blob: 53fa96ae2b3e91b0a982f15afcae5342087951b5 [file] [log] [blame]
adam radford9c915a82010-12-21 13:34:31 -08001/*
2 * Linux MegaRAID driver for SAS based RAID controllers
3 *
4 * Copyright (c) 2009-2011 LSI Corporation.
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version 2
9 * of the License, or (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 *
20 * FILE: megaraid_sas_fp.c
21 *
22 * Authors: LSI Corporation
23 * Sumant Patro
24 * Varad Talamacki
25 * Manoj Jose
26 *
27 * Send feedback to: <megaraidlinux@lsi.com>
28 *
29 * Mail to: LSI Corporation, 1621 Barber Lane, Milpitas, CA 95035
30 * ATTN: Linuxraid
31 */
32
33#include <linux/kernel.h>
34#include <linux/types.h>
35#include <linux/pci.h>
36#include <linux/list.h>
37#include <linux/moduleparam.h>
38#include <linux/module.h>
39#include <linux/spinlock.h>
40#include <linux/interrupt.h>
41#include <linux/delay.h>
42#include <linux/smp_lock.h>
43#include <linux/uio.h>
44#include <linux/uaccess.h>
45#include <linux/fs.h>
46#include <linux/compat.h>
47#include <linux/blkdev.h>
48#include <linux/poll.h>
49
50#include <scsi/scsi.h>
51#include <scsi/scsi_cmnd.h>
52#include <scsi/scsi_device.h>
53#include <scsi/scsi_host.h>
54
55#include "megaraid_sas_fusion.h"
56#include <asm/div64.h>
57
58#define ABS_DIFF(a, b) (((a) > (b)) ? ((a) - (b)) : ((b) - (a)))
59#define MR_LD_STATE_OPTIMAL 3
60#define FALSE 0
61#define TRUE 1
62
63/* Prototypes */
64void
65mr_update_load_balance_params(struct MR_FW_RAID_MAP_ALL *map,
66 struct LD_LOAD_BALANCE_INFO *lbInfo);
67
68u32 mega_mod64(u64 dividend, u32 divisor)
69{
70 u64 d;
71 u32 remainder;
72
73 if (!divisor)
74 printk(KERN_ERR "megasas : DIVISOR is zero, in div fn\n");
75 d = dividend;
76 remainder = do_div(d, divisor);
77 return remainder;
78}
79
80/**
81 * @param dividend : Dividend
82 * @param divisor : Divisor
83 *
84 * @return quotient
85 **/
86u64 mega_div64_32(uint64_t dividend, uint32_t divisor)
87{
88 u32 remainder;
89 u64 d;
90
91 if (!divisor)
92 printk(KERN_ERR "megasas : DIVISOR is zero in mod fn\n");
93
94 d = dividend;
95 remainder = do_div(d, divisor);
96
97 return d;
98}
99
100struct MR_LD_RAID *MR_LdRaidGet(u32 ld, struct MR_FW_RAID_MAP_ALL *map)
101{
102 return &map->raidMap.ldSpanMap[ld].ldRaid;
103}
104
105static struct MR_SPAN_BLOCK_INFO *MR_LdSpanInfoGet(u32 ld,
106 struct MR_FW_RAID_MAP_ALL
107 *map)
108{
109 return &map->raidMap.ldSpanMap[ld].spanBlock[0];
110}
111
112static u8 MR_LdDataArmGet(u32 ld, u32 armIdx, struct MR_FW_RAID_MAP_ALL *map)
113{
114 return map->raidMap.ldSpanMap[ld].dataArmMap[armIdx];
115}
116
117static u16 MR_ArPdGet(u32 ar, u32 arm, struct MR_FW_RAID_MAP_ALL *map)
118{
119 return map->raidMap.arMapInfo[ar].pd[arm];
120}
121
122static u16 MR_LdSpanArrayGet(u32 ld, u32 span, struct MR_FW_RAID_MAP_ALL *map)
123{
124 return map->raidMap.ldSpanMap[ld].spanBlock[span].span.arrayRef;
125}
126
127static u16 MR_PdDevHandleGet(u32 pd, struct MR_FW_RAID_MAP_ALL *map)
128{
129 return map->raidMap.devHndlInfo[pd].curDevHdl;
130}
131
132u16 MR_GetLDTgtId(u32 ld, struct MR_FW_RAID_MAP_ALL *map)
133{
134 return map->raidMap.ldSpanMap[ld].ldRaid.targetId;
135}
136
137u16 MR_TargetIdToLdGet(u32 ldTgtId, struct MR_FW_RAID_MAP_ALL *map)
138{
139 return map->raidMap.ldTgtIdToLd[ldTgtId];
140}
141
142static struct MR_LD_SPAN *MR_LdSpanPtrGet(u32 ld, u32 span,
143 struct MR_FW_RAID_MAP_ALL *map)
144{
145 return &map->raidMap.ldSpanMap[ld].spanBlock[span].span;
146}
147
148/*
149 * This function will validate Map info data provided by FW
150 */
151u8 MR_ValidateMapInfo(struct MR_FW_RAID_MAP_ALL *map,
152 struct LD_LOAD_BALANCE_INFO *lbInfo)
153{
154 struct MR_FW_RAID_MAP *pFwRaidMap = &map->raidMap;
155
156 if (pFwRaidMap->totalSize !=
157 (sizeof(struct MR_FW_RAID_MAP) -sizeof(struct MR_LD_SPAN_MAP) +
158 (sizeof(struct MR_LD_SPAN_MAP) *pFwRaidMap->ldCount))) {
159 printk(KERN_ERR "megasas: map info structure size 0x%x is not matching with ld count\n",
160 (unsigned int)((sizeof(struct MR_FW_RAID_MAP) -
161 sizeof(struct MR_LD_SPAN_MAP)) +
162 (sizeof(struct MR_LD_SPAN_MAP) *
163 pFwRaidMap->ldCount)));
164 printk(KERN_ERR "megasas: span map %x, pFwRaidMap->totalSize "
165 ": %x\n", (unsigned int)sizeof(struct MR_LD_SPAN_MAP),
166 pFwRaidMap->totalSize);
167 return 0;
168 }
169
170 mr_update_load_balance_params(map, lbInfo);
171
172 return 1;
173}
174
175u32 MR_GetSpanBlock(u32 ld, u64 row, u64 *span_blk,
176 struct MR_FW_RAID_MAP_ALL *map, int *div_error)
177{
178 struct MR_SPAN_BLOCK_INFO *pSpanBlock = MR_LdSpanInfoGet(ld, map);
179 struct MR_QUAD_ELEMENT *quad;
180 struct MR_LD_RAID *raid = MR_LdRaidGet(ld, map);
181 u32 span, j;
182
183 for (span = 0; span < raid->spanDepth; span++, pSpanBlock++) {
184
185 for (j = 0; j < pSpanBlock->block_span_info.noElements; j++) {
186 quad = &pSpanBlock->block_span_info.quad[j];
187
188 if (quad->diff == 0) {
189 *div_error = 1;
190 return span;
191 }
192 if (quad->logStart <= row && row <= quad->logEnd &&
193 (mega_mod64(row-quad->logStart, quad->diff)) == 0) {
194 if (span_blk != NULL) {
195 u64 blk, debugBlk;
196 blk =
197 mega_div64_32(
198 (row-quad->logStart),
199 quad->diff);
200 debugBlk = blk;
201
202 blk = (blk + quad->offsetInSpan) <<
203 raid->stripeShift;
204 *span_blk = blk;
205 }
206 return span;
207 }
208 }
209 }
210 return span;
211}
212
213/*
214******************************************************************************
215*
216* This routine calculates the arm, span and block for the specified stripe and
217* reference in stripe.
218*
219* Inputs :
220*
221* ld - Logical drive number
222* stripRow - Stripe number
223* stripRef - Reference in stripe
224*
225* Outputs :
226*
227* span - Span number
228* block - Absolute Block number in the physical disk
229*/
230u8 MR_GetPhyParams(u32 ld, u64 stripRow, u16 stripRef, u64 *pdBlock,
231 u16 *pDevHandle, struct RAID_CONTEXT *pRAID_Context,
232 struct MR_FW_RAID_MAP_ALL *map)
233{
234 struct MR_LD_RAID *raid = MR_LdRaidGet(ld, map);
235 u32 pd, arRef;
236 u8 physArm, span;
237 u64 row;
238 u8 retval = TRUE;
239 int error_code = 0;
240
241 row = mega_div64_32(stripRow, raid->rowDataSize);
242
243 if (raid->level == 6) {
244 /* logical arm within row */
245 u32 logArm = mega_mod64(stripRow, raid->rowDataSize);
246 u32 rowMod, armQ, arm;
247
248 if (raid->rowSize == 0)
249 return FALSE;
250 /* get logical row mod */
251 rowMod = mega_mod64(row, raid->rowSize);
252 armQ = raid->rowSize-1-rowMod; /* index of Q drive */
253 arm = armQ+1+logArm; /* data always logically follows Q */
254 if (arm >= raid->rowSize) /* handle wrap condition */
255 arm -= raid->rowSize;
256 physArm = (u8)arm;
257 } else {
258 if (raid->modFactor == 0)
259 return FALSE;
260 physArm = MR_LdDataArmGet(ld, mega_mod64(stripRow,
261 raid->modFactor),
262 map);
263 }
264
265 if (raid->spanDepth == 1) {
266 span = 0;
267 *pdBlock = row << raid->stripeShift;
268 } else {
269 span = (u8)MR_GetSpanBlock(ld, row, pdBlock, map, &error_code);
270 if (error_code == 1)
271 return FALSE;
272 }
273
274 /* Get the array on which this span is present */
275 arRef = MR_LdSpanArrayGet(ld, span, map);
276 pd = MR_ArPdGet(arRef, physArm, map); /* Get the pd */
277
278 if (pd != MR_PD_INVALID)
279 /* Get dev handle from Pd. */
280 *pDevHandle = MR_PdDevHandleGet(pd, map);
281 else {
282 *pDevHandle = MR_PD_INVALID; /* set dev handle as invalid. */
283 if (raid->level >= 5)
284 pRAID_Context->regLockFlags = REGION_TYPE_EXCLUSIVE;
285 else if (raid->level == 1) {
286 /* Get alternate Pd. */
287 pd = MR_ArPdGet(arRef, physArm + 1, map);
288 if (pd != MR_PD_INVALID)
289 /* Get dev handle from Pd */
290 *pDevHandle = MR_PdDevHandleGet(pd, map);
291 }
292 retval = FALSE;
293 }
294
295 *pdBlock += stripRef + MR_LdSpanPtrGet(ld, span, map)->startBlk;
296 pRAID_Context->spanArm = (span << RAID_CTX_SPANARM_SPAN_SHIFT) |
297 physArm;
298 return retval;
299}
300
301/*
302******************************************************************************
303*
304* MR_BuildRaidContext function
305*
306* This function will initiate command processing. The start/end row and strip
307* information is calculated then the lock is acquired.
308* This function will return 0 if region lock was acquired OR return num strips
309*/
310u8
311MR_BuildRaidContext(struct IO_REQUEST_INFO *io_info,
312 struct RAID_CONTEXT *pRAID_Context,
313 struct MR_FW_RAID_MAP_ALL *map)
314{
315 struct MR_LD_RAID *raid;
316 u32 ld, stripSize, stripe_mask;
317 u64 endLba, endStrip, endRow, start_row, start_strip;
318 u64 regStart;
319 u32 regSize;
320 u8 num_strips, numRows;
321 u16 ref_in_start_stripe, ref_in_end_stripe;
322 u64 ldStartBlock;
323 u32 numBlocks, ldTgtId;
324 u8 isRead;
325 u8 retval = 0;
326
327 ldStartBlock = io_info->ldStartBlock;
328 numBlocks = io_info->numBlocks;
329 ldTgtId = io_info->ldTgtId;
330 isRead = io_info->isRead;
331
332 ld = MR_TargetIdToLdGet(ldTgtId, map);
333 raid = MR_LdRaidGet(ld, map);
334
335 stripSize = 1 << raid->stripeShift;
336 stripe_mask = stripSize-1;
337 /*
338 * calculate starting row and stripe, and number of strips and rows
339 */
340 start_strip = ldStartBlock >> raid->stripeShift;
341 ref_in_start_stripe = (u16)(ldStartBlock & stripe_mask);
342 endLba = ldStartBlock + numBlocks - 1;
343 ref_in_end_stripe = (u16)(endLba & stripe_mask);
344 endStrip = endLba >> raid->stripeShift;
345 num_strips = (u8)(endStrip - start_strip + 1); /* End strip */
346 if (raid->rowDataSize == 0)
347 return FALSE;
348 start_row = mega_div64_32(start_strip, raid->rowDataSize);
349 endRow = mega_div64_32(endStrip, raid->rowDataSize);
350 numRows = (u8)(endRow - start_row + 1);
351
352 /*
353 * calculate region info.
354 */
355
356 /* assume region is at the start of the first row */
357 regStart = start_row << raid->stripeShift;
358 /* assume this IO needs the full row - we'll adjust if not true */
359 regSize = stripSize;
360
361 /* If IO spans more than 1 strip, fp is not possible
362 FP is not possible for writes on non-0 raid levels
363 FP is not possible if LD is not capable */
364 if (num_strips > 1 || (!isRead && raid->level != 0) ||
365 !raid->capability.fpCapable) {
366 io_info->fpOkForIo = FALSE;
367 } else {
368 io_info->fpOkForIo = TRUE;
369 }
370
371 if (numRows == 1) {
372 /* single-strip IOs can always lock only the data needed */
373 if (num_strips == 1) {
374 regStart += ref_in_start_stripe;
375 regSize = numBlocks;
376 }
377 /* multi-strip IOs always need to full stripe locked */
378 } else {
379 if (start_strip == (start_row + 1) * raid->rowDataSize - 1) {
380 /* If the start strip is the last in the start row */
381 regStart += ref_in_start_stripe;
382 regSize = stripSize - ref_in_start_stripe;
383 /* initialize count to sectors from startref to end
384 of strip */
385 }
386
387 if (numRows > 2)
388 /* Add complete rows in the middle of the transfer */
389 regSize += (numRows-2) << raid->stripeShift;
390
391 /* if IO ends within first strip of last row */
392 if (endStrip == endRow*raid->rowDataSize)
393 regSize += ref_in_end_stripe+1;
394 else
395 regSize += stripSize;
396 }
397
398 pRAID_Context->timeoutValue = map->raidMap.fpPdIoTimeoutSec;
399 pRAID_Context->regLockFlags = (isRead) ? REGION_TYPE_SHARED_READ :
400 raid->regTypeReqOnWrite;
401 pRAID_Context->VirtualDiskTgtId = raid->targetId;
402 pRAID_Context->regLockRowLBA = regStart;
403 pRAID_Context->regLockLength = regSize;
404 pRAID_Context->configSeqNum = raid->seqNum;
405
406 /*Get Phy Params only if FP capable, or else leave it to MR firmware
407 to do the calculation.*/
408 if (io_info->fpOkForIo) {
409 retval = MR_GetPhyParams(ld, start_strip, ref_in_start_stripe,
410 &io_info->pdBlock,
411 &io_info->devHandle, pRAID_Context,
412 map);
413 /* If IO on an invalid Pd, then FP i snot possible */
414 if (io_info->devHandle == MR_PD_INVALID)
415 io_info->fpOkForIo = FALSE;
416 return retval;
417 } else if (isRead) {
418 uint stripIdx;
419 for (stripIdx = 0; stripIdx < num_strips; stripIdx++) {
420 if (!MR_GetPhyParams(ld, start_strip + stripIdx,
421 ref_in_start_stripe,
422 &io_info->pdBlock,
423 &io_info->devHandle,
424 pRAID_Context, map))
425 return TRUE;
426 }
427 }
428 return TRUE;
429}
430
431void
432mr_update_load_balance_params(struct MR_FW_RAID_MAP_ALL *map,
433 struct LD_LOAD_BALANCE_INFO *lbInfo)
434{
435 int ldCount;
436 u16 ld;
437 struct MR_LD_RAID *raid;
438
439 for (ldCount = 0; ldCount < MAX_LOGICAL_DRIVES; ldCount++) {
440 ld = MR_TargetIdToLdGet(ldCount, map);
441 if (ld >= MAX_LOGICAL_DRIVES) {
442 lbInfo[ldCount].loadBalanceFlag = 0;
443 continue;
444 }
445
446 raid = MR_LdRaidGet(ld, map);
447
448 /* Two drive Optimal RAID 1 */
449 if ((raid->level == 1) && (raid->rowSize == 2) &&
450 (raid->spanDepth == 1) && raid->ldState ==
451 MR_LD_STATE_OPTIMAL) {
452 u32 pd, arRef;
453
454 lbInfo[ldCount].loadBalanceFlag = 1;
455
456 /* Get the array on which this span is present */
457 arRef = MR_LdSpanArrayGet(ld, 0, map);
458
459 /* Get the Pd */
460 pd = MR_ArPdGet(arRef, 0, map);
461 /* Get dev handle from Pd */
462 lbInfo[ldCount].raid1DevHandle[0] =
463 MR_PdDevHandleGet(pd, map);
464 /* Get the Pd */
465 pd = MR_ArPdGet(arRef, 1, map);
466
467 /* Get the dev handle from Pd */
468 lbInfo[ldCount].raid1DevHandle[1] =
469 MR_PdDevHandleGet(pd, map);
470 } else
471 lbInfo[ldCount].loadBalanceFlag = 0;
472 }
473}
474
475u8 megasas_get_best_arm(struct LD_LOAD_BALANCE_INFO *lbInfo, u8 arm, u64 block,
476 u32 count)
477{
478 u16 pend0, pend1;
479 u64 diff0, diff1;
480 u8 bestArm;
481
482 /* get the pending cmds for the data and mirror arms */
483 pend0 = atomic_read(&lbInfo->scsi_pending_cmds[0]);
484 pend1 = atomic_read(&lbInfo->scsi_pending_cmds[1]);
485
486 /* Determine the disk whose head is nearer to the req. block */
487 diff0 = ABS_DIFF(block, lbInfo->last_accessed_block[0]);
488 diff1 = ABS_DIFF(block, lbInfo->last_accessed_block[1]);
489 bestArm = (diff0 <= diff1 ? 0 : 1);
490
491 if ((bestArm == arm && pend0 > pend1 + 16) ||
492 (bestArm != arm && pend1 > pend0 + 16))
493 bestArm ^= 1;
494
495 /* Update the last accessed block on the correct pd */
496 lbInfo->last_accessed_block[bestArm] = block + count - 1;
497
498 return bestArm;
499}
500
501u16 get_updated_dev_handle(struct LD_LOAD_BALANCE_INFO *lbInfo,
502 struct IO_REQUEST_INFO *io_info)
503{
504 u8 arm, old_arm;
505 u16 devHandle;
506
507 old_arm = lbInfo->raid1DevHandle[0] == io_info->devHandle ? 0 : 1;
508
509 /* get best new arm */
510 arm = megasas_get_best_arm(lbInfo, old_arm, io_info->ldStartBlock,
511 io_info->numBlocks);
512 devHandle = lbInfo->raid1DevHandle[arm];
513 atomic_inc(&lbInfo->scsi_pending_cmds[arm]);
514
515 return devHandle;
516}