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IMSM: Fix signed/unsigned comparisons
[thirdparty/mdadm.git] / platform-intel.c
CommitLineData
b390f610
DW
1/*
2 * Intel(R) Matrix Storage Manager hardware and firmware support routines
3 *
4 * Copyright (C) 2008 Intel Corporation
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope it will be useful, but WITHOUT
11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * more details.
14 *
15 * You should have received a copy of the GNU General Public License along with
16 * this program; if not, write to the Free Software Foundation, Inc.,
17 * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
18 */
19#include "mdadm.h"
20#include "platform-intel.h"
21#include "probe_roms.h"
22#include <stdio.h>
23#include <stdlib.h>
24#include <string.h>
25#include <unistd.h>
26#include <dirent.h>
27#include <fcntl.h>
28#include <sys/mman.h>
29#include <sys/types.h>
30#include <sys/stat.h>
fc13853f
LM
31#include <limits.h>
32
9c747fa0
LM
33static int devpath_to_ll(const char *dev_path, const char *entry,
34 unsigned long long *val);
35
9bc4ae77 36static void free_sys_dev(struct sys_dev **list)
b390f610
DW
37{
38 while (*list) {
39 struct sys_dev *next = (*list)->next;
40
41 if ((*list)->path)
42 free((*list)->path);
43 free(*list);
44 *list = next;
45 }
46}
47
48struct sys_dev *find_driver_devices(const char *bus, const char *driver)
49{
50 /* search sysfs for devices driven by 'driver' */
5dbb8c8d 51 char path[292];
b390f610
DW
52 char link[256];
53 char *c;
54 DIR *driver_dir;
55 struct dirent *de;
56 struct sys_dev *head = NULL;
57 struct sys_dev *list = NULL;
60f0f54d 58 struct sys_dev *vmd = NULL;
a8e5382a 59 enum sys_dev_type type;
9c747fa0 60 unsigned long long dev_id;
6b781d33 61 unsigned long long class;
a8e5382a
LM
62
63 if (strcmp(driver, "isci") == 0)
64 type = SYS_DEV_SAS;
65 else if (strcmp(driver, "ahci") == 0)
66 type = SYS_DEV_SATA;
60f0f54d
PB
67 else if (strcmp(driver, "nvme") == 0) {
68 /* if looking for nvme devs, first look for vmd */
69 vmd = find_driver_devices("pci", "vmd");
614902f6 70 type = SYS_DEV_NVME;
60f0f54d
PB
71 } else if (strcmp(driver, "vmd") == 0)
72 type = SYS_DEV_VMD;
a8e5382a
LM
73 else
74 type = SYS_DEV_UNKNOWN;
b390f610
DW
75
76 sprintf(path, "/sys/bus/%s/drivers/%s", bus, driver);
77 driver_dir = opendir(path);
60f0f54d
PB
78 if (!driver_dir) {
79 if (vmd)
80 free_sys_dev(&vmd);
b390f610 81 return NULL;
60f0f54d 82 }
b390f610 83 for (de = readdir(driver_dir); de; de = readdir(driver_dir)) {
5a1920f2 84 int n;
60f0f54d 85 int skip = 0;
5a1920f2 86
b390f610
DW
87 /* is 'de' a device? check that the 'subsystem' link exists and
88 * that its target matches 'bus'
89 */
90 sprintf(path, "/sys/bus/%s/drivers/%s/%s/subsystem",
91 bus, driver, de->d_name);
5a1920f2 92 n = readlink(path, link, sizeof(link));
f21e18ca 93 if (n < 0 || n >= (int)sizeof(link))
b390f610 94 continue;
5a1920f2 95 link[n] = '\0';
b390f610
DW
96 c = strrchr(link, '/');
97 if (!c)
98 continue;
99 if (strncmp(bus, c+1, strlen(bus)) != 0)
100 continue;
101
a8e5382a
LM
102 sprintf(path, "/sys/bus/%s/drivers/%s/%s",
103 bus, driver, de->d_name);
104
60f0f54d
PB
105 /* if searching for nvme - skip vmd connected one */
106 if (type == SYS_DEV_NVME) {
107 struct sys_dev *dev;
108 char *rp = realpath(path, NULL);
109 for (dev = vmd; dev; dev = dev->next) {
110 if ((strncmp(dev->path, rp, strlen(dev->path)) == 0))
111 skip = 1;
112 }
113 free(rp);
114 }
115
116 /* if it's not Intel device or mark as VMD connected - skip it. */
117 if (devpath_to_vendor(path) != 0x8086 || skip == 1)
a8e5382a
LM
118 continue;
119
9c747fa0
LM
120 if (devpath_to_ll(path, "device", &dev_id) != 0)
121 continue;
122
6b781d33
AP
123 if (devpath_to_ll(path, "class", &class) != 0)
124 continue;
125
b390f610
DW
126 /* start / add list entry */
127 if (!head) {
503975b9 128 head = xmalloc(sizeof(*head));
b390f610
DW
129 list = head;
130 } else {
503975b9 131 list->next = xmalloc(sizeof(*head));
b390f610
DW
132 list = list->next;
133 }
134
135 if (!list) {
136 free_sys_dev(&head);
137 break;
138 }
139
9c747fa0 140 list->dev_id = (__u16) dev_id;
6b781d33 141 list->class = (__u32) class;
a8e5382a 142 list->type = type;
60f0f54d
PB
143 /* Each VMD device (domain) adds separate PCI bus, it is better to
144 * store path as a path to that bus (easier further determination which
145 * NVMe dev is connected to this particular VMD domain).
146 */
147 if (type == SYS_DEV_VMD) {
148 sprintf(path, "/sys/bus/%s/drivers/%s/%s/domain/device",
149 bus, driver, de->d_name);
150 }
e3635eee 151 list->path = realpath(path, NULL);
b390f610 152 list->next = NULL;
a8e5382a
LM
153 if ((list->pci_id = strrchr(list->path, '/')) != NULL)
154 list->pci_id++;
b390f610 155 }
2a17c77b 156 closedir(driver_dir);
60f0f54d
PB
157
158 if (vmd) {
159 if (list)
160 list->next = vmd;
161 else
162 head = vmd;
163 }
164
b390f610
DW
165 return head;
166}
167
9c747fa0 168static struct sys_dev *intel_devices=NULL;
9bc4ae77 169static time_t valid_time = 0;
9c747fa0 170
0858eccf
AP
171struct sys_dev *device_by_id(__u16 device_id)
172{
173 struct sys_dev *iter;
174
175 for (iter = intel_devices; iter != NULL; iter = iter->next)
176 if (iter->dev_id == device_id)
177 return iter;
178 return NULL;
179}
180
9c747fa0
LM
181static int devpath_to_ll(const char *dev_path, const char *entry, unsigned long long *val)
182{
183 char path[strlen(dev_path) + strlen(entry) + 2];
184 int fd;
185 int n;
186
187 sprintf(path, "%s/%s", dev_path, entry);
188
189 fd = open(path, O_RDONLY);
190 if (fd < 0)
191 return -1;
192 n = sysfs_fd_get_ll(fd, val);
193 close(fd);
194 return n;
195}
196
60f0f54d 197__u16 devpath_to_vendor(const char *dev_path)
b390f610
DW
198{
199 char path[strlen(dev_path) + strlen("/vendor") + 1];
200 char vendor[7];
201 int fd;
202 __u16 id = 0xffff;
203 int n;
204
205 sprintf(path, "%s/vendor", dev_path);
206
207 fd = open(path, O_RDONLY);
208 if (fd < 0)
209 return 0xffff;
210
211 n = read(fd, vendor, sizeof(vendor));
212 if (n == sizeof(vendor)) {
213 vendor[n - 1] = '\0';
214 id = strtoul(vendor, NULL, 16);
215 }
216 close(fd);
217
218 return id;
219}
220
a8e5382a 221struct sys_dev *find_intel_devices(void)
b390f610 222{
614902f6 223 struct sys_dev *ahci, *isci, *nvme;
a8e5382a 224
9bc4ae77
N
225 if (valid_time > time(0) - 10)
226 return intel_devices;
227
228 if (intel_devices)
229 free_sys_dev(&intel_devices);
230
a8e5382a
LM
231 isci = find_driver_devices("pci", "isci");
232 ahci = find_driver_devices("pci", "ahci");
60f0f54d 233 /* Searching for NVMe will return list of NVMe and VMD controllers */
614902f6 234 nvme = find_driver_devices("pci", "nvme");
a8e5382a 235
614902f6
PB
236 if (!isci && !ahci) {
237 ahci = nvme;
238 } else if (!ahci) {
a8e5382a 239 ahci = isci;
614902f6
PB
240 struct sys_dev *elem = ahci;
241 while (elem->next)
242 elem = elem->next;
243 elem->next = nvme;
a8e5382a
LM
244 } else {
245 struct sys_dev *elem = ahci;
246 while (elem->next)
247 elem = elem->next;
248 elem->next = isci;
614902f6
PB
249 while (elem->next)
250 elem = elem->next;
251 elem->next = nvme;
a8e5382a 252 }
9bc4ae77
N
253 intel_devices = ahci;
254 valid_time = time(0);
255 return intel_devices;
b390f610
DW
256}
257
3c8bfb5d 258/*
fc13853f 259 * PCI Expansion ROM Data Structure Format */
3c8bfb5d
LM
260struct pciExpDataStructFormat {
261 __u8 ver[4];
262 __u16 vendorID;
263 __u16 deviceID;
6b781d33 264 __u16 devListOffset;
f666bcc6
PB
265 __u16 pciDataStructLen;
266 __u8 pciDataStructRev;
3c8bfb5d
LM
267} __attribute__ ((packed));
268
5e1d6128 269struct orom_entry *orom_entries;
0858eccf 270
72a45777 271const struct orom_entry *get_orom_entry_by_device_id(__u16 dev_id)
6b781d33 272{
5e1d6128
AP
273 struct orom_entry *entry;
274 struct devid_list *devid;
6b781d33 275
5e1d6128
AP
276 for (entry = orom_entries; entry; entry = entry->next) {
277 for (devid = entry->devid_list; devid; devid = devid->next) {
278 if (devid->devid == dev_id)
72a45777 279 return entry;
6b781d33
AP
280 }
281 }
5e1d6128 282
6b781d33
AP
283 return NULL;
284}
285
72a45777
PB
286const struct imsm_orom *get_orom_by_device_id(__u16 dev_id)
287{
288 const struct orom_entry *entry = get_orom_entry_by_device_id(dev_id);
289
290 if (entry)
291 return &entry->orom;
292
293 return NULL;
294}
295
5e1d6128 296static struct orom_entry *add_orom(const struct imsm_orom *orom)
6b781d33 297{
5e1d6128
AP
298 struct orom_entry *list;
299 struct orom_entry *prev = NULL;
300
301 for (list = orom_entries; list; prev = list, list = list->next)
302 ;
303
304 list = xmalloc(sizeof(struct orom_entry));
305 list->orom = *orom;
306 list->devid_list = NULL;
307 list->next = NULL;
308
309 if (prev == NULL)
310 orom_entries = list;
311 else
312 prev->next = list;
313
314 return list;
6b781d33
AP
315}
316
5e1d6128 317static void add_orom_device_id(struct orom_entry *entry, __u16 dev_id)
6b781d33 318{
6b781d33
AP
319 struct devid_list *list;
320 struct devid_list *prev = NULL;
321
5e1d6128
AP
322 for (list = entry->devid_list; list; prev = list, list = list->next) {
323 if (list->devid == dev_id)
6b781d33 324 return;
6b781d33 325 }
5e1d6128
AP
326 list = xmalloc(sizeof(struct devid_list));
327 list->devid = dev_id;
328 list->next = NULL;
329
330 if (prev == NULL)
331 entry->devid_list = list;
332 else
333 prev->next = list;
6b781d33 334}
fc13853f 335
3c8bfb5d 336static int scan(const void *start, const void *end, const void *data)
b390f610
DW
337{
338 int offset;
6b781d33 339 const struct imsm_orom *imsm_mem = NULL;
b390f610 340 int len = (end - start);
3c8bfb5d
LM
341 struct pciExpDataStructFormat *ptr= (struct pciExpDataStructFormat *)data;
342
9c747fa0
LM
343 if (data + 0x18 > end) {
344 dprintf("cannot find pciExpDataStruct \n");
345 return 0;
346 }
347
3c8bfb5d
LM
348 dprintf("ptr->vendorID: %lx __le16_to_cpu(ptr->deviceID): %lx \n",
349 (ulong) __le16_to_cpu(ptr->vendorID),
350 (ulong) __le16_to_cpu(ptr->deviceID));
351
6b781d33 352 if (__le16_to_cpu(ptr->vendorID) != 0x8086)
3c8bfb5d 353 return 0;
b390f610
DW
354
355 for (offset = 0; offset < len; offset += 4) {
6b781d33
AP
356 const void *mem = start + offset;
357
358 if ((memcmp(mem, IMSM_OROM_SIGNATURE, 4) == 0)) {
359 imsm_mem = mem;
360 break;
b390f610
DW
361 }
362 }
6b781d33
AP
363
364 if (!imsm_mem)
365 return 0;
366
5e1d6128 367 struct orom_entry *orom = add_orom(imsm_mem);
6b781d33 368
f666bcc6
PB
369 /* only PciDataStructure with revision 3 and above supports devices list. */
370 if (ptr->pciDataStructRev >= 3 && ptr->devListOffset) {
6b781d33
AP
371 const __u16 *dev_list = (void *)ptr + ptr->devListOffset;
372 int i;
373
374 for (i = 0; dev_list[i] != 0; i++)
375 add_orom_device_id(orom, dev_list[i]);
376 } else {
377 add_orom_device_id(orom, __le16_to_cpu(ptr->deviceID));
378 }
379
b390f610
DW
380 return 0;
381}
382
6b781d33 383const struct imsm_orom *imsm_platform_test(struct sys_dev *hba)
fc13853f 384{
6b781d33
AP
385 struct imsm_orom orom = {
386 .signature = IMSM_OROM_SIGNATURE,
387 .rlc = IMSM_OROM_RLC_RAID0 | IMSM_OROM_RLC_RAID1 |
388 IMSM_OROM_RLC_RAID10 | IMSM_OROM_RLC_RAID5,
389 .sss = IMSM_OROM_SSS_4kB | IMSM_OROM_SSS_8kB |
390 IMSM_OROM_SSS_16kB | IMSM_OROM_SSS_32kB |
391 IMSM_OROM_SSS_64kB | IMSM_OROM_SSS_128kB |
392 IMSM_OROM_SSS_256kB | IMSM_OROM_SSS_512kB |
393 IMSM_OROM_SSS_1MB | IMSM_OROM_SSS_2MB,
394 .dpa = IMSM_OROM_DISKS_PER_ARRAY,
395 .tds = IMSM_OROM_TOTAL_DISKS,
396 .vpa = IMSM_OROM_VOLUMES_PER_ARRAY,
397 .vphba = IMSM_OROM_VOLUMES_PER_HBA
398 };
399 orom.attr = orom.rlc | IMSM_OROM_ATTR_ChecksumVerify;
fc13853f
LM
400
401 if (check_env("IMSM_TEST_OROM_NORAID5")) {
6b781d33 402 orom.rlc = IMSM_OROM_RLC_RAID0 | IMSM_OROM_RLC_RAID1 |
fc13853f
LM
403 IMSM_OROM_RLC_RAID10;
404 }
6b781d33
AP
405 if (check_env("IMSM_TEST_AHCI_EFI_NORAID5") && (hba->type == SYS_DEV_SAS)) {
406 orom.rlc = IMSM_OROM_RLC_RAID0 | IMSM_OROM_RLC_RAID1 |
fc13853f
LM
407 IMSM_OROM_RLC_RAID10;
408 }
6b781d33
AP
409 if (check_env("IMSM_TEST_SCU_EFI_NORAID5") && (hba->type == SYS_DEV_SATA)) {
410 orom.rlc = IMSM_OROM_RLC_RAID0 | IMSM_OROM_RLC_RAID1 |
fc13853f 411 IMSM_OROM_RLC_RAID10;
cceebc67
DW
412 }
413
5e1d6128 414 struct orom_entry *ret = add_orom(&orom);
6b781d33
AP
415
416 add_orom_device_id(ret, hba->dev_id);
417
5e1d6128 418 return &ret->orom;
fc13853f
LM
419}
420
6b781d33 421static const struct imsm_orom *find_imsm_hba_orom(struct sys_dev *hba)
fc13853f
LM
422{
423 unsigned long align;
424
6b781d33
AP
425 if (check_env("IMSM_TEST_OROM"))
426 return imsm_platform_test(hba);
fc13853f 427
fc13853f 428 /* return empty OROM capabilities in EFI test mode */
6b781d33 429 if (check_env("IMSM_TEST_AHCI_EFI") || check_env("IMSM_TEST_SCU_EFI"))
fc13853f
LM
430 return NULL;
431
9bc4ae77 432 find_intel_devices();
9c747fa0
LM
433
434 if (intel_devices == NULL)
b390f610
DW
435 return NULL;
436
437 /* scan option-rom memory looking for an imsm signature */
969c2555
DW
438 if (check_env("IMSM_SAFE_OROM_SCAN"))
439 align = 2048;
440 else
441 align = 512;
442 if (probe_roms_init(align) != 0)
b390f610
DW
443 return NULL;
444 probe_roms();
9c747fa0 445 /* ignore return value - True is returned if both adapater roms are found */
fc13853f 446 scan_adapter_roms(scan);
b390f610
DW
447 probe_roms_exit();
448
6b781d33 449 return get_orom_by_device_id(hba->dev_id);
fc13853f
LM
450}
451
1a901471
LM
452#define GUID_STR_MAX 37 /* according to GUID format:
453 * xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx" */
454
455#define EFI_GUID(a, b, c, d0, d1, d2, d3, d4, d5, d6, d7) \
456((struct efi_guid) \
457{{ (a) & 0xff, ((a) >> 8) & 0xff, ((a) >> 16) & 0xff, ((a) >> 24) & 0xff, \
458 (b) & 0xff, ((b) >> 8) & 0xff, \
459 (c) & 0xff, ((c) >> 8) & 0xff, \
460 (d0), (d1), (d2), (d3), (d4), (d5), (d6), (d7) }})
fc13853f 461
5a6baf66 462#define SYS_EFI_VAR_PATH "/sys/firmware/efi/vars"
88605db9 463#define SYS_EFIVARS_PATH "/sys/firmware/efi/efivars"
5a6baf66
LM
464#define SCU_PROP "RstScuV"
465#define AHCI_PROP "RstSataV"
81188ef8
AP
466#define AHCI_SSATA_PROP "RstsSatV"
467#define AHCI_CSATA_PROP "RstCSatV"
60f0f54d 468#define VMD_PROP "RstUefiV"
5a6baf66
LM
469
470#define VENDOR_GUID \
471 EFI_GUID(0x193dfefa, 0xa445, 0x4302, 0x99, 0xd8, 0xef, 0x3a, 0xad, 0x1a, 0x04, 0xc6)
472
6b781d33 473#define PCI_CLASS_RAID_CNTRL 0x010400
5a6baf66 474
88605db9
AP
475static int read_efi_var(void *buffer, ssize_t buf_size, char *variable_name, struct efi_guid guid)
476{
477 char path[PATH_MAX];
478 char buf[GUID_STR_MAX];
479 int fd;
480 ssize_t n;
481
482 snprintf(path, PATH_MAX, "%s/%s-%s", SYS_EFIVARS_PATH, variable_name, guid_str(buf, guid));
483
484 fd = open(path, O_RDONLY);
485 if (fd < 0)
486 return 1;
487
488 /* read the variable attributes and ignore it */
489 n = read(fd, buf, sizeof(__u32));
490 if (n < 0) {
491 close(fd);
492 return 1;
493 }
494
495 /* read the variable data */
496 n = read(fd, buffer, buf_size);
497 close(fd);
498 if (n < buf_size)
499 return 1;
500
501 return 0;
502}
503
504static int read_efi_variable(void *buffer, ssize_t buf_size, char *variable_name, struct efi_guid guid)
5a6baf66 505{
5a6baf66
LM
506 char path[PATH_MAX];
507 char buf[GUID_STR_MAX];
aae4c111
HCP
508 int dfd;
509 ssize_t n, var_data_len;
510
88605db9
AP
511 /* Try to read the variable using the new efivarfs interface first.
512 * If that fails, fall back to the old sysfs-efivars interface. */
513 if (!read_efi_var(buffer, buf_size, variable_name, guid))
514 return 0;
515
aae4c111
HCP
516 snprintf(path, PATH_MAX, "%s/%s-%s/size", SYS_EFI_VAR_PATH, variable_name, guid_str(buf, guid));
517
518 dprintf("EFI VAR: path=%s\n", path);
519 /* get size of variable data */
520 dfd = open(path, O_RDONLY);
521 if (dfd < 0)
522 return 1;
523
524 n = read(dfd, &buf, sizeof(buf));
525 close(dfd);
526 if (n < 0)
527 return 1;
528 buf[n] = '\0';
529
530 errno = 0;
531 var_data_len = strtoul(buf, NULL, 16);
532 if ((errno == ERANGE && (var_data_len == LONG_MAX))
5d500228 533 || (errno != 0 && var_data_len == 0))
aae4c111
HCP
534 return 1;
535
536 /* get data */
537 snprintf(path, PATH_MAX, "%s/%s-%s/data", SYS_EFI_VAR_PATH, variable_name, guid_str(buf, guid));
538
539 dprintf("EFI VAR: path=%s\n", path);
540 dfd = open(path, O_RDONLY);
541 if (dfd < 0)
542 return 1;
543
544 n = read(dfd, buffer, buf_size);
545 close(dfd);
546 if (n != var_data_len || n < buf_size) {
547 return 1;
548 }
549
550 return 0;
551}
5a6baf66 552
6b781d33 553const struct imsm_orom *find_imsm_efi(struct sys_dev *hba)
aae4c111 554{
6b781d33 555 struct imsm_orom orom;
5e1d6128 556 struct orom_entry *ret;
81188ef8 557 int err;
5a6baf66 558
6b781d33
AP
559 if (check_env("IMSM_TEST_AHCI_EFI") || check_env("IMSM_TEST_SCU_EFI"))
560 return imsm_platform_test(hba);
5a6baf66 561
5a6baf66 562 /* OROM test is set, return that there is no EFI capabilities */
aae4c111 563 if (check_env("IMSM_TEST_OROM"))
5a6baf66 564 return NULL;
5a6baf66 565
6b781d33 566 if (hba->type == SYS_DEV_SATA && hba->class != PCI_CLASS_RAID_CNTRL)
5a6baf66 567 return NULL;
aae4c111 568
81188ef8
AP
569 err = read_efi_variable(&orom, sizeof(orom), hba->type == SYS_DEV_SAS ? SCU_PROP : AHCI_PROP, VENDOR_GUID);
570
571 /* try to read variable for second AHCI controller */
572 if (err && hba->type == SYS_DEV_SATA)
573 err = read_efi_variable(&orom, sizeof(orom), AHCI_SSATA_PROP, VENDOR_GUID);
574
575 /* try to read variable for combined AHCI controllers */
576 if (err && hba->type == SYS_DEV_SATA) {
5e1d6128 577 static struct orom_entry *csata;
81188ef8
AP
578
579 err = read_efi_variable(&orom, sizeof(orom), AHCI_CSATA_PROP, VENDOR_GUID);
580 if (!err) {
581 if (!csata)
582 csata = add_orom(&orom);
583 add_orom_device_id(csata, hba->dev_id);
60f0f54d 584 csata->type = hba->type;
5e1d6128 585 return &csata->orom;
81188ef8
AP
586 }
587 }
588
60f0f54d
PB
589 if (hba->type == SYS_DEV_VMD) {
590 err = read_efi_variable(&orom, sizeof(orom), VMD_PROP, VENDOR_GUID);
591 }
592
81188ef8 593 if (err)
6b781d33 594 return NULL;
5a6baf66 595
6b781d33
AP
596 ret = add_orom(&orom);
597 add_orom_device_id(ret, hba->dev_id);
60f0f54d 598 ret->type = hba->type;
6b781d33 599
5e1d6128 600 return &ret->orom;
fc13853f
LM
601}
602
614902f6
PB
603const struct imsm_orom *find_imsm_nvme(struct sys_dev *hba)
604{
5e1d6128 605 static struct orom_entry *nvme_orom;
614902f6
PB
606
607 if (hba->type != SYS_DEV_NVME)
608 return NULL;
609
610 if (!nvme_orom) {
611 struct imsm_orom nvme_orom_compat = {
612 .signature = IMSM_NVME_OROM_COMPAT_SIGNATURE,
613 .rlc = IMSM_OROM_RLC_RAID0 | IMSM_OROM_RLC_RAID1 |
614 IMSM_OROM_RLC_RAID10 | IMSM_OROM_RLC_RAID5,
615 .sss = IMSM_OROM_SSS_4kB | IMSM_OROM_SSS_8kB |
616 IMSM_OROM_SSS_16kB | IMSM_OROM_SSS_32kB |
617 IMSM_OROM_SSS_64kB | IMSM_OROM_SSS_128kB,
618 .dpa = IMSM_OROM_DISKS_PER_ARRAY_NVME,
619 .tds = IMSM_OROM_TOTAL_DISKS_NVME,
620 .vpa = IMSM_OROM_VOLUMES_PER_ARRAY,
621 .vphba = IMSM_OROM_TOTAL_DISKS_NVME / 2 * IMSM_OROM_VOLUMES_PER_ARRAY,
622 .attr = IMSM_OROM_ATTR_2TB | IMSM_OROM_ATTR_2TB_DISK,
0858eccf 623 .driver_features = IMSM_OROM_CAPABILITIES_EnterpriseSystem
614902f6
PB
624 };
625 nvme_orom = add_orom(&nvme_orom_compat);
626 }
627 add_orom_device_id(nvme_orom, hba->dev_id);
60f0f54d 628 nvme_orom->type = SYS_DEV_NVME;
5e1d6128 629 return &nvme_orom->orom;
614902f6
PB
630}
631
6b781d33 632const struct imsm_orom *find_imsm_capability(struct sys_dev *hba)
fc13853f 633{
6b781d33
AP
634 const struct imsm_orom *cap = get_orom_by_device_id(hba->dev_id);
635
636 if (cap)
637 return cap;
fc13853f 638
614902f6
PB
639 if (hba->type == SYS_DEV_NVME)
640 return find_imsm_nvme(hba);
6b781d33 641 if ((cap = find_imsm_efi(hba)) != NULL)
5a6baf66 642 return cap;
6b781d33 643 if ((cap = find_imsm_hba_orom(hba)) != NULL)
fc13853f 644 return cap;
614902f6 645
b390f610
DW
646 return NULL;
647}
25921536
DW
648
649char *devt_to_devpath(dev_t dev)
650{
37f0e1e0 651 char device[46];
25921536
DW
652
653 sprintf(device, "/sys/dev/block/%d:%d/device", major(dev), minor(dev));
e3635eee 654 return realpath(device, NULL);
25921536
DW
655}
656
a8e5382a 657char *diskfd_to_devpath(int fd)
25921536
DW
658{
659 /* return the device path for a disk, return NULL on error or fd
660 * refers to a partition
661 */
662 struct stat st;
663
664 if (fstat(fd, &st) != 0)
665 return NULL;
666 if (!S_ISBLK(st.st_mode))
667 return NULL;
668
669 return devt_to_devpath(st.st_rdev);
670}
671
672int path_attached_to_hba(const char *disk_path, const char *hba_path)
673{
674 int rc;
675
fc13853f
LM
676 if (check_env("IMSM_TEST_AHCI_DEV") ||
677 check_env("IMSM_TEST_SCU_DEV")) {
678 return 1;
679 }
680
25921536
DW
681 if (!disk_path || !hba_path)
682 return 0;
a8e5382a 683 dprintf("hba: %s - disk: %s\n", hba_path, disk_path);
25921536
DW
684 if (strncmp(disk_path, hba_path, strlen(hba_path)) == 0)
685 rc = 1;
686 else
687 rc = 0;
688
689 return rc;
690}
691
692int devt_attached_to_hba(dev_t dev, const char *hba_path)
693{
694 char *disk_path = devt_to_devpath(dev);
695 int rc = path_attached_to_hba(disk_path, hba_path);
696
697 if (disk_path)
698 free(disk_path);
699
700 return rc;
701}
702
703int disk_attached_to_hba(int fd, const char *hba_path)
704{
705 char *disk_path = diskfd_to_devpath(fd);
706 int rc = path_attached_to_hba(disk_path, hba_path);
707
708 if (disk_path)
709 free(disk_path);
710
711 return rc;
712}
60f0f54d
PB
713
714char *vmd_domain_to_controller(struct sys_dev *hba, char *buf)
715{
716 struct dirent *ent;
717 DIR *dir;
718 char path[PATH_MAX];
719
720 if (!hba)
721 return NULL;
722
723 if (hba->type != SYS_DEV_VMD)
724 return NULL;
725
726 dir = opendir("/sys/bus/pci/drivers/vmd");
b9135011
JS
727 if (!dir)
728 return NULL;
60f0f54d 729
b9135011 730 for (ent = readdir(dir); ent; ent = readdir(dir)) {
60f0f54d
PB
731 sprintf(path, "/sys/bus/pci/drivers/vmd/%s/domain/device",
732 ent->d_name);
733
734 if (!realpath(path, buf))
735 continue;
736
737 if (strncmp(buf, hba->path, strlen(buf)) == 0) {
738 sprintf(path, "/sys/bus/pci/drivers/vmd/%s", ent->d_name);
b9135011 739 closedir(dir);
7071320a 740 return realpath(path, buf);
60f0f54d
PB
741 }
742 }
b9135011
JS
743
744 closedir(dir);
60f0f54d
PB
745 return NULL;
746}