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 * Copyright (c) 1992, 2010, Oracle and/or its affiliates. All rights reserved.
23 * Copyright 2026 Oxide Computer Company
24 */
25
26 /*
27 * Instance number assignment code
28 */
29
30 #include <sys/types.h>
31 #include <sys/param.h>
32 #include <sys/errno.h>
33 #include <sys/systm.h>
34 #include <sys/kobj.h>
35 #include <sys/t_lock.h>
36 #include <sys/kmem.h>
37 #include <sys/cmn_err.h>
38 #include <sys/ddi.h>
39 #include <sys/sunddi.h>
40 #include <sys/autoconf.h>
41 #include <sys/systeminfo.h>
42 #include <sys/hwconf.h>
43 #include <sys/reboot.h>
44 #include <sys/ddi_impldefs.h>
45 #include <sys/instance.h>
46 #include <sys/debug.h>
47 #include <sys/sysevent.h>
48 #include <sys/modctl.h>
49 #include <sys/console.h>
50 #include <sys/cladm.h>
51 #include <sys/sysmacros.h>
52 #include <sys/crc32.h>
53
54
55 static void in_preassign_instance(void);
56 static void i_log_devfs_instance_mod(void);
57 static int in_get_infile(char *);
58 static void in_removenode(struct devnames *dnp, in_node_t *mp, in_node_t *ap);
59 static in_node_t *in_alloc_node(char *name, char *addr);
60 static int in_eqstr(char *a, char *b);
61 static char *in_name_addr(char **cpp, char **addrp);
62 static in_node_t *in_devwalk(dev_info_t *dip, in_node_t **ap, char *addr);
63 static in_node_t *in_devwalk_create(dev_info_t *dip);
64 static void in_dealloc_node(in_node_t *np);
65 static in_node_t *in_make_path(char *path);
66 static void in_enlist(in_node_t *ap, in_node_t *np);
67 static int in_inuse(int instance, char *name);
68 static void in_hashdrv(in_drv_t *dp);
69 static in_drv_t *in_drvwalk(in_node_t *np, char *binding_name);
70 static in_drv_t *in_alloc_drv(char *bindingname);
71 static void in_endrv(in_node_t *np, in_drv_t *dp);
72 static void in_dq_drv(in_drv_t *np);
73 static void in_removedrv(struct devnames *dnp, in_drv_t *mp);
74 static int in_pathin(char *cp, int instance, char *bname, struct bind **args);
75 static int in_next_instance_block(major_t, int);
76 static int in_next_instance(major_t);
77
78 #pragma weak plat_ioaliases_init
79
80
81 /* external functions */
82 extern char *i_binding_to_drv_name(char *bname);
83 extern void plat_ioaliases_init(void);
84
85 /*
86 * This plus devnames defines the entire software state of the instance world.
87 */
88 typedef struct in_softstate {
89 in_node_t *ins_root; /* the root of our instance tree */
90 in_drv_t *ins_no_major; /* majorless drv entries */
91 /*
92 * Used to serialize access to data structures
93 */
94 void *ins_thread;
95 kmutex_t ins_serial;
96 kcondvar_t ins_serial_cv;
97 int ins_busy;
98 boolean_t ins_dirty; /* instance info needs flush */
99 } in_softstate_t;
100
101 static in_softstate_t e_ddi_inst_state;
102
103 /*
104 * State transition information:
105 * e_ddi_inst_state contains, among other things, the root of a tree of
106 * device nodes used to track instance number assignments.
107 * Each device node may contain multiple driver bindings, represented
108 * by a linked list of in_drv_t nodes, each with an instance assignment
109 * (except for root node). Each in_drv node can be in one of 3 states,
110 * indicated by ind_state:
111 *
112 * IN_UNKNOWN: Each node created in this state. The instance number of
113 * this node is not known. ind_instance is set to -1.
114 * IN_PROVISIONAL: When a node is assigned an instance number in
115 * e_ddi_assign_instance(), its state is set to IN_PROVISIONAL.
116 * Subsequently, the framework will always call either
117 * e_ddi_keep_instance() which makes the node IN_PERMANENT
118 * or e_ddi_free_instance(), which deletes the node.
119 * IN_PERMANENT:
120 * If e_ddi_keep_instance() is called on an IN_PROVISIONAL node,
121 * its state is set to IN_PERMANENT.
122 */
123
124 static char *instance_file = INSTANCE_FILE;
125 static char *instance_file_backup = INSTANCE_FILE INSTANCE_FILE_SUFFIX;
126
127 /*
128 * Return values for in_get_infile().
129 */
130 #define PTI_FOUND 0
131 #define PTI_NOT_FOUND 1
132 #define PTI_REBUILD 2
133
134 int instance_searchme = 0; /* testing: use complex code path */
135
136 /*
137 * Path to instance file magic string used for first time boot after
138 * an install. If this is the first string in the file we will
139 * automatically rebuild the file.
140 */
141 #define PTI_MAGIC_STR "#path_to_inst_bootstrap_1"
142 #define PTI_MAGIC_STR_LEN (sizeof (PTI_MAGIC_STR) - 1)
143
144 void
e_ddi_instance_init(void)145 e_ddi_instance_init(void)
146 {
147 char *file;
148 int rebuild = 1;
149 struct in_drv *dp;
150
151 mutex_init(&e_ddi_inst_state.ins_serial, NULL, MUTEX_DEFAULT, NULL);
152 cv_init(&e_ddi_inst_state.ins_serial_cv, NULL, CV_DEFAULT, NULL);
153
154 /*
155 * Only one thread is allowed to change the state of the instance
156 * number assignments on the system at any given time.
157 * Note that this is not really necessary, as we are single-threaded
158 * here, but it won't hurt, and it allows us to keep ASSERTS for
159 * our assumptions in the code.
160 */
161 e_ddi_enter_instance();
162
163 /*
164 * Init the ioaliases if the platform supports it
165 */
166 if (&plat_ioaliases_init)
167 plat_ioaliases_init();
168
169 /*
170 * Create the root node, instance zallocs to 0.
171 * The name and address of this node never get examined, we always
172 * start searching with its first child.
173 */
174 ASSERT(e_ddi_inst_state.ins_root == NULL);
175 e_ddi_inst_state.ins_root = in_alloc_node(NULL, NULL);
176 dp = in_alloc_drv("rootnex");
177 in_endrv(e_ddi_inst_state.ins_root, dp);
178
179 file = instance_file;
180 switch (in_get_infile(file)) {
181 default:
182 case PTI_NOT_FOUND:
183 /* make sure path_to_inst is recreated */
184 boothowto |= RB_RECONFIG;
185
186 /*
187 * Something is wrong. First try the backup file.
188 * If not found, rebuild path_to_inst. Emit a
189 * message about the problem.
190 */
191 cmn_err(CE_WARN, "%s empty or not found", file);
192
193 file = instance_file_backup;
194 if (in_get_infile(file) != PTI_FOUND) {
195 cmn_err(CE_NOTE, "rebuilding device instance data");
196 break;
197 }
198 cmn_err(CE_NOTE, "using backup instance data in %s", file);
199 /*FALLTHROUGH*/
200
201 case PTI_FOUND:
202 /*
203 * We've got a readable file
204 * parse the file into the instance tree
205 */
206 (void) read_binding_file(file, NULL, in_pathin);
207 rebuild = 0;
208 break;
209
210 case PTI_REBUILD:
211 /*
212 * path_to_inst has magic str requesting a create
213 * Convert boot to reconfig boot to ensure /dev is
214 * in sync with new path_to_inst.
215 */
216 boothowto |= RB_RECONFIG;
217 cmn_err(CE_CONT,
218 "?Using default device instance data\n");
219 break;
220 }
221
222 /*
223 * The OBP device tree has been copied to the kernel and
224 * bound to drivers at this point. We walk the per-driver
225 * list to preassign instances. Since the bus addr is
226 * unknown at this point, we cannot place the instance
227 * number in the instance tree. This will be done at
228 * a later time.
229 */
230 if (rebuild)
231 in_preassign_instance();
232
233 e_ddi_exit_instance();
234 }
235
236 static void
in_preassign_instance()237 in_preassign_instance()
238 {
239 major_t m;
240 struct devnames *dnp;
241 dev_info_t *dip;
242 extern major_t devcnt;
243
244 for (m = 0; m < devcnt; m++) {
245 dnp = &devnamesp[m];
246 dip = dnp->dn_head;
247 while (dip) {
248 DEVI(dip)->devi_instance = dnp->dn_instance;
249 dnp->dn_instance++;
250 dip = ddi_get_next(dip);
251 }
252
253 /*
254 * The preassign instance numbers are not fully
255 * accounted for until e_ddi_assign_instance().
256 * We can't fully account for them now because we
257 * don't currently have a unit-address. Because of
258 * this, we need to remember the preassign boundary
259 * to avoid ordering issues related to
260 * e_ddi_assign_instance of a preassigned value .vs.
261 * re-assignment of the same value for a dynamic
262 * SID node created by bus_config.
263 */
264 dnp->dn_pinstance = dnp->dn_instance;
265 dnp->dn_instance = IN_SEARCHME;
266 }
267 }
268
269 /*
270 * Checks to see if the /etc/path_to_inst file exists and whether or not
271 * it has the magic string in it.
272 *
273 * Returns one of the following:
274 *
275 * PTI_FOUND - We have found the /etc/path_to_inst file
276 * PTI_REBUILD - We have found the /etc/path_to_inst file and the
277 * first line was PTI_MAGIC_STR.
278 * PTI_NOT_FOUND - We did not find the /etc/path_to_inst file
279 *
280 */
281 static int
in_get_infile(char * filename)282 in_get_infile(char *filename)
283 {
284 struct _buf *file;
285 int return_val;
286 char buf[PTI_MAGIC_STR_LEN];
287
288 /*
289 * Try to open the file.
290 */
291 if ((file = kobj_open_file(filename)) == (struct _buf *)-1) {
292 return (PTI_NOT_FOUND);
293 }
294 return_val = PTI_FOUND;
295
296 /*
297 * Read the first PTI_MAGIC_STR_LEN bytes from the file to see if
298 * it contains the magic string. If there aren't that many bytes
299 * in the file, then assume file is correct and no magic string
300 * and move on.
301 */
302 switch (kobj_read_file(file, buf, PTI_MAGIC_STR_LEN, 0)) {
303
304 case PTI_MAGIC_STR_LEN:
305 /*
306 * If the first PTI_MAGIC_STR_LEN bytes are the magic string
307 * then return PTI_REBUILD.
308 */
309 if (strncmp(PTI_MAGIC_STR, buf, PTI_MAGIC_STR_LEN) == 0)
310 return_val = PTI_REBUILD;
311 break;
312
313 case 0:
314 /*
315 * If the file is zero bytes in length, then consider the
316 * file to not be found
317 */
318 return_val = PTI_NOT_FOUND;
319
320 default: /* Do nothing we have a good file */
321 break;
322 }
323
324 kobj_close_file(file);
325 return (return_val);
326 }
327
328 int
is_pseudo_device(dev_info_t * dip)329 is_pseudo_device(dev_info_t *dip)
330 {
331 dev_info_t *pdip;
332
333 for (pdip = ddi_get_parent(dip); pdip && pdip != ddi_root_node();
334 pdip = ddi_get_parent(pdip)) {
335 if (strcmp(ddi_get_name(pdip), DEVI_PSEUDO_NEXNAME) == 0)
336 return (1);
337 }
338 return (0);
339 }
340
341
342 static void
in_set_instance(dev_info_t * dip,in_drv_t * dp,major_t major)343 in_set_instance(dev_info_t *dip, in_drv_t *dp, major_t major)
344 {
345 /* use preassigned instance if available */
346 if (DEVI(dip)->devi_instance != -1)
347 dp->ind_instance = DEVI(dip)->devi_instance;
348 else
349 dp->ind_instance = in_next_instance(major);
350 }
351
352 /*
353 * Return 1 if instance block was assigned for the path.
354 *
355 * For multi-port NIC cards, sequential instance assignment across all
356 * ports on a card is highly desirable since the ppa is typically the
357 * same as the instance number, and the ppa is used in the NIC's public
358 * /dev name. This sequential assignment typically occurs as a result
359 * of in_preassign_instance() after initial install, or by
360 * i_ndi_init_hw_children() for NIC ports that share a common parent.
361 *
362 * Some NIC cards however use multi-function bridge chips, and to
363 * support sequential instance assignment accross all ports, without
364 * disabling multi-threaded attach, we have a (currently) undocumented
365 * hack to allocate instance numbers in contiguous blocks based on
366 * driver.conf properties.
367 *
368 * ^
369 * /---------- ------------\
370 * pci@0 pci@0,1 MULTI-FUNCTION BRIDGE CHIP
371 * / \ / \
372 * FJSV,e4ta@4 FJSV,e4ta@4,1 FJSV,e4ta@6 FJSV,e4ta@6,1 NIC PORTS
373 * n n+2 n+2 n+3 INSTANCE
374 *
375 * For the above example, the following driver.conf properties would be
376 * used to guarantee sequential instance number assignment.
377 *
378 * ddi-instance-blocks ="ib-FJSVe4ca", "ib-FJSVe4ta", "ib-generic";
379 * ib-FJSVe4ca = "/pci@0/FJSV,e4ca@4", "/pci@0/FJSV,e4ca@4,1",
380 * "/pci@0,1/FJSV,e4ca@6", "/pci@0,1/FJSV,e4ca@6,1";
381 * ib-FJSVe4ta = "/pci@0/FJSV,e4ta@4", "/pci@0/FJSV,e4ta@4,1",
382 * "/pci@0,1/FJSV,e4ta@6", "/pci@0,1/FJSV,e4ta@6,1";
383 * ib-generic = "/pci@0/network@4", "/pci@0/network@4,1",
384 * "/pci@0,1/network@6", "/pci@0,1/network@6,1";
385 *
386 * The value of the 'ddi-instance-blocks' property references a series
387 * of card specific properties, like 'ib-FJSV-e4ta', who's value
388 * defines a single 'instance block'. The 'instance block' describes
389 * all the paths below a multi-function bridge, where each path is
390 * called an 'instance path'. The 'instance block' property value is a
391 * series of 'instance paths'. The number of 'instance paths' in an
392 * 'instance block' defines the size of the instance block, and the
393 * ordering of the 'instance paths' defines the instance number
394 * assignment order for paths going through the 'instance block'.
395 *
396 * In the instance assignment code below, if a (path, driver) that
397 * currently has no instance number has a path that goes through an
398 * 'instance block', then block instance number allocation occurs. The
399 * block allocation code will find a sequential set of unused instance
400 * numbers, and assign instance numbers for all the paths in the
401 * 'instance block'. Each path is assigned a persistent instance
402 * number, even paths that don't exist in the device tree or fail
403 * probe(9E).
404 */
405 static int
in_assign_instance_block(dev_info_t * dip)406 in_assign_instance_block(dev_info_t *dip)
407 {
408 char **ibn; /* instance block names */
409 uint_t nibn; /* number of instance block names */
410 uint_t ibni; /* ibn index */
411 char *driver;
412 major_t major;
413 char *path;
414 char *addr;
415 int plen;
416 char **ibp; /* instance block paths */
417 uint_t nibp; /* number of paths in instance block */
418 uint_t ibpi; /* ibp index */
419 int ibplen; /* length of instance block path */
420 char *ipath;
421 int instance_base;
422 int splice;
423 int i;
424
425 /* check for fresh install case (in miniroot) */
426 if (DEVI(dip)->devi_instance != -1)
427 return (0); /* already assigned */
428
429 /*
430 * Check to see if we need to allocate a block of contiguous instance
431 * numbers by looking for the 'ddi-instance-blocks' property.
432 */
433 if (ddi_prop_lookup_string_array(DDI_DEV_T_ANY, dip, DDI_PROP_DONTPASS,
434 "ddi-instance-blocks", &ibn, &nibn) != DDI_SUCCESS)
435 return (0); /* no instance block needed */
436
437 /*
438 * Get information out about node we are processing.
439 *
440 * NOTE: Since the node is not yet at DS_INITIALIZED, ddi_pathname()
441 * will not return the unit-address of the final path component even
442 * though the node has an established devi_addr unit-address - so we
443 * need to add the unit-address by hand.
444 */
445 driver = (char *)ddi_driver_name(dip);
446 major = ddi_driver_major(dip);
447 path = kmem_alloc(MAXPATHLEN, KM_SLEEP);
448 (void) ddi_pathname(dip, path);
449 if ((addr = ddi_get_name_addr(dip)) != NULL) {
450 (void) strcat(path, "@");
451 (void) strcat(path, addr);
452 }
453 plen = strlen(path);
454
455 /* loop through instance block names */
456 for (ibni = 0; ibni < nibn; ibni++) {
457 if (ibn[ibni] == NULL)
458 continue;
459
460 /* lookup instance block */
461 if (ddi_prop_lookup_string_array(DDI_DEV_T_ANY, dip,
462 DDI_PROP_DONTPASS, ibn[ibni],
463 &ibp, &nibp) != DDI_SUCCESS) {
464 cmn_err(CE_WARN,
465 "no devinition for instance block '%s' in %s.conf",
466 ibn[ibni], driver);
467 continue;
468 }
469
470 /* Does 'path' go through this instance block? */
471 for (ibpi = 0; ibpi < nibp; ibpi++) {
472 if (ibp[ibpi] == NULL)
473 continue;
474 ibplen = strlen(ibp[ibpi]);
475 if ((ibplen <= plen) &&
476 (strcmp(ibp[ibpi], path + plen - ibplen) == 0))
477 break;
478
479 }
480 if (ibpi >= nibp) {
481 ddi_prop_free(ibp);
482 continue; /* no try next instance block */
483 }
484
485 /* yes, allocate and assign instances for all paths in block */
486
487 /*
488 * determine where we splice in instance paths and verify
489 * that none of the paths are too long.
490 */
491 splice = plen - ibplen;
492 for (i = 0; i < nibp; i++) {
493 if ((splice + strlen(ibp[i])+ 1) >= MAXPATHLEN) {
494 cmn_err(CE_WARN,
495 "path %d through instance block '%s' from "
496 "%s.conf too long", i, ibn[ibni], driver);
497 break;
498 }
499 }
500 if (i < nibp) {
501 ddi_prop_free(ibp);
502 continue; /* too long */
503 }
504
505 /* allocate the instance block - no more failures */
506 instance_base = in_next_instance_block(major, nibp);
507
508 ipath = kmem_alloc(MAXPATHLEN, KM_SLEEP);
509 for (ibpi = 0; ibpi < nibp; ibpi++) {
510 if (ibp[ibpi] == NULL)
511 continue;
512 (void) strcpy(ipath, path);
513 (void) strcpy(ipath + splice, ibp[ibpi]);
514 (void) in_pathin(ipath,
515 instance_base + ibpi, driver, NULL);
516 }
517
518 /* free allocations */
519 kmem_free(ipath, MAXPATHLEN);
520 ddi_prop_free(ibp);
521 kmem_free(path, MAXPATHLEN);
522 ddi_prop_free(ibn);
523
524 /* notify devfsadmd to sync of path_to_inst file */
525 mutex_enter(&e_ddi_inst_state.ins_serial);
526 i_log_devfs_instance_mod();
527 e_ddi_inst_state.ins_dirty = B_TRUE;
528 mutex_exit(&e_ddi_inst_state.ins_serial);
529 return (1);
530 }
531
532 /* our path did not go through any of of the instance blocks */
533 kmem_free(path, MAXPATHLEN);
534 ddi_prop_free(ibn);
535 return (0);
536 }
537
538 /*
539 * Look up an instance number for a dev_info node, and assign one if it does
540 * not have one (the dev_info node has devi_name and devi_addr already set).
541 */
542 uint_t
e_ddi_assign_instance(dev_info_t * dip)543 e_ddi_assign_instance(dev_info_t *dip)
544 {
545 in_node_t *ap, *np;
546 in_drv_t *dp;
547 major_t major;
548 uint_t ret;
549 char *bname;
550
551 /*
552 * Allow implementation to override
553 */
554 if ((ret = impl_assign_instance(dip)) != (uint_t)-1)
555 return (ret);
556
557 /*
558 * If this is a pseudo-device to which the pseudo nexus driver
559 * assigned an instance number (as happens for nodes enumerated from
560 * driver.conf files) use that instance. A pseudo child that was
561 * created without an instance, such as a node enumerated by a pseudo
562 * nexus driver itself, falls through and is assigned an instance from
563 * the instance tree like any other device.
564 */
565 if (is_pseudo_device(dip)) {
566 int instance = ddi_get_instance(dip);
567
568 if (instance != -1)
569 return (instance);
570 }
571
572 /*
573 * Only one thread is allowed to change the state of the instance
574 * number assignments on the system at any given time.
575 */
576 e_ddi_enter_instance();
577
578 /*
579 * Look for instance node, allocate one if not found
580 */
581 np = in_devwalk(dip, &ap, NULL);
582 if (np == NULL) {
583 if (in_assign_instance_block(dip)) {
584 np = in_devwalk(dip, &ap, NULL);
585 } else {
586 np = in_devwalk_create(dip);
587 ASSERT(np != NULL);
588 }
589 }
590 ASSERT(np == in_devwalk(dip, &ap, NULL));
591
592 /*
593 * Link the devinfo node and in_node_t
594 */
595 if (DEVI(dip)->devi_in_node || np->in_devi) {
596 ddi_err(DER_MODE, dip, "devinfo and instance node (%p) "
597 "interlink fields are not NULL", (void *)np);
598 }
599 DEVI(dip)->devi_in_node = np;
600 np->in_devi = dip;
601
602 /*
603 * Look for driver entry, allocate one if not found
604 */
605 bname = (char *)ddi_driver_name(dip);
606 dp = in_drvwalk(np, bname);
607 if (dp == NULL) {
608
609 if (ddi_aliases_present == B_TRUE) {
610 e_ddi_borrow_instance(dip, np);
611 }
612
613 if ((dp = in_drvwalk(np, bname)) == NULL) {
614 dp = in_alloc_drv(bname);
615 ASSERT(dp != NULL);
616 major = ddi_driver_major(dip);
617 ASSERT(major != DDI_MAJOR_T_NONE);
618 in_endrv(np, dp);
619 in_set_instance(dip, dp, major);
620 dp->ind_state = IN_PROVISIONAL;
621 in_hashdrv(dp);
622 } else {
623 dp->ind_state = IN_BORROWED;
624 }
625 }
626
627 ret = dp->ind_instance;
628
629 e_ddi_exit_instance();
630 return (ret);
631 }
632
633 static int
mkpathname(char * path,in_node_t * np,int len)634 mkpathname(char *path, in_node_t *np, int len)
635 {
636 int len_needed;
637
638 if (np == e_ddi_inst_state.ins_root)
639 return (DDI_SUCCESS);
640
641 if (mkpathname(path, np->in_parent, len) == DDI_FAILURE)
642 return (DDI_FAILURE);
643
644 len_needed = strlen(path);
645 len_needed += strlen(np->in_node_name) + 1; /* for '/' */
646 if (np->in_unit_addr) {
647 len_needed += strlen(np->in_unit_addr) + 1; /* for '@' */
648 }
649 len_needed += 1; /* for '\0' */
650
651 /*
652 * XX complain
653 */
654 if (len_needed > len)
655 return (DDI_FAILURE);
656
657 if (np->in_unit_addr[0] == '\0')
658 (void) sprintf(path+strlen(path), "/%s", np->in_node_name);
659 else
660 (void) sprintf(path+strlen(path), "/%s@%s", np->in_node_name,
661 np->in_unit_addr);
662
663 return (DDI_SUCCESS);
664 }
665
666 /*
667 * produce the path to the given instance of a major number.
668 * path must hold MAXPATHLEN string
669 */
670 int
e_ddi_instance_majorinstance_to_path(major_t major,uint_t inst,char * path)671 e_ddi_instance_majorinstance_to_path(major_t major, uint_t inst, char *path)
672 {
673 struct devnames *dnp;
674 in_drv_t *dp;
675 int ret;
676
677 e_ddi_enter_instance();
678
679 /* look for the instance threaded off major */
680 dnp = &devnamesp[major];
681 for (dp = dnp->dn_inlist; dp != NULL; dp = dp->ind_next)
682 if (dp->ind_instance == inst)
683 break;
684
685 /* produce path from the node that uses the instance */
686 if (dp) {
687 *path = 0;
688 ret = mkpathname(path, dp->ind_node, MAXPATHLEN);
689 } else
690 ret = DDI_FAILURE;
691
692 e_ddi_exit_instance();
693 return (ret);
694 }
695
696 /*
697 * Allocate a sequential block of instance numbers for the specified driver,
698 * and return the base instance number of the block. The implementation
699 * depends on the list being sorted in ascending instance number sequence.
700 * When there are no 'holes' in the allocation sequence, dn_instance is the
701 * next available instance number. When dn_instance is IN_SEARCHME, hole(s)
702 * exists and a slower code path executes which tries to fill holes.
703 *
704 * The block returned can't be in the preassigned range.
705 */
706 static int
in_next_instance_block(major_t major,int block_size)707 in_next_instance_block(major_t major, int block_size)
708 {
709 int prev;
710 struct devnames *dnp;
711 in_drv_t *dp;
712 int base;
713 int hole;
714
715 dnp = &devnamesp[major];
716 ASSERT(major != DDI_MAJOR_T_NONE);
717 ASSERT(e_ddi_inst_state.ins_busy);
718 ASSERT(block_size);
719
720 /* check to see if we can do a quick allocation */
721 if (!instance_searchme && (dnp->dn_instance != IN_SEARCHME)) {
722 base = dnp->dn_instance;
723 dnp->dn_instance += block_size;
724 return (base);
725 }
726
727 /*
728 * Use more complex code path, start by skipping preassign entries.
729 */
730 for (dp = dnp->dn_inlist; dp; dp = dp->ind_next)
731 if (dp->ind_instance >= dnp->dn_pinstance)
732 break; /* beyond preassign */
733
734 /* No non-preassign entries, allocate block at preassign base. */
735 if (dp == NULL) {
736 base = dnp->dn_pinstance;
737 if (base == 0)
738 dnp->dn_instance = block_size;
739 return (base);
740 }
741
742 /* See if we fit in hole at beginning (after preassigns) */
743 prev = dp->ind_instance;
744 if ((prev - dnp->dn_pinstance) >= block_size)
745 return (dnp->dn_pinstance); /* we fit in beginning hole */
746
747 /* search the list for a large enough hole */
748 for (dp = dp->ind_next, hole = 0; dp; dp = dp->ind_next) {
749 if (dp->ind_instance != (prev + 1))
750 hole++; /* we have a hole */
751 if (dp->ind_instance >= (prev + block_size + 1))
752 break; /* we fit in hole */
753 prev = dp->ind_instance;
754 }
755
756 /*
757 * If hole is zero then all holes are patched and we can resume
758 * quick allocations, but don't resume quick allocation if there is
759 * a preassign.
760 */
761 if ((hole == 0) && (dnp->dn_pinstance == 0))
762 dnp->dn_instance = prev + 1 + block_size;
763
764 return (prev + 1);
765 }
766
767 /* assign instance block of size 1 */
768 static int
in_next_instance(major_t major)769 in_next_instance(major_t major)
770 {
771 return (in_next_instance_block(major, 1));
772 }
773
774 /*
775 * This call causes us to *forget* the instance number we've generated
776 * for a given device if it was not permanent.
777 */
778 void
e_ddi_free_instance(dev_info_t * dip,char * addr)779 e_ddi_free_instance(dev_info_t *dip, char *addr)
780 {
781 char *name;
782 in_node_t *np;
783 in_node_t *ap; /* ancestor node */
784 major_t major;
785 struct devnames *dnp;
786 in_drv_t *dp; /* in_drv entry */
787
788 /*
789 * Allow implementation override
790 */
791 if (impl_free_instance(dip) == DDI_SUCCESS)
792 return;
793
794 /*
795 * A pseudo-device that was never entered into the instance tree,
796 * because the pseudo nexus preassigned its instance, has nothing
797 * to free.
798 */
799 if (is_pseudo_device(dip) && DEVI(dip)->devi_in_node == NULL) {
800 return;
801 }
802
803 name = (char *)ddi_driver_name(dip);
804 major = ddi_driver_major(dip);
805 ASSERT(major != DDI_MAJOR_T_NONE);
806 dnp = &devnamesp[major];
807 /*
808 * Only one thread is allowed to change the state of the instance
809 * number assignments on the system at any given time.
810 */
811 e_ddi_enter_instance();
812 np = in_devwalk(dip, &ap, addr);
813 ASSERT(np);
814
815 /*
816 * Break the interlink between dip and np
817 */
818 if (DEVI(dip)->devi_in_node != np || np->in_devi != dip) {
819 ddi_err(DER_MODE, dip, "devinfo node linked to "
820 "wrong instance node: %p", (void *)np);
821 }
822 DEVI(dip)->devi_in_node = NULL;
823 np->in_devi = NULL;
824
825 dp = in_drvwalk(np, name);
826 ASSERT(dp);
827 if (dp->ind_state == IN_PROVISIONAL) {
828 in_removedrv(dnp, dp);
829 } else if (dp->ind_state == IN_BORROWED) {
830 dp->ind_state = IN_PERMANENT;
831 e_ddi_return_instance(dip, addr, np);
832 }
833 if (np->in_drivers == NULL) {
834 in_removenode(dnp, np, ap);
835 }
836 e_ddi_exit_instance();
837 }
838
839 /*
840 * This makes our memory of an instance assignment permanent
841 */
842 void
e_ddi_keep_instance(dev_info_t * dip)843 e_ddi_keep_instance(dev_info_t *dip)
844 {
845 in_node_t *np, *ap;
846 in_drv_t *dp;
847
848 /* Don't make nulldriver instance assignments permanent */
849 if (ddi_driver_major(dip) == nulldriver_major)
850 return;
851
852 /*
853 * Allow implementation override
854 */
855 if (impl_keep_instance(dip) == DDI_SUCCESS)
856 return;
857
858 /*
859 * Nothing to do for a pseudo device that was never entered into
860 * the instance tree.
861 */
862 if (is_pseudo_device(dip) && DEVI(dip)->devi_in_node == NULL)
863 return;
864
865 /*
866 * Only one thread is allowed to change the state of the instance
867 * number assignments on the system at any given time.
868 */
869 e_ddi_enter_instance();
870 np = in_devwalk(dip, &ap, NULL);
871 ASSERT(np);
872 dp = in_drvwalk(np, (char *)ddi_driver_name(dip));
873 ASSERT(dp);
874
875 mutex_enter(&e_ddi_inst_state.ins_serial);
876 if (dp->ind_state == IN_PROVISIONAL || dp->ind_state == IN_BORROWED) {
877 dp->ind_state = IN_PERMANENT;
878 i_log_devfs_instance_mod();
879 e_ddi_inst_state.ins_dirty = B_TRUE;
880 }
881 mutex_exit(&e_ddi_inst_state.ins_serial);
882 e_ddi_exit_instance();
883 }
884
885 /*
886 * A new major has been added to the system. Run through the orphan list
887 * and try to attach each one to a driver's list.
888 */
889 void
e_ddi_unorphan_instance_nos()890 e_ddi_unorphan_instance_nos()
891 {
892 in_drv_t *dp, *ndp;
893
894 /*
895 * disconnect the orphan list, and call in_hashdrv for each item
896 * on it
897 */
898
899 /*
900 * Only one thread is allowed to change the state of the instance
901 * number assignments on the system at any given time.
902 */
903 e_ddi_enter_instance();
904 if (e_ddi_inst_state.ins_no_major == NULL) {
905 e_ddi_exit_instance();
906 return;
907 }
908 /*
909 * Hash instance list to devnames structure of major.
910 * Note that if there is not a valid major number for the
911 * node, in_hashdrv will put it back on the no_major list.
912 */
913 dp = e_ddi_inst_state.ins_no_major;
914 e_ddi_inst_state.ins_no_major = NULL;
915 while (dp) {
916 ndp = dp->ind_next;
917 ASSERT(dp->ind_state != IN_UNKNOWN);
918 dp->ind_next = NULL;
919 in_hashdrv(dp);
920 dp = ndp;
921 }
922 e_ddi_exit_instance();
923 }
924
925 static void
in_removenode(struct devnames * dnp,in_node_t * mp,in_node_t * ap)926 in_removenode(struct devnames *dnp, in_node_t *mp, in_node_t *ap)
927 {
928 in_node_t *np;
929
930 ASSERT(e_ddi_inst_state.ins_busy);
931
932 /*
933 * Assertion: parents are always instantiated by the framework
934 * before their children, destroyed after them
935 */
936 ASSERT(mp->in_child == NULL);
937 /*
938 * Assertion: drv entries are always removed before their owning nodes
939 */
940 ASSERT(mp->in_drivers == NULL);
941 /*
942 * Take the node out of the tree
943 */
944 if (ap->in_child == mp) {
945 ap->in_child = mp->in_sibling;
946 in_dealloc_node(mp);
947 return;
948 } else {
949 for (np = ap->in_child; np; np = np->in_sibling) {
950 if (np->in_sibling == mp) {
951 np->in_sibling = mp->in_sibling;
952 in_dealloc_node(mp);
953 return;
954 }
955 }
956 }
957 panic("in_removenode dnp %p mp %p", (void *)dnp, (void *)mp);
958 }
959
960 /*
961 * Recursive ascent
962 *
963 * This now only does half the job. It finds the node, then the caller
964 * has to search the node for the binding name
965 */
966 static in_node_t *
in_devwalk(dev_info_t * dip,in_node_t ** ap,char * addr)967 in_devwalk(dev_info_t *dip, in_node_t **ap, char *addr)
968 {
969 in_node_t *np;
970 char *name;
971
972 ASSERT(dip);
973 ASSERT(e_ddi_inst_state.ins_busy);
974 if (dip == ddi_root_node()) {
975 *ap = NULL;
976 return (e_ddi_inst_state.ins_root);
977 }
978 /*
979 * call up to find parent, then look through the list of kids
980 * for a match
981 */
982 np = in_devwalk(ddi_get_parent(dip), ap, NULL);
983 if (np == NULL)
984 return (np);
985 *ap = np;
986 np = np->in_child;
987 name = ddi_node_name(dip);
988 if (addr == NULL)
989 addr = ddi_get_name_addr(dip);
990
991 while (np) {
992 if (in_eqstr(np->in_node_name, name) &&
993 in_eqstr(np->in_unit_addr, addr)) {
994 return (np);
995 }
996 np = np->in_sibling;
997 }
998
999 return (np);
1000 }
1001
1002 /*
1003 * As in_devwalk(), but create any nodes that are missing from the tree
1004 * along the way. A node whose ancestors were never entered into the tree,
1005 * such as a child enumerated by a pseudo nexus driver whose own instance
1006 * was preassigned from driver.conf, still takes its proper place in the
1007 * tree this way. Intermediate nodes created here carry no driver entries,
1008 * as with the intermediate path components created by in_pathin().
1009 */
1010 static in_node_t *
in_devwalk_create(dev_info_t * dip)1011 in_devwalk_create(dev_info_t *dip)
1012 {
1013 in_node_t *pnp, *np;
1014 char *name, *addr;
1015
1016 ASSERT(dip);
1017 ASSERT(e_ddi_inst_state.ins_busy);
1018 if (dip == ddi_root_node())
1019 return (e_ddi_inst_state.ins_root);
1020
1021 pnp = in_devwalk_create(ddi_get_parent(dip));
1022 name = ddi_node_name(dip);
1023 addr = ddi_get_name_addr(dip);
1024
1025 for (np = pnp->in_child; np != NULL; np = np->in_sibling) {
1026 if (in_eqstr(np->in_node_name, name) &&
1027 in_eqstr(np->in_unit_addr, addr)) {
1028 return (np);
1029 }
1030 }
1031
1032 np = in_alloc_node(name, addr);
1033 ASSERT(np != NULL);
1034 in_enlist(pnp, np);
1035
1036 return (np);
1037 }
1038
1039 /*
1040 * Create a node specified by cp and assign it the given instance no.
1041 */
1042 static int
in_pathin(char * cp,int instance,char * bname,struct bind ** args)1043 in_pathin(char *cp, int instance, char *bname, struct bind **args)
1044 {
1045 in_node_t *np;
1046 in_drv_t *dp;
1047 char *name;
1048
1049 ASSERT(e_ddi_inst_state.ins_busy);
1050 ASSERT(args == NULL);
1051
1052 /*
1053 * Give a warning to the console.
1054 * return value ignored
1055 */
1056 if (cp[0] != '/' || instance == -1 || bname == NULL) {
1057 cmn_err(CE_WARN,
1058 "invalid instance file entry %s %d",
1059 cp, instance);
1060 return (0);
1061 }
1062
1063 if ((name = i_binding_to_drv_name(bname)) != NULL)
1064 bname = name;
1065
1066 np = in_make_path(cp);
1067 ASSERT(np);
1068
1069 dp = in_drvwalk(np, bname);
1070 if (dp != NULL) {
1071 cmn_err(CE_WARN,
1072 "multiple instance number assignments for "
1073 "'%s' (driver %s), %d used",
1074 cp, bname, dp->ind_instance);
1075 return (0);
1076 }
1077
1078 if (in_inuse(instance, bname)) {
1079 cmn_err(CE_WARN,
1080 "instance already in use: %s %d", cp, instance);
1081 return (0);
1082 }
1083
1084 dp = in_alloc_drv(bname);
1085 in_endrv(np, dp);
1086 dp->ind_instance = instance;
1087 dp->ind_state = IN_PERMANENT;
1088 in_hashdrv(dp);
1089
1090 return (0);
1091 }
1092
1093 /*
1094 * Create (or find) the node named by path by recursively descending from the
1095 * root's first child (we ignore the root, which is never named)
1096 */
1097 static in_node_t *
in_make_path(char * path)1098 in_make_path(char *path)
1099 {
1100 in_node_t *ap; /* ancestor pointer */
1101 in_node_t *np; /* working node pointer */
1102 in_node_t *rp; /* return node pointer */
1103 char buf[MAXPATHLEN]; /* copy of string so we can change it */
1104 char *cp, *name, *addr;
1105
1106 ASSERT(e_ddi_inst_state.ins_busy);
1107
1108 if (path == NULL || path[0] != '/')
1109 return (NULL);
1110
1111 (void) snprintf(buf, sizeof (buf), "%s", path);
1112 cp = buf + 1; /* skip over initial '/' in path */
1113 name = in_name_addr(&cp, &addr);
1114
1115 /*
1116 * In S9 and earlier releases, the path_to_inst file
1117 * SunCluster was prepended with "/node@#". This was
1118 * removed in S10. We skip the prefix if the prefix
1119 * still exists in /etc/path_to_inst. It is needed for
1120 * various forms of Solaris upgrade to work properly
1121 * in the SunCluster environment.
1122 */
1123 if ((cluster_bootflags & CLUSTER_CONFIGURED) &&
1124 (strcmp(name, "node") == 0))
1125 name = in_name_addr(&cp, &addr);
1126
1127 ap = e_ddi_inst_state.ins_root;
1128 np = e_ddi_inst_state.ins_root->in_child;
1129 rp = np;
1130 while (name) {
1131 while (name && np) {
1132 if (in_eqstr(name, np->in_node_name) &&
1133 in_eqstr(addr, np->in_unit_addr)) {
1134 name = in_name_addr(&cp, &addr);
1135 if (name == NULL)
1136 return (np);
1137 ap = np;
1138 np = np->in_child;
1139 } else {
1140 np = np->in_sibling;
1141 }
1142 }
1143 np = in_alloc_node(name, addr);
1144 in_enlist(ap, np); /* insert into tree */
1145 rp = np; /* value to return if we quit */
1146 ap = np; /* new parent */
1147 np = NULL; /* can have no children */
1148 name = in_name_addr(&cp, &addr);
1149 }
1150
1151 return (rp);
1152 }
1153
1154 /*
1155 * Insert node np into the tree as one of ap's children.
1156 */
1157 static void
in_enlist(in_node_t * ap,in_node_t * np)1158 in_enlist(in_node_t *ap, in_node_t *np)
1159 {
1160 in_node_t *mp;
1161 ASSERT(e_ddi_inst_state.ins_busy);
1162 /*
1163 * Make this node some other node's child or child's sibling
1164 */
1165 ASSERT(ap && np);
1166 if (ap->in_child == NULL) {
1167 ap->in_child = np;
1168 } else {
1169 for (mp = ap->in_child; mp; mp = mp->in_sibling)
1170 if (mp->in_sibling == NULL) {
1171 mp->in_sibling = np;
1172 break;
1173 }
1174 }
1175 np->in_parent = ap;
1176 }
1177
1178 /*
1179 * Insert drv entry dp onto a node's driver list
1180 */
1181 static void
in_endrv(in_node_t * np,in_drv_t * dp)1182 in_endrv(in_node_t *np, in_drv_t *dp)
1183 {
1184 in_drv_t *mp;
1185 ASSERT(e_ddi_inst_state.ins_busy);
1186 ASSERT(np && dp);
1187 mp = np->in_drivers;
1188 np->in_drivers = dp;
1189 dp->ind_next_drv = mp;
1190 dp->ind_node = np;
1191 }
1192
1193 /*
1194 * Parse the next name out of the path, null terminate it and update cp.
1195 * caller has copied string so we can mess with it.
1196 * Upon return *cpp points to the next section to be parsed, *addrp points
1197 * to the current address substring (or NULL if none) and we return the
1198 * current name substring (or NULL if none). name and address substrings
1199 * are null terminated in place.
1200 */
1201
1202 static char *
in_name_addr(char ** cpp,char ** addrp)1203 in_name_addr(char **cpp, char **addrp)
1204 {
1205 char *namep; /* return value holder */
1206 char *ap; /* pointer to '@' in string */
1207 char *sp; /* pointer to '/' in string */
1208
1209 if (*cpp == NULL || **cpp == '\0') {
1210 *addrp = NULL;
1211 return (NULL);
1212 }
1213 namep = *cpp;
1214 sp = strchr(*cpp, '/');
1215 if (sp != NULL) { /* more to follow */
1216 *sp = '\0';
1217 *cpp = sp + 1;
1218 } else { /* this is last component. */
1219 *cpp = NULL;
1220 }
1221 ap = strchr(namep, '@');
1222 if (ap == NULL) {
1223 *addrp = NULL;
1224 } else {
1225 *ap = '\0'; /* terminate the name */
1226 *addrp = ap + 1;
1227 }
1228 return (namep);
1229 }
1230
1231 /*
1232 * Allocate a node and storage for name and addr strings, and fill them in.
1233 */
1234 static in_node_t *
in_alloc_node(char * name,char * addr)1235 in_alloc_node(char *name, char *addr)
1236 {
1237 in_node_t *np;
1238 char *cp;
1239 size_t namelen;
1240
1241 ASSERT(e_ddi_inst_state.ins_busy);
1242 /*
1243 * Has name or will become root
1244 */
1245 ASSERT(name || e_ddi_inst_state.ins_root == NULL);
1246 if (addr == NULL)
1247 addr = "";
1248 if (name == NULL)
1249 namelen = 0;
1250 else
1251 namelen = strlen(name) + 1;
1252 cp = kmem_zalloc(sizeof (in_node_t) + namelen + strlen(addr) + 1,
1253 KM_SLEEP);
1254 np = (in_node_t *)cp;
1255 if (name) {
1256 np->in_node_name = cp + sizeof (in_node_t);
1257 (void) strcpy(np->in_node_name, name);
1258 }
1259 np->in_unit_addr = cp + sizeof (in_node_t) + namelen;
1260 (void) strcpy(np->in_unit_addr, addr);
1261 return (np);
1262 }
1263
1264 /*
1265 * Allocate a drv entry and storage for binding name string, and fill it in.
1266 */
1267 static in_drv_t *
in_alloc_drv(char * bindingname)1268 in_alloc_drv(char *bindingname)
1269 {
1270 in_drv_t *dp;
1271 char *cp;
1272 size_t namelen;
1273
1274 ASSERT(e_ddi_inst_state.ins_busy);
1275 /*
1276 * Has name or will become root
1277 */
1278 ASSERT(bindingname || e_ddi_inst_state.ins_root == NULL);
1279 if (bindingname == NULL)
1280 namelen = 0;
1281 else
1282 namelen = strlen(bindingname) + 1;
1283 cp = kmem_zalloc(sizeof (in_drv_t) + namelen, KM_SLEEP);
1284 dp = (in_drv_t *)cp;
1285 if (bindingname) {
1286 dp->ind_driver_name = cp + sizeof (in_drv_t);
1287 (void) strcpy(dp->ind_driver_name, bindingname);
1288 }
1289 dp->ind_state = IN_UNKNOWN;
1290 dp->ind_instance = -1;
1291 return (dp);
1292 }
1293
1294 static void
in_dealloc_node(in_node_t * np)1295 in_dealloc_node(in_node_t *np)
1296 {
1297 /*
1298 * The root node can never be de-allocated
1299 */
1300 ASSERT(np->in_node_name && np->in_unit_addr);
1301 ASSERT(e_ddi_inst_state.ins_busy);
1302 kmem_free(np, sizeof (in_node_t) + strlen(np->in_node_name)
1303 + strlen(np->in_unit_addr) + 2);
1304 }
1305
1306 static void
in_dealloc_drv(in_drv_t * dp)1307 in_dealloc_drv(in_drv_t *dp)
1308 {
1309 ASSERT(dp->ind_driver_name);
1310 ASSERT(e_ddi_inst_state.ins_busy);
1311 kmem_free(dp, sizeof (in_drv_t) + strlen(dp->ind_driver_name)
1312 + 1);
1313 }
1314
1315 /*
1316 * Handle the various possible versions of "no address"
1317 */
1318 static int
in_eqstr(char * a,char * b)1319 in_eqstr(char *a, char *b)
1320 {
1321 if (a == b) /* covers case where both are nulls */
1322 return (1);
1323 if (a == NULL && *b == 0)
1324 return (1);
1325 if (b == NULL && *a == 0)
1326 return (1);
1327 if (a == NULL || b == NULL)
1328 return (0);
1329 return (strcmp(a, b) == 0);
1330 }
1331
1332 /*
1333 * Returns true if instance no. is already in use by named driver
1334 */
1335 static int
in_inuse(int instance,char * name)1336 in_inuse(int instance, char *name)
1337 {
1338 major_t major;
1339 in_drv_t *dp;
1340 struct devnames *dnp;
1341
1342 ASSERT(e_ddi_inst_state.ins_busy);
1343 /*
1344 * For now, if we've never heard of this device we assume it is not
1345 * in use, since we can't tell
1346 * XXX could do the weaker search through the nomajor list checking
1347 * XXX for the same name
1348 */
1349 if ((major = ddi_name_to_major(name)) == DDI_MAJOR_T_NONE)
1350 return (0);
1351 dnp = &devnamesp[major];
1352
1353 dp = dnp->dn_inlist;
1354 while (dp) {
1355 if (dp->ind_instance == instance)
1356 return (1);
1357 dp = dp->ind_next;
1358 }
1359 return (0);
1360 }
1361
1362 static void
in_hashdrv(in_drv_t * dp)1363 in_hashdrv(in_drv_t *dp)
1364 {
1365 struct devnames *dnp;
1366 in_drv_t *mp, *pp;
1367 major_t major;
1368
1369 /* hash to no major list */
1370 major = ddi_name_to_major(dp->ind_driver_name);
1371 if (major == DDI_MAJOR_T_NONE) {
1372 dp->ind_next = e_ddi_inst_state.ins_no_major;
1373 e_ddi_inst_state.ins_no_major = dp;
1374 return;
1375 }
1376
1377 /*
1378 * dnp->dn_inlist is sorted by instance number.
1379 * Adding a new instance entry may introduce holes,
1380 * set dn_instance to IN_SEARCHME so the next instance
1381 * assignment may fill in holes.
1382 */
1383 dnp = &devnamesp[major];
1384 pp = mp = dnp->dn_inlist;
1385 if (mp == NULL || dp->ind_instance < mp->ind_instance) {
1386 /* prepend as the first entry, turn on IN_SEARCHME */
1387 dnp->dn_instance = IN_SEARCHME;
1388 dp->ind_next = mp;
1389 dnp->dn_inlist = dp;
1390 return;
1391 }
1392
1393 ASSERT(mp->ind_instance != dp->ind_instance);
1394 while (mp->ind_instance < dp->ind_instance && mp->ind_next) {
1395 pp = mp;
1396 mp = mp->ind_next;
1397 ASSERT(mp->ind_instance != dp->ind_instance);
1398 }
1399
1400 if (mp->ind_instance < dp->ind_instance) { /* end of list */
1401 dp->ind_next = NULL;
1402 mp->ind_next = dp;
1403 } else {
1404 dp->ind_next = pp->ind_next;
1405 pp->ind_next = dp;
1406 }
1407 }
1408
1409 /*
1410 * Remove a driver entry from the list, given a previous pointer
1411 */
1412 static void
in_removedrv(struct devnames * dnp,in_drv_t * mp)1413 in_removedrv(struct devnames *dnp, in_drv_t *mp)
1414 {
1415 in_drv_t *dp;
1416 in_drv_t *prevp;
1417
1418 if (dnp->dn_inlist == mp) { /* head of list */
1419 dnp->dn_inlist = mp->ind_next;
1420 dnp->dn_instance = IN_SEARCHME;
1421 in_dq_drv(mp);
1422 in_dealloc_drv(mp);
1423 return;
1424 }
1425 prevp = dnp->dn_inlist;
1426 for (dp = prevp->ind_next; dp; dp = dp->ind_next) {
1427 if (dp == mp) { /* found it */
1428 break;
1429 }
1430 prevp = dp;
1431 }
1432
1433 ASSERT(dp == mp);
1434 dnp->dn_instance = IN_SEARCHME;
1435 prevp->ind_next = mp->ind_next;
1436 in_dq_drv(mp);
1437 in_dealloc_drv(mp);
1438 }
1439
1440 static void
in_dq_drv(in_drv_t * mp)1441 in_dq_drv(in_drv_t *mp)
1442 {
1443 struct in_node *node = mp->ind_node;
1444 in_drv_t *ptr, *prev;
1445
1446 if (mp == node->in_drivers) {
1447 node->in_drivers = mp->ind_next_drv;
1448 return;
1449 }
1450 prev = node->in_drivers;
1451 for (ptr = prev->ind_next_drv; ptr != (struct in_drv *)NULL;
1452 ptr = ptr->ind_next_drv) {
1453 if (ptr == mp) {
1454 prev->ind_next_drv = ptr->ind_next_drv;
1455 return;
1456 }
1457 prev = ptr;
1458 }
1459 panic("in_dq_drv: in_drv not found on node driver list");
1460 }
1461
1462
1463 in_drv_t *
in_drvwalk(in_node_t * np,char * binding_name)1464 in_drvwalk(in_node_t *np, char *binding_name)
1465 {
1466 char *name;
1467 in_drv_t *dp = np->in_drivers;
1468 while (dp) {
1469 if ((name = i_binding_to_drv_name(dp->ind_driver_name))
1470 == NULL) {
1471 name = dp->ind_driver_name;
1472 }
1473 if (strcmp(binding_name, name) == 0) {
1474 break;
1475 }
1476 dp = dp->ind_next_drv;
1477 }
1478 return (dp);
1479 }
1480
1481
1482
1483 static void
i_log_devfs_instance_mod(void)1484 i_log_devfs_instance_mod(void)
1485 {
1486 sysevent_t *ev;
1487 sysevent_id_t eid;
1488 static int sent_one = 0;
1489
1490 /*
1491 * Prevent unnecessary event generation. Do not generate more than
1492 * one event during boot.
1493 */
1494 if (sent_one && !i_ddi_io_initialized())
1495 return;
1496
1497 ev = sysevent_alloc(EC_DEVFS, ESC_DEVFS_INSTANCE_MOD, EP_DDI,
1498 SE_NOSLEEP);
1499 if (ev == NULL) {
1500 return;
1501 }
1502 if (log_sysevent(ev, SE_NOSLEEP, &eid) != 0) {
1503 cmn_err(CE_WARN, "i_log_devfs_instance_mod: failed to post "
1504 "event");
1505 } else {
1506 sent_one = 1;
1507 }
1508 sysevent_free(ev);
1509 }
1510
1511 void
e_ddi_enter_instance(void)1512 e_ddi_enter_instance(void)
1513 {
1514 mutex_enter(&e_ddi_inst_state.ins_serial);
1515 if (e_ddi_inst_state.ins_thread == curthread)
1516 e_ddi_inst_state.ins_busy++;
1517 else {
1518 while (e_ddi_inst_state.ins_busy)
1519 cv_wait(&e_ddi_inst_state.ins_serial_cv,
1520 &e_ddi_inst_state.ins_serial);
1521 e_ddi_inst_state.ins_thread = curthread;
1522 e_ddi_inst_state.ins_busy = 1;
1523 }
1524 mutex_exit(&e_ddi_inst_state.ins_serial);
1525 }
1526
1527 void
e_ddi_exit_instance(void)1528 e_ddi_exit_instance(void)
1529 {
1530 mutex_enter(&e_ddi_inst_state.ins_serial);
1531 e_ddi_inst_state.ins_busy--;
1532 if (e_ddi_inst_state.ins_busy == 0) {
1533 cv_broadcast(&e_ddi_inst_state.ins_serial_cv);
1534 e_ddi_inst_state.ins_thread = NULL;
1535 }
1536 mutex_exit(&e_ddi_inst_state.ins_serial);
1537 }
1538
1539 int
e_ddi_instance_is_clean(void)1540 e_ddi_instance_is_clean(void)
1541 {
1542 return (e_ddi_inst_state.ins_dirty == B_FALSE);
1543 }
1544
1545 void
e_ddi_instance_set_clean(void)1546 e_ddi_instance_set_clean(void)
1547 {
1548 e_ddi_inst_state.ins_dirty = B_FALSE;
1549 }
1550
1551 in_node_t *
e_ddi_instance_root(void)1552 e_ddi_instance_root(void)
1553 {
1554 return (e_ddi_inst_state.ins_root);
1555 }
1556
1557 /*
1558 * Visit a node in the instance tree
1559 */
1560 static int
in_walk_instances(in_node_t * np,char * path,char * this,int (* f)(const char *,in_node_t *,in_drv_t *,void *),void * arg)1561 in_walk_instances(in_node_t *np, char *path, char *this,
1562 int (*f)(const char *, in_node_t *, in_drv_t *, void *), void *arg)
1563 {
1564 in_drv_t *dp;
1565 int rval = INST_WALK_CONTINUE;
1566 char *next;
1567
1568 while (np != NULL) {
1569
1570 if (np->in_unit_addr[0] == 0)
1571 (void) sprintf(this, "/%s", np->in_node_name);
1572 else
1573 (void) sprintf(this, "/%s@%s", np->in_node_name,
1574 np->in_unit_addr);
1575 next = this + strlen(this);
1576
1577 for (dp = np->in_drivers; dp; dp = dp->ind_next_drv) {
1578 if (dp->ind_state == IN_PERMANENT) {
1579 rval = (*f)(path, np, dp, arg);
1580 if (rval == INST_WALK_TERMINATE)
1581 break;
1582 }
1583 }
1584
1585 if (np->in_child) {
1586 rval = in_walk_instances(np->in_child,
1587 path, next, f, arg);
1588 if (rval == INST_WALK_TERMINATE)
1589 break;
1590 }
1591
1592 np = np->in_sibling;
1593 }
1594
1595 return (rval);
1596 }
1597
1598 /*
1599 * A general interface for walking the instance tree,
1600 * calling a user-supplied callback for each node.
1601 */
1602 int
e_ddi_walk_instances(int (* f)(const char *,in_node_t *,in_drv_t *,void *),void * arg)1603 e_ddi_walk_instances(int (*f)(const char *, in_node_t *, in_drv_t *, void *),
1604 void *arg)
1605 {
1606 in_node_t *root;
1607 int rval;
1608 char *path;
1609
1610 path = kmem_zalloc(MAXPATHLEN, KM_SLEEP);
1611
1612 e_ddi_enter_instance();
1613 root = e_ddi_instance_root();
1614 rval = in_walk_instances(root->in_child, path, path, f, arg);
1615
1616 e_ddi_exit_instance();
1617
1618 kmem_free(path, MAXPATHLEN);
1619 return (rval);
1620 }
1621
1622 in_node_t *
e_ddi_path_to_instance(char * path)1623 e_ddi_path_to_instance(char *path)
1624 {
1625 in_node_t *np;
1626
1627 np = in_make_path(path);
1628 if (np && np->in_drivers && np->in_drivers->ind_state == IN_PERMANENT) {
1629 return (np);
1630 }
1631 return (NULL);
1632 }
1633
1634 void
e_ddi_borrow_instance(dev_info_t * cdip,in_node_t * cnp)1635 e_ddi_borrow_instance(dev_info_t *cdip, in_node_t *cnp)
1636 {
1637 char *alias;
1638 in_node_t *anp;
1639 char *curr = kmem_alloc(MAXPATHLEN, KM_NOSLEEP);
1640
1641 if (curr == NULL) {
1642 ddi_err(DER_PANIC, cdip, "curr alloc failed");
1643 /*NOTREACHED*/
1644 }
1645
1646 (void) ddi_pathname(cdip, curr);
1647
1648 if (cnp->in_drivers) {
1649 /* there can be multiple drivers bound */
1650 ddi_err(DER_LOG, cdip, "%s has previous binding: %s", curr,
1651 cnp->in_drivers->ind_driver_name);
1652 }
1653
1654 alias = ddi_curr_redirect(curr);
1655
1656 /* bail here if the alias matches any other current path or itself */
1657 if (alias && ((strcmp(curr, alias) == 0) ||
1658 (ddi_curr_redirect(alias) != 0))) {
1659 DDI_MP_DBG((CE_NOTE, "not borrowing current: %s alias: %s",
1660 curr, alias));
1661 goto out;
1662 }
1663
1664 if (alias && (anp = e_ddi_path_to_instance(alias)) != NULL) {
1665 /*
1666 * Since pcieb nodes can split and merge, it is dangerous
1667 * to borrow and instance for them. However since they do
1668 * not expose their instance numbers it is safe to never
1669 * borrow one.
1670 */
1671 if (anp->in_drivers->ind_driver_name &&
1672 (strcmp(anp->in_drivers->ind_driver_name, "pcieb") == 0)) {
1673 DDI_MP_DBG((CE_NOTE, "not borrowing pcieb: "
1674 "%s alias: %s", curr, alias));
1675 goto out;
1676 }
1677 DDI_MP_DBG((CE_NOTE, "borrowing current: %s alias: %s",
1678 curr, alias));
1679 cnp->in_drivers = anp->in_drivers;
1680 anp->in_drivers = NULL;
1681 }
1682 out:
1683 kmem_free(curr, MAXPATHLEN);
1684 }
1685
1686 void
e_ddi_return_instance(dev_info_t * cdip,char * addr,in_node_t * cnp)1687 e_ddi_return_instance(dev_info_t *cdip, char *addr, in_node_t *cnp)
1688 {
1689 in_node_t *anp;
1690 char *alias;
1691 char *curr = kmem_alloc(MAXPATHLEN, KM_NOSLEEP);
1692
1693 if (curr == NULL) {
1694 ddi_err(DER_PANIC, cdip, "alloc of curr failed");
1695 /*NOTREACHED*/
1696 }
1697
1698 (void) ddi_pathname(cdip, curr);
1699 if (addr) {
1700 (void) strlcat(curr, "@", MAXPATHLEN);
1701 (void) strlcat(curr, addr, MAXPATHLEN);
1702
1703 }
1704 if (cnp->in_drivers == NULL) {
1705 ddi_err(DER_PANIC, cdip, "cnp has no inst: %p", cnp);
1706 /*NOTREACHED*/
1707 }
1708
1709 alias = ddi_curr_redirect(curr);
1710 kmem_free(curr, MAXPATHLEN);
1711
1712 if (alias && (anp = e_ddi_path_to_instance(alias)) != NULL) {
1713 ASSERT(anp->in_drivers == NULL);
1714 anp->in_drivers = cnp->in_drivers;
1715 cnp->in_drivers = NULL;
1716 }
1717 }
1718