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Merge tag 'scsi-misc' of git://git.kernel.org/pub/scm/linux/kernel/git/jejb/scsi
[karo-tx-linux.git] / drivers / scsi / megaraid / megaraid_sas_fusion.h
1 /*
2  *  Linux MegaRAID driver for SAS based RAID controllers
3  *
4  *  Copyright (c) 2009-2012  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_fusion.h
21  *
22  *  Authors: LSI Corporation
23  *           Manoj Jose
24  *           Sumant Patro
25  *
26  *  Send feedback to: <megaraidlinux@lsi.com>
27  *
28  *  Mail to: LSI Corporation, 1621 Barber Lane, Milpitas, CA 95035
29  *     ATTN: Linuxraid
30  */
31
32 #ifndef _MEGARAID_SAS_FUSION_H_
33 #define _MEGARAID_SAS_FUSION_H_
34
35 /* Fusion defines */
36 #define MEGASAS_MAX_SZ_CHAIN_FRAME 1024
37 #define MFI_FUSION_ENABLE_INTERRUPT_MASK (0x00000009)
38 #define MEGA_MPI2_RAID_DEFAULT_IO_FRAME_SIZE 256
39 #define MEGASAS_MPI2_FUNCTION_PASSTHRU_IO_REQUEST   0xF0
40 #define MEGASAS_MPI2_FUNCTION_LD_IO_REQUEST         0xF1
41 #define MEGASAS_LOAD_BALANCE_FLAG                   0x1
42 #define MEGASAS_DCMD_MBOX_PEND_FLAG                 0x1
43 #define HOST_DIAG_WRITE_ENABLE                      0x80
44 #define HOST_DIAG_RESET_ADAPTER                     0x4
45 #define MEGASAS_FUSION_MAX_RESET_TRIES              3
46 #define MAX_MSIX_QUEUES_FUSION                      128
47
48 /* Invader defines */
49 #define MPI2_TYPE_CUDA                              0x2
50 #define MPI25_SAS_DEVICE0_FLAGS_ENABLED_FAST_PATH   0x4000
51 #define MR_RL_FLAGS_GRANT_DESTINATION_CPU0          0x00
52 #define MR_RL_FLAGS_GRANT_DESTINATION_CPU1          0x10
53 #define MR_RL_FLAGS_GRANT_DESTINATION_CUDA          0x80
54 #define MR_RL_FLAGS_SEQ_NUM_ENABLE                  0x8
55
56 /* T10 PI defines */
57 #define MR_PROT_INFO_TYPE_CONTROLLER                0x8
58 #define MEGASAS_SCSI_VARIABLE_LENGTH_CMD            0x7f
59 #define MEGASAS_SCSI_SERVICE_ACTION_READ32          0x9
60 #define MEGASAS_SCSI_SERVICE_ACTION_WRITE32         0xB
61 #define MEGASAS_SCSI_ADDL_CDB_LEN                   0x18
62 #define MEGASAS_RD_WR_PROTECT_CHECK_ALL             0x20
63 #define MEGASAS_RD_WR_PROTECT_CHECK_NONE            0x60
64
65 #define MPI2_SUP_REPLY_POST_HOST_INDEX_OFFSET   (0x0000030C)
66 #define MPI2_REPLY_POST_HOST_INDEX_OFFSET       (0x0000006C)
67
68 /*
69  * Raid context flags
70  */
71
72 #define MR_RAID_CTX_RAID_FLAGS_IO_SUB_TYPE_SHIFT   0x4
73 #define MR_RAID_CTX_RAID_FLAGS_IO_SUB_TYPE_MASK    0x30
74 enum MR_RAID_FLAGS_IO_SUB_TYPE {
75         MR_RAID_FLAGS_IO_SUB_TYPE_NONE = 0,
76         MR_RAID_FLAGS_IO_SUB_TYPE_SYSTEM_PD = 1,
77 };
78
79 /*
80  * Request descriptor types
81  */
82 #define MEGASAS_REQ_DESCRIPT_FLAGS_LD_IO           0x7
83 #define MEGASAS_REQ_DESCRIPT_FLAGS_MFA             0x1
84 #define MEGASAS_REQ_DESCRIPT_FLAGS_NO_LOCK         0x2
85 #define MEGASAS_REQ_DESCRIPT_FLAGS_TYPE_SHIFT      1
86
87 #define MEGASAS_FP_CMD_LEN      16
88 #define MEGASAS_FUSION_IN_RESET 0
89
90 /*
91  * Raid Context structure which describes MegaRAID specific IO Parameters
92  * This resides at offset 0x60 where the SGL normally starts in MPT IO Frames
93  */
94
95 struct RAID_CONTEXT {
96 #if   defined(__BIG_ENDIAN_BITFIELD)
97         u8      nseg:4;
98         u8      Type:4;
99 #else
100         u8      Type:4;
101         u8      nseg:4;
102 #endif
103         u8      resvd0;
104         u16     timeoutValue;
105         u8      regLockFlags;
106         u8      resvd1;
107         u16     VirtualDiskTgtId;
108         u64     regLockRowLBA;
109         u32     regLockLength;
110         u16     nextLMId;
111         u8      exStatus;
112         u8      status;
113         u8      RAIDFlags;
114         u8      numSGE;
115         u16     configSeqNum;
116         u8      spanArm;
117         u8      resvd2[3];
118 };
119
120 #define RAID_CTX_SPANARM_ARM_SHIFT      (0)
121 #define RAID_CTX_SPANARM_ARM_MASK       (0x1f)
122
123 #define RAID_CTX_SPANARM_SPAN_SHIFT     (5)
124 #define RAID_CTX_SPANARM_SPAN_MASK      (0xE0)
125
126 /*
127  * define region lock types
128  */
129 enum REGION_TYPE {
130         REGION_TYPE_UNUSED       = 0,
131         REGION_TYPE_SHARED_READ  = 1,
132         REGION_TYPE_SHARED_WRITE = 2,
133         REGION_TYPE_EXCLUSIVE    = 3,
134 };
135
136 /* MPI2 defines */
137 #define MPI2_FUNCTION_IOC_INIT              (0x02) /* IOC Init */
138 #define MPI2_WHOINIT_HOST_DRIVER            (0x04)
139 #define MPI2_VERSION_MAJOR                  (0x02)
140 #define MPI2_VERSION_MINOR                  (0x00)
141 #define MPI2_VERSION_MAJOR_MASK             (0xFF00)
142 #define MPI2_VERSION_MAJOR_SHIFT            (8)
143 #define MPI2_VERSION_MINOR_MASK             (0x00FF)
144 #define MPI2_VERSION_MINOR_SHIFT            (0)
145 #define MPI2_VERSION ((MPI2_VERSION_MAJOR << MPI2_VERSION_MAJOR_SHIFT) | \
146                       MPI2_VERSION_MINOR)
147 #define MPI2_HEADER_VERSION_UNIT            (0x10)
148 #define MPI2_HEADER_VERSION_DEV             (0x00)
149 #define MPI2_HEADER_VERSION_UNIT_MASK       (0xFF00)
150 #define MPI2_HEADER_VERSION_UNIT_SHIFT      (8)
151 #define MPI2_HEADER_VERSION_DEV_MASK        (0x00FF)
152 #define MPI2_HEADER_VERSION_DEV_SHIFT       (0)
153 #define MPI2_HEADER_VERSION ((MPI2_HEADER_VERSION_UNIT << 8) | \
154                              MPI2_HEADER_VERSION_DEV)
155 #define MPI2_IEEE_SGE_FLAGS_IOCPLBNTA_ADDR      (0x03)
156 #define MPI2_SCSIIO_EEDPFLAGS_INC_PRI_REFTAG        (0x8000)
157 #define MPI2_SCSIIO_EEDPFLAGS_CHECK_REFTAG          (0x0400)
158 #define MPI2_SCSIIO_EEDPFLAGS_CHECK_REMOVE_OP       (0x0003)
159 #define MPI2_SCSIIO_EEDPFLAGS_CHECK_APPTAG          (0x0200)
160 #define MPI2_SCSIIO_EEDPFLAGS_CHECK_GUARD           (0x0100)
161 #define MPI2_SCSIIO_EEDPFLAGS_INSERT_OP             (0x0004)
162 #define MPI2_FUNCTION_SCSI_IO_REQUEST               (0x00) /* SCSI IO */
163 #define MPI2_REQ_DESCRIPT_FLAGS_HIGH_PRIORITY           (0x06)
164 #define MPI2_REQ_DESCRIPT_FLAGS_SCSI_IO                 (0x00)
165 #define MPI2_SGE_FLAGS_64_BIT_ADDRESSING        (0x02)
166 #define MPI2_SCSIIO_CONTROL_WRITE               (0x01000000)
167 #define MPI2_SCSIIO_CONTROL_READ                (0x02000000)
168 #define MPI2_REQ_DESCRIPT_FLAGS_TYPE_MASK       (0x0E)
169 #define MPI2_RPY_DESCRIPT_FLAGS_UNUSED          (0x0F)
170 #define MPI2_RPY_DESCRIPT_FLAGS_SCSI_IO_SUCCESS (0x00)
171 #define MPI2_RPY_DESCRIPT_FLAGS_TYPE_MASK       (0x0F)
172 #define MPI2_WRSEQ_FLUSH_KEY_VALUE              (0x0)
173 #define MPI2_WRITE_SEQUENCE_OFFSET              (0x00000004)
174 #define MPI2_WRSEQ_1ST_KEY_VALUE                (0xF)
175 #define MPI2_WRSEQ_2ND_KEY_VALUE                (0x4)
176 #define MPI2_WRSEQ_3RD_KEY_VALUE                (0xB)
177 #define MPI2_WRSEQ_4TH_KEY_VALUE                (0x2)
178 #define MPI2_WRSEQ_5TH_KEY_VALUE                (0x7)
179 #define MPI2_WRSEQ_6TH_KEY_VALUE                (0xD)
180
181 struct MPI25_IEEE_SGE_CHAIN64 {
182         u64                     Address;
183         u32                     Length;
184         u16                     Reserved1;
185         u8                      NextChainOffset;
186         u8                      Flags;
187 };
188
189 struct MPI2_SGE_SIMPLE_UNION {
190         u32                     FlagsLength;
191         union {
192                 u32                 Address32;
193                 u64                 Address64;
194         } u;
195 };
196
197 struct MPI2_SCSI_IO_CDB_EEDP32 {
198         u8                      CDB[20];                    /* 0x00 */
199         u32                     PrimaryReferenceTag;        /* 0x14 */
200         u16                     PrimaryApplicationTag;      /* 0x18 */
201         u16                     PrimaryApplicationTagMask;  /* 0x1A */
202         u32                     TransferLength;             /* 0x1C */
203 };
204
205 struct MPI2_SGE_CHAIN_UNION {
206         u16                     Length;
207         u8                      NextChainOffset;
208         u8                      Flags;
209         union {
210                 u32                 Address32;
211                 u64                 Address64;
212         } u;
213 };
214
215 struct MPI2_IEEE_SGE_SIMPLE32 {
216         u32                     Address;
217         u32                     FlagsLength;
218 };
219
220 struct MPI2_IEEE_SGE_CHAIN32 {
221         u32                     Address;
222         u32                     FlagsLength;
223 };
224
225 struct MPI2_IEEE_SGE_SIMPLE64 {
226         u64                     Address;
227         u32                     Length;
228         u16                     Reserved1;
229         u8                      Reserved2;
230         u8                      Flags;
231 };
232
233 struct MPI2_IEEE_SGE_CHAIN64 {
234         u64                     Address;
235         u32                     Length;
236         u16                     Reserved1;
237         u8                      Reserved2;
238         u8                      Flags;
239 };
240
241 union MPI2_IEEE_SGE_SIMPLE_UNION {
242         struct MPI2_IEEE_SGE_SIMPLE32  Simple32;
243         struct MPI2_IEEE_SGE_SIMPLE64  Simple64;
244 };
245
246 union MPI2_IEEE_SGE_CHAIN_UNION {
247         struct MPI2_IEEE_SGE_CHAIN32   Chain32;
248         struct MPI2_IEEE_SGE_CHAIN64   Chain64;
249 };
250
251 union MPI2_SGE_IO_UNION {
252         struct MPI2_SGE_SIMPLE_UNION       MpiSimple;
253         struct MPI2_SGE_CHAIN_UNION        MpiChain;
254         union MPI2_IEEE_SGE_SIMPLE_UNION  IeeeSimple;
255         union MPI2_IEEE_SGE_CHAIN_UNION   IeeeChain;
256 };
257
258 union MPI2_SCSI_IO_CDB_UNION {
259         u8                      CDB32[32];
260         struct MPI2_SCSI_IO_CDB_EEDP32 EEDP32;
261         struct MPI2_SGE_SIMPLE_UNION SGE;
262 };
263
264 /*
265  * RAID SCSI IO Request Message
266  * Total SGE count will be one less than  _MPI2_SCSI_IO_REQUEST
267  */
268 struct MPI2_RAID_SCSI_IO_REQUEST {
269         u16                     DevHandle;                      /* 0x00 */
270         u8                      ChainOffset;                    /* 0x02 */
271         u8                      Function;                       /* 0x03 */
272         u16                     Reserved1;                      /* 0x04 */
273         u8                      Reserved2;                      /* 0x06 */
274         u8                      MsgFlags;                       /* 0x07 */
275         u8                      VP_ID;                          /* 0x08 */
276         u8                      VF_ID;                          /* 0x09 */
277         u16                     Reserved3;                      /* 0x0A */
278         u32                     SenseBufferLowAddress;          /* 0x0C */
279         u16                     SGLFlags;                       /* 0x10 */
280         u8                      SenseBufferLength;              /* 0x12 */
281         u8                      Reserved4;                      /* 0x13 */
282         u8                      SGLOffset0;                     /* 0x14 */
283         u8                      SGLOffset1;                     /* 0x15 */
284         u8                      SGLOffset2;                     /* 0x16 */
285         u8                      SGLOffset3;                     /* 0x17 */
286         u32                     SkipCount;                      /* 0x18 */
287         u32                     DataLength;                     /* 0x1C */
288         u32                     BidirectionalDataLength;        /* 0x20 */
289         u16                     IoFlags;                        /* 0x24 */
290         u16                     EEDPFlags;                      /* 0x26 */
291         u32                     EEDPBlockSize;                  /* 0x28 */
292         u32                     SecondaryReferenceTag;          /* 0x2C */
293         u16                     SecondaryApplicationTag;        /* 0x30 */
294         u16                     ApplicationTagTranslationMask;  /* 0x32 */
295         u8                      LUN[8];                         /* 0x34 */
296         u32                     Control;                        /* 0x3C */
297         union MPI2_SCSI_IO_CDB_UNION  CDB;                      /* 0x40 */
298         struct RAID_CONTEXT     RaidContext;                    /* 0x60 */
299         union MPI2_SGE_IO_UNION       SGL;                      /* 0x80 */
300 };
301
302 /*
303  * MPT RAID MFA IO Descriptor.
304  */
305 struct MEGASAS_RAID_MFA_IO_REQUEST_DESCRIPTOR {
306 #if   defined(__BIG_ENDIAN_BITFIELD)
307         u32     MessageAddress1:24; /* bits 31:8*/
308         u32     RequestFlags:8;
309 #else
310         u32     RequestFlags:8;
311         u32     MessageAddress1:24; /* bits 31:8*/
312 #endif
313         u32     MessageAddress2;      /* bits 61:32 */
314 };
315
316 /* Default Request Descriptor */
317 struct MPI2_DEFAULT_REQUEST_DESCRIPTOR {
318         u8              RequestFlags;               /* 0x00 */
319         u8              MSIxIndex;                  /* 0x01 */
320         u16             SMID;                       /* 0x02 */
321         u16             LMID;                       /* 0x04 */
322         u16             DescriptorTypeDependent;    /* 0x06 */
323 };
324
325 /* High Priority Request Descriptor */
326 struct MPI2_HIGH_PRIORITY_REQUEST_DESCRIPTOR {
327         u8              RequestFlags;               /* 0x00 */
328         u8              MSIxIndex;                  /* 0x01 */
329         u16             SMID;                       /* 0x02 */
330         u16             LMID;                       /* 0x04 */
331         u16             Reserved1;                  /* 0x06 */
332 };
333
334 /* SCSI IO Request Descriptor */
335 struct MPI2_SCSI_IO_REQUEST_DESCRIPTOR {
336         u8              RequestFlags;               /* 0x00 */
337         u8              MSIxIndex;                  /* 0x01 */
338         u16             SMID;                       /* 0x02 */
339         u16             LMID;                       /* 0x04 */
340         u16             DevHandle;                  /* 0x06 */
341 };
342
343 /* SCSI Target Request Descriptor */
344 struct MPI2_SCSI_TARGET_REQUEST_DESCRIPTOR {
345         u8              RequestFlags;               /* 0x00 */
346         u8              MSIxIndex;                  /* 0x01 */
347         u16             SMID;                       /* 0x02 */
348         u16             LMID;                       /* 0x04 */
349         u16             IoIndex;                    /* 0x06 */
350 };
351
352 /* RAID Accelerator Request Descriptor */
353 struct MPI2_RAID_ACCEL_REQUEST_DESCRIPTOR {
354         u8              RequestFlags;               /* 0x00 */
355         u8              MSIxIndex;                  /* 0x01 */
356         u16             SMID;                       /* 0x02 */
357         u16             LMID;                       /* 0x04 */
358         u16             Reserved;                   /* 0x06 */
359 };
360
361 /* union of Request Descriptors */
362 union MEGASAS_REQUEST_DESCRIPTOR_UNION {
363         struct MPI2_DEFAULT_REQUEST_DESCRIPTOR             Default;
364         struct MPI2_HIGH_PRIORITY_REQUEST_DESCRIPTOR       HighPriority;
365         struct MPI2_SCSI_IO_REQUEST_DESCRIPTOR             SCSIIO;
366         struct MPI2_SCSI_TARGET_REQUEST_DESCRIPTOR         SCSITarget;
367         struct MPI2_RAID_ACCEL_REQUEST_DESCRIPTOR          RAIDAccelerator;
368         struct MEGASAS_RAID_MFA_IO_REQUEST_DESCRIPTOR      MFAIo;
369         union {
370                 struct {
371                         u32 low;
372                         u32 high;
373                 } u;
374                 u64 Words;
375         };
376 };
377
378 /* Default Reply Descriptor */
379 struct MPI2_DEFAULT_REPLY_DESCRIPTOR {
380         u8              ReplyFlags;                 /* 0x00 */
381         u8              MSIxIndex;                  /* 0x01 */
382         u16             DescriptorTypeDependent1;   /* 0x02 */
383         u32             DescriptorTypeDependent2;   /* 0x04 */
384 };
385
386 /* Address Reply Descriptor */
387 struct MPI2_ADDRESS_REPLY_DESCRIPTOR {
388         u8              ReplyFlags;                 /* 0x00 */
389         u8              MSIxIndex;                  /* 0x01 */
390         u16             SMID;                       /* 0x02 */
391         u32             ReplyFrameAddress;          /* 0x04 */
392 };
393
394 /* SCSI IO Success Reply Descriptor */
395 struct MPI2_SCSI_IO_SUCCESS_REPLY_DESCRIPTOR {
396         u8              ReplyFlags;                 /* 0x00 */
397         u8              MSIxIndex;                  /* 0x01 */
398         u16             SMID;                       /* 0x02 */
399         u16             TaskTag;                    /* 0x04 */
400         u16             Reserved1;                  /* 0x06 */
401 };
402
403 /* TargetAssist Success Reply Descriptor */
404 struct MPI2_TARGETASSIST_SUCCESS_REPLY_DESCRIPTOR {
405         u8              ReplyFlags;                 /* 0x00 */
406         u8              MSIxIndex;                  /* 0x01 */
407         u16             SMID;                       /* 0x02 */
408         u8              SequenceNumber;             /* 0x04 */
409         u8              Reserved1;                  /* 0x05 */
410         u16             IoIndex;                    /* 0x06 */
411 };
412
413 /* Target Command Buffer Reply Descriptor */
414 struct MPI2_TARGET_COMMAND_BUFFER_REPLY_DESCRIPTOR {
415         u8              ReplyFlags;                 /* 0x00 */
416         u8              MSIxIndex;                  /* 0x01 */
417         u8              VP_ID;                      /* 0x02 */
418         u8              Flags;                      /* 0x03 */
419         u16             InitiatorDevHandle;         /* 0x04 */
420         u16             IoIndex;                    /* 0x06 */
421 };
422
423 /* RAID Accelerator Success Reply Descriptor */
424 struct MPI2_RAID_ACCELERATOR_SUCCESS_REPLY_DESCRIPTOR {
425         u8              ReplyFlags;                 /* 0x00 */
426         u8              MSIxIndex;                  /* 0x01 */
427         u16             SMID;                       /* 0x02 */
428         u32             Reserved;                   /* 0x04 */
429 };
430
431 /* union of Reply Descriptors */
432 union MPI2_REPLY_DESCRIPTORS_UNION {
433         struct MPI2_DEFAULT_REPLY_DESCRIPTOR                   Default;
434         struct MPI2_ADDRESS_REPLY_DESCRIPTOR                   AddressReply;
435         struct MPI2_SCSI_IO_SUCCESS_REPLY_DESCRIPTOR           SCSIIOSuccess;
436         struct MPI2_TARGETASSIST_SUCCESS_REPLY_DESCRIPTOR TargetAssistSuccess;
437         struct MPI2_TARGET_COMMAND_BUFFER_REPLY_DESCRIPTOR TargetCommandBuffer;
438         struct MPI2_RAID_ACCELERATOR_SUCCESS_REPLY_DESCRIPTOR
439         RAIDAcceleratorSuccess;
440         u64                                             Words;
441 };
442
443 /* IOCInit Request message */
444 struct MPI2_IOC_INIT_REQUEST {
445         u8                      WhoInit;                        /* 0x00 */
446         u8                      Reserved1;                      /* 0x01 */
447         u8                      ChainOffset;                    /* 0x02 */
448         u8                      Function;                       /* 0x03 */
449         u16                     Reserved2;                      /* 0x04 */
450         u8                      Reserved3;                      /* 0x06 */
451         u8                      MsgFlags;                       /* 0x07 */
452         u8                      VP_ID;                          /* 0x08 */
453         u8                      VF_ID;                          /* 0x09 */
454         u16                     Reserved4;                      /* 0x0A */
455         u16                     MsgVersion;                     /* 0x0C */
456         u16                     HeaderVersion;                  /* 0x0E */
457         u32                     Reserved5;                      /* 0x10 */
458         u16                     Reserved6;                      /* 0x14 */
459         u8                      Reserved7;                      /* 0x16 */
460         u8                      HostMSIxVectors;                /* 0x17 */
461         u16                     Reserved8;                      /* 0x18 */
462         u16                     SystemRequestFrameSize;         /* 0x1A */
463         u16                     ReplyDescriptorPostQueueDepth;  /* 0x1C */
464         u16                     ReplyFreeQueueDepth;            /* 0x1E */
465         u32                     SenseBufferAddressHigh;         /* 0x20 */
466         u32                     SystemReplyAddressHigh;         /* 0x24 */
467         u64                     SystemRequestFrameBaseAddress;  /* 0x28 */
468         u64                     ReplyDescriptorPostQueueAddress;/* 0x30 */
469         u64                     ReplyFreeQueueAddress;          /* 0x38 */
470         u64                     TimeStamp;                      /* 0x40 */
471 };
472
473 /* mrpriv defines */
474 #define MR_PD_INVALID 0xFFFF
475 #define MAX_SPAN_DEPTH 8
476 #define MAX_QUAD_DEPTH  MAX_SPAN_DEPTH
477 #define MAX_RAIDMAP_SPAN_DEPTH (MAX_SPAN_DEPTH)
478 #define MAX_ROW_SIZE 32
479 #define MAX_RAIDMAP_ROW_SIZE (MAX_ROW_SIZE)
480 #define MAX_LOGICAL_DRIVES 64
481 #define MAX_RAIDMAP_LOGICAL_DRIVES (MAX_LOGICAL_DRIVES)
482 #define MAX_RAIDMAP_VIEWS (MAX_LOGICAL_DRIVES)
483 #define MAX_ARRAYS 128
484 #define MAX_RAIDMAP_ARRAYS (MAX_ARRAYS)
485 #define MAX_PHYSICAL_DEVICES 256
486 #define MAX_RAIDMAP_PHYSICAL_DEVICES (MAX_PHYSICAL_DEVICES)
487 #define MR_DCMD_LD_MAP_GET_INFO             0x0300e101
488
489 struct MR_DEV_HANDLE_INFO {
490         u16     curDevHdl;
491         u8      validHandles;
492         u8      reserved;
493         u16     devHandle[2];
494 };
495
496 struct MR_ARRAY_INFO {
497         u16      pd[MAX_RAIDMAP_ROW_SIZE];
498 };
499
500 struct MR_QUAD_ELEMENT {
501         u64     logStart;
502         u64     logEnd;
503         u64     offsetInSpan;
504         u32     diff;
505         u32     reserved1;
506 };
507
508 struct MR_SPAN_INFO {
509         u32             noElements;
510         u32             reserved1;
511         struct MR_QUAD_ELEMENT quad[MAX_RAIDMAP_SPAN_DEPTH];
512 };
513
514 struct MR_LD_SPAN {
515         u64      startBlk;
516         u64      numBlks;
517         u16      arrayRef;
518         u8       spanRowSize;
519         u8       spanRowDataSize;
520         u8       reserved[4];
521 };
522
523 struct MR_SPAN_BLOCK_INFO {
524         u64          num_rows;
525         struct MR_LD_SPAN   span;
526         struct MR_SPAN_INFO block_span_info;
527 };
528
529 struct MR_LD_RAID {
530         struct {
531 #if   defined(__BIG_ENDIAN_BITFIELD)
532                 u32     reserved4:7;
533                 u32     fpNonRWCapable:1;
534                 u32     fpReadAcrossStripe:1;
535                 u32     fpWriteAcrossStripe:1;
536                 u32     fpReadCapable:1;
537                 u32     fpWriteCapable:1;
538                 u32     encryptionType:8;
539                 u32     pdPiMode:4;
540                 u32     ldPiMode:4;
541                 u32     reserved5:3;
542                 u32     fpCapable:1;
543 #else
544                 u32     fpCapable:1;
545                 u32     reserved5:3;
546                 u32     ldPiMode:4;
547                 u32     pdPiMode:4;
548                 u32     encryptionType:8;
549                 u32     fpWriteCapable:1;
550                 u32     fpReadCapable:1;
551                 u32     fpWriteAcrossStripe:1;
552                 u32     fpReadAcrossStripe:1;
553                 u32     fpNonRWCapable:1;
554                 u32     reserved4:7;
555 #endif
556         } capability;
557         u32     reserved6;
558         u64     size;
559         u8      spanDepth;
560         u8      level;
561         u8      stripeShift;
562         u8      rowSize;
563         u8      rowDataSize;
564         u8      writeMode;
565         u8      PRL;
566         u8      SRL;
567         u16     targetId;
568         u8      ldState;
569         u8      regTypeReqOnWrite;
570         u8      modFactor;
571         u8      regTypeReqOnRead;
572         u16     seqNum;
573
574         struct {
575                 u32 ldSyncRequired:1;
576                 u32 reserved:31;
577         } flags;
578
579         u8      LUN[8]; /* 0x24 8 byte LUN field used for SCSI IO's */
580         u8      fpIoTimeoutForLd;/*0x2C timeout value used by driver in FP IO*/
581         u8      reserved3[0x80-0x2D]; /* 0x2D */
582 };
583
584 struct MR_LD_SPAN_MAP {
585         struct MR_LD_RAID          ldRaid;
586         u8                  dataArmMap[MAX_RAIDMAP_ROW_SIZE];
587         struct MR_SPAN_BLOCK_INFO  spanBlock[MAX_RAIDMAP_SPAN_DEPTH];
588 };
589
590 struct MR_FW_RAID_MAP {
591         u32                 totalSize;
592         union {
593                 struct {
594                         u32         maxLd;
595                         u32         maxSpanDepth;
596                         u32         maxRowSize;
597                         u32         maxPdCount;
598                         u32         maxArrays;
599                 } validationInfo;
600                 u32             version[5];
601                 u32             reserved1[5];
602         };
603
604         u32                 ldCount;
605         u32                 Reserved1;
606         u8                  ldTgtIdToLd[MAX_RAIDMAP_LOGICAL_DRIVES+
607                                         MAX_RAIDMAP_VIEWS];
608         u8                  fpPdIoTimeoutSec;
609         u8                  reserved2[7];
610         struct MR_ARRAY_INFO       arMapInfo[MAX_RAIDMAP_ARRAYS];
611         struct MR_DEV_HANDLE_INFO  devHndlInfo[MAX_RAIDMAP_PHYSICAL_DEVICES];
612         struct MR_LD_SPAN_MAP      ldSpanMap[1];
613 };
614
615 struct IO_REQUEST_INFO {
616         u64 ldStartBlock;
617         u32 numBlocks;
618         u16 ldTgtId;
619         u8 isRead;
620         u16 devHandle;
621         u64 pdBlock;
622         u8 fpOkForIo;
623         u8 IoforUnevenSpan;
624         u8 start_span;
625         u8 reserved;
626         u64 start_row;
627 };
628
629 struct MR_LD_TARGET_SYNC {
630         u8  targetId;
631         u8  reserved;
632         u16 seqNum;
633 };
634
635 #define IEEE_SGE_FLAGS_ADDR_MASK            (0x03)
636 #define IEEE_SGE_FLAGS_SYSTEM_ADDR          (0x00)
637 #define IEEE_SGE_FLAGS_IOCDDR_ADDR          (0x01)
638 #define IEEE_SGE_FLAGS_IOCPLB_ADDR          (0x02)
639 #define IEEE_SGE_FLAGS_IOCPLBNTA_ADDR       (0x03)
640 #define IEEE_SGE_FLAGS_CHAIN_ELEMENT        (0x80)
641 #define IEEE_SGE_FLAGS_END_OF_LIST          (0x40)
642
643 struct megasas_register_set;
644 struct megasas_instance;
645
646 union desc_word {
647         u64 word;
648         struct {
649                 u32 low;
650                 u32 high;
651         } u;
652 };
653
654 struct megasas_cmd_fusion {
655         struct MPI2_RAID_SCSI_IO_REQUEST        *io_request;
656         dma_addr_t                      io_request_phys_addr;
657
658         union MPI2_SGE_IO_UNION *sg_frame;
659         dma_addr_t              sg_frame_phys_addr;
660
661         u8 *sense;
662         dma_addr_t sense_phys_addr;
663
664         struct list_head list;
665         struct scsi_cmnd *scmd;
666         struct megasas_instance *instance;
667
668         u8 retry_for_fw_reset;
669         union MEGASAS_REQUEST_DESCRIPTOR_UNION  *request_desc;
670
671         /*
672          * Context for a MFI frame.
673          * Used to get the mfi cmd from list when a MFI cmd is completed
674          */
675         u32 sync_cmd_idx;
676         u32 index;
677         u8 flags;
678 };
679
680 struct LD_LOAD_BALANCE_INFO {
681         u8      loadBalanceFlag;
682         u8      reserved1;
683         u16     raid1DevHandle[2];
684         atomic_t     scsi_pending_cmds[2];
685         u64     last_accessed_block[2];
686 };
687
688 /* SPAN_SET is info caclulated from span info from Raid map per LD */
689 typedef struct _LD_SPAN_SET {
690         u64  log_start_lba;
691         u64  log_end_lba;
692         u64  span_row_start;
693         u64  span_row_end;
694         u64  data_strip_start;
695         u64  data_strip_end;
696         u64  data_row_start;
697         u64  data_row_end;
698         u8   strip_offset[MAX_SPAN_DEPTH];
699         u32    span_row_data_width;
700         u32    diff;
701         u32    reserved[2];
702 } LD_SPAN_SET, *PLD_SPAN_SET;
703
704 typedef struct LOG_BLOCK_SPAN_INFO {
705         LD_SPAN_SET  span_set[MAX_SPAN_DEPTH];
706 } LD_SPAN_INFO, *PLD_SPAN_INFO;
707
708 struct MR_FW_RAID_MAP_ALL {
709         struct MR_FW_RAID_MAP raidMap;
710         struct MR_LD_SPAN_MAP ldSpanMap[MAX_LOGICAL_DRIVES - 1];
711 } __attribute__ ((packed));
712
713 struct fusion_context {
714         struct megasas_cmd_fusion **cmd_list;
715         struct list_head cmd_pool;
716
717         spinlock_t cmd_pool_lock;
718
719         dma_addr_t req_frames_desc_phys;
720         u8 *req_frames_desc;
721
722         struct dma_pool *io_request_frames_pool;
723         dma_addr_t io_request_frames_phys;
724         u8 *io_request_frames;
725
726         struct dma_pool *sg_dma_pool;
727         struct dma_pool *sense_dma_pool;
728
729         dma_addr_t reply_frames_desc_phys;
730         union MPI2_REPLY_DESCRIPTORS_UNION *reply_frames_desc;
731         struct dma_pool *reply_frames_desc_pool;
732
733         u16 last_reply_idx[MAX_MSIX_QUEUES_FUSION];
734
735         u32 reply_q_depth;
736         u32 request_alloc_sz;
737         u32 reply_alloc_sz;
738         u32 io_frames_alloc_sz;
739
740         u16     max_sge_in_main_msg;
741         u16     max_sge_in_chain;
742
743         u8      chain_offset_io_request;
744         u8      chain_offset_mfi_pthru;
745
746         struct MR_FW_RAID_MAP_ALL *ld_map[2];
747         dma_addr_t ld_map_phys[2];
748
749         u32 map_sz;
750         u8 fast_path_io;
751         struct LD_LOAD_BALANCE_INFO load_balance_info[MAX_LOGICAL_DRIVES];
752         LD_SPAN_INFO log_to_span[MAX_LOGICAL_DRIVES];
753 };
754
755 union desc_value {
756         u64 word;
757         struct {
758                 u32 low;
759                 u32 high;
760         } u;
761 };
762
763 #endif /* _MEGARAID_SAS_FUSION_H_ */