE3*/ 180 static void 181 fmd_api_xerror(fmd_module_t *mp, int err, const char *format, ...) 182 { 183 va_list ap; 184 185 va_start(ap, format); 186 fmd_api_vxerror(mp, err, format, ap); 187 va_end(ap); 188 } 189 190 /* 191 * fmd_api_verror() is a wrapper around fmd_api_vxerror() for API subroutines. 192 * It calls fmd_module_unlock() on behalf of its caller, logs the error, and 193 * then aborts the API call and the surrounding module entry point by doing an 194 * fmd_module_abort(), which longjmps to the place where we entered the module. 195 */ 196 static void 197 fmd_api_verror(fmd_module_t *mp, int err, const char *format, va_list ap) 198 { 199 if (fmd_module_locked(mp)) 200 fmd_module_unlock(mp); 201 202 fmd_api_vxerror(mp, err, format, ap); 203 fmd_module_abort(mp, err); 204 } 205 206 /*PRINTFLIKE3*/ 207 static void 208 fmd_api_error(fmd_module_t *mp, int err, const char *format, ...) 209 { 210 va_list ap; 211 212 va_start(ap, format); 213 fmd_api_verror(mp, err, format, ap); 214 va_end(ap); 215 } 216 217 /* 218 * Common code for fmd_api_module_lock() and fmd_api_transport_impl(). This 219 * code verifies that the handle is valid and associated with a proper thread. 220 */ 221 static fmd_module_t * 222 fmd_api_module(fmd_hdl_t *hdl) 223 { 224 fmd_thread_t *tp; 225 fmd_module_t *mp; 226 227 /* 228 * If our TSD is not present at all, this is either a serious bug or 229 * someone has created a thread behind our back and is using fmd's API. 230 * We can't call fmd_api_error() because we can't be sure that we can 231 * unwind our state back to an enclosing fmd_module_dispatch(), so we 232 * must panic instead. This is likely a module design or coding error. 233 */ 234 if ((tp = pthread_getspecific(fmd.d_key)) == NULL) { 235 fmd_panic("fmd module api call made using " 236 "client handle %p from unknown thread\n", (void *)hdl); 237 } 238 239 /* 240 * If our TSD refers to the root module and is a door server thread, 241 * then it was created asynchronously at the request of a module but 242 * is using now the module API as an auxiliary module thread. We reset 243 * tp->thr_mod to the module handle so it can act as a module thread. 244 */ 245 if (tp->thr_mod == fmd.d_rmod && tp->thr_func == &fmd_door_server) 246 tp->thr_mod = (fmd_module_t *)hdl; 247 248 if ((mp = tp->thr_mod) != (fmd_module_t *)hdl) { 249 fmd_api_error(mp, EFMD_HDL_INVAL, 250 "client handle %p is not valid\n", (void *)hdl); 251 } 252 253 if (mp->mod_flags & FMD_MOD_FAIL) { 254 fmd_api_error(mp, EFMD_MOD_FAIL, 255 "module has experienced an unrecoverable error\n"); 256 } 257 258 return (mp); 259 } 260 261 /* 262 * fmd_api_module_lock() is used as a wrapper around fmd_module_lock() and a 263 * common prologue to each fmd_api.c routine. It verifies that the handle is 264 * valid and owned by the current server thread, locks the handle, and then 265 * verifies that the caller is performing an operation on a registered handle. 266 * If any tests fail, the entire API call is aborted by fmd_api_error(). 267 */ 268 static fmd_module_t * 269 fmd_api_module_lock(fmd_hdl_t *hdl) 270 { 271 fmd_module_t *mp = fmd_api_module(hdl); 272 273 fmd_module_lock(mp); 274 275 if (mp->mod_info == NULL) { 276 fmd_api_error(mp, EFMD_HDL_NOTREG, 277 "client handle %p has not been registered\n", (void *)hdl); 278 } 279 280 return (mp); 281 } 282 283 /* 284 * Utility function for API entry points that accept fmd_case_t's. We cast cp 285 * to fmd_case_impl_t and check to make sure the case is owned by the caller. 286 */ 287 static fmd_case_impl_t * 288 fmd_api_case_impl(fmd_module_t *mp, fmd_case_t *cp) 289 { 290 fmd_case_impl_t *cip = (fmd_case_impl_t *)cp; 291 292 if (cip == NULL || cip->ci_mod != mp) { 293 fmd_api_error(mp, EFMD_CASE_OWNER, 294 "case %p is invalid or not owned by caller\n", (void *)cip); 295 } 296 297 return (cip); 298 } 299 300 /* 301 * Utility function for API entry points that accept fmd_xprt_t's. We cast xp 302 * to fmd_transport_t and check to make sure the case is owned by the caller. 303 * Note that we could make this check safer by actually walking mp's transport 304 * list, but that requires holding the module lock and this routine needs to be 305 * MT-hot w.r.t. auxiliary module threads. Ultimately any loadable module can 306 * cause us to crash anyway, so we optimize for scalability over safety here. 307 */ 308 static fmd_xprt_impl_t * 309 fmd_api_transport_impl(fmd_hdl_t *hdl, fmd_xprt_t *xp) 310 { 311 fmd_module_t *mp = fmd_api_module(hdl); 312 fmd_xprt_impl_t *xip = (fmd_xprt_impl_t *)xp; 313 314 if (xip == NULL || xip->xi_queue->eq_mod != mp) { 315 fmd_api_error(mp, EFMD_XPRT_OWNER, 316 "xprt %p is invalid or not owned by caller\n", (void *)xp); 317 } 318 319 return (xip); 320 } 321 322 /* 323 * fmd_hdl_register() is the one function which cannot use fmd_api_error() to 324 * report errors, because that routine causes the module to abort. Failure to 325 * register is instead handled by having fmd_hdl_register() return an error to 326 * the _fmd_init() function and then detecting no registration when it returns. 327 * So we use this routine for fmd_hdl_register() error paths instead. 328 */ 329 static int 330 fmd_hdl_register_error(fmd_module_t *mp, int err) 331 { 332 if (fmd_module_locked(mp)) 333 fmd_module_unlock(mp); 334 335 fmd_api_xerror(mp, err, "failed to register"); 336 return (fmd_set_errno(err)); 337 } 338 339 static void 340 fmd_hdl_nop(void) 341 { 342 /* empty function for use with unspecified module entry points */ 343 } 344 345 int 346 fmd_hdl_register(fmd_hdl_t *hdl, int version, const fmd_hdl_info_t *mip) 347 { 348 fmd_thread_t *tp = pthread_getspecific(fmd.d_key); 349 fmd_module_t *mp = tp->thr_mod; 350 351 const fmd_prop_t *prop; 352 const fmd_conf_path_t *pap; 353 fmd_conf_formal_t *cfp; 354 fmd_hdl_ops_t ops; 355 356 const char *conf = NULL; 357 char buf[PATH_MAX]; 358 int i; 359 360 if (mp != (fmd_module_t *)hdl) 361 return (fmd_hdl_register_error(mp, EFMD_HDL_INVAL)); 362 363 fmd_module_lock(mp); 364 365 /* 366 * First perform some sanity checks on our input. The API version must 367 * be supported by FMD and the handle can only be registered once by 368 * the module thread to which we assigned this client handle. The info 369 * provided for the handle must be valid and have the minimal settings. 370 */ 371 if (version > FMD_API_VERSION_3) 372 return (fmd_hdl_register_error(mp, EFMD_VER_NEW)); 373 374 if (version < FMD_API_VERSION_1) 375 return (fmd_hdl_register_error(mp, EFMD_VER_OLD)); 376 377 if (mp->mod_conf != NULL) 378 return (fmd_hdl_register_error(mp, EFMD_HDL_REG)); 379 380 if (pthread_self() != mp->mod_thread->thr_tid) 381 return (fmd_hdl_register_error(mp, EFMD_HDL_TID)); 382 383 if (mip == NULL || mip->fmdi_desc == NULL || 384 mip->fmdi_vers == NULL || mip->fmdi_ops == NULL) 385 return (fmd_hdl_register_error(mp, EFMD_HDL_INFO)); 386 387 /* 388 * Copy the module's ops vector into a local variable to account for 389 * changes in the module ABI. Then if any of the optional entry points 390 * are NULL, set them to nop so we don't have to check before calling. 391 */ 392 bzero(&ops, sizeof (ops)); 393 394 if (version < FMD_API_VERSION_3) 395 bcopy(mip->fmdi_ops, &ops, sizeof (ops) - sizeof (void *)); 396 else 397 bcopy(mip->fmdi_ops, &ops, sizeof (ops)); 398 399 if (ops.fmdo_recv == NULL) 400 ops.fmdo_recv = (void (*)())fmd_hdl_nop; 401 if (ops.fmdo_timeout == NULL) 402 ops.fmdo_timeout = (void (*)())fmd_hdl_nop; 403 if (ops.fmdo_close == NULL) 404 ops.fmdo_close = (void (*)())fmd_hdl_nop; 405 if (ops.fmdo_stats == NULL) 406 ops.fmdo_stats = (void (*)())fmd_hdl_nop; 407 if (ops.fmdo_gc == NULL) 408 ops.fmdo_gc = (void (*)())fmd_hdl_nop; 409 if (ops.fmdo_send == NULL) 410 ops.fmdo_send = (int (*)())fmd_hdl_nop; 411 412 /* 413 * Make two passes through the property array to initialize the formals 414 * to use for processing the module's .conf file. In the first pass, 415 * we validate the types and count the number of properties. In the 416 * second pass we copy the strings and fill in the appropriate ops. 417 */ 418 for (prop = mip->fmdi_props, i = 0; prop != NULL && 419 prop->fmdp_name != NULL; prop++, i++) { 420 if (prop->fmdp_type >= 421 sizeof (_fmd_prop_ops) / sizeof (_fmd_prop_ops[0])) { 422 fmd_api_xerror(mp, EFMD_HDL_PROP, 423 "property %s uses invalid type %u\n", 424 prop->fmdp_name, prop->fmdp_type); 425 return (fmd_hdl_register_error(mp, EFMD_HDL_PROP)); 426 } 427 } 428 429 mp->mod_argc = i; 430 mp->mod_argv = fmd_zalloc(sizeof (fmd_conf_formal_t) * i, FMD_SLEEP); 431 432 prop = mip->fmdi_props; 433 cfp = mp->mod_argv; 434 435 for (i = 0; i < mp->mod_argc; i++, prop++, cfp++) { 436 cfp->cf_name = fmd_strdup(prop->fmdp_name, FMD_SLEEP); 437 cfp->cf_ops = _fmd_prop_ops[prop->fmdp_type]; 438 cfp->cf_default = fmd_strdup(prop->fmdp_defv, FMD_SLEEP); 439 } 440 441 /* 442 * If this module came from an on-disk file, compute the name of the 443 * corresponding .conf file and parse properties from it if it exists. 444 */ 445 if (mp->mod_path != NULL) { 446 (void) strlcpy(buf, mp->mod_path, sizeof (buf)); 447 (void) fmd_strdirname(buf); 448 449 (void) strlcat(buf, "/", sizeof (buf)); 450 (void) strlcat(buf, mp->mod_name, sizeof (buf)); 451 (void) strlcat(buf, ".conf", sizeof (buf)); 452 453 if (access(buf, F_OK) == 0) 454 conf = buf; 455 } 456 457 if ((mp->mod_conf = fmd_conf_open(conf, 458 mp->mod_argc, mp->mod_argv, 0)) == NULL) 459 return (fmd_hdl_register_error(mp, EFMD_MOD_CONF)); 460 461 fmd_conf_propagate(fmd.d_conf, mp->mod_conf, mp->mod_name); 462 463 /* 464 * Look up the list of the libdiagcode dictionaries associated with the 465 * module. If none were specified, use the value from daemon's config. 466 * We only fail if the module specified an explicit dictionary. 467 */ 468 (void) fmd_conf_getprop(mp->mod_conf, FMD_PROP_DICTIONARIES, &pap); 469 if (pap->cpa_argc == 0 && mp->mod_ops == &fmd_bltin_ops) 470 (void) fmd_conf_getprop(fmd.d_conf, "self.dict", &pap); 471 472 for (i = 0; i < pap->cpa_argc; i++) { 473 if (fmd_module_dc_opendict(mp, pap->cpa_argv[i]) != 0) { 474 fmd_api_xerror(mp, errno, 475 "failed to open dictionary %s", pap->cpa_argv[i]); 476 return (fmd_hdl_register_error(mp, EFMD_MOD_CONF)); 477 } 478 } 479 480 /* 481 * Make a copy of the handle information and store it in mod_info. We 482 * do not need to bother copying fmdi_props since they're already read. 483 */ 484 mp->mod_info = fmd_alloc(sizeof (fmd_hdl_info_t), FMD_SLEEP); 485 mp->mod_info->fmdi_desc = fmd_strdup(mip->fmdi_desc, FMD_SLEEP); 486 mp->mod_info->fmdi_vers = fmd_strdup(mip->fmdi_vers, FMD_SLEEP); 487 mp->mod_info->fmdi_ops = fmd_alloc(sizeof (fmd_hdl_ops_t), FMD_SLEEP); 488 bcopy(&ops, (void *)mp->mod_info->fmdi_ops, sizeof (fmd_hdl_ops_t)); 489 mp->mod_info->fmdi_props = NULL; 490 491 /* 492 * Allocate an FMRI representing this module. We'll use this later 493 * if the module decides to publish any events (e.g. list.suspects). 494 */ 495 mp->mod_fmri = fmd_protocol_fmri_module(mp); 496 497 /* 498 * Any subscriptions specified in the conf file are now stored in the 499 * corresponding property. Add all of these to the dispatch queue. 500 */ 501 (void) fmd_conf_getprop(mp->mod_conf, FMD_PROP_SUBSCRIPTIONS, &pap); 502 503 for (i = 0; i < pap->cpa_argc; i++) { 504 fmd_dispq_insert(fmd.d_disp, mp->mod_queue, pap->cpa_argv[i]); 505 fmd_xprt_subscribe_all(pap->cpa_argv[i]); 506 } 507 508 /* 509 * Unlock the module and restore any pre-existing module checkpoint. 510 * If the checkpoint is missing or corrupt, we just keep going. 511 */ 512 fmd_module_unlock(mp); 513 fmd_ckpt_restore(mp); 514 return (0); 515 } 516 517 /* 518 * If an auxiliary thread exists for the specified module at unregistration 519 * time, send it an asynchronous cancellation to force it to exit and then 520 * join with it (we expect this to either succeed quickly or return ESRCH). 521 * Once this is complete we can destroy the associated fmd_thread_t data. 522 */ 523 static void 524 fmd_module_thrcancel(fmd_idspace_t *ids, id_t id, fmd_module_t *mp) 525 { 526 fmd_thread_t *tp = fmd_idspace_getspecific(ids, id); 527 528 fmd_dprintf(FMD_DBG_MOD, "cancelling %s auxiliary thread %u\n", 529 mp->mod_name, tp->thr_tid); 530 531 ASSERT(tp->thr_tid == id); 532 (void) pthread_cancel(tp->thr_tid); 533 (void) pthread_join(tp->thr_tid, NULL); 534 535 fmd_thread_destroy(tp, FMD_THREAD_NOJOIN); 536 } 537 538 void 539 fmd_module_unregister(fmd_module_t *mp) 540 { 541 fmd_conf_formal_t *cfp = mp->mod_argv; 542 const fmd_conf_path_t *pap; 543 fmd_case_t *cp; 544 fmd_xprt_t *xp; 545 int i; 546 547 TRACE((FMD_DBG_MOD, "unregister %p (%s)", (void *)mp, mp->mod_name)); 548 ASSERT(fmd_module_locked(mp)); 549 550 /* 551 * If any transports are still open, they have send threads that are 552 * using the module handle: shut them down and join with these threads. 553 */ 554 while ((xp = fmd_list_next(&mp->mod_transports)) != NULL) 555 fmd_xprt_destroy(xp); 556 557 /* 558 * If any auxiliary threads exist, they may be using our module handle, 559 * and therefore could cause a fault as soon as we start destroying it. 560 * Module writers should clean up any threads before unregistering: we 561 * forcibly cancel any remaining auxiliary threads before proceeding. 562 */ 563 fmd_idspace_apply(mp->mod_threads, 564 (void (*)())fmd_module_thrcancel, mp); 565 566 if (mp->mod_error == 0) 567 fmd_ckpt_save(mp); /* take one more checkpoint if needed */ 568 569 /* 570 * Delete any cases associated with the module (UNSOLVED, SOLVED, or 571 * CLOSE_WAIT) as if fmdo_close() has finished processing them. 572 */ 573 while ((cp = fmd_list_next(&mp->mod_cases)) != NULL) 574 fmd_case_delete(cp); 575 576 fmd_ustat_delete_references(mp->mod_ustat); 577 (void) fmd_conf_getprop(mp->mod_conf, FMD_PROP_SUBSCRIPTIONS, &pap); 578 579 for (i = 0; i < pap->cpa_argc; i++) { 580 fmd_xprt_unsubscribe_all(pap->cpa_argv[i]); 581 fmd_dispq_delete(fmd.d_disp, mp->mod_queue, pap->cpa_argv[i]); 582 } 583 584 fmd_conf_close(mp->mod_conf); 585 mp->mod_conf = NULL; 586 587 for (i = 0; i < mp->mod_argc; i++, cfp++) { 588 fmd_strfree((char *)cfp->cf_name); 589 fmd_strfree((char *)cfp->cf_default); 590 } 591 592 fmd_free(mp->mod_argv, sizeof (fmd_conf_formal_t) * mp->mod_argc); 593 mp->mod_argv = NULL; 594 mp->mod_argc = 0; 595 596 nvlist_free(mp->mod_fmri); 597 mp->mod_fmri = NULL; 598 599 fmd_strfree((char *)mp->mod_info->fmdi_desc); 600 fmd_strfree((char *)mp->mod_info->fmdi_vers); 601 fmd_free((void *)mp->mod_info->fmdi_ops, sizeof (fmd_hdl_ops_t)); 602 fmd_free(mp->mod_info, sizeof (fmd_hdl_info_t)); 603 mp->mod_info = NULL; 604 605 fmd_eventq_abort(mp->mod_queue); 606 } 607 608 void 609 fmd_hdl_unregister(fmd_hdl_t *hdl) 610 { 611 fmd_module_t *mp = fmd_api_module_lock(hdl); 612 fmd_module_unregister(mp); 613 fmd_module_unlock(mp); 614 } 615 616 void 617 fmd_hdl_subscribe(fmd_hdl_t *hdl, const char *class) 618 { 619 fmd_module_t *mp = fmd_api_module_lock(hdl); 620 621 if (fmd_conf_setprop(mp->mod_conf, 622 FMD_PROP_SUBSCRIPTIONS, class) == 0) { 623 fmd_dispq_insert(fmd.d_disp, mp->mod_queue, class); 624 fmd_xprt_subscribe_all(class); 625 } 626 627 fmd_module_unlock(mp); 628 } 629 630 631 void 632 fmd_hdl_unsubscribe(fmd_hdl_t *hdl, const char *class) 633 { 634 fmd_module_t *mp = fmd_api_module_lock(hdl); 635 636 if (fmd_conf_delprop(mp->mod_conf, 637 FMD_PROP_SUBSCRIPTIONS, class) == 0) { 638 fmd_xprt_unsubscribe_all(class); 639 fmd_dispq_delete(fmd.d_disp, mp->mod_queue, class); 640 } 641 642 fmd_module_unlock(mp); 643 fmd_eventq_cancel(mp->mod_queue, FMD_EVT_PROTOCOL, (void *)class); 644 } 645 646 void 647 fmd_hdl_setspecific(fmd_hdl_t *hdl, void *spec) 648 { 649 fmd_module_t *mp = fmd_api_module_lock(hdl); 650 651 mp->mod_spec = spec; 652 fmd_module_unlock(mp); 653 } 654 655 void * 656 fmd_hdl_getspecific(fmd_hdl_t *hdl) 657 { 658 fmd_module_t *mp = fmd_api_module_lock(hdl); 659 void *spec = mp->mod_spec; 660 661 fmd_module_unlock(mp); 662 return (spec); 663 } 664 665 void 666 fmd_hdl_opendict(fmd_hdl_t *hdl, const char *dict) 667 { 668 fmd_module_t *mp = fmd_api_module_lock(hdl); 669 const fmd_conf_path_t *pap; 670 int i; 671 672 /* 673 * Update the dictionary property in order to preserve the list of 674 * pathnames and expand any % tokens in the path. Then retrieve the 675 * new dictionary names from cpa_argv[] and open them one at a time. 676 */ 677 (void) fmd_conf_setprop(mp->mod_conf, FMD_PROP_DICTIONARIES, dict); 678 (void) fmd_conf_getprop(mp->mod_conf, FMD_PROP_DICTIONARIES, &pap); 679 680 ASSERT(pap->cpa_argc > mp->mod_dictc); 681 682 for (i = mp->mod_dictc; i < pap->cpa_argc; i++) { 683 if (fmd_module_dc_opendict(mp, pap->cpa_argv[i]) != 0) { 684 fmd_api_error(mp, EFMD_MOD_DICT, 685 "failed to open dictionary %s for module %s", 686 pap->cpa_argv[i], mp->mod_name); 687 } 688 } 689 690 fmd_module_unlock(mp); 691 } 692 693 topo_hdl_t * 694 fmd_hdl_topology(fmd_hdl_t *hdl, int v) 695 { 696 fmd_module_t *mp = fmd_api_module_lock(hdl); 697 topo_hdl_t *thp; 698 699 if (v != TOPO_VERSION) { 700 fmd_api_error(mp, EFMD_MOD_TOPO, "libtopo version mismatch: " 701 "fmd version %d != client version %d\n", TOPO_VERSION, v); 702 } 703 704 thp = fmd.d_topo; 705 fmd_module_unlock(mp); 706 return (thp); 707 } 708 709 void * 710 fmd_hdl_alloc(fmd_hdl_t *hdl, size_t size, int flags) 711 { 712 fmd_module_t *mp = fmd_api_module_lock(hdl); 713 void *data; 714 715 if (mp->mod_stats->ms_memlimit.fmds_value.ui64 - 716 mp->mod_stats->ms_memtotal.fmds_value.ui64 < size) { 717 fmd_api_error(mp, EFMD_HDL_NOMEM, "%s's allocation of %lu " 718 "bytes exceeds module memory limit (%llu)\n", 719 mp->mod_name, (ulong_t)size, (u_longlong_t) 720 mp->mod_stats->ms_memtotal.fmds_value.ui64); 721 } 722 723 if ((data = fmd_alloc(size, flags)) != NULL) 724 mp->mod_stats->ms_memtotal.fmds_value.ui64 += size; 725 726 fmd_module_unlock(mp); 727 return (data); 728 } 729 730 void * 731 fmd_hdl_zalloc(fmd_hdl_t *hdl, size_t size, int flags) 732 { 733 void *data = fmd_hdl_alloc(hdl, size, flags); 734 735 if (data != NULL) 736 bzero(data, size); 737 738 return (data); 739 } 740 741 void 742 fmd_hdl_free(fmd_hdl_t *hdl, void *data, size_t size) 743 { 744 fmd_module_t *mp = fmd_api_module_lock(hdl); 745 746 fmd_free(data, size); 747 mp->mod_stats->ms_memtotal.fmds_value.ui64 -= size; 748 749 fmd_module_unlock(mp); 750 } 751 752 char * 753 fmd_hdl_strdup(fmd_hdl_t *hdl, const char *s, int flags) 754 { 755 char *p; 756 757 if (s != NULL) 758 p = fmd_hdl_alloc(hdl, strlen(s) + 1, flags); 759 else 760 p = NULL; 761 762 if (p != NULL) 763 (void) strcpy(p, s); 764 765 return (p); 766 } 767 768 void 769 fmd_hdl_strfree(fmd_hdl_t *hdl, char *s) 770 { 771 if (s != NULL) 772 fmd_hdl_free(hdl, s, strlen(s) + 1); 773 } 774 775 void 776 fmd_hdl_vabort(fmd_hdl_t *hdl, const char *format, va_list ap) 777 { 778 fmd_api_verror(fmd_api_module_lock(hdl), EFMD_HDL_ABORT, format, ap); 779 } 780 781 /*PRINTFLIKE2*/ 782 void 783 fmd_hdl_abort(fmd_hdl_t *hdl, const char *format, ...) 784 { 785 fmd_module_t *mp = fmd_api_module_lock(hdl); 786 va_list ap; 787 788 va_start(ap, format); 789 fmd_api_verror(mp, EFMD_HDL_ABORT, format, ap); 790 va_end(ap); 791 } 792 793 void 794 fmd_hdl_verror(fmd_hdl_t *hdl, const char *format, va_list ap) 795 { 796 fmd_module_t *mp = fmd_api_module_lock(hdl); 797 fmd_api_vxerror(mp, errno, format, ap); 798 fmd_module_unlock(mp); 799 } 800 801 /*PRINTFLIKE2*/ 802 void 803 fmd_hdl_error(fmd_hdl_t *hdl, const char *format, ...) 804 { 805 va_list ap; 806 807 va_start(ap, format); 808 fmd_hdl_verror(hdl, format, ap); 809 va_end(ap); 810 } 811 812 void 813 fmd_hdl_vdebug(fmd_hdl_t *hdl, const char *format, va_list ap) 814 { 815 fmd_module_t *mp = fmd_api_module_lock(hdl); 816 817 char *msg; 818 size_t len; 819 char c; 820 821 if (!(fmd.d_hdl_debug)) { 822 mp->mod_stats->ms_debugdrop.fmds_value.ui64++; 823 fmd_module_unlock(mp); 824 return; 825 } 826 827 len = vsnprintf(&c, 1, format, ap); 828 829 if ((msg = fmd_alloc(len + 2, FMD_NOSLEEP)) == NULL) { 830 mp->mod_stats->ms_debugdrop.fmds_value.ui64++; 831 fmd_module_unlock(mp); 832 return; 833 } 834 835 (void) vsnprintf(msg, len + 1, format, ap); 836 837 if (msg[len - 1] != '\n') 838 (void) strcpy(&msg[len], "\n"); 839 840 if (fmd.d_hdl_dbout & FMD_DBOUT_STDERR) { 841 (void) pthread_mutex_lock(&fmd.d_err_lock); 842 (void) fprintf(stderr, "%s DEBUG: %s: %s", 843 fmd.d_pname, mp->mod_name, msg); 844 (void) pthread_mutex_unlock(&fmd.d_err_lock); 845 } 846 847 if (fmd.d_hdl_dbout & FMD_DBOUT_SYSLOG) { 848 syslog(LOG_DEBUG | LOG_DAEMON, "%s DEBUG: %s: %s", 849 fmd.d_pname, mp->mod_name, msg); 850 } 851 852 fmd_free(msg, len + 2); 853 fmd_module_unlock(mp); 854 } 855 856 /*PRINTFLIKE2*/ 857 void 858 fmd_hdl_debug(fmd_hdl_t *hdl, const char *format, ...) 859 { 860 va_list ap; 861 862 va_start(ap, format); 863 fmd_hdl_vdebug(hdl, format, ap); 864 va_end(ap); 865 } 866 867 int32_t 868 fmd_prop_get_int32(fmd_hdl_t *hdl, const char *name) 869 { 870 fmd_module_t *mp = fmd_api_module_lock(hdl); 871 const fmd_conf_ops_t *ops = fmd_conf_gettype(mp->mod_conf, name); 872 int32_t value = 0; 873 874 if (ops == &fmd_conf_bool || ops == &fmd_conf_int32 || 875 ops == &fmd_conf_uint32) 876 (void) fmd_conf_getprop(mp->mod_conf, name, &value); 877 else if (ops != NULL) { 878 fmd_api_error(mp, EFMD_PROP_TYPE, 879 "property %s is not of int32 type\n", name); 880 } else { 881 fmd_api_error(mp, EFMD_PROP_DEFN, 882 "property %s is not defined\n", name); 883 } 884 885 fmd_module_unlock(mp); 886 return (value); 887 } 888 889 int64_t 890 fmd_prop_get_int64(fmd_hdl_t *hdl, const char *name) 891 { 892 fmd_module_t *mp = fmd_api_module_lock(hdl); 893 const fmd_conf_ops_t *ops = fmd_conf_gettype(mp->mod_conf, name); 894 int64_t value = 0; 895 896 if (ops == &fmd_conf_int64 || ops == &fmd_conf_uint64 || 897 ops == &fmd_conf_time || ops == &fmd_conf_size) 898 (void) fmd_conf_getprop(mp->mod_conf, name, &value); 899 else if (ops != NULL) { 900 fmd_api_error(mp, EFMD_PROP_TYPE, 901 "property %s is not of int64 type\n", name); 902 } else { 903 fmd_api_error(mp, EFMD_PROP_DEFN, 904 "property %s is not defined\n", name); 905 } 906 907 fmd_module_unlock(mp); 908 return (value); 909 } 910 911 char * 912 fmd_prop_get_string(fmd_hdl_t *hdl, const char *name) 913 { 914 fmd_module_t *mp = fmd_api_module_lock(hdl); 915 const fmd_conf_ops_t *ops = fmd_conf_gettype(mp->mod_conf, name); 916 char *value = NULL; 917 const char *s; 918 919 if (ops == &fmd_conf_string) { 920 (void) fmd_conf_getprop(mp->mod_conf, name, &s); 921 value = fmd_strdup(s, FMD_SLEEP); 922 } else if (ops != NULL) { 923 fmd_api_error(mp, EFMD_PROP_TYPE, 924 "property %s is not of string type\n", name); 925 } else { 926 fmd_api_error(mp, EFMD_PROP_DEFN, 927 "property %s is not defined\n", name); 928 } 929 930 fmd_module_unlock(mp); 931 return (value); 932 } 933 934 void 935 fmd_prop_free_string(fmd_hdl_t *hdl, char *s) 936 { 937 fmd_module_t *mp = fmd_api_module_lock(hdl); 938 fmd_strfree(s); 939 fmd_module_unlock(mp); 940 } 941 942 fmd_stat_t * 943 fmd_stat_create(fmd_hdl_t *hdl, uint_t flags, uint_t argc, fmd_stat_t *argv) 944 { 945 fmd_module_t *mp = fmd_api_module_lock(hdl); 946 fmd_stat_t *ep, *sp; 947 948 if (flags & ~FMD_STAT_ALLOC) { 949 fmd_api_error(mp, EFMD_STAT_FLAGS, 950 "invalid flags 0x%x passed to fmd_stat_create\n", flags); 951 } 952 953 if ((sp = fmd_ustat_insert(mp->mod_ustat, 954 flags | FMD_USTAT_VALIDATE, argc, argv, &ep)) == NULL) { 955 fmd_api_error(mp, errno, 956 "failed to publish stat '%s'", ep->fmds_name); 957 } 958 959 fmd_module_unlock(mp); 960 return (sp); 961 } 962 963 void 964 fmd_stat_destroy(fmd_hdl_t *hdl, uint_t argc, fmd_stat_t *argv) 965 { 966 fmd_module_t *mp = fmd_api_module_lock(hdl); 967 fmd_ustat_delete(mp->mod_ustat, argc, argv); 968 fmd_module_unlock(mp); 969 } 970 971 void 972 fmd_stat_setstr(fmd_hdl_t *hdl, fmd_stat_t *sp, const char *s) 973 { 974 char *str = fmd_strdup(s, FMD_SLEEP); 975 fmd_module_t *mp = fmd_api_module_lock(hdl); 976 977 if (sp->fmds_type != FMD_TYPE_STRING) { 978 fmd_strfree(str); 979 fmd_api_error(mp, EFMD_STAT_TYPE, 980 "stat '%s' is not a string\n", sp->fmds_name); 981 } 982 983 fmd_strfree(sp->fmds_value.str); 984 sp->fmds_value.str = str; 985 986 fmd_module_unlock(mp); 987 } 988 989 fmd_case_t * 990 fmd_case_open(fmd_hdl_t *hdl, void *data) 991 { 992 fmd_module_t *mp = fmd_api_module_lock(hdl); 993 fmd_case_t *cp = fmd_case_create(mp, data); 994 fmd_module_unlock(mp); 995 return (cp); 996 } 997 998 void 999 fmd_case_reset(fmd_hdl_t *hdl, fmd_case_t *cp) 1000 { 1001 fmd_module_t *mp = fmd_api_module_lock(hdl); 1002 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1003 1004 if (cip->ci_state >= FMD_CASE_SOLVED) { 1005 fmd_api_error(mp, EFMD_CASE_STATE, "cannot solve %s: " 1006 "case is already solved or closed\n", cip->ci_uuid); 1007 } 1008 1009 fmd_case_reset_suspects(cp); 1010 fmd_module_unlock(mp); 1011 } 1012 1013 void 1014 fmd_case_solve(fmd_hdl_t *hdl, fmd_case_t *cp) 1015 { 1016 fmd_module_t *mp = fmd_api_module_lock(hdl); 1017 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1018 1019 if (cip->ci_state >= FMD_CASE_SOLVED) { 1020 fmd_api_error(mp, EFMD_CASE_STATE, "cannot solve %s: " 1021 "case is already solved or closed\n", cip->ci_uuid); 1022 } 1023 1024 fmd_case_transition(cp, FMD_CASE_SOLVED, FMD_CF_SOLVED); 1025 fmd_module_unlock(mp); 1026 } 1027 1028 void 1029 fmd_case_close(fmd_hdl_t *hdl, fmd_case_t *cp) 1030 { 1031 fmd_module_t *mp = fmd_api_module_lock(hdl); 1032 1033 (void) fmd_api_case_impl(mp, cp); /* validate 'cp' */ 1034 fmd_case_transition(cp, FMD_CASE_CLOSE_WAIT, FMD_CF_ISOLATED); 1035 1036 fmd_module_unlock(mp); 1037 } 1038 1039 const char * 1040 fmd_case_uuid(fmd_hdl_t *hdl, fmd_case_t *cp) 1041 { 1042 fmd_module_t *mp = fmd_api_module_lock(hdl); 1043 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1044 const char *uuid = cip->ci_uuid; 1045 1046 fmd_module_unlock(mp); 1047 return (uuid); 1048 } 1049 1050 fmd_case_t * 1051 fmd_case_uulookup(fmd_hdl_t *hdl, const char *uuid) 1052 { 1053 fmd_module_t *cmp, *mp = fmd_api_module_lock(hdl); 1054 fmd_case_t *cp = fmd_case_hash_lookup(fmd.d_cases, uuid); 1055 1056 if (cp != NULL) { 1057 cmp = ((fmd_case_impl_t *)cp)->ci_mod; 1058 fmd_case_rele(cp); 1059 } else 1060 cmp = NULL; 1061 1062 fmd_module_unlock(mp); 1063 return (cmp == mp ? cp : NULL); 1064 } 1065 1066 void 1067 fmd_case_uuclose(fmd_hdl_t *hdl, const char *uuid) 1068 { 1069 fmd_module_t *mp = fmd_api_module_lock(hdl); 1070 fmd_case_t *cp = fmd_case_hash_lookup(fmd.d_cases, uuid); 1071 1072 if (cp != NULL) { 1073 fmd_case_transition(cp, FMD_CASE_CLOSE_WAIT, FMD_CF_ISOLATED); 1074 fmd_case_rele(cp); 1075 } 1076 1077 fmd_module_unlock(mp); 1078 } 1079 1080 int 1081 fmd_case_uuclosed(fmd_hdl_t *hdl, const char *uuid) 1082 { 1083 fmd_module_t *mp = fmd_api_module_lock(hdl); 1084 fmd_case_t *cp = fmd_case_hash_lookup(fmd.d_cases, uuid); 1085 fmd_case_impl_t *cip = (fmd_case_impl_t *)cp; 1086 int rv = FMD_B_TRUE; 1087 1088 if (cip != NULL) { 1089 rv = cip->ci_state >= FMD_CASE_CLOSE_WAIT; 1090 fmd_case_rele(cp); 1091 } 1092 1093 fmd_module_unlock(mp); 1094 return (rv); 1095 } 1096 1097 static int 1098 fmd_case_instate(fmd_hdl_t *hdl, fmd_case_t *cp, uint_t state) 1099 { 1100 fmd_module_t *mp = fmd_api_module_lock(hdl); 1101 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1102 int rv = cip->ci_state >= state; 1103 1104 fmd_module_unlock(mp); 1105 return (rv); 1106 } 1107 1108 int 1109 fmd_case_solved(fmd_hdl_t *hdl, fmd_case_t *cp) 1110 { 1111 return (fmd_case_instate(hdl, cp, FMD_CASE_SOLVED)); 1112 } 1113 1114 int 1115 fmd_case_closed(fmd_hdl_t *hdl, fmd_case_t *cp) 1116 { 1117 return (fmd_case_instate(hdl, cp, FMD_CASE_CLOSE_WAIT)); 1118 } 1119 1120 void 1121 fmd_case_add_ereport(fmd_hdl_t *hdl, fmd_case_t *cp, fmd_event_t *ep) 1122 { 1123 fmd_module_t *mp = fmd_api_module_lock(hdl); 1124 1125 (void) fmd_api_case_impl(mp, cp); /* validate 'cp' */ 1126 1127 if (fmd_case_insert_event(cp, ep)) 1128 mp->mod_stats->ms_accepted.fmds_value.ui64++; 1129 1130 fmd_module_unlock(mp); 1131 } 1132 1133 void 1134 fmd_case_add_serd(fmd_hdl_t *hdl, fmd_case_t *cp, const char *name) 1135 { 1136 fmd_module_t *mp = fmd_api_module_lock(hdl); 1137 fmd_serd_elem_t *sep; 1138 fmd_serd_eng_t *sgp; 1139 1140 if ((sgp = fmd_serd_eng_lookup(&mp->mod_serds, name)) == NULL) { 1141 fmd_api_error(mp, EFMD_SERD_NAME, 1142 "failed to add events from serd engine '%s'", name); 1143 } 1144 1145 (void) fmd_api_case_impl(mp, cp); /* validate 'cp' */ 1146 1147 for (sep = fmd_list_next(&sgp->sg_list); 1148 sep != NULL; sep = fmd_list_next(sep)) { 1149 if (fmd_case_insert_event(cp, sep->se_event)) 1150 mp->mod_stats->ms_accepted.fmds_value.ui64++; 1151 } 1152 1153 fmd_module_unlock(mp); 1154 } 1155 1156 void 1157 fmd_case_add_suspect(fmd_hdl_t *hdl, fmd_case_t *cp, nvlist_t *nvl) 1158 { 1159 fmd_module_t *mp = fmd_api_module_lock(hdl); 1160 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1161 char *class; 1162 1163 if (cip->ci_state >= FMD_CASE_SOLVED) { 1164 fmd_api_error(mp, EFMD_CASE_STATE, "cannot add suspect to " 1165 "%s: case is already solved or closed\n", cip->ci_uuid); 1166 } 1167 1168 if (nvlist_lookup_string(nvl, FM_CLASS, &class) != 0 || 1169 class == NULL || *class == '\0') { 1170 fmd_api_error(mp, EFMD_CASE_EVENT, "cannot add suspect to " 1171 "%s: suspect event is missing a class\n", cip->ci_uuid); 1172 } 1173 1174 fmd_case_insert_suspect(cp, nvl); 1175 fmd_module_unlock(mp); 1176 } 1177 1178 void 1179 fmd_case_setspecific(fmd_hdl_t *hdl, fmd_case_t *cp, void *data) 1180 { 1181 fmd_module_t *mp = fmd_api_module_lock(hdl); 1182 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1183 1184 (void) pthread_mutex_lock(&cip->ci_lock); 1185 cip->ci_data = data; 1186 (void) pthread_mutex_unlock(&cip->ci_lock); 1187 1188 fmd_module_unlock(mp); 1189 } 1190 1191 void * 1192 fmd_case_getspecific(fmd_hdl_t *hdl, fmd_case_t *cp) 1193 { 1194 fmd_module_t *mp = fmd_api_module_lock(hdl); 1195 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1196 void *data; 1197 1198 (void) pthread_mutex_lock(&cip->ci_lock); 1199 data = cip->ci_data; 1200 (void) pthread_mutex_unlock(&cip->ci_lock); 1201 1202 fmd_module_unlock(mp); 1203 return (data); 1204 } 1205 1206 void 1207 fmd_case_setprincipal(fmd_hdl_t *hdl, fmd_case_t *cp, fmd_event_t *ep) 1208 { 1209 fmd_module_t *mp = fmd_api_module_lock(hdl); 1210 1211 (void) fmd_api_case_impl(mp, cp); /* validate 'cp' */ 1212 1213 if (fmd_case_insert_principal(cp, ep)) 1214 mp->mod_stats->ms_accepted.fmds_value.ui64++; 1215 1216 fmd_module_unlock(mp); 1217 } 1218 1219 fmd_event_t * 1220 fmd_case_getprincipal(fmd_hdl_t *hdl, fmd_case_t *cp) 1221 { 1222 fmd_module_t *mp = fmd_api_module_lock(hdl); 1223 fmd_case_impl_t *cip = fmd_api_case_impl(mp, cp); 1224 fmd_event_t *ep; 1225 1226 (void) pthread_mutex_lock(&cip->ci_lock); 1227 ep = cip->ci_principal; 1228 (void) pthread_mutex_unlock(&cip->ci_lock); 1229 1230 fmd_module_unlock(mp); 1231 return (ep); 1232 } 1233 1234 fmd_case_t * 1235 fmd_case_next(fmd_hdl_t *hdl, fmd_case_t *cp) 1236 { 1237 fmd_module_t *mp = fmd_api_module_lock(hdl); 1238 1239 if (cp != NULL) 1240 cp = fmd_list_next(fmd_api_case_impl(mp, cp)); 1241 else 1242 cp = fmd_list_next(&mp->mod_cases); 1243 1244 fmd_module_unlock(mp); 1245 return (cp); 1246 } 1247 1248 fmd_case_t * 1249 fmd_case_prev(fmd_hdl_t *hdl, fmd_case_t *cp) 1250 { 1251 fmd_module_t *mp = fmd_api_module_lock(hdl); 1252 1253 if (cp != NULL) 1254 cp = fmd_list_prev(fmd_api_case_impl(mp, cp)); 1255 else 1256 cp = fmd_list_prev(&mp->mod_cases); 1257 1258 fmd_module_unlock(mp); 1259 return (cp); 1260 } 1261 1262 /* 1263 * Utility function for fmd_buf_* routines. If a case is specified, use the 1264 * case's ci_bufs hash; otherwise use the module's global mod_bufs hash. 1265 */ 1266 static fmd_buf_hash_t * 1267 fmd_buf_gethash(fmd_module_t *mp, fmd_case_t *cp) 1268 { 1269 return (cp ? &fmd_api_case_impl(mp, cp)->ci_bufs : &mp->mod_bufs); 1270 } 1271 1272 void 1273 fmd_buf_create(fmd_hdl_t *hdl, fmd_case_t *cp, const char *name, size_t size) 1274 { 1275 fmd_module_t *mp = fmd_api_module_lock(hdl); 1276 fmd_buf_hash_t *bhp = fmd_buf_gethash(mp, cp); 1277 fmd_buf_t *bp = fmd_buf_lookup(bhp, name); 1278 1279 if (bp == NULL) { 1280 if (fmd_strbadid(name, FMD_B_TRUE) != NULL || size == 0) { 1281 fmd_api_error(mp, EFMD_BUF_INVAL, "cannot create '%s' " 1282 "(size %lu): %s\n", name, (ulong_t)size, 1283 fmd_strerror(EFMD_BUF_INVAL)); 1284 } 1285 1286 if (mp->mod_stats->ms_buflimit.fmds_value.ui64 - 1287 mp->mod_stats->ms_buftotal.fmds_value.ui64 < size) { 1288 fmd_api_error(mp, EFMD_BUF_LIMIT, "cannot create '%s': " 1289 "buf limit exceeded (%llu)\n", name, (u_longlong_t) 1290 mp->mod_stats->ms_buflimit.fmds_value.ui64); 1291 } 1292 1293 mp->mod_stats->ms_buftotal.fmds_value.ui64 += size; 1294 bp = fmd_buf_insert(bhp, name, size); 1295 1296 } else { 1297 fmd_api_error(mp, EFMD_BUF_EXISTS, 1298 "cannot create '%s': buffer already exists\n", name); 1299 } 1300 1301 if (cp != NULL) 1302 fmd_case_setdirty(cp); 1303 else 1304 fmd_module_setdirty(mp); 1305 1306 fmd_module_unlock(mp); 1307 } 1308 1309 void 1310 fmd_buf_destroy(fmd_hdl_t *hdl, fmd_case_t *cp, const char *name) 1311 { 1312 fmd_module_t *mp = fmd_api_module_lock(hdl); 1313 fmd_buf_hash_t *bhp = fmd_buf_gethash(mp, cp); 1314 fmd_buf_t *bp = fmd_buf_lookup(bhp, name); 1315 1316 if (bp != NULL) { 1317 mp->mod_stats->ms_buftotal.fmds_value.ui64 -= bp->buf_size; 1318 fmd_buf_delete(bhp, name); 1319 1320 if (cp != NULL) 1321 fmd_case_setdirty(cp); 1322 else 1323 fmd_module_setdirty(mp); 1324 } 1325 1326 fmd_module_unlock(mp); 1327 } 1328 1329 void 1330 fmd_buf_read(fmd_hdl_t *hdl, fmd_case_t *cp, 1331 const char *name, void *buf, size_t size) 1332 { 1333 fmd_module_t *mp = fmd_api_module_lock(hdl); 1334 fmd_buf_t *bp = fmd_buf_lookup(fmd_buf_gethash(mp, cp), name); 1335 1336 if (bp == NULL) { 1337 fmd_api_error(mp, EFMD_BUF_NOENT, "no buf named '%s' is " 1338 "associated with %s\n", name, cp ? "case" : "module"); 1339 } 1340 1341 bcopy(bp->buf_data, buf, MIN(bp->buf_size, size)); 1342 if (size > bp->buf_size) 1343 bzero((char *)buf + bp->buf_size, size - bp->buf_size); 1344 1345 fmd_module_unlock(mp); 1346 } 1347 1348 void 1349 fmd_buf_write(fmd_hdl_t *hdl, fmd_case_t *cp, 1350 const char *name, const void *buf, size_t size) 1351 { 1352 fmd_module_t *mp = fmd_api_module_lock(hdl); 1353 fmd_buf_hash_t *bhp = fmd_buf_gethash(mp, cp); 1354 fmd_buf_t *bp = fmd_buf_lookup(bhp, name); 1355 1356 if (bp == NULL) { 1357 if (fmd_strbadid(name, FMD_B_TRUE) != NULL || size == 0) { 1358 fmd_api_error(mp, EFMD_BUF_INVAL, "cannot write '%s' " 1359 "(size %lu): %s\n", name, (ulong_t)size, 1360 fmd_strerror(EFMD_BUF_INVAL)); 1361 } 1362 1363 if (mp->mod_stats->ms_buflimit.fmds_value.ui64 - 1364 mp->mod_stats->ms_buftotal.fmds_value.ui64 < size) { 1365 fmd_api_error(mp, EFMD_BUF_LIMIT, "cannot write '%s': " 1366 "buf limit exceeded (%llu)\n", name, (u_longlong_t) 1367 mp->mod_stats->ms_buflimit.fmds_value.ui64); 1368 } 1369 1370 mp->mod_stats->ms_buftotal.fmds_value.ui64 += size; 1371 bp = fmd_buf_insert(bhp, name, size); 1372 1373 } else if (size > bp->buf_size) { 1374 fmd_api_error(mp, EFMD_BUF_OFLOW, 1375 "write to buf '%s' overflows buf size (%lu > %lu)\n", 1376 name, (ulong_t)size, (ulong_t)bp->buf_size); 1377 } 1378 1379 bcopy(buf, bp->buf_data, MIN(bp->buf_size, size)); 1380 bp->buf_flags |= FMD_BUF_DIRTY; 1381 1382 if (cp != NULL) 1383 fmd_case_setdirty(cp); 1384 else 1385 fmd_module_setdirty(mp); 1386 1387 fmd_module_unlock(mp); 1388 } 1389 1390 size_t 1391 fmd_buf_size(fmd_hdl_t *hdl, fmd_case_t *cp, const char *name) 1392 { 1393 fmd_module_t *mp = fmd_api_module_lock(hdl); 1394 fmd_buf_hash_t *bhp = fmd_buf_gethash(mp, cp); 1395 1396 fmd_buf_t *bp; 1397 size_t size; 1398 1399 if ((bp = fmd_buf_lookup(bhp, name)) != NULL) 1400 size = bp->buf_size; 1401 else 1402 size = 0; 1403 1404 fmd_module_unlock(mp); 1405 return (size); 1406 } 1407 1408 void 1409 fmd_serd_create(fmd_hdl_t *hdl, const char *name, uint_t n, hrtime_t t) 1410 { 1411 fmd_module_t *mp = fmd_api_module_lock(hdl); 1412 1413 if (fmd_serd_eng_lookup(&mp->mod_serds, name) != NULL) { 1414 fmd_api_error(mp, EFMD_SERD_EXISTS, 1415 "failed to create serd engine '%s': %s\n", 1416 name, fmd_strerror(EFMD_SERD_EXISTS)); 1417 } 1418 1419 (void) fmd_serd_eng_insert(&mp->mod_serds, name, n, t); 1420 fmd_module_setdirty(mp); 1421 fmd_module_unlock(mp); 1422 } 1423 1424 void 1425 fmd_serd_destroy(fmd_hdl_t *hdl, const char *name) 1426 { 1427 fmd_module_t *mp = fmd_api_module_lock(hdl); 1428 1429 fmd_serd_eng_delete(&mp->mod_serds, name); 1430 fmd_module_setdirty(mp); 1431 fmd_module_unlock(mp); 1432 } 1433 1434 int 1435 fmd_serd_exists(fmd_hdl_t *hdl, const char *name) 1436 { 1437 fmd_module_t *mp = fmd_api_module_lock(hdl); 1438 int rv = (fmd_serd_eng_lookup(&mp->mod_serds, name) != NULL); 1439 fmd_module_unlock(mp); 1440 1441 return (rv); 1442 } 1443 1444 void 1445 fmd_serd_reset(fmd_hdl_t *hdl, const char *name) 1446 { 1447 fmd_module_t *mp = fmd_api_module_lock(hdl); 1448 fmd_serd_eng_t *sgp; 1449 1450 if ((sgp = fmd_serd_eng_lookup(&mp->mod_serds, name)) == NULL) { 1451 fmd_api_error(mp, EFMD_SERD_NAME, 1452 "serd engine '%s' does not exist\n", name); 1453 } 1454 1455 fmd_serd_eng_reset(sgp); 1456 fmd_module_setdirty(mp); 1457 fmd_module_unlock(mp); 1458 } 1459 1460 int 1461 fmd_serd_record(fmd_hdl_t *hdl, const char *name, fmd_event_t *ep) 1462 { 1463 fmd_module_t *mp = fmd_api_module_lock(hdl); 1464 fmd_serd_eng_t *sgp; 1465 int err; 1466 1467 if ((sgp = fmd_serd_eng_lookup(&mp->mod_serds, name)) == NULL) { 1468 fmd_api_error(mp, EFMD_SERD_NAME, 1469 "failed to add record to serd engine '%s'", name); 1470 } 1471 1472 err = fmd_serd_eng_record(sgp, ep); 1473 1474 if (sgp->sg_flags & FMD_SERD_DIRTY) 1475 fmd_module_setdirty(mp); 1476 1477 fmd_module_unlock(mp); 1478 return (err); 1479 } 1480 1481 int 1482 fmd_serd_fired(fmd_hdl_t *hdl, const char *name) 1483 { 1484 fmd_module_t *mp = fmd_api_module_lock(hdl); 1485 fmd_serd_eng_t *sgp; 1486 int err; 1487 1488 if ((sgp = fmd_serd_eng_lookup(&mp->mod_serds, name)) == NULL) { 1489 fmd_api_error(mp, EFMD_SERD_NAME, 1490 "serd engine '%s' does not exist\n", name); 1491 } 1492 1493 err = fmd_serd_eng_fired(sgp); 1494 fmd_module_unlock(mp); 1495 return (err); 1496 } 1497 1498 int 1499 fmd_serd_empty(fmd_hdl_t *hdl, const char *name) 1500 { 1501 fmd_module_t *mp = fmd_api_module_lock(hdl); 1502 fmd_serd_eng_t *sgp; 1503 int empty; 1504 1505 if ((sgp = fmd_serd_eng_lookup(&mp->mod_serds, name)) == NULL) { 1506 fmd_api_error(mp, EFMD_SERD_NAME, 1507 "serd engine '%s' does not exist\n", name); 1508 } 1509 1510 empty = fmd_serd_eng_empty(sgp); 1511 fmd_module_unlock(mp); 1512 return (empty); 1513 } 1514 1515 pthread_t 1516 fmd_thr_create(fmd_hdl_t *hdl, void (*func)(void *), void *arg) 1517 { 1518 fmd_module_t *mp = fmd_api_module_lock(hdl); 1519 fmd_thread_t *tp; 1520 pthread_t tid; 1521 1522 if (mp->mod_stats->ms_thrtotal.fmds_value.ui32 >= 1523 mp->mod_stats->ms_thrlimit.fmds_value.ui32) { 1524 fmd_api_error(mp, EFMD_THR_LIMIT, "%s request to create an " 1525 "auxiliary thread exceeds module thread limit (%u)\n", 1526 mp->mod_name, mp->mod_stats->ms_thrlimit.fmds_value.ui32); 1527 } 1528 1529 if ((tp = fmd_thread_create(mp, func, arg)) == NULL) { 1530 fmd_api_error(mp, EFMD_THR_CREATE, 1531 "failed to create auxiliary thread"); 1532 } 1533 1534 tid = tp->thr_tid; 1535 mp->mod_stats->ms_thrtotal.fmds_value.ui32++; 1536 (void) fmd_idspace_xalloc(mp->mod_threads, tid, tp); 1537 1538 fmd_module_unlock(mp); 1539 return (tid); 1540 } 1541 1542 void 1543 fmd_thr_destroy(fmd_hdl_t *hdl, pthread_t tid) 1544 { 1545 fmd_module_t *mp = fmd_api_module_lock(hdl); 1546 fmd_thread_t *tp; 1547 int err; 1548 1549 if (pthread_self() == tid) { 1550 fmd_api_error(mp, EFMD_THR_INVAL, "auxiliary thread tried to " 1551 "destroy itself (tid %u)\n", tid); 1552 } 1553 1554 if ((tp = fmd_idspace_getspecific(mp->mod_threads, tid)) == NULL) { 1555 fmd_api_error(mp, EFMD_THR_INVAL, "auxiliary thread tried to " 1556 "destroy an invalid thread (tid %u)\n", tid); 1557 } 1558 1559 /* 1560 * Wait for the specified thread to exit and then join with it. Since 1561 * the thread may need to make API calls in order to complete its work 1562 * we must sleep with the module lock unheld, and then reacquire it. 1563 */ 1564 fmd_module_unlock(mp); 1565 err = pthread_join(tid, NULL); 1566 mp = fmd_api_module_lock(hdl); 1567 1568 /* 1569 * Since pthread_join() was called without the module lock held, if 1570 * multiple callers attempted to destroy the same auxiliary thread 1571 * simultaneously, one will succeed and the others will get ESRCH. 1572 * Therefore we silently ignore ESRCH but only allow the caller who 1573 * succeessfully joined with the auxiliary thread to destroy it. 1574 */ 1575 if (err != 0 && err != ESRCH) { 1576 fmd_api_error(mp, EFMD_THR_JOIN, 1577 "failed to join with auxiliary thread %u\n", tid); 1578 } 1579 1580 if (err == 0) { 1581 fmd_thread_destroy(tp, FMD_THREAD_NOJOIN); 1582 mp->mod_stats->ms_thrtotal.fmds_value.ui32--; 1583 (void) fmd_idspace_free(mp->mod_threads, tid); 1584 } 1585 1586 fmd_module_unlock(mp); 1587 } 1588 1589 void 1590 fmd_thr_signal(fmd_hdl_t *hdl, pthread_t tid) 1591 { 1592 fmd_module_t *mp = fmd_api_module_lock(hdl); 1593 1594 if (tid != mp->mod_thread->thr_tid && 1595 fmd_idspace_getspecific(mp->mod_threads, tid) == NULL) { 1596 fmd_api_error(mp, EFMD_THR_INVAL, "tid %u is not a valid " 1597 "thread id for module %s\n", tid, mp->mod_name); 1598 } 1599 1600 (void) pthread_kill(tid, fmd.d_thr_sig); 1601 fmd_module_unlock(mp); 1602 } 1603 1604 id_t 1605 fmd_timer_install(fmd_hdl_t *hdl, void *arg, fmd_event_t *ep, hrtime_t delta) 1606 { 1607 fmd_module_t *mp = fmd_api_module_lock(hdl); 1608 fmd_modtimer_t *t; 1609 id_t id; 1610 1611 if (delta < 0) { 1612 fmd_api_error(mp, EFMD_TIMER_INVAL, 1613 "timer delta %lld is not a valid interval\n", delta); 1614 } 1615 1616 t = fmd_alloc(sizeof (fmd_modtimer_t), FMD_SLEEP); 1617 t->mt_mod = mp; 1618 t->mt_arg = arg; 1619 t->mt_id = -1; 1620 1621 if ((id = fmd_timerq_install(fmd.d_timers, mp->mod_timerids, 1622 (fmd_timer_f *)fmd_module_timeout, t, ep, delta)) == -1) { 1623 fmd_free(t, sizeof (fmd_modtimer_t)); 1624 fmd_api_error(mp, EFMD_TIMER_LIMIT, 1625 "failed to install timer +%lld", delta); 1626 } 1627 1628 fmd_module_unlock(mp); 1629 return (id); 1630 } 1631 1632 void 1633 fmd_timer_remove(fmd_hdl_t *hdl, id_t id) 1634 { 1635 fmd_module_t *mp = fmd_api_module_lock(hdl); 1636 fmd_modtimer_t *t; 1637 1638 if (!fmd_idspace_valid(mp->mod_timerids, id)) { 1639 fmd_api_error(mp, EFMD_TIMER_INVAL, 1640 "id %ld is not a valid timer id\n", id); 1641 } 1642 1643 t = fmd_timerq_remove(fmd.d_timers, mp->mod_timerids, id); 1644 fmd_module_unlock(mp); 1645 1646 if (t != NULL) { 1647 fmd_eventq_cancel(mp->mod_queue, FMD_EVT_TIMEOUT, t); 1648 fmd_free(t, sizeof (fmd_modtimer_t)); 1649 } 1650 } 1651 1652 nvlist_t * 1653 fmd_nvl_create_fault(fmd_hdl_t *hdl, const char *class, 1654 uint8_t certainty, nvlist_t *asru, nvlist_t *fru, nvlist_t *rsrc) 1655 { 1656 fmd_module_t *mp = fmd_api_module_lock(hdl); 1657 nvlist_t *nvl; 1658 1659 if (class == NULL || class[0] == '\0') 1660 fmd_api_error(mp, EFMD_NVL_INVAL, "invalid fault class\n"); 1661 1662 nvl = fmd_protocol_fault(class, certainty, asru, fru, rsrc); 1663 fmd_module_unlock(mp); 1664 return (nvl); 1665 } 1666 1667 int 1668 fmd_nvl_class_match(fmd_hdl_t *hdl, nvlist_t *nvl, const char *pattern) 1669 { 1670 fmd_module_t *mp = fmd_api_module_lock(hdl); 1671 char *class; 1672 int rv; 1673 1674 rv = (nvl != NULL && nvlist_lookup_string(nvl, 1675 FM_CLASS, &class) == 0 && fmd_strmatch(class, pattern)); 1676 1677 fmd_module_unlock(mp); 1678 return (rv); 1679 } 1680 1681 int 1682 fmd_nvl_fmri_expand(fmd_hdl_t *hdl, nvlist_t *nvl) 1683 { 1684 fmd_module_t *mp = fmd_api_module_lock(hdl); 1685 int rv; 1686 1687 if (nvl == NULL) { 1688 fmd_api_error(mp, EFMD_NVL_INVAL, 1689 "invalid nvlist %p\n", (void *)nvl); 1690 } 1691 1692 rv = fmd_fmri_expand(nvl); 1693 fmd_module_unlock(mp); 1694 return (rv); 1695 } 1696 1697 int 1698 fmd_nvl_fmri_present(fmd_hdl_t *hdl, nvlist_t *nvl) 1699 { 1700 fmd_module_t *mp = fmd_api_module_lock(hdl); 1701 int rv; 1702 1703 if (nvl == NULL) { 1704 fmd_api_error(mp, EFMD_NVL_INVAL, 1705 "invalid nvlist %p\n", (void *)nvl); 1706 } 1707 1708 rv = fmd_fmri_present(nvl); 1709 fmd_module_unlock(mp); 1710 1711 if (rv < 0) { 1712 fmd_api_error(mp, EFMD_FMRI_OP, "invalid fmri for " 1713 "fmd_nvl_fmri_present\n"); 1714 } 1715 1716 return (rv); 1717 } 1718 1719 int 1720 fmd_nvl_fmri_unusable(fmd_hdl_t *hdl, nvlist_t *nvl) 1721 { 1722 fmd_module_t *mp = fmd_api_module_lock(hdl); 1723 int rv; 1724 1725 if (nvl == NULL) { 1726 fmd_api_error(mp, EFMD_NVL_INVAL, 1727 "invalid nvlist %p\n", (void *)nvl); 1728 } 1729 1730 rv = fmd_fmri_unusable(nvl); 1731 fmd_module_unlock(mp); 1732 1733 if (rv < 0) { 1734 fmd_api_error(mp, EFMD_FMRI_OP, "invalid fmri for " 1735 "fmd_nvl_fmri_unusable\n"); 1736 } 1737 1738 return (rv); 1739 } 1740 1741 int 1742 fmd_nvl_fmri_faulty(fmd_hdl_t *hdl, nvlist_t *nvl) 1743 { 1744 fmd_module_t *mp = fmd_api_module_lock(hdl); 1745 fmd_asru_hash_t *ahp = fmd.d_asrus; 1746 fmd_asru_t *ap; 1747 int rv = 0; 1748 1749 if (nvl == NULL) { 1750 fmd_api_error(mp, EFMD_NVL_INVAL, 1751 "invalid nvlist %p\n", (void *)nvl); 1752 } 1753 1754 if ((ap = fmd_asru_hash_lookup_nvl(ahp, nvl, FMD_B_FALSE)) != NULL) { 1755 rv = (ap->asru_flags & FMD_ASRU_FAULTY) != 0; 1756 fmd_asru_hash_release(ahp, ap); 1757 } 1758 1759 fmd_module_unlock(mp); 1760 return (rv); 1761 } 1762 1763 int 1764 fmd_nvl_fmri_contains(fmd_hdl_t *hdl, nvlist_t *n1, nvlist_t *n2) 1765 { 1766 fmd_module_t *mp = fmd_api_module_lock(hdl); 1767 int rv; 1768 1769 if (n1 == NULL || n2 == NULL) { 1770 fmd_api_error(mp, EFMD_NVL_INVAL, 1771 "invalid nvlist(s): %p, %p\n", (void *)n1, (void *)n2); 1772 } 1773 1774 rv = fmd_fmri_contains(n1, n2); 1775 fmd_module_unlock(mp); 1776 1777 if (rv < 0) { 1778 fmd_api_error(mp, EFMD_FMRI_OP, "invalid fmri for " 1779 "fmd_nvl_fmri_contains\n"); 1780 } 1781 1782 return (rv); 1783 } 1784 1785 nvlist_t * 1786 fmd_nvl_fmri_translate(fmd_hdl_t *hdl, nvlist_t *fmri, nvlist_t *auth) 1787 { 1788 fmd_module_t *mp = fmd_api_module_lock(hdl); 1789 nvlist_t *xfmri; 1790 1791 if (fmri == NULL || auth == NULL) { 1792 fmd_api_error(mp, EFMD_NVL_INVAL, 1793 "invalid nvlist(s): %p, %p\n", (void *)fmri, (void *)auth); 1794 } 1795 1796 xfmri = fmd_fmri_translate(fmri, auth); 1797 fmd_module_unlock(mp); 1798 return (xfmri); 1799 } 1800 1801 int 1802 fmd_event_local(fmd_hdl_t *hdl, fmd_event_t *ep) 1803 { 1804 if (hdl == NULL || ep == NULL) { 1805 fmd_api_error(fmd_api_module_lock(hdl), EFMD_EVENT_INVAL, 1806 "NULL parameter specified to fmd_event_local\n"); 1807 } 1808 1809 return (((fmd_event_impl_t *)ep)->ev_flags & FMD_EVF_LOCAL); 1810 } 1811 1812 fmd_xprt_t * 1813 fmd_xprt_open(fmd_hdl_t *hdl, uint_t flags, nvlist_t *auth, void *data) 1814 { 1815 fmd_module_t *mp = fmd_api_module_lock(hdl); 1816 fmd_xprt_t *xp; 1817 1818 if (flags & ~FMD_XPRT_CMASK) { 1819 fmd_api_error(mp, EFMD_XPRT_INVAL, 1820 "invalid transport flags 0x%x\n", flags); 1821 } 1822 1823 if ((flags & FMD_XPRT_RDWR) != FMD_XPRT_RDWR && 1824 (flags & FMD_XPRT_RDWR) != FMD_XPRT_RDONLY) { 1825 fmd_api_error(mp, EFMD_XPRT_INVAL, 1826 "cannot open write-only transport\n"); 1827 } 1828 1829 if (mp->mod_stats->ms_xprtopen.fmds_value.ui32 >= 1830 mp->mod_stats->ms_xprtlimit.fmds_value.ui32) { 1831 fmd_api_error(mp, EFMD_XPRT_LIMIT, "%s request to create a " 1832 "transport exceeds module transport limit (%u)\n", 1833 mp->mod_name, mp->mod_stats->ms_xprtlimit.fmds_value.ui32); 1834 } 1835 1836 if ((xp = fmd_xprt_create(mp, flags, auth, data)) == NULL) 1837 fmd_api_error(mp, errno, "cannot create transport"); 1838 1839 fmd_module_unlock(mp); 1840 return (xp); 1841 } 1842 1843 void 1844 fmd_xprt_close(fmd_hdl_t *hdl, fmd_xprt_t *xp) 1845 { 1846 fmd_module_t *mp = fmd_api_module_lock(hdl); 1847 fmd_xprt_impl_t *xip = fmd_api_transport_impl(hdl, xp); 1848 1849 /* 1850 * Although this could be supported, it doesn't seem necessary or worth 1851 * the trouble. For now, just detect this and trigger a module abort. 1852 * If it is needed, transports should grow reference counts and a new 1853 * event type will need to be enqueued for the main thread to reap it. 1854 */ 1855 if (xip->xi_thread != NULL && 1856 xip->xi_thread->thr_tid == pthread_self()) { 1857 fmd_api_error(mp, EFMD_XPRT_INVAL, 1858 "fmd_xprt_close() cannot be called from fmdo_send()\n"); 1859 } 1860 1861 fmd_xprt_destroy(xp); 1862 fmd_module_unlock(mp); 1863 } 1864 1865 void 1866 fmd_xprt_post(fmd_hdl_t *hdl, fmd_xprt_t *xp, nvlist_t *nvl, hrtime_t hrt) 1867 { 1868 fmd_xprt_impl_t *xip = fmd_api_transport_impl(hdl, xp); 1869 1870 /* 1871 * fmd_xprt_recv() must block during startup waiting for fmd to globally 1872 * clear FMD_XPRT_DSUSPENDED. As such, we can't allow it to be called 1873 * from a module's _fmd_init() routine, because that would block 1874 * fmd from completing initial module loading, resulting in a deadlock. 1875 */ 1876 if ((xip->xi_flags & FMD_XPRT_ISUSPENDED) && 1877 (pthread_self() == xip->xi_queue->eq_mod->mod_thread->thr_tid)) { 1878 fmd_api_error(fmd_api_module_lock(hdl), EFMD_XPRT_INVAL, 1879 "fmd_xprt_post() cannot be called from _fmd_init()\n"); 1880 } 1881 1882 fmd_xprt_recv(xp, nvl, hrt); 1883 } 1884 1885 void 1886 fmd_xprt_suspend(fmd_hdl_t *hdl, fmd_xprt_t *xp) 1887 { 1888 (void) fmd_api_transport_impl(hdl, xp); /* validate 'xp' */ 1889 fmd_xprt_xsuspend(xp, FMD_XPRT_SUSPENDED); 1890 } 1891 1892 void 1893 fmd_xprt_resume(fmd_hdl_t *hdl, fmd_xprt_t *xp) 1894 { 1895 (void) fmd_api_transport_impl(hdl, xp); /* validate 'xp' */ 1896 fmd_xprt_xresume(xp, FMD_XPRT_SUSPENDED); 1897 } 1898 1899 int 1900 fmd_xprt_error(fmd_hdl_t *hdl, fmd_xprt_t *xp) 1901 { 1902 fmd_xprt_impl_t *xip = fmd_api_transport_impl(hdl, xp); 1903 return (xip->xi_state == _fmd_xprt_state_err); 1904 } 1905 1906 /* 1907 * Translate all FMRIs in the specified name-value pair list for the specified 1908 * FMRI authority, and return a new name-value pair list for the translation. 1909 * This function is the recursive engine used by fmd_xprt_translate(), below. 1910 */ 1911 static nvlist_t * 1912 fmd_xprt_xtranslate(nvlist_t *nvl, nvlist_t *auth) 1913 { 1914 uint_t i, j, n; 1915 nvpair_t *nvp, **nvps; 1916 uint_t nvpslen = 0; 1917 char *name; 1918 size_t namelen = 0; 1919 1920 nvlist_t **a, **b; 1921 nvlist_t *l, *r; 1922 data_type_t type; 1923 char *s; 1924 int err; 1925 1926 (void) nvlist_xdup(nvl, &nvl, &fmd.d_nva); 1927 1928 /* 1929 * Count up the number of name-value pairs in 'nvl' and compute the 1930 * maximum length of a name used in this list for use below. 1931 */ 1932 for (nvp = nvlist_next_nvpair(nvl, NULL); 1933 nvp != NULL; nvp = nvlist_next_nvpair(nvl, nvp), nvpslen++) { 1934 size_t len = strlen(nvpair_name(nvp)); 1935 namelen = MAX(namelen, len); 1936 } 1937 1938 nvps = alloca(sizeof (nvpair_t *) * nvpslen); 1939 name = alloca(namelen + 1); 1940 1941 /* 1942 * Store a snapshot of the name-value pairs in 'nvl' into nvps[] so 1943 * that we can iterate over the original pairs in the loop below while 1944 * performing arbitrary insert and delete operations on 'nvl' itself. 1945 */ 1946 for (i = 0, nvp = nvlist_next_nvpair(nvl, NULL); 1947 nvp != NULL; nvp = nvlist_next_nvpair(nvl, nvp)) 1948 nvps[i++] = nvp; 1949 1950 /* 1951 * Now iterate over the snapshot of the name-value pairs. If we find a 1952 * value that is of type NVLIST or NVLIST_ARRAY, we translate that 1953 * object by either calling ourself recursively on it, or calling into 1954 * fmd_fmri_translate() if the object is an FMRI. We then rip out the 1955 * original name-value pair and replace it with the translated one. 1956 */ 1957 for (i = 0; i < nvpslen; i++) { 1958 nvp = nvps[i]; 1959 type = nvpair_type(nvp); 1960 1961 switch (type) { 1962 case DATA_TYPE_NVLIST_ARRAY: 1963 if (nvpair_value_nvlist_array(nvp, &a, &n) != 0 || 1964 a == NULL || n == 0) 1965 continue; /* array is zero-sized; skip it */ 1966 1967 b = fmd_alloc(sizeof (nvlist_t *) * n, FMD_SLEEP); 1968 1969 /* 1970 * If the first array nvlist element looks like an FMRI 1971 * then assume the other elements are FMRIs as well. 1972 * If any b[j]'s can't be translated, then EINVAL will 1973 * be returned from nvlist_add_nvlist_array() below. 1974 */ 1975 if (nvlist_lookup_string(*a, FM_FMRI_SCHEME, &s) == 0) { 1976 for (j = 0; j < n; j++) 1977 b[j] = fmd_fmri_translate(a[j], auth); 1978 } else { 1979 for (j = 0; j < n; j++) 1980 b[j] = fmd_xprt_xtranslate(a[j], auth); 1981 } 1982 1983 (void) strcpy(name, nvpair_name(nvp)); 1984 (void) nvlist_remove(nvl, name, type); 1985 err = nvlist_add_nvlist_array(nvl, name, b, n); 1986 1987 for (j = 0; j < n; j++) 1988 nvlist_free(b[j]); 1989 1990 fmd_free(b, sizeof (nvlist_t *) * n); 1991 1992 if (err != 0) { 1993 nvlist_free(nvl); 1994 errno = err; 1995 return (NULL); 1996 } 1997 break; 1998 1999 case DATA_TYPE_NVLIST: 2000 if (nvpair_value_nvlist(nvp, &l) == 0 && 2001 nvlist_lookup_string(l, FM_FMRI_SCHEME, &s) == 0) 2002 r = fmd_fmri_translate(l, auth); 2003 else 2004 r = fmd_xprt_xtranslate(l, auth); 2005 2006 if (r == NULL) { 2007 nvlist_free(nvl); 2008 return (NULL); 2009 } 2010 2011 (void) strcpy(name, nvpair_name(nvp)); 2012 (void) nvlist_remove(nvl, name, type); 2013 (void) nvlist_add_nvlist(nvl, name, r); 2014 2015 nvlist_free(r); 2016 break; 2017 } 2018 } 2019 2020 return (nvl); 2021 } 2022 2023 nvlist_t * 2024 fmd_xprt_translate(fmd_hdl_t *hdl, fmd_xprt_t *xp, fmd_event_t *ep) 2025 { 2026 fmd_xprt_impl_t *xip = fmd_api_transport_impl(hdl, xp); 2027 2028 if (xip->xi_auth == NULL) { 2029 fmd_api_error(fmd_api_module_lock(hdl), EFMD_XPRT_INVAL, 2030 "no authority defined for transport %p\n", (void *)xp); 2031 } 2032 2033 return (fmd_xprt_xtranslate(FMD_EVENT_NVL(ep), xip->xi_auth)); 2034 } 2035 2036 void 2037 fmd_xprt_setspecific(fmd_hdl_t *hdl, fmd_xprt_t *xp, void *data) 2038 { 2039 fmd_api_transport_impl(hdl, xp)->xi_data = data; 2040 } 2041 2042 void * 2043 fmd_xprt_getspecific(fmd_hdl_t *hdl, fmd_xprt_t *xp) 2044 { 2045 return (fmd_api_transport_impl(hdl, xp)->xi_data); 2046 } 2047