1 /*-
2 * Copyright (c) 2011-2015 LSI Corp.
3 * Copyright (c) 2013-2016 Avago Technologies
4 * Copyright 2000-2020 Broadcom Inc.
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 * SUCH DAMAGE.
27 *
28 * Broadcom Inc. (LSI) MPT-Fusion Host Adapter FreeBSD
29 */
30
31 /* TODO Move headers to mprvar */
32 #include <sys/types.h>
33 #include <sys/param.h>
34 #include <sys/lock.h>
35 #include <sys/mutex.h>
36 #include <sys/systm.h>
37 #include <sys/kernel.h>
38 #include <sys/malloc.h>
39 #include <sys/kthread.h>
40 #include <sys/taskqueue.h>
41 #include <sys/bus.h>
42 #include <sys/endian.h>
43 #include <sys/sysctl.h>
44 #include <sys/eventhandler.h>
45 #include <sys/uio.h>
46 #include <machine/bus.h>
47 #include <machine/resource.h>
48 #include <dev/mpr/mpi/mpi2_type.h>
49 #include <dev/mpr/mpi/mpi2.h>
50 #include <dev/mpr/mpi/mpi2_ioc.h>
51 #include <dev/mpr/mpi/mpi2_sas.h>
52 #include <dev/mpr/mpi/mpi2_pci.h>
53 #include <dev/mpr/mpi/mpi2_cnfg.h>
54 #include <dev/mpr/mpi/mpi2_init.h>
55 #include <dev/mpr/mpi/mpi2_tool.h>
56 #include <dev/mpr/mpr_ioctl.h>
57 #include <dev/mpr/mprvar.h>
58 #include <dev/mpr/mpr_mapping.h>
59
60 /**
61 * _mapping_clear_map_entry - Clear a particular mapping entry.
62 * @map_entry: map table entry
63 *
64 * Returns nothing.
65 */
66 static inline void
_mapping_clear_map_entry(struct dev_mapping_table * map_entry)67 _mapping_clear_map_entry(struct dev_mapping_table *map_entry)
68 {
69 map_entry->physical_id = 0;
70 map_entry->device_info = 0;
71 map_entry->phy_bits = 0;
72 map_entry->dpm_entry_num = MPR_DPM_BAD_IDX;
73 map_entry->dev_handle = 0;
74 map_entry->id = -1;
75 map_entry->missing_count = 0;
76 map_entry->init_complete = 0;
77 map_entry->TLR_bits = (u8)MPI2_SCSIIO_CONTROL_NO_TLR;
78 }
79
80 /**
81 * _mapping_clear_enc_entry - Clear a particular enclosure table entry.
82 * @enc_entry: enclosure table entry
83 *
84 * Returns nothing.
85 */
86 static inline void
_mapping_clear_enc_entry(struct enc_mapping_table * enc_entry)87 _mapping_clear_enc_entry(struct enc_mapping_table *enc_entry)
88 {
89 enc_entry->enclosure_id = 0;
90 enc_entry->start_index = MPR_MAPTABLE_BAD_IDX;
91 enc_entry->phy_bits = 0;
92 enc_entry->dpm_entry_num = MPR_DPM_BAD_IDX;
93 enc_entry->enc_handle = 0;
94 enc_entry->num_slots = 0;
95 enc_entry->start_slot = 0;
96 enc_entry->missing_count = 0;
97 enc_entry->removal_flag = 0;
98 enc_entry->skip_search = 0;
99 enc_entry->init_complete = 0;
100 }
101
102 /**
103 * _mapping_commit_enc_entry - write a particular enc entry in DPM page0.
104 * @sc: per adapter object
105 * @enc_entry: enclosure table entry
106 *
107 * Returns 0 for success, non-zero for failure.
108 */
109 static int
_mapping_commit_enc_entry(struct mpr_softc * sc,struct enc_mapping_table * et_entry)110 _mapping_commit_enc_entry(struct mpr_softc *sc,
111 struct enc_mapping_table *et_entry)
112 {
113 Mpi2DriverMap0Entry_t *dpm_entry;
114 struct dev_mapping_table *mt_entry;
115 Mpi2ConfigReply_t mpi_reply;
116 Mpi2DriverMappingPage0_t config_page;
117
118 if (!sc->is_dpm_enable)
119 return 0;
120
121 memset(&config_page, 0, sizeof(Mpi2DriverMappingPage0_t));
122 memcpy(&config_page.Header, (u8 *) sc->dpm_pg0,
123 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
124 dpm_entry = (Mpi2DriverMap0Entry_t *)((u8 *)sc->dpm_pg0 +
125 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
126 dpm_entry += et_entry->dpm_entry_num;
127 dpm_entry->PhysicalIdentifier.Low =
128 ( 0xFFFFFFFF & et_entry->enclosure_id);
129 dpm_entry->PhysicalIdentifier.High =
130 ( et_entry->enclosure_id >> 32);
131 mt_entry = &sc->mapping_table[et_entry->start_index];
132 dpm_entry->DeviceIndex = htole16(mt_entry->id);
133 dpm_entry->MappingInformation = et_entry->num_slots;
134 dpm_entry->MappingInformation <<= MPI2_DRVMAP0_MAPINFO_SLOT_SHIFT;
135 dpm_entry->MappingInformation |= et_entry->missing_count;
136 dpm_entry->MappingInformation = htole16(dpm_entry->MappingInformation);
137 dpm_entry->PhysicalBitsMapping = htole32(et_entry->phy_bits);
138 dpm_entry->Reserved1 = 0;
139
140 mpr_dprint(sc, MPR_MAPPING, "%s: Writing DPM entry %d for enclosure.\n",
141 __func__, et_entry->dpm_entry_num);
142 memcpy(&config_page.Entry, (u8 *)dpm_entry,
143 sizeof(Mpi2DriverMap0Entry_t));
144 if (mpr_config_set_dpm_pg0(sc, &mpi_reply, &config_page,
145 et_entry->dpm_entry_num)) {
146 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: Write of DPM "
147 "entry %d for enclosure failed.\n", __func__,
148 et_entry->dpm_entry_num);
149 dpm_entry->MappingInformation = le16toh(dpm_entry->
150 MappingInformation);
151 dpm_entry->DeviceIndex = le16toh(dpm_entry->DeviceIndex);
152 dpm_entry->PhysicalBitsMapping =
153 le32toh(dpm_entry->PhysicalBitsMapping);
154 return -1;
155 }
156 dpm_entry->MappingInformation = le16toh(dpm_entry->
157 MappingInformation);
158 dpm_entry->DeviceIndex = le16toh(dpm_entry->DeviceIndex);
159 dpm_entry->PhysicalBitsMapping =
160 le32toh(dpm_entry->PhysicalBitsMapping);
161 return 0;
162 }
163
164 /**
165 * _mapping_commit_map_entry - write a particular map table entry in DPM page0.
166 * @sc: per adapter object
167 * @mt_entry: mapping table entry
168 *
169 * Returns 0 for success, non-zero for failure.
170 */
171
172 static int
_mapping_commit_map_entry(struct mpr_softc * sc,struct dev_mapping_table * mt_entry)173 _mapping_commit_map_entry(struct mpr_softc *sc,
174 struct dev_mapping_table *mt_entry)
175 {
176 Mpi2DriverMap0Entry_t *dpm_entry;
177 Mpi2ConfigReply_t mpi_reply;
178 Mpi2DriverMappingPage0_t config_page;
179
180 if (!sc->is_dpm_enable)
181 return 0;
182
183 /*
184 * It's possible that this Map Entry points to a BAD DPM index. This
185 * can happen if the Map Entry is a for a missing device and the DPM
186 * entry that was being used by this device is now being used by some
187 * new device. So, check for a BAD DPM index and just return if so.
188 */
189 if (mt_entry->dpm_entry_num == MPR_DPM_BAD_IDX) {
190 mpr_dprint(sc, MPR_MAPPING, "%s: DPM entry location for target "
191 "%d is invalid. DPM will not be written.\n", __func__,
192 mt_entry->id);
193 return 0;
194 }
195
196 memset(&config_page, 0, sizeof(Mpi2DriverMappingPage0_t));
197 memcpy(&config_page.Header, (u8 *)sc->dpm_pg0,
198 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
199 dpm_entry = (Mpi2DriverMap0Entry_t *)((u8 *) sc->dpm_pg0 +
200 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
201 dpm_entry = dpm_entry + mt_entry->dpm_entry_num;
202 dpm_entry->PhysicalIdentifier.Low = (0xFFFFFFFF &
203 mt_entry->physical_id);
204 dpm_entry->PhysicalIdentifier.High = (mt_entry->physical_id >> 32);
205 dpm_entry->DeviceIndex = htole16(mt_entry->id);
206 dpm_entry->MappingInformation = htole16(mt_entry->missing_count);
207 dpm_entry->PhysicalBitsMapping = 0;
208 dpm_entry->Reserved1 = 0;
209 memcpy(&config_page.Entry, (u8 *)dpm_entry,
210 sizeof(Mpi2DriverMap0Entry_t));
211
212 mpr_dprint(sc, MPR_MAPPING, "%s: Writing DPM entry %d for target %d.\n",
213 __func__, mt_entry->dpm_entry_num, mt_entry->id);
214 if (mpr_config_set_dpm_pg0(sc, &mpi_reply, &config_page,
215 mt_entry->dpm_entry_num)) {
216 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: Write of DPM "
217 "entry %d for target %d failed.\n", __func__,
218 mt_entry->dpm_entry_num, mt_entry->id);
219 dpm_entry->MappingInformation = le16toh(dpm_entry->
220 MappingInformation);
221 dpm_entry->DeviceIndex = le16toh(dpm_entry->DeviceIndex);
222 return -1;
223 }
224
225 dpm_entry->MappingInformation = le16toh(dpm_entry->MappingInformation);
226 dpm_entry->DeviceIndex = le16toh(dpm_entry->DeviceIndex);
227 return 0;
228 }
229
230 /**
231 * _mapping_get_ir_maprange - get start and end index for IR map range.
232 * @sc: per adapter object
233 * @start_idx: place holder for start index
234 * @end_idx: place holder for end index
235 *
236 * The IR volumes can be mapped either at start or end of the mapping table
237 * this function gets the detail of where IR volume mapping starts and ends
238 * in the device mapping table
239 *
240 * Returns nothing.
241 */
242 static void
_mapping_get_ir_maprange(struct mpr_softc * sc,u32 * start_idx,u32 * end_idx)243 _mapping_get_ir_maprange(struct mpr_softc *sc, u32 *start_idx, u32 *end_idx)
244 {
245 u16 volume_mapping_flags;
246 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
247
248 volume_mapping_flags = le16toh(sc->ioc_pg8.IRVolumeMappingFlags) &
249 MPI2_IOCPAGE8_IRFLAGS_MASK_VOLUME_MAPPING_MODE;
250 if (volume_mapping_flags == MPI2_IOCPAGE8_IRFLAGS_LOW_VOLUME_MAPPING) {
251 *start_idx = 0;
252 if (ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_RESERVED_TARGETID_0)
253 *start_idx = 1;
254 } else
255 *start_idx = sc->max_devices - sc->max_volumes;
256 *end_idx = *start_idx + sc->max_volumes - 1;
257 }
258
259 /**
260 * _mapping_get_enc_idx_from_id - get enclosure index from enclosure ID
261 * @sc: per adapter object
262 * @enc_id: enclosure logical identifier
263 *
264 * Returns the index of enclosure entry on success or bad index.
265 */
266 static u8
_mapping_get_enc_idx_from_id(struct mpr_softc * sc,u64 enc_id,u64 phy_bits)267 _mapping_get_enc_idx_from_id(struct mpr_softc *sc, u64 enc_id,
268 u64 phy_bits)
269 {
270 struct enc_mapping_table *et_entry;
271 u8 enc_idx = 0;
272
273 for (enc_idx = 0; enc_idx < sc->num_enc_table_entries; enc_idx++) {
274 et_entry = &sc->enclosure_table[enc_idx];
275 if ((et_entry->enclosure_id == le64toh(enc_id)) &&
276 (!et_entry->phy_bits || (et_entry->phy_bits &
277 le32toh(phy_bits))))
278 return enc_idx;
279 }
280 return MPR_ENCTABLE_BAD_IDX;
281 }
282
283 /**
284 * _mapping_get_enc_idx_from_handle - get enclosure index from handle
285 * @sc: per adapter object
286 * @enc_id: enclosure handle
287 *
288 * Returns the index of enclosure entry on success or bad index.
289 */
290 static u8
_mapping_get_enc_idx_from_handle(struct mpr_softc * sc,u16 handle)291 _mapping_get_enc_idx_from_handle(struct mpr_softc *sc, u16 handle)
292 {
293 struct enc_mapping_table *et_entry;
294 u8 enc_idx = 0;
295
296 for (enc_idx = 0; enc_idx < sc->num_enc_table_entries; enc_idx++) {
297 et_entry = &sc->enclosure_table[enc_idx];
298 if (et_entry->missing_count)
299 continue;
300 if (et_entry->enc_handle == handle)
301 return enc_idx;
302 }
303 return MPR_ENCTABLE_BAD_IDX;
304 }
305
306 /**
307 * _mapping_get_high_missing_et_idx - get missing enclosure index
308 * @sc: per adapter object
309 *
310 * Search through the enclosure table and identifies the enclosure entry
311 * with high missing count and returns it's index
312 *
313 * Returns the index of enclosure entry on success or bad index.
314 */
315 static u8
_mapping_get_high_missing_et_idx(struct mpr_softc * sc)316 _mapping_get_high_missing_et_idx(struct mpr_softc *sc)
317 {
318 struct enc_mapping_table *et_entry;
319 u8 high_missing_count = 0;
320 u8 enc_idx, high_idx = MPR_ENCTABLE_BAD_IDX;
321
322 for (enc_idx = 0; enc_idx < sc->num_enc_table_entries; enc_idx++) {
323 et_entry = &sc->enclosure_table[enc_idx];
324 if ((et_entry->missing_count > high_missing_count) &&
325 !et_entry->skip_search) {
326 high_missing_count = et_entry->missing_count;
327 high_idx = enc_idx;
328 }
329 }
330 return high_idx;
331 }
332
333 /**
334 * _mapping_get_high_missing_mt_idx - get missing map table index
335 * @sc: per adapter object
336 *
337 * Search through the map table and identifies the device entry
338 * with high missing count and returns it's index
339 *
340 * Returns the index of map table entry on success or bad index.
341 */
342 static u32
_mapping_get_high_missing_mt_idx(struct mpr_softc * sc)343 _mapping_get_high_missing_mt_idx(struct mpr_softc *sc)
344 {
345 u32 map_idx, high_idx = MPR_MAPTABLE_BAD_IDX;
346 u8 high_missing_count = 0;
347 u32 start_idx, end_idx, start_idx_ir, end_idx_ir;
348 struct dev_mapping_table *mt_entry;
349 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
350
351 start_idx = 0;
352 start_idx_ir = 0;
353 end_idx_ir = 0;
354 end_idx = sc->max_devices;
355 if (ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_RESERVED_TARGETID_0)
356 start_idx = 1;
357 if (sc->ir_firmware) {
358 _mapping_get_ir_maprange(sc, &start_idx_ir, &end_idx_ir);
359 if (start_idx == start_idx_ir)
360 start_idx = end_idx_ir + 1;
361 else
362 end_idx = start_idx_ir;
363 }
364 mt_entry = &sc->mapping_table[start_idx];
365 for (map_idx = start_idx; map_idx < end_idx; map_idx++, mt_entry++) {
366 if (mt_entry->missing_count > high_missing_count) {
367 high_missing_count = mt_entry->missing_count;
368 high_idx = map_idx;
369 }
370 }
371 return high_idx;
372 }
373
374 /**
375 * _mapping_get_ir_mt_idx_from_wwid - get map table index from volume WWID
376 * @sc: per adapter object
377 * @wwid: world wide unique ID of the volume
378 *
379 * Returns the index of map table entry on success or bad index.
380 */
381 static u32
_mapping_get_ir_mt_idx_from_wwid(struct mpr_softc * sc,u64 wwid)382 _mapping_get_ir_mt_idx_from_wwid(struct mpr_softc *sc, u64 wwid)
383 {
384 u32 start_idx, end_idx, map_idx;
385 struct dev_mapping_table *mt_entry;
386
387 _mapping_get_ir_maprange(sc, &start_idx, &end_idx);
388 mt_entry = &sc->mapping_table[start_idx];
389 for (map_idx = start_idx; map_idx <= end_idx; map_idx++, mt_entry++)
390 if (mt_entry->physical_id == wwid)
391 return map_idx;
392
393 return MPR_MAPTABLE_BAD_IDX;
394 }
395
396 /**
397 * _mapping_get_mt_idx_from_id - get map table index from a device ID
398 * @sc: per adapter object
399 * @dev_id: device identifer (SAS Address)
400 *
401 * Returns the index of map table entry on success or bad index.
402 */
403 static u32
_mapping_get_mt_idx_from_id(struct mpr_softc * sc,u64 dev_id)404 _mapping_get_mt_idx_from_id(struct mpr_softc *sc, u64 dev_id)
405 {
406 u32 map_idx;
407 struct dev_mapping_table *mt_entry;
408
409 for (map_idx = 0; map_idx < sc->max_devices; map_idx++) {
410 mt_entry = &sc->mapping_table[map_idx];
411 if (mt_entry->physical_id == dev_id)
412 return map_idx;
413 }
414 return MPR_MAPTABLE_BAD_IDX;
415 }
416
417 /**
418 * _mapping_get_ir_mt_idx_from_handle - get map table index from volume handle
419 * @sc: per adapter object
420 * @wwid: volume device handle
421 *
422 * Returns the index of map table entry on success or bad index.
423 */
424 static u32
_mapping_get_ir_mt_idx_from_handle(struct mpr_softc * sc,u16 volHandle)425 _mapping_get_ir_mt_idx_from_handle(struct mpr_softc *sc, u16 volHandle)
426 {
427 u32 start_idx, end_idx, map_idx;
428 struct dev_mapping_table *mt_entry;
429
430 _mapping_get_ir_maprange(sc, &start_idx, &end_idx);
431 mt_entry = &sc->mapping_table[start_idx];
432 for (map_idx = start_idx; map_idx <= end_idx; map_idx++, mt_entry++)
433 if (mt_entry->dev_handle == volHandle)
434 return map_idx;
435
436 return MPR_MAPTABLE_BAD_IDX;
437 }
438
439 /**
440 * _mapping_get_mt_idx_from_handle - get map table index from handle
441 * @sc: per adapter object
442 * @dev_id: device handle
443 *
444 * Returns the index of map table entry on success or bad index.
445 */
446 static u32
_mapping_get_mt_idx_from_handle(struct mpr_softc * sc,u16 handle)447 _mapping_get_mt_idx_from_handle(struct mpr_softc *sc, u16 handle)
448 {
449 u32 map_idx;
450 struct dev_mapping_table *mt_entry;
451
452 for (map_idx = 0; map_idx < sc->max_devices; map_idx++) {
453 mt_entry = &sc->mapping_table[map_idx];
454 if (mt_entry->dev_handle == handle)
455 return map_idx;
456 }
457 return MPR_MAPTABLE_BAD_IDX;
458 }
459
460 /**
461 * _mapping_get_free_ir_mt_idx - get first free index for a volume
462 * @sc: per adapter object
463 *
464 * Search through mapping table for free index for a volume and if no free
465 * index then looks for a volume with high mapping index
466 *
467 * Returns the index of map table entry on success or bad index.
468 */
469 static u32
_mapping_get_free_ir_mt_idx(struct mpr_softc * sc)470 _mapping_get_free_ir_mt_idx(struct mpr_softc *sc)
471 {
472 u8 high_missing_count = 0;
473 u32 start_idx, end_idx, map_idx;
474 u32 high_idx = MPR_MAPTABLE_BAD_IDX;
475 struct dev_mapping_table *mt_entry;
476
477 /*
478 * The IN_USE flag should be clear if the entry is available to use.
479 * This flag is cleared on initialization and and when a volume is
480 * deleted. All other times this flag should be set. If, for some
481 * reason, a free entry cannot be found, look for the entry with the
482 * highest missing count just in case there is one.
483 */
484 _mapping_get_ir_maprange(sc, &start_idx, &end_idx);
485 mt_entry = &sc->mapping_table[start_idx];
486 for (map_idx = start_idx; map_idx <= end_idx; map_idx++, mt_entry++) {
487 if (!(mt_entry->device_info & MPR_MAP_IN_USE))
488 return map_idx;
489
490 if (mt_entry->missing_count > high_missing_count) {
491 high_missing_count = mt_entry->missing_count;
492 high_idx = map_idx;
493 }
494 }
495
496 if (high_idx == MPR_MAPTABLE_BAD_IDX) {
497 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: Could not find a "
498 "free entry in the mapping table for a Volume. The mapping "
499 "table is probably corrupt.\n", __func__);
500 }
501
502 return high_idx;
503 }
504
505 /**
506 * _mapping_get_free_mt_idx - get first free index for a device
507 * @sc: per adapter object
508 * @start_idx: offset in the table to start search
509 *
510 * Returns the index of map table entry on success or bad index.
511 */
512 static u32
_mapping_get_free_mt_idx(struct mpr_softc * sc,u32 start_idx)513 _mapping_get_free_mt_idx(struct mpr_softc *sc, u32 start_idx)
514 {
515 u32 map_idx, max_idx = sc->max_devices;
516 struct dev_mapping_table *mt_entry = &sc->mapping_table[start_idx];
517 u16 volume_mapping_flags;
518
519 volume_mapping_flags = le16toh(sc->ioc_pg8.IRVolumeMappingFlags) &
520 MPI2_IOCPAGE8_IRFLAGS_MASK_VOLUME_MAPPING_MODE;
521 if (sc->ir_firmware && (volume_mapping_flags ==
522 MPI2_IOCPAGE8_IRFLAGS_HIGH_VOLUME_MAPPING))
523 max_idx -= sc->max_volumes;
524
525 for (map_idx = start_idx; map_idx < max_idx; map_idx++, mt_entry++)
526 if (!(mt_entry->device_info & (MPR_MAP_IN_USE |
527 MPR_DEV_RESERVED)))
528 return map_idx;
529
530 return MPR_MAPTABLE_BAD_IDX;
531 }
532
533 /**
534 * _mapping_get_dpm_idx_from_id - get DPM index from ID
535 * @sc: per adapter object
536 * @id: volume WWID or enclosure ID or device ID
537 *
538 * Returns the index of DPM entry on success or bad index.
539 */
540 static u16
_mapping_get_dpm_idx_from_id(struct mpr_softc * sc,u64 id,u32 phy_bits)541 _mapping_get_dpm_idx_from_id(struct mpr_softc *sc, u64 id, u32 phy_bits)
542 {
543 u16 entry_num;
544 uint64_t PhysicalIdentifier;
545 Mpi2DriverMap0Entry_t *dpm_entry;
546
547 dpm_entry = (Mpi2DriverMap0Entry_t *)((u8 *)sc->dpm_pg0 +
548 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
549 PhysicalIdentifier = dpm_entry->PhysicalIdentifier.High;
550 PhysicalIdentifier = (PhysicalIdentifier << 32) |
551 dpm_entry->PhysicalIdentifier.Low;
552 for (entry_num = 0; entry_num < sc->max_dpm_entries; entry_num++,
553 dpm_entry++)
554 if ((id == PhysicalIdentifier) &&
555 (!phy_bits || !dpm_entry->PhysicalBitsMapping ||
556 (phy_bits & dpm_entry->PhysicalBitsMapping)))
557 return entry_num;
558
559 return MPR_DPM_BAD_IDX;
560 }
561
562 /**
563 * _mapping_get_free_dpm_idx - get first available DPM index
564 * @sc: per adapter object
565 *
566 * Returns the index of DPM entry on success or bad index.
567 */
568 static u32
_mapping_get_free_dpm_idx(struct mpr_softc * sc)569 _mapping_get_free_dpm_idx(struct mpr_softc *sc)
570 {
571 u16 entry_num;
572 Mpi2DriverMap0Entry_t *dpm_entry;
573 u16 current_entry = MPR_DPM_BAD_IDX, missing_cnt, high_missing_cnt = 0;
574 u64 physical_id;
575 struct dev_mapping_table *mt_entry;
576 u32 map_idx;
577
578 for (entry_num = 0; entry_num < sc->max_dpm_entries; entry_num++) {
579 dpm_entry = (Mpi2DriverMap0Entry_t *) ((u8 *)sc->dpm_pg0 +
580 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
581 dpm_entry += entry_num;
582 missing_cnt = dpm_entry->MappingInformation &
583 MPI2_DRVMAP0_MAPINFO_MISSING_MASK;
584
585 /*
586 * If entry is used and not missing, then this entry can't be
587 * used. Look at next one.
588 */
589 if (sc->dpm_entry_used[entry_num] && !missing_cnt)
590 continue;
591
592 /*
593 * If this entry is not used at all, then the missing count
594 * doesn't matter. Just use this one. Otherwise, keep looking
595 * and make sure the entry with the highest missing count is
596 * used.
597 */
598 if (!sc->dpm_entry_used[entry_num]) {
599 current_entry = entry_num;
600 break;
601 }
602 if ((current_entry == MPR_DPM_BAD_IDX) ||
603 (missing_cnt > high_missing_cnt)) {
604 current_entry = entry_num;
605 high_missing_cnt = missing_cnt;
606 }
607 }
608
609 /*
610 * If an entry has been found to use and it's already marked as used
611 * it means that some device was already using this entry but it's
612 * missing, and that means that the connection between the missing
613 * device's DPM entry and the mapping table needs to be cleared. To do
614 * this, use the Physical ID of the old device still in the DPM entry
615 * to find its mapping table entry, then mark its DPM entry as BAD.
616 */
617 if ((current_entry != MPR_DPM_BAD_IDX) &&
618 sc->dpm_entry_used[current_entry]) {
619 dpm_entry = (Mpi2DriverMap0Entry_t *) ((u8 *)sc->dpm_pg0 +
620 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
621 dpm_entry += current_entry;
622 physical_id = dpm_entry->PhysicalIdentifier.High;
623 physical_id = (physical_id << 32) |
624 dpm_entry->PhysicalIdentifier.Low;
625 map_idx = _mapping_get_mt_idx_from_id(sc, physical_id);
626 if (map_idx != MPR_MAPTABLE_BAD_IDX) {
627 mt_entry = &sc->mapping_table[map_idx];
628 mt_entry->dpm_entry_num = MPR_DPM_BAD_IDX;
629 }
630 }
631 return current_entry;
632 }
633
634 /**
635 * _mapping_update_ir_missing_cnt - Updates missing count for a volume
636 * @sc: per adapter object
637 * @map_idx: map table index of the volume
638 * @element: IR configuration change element
639 * @wwid: IR volume ID.
640 *
641 * Updates the missing count in the map table and in the DPM entry for a volume
642 *
643 * Returns nothing.
644 */
645 static void
_mapping_update_ir_missing_cnt(struct mpr_softc * sc,u32 map_idx,Mpi2EventIrConfigElement_t * element,u64 wwid)646 _mapping_update_ir_missing_cnt(struct mpr_softc *sc, u32 map_idx,
647 Mpi2EventIrConfigElement_t *element, u64 wwid)
648 {
649 struct dev_mapping_table *mt_entry;
650 u8 missing_cnt, reason = element->ReasonCode, update_dpm = 1;
651 u16 dpm_idx;
652 Mpi2DriverMap0Entry_t *dpm_entry;
653
654 /*
655 * Depending on the reason code, update the missing count. Always set
656 * the init_complete flag when here, so just do it first. That flag is
657 * used for volumes to make sure that the DPM entry has been updated.
658 * When a volume is deleted, clear the map entry's IN_USE flag so that
659 * the entry can be used again if another volume is created. Also clear
660 * its dev_handle entry so that other functions can't find this volume
661 * by the handle, since it's not defined any longer.
662 */
663 mt_entry = &sc->mapping_table[map_idx];
664 mt_entry->init_complete = 1;
665 if ((reason == MPI2_EVENT_IR_CHANGE_RC_ADDED) ||
666 (reason == MPI2_EVENT_IR_CHANGE_RC_VOLUME_CREATED)) {
667 mt_entry->missing_count = 0;
668 } else if (reason == MPI2_EVENT_IR_CHANGE_RC_VOLUME_DELETED) {
669 if (mt_entry->missing_count < MPR_MAX_MISSING_COUNT)
670 mt_entry->missing_count++;
671
672 mt_entry->device_info &= ~MPR_MAP_IN_USE;
673 mt_entry->dev_handle = 0;
674 }
675
676 /*
677 * If persistent mapping is enabled, update the DPM with the new missing
678 * count for the volume. If the DPM index is bad, get a free one. If
679 * it's bad for a volume that's being deleted do nothing because that
680 * volume doesn't have a DPM entry.
681 */
682 if (!sc->is_dpm_enable)
683 return;
684 dpm_idx = mt_entry->dpm_entry_num;
685 if (dpm_idx == MPR_DPM_BAD_IDX) {
686 if (reason == MPI2_EVENT_IR_CHANGE_RC_VOLUME_DELETED)
687 {
688 mpr_dprint(sc, MPR_MAPPING, "%s: Volume being deleted "
689 "is not in DPM so DPM missing count will not be "
690 "updated.\n", __func__);
691 return;
692 }
693 }
694 if (dpm_idx == MPR_DPM_BAD_IDX)
695 dpm_idx = _mapping_get_free_dpm_idx(sc);
696
697 /*
698 * Got the DPM entry for the volume or found a free DPM entry if this is
699 * a new volume. Check if the current information is outdated.
700 */
701 if (dpm_idx != MPR_DPM_BAD_IDX) {
702 dpm_entry = (Mpi2DriverMap0Entry_t *)((u8 *)sc->dpm_pg0 +
703 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
704 dpm_entry += dpm_idx;
705 missing_cnt = dpm_entry->MappingInformation &
706 MPI2_DRVMAP0_MAPINFO_MISSING_MASK;
707 if ((mt_entry->physical_id ==
708 le64toh(((u64)dpm_entry->PhysicalIdentifier.High << 32) |
709 (u64)dpm_entry->PhysicalIdentifier.Low)) && (missing_cnt ==
710 mt_entry->missing_count)) {
711 mpr_dprint(sc, MPR_MAPPING, "%s: DPM entry for volume "
712 "with target ID %d does not require an update.\n",
713 __func__, mt_entry->id);
714 update_dpm = 0;
715 }
716 }
717
718 /*
719 * Update the volume's persistent info if it's new or the ID or missing
720 * count has changed. If a good DPM index has not been found by now,
721 * there is no space left in the DPM table.
722 */
723 if ((dpm_idx != MPR_DPM_BAD_IDX) && update_dpm) {
724 mpr_dprint(sc, MPR_MAPPING, "%s: Update DPM entry for volume "
725 "with target ID %d.\n", __func__, mt_entry->id);
726 mt_entry->dpm_entry_num = dpm_idx;
727 dpm_entry = (Mpi2DriverMap0Entry_t *)((u8 *)sc->dpm_pg0 +
728 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
729 dpm_entry += dpm_idx;
730 dpm_entry->PhysicalIdentifier.Low =
731 (0xFFFFFFFF & mt_entry->physical_id);
732 dpm_entry->PhysicalIdentifier.High =
733 (mt_entry->physical_id >> 32);
734 dpm_entry->DeviceIndex = map_idx;
735 dpm_entry->MappingInformation = mt_entry->missing_count;
736 dpm_entry->PhysicalBitsMapping = 0;
737 dpm_entry->Reserved1 = 0;
738 sc->dpm_flush_entry[dpm_idx] = 1;
739 sc->dpm_entry_used[dpm_idx] = 1;
740 } else if (dpm_idx == MPR_DPM_BAD_IDX) {
741 mpr_dprint(sc, MPR_INFO | MPR_MAPPING, "%s: No space to add an "
742 "entry in the DPM table for volume with target ID %d.\n",
743 __func__, mt_entry->id);
744 }
745 }
746
747 /**
748 * _mapping_add_to_removal_table - add DPM index to the removal table
749 * @sc: per adapter object
750 * @dpm_idx: Index of DPM entry to remove
751 *
752 * Adds a DPM entry number to the removal table.
753 *
754 * Returns nothing.
755 */
756 static void
_mapping_add_to_removal_table(struct mpr_softc * sc,u16 dpm_idx)757 _mapping_add_to_removal_table(struct mpr_softc *sc, u16 dpm_idx)
758 {
759 struct map_removal_table *remove_entry;
760 u32 i;
761
762 /*
763 * This is only used to remove entries from the DPM in the controller.
764 * If DPM is not enabled, just return.
765 */
766 if (!sc->is_dpm_enable)
767 return;
768
769 /*
770 * Find the first available removal_table entry and add the new entry
771 * there.
772 */
773 remove_entry = sc->removal_table;
774 for (i = 0; i < sc->max_devices; i++, remove_entry++) {
775 if (remove_entry->dpm_entry_num != MPR_DPM_BAD_IDX)
776 continue;
777
778 mpr_dprint(sc, MPR_MAPPING, "%s: Adding DPM entry %d to table "
779 "for removal.\n", __func__, dpm_idx);
780 remove_entry->dpm_entry_num = dpm_idx;
781 break;
782 }
783
784 }
785
786 /**
787 * _mapping_inc_missing_count
788 * @sc: per adapter object
789 * @map_idx: index into the mapping table for the device that is missing
790 *
791 * Increment the missing count in the mapping table for a SAS, SATA, or PCIe
792 * device that is not responding. If Persitent Mapping is used, increment the
793 * DPM entry as well. Currently, this function is only called if the target
794 * goes missing, so after initialization has completed. This means that the
795 * missing count can only go from 0 to 1 here. The missing count is incremented
796 * during initialization as well, so that's where a target's missing count can
797 * go past 1.
798 *
799 * Returns nothing.
800 */
801 static void
_mapping_inc_missing_count(struct mpr_softc * sc,u32 map_idx)802 _mapping_inc_missing_count(struct mpr_softc *sc, u32 map_idx)
803 {
804 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
805 struct dev_mapping_table *mt_entry;
806 Mpi2DriverMap0Entry_t *dpm_entry;
807
808 if (map_idx == MPR_MAPTABLE_BAD_IDX) {
809 mpr_dprint(sc, MPR_INFO | MPR_MAPPING, "%s: device is already "
810 "removed from mapping table\n", __func__);
811 return;
812 }
813 mt_entry = &sc->mapping_table[map_idx];
814 if (mt_entry->missing_count < MPR_MAX_MISSING_COUNT)
815 mt_entry->missing_count++;
816
817 /*
818 * When using Enc/Slot mapping, when a device is removed, it's mapping
819 * table information should be cleared. Otherwise, the target ID will
820 * be incorrect if this same device is re-added to a different slot.
821 */
822 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
823 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
824 _mapping_clear_map_entry(mt_entry);
825 }
826
827 /*
828 * When using device mapping, update the missing count in the DPM entry,
829 * but only if the missing count has changed.
830 */
831 if (((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
832 MPI2_IOCPAGE8_FLAGS_DEVICE_PERSISTENCE_MAPPING) &&
833 sc->is_dpm_enable &&
834 mt_entry->dpm_entry_num != MPR_DPM_BAD_IDX) {
835 dpm_entry = (Mpi2DriverMap0Entry_t *) ((u8 *)sc->dpm_pg0 +
836 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
837 dpm_entry += mt_entry->dpm_entry_num;
838 if (dpm_entry->MappingInformation != mt_entry->missing_count) {
839 dpm_entry->MappingInformation = mt_entry->missing_count;
840 sc->dpm_flush_entry[mt_entry->dpm_entry_num] = 1;
841 }
842 }
843 }
844
845 /**
846 * _mapping_update_missing_count - Update missing count for a device
847 * @sc: per adapter object
848 * @topo_change: Topology change event entry
849 *
850 * Search through the topology change list and if any device is found not
851 * responding it's associated map table entry and DPM entry is updated
852 *
853 * Returns nothing.
854 */
855 static void
_mapping_update_missing_count(struct mpr_softc * sc,struct _map_topology_change * topo_change)856 _mapping_update_missing_count(struct mpr_softc *sc,
857 struct _map_topology_change *topo_change)
858 {
859 u8 entry;
860 struct _map_phy_change *phy_change;
861 u32 map_idx;
862
863 for (entry = 0; entry < topo_change->num_entries; entry++) {
864 phy_change = &topo_change->phy_details[entry];
865 if (!phy_change->dev_handle || (phy_change->reason !=
866 MPI2_EVENT_SAS_TOPO_RC_TARG_NOT_RESPONDING))
867 continue;
868 map_idx = _mapping_get_mt_idx_from_handle(sc, phy_change->
869 dev_handle);
870 phy_change->is_processed = 1;
871 _mapping_inc_missing_count(sc, map_idx);
872 }
873 }
874
875 /**
876 * _mapping_update_pcie_missing_count - Update missing count for a PCIe device
877 * @sc: per adapter object
878 * @topo_change: Topology change event entry
879 *
880 * Search through the PCIe topology change list and if any device is found not
881 * responding it's associated map table entry and DPM entry is updated
882 *
883 * Returns nothing.
884 */
885 static void
_mapping_update_pcie_missing_count(struct mpr_softc * sc,struct _map_pcie_topology_change * topo_change)886 _mapping_update_pcie_missing_count(struct mpr_softc *sc,
887 struct _map_pcie_topology_change *topo_change)
888 {
889 u8 entry;
890 struct _map_port_change *port_change;
891 u32 map_idx;
892
893 for (entry = 0; entry < topo_change->num_entries; entry++) {
894 port_change = &topo_change->port_details[entry];
895 if (!port_change->dev_handle || (port_change->reason !=
896 MPI26_EVENT_PCIE_TOPO_PS_NOT_RESPONDING))
897 continue;
898 map_idx = _mapping_get_mt_idx_from_handle(sc, port_change->
899 dev_handle);
900 port_change->is_processed = 1;
901 _mapping_inc_missing_count(sc, map_idx);
902 }
903 }
904
905 /**
906 * _mapping_find_enc_map_space -find map table entries for enclosure
907 * @sc: per adapter object
908 * @et_entry: enclosure entry
909 *
910 * Search through the mapping table defragment it and provide contiguous
911 * space in map table for a particular enclosure entry
912 *
913 * Returns start index in map table or bad index.
914 */
915 static u32
_mapping_find_enc_map_space(struct mpr_softc * sc,struct enc_mapping_table * et_entry)916 _mapping_find_enc_map_space(struct mpr_softc *sc,
917 struct enc_mapping_table *et_entry)
918 {
919 u16 vol_mapping_flags;
920 u32 skip_count, end_of_table, map_idx, enc_idx;
921 u16 num_found;
922 u32 start_idx = MPR_MAPTABLE_BAD_IDX;
923 struct dev_mapping_table *mt_entry;
924 struct enc_mapping_table *enc_entry;
925 unsigned char done_flag = 0, found_space;
926 u16 max_num_phy_ids = le16toh(sc->ioc_pg8.MaxNumPhysicalMappedIDs);
927
928 skip_count = sc->num_rsvd_entries;
929 num_found = 0;
930
931 vol_mapping_flags = le16toh(sc->ioc_pg8.IRVolumeMappingFlags) &
932 MPI2_IOCPAGE8_IRFLAGS_MASK_VOLUME_MAPPING_MODE;
933
934 /*
935 * The end of the mapping table depends on where volumes are kept, if
936 * IR is enabled.
937 */
938 if (!sc->ir_firmware)
939 end_of_table = sc->max_devices;
940 else if (vol_mapping_flags == MPI2_IOCPAGE8_IRFLAGS_LOW_VOLUME_MAPPING)
941 end_of_table = sc->max_devices;
942 else
943 end_of_table = sc->max_devices - sc->max_volumes;
944
945 /*
946 * The skip_count is the number of entries that are reserved at the
947 * beginning of the mapping table. But, it does not include the number
948 * of Physical IDs that are reserved for direct attached devices. Look
949 * through the mapping table after these reserved entries to see if
950 * the devices for this enclosure are already mapped. The PHY bit check
951 * is used to make sure that at least one PHY bit is common between the
952 * enclosure and the device that is already mapped.
953 */
954 mpr_dprint(sc, MPR_MAPPING, "%s: Looking for space in the mapping "
955 "table for added enclosure.\n", __func__);
956 for (map_idx = (max_num_phy_ids + skip_count);
957 map_idx < end_of_table; map_idx++) {
958 mt_entry = &sc->mapping_table[map_idx];
959 if ((et_entry->enclosure_id == mt_entry->physical_id) &&
960 (!mt_entry->phy_bits || (mt_entry->phy_bits &
961 et_entry->phy_bits))) {
962 num_found += 1;
963 if (num_found == et_entry->num_slots) {
964 start_idx = (map_idx - num_found) + 1;
965 mpr_dprint(sc, MPR_MAPPING, "%s: Found space "
966 "in the mapping for enclosure at map index "
967 "%d.\n", __func__, start_idx);
968 return start_idx;
969 }
970 } else
971 num_found = 0;
972 }
973
974 /*
975 * If the enclosure's devices are not mapped already, look for
976 * contiguous entries in the mapping table that are not reserved. If
977 * enough entries are found, return the starting index for that space.
978 */
979 num_found = 0;
980 for (map_idx = (max_num_phy_ids + skip_count);
981 map_idx < end_of_table; map_idx++) {
982 mt_entry = &sc->mapping_table[map_idx];
983 if (!(mt_entry->device_info & MPR_DEV_RESERVED)) {
984 num_found += 1;
985 if (num_found == et_entry->num_slots) {
986 start_idx = (map_idx - num_found) + 1;
987 mpr_dprint(sc, MPR_MAPPING, "%s: Found space "
988 "in the mapping for enclosure at map index "
989 "%d.\n", __func__, start_idx);
990 return start_idx;
991 }
992 } else
993 num_found = 0;
994 }
995
996 /*
997 * If here, it means that not enough space in the mapping table was
998 * found to support this enclosure, so go through the enclosure table to
999 * see if any enclosure entries have a missing count. If so, get the
1000 * enclosure with the highest missing count and check it to see if there
1001 * is enough space for the new enclosure.
1002 */
1003 while (!done_flag) {
1004 enc_idx = _mapping_get_high_missing_et_idx(sc);
1005 if (enc_idx == MPR_ENCTABLE_BAD_IDX) {
1006 mpr_dprint(sc, MPR_MAPPING, "%s: Not enough space was "
1007 "found in the mapping for the added enclosure.\n",
1008 __func__);
1009 return MPR_MAPTABLE_BAD_IDX;
1010 }
1011
1012 /*
1013 * Found a missing enclosure. Set the skip_search flag so this
1014 * enclosure is not checked again for a high missing count if
1015 * the loop continues. This way, all missing enclosures can
1016 * have their space added together to find enough space in the
1017 * mapping table for the added enclosure. The space must be
1018 * contiguous.
1019 */
1020 mpr_dprint(sc, MPR_MAPPING, "%s: Space from a missing "
1021 "enclosure was found.\n", __func__);
1022 enc_entry = &sc->enclosure_table[enc_idx];
1023 enc_entry->skip_search = 1;
1024
1025 /*
1026 * Unmark all of the missing enclosure's device's reserved
1027 * space. These will be remarked as reserved if this missing
1028 * enclosure's space is not used.
1029 */
1030 mpr_dprint(sc, MPR_MAPPING, "%s: Clear the reserved flag for "
1031 "all of the map entries for the enclosure.\n", __func__);
1032 mt_entry = &sc->mapping_table[enc_entry->start_index];
1033 for (map_idx = enc_entry->start_index; map_idx <
1034 (enc_entry->start_index + enc_entry->num_slots); map_idx++,
1035 mt_entry++)
1036 mt_entry->device_info &= ~MPR_DEV_RESERVED;
1037
1038 /*
1039 * Now that space has been unreserved, check again to see if
1040 * enough space is available for the new enclosure.
1041 */
1042 mpr_dprint(sc, MPR_MAPPING, "%s: Check if new mapping space is "
1043 "enough for the new enclosure.\n", __func__);
1044 found_space = 0;
1045 num_found = 0;
1046 for (map_idx = (max_num_phy_ids + skip_count);
1047 map_idx < end_of_table; map_idx++) {
1048 mt_entry = &sc->mapping_table[map_idx];
1049 if (!(mt_entry->device_info & MPR_DEV_RESERVED)) {
1050 num_found += 1;
1051 if (num_found == et_entry->num_slots) {
1052 start_idx = (map_idx - num_found) + 1;
1053 found_space = 1;
1054 break;
1055 }
1056 } else
1057 num_found = 0;
1058 }
1059 if (!found_space)
1060 continue;
1061
1062 /*
1063 * If enough space was found, all of the missing enclosures that
1064 * will be used for the new enclosure must be added to the
1065 * removal table. Then all mappings for the enclosure's devices
1066 * and for the enclosure itself need to be cleared. There may be
1067 * more than one enclosure to add to the removal table and
1068 * clear.
1069 */
1070 mpr_dprint(sc, MPR_MAPPING, "%s: Found space in the mapping "
1071 "for enclosure at map index %d.\n", __func__, start_idx);
1072 for (map_idx = start_idx; map_idx < (start_idx + num_found);
1073 map_idx++) {
1074 enc_entry = sc->enclosure_table;
1075 for (enc_idx = 0; enc_idx < sc->num_enc_table_entries;
1076 enc_idx++, enc_entry++) {
1077 if (map_idx < enc_entry->start_index ||
1078 map_idx > (enc_entry->start_index +
1079 enc_entry->num_slots))
1080 continue;
1081 if (!enc_entry->removal_flag) {
1082 mpr_dprint(sc, MPR_MAPPING, "%s: "
1083 "Enclosure %d will be removed from "
1084 "the mapping table.\n", __func__,
1085 enc_idx);
1086 enc_entry->removal_flag = 1;
1087 _mapping_add_to_removal_table(sc,
1088 enc_entry->dpm_entry_num);
1089 }
1090 mt_entry = &sc->mapping_table[map_idx];
1091 _mapping_clear_map_entry(mt_entry);
1092 if (map_idx == (enc_entry->start_index +
1093 enc_entry->num_slots - 1))
1094 _mapping_clear_enc_entry(et_entry);
1095 }
1096 }
1097
1098 /*
1099 * During the search for space for this enclosure, some entries
1100 * in the mapping table may have been unreserved. Go back and
1101 * change all of these to reserved again. Only the enclosures
1102 * with the removal_flag set should be left as unreserved. The
1103 * skip_search flag needs to be cleared as well so that the
1104 * enclosure's space will be looked at the next time space is
1105 * needed.
1106 */
1107 enc_entry = sc->enclosure_table;
1108 for (enc_idx = 0; enc_idx < sc->num_enc_table_entries;
1109 enc_idx++, enc_entry++) {
1110 if (!enc_entry->removal_flag) {
1111 mpr_dprint(sc, MPR_MAPPING, "%s: Reset the "
1112 "reserved flag for all of the map entries "
1113 "for enclosure %d.\n", __func__, enc_idx);
1114 mt_entry = &sc->mapping_table[enc_entry->
1115 start_index];
1116 for (map_idx = enc_entry->start_index; map_idx <
1117 (enc_entry->start_index +
1118 enc_entry->num_slots); map_idx++,
1119 mt_entry++)
1120 mt_entry->device_info |=
1121 MPR_DEV_RESERVED;
1122 et_entry->skip_search = 0;
1123 }
1124 }
1125 done_flag = 1;
1126 }
1127 return start_idx;
1128 }
1129
1130 /**
1131 * _mapping_get_dev_info -get information about newly added devices
1132 * @sc: per adapter object
1133 * @topo_change: Topology change event entry
1134 *
1135 * Search through the topology change event list and issues sas device pg0
1136 * requests for the newly added device and reserved entries in tables
1137 *
1138 * Returns nothing
1139 */
1140 static void
_mapping_get_dev_info(struct mpr_softc * sc,struct _map_topology_change * topo_change)1141 _mapping_get_dev_info(struct mpr_softc *sc,
1142 struct _map_topology_change *topo_change)
1143 {
1144 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
1145 Mpi2ConfigReply_t mpi_reply;
1146 Mpi2SasDevicePage0_t sas_device_pg0;
1147 u8 entry, enc_idx, phy_idx;
1148 u32 map_idx, index, device_info;
1149 struct _map_phy_change *phy_change, *tmp_phy_change;
1150 uint64_t sas_address;
1151 struct enc_mapping_table *et_entry;
1152 struct dev_mapping_table *mt_entry;
1153 u8 add_code = MPI2_EVENT_SAS_TOPO_RC_TARG_ADDED;
1154 int rc = 1;
1155
1156 for (entry = 0; entry < topo_change->num_entries; entry++) {
1157 phy_change = &topo_change->phy_details[entry];
1158 if (phy_change->is_processed || !phy_change->dev_handle ||
1159 phy_change->reason != MPI2_EVENT_SAS_TOPO_RC_TARG_ADDED)
1160 continue;
1161
1162 if (mpr_config_get_sas_device_pg0(sc, &mpi_reply,
1163 &sas_device_pg0, MPI2_SAS_DEVICE_PGAD_FORM_HANDLE,
1164 phy_change->dev_handle)) {
1165 phy_change->is_processed = 1;
1166 continue;
1167 }
1168
1169 /*
1170 * Always get SATA Identify information because this is used
1171 * to determine if Start/Stop Unit should be sent to the drive
1172 * when the system is shutdown.
1173 */
1174 device_info = le32toh(sas_device_pg0.DeviceInfo);
1175 sas_address = le32toh(sas_device_pg0.SASAddress.High);
1176 sas_address = (sas_address << 32) |
1177 le32toh(sas_device_pg0.SASAddress.Low);
1178 if ((device_info & MPI2_SAS_DEVICE_INFO_END_DEVICE) &&
1179 (device_info & MPI2_SAS_DEVICE_INFO_SATA_DEVICE)) {
1180 rc = mprsas_get_sas_address_for_sata_disk(sc,
1181 &sas_address, phy_change->dev_handle, device_info,
1182 &phy_change->is_SATA_SSD);
1183 if (rc) {
1184 mpr_dprint(sc, MPR_ERROR, "%s: failed to get "
1185 "disk type (SSD or HDD) and SAS Address "
1186 "for SATA device with handle 0x%04x\n",
1187 __func__, phy_change->dev_handle);
1188 }
1189 }
1190
1191 phy_change->physical_id = sas_address;
1192 phy_change->slot = le16toh(sas_device_pg0.Slot);
1193 phy_change->device_info = device_info;
1194
1195 /*
1196 * When using Enc/Slot mapping, if this device is an enclosure
1197 * make sure that all of its slots can fit into the mapping
1198 * table.
1199 */
1200 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
1201 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
1202 /*
1203 * The enclosure should already be in the enclosure
1204 * table due to the Enclosure Add event. If not, just
1205 * continue, nothing can be done.
1206 */
1207 enc_idx = _mapping_get_enc_idx_from_handle(sc,
1208 topo_change->enc_handle);
1209 if (enc_idx == MPR_ENCTABLE_BAD_IDX) {
1210 phy_change->is_processed = 1;
1211 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
1212 "failed to add the device with handle "
1213 "0x%04x because enclosure handle 0x%04x "
1214 "is not in the mapping table\n", __func__,
1215 phy_change->dev_handle,
1216 topo_change->enc_handle);
1217 continue;
1218 }
1219 if (!((phy_change->device_info &
1220 MPI2_SAS_DEVICE_INFO_END_DEVICE) &&
1221 (phy_change->device_info &
1222 (MPI2_SAS_DEVICE_INFO_SSP_TARGET |
1223 MPI2_SAS_DEVICE_INFO_STP_TARGET |
1224 MPI2_SAS_DEVICE_INFO_SATA_DEVICE)))) {
1225 phy_change->is_processed = 1;
1226 continue;
1227 }
1228 et_entry = &sc->enclosure_table[enc_idx];
1229
1230 /*
1231 * If the enclosure already has a start_index, it's been
1232 * mapped, so go to the next Topo change.
1233 */
1234 if (et_entry->start_index != MPR_MAPTABLE_BAD_IDX)
1235 continue;
1236
1237 /*
1238 * If the Expander Handle is 0, the devices are direct
1239 * attached. In that case, the start_index must be just
1240 * after the reserved entries. Otherwise, find space in
1241 * the mapping table for the enclosure's devices.
1242 */
1243 if (!topo_change->exp_handle) {
1244 map_idx = sc->num_rsvd_entries;
1245 et_entry->start_index = map_idx;
1246 } else {
1247 map_idx = _mapping_find_enc_map_space(sc,
1248 et_entry);
1249 et_entry->start_index = map_idx;
1250
1251 /*
1252 * If space cannot be found to hold all of the
1253 * enclosure's devices in the mapping table,
1254 * there's no need to continue checking the
1255 * other devices in this event. Set all of the
1256 * phy_details for this event (if the change is
1257 * for an add) as already processed because none
1258 * of these devices can be added to the mapping
1259 * table.
1260 */
1261 if (et_entry->start_index ==
1262 MPR_MAPTABLE_BAD_IDX) {
1263 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING,
1264 "%s: failed to add the enclosure "
1265 "with ID 0x%016jx because there is "
1266 "no free space available in the "
1267 "mapping table for all of the "
1268 "enclosure's devices.\n", __func__,
1269 (uintmax_t)et_entry->enclosure_id);
1270 phy_change->is_processed = 1;
1271 for (phy_idx = 0; phy_idx <
1272 topo_change->num_entries;
1273 phy_idx++) {
1274 tmp_phy_change =
1275 &topo_change->phy_details
1276 [phy_idx];
1277 if (tmp_phy_change->reason ==
1278 add_code)
1279 tmp_phy_change->
1280 is_processed = 1;
1281 }
1282 break;
1283 }
1284 }
1285
1286 /*
1287 * Found space in the mapping table for this enclosure.
1288 * Initialize each mapping table entry for the
1289 * enclosure.
1290 */
1291 mpr_dprint(sc, MPR_MAPPING, "%s: Initialize %d map "
1292 "entries for the enclosure, starting at map index "
1293 " %d.\n", __func__, et_entry->num_slots, map_idx);
1294 mt_entry = &sc->mapping_table[map_idx];
1295 for (index = map_idx; index < (et_entry->num_slots
1296 + map_idx); index++, mt_entry++) {
1297 mt_entry->device_info = MPR_DEV_RESERVED;
1298 mt_entry->physical_id = et_entry->enclosure_id;
1299 mt_entry->phy_bits = et_entry->phy_bits;
1300 mt_entry->missing_count = 0;
1301 }
1302 }
1303 }
1304 }
1305
1306 /**
1307 * _mapping_get_pcie_dev_info -get information about newly added PCIe devices
1308 * @sc: per adapter object
1309 * @topo_change: Topology change event entry
1310 *
1311 * Searches through the PCIe topology change event list and issues PCIe device
1312 * pg0 requests for the newly added PCIe device. If the device is in an
1313 * enclosure, search for available space in the enclosure mapping table for the
1314 * device and reserve that space.
1315 *
1316 * Returns nothing
1317 */
1318 static void
_mapping_get_pcie_dev_info(struct mpr_softc * sc,struct _map_pcie_topology_change * topo_change)1319 _mapping_get_pcie_dev_info(struct mpr_softc *sc,
1320 struct _map_pcie_topology_change *topo_change)
1321 {
1322 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
1323 Mpi2ConfigReply_t mpi_reply;
1324 Mpi26PCIeDevicePage0_t pcie_device_pg0;
1325 u8 entry, enc_idx, port_idx;
1326 u32 map_idx, index;
1327 struct _map_port_change *port_change, *tmp_port_change;
1328 uint64_t pcie_wwid;
1329 struct enc_mapping_table *et_entry;
1330 struct dev_mapping_table *mt_entry;
1331 u8 add_code = MPI26_EVENT_PCIE_TOPO_PS_DEV_ADDED;
1332
1333 for (entry = 0; entry < topo_change->num_entries; entry++) {
1334 port_change = &topo_change->port_details[entry];
1335 if (port_change->is_processed || !port_change->dev_handle ||
1336 port_change->reason != MPI26_EVENT_PCIE_TOPO_PS_DEV_ADDED)
1337 continue;
1338 if (mpr_config_get_pcie_device_pg0(sc, &mpi_reply,
1339 &pcie_device_pg0, MPI26_PCIE_DEVICE_PGAD_FORM_HANDLE,
1340 port_change->dev_handle)) {
1341 port_change->is_processed = 1;
1342 continue;
1343 }
1344
1345 pcie_wwid = pcie_device_pg0.WWID.High;
1346 pcie_wwid = (pcie_wwid << 32) | pcie_device_pg0.WWID.Low;
1347 port_change->physical_id = pcie_wwid;
1348 port_change->slot = le16toh(pcie_device_pg0.Slot);
1349 port_change->device_info = le32toh(pcie_device_pg0.DeviceInfo);
1350
1351 /*
1352 * When using Enc/Slot mapping, if this device is an enclosure
1353 * make sure that all of its slots can fit into the mapping
1354 * table.
1355 */
1356 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
1357 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
1358 /*
1359 * The enclosure should already be in the enclosure
1360 * table due to the Enclosure Add event. If not, just
1361 * continue, nothing can be done.
1362 */
1363 enc_idx = _mapping_get_enc_idx_from_handle(sc,
1364 topo_change->enc_handle);
1365 if (enc_idx == MPR_ENCTABLE_BAD_IDX) {
1366 port_change->is_processed = 1;
1367 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
1368 "failed to add the device with handle "
1369 "0x%04x because enclosure handle 0x%04x "
1370 "is not in the mapping table\n", __func__,
1371 port_change->dev_handle,
1372 topo_change->enc_handle);
1373 continue;
1374 }
1375 if (!(port_change->device_info &
1376 MPI26_PCIE_DEVINFO_NVME)) {
1377 port_change->is_processed = 1;
1378 continue;
1379 }
1380 et_entry = &sc->enclosure_table[enc_idx];
1381
1382 /*
1383 * If the enclosure already has a start_index, it's been
1384 * mapped, so go to the next Topo change.
1385 */
1386 if (et_entry->start_index != MPR_MAPTABLE_BAD_IDX)
1387 continue;
1388
1389 /*
1390 * If the Switch Handle is 0, the devices are direct
1391 * attached. In that case, the start_index must be just
1392 * after the reserved entries. Otherwise, find space in
1393 * the mapping table for the enclosure's devices.
1394 */
1395 if (!topo_change->switch_dev_handle) {
1396 map_idx = sc->num_rsvd_entries;
1397 et_entry->start_index = map_idx;
1398 } else {
1399 map_idx = _mapping_find_enc_map_space(sc,
1400 et_entry);
1401 et_entry->start_index = map_idx;
1402
1403 /*
1404 * If space cannot be found to hold all of the
1405 * enclosure's devices in the mapping table,
1406 * there's no need to continue checking the
1407 * other devices in this event. Set all of the
1408 * port_details for this event (if the change is
1409 * for an add) as already processed because none
1410 * of these devices can be added to the mapping
1411 * table.
1412 */
1413 if (et_entry->start_index ==
1414 MPR_MAPTABLE_BAD_IDX) {
1415 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING,
1416 "%s: failed to add the enclosure "
1417 "with ID 0x%016jx because there is "
1418 "no free space available in the "
1419 "mapping table for all of the "
1420 "enclosure's devices.\n", __func__,
1421 (uintmax_t)et_entry->enclosure_id);
1422 port_change->is_processed = 1;
1423 for (port_idx = 0; port_idx <
1424 topo_change->num_entries;
1425 port_idx++) {
1426 tmp_port_change =
1427 &topo_change->port_details
1428 [port_idx];
1429 if (tmp_port_change->reason ==
1430 add_code)
1431 tmp_port_change->
1432 is_processed = 1;
1433 }
1434 break;
1435 }
1436 }
1437
1438 /*
1439 * Found space in the mapping table for this enclosure.
1440 * Initialize each mapping table entry for the
1441 * enclosure.
1442 */
1443 mpr_dprint(sc, MPR_MAPPING, "%s: Initialize %d map "
1444 "entries for the enclosure, starting at map index "
1445 " %d.\n", __func__, et_entry->num_slots, map_idx);
1446 mt_entry = &sc->mapping_table[map_idx];
1447 for (index = map_idx; index < (et_entry->num_slots
1448 + map_idx); index++, mt_entry++) {
1449 mt_entry->device_info = MPR_DEV_RESERVED;
1450 mt_entry->physical_id = et_entry->enclosure_id;
1451 mt_entry->phy_bits = et_entry->phy_bits;
1452 mt_entry->missing_count = 0;
1453 }
1454 }
1455 }
1456 }
1457
1458 /**
1459 * _mapping_set_mid_to_eid -set map table data from enclosure table
1460 * @sc: per adapter object
1461 * @et_entry: enclosure entry
1462 *
1463 * Returns nothing
1464 */
1465 static inline void
_mapping_set_mid_to_eid(struct mpr_softc * sc,struct enc_mapping_table * et_entry)1466 _mapping_set_mid_to_eid(struct mpr_softc *sc,
1467 struct enc_mapping_table *et_entry)
1468 {
1469 struct dev_mapping_table *mt_entry;
1470 u16 slots = et_entry->num_slots, map_idx;
1471 u32 start_idx = et_entry->start_index;
1472
1473 if (start_idx != MPR_MAPTABLE_BAD_IDX) {
1474 mt_entry = &sc->mapping_table[start_idx];
1475 for (map_idx = 0; map_idx < slots; map_idx++, mt_entry++)
1476 mt_entry->physical_id = et_entry->enclosure_id;
1477 }
1478 }
1479
1480 /**
1481 * _mapping_clear_removed_entries - mark the entries to be cleared
1482 * @sc: per adapter object
1483 *
1484 * Search through the removal table and mark the entries which needs to be
1485 * flushed to DPM and also updates the map table and enclosure table by
1486 * clearing the corresponding entries.
1487 *
1488 * Returns nothing
1489 */
1490 static void
_mapping_clear_removed_entries(struct mpr_softc * sc)1491 _mapping_clear_removed_entries(struct mpr_softc *sc)
1492 {
1493 u32 remove_idx;
1494 struct map_removal_table *remove_entry;
1495 Mpi2DriverMap0Entry_t *dpm_entry;
1496 u8 done_flag = 0, num_entries, m, i;
1497 struct enc_mapping_table *et_entry, *from, *to;
1498 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
1499
1500 if (sc->is_dpm_enable) {
1501 remove_entry = sc->removal_table;
1502 for (remove_idx = 0; remove_idx < sc->max_devices;
1503 remove_idx++, remove_entry++) {
1504 if (remove_entry->dpm_entry_num != MPR_DPM_BAD_IDX) {
1505 dpm_entry = (Mpi2DriverMap0Entry_t *)
1506 ((u8 *) sc->dpm_pg0 +
1507 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
1508 dpm_entry += remove_entry->dpm_entry_num;
1509 dpm_entry->PhysicalIdentifier.Low = 0;
1510 dpm_entry->PhysicalIdentifier.High = 0;
1511 dpm_entry->DeviceIndex = 0;
1512 dpm_entry->MappingInformation = 0;
1513 dpm_entry->PhysicalBitsMapping = 0;
1514 sc->dpm_flush_entry[remove_entry->
1515 dpm_entry_num] = 1;
1516 sc->dpm_entry_used[remove_entry->dpm_entry_num]
1517 = 0;
1518 remove_entry->dpm_entry_num = MPR_DPM_BAD_IDX;
1519 }
1520 }
1521 }
1522
1523 /*
1524 * When using Enc/Slot mapping, if a new enclosure was added and old
1525 * enclosure space was needed, the enclosure table may now have gaps
1526 * that need to be closed. All enclosure mappings need to be contiguous
1527 * so that space can be reused correctly if available.
1528 */
1529 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
1530 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
1531 num_entries = sc->num_enc_table_entries;
1532 while (!done_flag) {
1533 done_flag = 1;
1534 et_entry = sc->enclosure_table;
1535 for (i = 0; i < num_entries; i++, et_entry++) {
1536 if (!et_entry->enc_handle && et_entry->
1537 init_complete) {
1538 done_flag = 0;
1539 if (i != (num_entries - 1)) {
1540 from = &sc->enclosure_table
1541 [i+1];
1542 to = &sc->enclosure_table[i];
1543 for (m = i; m < (num_entries -
1544 1); m++, from++, to++) {
1545 _mapping_set_mid_to_eid
1546 (sc, to);
1547 *to = *from;
1548 }
1549 _mapping_clear_enc_entry(to);
1550 sc->num_enc_table_entries--;
1551 num_entries =
1552 sc->num_enc_table_entries;
1553 } else {
1554 _mapping_clear_enc_entry
1555 (et_entry);
1556 sc->num_enc_table_entries--;
1557 num_entries =
1558 sc->num_enc_table_entries;
1559 }
1560 }
1561 }
1562 }
1563 }
1564 }
1565
1566 /**
1567 * _mapping_add_new_device -Add the new device into mapping table
1568 * @sc: per adapter object
1569 * @topo_change: Topology change event entry
1570 *
1571 * Search through the topology change event list and update map table,
1572 * enclosure table and DPM pages for the newly added devices.
1573 *
1574 * Returns nothing
1575 */
1576 static void
_mapping_add_new_device(struct mpr_softc * sc,struct _map_topology_change * topo_change)1577 _mapping_add_new_device(struct mpr_softc *sc,
1578 struct _map_topology_change *topo_change)
1579 {
1580 u8 enc_idx, missing_cnt, is_removed = 0;
1581 u16 dpm_idx;
1582 u32 search_idx, map_idx;
1583 u32 entry;
1584 struct dev_mapping_table *mt_entry;
1585 struct enc_mapping_table *et_entry;
1586 struct _map_phy_change *phy_change;
1587 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
1588 Mpi2DriverMap0Entry_t *dpm_entry;
1589 uint64_t temp64_var;
1590 u8 map_shift = MPI2_DRVMAP0_MAPINFO_SLOT_SHIFT;
1591 u8 hdr_sz = sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER);
1592 u16 max_num_phy_ids = le16toh(sc->ioc_pg8.MaxNumPhysicalMappedIDs);
1593
1594 for (entry = 0; entry < topo_change->num_entries; entry++) {
1595 phy_change = &topo_change->phy_details[entry];
1596 if (phy_change->is_processed)
1597 continue;
1598 if (phy_change->reason != MPI2_EVENT_SAS_TOPO_RC_TARG_ADDED ||
1599 !phy_change->dev_handle) {
1600 phy_change->is_processed = 1;
1601 continue;
1602 }
1603 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
1604 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
1605 enc_idx = _mapping_get_enc_idx_from_handle
1606 (sc, topo_change->enc_handle);
1607 if (enc_idx == MPR_ENCTABLE_BAD_IDX) {
1608 phy_change->is_processed = 1;
1609 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
1610 "failed to add the device with handle "
1611 "0x%04x because enclosure handle 0x%04x "
1612 "is not in the mapping table\n", __func__,
1613 phy_change->dev_handle,
1614 topo_change->enc_handle);
1615 continue;
1616 }
1617
1618 /*
1619 * If the enclosure's start_index is BAD here, it means
1620 * that there is no room in the mapping table to cover
1621 * all of the devices that could be in the enclosure.
1622 * There's no reason to process any of the devices for
1623 * this enclosure since they can't be mapped.
1624 */
1625 et_entry = &sc->enclosure_table[enc_idx];
1626 if (et_entry->start_index == MPR_MAPTABLE_BAD_IDX) {
1627 phy_change->is_processed = 1;
1628 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
1629 "failed to add the device with handle "
1630 "0x%04x because there is no free space "
1631 "available in the mapping table\n",
1632 __func__, phy_change->dev_handle);
1633 continue;
1634 }
1635
1636 /*
1637 * Add this device to the mapping table at the correct
1638 * offset where space was found to map the enclosure.
1639 * Then setup the DPM entry information if being used.
1640 */
1641 map_idx = et_entry->start_index + phy_change->slot -
1642 et_entry->start_slot;
1643 mt_entry = &sc->mapping_table[map_idx];
1644 mt_entry->physical_id = phy_change->physical_id;
1645 mt_entry->id = map_idx;
1646 mt_entry->dev_handle = phy_change->dev_handle;
1647 mt_entry->missing_count = 0;
1648 mt_entry->dpm_entry_num = et_entry->dpm_entry_num;
1649 mt_entry->device_info = phy_change->device_info |
1650 (MPR_DEV_RESERVED | MPR_MAP_IN_USE);
1651 if (sc->is_dpm_enable) {
1652 dpm_idx = et_entry->dpm_entry_num;
1653 if (dpm_idx == MPR_DPM_BAD_IDX)
1654 dpm_idx = _mapping_get_dpm_idx_from_id
1655 (sc, et_entry->enclosure_id,
1656 et_entry->phy_bits);
1657 if (dpm_idx == MPR_DPM_BAD_IDX) {
1658 dpm_idx = _mapping_get_free_dpm_idx(sc);
1659 if (dpm_idx != MPR_DPM_BAD_IDX) {
1660 dpm_entry =
1661 (Mpi2DriverMap0Entry_t *)
1662 ((u8 *) sc->dpm_pg0 +
1663 hdr_sz);
1664 dpm_entry += dpm_idx;
1665 dpm_entry->
1666 PhysicalIdentifier.Low =
1667 (0xFFFFFFFF &
1668 et_entry->enclosure_id);
1669 dpm_entry->
1670 PhysicalIdentifier.High =
1671 (et_entry->enclosure_id
1672 >> 32);
1673 dpm_entry->DeviceIndex =
1674 (U16)et_entry->start_index;
1675 dpm_entry->MappingInformation =
1676 et_entry->num_slots;
1677 dpm_entry->MappingInformation
1678 <<= map_shift;
1679 dpm_entry->PhysicalBitsMapping
1680 = et_entry->phy_bits;
1681 et_entry->dpm_entry_num =
1682 dpm_idx;
1683 sc->dpm_entry_used[dpm_idx] = 1;
1684 sc->dpm_flush_entry[dpm_idx] =
1685 1;
1686 phy_change->is_processed = 1;
1687 } else {
1688 phy_change->is_processed = 1;
1689 mpr_dprint(sc, MPR_ERROR |
1690 MPR_MAPPING, "%s: failed "
1691 "to add the device with "
1692 "handle 0x%04x to "
1693 "persistent table because "
1694 "there is no free space "
1695 "available\n", __func__,
1696 phy_change->dev_handle);
1697 }
1698 } else {
1699 et_entry->dpm_entry_num = dpm_idx;
1700 mt_entry->dpm_entry_num = dpm_idx;
1701 }
1702 }
1703 et_entry->init_complete = 1;
1704 } else if ((ioc_pg8_flags &
1705 MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
1706 MPI2_IOCPAGE8_FLAGS_DEVICE_PERSISTENCE_MAPPING) {
1707 /*
1708 * Get the mapping table index for this device. If it's
1709 * not in the mapping table yet, find a free entry if
1710 * one is available. If there are no free entries, look
1711 * for the entry that has the highest missing count. If
1712 * none of that works to find an entry in the mapping
1713 * table, there is a problem. Log a message and just
1714 * continue on.
1715 */
1716 map_idx = _mapping_get_mt_idx_from_id
1717 (sc, phy_change->physical_id);
1718 if (map_idx == MPR_MAPTABLE_BAD_IDX) {
1719 search_idx = sc->num_rsvd_entries;
1720 if (topo_change->exp_handle)
1721 search_idx += max_num_phy_ids;
1722 map_idx = _mapping_get_free_mt_idx(sc,
1723 search_idx);
1724 }
1725
1726 /*
1727 * If an entry will be used that has a missing device,
1728 * clear its entry from the DPM in the controller.
1729 */
1730 if (map_idx == MPR_MAPTABLE_BAD_IDX) {
1731 map_idx = _mapping_get_high_missing_mt_idx(sc);
1732 if (map_idx != MPR_MAPTABLE_BAD_IDX) {
1733 mt_entry = &sc->mapping_table[map_idx];
1734 _mapping_add_to_removal_table(sc,
1735 mt_entry->dpm_entry_num);
1736 is_removed = 1;
1737 mt_entry->init_complete = 0;
1738 }
1739 }
1740 if (map_idx != MPR_MAPTABLE_BAD_IDX) {
1741 mt_entry = &sc->mapping_table[map_idx];
1742 mt_entry->physical_id = phy_change->physical_id;
1743 mt_entry->id = map_idx;
1744 mt_entry->dev_handle = phy_change->dev_handle;
1745 mt_entry->missing_count = 0;
1746 mt_entry->device_info = phy_change->device_info
1747 | (MPR_DEV_RESERVED | MPR_MAP_IN_USE);
1748 } else {
1749 phy_change->is_processed = 1;
1750 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
1751 "failed to add the device with handle "
1752 "0x%04x because there is no free space "
1753 "available in the mapping table\n",
1754 __func__, phy_change->dev_handle);
1755 continue;
1756 }
1757 if (sc->is_dpm_enable) {
1758 if (mt_entry->dpm_entry_num !=
1759 MPR_DPM_BAD_IDX) {
1760 dpm_idx = mt_entry->dpm_entry_num;
1761 dpm_entry = (Mpi2DriverMap0Entry_t *)
1762 ((u8 *)sc->dpm_pg0 + hdr_sz);
1763 dpm_entry += dpm_idx;
1764 missing_cnt = dpm_entry->
1765 MappingInformation &
1766 MPI2_DRVMAP0_MAPINFO_MISSING_MASK;
1767 temp64_var = dpm_entry->
1768 PhysicalIdentifier.High;
1769 temp64_var = (temp64_var << 32) |
1770 dpm_entry->PhysicalIdentifier.Low;
1771
1772 /*
1773 * If the Mapping Table's info is not
1774 * the same as the DPM entry, clear the
1775 * init_complete flag so that it's
1776 * updated.
1777 */
1778 if ((mt_entry->physical_id ==
1779 temp64_var) && !missing_cnt)
1780 mt_entry->init_complete = 1;
1781 else
1782 mt_entry->init_complete = 0;
1783 } else {
1784 dpm_idx = _mapping_get_free_dpm_idx(sc);
1785 mt_entry->init_complete = 0;
1786 }
1787 if (dpm_idx != MPR_DPM_BAD_IDX &&
1788 !mt_entry->init_complete) {
1789 mt_entry->dpm_entry_num = dpm_idx;
1790 dpm_entry = (Mpi2DriverMap0Entry_t *)
1791 ((u8 *)sc->dpm_pg0 + hdr_sz);
1792 dpm_entry += dpm_idx;
1793 dpm_entry->PhysicalIdentifier.Low =
1794 (0xFFFFFFFF &
1795 mt_entry->physical_id);
1796 dpm_entry->PhysicalIdentifier.High =
1797 (mt_entry->physical_id >> 32);
1798 dpm_entry->DeviceIndex = (U16) map_idx;
1799 dpm_entry->MappingInformation = 0;
1800 dpm_entry->PhysicalBitsMapping = 0;
1801 sc->dpm_entry_used[dpm_idx] = 1;
1802 sc->dpm_flush_entry[dpm_idx] = 1;
1803 phy_change->is_processed = 1;
1804 } else if (dpm_idx == MPR_DPM_BAD_IDX) {
1805 phy_change->is_processed = 1;
1806 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING,
1807 "%s: failed to add the device with "
1808 "handle 0x%04x to persistent table "
1809 "because there is no free space "
1810 "available\n", __func__,
1811 phy_change->dev_handle);
1812 }
1813 }
1814 mt_entry->init_complete = 1;
1815 }
1816
1817 phy_change->is_processed = 1;
1818 }
1819 if (is_removed)
1820 _mapping_clear_removed_entries(sc);
1821 }
1822
1823 /**
1824 * _mapping_add_new_pcie_device -Add the new PCIe device into mapping table
1825 * @sc: per adapter object
1826 * @topo_change: Topology change event entry
1827 *
1828 * Search through the PCIe topology change event list and update map table,
1829 * enclosure table and DPM pages for the newly added devices.
1830 *
1831 * Returns nothing
1832 */
1833 static void
_mapping_add_new_pcie_device(struct mpr_softc * sc,struct _map_pcie_topology_change * topo_change)1834 _mapping_add_new_pcie_device(struct mpr_softc *sc,
1835 struct _map_pcie_topology_change *topo_change)
1836 {
1837 u8 enc_idx, missing_cnt, is_removed = 0;
1838 u16 dpm_idx;
1839 u32 search_idx, map_idx;
1840 u32 entry;
1841 struct dev_mapping_table *mt_entry;
1842 struct enc_mapping_table *et_entry;
1843 struct _map_port_change *port_change;
1844 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
1845 Mpi2DriverMap0Entry_t *dpm_entry;
1846 uint64_t temp64_var;
1847 u8 map_shift = MPI2_DRVMAP0_MAPINFO_SLOT_SHIFT;
1848 u8 hdr_sz = sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER);
1849 u16 max_num_phy_ids = le16toh(sc->ioc_pg8.MaxNumPhysicalMappedIDs);
1850
1851 for (entry = 0; entry < topo_change->num_entries; entry++) {
1852 port_change = &topo_change->port_details[entry];
1853 if (port_change->is_processed)
1854 continue;
1855 if (port_change->reason != MPI26_EVENT_PCIE_TOPO_PS_DEV_ADDED ||
1856 !port_change->dev_handle) {
1857 port_change->is_processed = 1;
1858 continue;
1859 }
1860 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
1861 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
1862 enc_idx = _mapping_get_enc_idx_from_handle
1863 (sc, topo_change->enc_handle);
1864 if (enc_idx == MPR_ENCTABLE_BAD_IDX) {
1865 port_change->is_processed = 1;
1866 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
1867 "failed to add the device with handle "
1868 "0x%04x because enclosure handle 0x%04x "
1869 "is not in the mapping table\n", __func__,
1870 port_change->dev_handle,
1871 topo_change->enc_handle);
1872 continue;
1873 }
1874
1875 /*
1876 * If the enclosure's start_index is BAD here, it means
1877 * that there is no room in the mapping table to cover
1878 * all of the devices that could be in the enclosure.
1879 * There's no reason to process any of the devices for
1880 * this enclosure since they can't be mapped.
1881 */
1882 et_entry = &sc->enclosure_table[enc_idx];
1883 if (et_entry->start_index == MPR_MAPTABLE_BAD_IDX) {
1884 port_change->is_processed = 1;
1885 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
1886 "failed to add the device with handle "
1887 "0x%04x because there is no free space "
1888 "available in the mapping table\n",
1889 __func__, port_change->dev_handle);
1890 continue;
1891 }
1892
1893 /*
1894 * Add this device to the mapping table at the correct
1895 * offset where space was found to map the enclosure.
1896 * Then setup the DPM entry information if being used.
1897 */
1898 map_idx = et_entry->start_index + port_change->slot -
1899 et_entry->start_slot;
1900 mt_entry = &sc->mapping_table[map_idx];
1901 mt_entry->physical_id = port_change->physical_id;
1902 mt_entry->id = map_idx;
1903 mt_entry->dev_handle = port_change->dev_handle;
1904 mt_entry->missing_count = 0;
1905 mt_entry->dpm_entry_num = et_entry->dpm_entry_num;
1906 mt_entry->device_info = port_change->device_info |
1907 (MPR_DEV_RESERVED | MPR_MAP_IN_USE);
1908 if (sc->is_dpm_enable) {
1909 dpm_idx = et_entry->dpm_entry_num;
1910 if (dpm_idx == MPR_DPM_BAD_IDX)
1911 dpm_idx = _mapping_get_dpm_idx_from_id
1912 (sc, et_entry->enclosure_id,
1913 et_entry->phy_bits);
1914 if (dpm_idx == MPR_DPM_BAD_IDX) {
1915 dpm_idx = _mapping_get_free_dpm_idx(sc);
1916 if (dpm_idx != MPR_DPM_BAD_IDX) {
1917 dpm_entry =
1918 (Mpi2DriverMap0Entry_t *)
1919 ((u8 *) sc->dpm_pg0 +
1920 hdr_sz);
1921 dpm_entry += dpm_idx;
1922 dpm_entry->
1923 PhysicalIdentifier.Low =
1924 (0xFFFFFFFF &
1925 et_entry->enclosure_id);
1926 dpm_entry->
1927 PhysicalIdentifier.High =
1928 (et_entry->enclosure_id
1929 >> 32);
1930 dpm_entry->DeviceIndex =
1931 (U16)et_entry->start_index;
1932 dpm_entry->MappingInformation =
1933 et_entry->num_slots;
1934 dpm_entry->MappingInformation
1935 <<= map_shift;
1936 dpm_entry->PhysicalBitsMapping
1937 = et_entry->phy_bits;
1938 et_entry->dpm_entry_num =
1939 dpm_idx;
1940 sc->dpm_entry_used[dpm_idx] = 1;
1941 sc->dpm_flush_entry[dpm_idx] =
1942 1;
1943 port_change->is_processed = 1;
1944 } else {
1945 port_change->is_processed = 1;
1946 mpr_dprint(sc, MPR_ERROR |
1947 MPR_MAPPING, "%s: failed "
1948 "to add the device with "
1949 "handle 0x%04x to "
1950 "persistent table because "
1951 "there is no free space "
1952 "available\n", __func__,
1953 port_change->dev_handle);
1954 }
1955 } else {
1956 et_entry->dpm_entry_num = dpm_idx;
1957 mt_entry->dpm_entry_num = dpm_idx;
1958 }
1959 }
1960 et_entry->init_complete = 1;
1961 } else if ((ioc_pg8_flags &
1962 MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
1963 MPI2_IOCPAGE8_FLAGS_DEVICE_PERSISTENCE_MAPPING) {
1964 /*
1965 * Get the mapping table index for this device. If it's
1966 * not in the mapping table yet, find a free entry if
1967 * one is available. If there are no free entries, look
1968 * for the entry that has the highest missing count. If
1969 * none of that works to find an entry in the mapping
1970 * table, there is a problem. Log a message and just
1971 * continue on.
1972 */
1973 map_idx = _mapping_get_mt_idx_from_id
1974 (sc, port_change->physical_id);
1975 if (map_idx == MPR_MAPTABLE_BAD_IDX) {
1976 search_idx = sc->num_rsvd_entries;
1977 if (topo_change->switch_dev_handle)
1978 search_idx += max_num_phy_ids;
1979 map_idx = _mapping_get_free_mt_idx(sc,
1980 search_idx);
1981 }
1982
1983 /*
1984 * If an entry will be used that has a missing device,
1985 * clear its entry from the DPM in the controller.
1986 */
1987 if (map_idx == MPR_MAPTABLE_BAD_IDX) {
1988 map_idx = _mapping_get_high_missing_mt_idx(sc);
1989 if (map_idx != MPR_MAPTABLE_BAD_IDX) {
1990 mt_entry = &sc->mapping_table[map_idx];
1991 _mapping_add_to_removal_table(sc,
1992 mt_entry->dpm_entry_num);
1993 is_removed = 1;
1994 mt_entry->init_complete = 0;
1995 }
1996 }
1997 if (map_idx != MPR_MAPTABLE_BAD_IDX) {
1998 mt_entry = &sc->mapping_table[map_idx];
1999 mt_entry->physical_id =
2000 port_change->physical_id;
2001 mt_entry->id = map_idx;
2002 mt_entry->dev_handle = port_change->dev_handle;
2003 mt_entry->missing_count = 0;
2004 mt_entry->device_info =
2005 port_change->device_info |
2006 (MPR_DEV_RESERVED | MPR_MAP_IN_USE);
2007 } else {
2008 port_change->is_processed = 1;
2009 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
2010 "failed to add the device with handle "
2011 "0x%04x because there is no free space "
2012 "available in the mapping table\n",
2013 __func__, port_change->dev_handle);
2014 continue;
2015 }
2016 if (sc->is_dpm_enable) {
2017 if (mt_entry->dpm_entry_num !=
2018 MPR_DPM_BAD_IDX) {
2019 dpm_idx = mt_entry->dpm_entry_num;
2020 dpm_entry = (Mpi2DriverMap0Entry_t *)
2021 ((u8 *)sc->dpm_pg0 + hdr_sz);
2022 dpm_entry += dpm_idx;
2023 missing_cnt = dpm_entry->
2024 MappingInformation &
2025 MPI2_DRVMAP0_MAPINFO_MISSING_MASK;
2026 temp64_var = dpm_entry->
2027 PhysicalIdentifier.High;
2028 temp64_var = (temp64_var << 32) |
2029 dpm_entry->PhysicalIdentifier.Low;
2030
2031 /*
2032 * If the Mapping Table's info is not
2033 * the same as the DPM entry, clear the
2034 * init_complete flag so that it's
2035 * updated.
2036 */
2037 if ((mt_entry->physical_id ==
2038 temp64_var) && !missing_cnt)
2039 mt_entry->init_complete = 1;
2040 else
2041 mt_entry->init_complete = 0;
2042 } else {
2043 dpm_idx = _mapping_get_free_dpm_idx(sc);
2044 mt_entry->init_complete = 0;
2045 }
2046 if (dpm_idx != MPR_DPM_BAD_IDX &&
2047 !mt_entry->init_complete) {
2048 mt_entry->dpm_entry_num = dpm_idx;
2049 dpm_entry = (Mpi2DriverMap0Entry_t *)
2050 ((u8 *)sc->dpm_pg0 + hdr_sz);
2051 dpm_entry += dpm_idx;
2052 dpm_entry->PhysicalIdentifier.Low =
2053 (0xFFFFFFFF &
2054 mt_entry->physical_id);
2055 dpm_entry->PhysicalIdentifier.High =
2056 (mt_entry->physical_id >> 32);
2057 dpm_entry->DeviceIndex = (U16) map_idx;
2058 dpm_entry->MappingInformation = 0;
2059 dpm_entry->PhysicalBitsMapping = 0;
2060 sc->dpm_entry_used[dpm_idx] = 1;
2061 sc->dpm_flush_entry[dpm_idx] = 1;
2062 port_change->is_processed = 1;
2063 } else if (dpm_idx == MPR_DPM_BAD_IDX) {
2064 port_change->is_processed = 1;
2065 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING,
2066 "%s: failed to add the device with "
2067 "handle 0x%04x to persistent table "
2068 "because there is no free space "
2069 "available\n", __func__,
2070 port_change->dev_handle);
2071 }
2072 }
2073 mt_entry->init_complete = 1;
2074 }
2075
2076 port_change->is_processed = 1;
2077 }
2078 if (is_removed)
2079 _mapping_clear_removed_entries(sc);
2080 }
2081
2082 /**
2083 * _mapping_flush_dpm_pages -Flush the DPM pages to NVRAM
2084 * @sc: per adapter object
2085 *
2086 * Returns nothing
2087 */
2088 static void
_mapping_flush_dpm_pages(struct mpr_softc * sc)2089 _mapping_flush_dpm_pages(struct mpr_softc *sc)
2090 {
2091 Mpi2DriverMap0Entry_t *dpm_entry;
2092 Mpi2ConfigReply_t mpi_reply;
2093 Mpi2DriverMappingPage0_t config_page;
2094 u16 entry_num;
2095
2096 for (entry_num = 0; entry_num < sc->max_dpm_entries; entry_num++) {
2097 if (!sc->dpm_flush_entry[entry_num])
2098 continue;
2099 memset(&config_page, 0, sizeof(Mpi2DriverMappingPage0_t));
2100 memcpy(&config_page.Header, (u8 *)sc->dpm_pg0,
2101 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
2102 dpm_entry = (Mpi2DriverMap0Entry_t *) ((u8 *)sc->dpm_pg0 +
2103 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
2104 dpm_entry += entry_num;
2105 dpm_entry->MappingInformation = htole16(dpm_entry->
2106 MappingInformation);
2107 dpm_entry->DeviceIndex = htole16(dpm_entry->DeviceIndex);
2108 dpm_entry->PhysicalBitsMapping = htole32(dpm_entry->
2109 PhysicalBitsMapping);
2110 memcpy(&config_page.Entry, (u8 *)dpm_entry,
2111 sizeof(Mpi2DriverMap0Entry_t));
2112 /* TODO-How to handle failed writes? */
2113 mpr_dprint(sc, MPR_MAPPING, "%s: Flushing DPM entry %d.\n",
2114 __func__, entry_num);
2115 if (mpr_config_set_dpm_pg0(sc, &mpi_reply, &config_page,
2116 entry_num)) {
2117 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: Flush of "
2118 "DPM entry %d for device failed\n", __func__,
2119 entry_num);
2120 } else
2121 sc->dpm_flush_entry[entry_num] = 0;
2122 dpm_entry->MappingInformation = le16toh(dpm_entry->
2123 MappingInformation);
2124 dpm_entry->DeviceIndex = le16toh(dpm_entry->DeviceIndex);
2125 dpm_entry->PhysicalBitsMapping = le32toh(dpm_entry->
2126 PhysicalBitsMapping);
2127 }
2128 }
2129
2130 /**
2131 * _mapping_allocate_memory- allocates the memory required for mapping tables
2132 * @sc: per adapter object
2133 *
2134 * Allocates the memory for all the tables required for host mapping
2135 *
2136 * Return 0 on success or non-zero on failure.
2137 */
2138 int
mpr_mapping_allocate_memory(struct mpr_softc * sc)2139 mpr_mapping_allocate_memory(struct mpr_softc *sc)
2140 {
2141 uint32_t dpm_pg0_sz;
2142
2143 sc->mapping_table = malloc((sizeof(struct dev_mapping_table) *
2144 sc->max_devices), M_MPR, M_ZERO|M_NOWAIT);
2145 if (!sc->mapping_table)
2146 goto free_resources;
2147
2148 sc->removal_table = malloc((sizeof(struct map_removal_table) *
2149 sc->max_devices), M_MPR, M_ZERO|M_NOWAIT);
2150 if (!sc->removal_table)
2151 goto free_resources;
2152
2153 sc->enclosure_table = malloc((sizeof(struct enc_mapping_table) *
2154 sc->max_enclosures), M_MPR, M_ZERO|M_NOWAIT);
2155 if (!sc->enclosure_table)
2156 goto free_resources;
2157
2158 sc->dpm_entry_used = malloc((sizeof(u8) * sc->max_dpm_entries),
2159 M_MPR, M_ZERO|M_NOWAIT);
2160 if (!sc->dpm_entry_used)
2161 goto free_resources;
2162
2163 sc->dpm_flush_entry = malloc((sizeof(u8) * sc->max_dpm_entries),
2164 M_MPR, M_ZERO|M_NOWAIT);
2165 if (!sc->dpm_flush_entry)
2166 goto free_resources;
2167
2168 dpm_pg0_sz = sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER) +
2169 (sc->max_dpm_entries * sizeof(MPI2_CONFIG_PAGE_DRIVER_MAP0_ENTRY));
2170
2171 sc->dpm_pg0 = malloc(dpm_pg0_sz, M_MPR, M_ZERO|M_NOWAIT);
2172 if (!sc->dpm_pg0) {
2173 printf("%s: memory alloc failed for dpm page; disabling dpm\n",
2174 __func__);
2175 sc->is_dpm_enable = 0;
2176 }
2177
2178 return 0;
2179
2180 free_resources:
2181 free(sc->mapping_table, M_MPR);
2182 free(sc->removal_table, M_MPR);
2183 free(sc->enclosure_table, M_MPR);
2184 free(sc->dpm_entry_used, M_MPR);
2185 free(sc->dpm_flush_entry, M_MPR);
2186 free(sc->dpm_pg0, M_MPR);
2187 printf("%s: device initialization failed due to failure in mapping "
2188 "table memory allocation\n", __func__);
2189 return -1;
2190 }
2191
2192 /**
2193 * mpr_mapping_free_memory- frees the memory allocated for mapping tables
2194 * @sc: per adapter object
2195 *
2196 * Returns nothing.
2197 */
2198 void
mpr_mapping_free_memory(struct mpr_softc * sc)2199 mpr_mapping_free_memory(struct mpr_softc *sc)
2200 {
2201 free(sc->mapping_table, M_MPR);
2202 free(sc->removal_table, M_MPR);
2203 free(sc->enclosure_table, M_MPR);
2204 free(sc->dpm_entry_used, M_MPR);
2205 free(sc->dpm_flush_entry, M_MPR);
2206 free(sc->dpm_pg0, M_MPR);
2207 }
2208
2209 static void
_mapping_process_dpm_pg0(struct mpr_softc * sc)2210 _mapping_process_dpm_pg0(struct mpr_softc *sc)
2211 {
2212 u8 missing_cnt, enc_idx;
2213 u16 slot_id, entry_num, num_slots;
2214 u32 map_idx, dev_idx, start_idx, end_idx;
2215 struct dev_mapping_table *mt_entry;
2216 Mpi2DriverMap0Entry_t *dpm_entry;
2217 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
2218 u16 max_num_phy_ids = le16toh(sc->ioc_pg8.MaxNumPhysicalMappedIDs);
2219 struct enc_mapping_table *et_entry;
2220 u64 physical_id;
2221 u32 phy_bits = 0;
2222
2223 /*
2224 * start_idx and end_idx are only used for IR.
2225 */
2226 if (sc->ir_firmware)
2227 _mapping_get_ir_maprange(sc, &start_idx, &end_idx);
2228
2229 /*
2230 * Look through all of the DPM entries that were read from the
2231 * controller and copy them over to the driver's internal table if they
2232 * have a non-zero ID. At this point, any ID with a value of 0 would be
2233 * invalid, so don't copy it.
2234 */
2235 mpr_dprint(sc, MPR_MAPPING, "%s: Start copy of %d DPM entries into the "
2236 "mapping table.\n", __func__, sc->max_dpm_entries);
2237 dpm_entry = (Mpi2DriverMap0Entry_t *) ((uint8_t *) sc->dpm_pg0 +
2238 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
2239 for (entry_num = 0; entry_num < sc->max_dpm_entries; entry_num++,
2240 dpm_entry++) {
2241 physical_id = dpm_entry->PhysicalIdentifier.High;
2242 physical_id = (physical_id << 32) |
2243 dpm_entry->PhysicalIdentifier.Low;
2244 if (!physical_id) {
2245 sc->dpm_entry_used[entry_num] = 0;
2246 continue;
2247 }
2248 sc->dpm_entry_used[entry_num] = 1;
2249 dpm_entry->MappingInformation = le16toh(dpm_entry->
2250 MappingInformation);
2251 missing_cnt = dpm_entry->MappingInformation &
2252 MPI2_DRVMAP0_MAPINFO_MISSING_MASK;
2253 dev_idx = le16toh(dpm_entry->DeviceIndex);
2254 phy_bits = le32toh(dpm_entry->PhysicalBitsMapping);
2255
2256 /*
2257 * Volumes are at special locations in the mapping table so
2258 * account for that. Volume mapping table entries do not depend
2259 * on the type of mapping, so continue the loop after adding
2260 * volumes to the mapping table.
2261 */
2262 if (sc->ir_firmware && (dev_idx >= start_idx) &&
2263 (dev_idx <= end_idx)) {
2264 mt_entry = &sc->mapping_table[dev_idx];
2265 mt_entry->physical_id =
2266 dpm_entry->PhysicalIdentifier.High;
2267 mt_entry->physical_id = (mt_entry->physical_id << 32) |
2268 dpm_entry->PhysicalIdentifier.Low;
2269 mt_entry->id = dev_idx;
2270 mt_entry->missing_count = missing_cnt;
2271 mt_entry->dpm_entry_num = entry_num;
2272 mt_entry->device_info = MPR_DEV_RESERVED;
2273 continue;
2274 }
2275 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
2276 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
2277 /*
2278 * The dev_idx for an enclosure is the start index. If
2279 * the start index is within the controller's default
2280 * enclosure area, set the number of slots for this
2281 * enclosure to the max allowed. Otherwise, it should be
2282 * a normal enclosure and the number of slots is in the
2283 * DPM entry's Mapping Information.
2284 */
2285 if (dev_idx < (sc->num_rsvd_entries +
2286 max_num_phy_ids)) {
2287 slot_id = 0;
2288 if (ioc_pg8_flags &
2289 MPI2_IOCPAGE8_FLAGS_DA_START_SLOT_1)
2290 slot_id = 1;
2291 num_slots = max_num_phy_ids;
2292 } else {
2293 slot_id = 0;
2294 num_slots = dpm_entry->MappingInformation &
2295 MPI2_DRVMAP0_MAPINFO_SLOT_MASK;
2296 num_slots >>= MPI2_DRVMAP0_MAPINFO_SLOT_SHIFT;
2297 }
2298 enc_idx = sc->num_enc_table_entries;
2299 if (enc_idx >= sc->max_enclosures) {
2300 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
2301 "Number of enclosure entries in DPM exceed "
2302 "the max allowed of %d.\n", __func__,
2303 sc->max_enclosures);
2304 break;
2305 }
2306 sc->num_enc_table_entries++;
2307 et_entry = &sc->enclosure_table[enc_idx];
2308 physical_id = dpm_entry->PhysicalIdentifier.High;
2309 et_entry->enclosure_id = (physical_id << 32) |
2310 dpm_entry->PhysicalIdentifier.Low;
2311 et_entry->start_index = dev_idx;
2312 et_entry->dpm_entry_num = entry_num;
2313 et_entry->num_slots = num_slots;
2314 et_entry->start_slot = slot_id;
2315 et_entry->missing_count = missing_cnt;
2316 et_entry->phy_bits = phy_bits;
2317
2318 /*
2319 * Initialize all entries for this enclosure in the
2320 * mapping table and mark them as reserved. The actual
2321 * devices have not been processed yet but when they are
2322 * they will use these entries. If an entry is found
2323 * that already has a valid DPM index, the mapping table
2324 * is corrupt. This can happen if the mapping type is
2325 * changed without clearing all of the DPM entries in
2326 * the controller.
2327 */
2328 mt_entry = &sc->mapping_table[dev_idx];
2329 for (map_idx = dev_idx; map_idx < (dev_idx + num_slots);
2330 map_idx++, mt_entry++) {
2331 if (mt_entry->dpm_entry_num !=
2332 MPR_DPM_BAD_IDX) {
2333 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING,
2334 "%s: Conflict in mapping table for "
2335 "enclosure %d device %d\n",
2336 __func__, enc_idx, map_idx);
2337 goto fail;
2338 }
2339 physical_id =
2340 dpm_entry->PhysicalIdentifier.High;
2341 mt_entry->physical_id = (physical_id << 32) |
2342 dpm_entry->PhysicalIdentifier.Low;
2343 mt_entry->phy_bits = phy_bits;
2344 mt_entry->id = dev_idx;
2345 mt_entry->dpm_entry_num = entry_num;
2346 mt_entry->missing_count = missing_cnt;
2347 mt_entry->device_info = MPR_DEV_RESERVED;
2348 }
2349 } else if ((ioc_pg8_flags &
2350 MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
2351 MPI2_IOCPAGE8_FLAGS_DEVICE_PERSISTENCE_MAPPING) {
2352 /*
2353 * Device mapping, so simply copy the DPM entries to the
2354 * mapping table, but check for a corrupt mapping table
2355 * (as described above in Enc/Slot mapping).
2356 */
2357 map_idx = dev_idx;
2358 mt_entry = &sc->mapping_table[map_idx];
2359 if (mt_entry->dpm_entry_num != MPR_DPM_BAD_IDX) {
2360 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
2361 "Conflict in mapping table for device %d\n",
2362 __func__, map_idx);
2363 goto fail;
2364 }
2365 physical_id = dpm_entry->PhysicalIdentifier.High;
2366 mt_entry->physical_id = (physical_id << 32) |
2367 dpm_entry->PhysicalIdentifier.Low;
2368 mt_entry->phy_bits = phy_bits;
2369 mt_entry->id = dev_idx;
2370 mt_entry->missing_count = missing_cnt;
2371 mt_entry->dpm_entry_num = entry_num;
2372 mt_entry->device_info = MPR_DEV_RESERVED;
2373 }
2374 } /*close the loop for DPM table */
2375 return;
2376
2377 fail:
2378 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
2379 "Wiping DPM to start from scratch\n", __func__);
2380 dpm_entry = (Mpi2DriverMap0Entry_t *) ((uint8_t *) sc->dpm_pg0 +
2381 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
2382 bzero(dpm_entry, sizeof(Mpi2DriverMap0Entry_t) * sc->max_dpm_entries);
2383 for (entry_num = 0; entry_num < sc->max_dpm_entries; entry_num++) {
2384 sc->dpm_flush_entry[entry_num] = 1;
2385 sc->dpm_entry_used[entry_num] = 0;
2386 /*
2387 * for IR firmware, it may be necessary to wipe out
2388 * sc->mapping_table volumes tooi
2389 */
2390 }
2391 _mapping_flush_dpm_pages(sc);
2392 for (enc_idx = 0; enc_idx < sc->num_enc_table_entries; enc_idx++)
2393 _mapping_clear_enc_entry(sc->enclosure_table + enc_idx);
2394 sc->num_enc_table_entries = 0;
2395 }
2396
2397 /*
2398 * mpr_mapping_check_devices - start of the day check for device availabilty
2399 * @sc: per adapter object
2400 *
2401 * Returns nothing.
2402 */
2403 void
mpr_mapping_check_devices(void * data)2404 mpr_mapping_check_devices(void *data)
2405 {
2406 u32 i;
2407 struct dev_mapping_table *mt_entry;
2408 struct mpr_softc *sc = (struct mpr_softc *)data;
2409 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
2410 struct enc_mapping_table *et_entry;
2411 u32 start_idx = 0, end_idx = 0;
2412 u8 stop_device_checks = 0;
2413
2414 MPR_FUNCTRACE(sc);
2415
2416 /*
2417 * Clear this flag so that this function is never called again except
2418 * within this function if the check needs to be done again. The
2419 * purpose is to check for missing devices that are currently in the
2420 * mapping table so do this only at driver init after discovery.
2421 */
2422 sc->track_mapping_events = 0;
2423
2424 /*
2425 * callout synchronization
2426 * This is used to prevent race conditions for the callout.
2427 */
2428 mpr_dprint(sc, MPR_MAPPING, "%s: Start check for missing devices.\n",
2429 __func__);
2430 mtx_assert(&sc->mpr_mtx, MA_OWNED);
2431 if ((callout_pending(&sc->device_check_callout)) ||
2432 (!callout_active(&sc->device_check_callout))) {
2433 mpr_dprint(sc, MPR_MAPPING, "%s: Device Check Callout is "
2434 "already pending or not active.\n", __func__);
2435 return;
2436 }
2437 callout_deactivate(&sc->device_check_callout);
2438
2439 /*
2440 * Use callout to check if any devices in the mapping table have been
2441 * processed yet. If ALL devices are marked as not init_complete, no
2442 * devices have been processed and mapped. Until devices are mapped
2443 * there's no reason to mark them as missing. Continue resetting this
2444 * callout until devices have been mapped.
2445 */
2446 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
2447 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
2448 et_entry = sc->enclosure_table;
2449 for (i = 0; i < sc->num_enc_table_entries; i++, et_entry++) {
2450 if (et_entry->init_complete) {
2451 stop_device_checks = 1;
2452 break;
2453 }
2454 }
2455 } else if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
2456 MPI2_IOCPAGE8_FLAGS_DEVICE_PERSISTENCE_MAPPING) {
2457 mt_entry = sc->mapping_table;
2458 for (i = 0; i < sc->max_devices; i++, mt_entry++) {
2459 if (mt_entry->init_complete) {
2460 stop_device_checks = 1;
2461 break;
2462 }
2463 }
2464 }
2465
2466 /*
2467 * Setup another callout check after a delay. Keep doing this until
2468 * devices are mapped.
2469 */
2470 if (!stop_device_checks) {
2471 mpr_dprint(sc, MPR_MAPPING, "%s: No devices have been mapped. "
2472 "Reset callout to check again after a %d second delay.\n",
2473 __func__, MPR_MISSING_CHECK_DELAY);
2474 callout_reset(&sc->device_check_callout,
2475 MPR_MISSING_CHECK_DELAY * hz, mpr_mapping_check_devices,
2476 sc);
2477 return;
2478 }
2479 mpr_dprint(sc, MPR_MAPPING, "%s: Device check complete.\n", __func__);
2480
2481 /*
2482 * Depending on the mapping type, check if devices have been processed
2483 * and update their missing counts if not processed.
2484 */
2485 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
2486 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING) {
2487 et_entry = sc->enclosure_table;
2488 for (i = 0; i < sc->num_enc_table_entries; i++, et_entry++) {
2489 if (!et_entry->init_complete) {
2490 if (et_entry->missing_count <
2491 MPR_MAX_MISSING_COUNT) {
2492 mpr_dprint(sc, MPR_MAPPING, "%s: "
2493 "Enclosure %d is missing from the "
2494 "topology. Update its missing "
2495 "count.\n", __func__, i);
2496 et_entry->missing_count++;
2497 if (et_entry->dpm_entry_num !=
2498 MPR_DPM_BAD_IDX) {
2499 _mapping_commit_enc_entry(sc,
2500 et_entry);
2501 }
2502 }
2503 et_entry->init_complete = 1;
2504 }
2505 }
2506 if (!sc->ir_firmware)
2507 return;
2508 _mapping_get_ir_maprange(sc, &start_idx, &end_idx);
2509 mt_entry = &sc->mapping_table[start_idx];
2510 } else if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) ==
2511 MPI2_IOCPAGE8_FLAGS_DEVICE_PERSISTENCE_MAPPING) {
2512 start_idx = 0;
2513 end_idx = sc->max_devices - 1;
2514 mt_entry = sc->mapping_table;
2515 }
2516
2517 /*
2518 * The start and end indices have been set above according to the
2519 * mapping type. Go through these mappings and update any entries that
2520 * do not have the init_complete flag set, which means they are missing.
2521 */
2522 if (end_idx == 0)
2523 return;
2524 for (i = start_idx; i < (end_idx + 1); i++, mt_entry++) {
2525 if (mt_entry->device_info & MPR_DEV_RESERVED
2526 && !mt_entry->physical_id)
2527 mt_entry->init_complete = 1;
2528 else if (mt_entry->device_info & MPR_DEV_RESERVED) {
2529 if (!mt_entry->init_complete) {
2530 mpr_dprint(sc, MPR_MAPPING, "%s: Device in "
2531 "mapping table at index %d is missing from "
2532 "topology. Update its missing count.\n",
2533 __func__, i);
2534 if (mt_entry->missing_count <
2535 MPR_MAX_MISSING_COUNT) {
2536 mt_entry->missing_count++;
2537 if (mt_entry->dpm_entry_num !=
2538 MPR_DPM_BAD_IDX) {
2539 _mapping_commit_map_entry(sc,
2540 mt_entry);
2541 }
2542 }
2543 mt_entry->init_complete = 1;
2544 }
2545 }
2546 }
2547 }
2548
2549 /**
2550 * mpr_mapping_initialize - initialize mapping tables
2551 * @sc: per adapter object
2552 *
2553 * Read controller persitant mapping tables into internal data area.
2554 *
2555 * Return 0 for success or non-zero for failure.
2556 */
2557 int
mpr_mapping_initialize(struct mpr_softc * sc)2558 mpr_mapping_initialize(struct mpr_softc *sc)
2559 {
2560 uint16_t volume_mapping_flags, dpm_pg0_sz;
2561 uint32_t i;
2562 Mpi2ConfigReply_t mpi_reply;
2563 int error;
2564 uint8_t retry_count;
2565 uint16_t ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
2566
2567 /* The additional 1 accounts for the virtual enclosure
2568 * created for the controller
2569 */
2570 sc->max_enclosures = sc->facts->MaxEnclosures + 1;
2571 sc->max_expanders = sc->facts->MaxSasExpanders;
2572 sc->max_volumes = sc->facts->MaxVolumes;
2573 sc->max_devices = sc->facts->MaxTargets + sc->max_volumes;
2574 sc->pending_map_events = 0;
2575 sc->num_enc_table_entries = 0;
2576 sc->num_rsvd_entries = 0;
2577 sc->max_dpm_entries = le16toh(sc->ioc_pg8.MaxPersistentEntries);
2578 sc->is_dpm_enable = (sc->max_dpm_entries) ? 1 : 0;
2579 sc->track_mapping_events = 0;
2580
2581 mpr_dprint(sc, MPR_MAPPING, "%s: Mapping table has a max of %d entries "
2582 "and DPM has a max of %d entries.\n", __func__, sc->max_devices,
2583 sc->max_dpm_entries);
2584
2585 if (ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_DISABLE_PERSISTENT_MAPPING)
2586 sc->is_dpm_enable = 0;
2587
2588 if (ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_RESERVED_TARGETID_0)
2589 sc->num_rsvd_entries = 1;
2590
2591 volume_mapping_flags = le16toh(sc->ioc_pg8.IRVolumeMappingFlags) &
2592 MPI2_IOCPAGE8_IRFLAGS_MASK_VOLUME_MAPPING_MODE;
2593 if (sc->ir_firmware && (volume_mapping_flags ==
2594 MPI2_IOCPAGE8_IRFLAGS_LOW_VOLUME_MAPPING))
2595 sc->num_rsvd_entries += sc->max_volumes;
2596
2597 error = mpr_mapping_allocate_memory(sc);
2598 if (error)
2599 return (error);
2600
2601 for (i = 0; i < sc->max_devices; i++)
2602 _mapping_clear_map_entry(sc->mapping_table + i);
2603
2604 for (i = 0; i < sc->max_enclosures; i++)
2605 _mapping_clear_enc_entry(sc->enclosure_table + i);
2606
2607 for (i = 0; i < sc->max_devices; i++) {
2608 sc->removal_table[i].dev_handle = 0;
2609 sc->removal_table[i].dpm_entry_num = MPR_DPM_BAD_IDX;
2610 }
2611
2612 memset(sc->dpm_entry_used, 0, sc->max_dpm_entries);
2613 memset(sc->dpm_flush_entry, 0, sc->max_dpm_entries);
2614
2615 if (sc->is_dpm_enable) {
2616 dpm_pg0_sz = sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER) +
2617 (sc->max_dpm_entries *
2618 sizeof(MPI2_CONFIG_PAGE_DRIVER_MAP0_ENTRY));
2619 retry_count = 0;
2620
2621 retry_read_dpm:
2622 if (mpr_config_get_dpm_pg0(sc, &mpi_reply, sc->dpm_pg0,
2623 dpm_pg0_sz)) {
2624 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: DPM page "
2625 "read failed.\n", __func__);
2626 if (retry_count < 3) {
2627 retry_count++;
2628 goto retry_read_dpm;
2629 }
2630 sc->is_dpm_enable = 0;
2631 }
2632 }
2633
2634 if (sc->is_dpm_enable)
2635 _mapping_process_dpm_pg0(sc);
2636 if (! sc->is_dpm_enable) {
2637 mpr_dprint(sc, MPR_MAPPING, "%s: DPM processing is disabled. "
2638 "Device mappings will not persist across reboots or "
2639 "resets.\n", __func__);
2640 }
2641
2642 sc->track_mapping_events = 1;
2643 return 0;
2644 }
2645
2646 /**
2647 * mpr_mapping_exit - clear mapping table and associated memory
2648 * @sc: per adapter object
2649 *
2650 * Returns nothing.
2651 */
2652 void
mpr_mapping_exit(struct mpr_softc * sc)2653 mpr_mapping_exit(struct mpr_softc *sc)
2654 {
2655 _mapping_flush_dpm_pages(sc);
2656 mpr_mapping_free_memory(sc);
2657 }
2658
2659 /**
2660 * mpr_mapping_get_tid - return the target id for sas device and handle
2661 * @sc: per adapter object
2662 * @sas_address: sas address of the device
2663 * @handle: device handle
2664 *
2665 * Returns valid target ID on success or BAD_ID.
2666 */
2667 unsigned int
mpr_mapping_get_tid(struct mpr_softc * sc,uint64_t sas_address,u16 handle)2668 mpr_mapping_get_tid(struct mpr_softc *sc, uint64_t sas_address, u16 handle)
2669 {
2670 u32 map_idx;
2671 struct dev_mapping_table *mt_entry;
2672
2673 for (map_idx = 0; map_idx < sc->max_devices; map_idx++) {
2674 mt_entry = &sc->mapping_table[map_idx];
2675 if (mt_entry->dev_handle == handle && mt_entry->physical_id ==
2676 sas_address)
2677 return mt_entry->id;
2678 }
2679
2680 return MPR_MAP_BAD_ID;
2681 }
2682
2683 /**
2684 * mpr_mapping_get_tid_from_handle - find a target id in mapping table using
2685 * only the dev handle. This is just a wrapper function for the local function
2686 * _mapping_get_mt_idx_from_handle.
2687 * @sc: per adapter object
2688 * @handle: device handle
2689 *
2690 * Returns valid target ID on success or BAD_ID.
2691 */
2692 unsigned int
mpr_mapping_get_tid_from_handle(struct mpr_softc * sc,u16 handle)2693 mpr_mapping_get_tid_from_handle(struct mpr_softc *sc, u16 handle)
2694 {
2695 return (_mapping_get_mt_idx_from_handle(sc, handle));
2696 }
2697
2698 /**
2699 * mpr_mapping_get_raid_tid - return the target id for raid device
2700 * @sc: per adapter object
2701 * @wwid: world wide identifier for raid volume
2702 * @volHandle: volume device handle
2703 *
2704 * Returns valid target ID on success or BAD_ID.
2705 */
2706 unsigned int
mpr_mapping_get_raid_tid(struct mpr_softc * sc,u64 wwid,u16 volHandle)2707 mpr_mapping_get_raid_tid(struct mpr_softc *sc, u64 wwid, u16 volHandle)
2708 {
2709 u32 start_idx, end_idx, map_idx;
2710 struct dev_mapping_table *mt_entry;
2711
2712 _mapping_get_ir_maprange(sc, &start_idx, &end_idx);
2713 mt_entry = &sc->mapping_table[start_idx];
2714 for (map_idx = start_idx; map_idx <= end_idx; map_idx++, mt_entry++) {
2715 if (mt_entry->dev_handle == volHandle &&
2716 mt_entry->physical_id == wwid)
2717 return mt_entry->id;
2718 }
2719
2720 return MPR_MAP_BAD_ID;
2721 }
2722
2723 /**
2724 * mpr_mapping_get_raid_tid_from_handle - find raid device in mapping table
2725 * using only the volume dev handle. This is just a wrapper function for the
2726 * local function _mapping_get_ir_mt_idx_from_handle.
2727 * @sc: per adapter object
2728 * @volHandle: volume device handle
2729 *
2730 * Returns valid target ID on success or BAD_ID.
2731 */
2732 unsigned int
mpr_mapping_get_raid_tid_from_handle(struct mpr_softc * sc,u16 volHandle)2733 mpr_mapping_get_raid_tid_from_handle(struct mpr_softc *sc, u16 volHandle)
2734 {
2735 return (_mapping_get_ir_mt_idx_from_handle(sc, volHandle));
2736 }
2737
2738 /**
2739 * mpr_mapping_enclosure_dev_status_change_event - handle enclosure events
2740 * @sc: per adapter object
2741 * @event_data: event data payload
2742 *
2743 * Return nothing.
2744 */
2745 void
mpr_mapping_enclosure_dev_status_change_event(struct mpr_softc * sc,Mpi2EventDataSasEnclDevStatusChange_t * event_data)2746 mpr_mapping_enclosure_dev_status_change_event(struct mpr_softc *sc,
2747 Mpi2EventDataSasEnclDevStatusChange_t *event_data)
2748 {
2749 u8 enc_idx, missing_count;
2750 struct enc_mapping_table *et_entry;
2751 Mpi2DriverMap0Entry_t *dpm_entry;
2752 u16 ioc_pg8_flags = le16toh(sc->ioc_pg8.Flags);
2753 u8 map_shift = MPI2_DRVMAP0_MAPINFO_SLOT_SHIFT;
2754 u8 update_phy_bits = 0;
2755 u32 saved_phy_bits;
2756 uint64_t temp64_var;
2757
2758 if ((ioc_pg8_flags & MPI2_IOCPAGE8_FLAGS_MASK_MAPPING_MODE) !=
2759 MPI2_IOCPAGE8_FLAGS_ENCLOSURE_SLOT_MAPPING)
2760 goto out;
2761
2762 dpm_entry = (Mpi2DriverMap0Entry_t *)((u8 *)sc->dpm_pg0 +
2763 sizeof(MPI2_CONFIG_EXTENDED_PAGE_HEADER));
2764
2765 if (event_data->ReasonCode == MPI2_EVENT_SAS_ENCL_RC_ADDED) {
2766 if (!event_data->NumSlots) {
2767 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: Enclosure "
2768 "with handle = 0x%x reported 0 slots.\n", __func__,
2769 le16toh(event_data->EnclosureHandle));
2770 goto out;
2771 }
2772 temp64_var = event_data->EnclosureLogicalID.High;
2773 temp64_var = (temp64_var << 32) |
2774 event_data->EnclosureLogicalID.Low;
2775 enc_idx = _mapping_get_enc_idx_from_id(sc, temp64_var,
2776 event_data->PhyBits);
2777
2778 /*
2779 * If the Added enclosure is already in the Enclosure Table,
2780 * make sure that all the enclosure info is up to date. If
2781 * the enclosure was missing and has just been added back, or if
2782 * the enclosure's Phy Bits have changed, clear the missing
2783 * count and update the Phy Bits in the mapping table and in the
2784 * DPM, if it's being used.
2785 */
2786 if (enc_idx != MPR_ENCTABLE_BAD_IDX) {
2787 u16 new_num_slots;
2788
2789 et_entry = &sc->enclosure_table[enc_idx];
2790 if (et_entry->init_complete &&
2791 !et_entry->missing_count) {
2792 mpr_dprint(sc, MPR_MAPPING, "%s: Enclosure %d "
2793 "is already present with handle = 0x%x\n",
2794 __func__, enc_idx, et_entry->enc_handle);
2795 goto out;
2796 }
2797 et_entry->enc_handle = le16toh(event_data->
2798 EnclosureHandle);
2799 et_entry->start_slot = le16toh(event_data->StartSlot);
2800 new_num_slots = le16toh(event_data->NumSlots);
2801 if (new_num_slots < sc->encl_min_slots) {
2802 mpr_dprint(sc, MPR_MAPPING, "%s: Enclosure %d num_slots %d, overriding with %d.\n",
2803 __func__, enc_idx, new_num_slots, sc->encl_min_slots);
2804 new_num_slots = sc->encl_min_slots;
2805 }
2806 if (et_entry->num_slots != new_num_slots) {
2807 mpr_dprint(sc, MPR_MAPPING, "%s: Enclosure %d old num_slots %d, new %d.\n",
2808 __func__, enc_idx, et_entry->num_slots, sc->encl_min_slots);
2809 et_entry->num_slots = new_num_slots;
2810 }
2811 saved_phy_bits = et_entry->phy_bits;
2812 et_entry->phy_bits |= le32toh(event_data->PhyBits);
2813 if (saved_phy_bits != et_entry->phy_bits)
2814 update_phy_bits = 1;
2815 if (et_entry->missing_count || update_phy_bits) {
2816 et_entry->missing_count = 0;
2817 if (sc->is_dpm_enable &&
2818 et_entry->dpm_entry_num !=
2819 MPR_DPM_BAD_IDX) {
2820 dpm_entry += et_entry->dpm_entry_num;
2821 missing_count =
2822 (u8)(dpm_entry->MappingInformation &
2823 MPI2_DRVMAP0_MAPINFO_MISSING_MASK);
2824 if (missing_count || update_phy_bits) {
2825 dpm_entry->MappingInformation
2826 = et_entry->num_slots;
2827 dpm_entry->MappingInformation
2828 <<= map_shift;
2829 dpm_entry->PhysicalBitsMapping
2830 = et_entry->phy_bits;
2831 sc->dpm_flush_entry[et_entry->
2832 dpm_entry_num] = 1;
2833 }
2834 }
2835 }
2836 } else {
2837 /*
2838 * This is a new enclosure that is being added.
2839 * Initialize the Enclosure Table entry. It will be
2840 * finalized when a device is added for the enclosure
2841 * and the enclosure has enough space in the Mapping
2842 * Table to map its devices.
2843 */
2844 if (sc->num_enc_table_entries < sc->max_enclosures) {
2845 enc_idx = sc->num_enc_table_entries;
2846 sc->num_enc_table_entries++;
2847 } else {
2848 enc_idx = _mapping_get_high_missing_et_idx(sc);
2849 if (enc_idx != MPR_ENCTABLE_BAD_IDX) {
2850 et_entry = &sc->enclosure_table[enc_idx];
2851 _mapping_add_to_removal_table(sc,
2852 et_entry->dpm_entry_num);
2853 _mapping_clear_enc_entry(et_entry);
2854 }
2855 }
2856 if (enc_idx == MPR_ENCTABLE_BAD_IDX) {
2857 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: "
2858 "Enclosure cannot be added to mapping "
2859 "table because it's full.\n", __func__);
2860 goto out;
2861 }
2862 et_entry = &sc->enclosure_table[enc_idx];
2863 et_entry->enc_handle = le16toh(event_data->
2864 EnclosureHandle);
2865 et_entry->enclosure_id = le64toh(event_data->
2866 EnclosureLogicalID.High);
2867 et_entry->enclosure_id =
2868 ((et_entry->enclosure_id << 32) |
2869 le64toh(event_data->EnclosureLogicalID.Low));
2870 et_entry->start_index = MPR_MAPTABLE_BAD_IDX;
2871 et_entry->dpm_entry_num = MPR_DPM_BAD_IDX;
2872 et_entry->num_slots = le16toh(event_data->NumSlots);
2873 if (et_entry->num_slots < sc->encl_min_slots) {
2874 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: Enclosure %d num_slots is %d, overriding with %d.\n",
2875 __func__, enc_idx, et_entry->num_slots, sc->encl_min_slots);
2876 et_entry->num_slots = sc->encl_min_slots;
2877 }
2878 et_entry->start_slot = le16toh(event_data->StartSlot);
2879 et_entry->phy_bits = le32toh(event_data->PhyBits);
2880 }
2881 et_entry->init_complete = 1;
2882 } else if (event_data->ReasonCode ==
2883 MPI2_EVENT_SAS_ENCL_RC_NOT_RESPONDING) {
2884 /*
2885 * An enclosure was removed. Update its missing count and then
2886 * update the DPM entry with the new missing count for the
2887 * enclosure.
2888 */
2889 enc_idx = _mapping_get_enc_idx_from_handle(sc,
2890 le16toh(event_data->EnclosureHandle));
2891 if (enc_idx == MPR_ENCTABLE_BAD_IDX) {
2892 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING, "%s: Cannot "
2893 "unmap enclosure with handle 0x%04x because it "
2894 "has already been deleted.\n", __func__,
2895 le16toh(event_data->EnclosureHandle));
2896 goto out;
2897 }
2898 et_entry = &sc->enclosure_table[enc_idx];
2899 if (et_entry->missing_count < MPR_MAX_MISSING_COUNT)
2900 et_entry->missing_count++;
2901 if (sc->is_dpm_enable &&
2902 et_entry->dpm_entry_num != MPR_DPM_BAD_IDX) {
2903 dpm_entry += et_entry->dpm_entry_num;
2904 dpm_entry->MappingInformation = et_entry->num_slots;
2905 dpm_entry->MappingInformation <<= map_shift;
2906 dpm_entry->MappingInformation |=
2907 et_entry->missing_count;
2908 sc->dpm_flush_entry[et_entry->dpm_entry_num] = 1;
2909 }
2910 et_entry->init_complete = 1;
2911 }
2912
2913 out:
2914 _mapping_flush_dpm_pages(sc);
2915 if (sc->pending_map_events)
2916 sc->pending_map_events--;
2917 }
2918
2919 /**
2920 * mpr_mapping_topology_change_event - handle topology change events
2921 * @sc: per adapter object
2922 * @event_data: event data payload
2923 *
2924 * Returns nothing.
2925 */
2926 void
mpr_mapping_topology_change_event(struct mpr_softc * sc,Mpi2EventDataSasTopologyChangeList_t * event_data)2927 mpr_mapping_topology_change_event(struct mpr_softc *sc,
2928 Mpi2EventDataSasTopologyChangeList_t *event_data)
2929 {
2930 struct _map_topology_change topo_change;
2931 struct _map_phy_change *phy_change;
2932 Mpi2EventSasTopoPhyEntry_t *event_phy_change;
2933 u8 i, num_entries;
2934
2935 topo_change.enc_handle = le16toh(event_data->EnclosureHandle);
2936 topo_change.exp_handle = le16toh(event_data->ExpanderDevHandle);
2937 num_entries = event_data->NumEntries;
2938 topo_change.num_entries = num_entries;
2939 topo_change.start_phy_num = event_data->StartPhyNum;
2940 topo_change.num_phys = event_data->NumPhys;
2941 topo_change.exp_status = event_data->ExpStatus;
2942 event_phy_change = event_data->PHY;
2943 topo_change.phy_details = NULL;
2944
2945 if (!num_entries)
2946 goto out;
2947 phy_change = malloc(sizeof(struct _map_phy_change) * num_entries,
2948 M_MPR, M_NOWAIT|M_ZERO);
2949 topo_change.phy_details = phy_change;
2950 if (!phy_change)
2951 goto out;
2952 for (i = 0; i < num_entries; i++, event_phy_change++, phy_change++) {
2953 phy_change->dev_handle = le16toh(event_phy_change->
2954 AttachedDevHandle);
2955 phy_change->reason = event_phy_change->PhyStatus &
2956 MPI2_EVENT_SAS_TOPO_RC_MASK;
2957 }
2958 _mapping_update_missing_count(sc, &topo_change);
2959 _mapping_get_dev_info(sc, &topo_change);
2960 _mapping_clear_removed_entries(sc);
2961 _mapping_add_new_device(sc, &topo_change);
2962
2963 out:
2964 free(topo_change.phy_details, M_MPR);
2965 _mapping_flush_dpm_pages(sc);
2966 if (sc->pending_map_events)
2967 sc->pending_map_events--;
2968 }
2969
2970 /**
2971 * mpr_mapping_pcie_topology_change_event - handle PCIe topology change events
2972 * @sc: per adapter object
2973 * @event_data: event data payload
2974 *
2975 * Returns nothing.
2976 */
2977 void
mpr_mapping_pcie_topology_change_event(struct mpr_softc * sc,Mpi26EventDataPCIeTopologyChangeList_t * event_data)2978 mpr_mapping_pcie_topology_change_event(struct mpr_softc *sc,
2979 Mpi26EventDataPCIeTopologyChangeList_t *event_data)
2980 {
2981 struct _map_pcie_topology_change topo_change;
2982 struct _map_port_change *port_change;
2983 Mpi26EventPCIeTopoPortEntry_t *event_port_change;
2984 u8 i, num_entries;
2985
2986 topo_change.switch_dev_handle = le16toh(event_data->SwitchDevHandle);
2987 topo_change.enc_handle = le16toh(event_data->EnclosureHandle);
2988 num_entries = event_data->NumEntries;
2989 topo_change.num_entries = num_entries;
2990 topo_change.start_port_num = event_data->StartPortNum;
2991 topo_change.num_ports = event_data->NumPorts;
2992 topo_change.switch_status = event_data->SwitchStatus;
2993 event_port_change = event_data->PortEntry;
2994 topo_change.port_details = NULL;
2995
2996 if (!num_entries)
2997 goto out;
2998 port_change = malloc(sizeof(struct _map_port_change) * num_entries,
2999 M_MPR, M_NOWAIT|M_ZERO);
3000 topo_change.port_details = port_change;
3001 if (!port_change)
3002 goto out;
3003 for (i = 0; i < num_entries; i++, event_port_change++, port_change++) {
3004 port_change->dev_handle = le16toh(event_port_change->
3005 AttachedDevHandle);
3006 port_change->reason = event_port_change->PortStatus;
3007 }
3008 _mapping_update_pcie_missing_count(sc, &topo_change);
3009 _mapping_get_pcie_dev_info(sc, &topo_change);
3010 _mapping_clear_removed_entries(sc);
3011 _mapping_add_new_pcie_device(sc, &topo_change);
3012
3013 out:
3014 free(topo_change.port_details, M_MPR);
3015 _mapping_flush_dpm_pages(sc);
3016 if (sc->pending_map_events)
3017 sc->pending_map_events--;
3018 }
3019
3020 /**
3021 * mpr_mapping_ir_config_change_event - handle IR config change list events
3022 * @sc: per adapter object
3023 * @event_data: event data payload
3024 *
3025 * Returns nothing.
3026 */
3027 void
mpr_mapping_ir_config_change_event(struct mpr_softc * sc,Mpi2EventDataIrConfigChangeList_t * event_data)3028 mpr_mapping_ir_config_change_event(struct mpr_softc *sc,
3029 Mpi2EventDataIrConfigChangeList_t *event_data)
3030 {
3031 Mpi2EventIrConfigElement_t *element;
3032 int i;
3033 u64 *wwid_table;
3034 u32 map_idx, flags;
3035 struct dev_mapping_table *mt_entry;
3036 u16 element_flags;
3037
3038 wwid_table = malloc(sizeof(u64) * event_data->NumElements, M_MPR,
3039 M_NOWAIT | M_ZERO);
3040 if (!wwid_table)
3041 goto out;
3042 element = (Mpi2EventIrConfigElement_t *)&event_data->ConfigElement[0];
3043 flags = le32toh(event_data->Flags);
3044
3045 /*
3046 * For volume changes, get the WWID for the volume and put it in a
3047 * table to be used in the processing of the IR change event.
3048 */
3049 for (i = 0; i < event_data->NumElements; i++, element++) {
3050 element_flags = le16toh(element->ElementFlags);
3051 if ((element->ReasonCode != MPI2_EVENT_IR_CHANGE_RC_ADDED) &&
3052 (element->ReasonCode != MPI2_EVENT_IR_CHANGE_RC_REMOVED) &&
3053 (element->ReasonCode != MPI2_EVENT_IR_CHANGE_RC_NO_CHANGE)
3054 && (element->ReasonCode !=
3055 MPI2_EVENT_IR_CHANGE_RC_VOLUME_CREATED))
3056 continue;
3057 if ((element_flags &
3058 MPI2_EVENT_IR_CHANGE_EFLAGS_ELEMENT_TYPE_MASK) ==
3059 MPI2_EVENT_IR_CHANGE_EFLAGS_VOLUME_ELEMENT) {
3060 mpr_config_get_volume_wwid(sc,
3061 le16toh(element->VolDevHandle), &wwid_table[i]);
3062 }
3063 }
3064
3065 /*
3066 * Check the ReasonCode for each element in the IR event and Add/Remove
3067 * Volumes or Physical Disks of Volumes to/from the mapping table. Use
3068 * the WWIDs gotten above in wwid_table.
3069 */
3070 if (flags == MPI2_EVENT_IR_CHANGE_FLAGS_FOREIGN_CONFIG)
3071 goto out;
3072 else {
3073 element = (Mpi2EventIrConfigElement_t *)&event_data->
3074 ConfigElement[0];
3075 for (i = 0; i < event_data->NumElements; i++, element++) {
3076 if (element->ReasonCode ==
3077 MPI2_EVENT_IR_CHANGE_RC_ADDED ||
3078 element->ReasonCode ==
3079 MPI2_EVENT_IR_CHANGE_RC_VOLUME_CREATED) {
3080 map_idx = _mapping_get_ir_mt_idx_from_wwid
3081 (sc, wwid_table[i]);
3082 if (map_idx != MPR_MAPTABLE_BAD_IDX) {
3083 /*
3084 * The volume is already in the mapping
3085 * table. Just update it's info.
3086 */
3087 mt_entry = &sc->mapping_table[map_idx];
3088 mt_entry->id = map_idx;
3089 mt_entry->dev_handle = le16toh
3090 (element->VolDevHandle);
3091 mt_entry->device_info =
3092 MPR_DEV_RESERVED | MPR_MAP_IN_USE;
3093 _mapping_update_ir_missing_cnt(sc,
3094 map_idx, element, wwid_table[i]);
3095 continue;
3096 }
3097
3098 /*
3099 * Volume is not in mapping table yet. Find a
3100 * free entry in the mapping table at the
3101 * volume mapping locations. If no entries are
3102 * available, this is an error because it means
3103 * there are more volumes than can be mapped
3104 * and that should never happen for volumes.
3105 */
3106 map_idx = _mapping_get_free_ir_mt_idx(sc);
3107 if (map_idx == MPR_MAPTABLE_BAD_IDX)
3108 {
3109 mpr_dprint(sc, MPR_ERROR | MPR_MAPPING,
3110 "%s: failed to add the volume with "
3111 "handle 0x%04x because there is no "
3112 "free space available in the "
3113 "mapping table\n", __func__,
3114 le16toh(element->VolDevHandle));
3115 continue;
3116 }
3117 mt_entry = &sc->mapping_table[map_idx];
3118 mt_entry->physical_id = wwid_table[i];
3119 mt_entry->id = map_idx;
3120 mt_entry->dev_handle = le16toh(element->
3121 VolDevHandle);
3122 mt_entry->device_info = MPR_DEV_RESERVED |
3123 MPR_MAP_IN_USE;
3124 _mapping_update_ir_missing_cnt(sc, map_idx,
3125 element, wwid_table[i]);
3126 } else if (element->ReasonCode ==
3127 MPI2_EVENT_IR_CHANGE_RC_REMOVED) {
3128 map_idx = _mapping_get_ir_mt_idx_from_wwid(sc,
3129 wwid_table[i]);
3130 if (map_idx == MPR_MAPTABLE_BAD_IDX) {
3131 mpr_dprint(sc, MPR_MAPPING,"%s: Failed "
3132 "to remove a volume because it has "
3133 "already been removed.\n",
3134 __func__);
3135 continue;
3136 }
3137 _mapping_update_ir_missing_cnt(sc, map_idx,
3138 element, wwid_table[i]);
3139 } else if (element->ReasonCode ==
3140 MPI2_EVENT_IR_CHANGE_RC_VOLUME_DELETED) {
3141 map_idx = _mapping_get_mt_idx_from_handle(sc,
3142 le16toh(element->VolDevHandle));
3143 if (map_idx == MPR_MAPTABLE_BAD_IDX) {
3144 mpr_dprint(sc, MPR_MAPPING,"%s: Failed "
3145 "to remove volume with handle "
3146 "0x%04x because it has already "
3147 "been removed.\n", __func__,
3148 le16toh(element->VolDevHandle));
3149 continue;
3150 }
3151 mt_entry = &sc->mapping_table[map_idx];
3152 _mapping_update_ir_missing_cnt(sc, map_idx,
3153 element, mt_entry->physical_id);
3154 }
3155 }
3156 }
3157
3158 out:
3159 _mapping_flush_dpm_pages(sc);
3160 free(wwid_table, M_MPR);
3161 if (sc->pending_map_events)
3162 sc->pending_map_events--;
3163 }
3164