1 /* SPDX-License-Identifier: GPL-2.0-only */
2 /*
3 * QLogic Fibre Channel HBA Driver
4 * Copyright (c) 2003-2014 QLogic Corporation
5 */
6 #ifndef __QLA_DEF_H
7 #define __QLA_DEF_H
8
9 #include <linux/kernel.h>
10 #include <linux/init.h>
11 #include <linux/types.h>
12 #include <linux/module.h>
13 #include <linux/list.h>
14 #include <linux/pci.h>
15 #include <linux/dma-mapping.h>
16 #include <linux/sched.h>
17 #include <linux/slab.h>
18 #include <linux/dmapool.h>
19 #include <linux/mempool.h>
20 #include <linux/spinlock.h>
21 #include <linux/completion.h>
22 #include <linux/interrupt.h>
23 #include <linux/workqueue.h>
24 #include <linux/firmware.h>
25 #include <linux/mutex.h>
26 #include <linux/btree.h>
27
28 #include <scsi/scsi.h>
29 #include <scsi/scsi_host.h>
30 #include <scsi/scsi_device.h>
31 #include <scsi/scsi_cmnd.h>
32 #include <scsi/scsi_transport_fc.h>
33 #include <scsi/scsi_bsg_fc.h>
34
35 #include <uapi/scsi/fc/fc_els.h>
36
37 #define QLA_DFS_DEFINE_DENTRY(_debugfs_file_name) \
38 struct dentry *dfs_##_debugfs_file_name
39 #define QLA_DFS_ROOT_DEFINE_DENTRY(_debugfs_file_name) \
40 struct dentry *qla_dfs_##_debugfs_file_name
41
42 /* Big endian Fibre Channel S_ID (source ID) or D_ID (destination ID). */
43 typedef struct {
44 uint8_t domain;
45 uint8_t area;
46 uint8_t al_pa;
47 } be_id_t;
48
49 /* Little endian Fibre Channel S_ID (source ID) or D_ID (destination ID). */
50 typedef struct {
51 uint8_t al_pa;
52 uint8_t area;
53 uint8_t domain;
54 } le_id_t;
55
56 /*
57 * 24 bit port ID type definition.
58 */
59 typedef union {
60 uint32_t b24 : 24;
61 struct {
62 #ifdef __BIG_ENDIAN
63 uint8_t domain;
64 uint8_t area;
65 uint8_t al_pa;
66 #elif defined(__LITTLE_ENDIAN)
67 uint8_t al_pa;
68 uint8_t area;
69 uint8_t domain;
70 #else
71 #error "__BIG_ENDIAN or __LITTLE_ENDIAN must be defined!"
72 #endif
73 uint8_t rsvd_1;
74 } b;
75 } port_id_t;
76 #define INVALID_PORT_ID 0xFFFFFF
77
78 #include "qla_bsg.h"
79 #include "qla_dsd.h"
80 #include "qla_nx.h"
81 #include "qla_nx2.h"
82 #include "qla_nvme.h"
83 #define QLA2XXX_DRIVER_NAME "qla2xxx"
84 #define QLA2XXX_APIDEV "ql2xapidev"
85 #define QLA2XXX_MANUFACTURER "Marvell"
86
87 /*
88 * We have MAILBOX_REGISTER_COUNT sized arrays in a few places,
89 * but that's fine as we don't look at the last 24 ones for
90 * ISP2100 HBAs.
91 */
92 #define MAILBOX_REGISTER_COUNT_2100 8
93 #define MAILBOX_REGISTER_COUNT_2200 24
94 #define MAILBOX_REGISTER_COUNT 32
95
96 #define QLA2200A_RISC_ROM_VER 4
97 #define FPM_2300 6
98 #define FPM_2310 7
99
100 #include "qla_settings.h"
101
102 #define MODE_DUAL (MODE_TARGET | MODE_INITIATOR)
103
104 /*
105 * Data bit definitions
106 */
107 #define BIT_0 0x1
108 #define BIT_1 0x2
109 #define BIT_2 0x4
110 #define BIT_3 0x8
111 #define BIT_4 0x10
112 #define BIT_5 0x20
113 #define BIT_6 0x40
114 #define BIT_7 0x80
115 #define BIT_8 0x100
116 #define BIT_9 0x200
117 #define BIT_10 0x400
118 #define BIT_11 0x800
119 #define BIT_12 0x1000
120 #define BIT_13 0x2000
121 #define BIT_14 0x4000
122 #define BIT_15 0x8000
123 #define BIT_16 0x10000
124 #define BIT_17 0x20000
125 #define BIT_18 0x40000
126 #define BIT_19 0x80000
127 #define BIT_20 0x100000
128 #define BIT_21 0x200000
129 #define BIT_22 0x400000
130 #define BIT_23 0x800000
131 #define BIT_24 0x1000000
132 #define BIT_25 0x2000000
133 #define BIT_26 0x4000000
134 #define BIT_27 0x8000000
135 #define BIT_28 0x10000000
136 #define BIT_29 0x20000000
137 #define BIT_30 0x40000000
138 #define BIT_31 0x80000000
139
140 #define LSB(x) ((uint8_t)(x))
141 #define MSB(x) ((uint8_t)((uint16_t)(x) >> 8))
142
143 #define LSW(x) ((uint16_t)(x))
144 #define MSW(x) ((uint16_t)((uint32_t)(x) >> 16))
145
146 #define LSD(x) ((uint32_t)((uint64_t)(x)))
147 #define MSD(x) ((uint32_t)((((uint64_t)(x)) >> 16) >> 16))
148
make_handle(uint16_t x,uint16_t y)149 static inline uint32_t make_handle(uint16_t x, uint16_t y)
150 {
151 return ((uint32_t)x << 16) | y;
152 }
153
154 /*
155 * I/O register
156 */
157
rd_reg_byte(const volatile u8 __iomem * addr)158 static inline u8 rd_reg_byte(const volatile u8 __iomem *addr)
159 {
160 return readb(addr);
161 }
162
rd_reg_word(const volatile __le16 __iomem * addr)163 static inline u16 rd_reg_word(const volatile __le16 __iomem *addr)
164 {
165 return readw(addr);
166 }
167
rd_reg_dword(const volatile __le32 __iomem * addr)168 static inline u32 rd_reg_dword(const volatile __le32 __iomem *addr)
169 {
170 return readl(addr);
171 }
172
rd_reg_byte_relaxed(const volatile u8 __iomem * addr)173 static inline u8 rd_reg_byte_relaxed(const volatile u8 __iomem *addr)
174 {
175 return readb_relaxed(addr);
176 }
177
rd_reg_word_relaxed(const volatile __le16 __iomem * addr)178 static inline u16 rd_reg_word_relaxed(const volatile __le16 __iomem *addr)
179 {
180 return readw_relaxed(addr);
181 }
182
rd_reg_dword_relaxed(const volatile __le32 __iomem * addr)183 static inline u32 rd_reg_dword_relaxed(const volatile __le32 __iomem *addr)
184 {
185 return readl_relaxed(addr);
186 }
187
wrt_reg_byte(volatile u8 __iomem * addr,u8 data)188 static inline void wrt_reg_byte(volatile u8 __iomem *addr, u8 data)
189 {
190 return writeb(data, addr);
191 }
192
wrt_reg_word(volatile __le16 __iomem * addr,u16 data)193 static inline void wrt_reg_word(volatile __le16 __iomem *addr, u16 data)
194 {
195 return writew(data, addr);
196 }
197
wrt_reg_dword(volatile __le32 __iomem * addr,u32 data)198 static inline void wrt_reg_dword(volatile __le32 __iomem *addr, u32 data)
199 {
200 return writel(data, addr);
201 }
202
203 /*
204 * ISP83XX specific remote register addresses
205 */
206 #define QLA83XX_LED_PORT0 0x00201320
207 #define QLA83XX_LED_PORT1 0x00201328
208 #define QLA83XX_IDC_DEV_STATE 0x22102384
209 #define QLA83XX_IDC_MAJOR_VERSION 0x22102380
210 #define QLA83XX_IDC_MINOR_VERSION 0x22102398
211 #define QLA83XX_IDC_DRV_PRESENCE 0x22102388
212 #define QLA83XX_IDC_DRIVER_ACK 0x2210238c
213 #define QLA83XX_IDC_CONTROL 0x22102390
214 #define QLA83XX_IDC_AUDIT 0x22102394
215 #define QLA83XX_IDC_LOCK_RECOVERY 0x2210239c
216 #define QLA83XX_DRIVER_LOCKID 0x22102104
217 #define QLA83XX_DRIVER_LOCK 0x8111c028
218 #define QLA83XX_DRIVER_UNLOCK 0x8111c02c
219 #define QLA83XX_FLASH_LOCKID 0x22102100
220 #define QLA83XX_FLASH_LOCK 0x8111c010
221 #define QLA83XX_FLASH_UNLOCK 0x8111c014
222 #define QLA83XX_DEV_PARTINFO1 0x221023e0
223 #define QLA83XX_DEV_PARTINFO2 0x221023e4
224 #define QLA83XX_FW_HEARTBEAT 0x221020b0
225 #define QLA83XX_PEG_HALT_STATUS1 0x221020a8
226 #define QLA83XX_PEG_HALT_STATUS2 0x221020ac
227
228 /* 83XX: Macros defining 8200 AEN Reason codes */
229 #define IDC_DEVICE_STATE_CHANGE BIT_0
230 #define IDC_PEG_HALT_STATUS_CHANGE BIT_1
231 #define IDC_NIC_FW_REPORTED_FAILURE BIT_2
232 #define IDC_HEARTBEAT_FAILURE BIT_3
233
234 /* 83XX: Macros defining 8200 AEN Error-levels */
235 #define ERR_LEVEL_NON_FATAL 0x1
236 #define ERR_LEVEL_RECOVERABLE_FATAL 0x2
237 #define ERR_LEVEL_UNRECOVERABLE_FATAL 0x4
238
239 /* 83XX: Macros for IDC Version */
240 #define QLA83XX_SUPP_IDC_MAJOR_VERSION 0x01
241 #define QLA83XX_SUPP_IDC_MINOR_VERSION 0x0
242
243 /* 83XX: Macros for scheduling dpc tasks */
244 #define QLA83XX_NIC_CORE_RESET 0x1
245 #define QLA83XX_IDC_STATE_HANDLER 0x2
246 #define QLA83XX_NIC_CORE_UNRECOVERABLE 0x3
247
248 /* 83XX: Macros for defining IDC-Control bits */
249 #define QLA83XX_IDC_RESET_DISABLED BIT_0
250 #define QLA83XX_IDC_GRACEFUL_RESET BIT_1
251
252 /* 83XX: Macros for different timeouts */
253 #define QLA83XX_IDC_INITIALIZATION_TIMEOUT 30
254 #define QLA83XX_IDC_RESET_ACK_TIMEOUT 10
255 #define QLA83XX_MAX_LOCK_RECOVERY_WAIT (2 * HZ)
256
257 /* 83XX: Macros for defining class in DEV-Partition Info register */
258 #define QLA83XX_CLASS_TYPE_NONE 0x0
259 #define QLA83XX_CLASS_TYPE_NIC 0x1
260 #define QLA83XX_CLASS_TYPE_FCOE 0x2
261 #define QLA83XX_CLASS_TYPE_ISCSI 0x3
262
263 /* 83XX: Macros for IDC Lock-Recovery stages */
264 #define IDC_LOCK_RECOVERY_STAGE1 0x1 /* Stage1: Intent for
265 * lock-recovery
266 */
267 #define IDC_LOCK_RECOVERY_STAGE2 0x2 /* Stage2: Perform lock-recovery */
268
269 /* 83XX: Macros for IDC Audit type */
270 #define IDC_AUDIT_TIMESTAMP 0x0 /* IDC-AUDIT: Record timestamp of
271 * dev-state change to NEED-RESET
272 * or NEED-QUIESCENT
273 */
274 #define IDC_AUDIT_COMPLETION 0x1 /* IDC-AUDIT: Record duration of
275 * reset-recovery completion is
276 * second
277 */
278 /* ISP2031: Values for laser on/off */
279 #define PORT_0_2031 0x00201340
280 #define PORT_1_2031 0x00201350
281 #define LASER_ON_2031 0x01800100
282 #define LASER_OFF_2031 0x01800180
283
284 /*
285 * The ISP2312 v2 chip cannot access the FLASH/GPIO registers via MMIO in an
286 * 133Mhz slot.
287 */
288 #define RD_REG_WORD_PIO(addr) (inw((unsigned long)addr))
289 #define WRT_REG_WORD_PIO(addr, data) (outw(data, (unsigned long)addr))
290
291 /*
292 * Fibre Channel device definitions.
293 */
294 #define WWN_SIZE 8 /* Size of WWPN, WWN & WWNN */
295 #define MAX_FIBRE_DEVICES_2100 512
296 #define MAX_FIBRE_DEVICES_2400 2048
297 #define MAX_FIBRE_DEVICES_LOOP 128
298 #define MAX_FIBRE_DEVICES_MAX MAX_FIBRE_DEVICES_2400
299 #define LOOPID_MAP_SIZE (ha->max_fibre_devices)
300 #define MAX_FIBRE_LUNS 0xFFFF
301 #define MAX_HOST_COUNT 16
302
303 /*
304 * Host adapter default definitions.
305 */
306 #define MAX_BUSES 1 /* We only have one bus today */
307 #define MIN_LUNS 8
308 #define MAX_LUNS MAX_FIBRE_LUNS
309 #define MAX_CMDS_PER_LUN 255
310
311 /*
312 * Fibre Channel device definitions.
313 */
314 #define SNS_LAST_LOOP_ID_2100 0xfe
315 #define SNS_LAST_LOOP_ID_2300 0x7ff
316
317 #define LAST_LOCAL_LOOP_ID 0x7d
318 #define SNS_FL_PORT 0x7e
319 #define FABRIC_CONTROLLER 0x7f
320 #define SIMPLE_NAME_SERVER 0x80
321 #define SNS_FIRST_LOOP_ID 0x81
322 #define MANAGEMENT_SERVER 0xfe
323 #define BROADCAST 0xff
324
325 /*
326 * There is no correspondence between an N-PORT id and an AL_PA. Therefore the
327 * valid range of an N-PORT id is 0 through 0x7ef.
328 */
329 #define NPH_LAST_HANDLE 0x7ee
330 #define NPH_MGMT_SERVER 0x7ef /* FFFFEF */
331 #define NPH_SNS 0x7fc /* FFFFFC */
332 #define NPH_FABRIC_CONTROLLER 0x7fd /* FFFFFD */
333 #define NPH_F_PORT 0x7fe /* FFFFFE */
334 #define NPH_IP_BROADCAST 0x7ff /* FFFFFF */
335
336 #define NPH_SNS_LID(ha) (IS_FWI2_CAPABLE(ha) ? NPH_SNS : SIMPLE_NAME_SERVER)
337
338 #define MAX_CMDSZ 16 /* SCSI maximum CDB size. */
339 #include "qla_fw.h"
340
341 struct name_list_extended {
342 struct get_name_list_extended *l;
343 dma_addr_t ldma;
344 struct list_head fcports;
345 u32 size;
346 u8 sent;
347 };
348
349 struct qla_nvme_fc_rjt {
350 struct fcnvme_ls_rjt *c;
351 dma_addr_t cdma;
352 u16 size;
353 };
354
355 struct els_reject {
356 struct fc_els_ls_rjt *c;
357 dma_addr_t cdma;
358 u16 size;
359 };
360
361 /*
362 * Timeout timer counts in seconds
363 */
364 #define PORT_RETRY_TIME 1
365 #define LOOP_DOWN_TIMEOUT 60
366 #define LOOP_DOWN_TIME 255 /* 240 */
367 #define LOOP_DOWN_RESET (LOOP_DOWN_TIME - 30)
368
369 #define DEFAULT_OUTSTANDING_COMMANDS 4096
370 #define MIN_OUTSTANDING_COMMANDS 128
371
372 /* ISP request and response entry counts (37-65535) */
373 #define REQUEST_ENTRY_CNT_2100 128 /* Number of request entries. */
374 #define REQUEST_ENTRY_CNT_2200 2048 /* Number of request entries. */
375 #define REQUEST_ENTRY_CNT_24XX 2048 /* Number of request entries. */
376 #define REQUEST_ENTRY_CNT_83XX 8192 /* Number of request entries. */
377 #define RESPONSE_ENTRY_CNT_83XX 4096 /* Number of response entries.*/
378 #define RESPONSE_ENTRY_CNT_2100 64 /* Number of response entries.*/
379 #define RESPONSE_ENTRY_CNT_2300 512 /* Number of response entries.*/
380 #define RESPONSE_ENTRY_CNT_MQ 128 /* Number of response entries.*/
381 #define ATIO_ENTRY_CNT_24XX 4096 /* Number of ATIO entries. */
382 #define RESPONSE_ENTRY_CNT_FX00 256 /* Number of response entries.*/
383 #define FW_DEF_EXCHANGES_CNT 2048
384 #define FW_MAX_EXCHANGES_CNT (32 * 1024)
385 #define REDUCE_EXCHANGES_CNT (8 * 1024)
386
387 #define SET_DID_STATUS(stat_var, status) (stat_var = status << 16)
388
389 struct req_que;
390 struct qla_tgt_sess;
391
392 struct qla_buf_dsc {
393 u16 tag;
394 #define TAG_FREED 0xffff
395 void *buf;
396 dma_addr_t buf_dma;
397 };
398
399 /*
400 * SCSI Request Block
401 */
402 struct srb_cmd {
403 struct scsi_cmnd *cmd; /* Linux SCSI command pkt */
404 uint32_t request_sense_length;
405 uint32_t fw_sense_length;
406 uint8_t *request_sense_ptr;
407 struct crc_context *crc_ctx;
408 struct ct6_dsd ct6_ctx;
409 struct qla_buf_dsc buf_dsc;
410 };
411
412 /*
413 * SRB flag definitions
414 */
415 #define SRB_DMA_VALID BIT_0 /* Command sent to ISP */
416 #define SRB_GOT_BUF BIT_1
417 #define SRB_FCP_CMND_DMA_VALID BIT_12 /* DIF: DSD List valid */
418 #define SRB_CRC_CTX_DMA_VALID BIT_2 /* DIF: context DMA valid */
419 #define SRB_CRC_PROT_DMA_VALID BIT_4 /* DIF: prot DMA valid */
420 #define SRB_CRC_CTX_DSD_VALID BIT_5 /* DIF: dsd_list valid */
421 #define SRB_WAKEUP_ON_COMP BIT_6
422 #define SRB_DIF_BUNDL_DMA_VALID BIT_7 /* DIF: DMA list valid */
423 #define SRB_EDIF_CLEANUP_DELETE BIT_9
424
425 /* To identify if a srb is of T10-CRC type. @sp => srb_t pointer */
426 #define IS_PROT_IO(sp) (sp->flags & SRB_CRC_CTX_DSD_VALID)
427 #define ISP_REG16_DISCONNECT 0xFFFF
428
be_id_to_le(be_id_t id)429 static inline le_id_t be_id_to_le(be_id_t id)
430 {
431 le_id_t res;
432
433 res.domain = id.domain;
434 res.area = id.area;
435 res.al_pa = id.al_pa;
436
437 return res;
438 }
439
le_id_to_be(le_id_t id)440 static inline be_id_t le_id_to_be(le_id_t id)
441 {
442 be_id_t res;
443
444 res.domain = id.domain;
445 res.area = id.area;
446 res.al_pa = id.al_pa;
447
448 return res;
449 }
450
be_to_port_id(be_id_t id)451 static inline port_id_t be_to_port_id(be_id_t id)
452 {
453 port_id_t res;
454
455 res.b.domain = id.domain;
456 res.b.area = id.area;
457 res.b.al_pa = id.al_pa;
458 res.b.rsvd_1 = 0;
459
460 return res;
461 }
462
port_id_to_be_id(port_id_t port_id)463 static inline be_id_t port_id_to_be_id(port_id_t port_id)
464 {
465 be_id_t res;
466
467 res.domain = port_id.b.domain;
468 res.area = port_id.b.area;
469 res.al_pa = port_id.b.al_pa;
470
471 return res;
472 }
473
474 struct tmf_arg {
475 struct list_head tmf_elem;
476 struct qla_qpair *qpair;
477 struct fc_port *fcport;
478 struct scsi_qla_host *vha;
479 u64 lun;
480 u32 flags;
481 uint8_t modifier;
482 };
483
484 struct els_logo_payload {
485 uint8_t opcode;
486 uint8_t rsvd[3];
487 uint8_t s_id[3];
488 uint8_t rsvd1[1];
489 uint8_t wwpn[WWN_SIZE];
490 };
491
492 struct els_plogi_payload {
493 uint8_t opcode;
494 uint8_t rsvd[3];
495 __be32 data[112 / 4];
496 };
497
498 struct ct_arg {
499 void *iocb;
500 u16 nport_handle;
501 dma_addr_t req_dma;
502 dma_addr_t rsp_dma;
503 u32 req_size;
504 u32 rsp_size;
505 u32 req_allocated_size;
506 u32 rsp_allocated_size;
507 void *req;
508 void *rsp;
509 port_id_t id;
510 };
511
512 struct qla_nvme_lsrjt_pt_arg {
513 struct fc_port *fcport;
514 u8 opcode;
515 u8 vp_idx;
516 u8 reason;
517 u8 explanation;
518 __le16 nport_handle;
519 u16 control_flags;
520 __le16 ox_id;
521 __le32 xchg_address;
522 u32 tx_byte_count, rx_byte_count;
523 dma_addr_t tx_addr, rx_addr;
524 };
525
526 /*
527 * SRB extensions.
528 */
529 struct srb_iocb {
530 union {
531 struct {
532 uint16_t flags;
533 #define SRB_LOGIN_RETRIED BIT_0
534 #define SRB_LOGIN_COND_PLOGI BIT_1
535 #define SRB_LOGIN_SKIP_PRLI BIT_2
536 #define SRB_LOGIN_NVME_PRLI BIT_3
537 #define SRB_LOGIN_PRLI_ONLY BIT_4
538 #define SRB_LOGIN_FCSP BIT_5
539 uint16_t data[2];
540 u32 iop[2];
541 } logio;
542 struct {
543 #define ELS_DCMD_TIMEOUT 20
544 #define ELS_DCMD_LOGO 0x5
545 uint32_t flags;
546 uint32_t els_cmd;
547 struct completion comp;
548 struct els_logo_payload *els_logo_pyld;
549 dma_addr_t els_logo_pyld_dma;
550 } els_logo;
551 struct els_plogi {
552 #define ELS_DCMD_PLOGI 0x3
553 uint32_t flags;
554 uint32_t els_cmd;
555 struct completion comp;
556 struct els_plogi_payload *els_plogi_pyld;
557 struct els_plogi_payload *els_resp_pyld;
558 u32 tx_size;
559 u32 rx_size;
560 dma_addr_t els_plogi_pyld_dma;
561 dma_addr_t els_resp_pyld_dma;
562 __le32 fw_status[3];
563 __le16 comp_status;
564 __le16 len;
565 } els_plogi;
566 struct {
567 /*
568 * Values for flags field below are as
569 * defined in tsk_mgmt_entry struct
570 * for control_flags field in qla_fw.h.
571 */
572 uint64_t lun;
573 uint32_t flags;
574 uint32_t data;
575 struct completion comp;
576 __le16 comp_status;
577
578 uint8_t modifier;
579 uint8_t vp_index;
580 uint16_t loop_id;
581 } tmf;
582 struct {
583 #define SRB_FXDISC_REQ_DMA_VALID BIT_0
584 #define SRB_FXDISC_RESP_DMA_VALID BIT_1
585 #define SRB_FXDISC_REQ_DWRD_VALID BIT_2
586 #define SRB_FXDISC_RSP_DWRD_VALID BIT_3
587 #define FXDISC_TIMEOUT 20
588 uint8_t flags;
589 uint32_t req_len;
590 uint32_t rsp_len;
591 void *req_addr;
592 void *rsp_addr;
593 dma_addr_t req_dma_handle;
594 dma_addr_t rsp_dma_handle;
595 __le32 adapter_id;
596 __le32 adapter_id_hi;
597 __le16 req_func_type;
598 __le32 req_data;
599 __le32 req_data_extra;
600 __le32 result;
601 __le32 seq_number;
602 __le16 fw_flags;
603 struct completion fxiocb_comp;
604 __le32 reserved_0;
605 uint8_t reserved_1;
606 } fxiocb;
607 struct {
608 uint32_t cmd_hndl;
609 __le16 comp_status;
610 __le16 req_que_no;
611 struct completion comp;
612 } abt;
613 struct ct_arg ctarg;
614 #define MAX_IOCB_MB_REG 28
615 #define SIZEOF_IOCB_MB_REG (MAX_IOCB_MB_REG * sizeof(uint16_t))
616 struct {
617 u16 in_mb[MAX_IOCB_MB_REG]; /* from FW */
618 u16 out_mb[MAX_IOCB_MB_REG]; /* to FW */
619 void *out, *in;
620 dma_addr_t out_dma, in_dma;
621 struct completion comp;
622 int rc;
623 } mbx;
624 struct {
625 struct imm_ntfy_from_isp *ntfy;
626 } nack;
627 struct {
628 __le16 comp_status;
629 __le16 rsp_pyld_len;
630 uint8_t aen_op;
631 void *desc;
632
633 /* These are only used with ls4 requests */
634 __le32 cmd_len;
635 __le32 rsp_len;
636 dma_addr_t cmd_dma;
637 dma_addr_t rsp_dma;
638 enum nvmefc_fcp_datadir dir;
639 uint32_t dl;
640 uint32_t timeout_sec;
641 __le32 exchange_address;
642 __le16 nport_handle;
643 __le16 ox_id;
644 struct list_head entry;
645 } nvme;
646 struct {
647 u16 cmd;
648 u16 vp_index;
649 } ctrlvp;
650 struct {
651 struct edif_sa_ctl *sa_ctl;
652 struct qla_sa_update_frame sa_frame;
653 } sa_update;
654 } u;
655
656 struct timer_list timer;
657 void (*timeout)(void *);
658 };
659
660 /* Values for srb_ctx type */
661 #define SRB_LOGIN_CMD 1
662 #define SRB_LOGOUT_CMD 2
663 #define SRB_ELS_CMD_RPT 3
664 #define SRB_ELS_CMD_HST 4
665 #define SRB_CT_CMD 5
666 #define SRB_ADISC_CMD 6
667 #define SRB_TM_CMD 7
668 #define SRB_SCSI_CMD 8
669 #define SRB_BIDI_CMD 9
670 #define SRB_FXIOCB_DCMD 10
671 #define SRB_FXIOCB_BCMD 11
672 #define SRB_ABT_CMD 12
673 #define SRB_ELS_DCMD 13
674 #define SRB_MB_IOCB 14
675 #define SRB_CT_PTHRU_CMD 15
676 #define SRB_NACK_PLOGI 16
677 #define SRB_NACK_PRLI 17
678 #define SRB_NACK_LOGO 18
679 #define SRB_NVME_CMD 19
680 #define SRB_NVME_LS 20
681 #define SRB_PRLI_CMD 21
682 #define SRB_CTRL_VP 22
683 #define SRB_PRLO_CMD 23
684 #define SRB_SA_UPDATE 25
685 #define SRB_ELS_CMD_HST_NOLOGIN 26
686 #define SRB_SA_REPLACE 27
687 #define SRB_MARKER 28
688
689 struct qla_els_pt_arg {
690 u8 els_opcode;
691 u8 vp_idx;
692 __le16 nport_handle;
693 u16 control_flags, ox_id;
694 __le32 rx_xchg_address;
695 port_id_t did, sid;
696 u32 tx_len, tx_byte_count, rx_len, rx_byte_count;
697 dma_addr_t tx_addr, rx_addr;
698
699 };
700
701 enum {
702 TYPE_SRB,
703 TYPE_TGT_CMD,
704 TYPE_TGT_TMCMD, /* task management */
705 };
706
707 struct iocb_resource {
708 u8 res_type;
709 u8 exch_cnt;
710 u16 iocb_cnt;
711 };
712
713 struct bsg_cmd {
714 struct bsg_job *bsg_job;
715 union {
716 struct qla_els_pt_arg els_arg;
717 } u;
718 };
719
720 typedef struct srb {
721 /*
722 * Do not move cmd_type field, it needs to
723 * line up with qla_tgt_cmd->cmd_type
724 */
725 uint8_t cmd_type;
726 uint8_t pad[3];
727 struct iocb_resource iores;
728 struct kref cmd_kref; /* need to migrate ref_count over to this */
729 void *priv;
730 struct fc_port *fcport;
731 struct scsi_qla_host *vha;
732 unsigned int start_timer:1;
733 unsigned int abort:1;
734 unsigned int aborted:1;
735 unsigned int completed:1;
736 unsigned int unsol_rsp:1;
737
738 uint32_t handle;
739 uint16_t flags;
740 uint16_t type;
741 const char *name;
742 int iocbs;
743 struct qla_qpair *qpair;
744 struct srb *cmd_sp;
745 struct list_head elem;
746 u32 gen1; /* scratch */
747 u32 gen2; /* scratch */
748 int rc;
749 int retry_count;
750 struct completion *comp;
751 union {
752 struct srb_iocb iocb_cmd;
753 struct bsg_job *bsg_job;
754 struct srb_cmd scmd;
755 struct bsg_cmd bsg_cmd;
756 } u;
757 struct {
758 bool remapped;
759 struct {
760 dma_addr_t dma;
761 void *buf;
762 uint len;
763 } req;
764 struct {
765 dma_addr_t dma;
766 void *buf;
767 uint len;
768 } rsp;
769 } remap;
770 /*
771 * Report completion status @res and call sp_put(@sp). @res is
772 * an NVMe status code, a SCSI result (e.g. DID_OK << 16) or a
773 * QLA_* status value.
774 */
775 void (*done)(struct srb *sp, int res);
776 /* Stop the timer and free @sp. Only used by the FCP code. */
777 void (*free)(struct srb *sp);
778 /*
779 * Call nvme_private->fd->done() and free @sp. Only used by the NVMe
780 * code.
781 */
782 void (*put_fn)(struct kref *kref);
783
784 /*
785 * Report completion for asynchronous commands.
786 */
787 void (*async_done)(struct srb *sp, int res);
788 } srb_t;
789
790 #define GET_CMD_SP(sp) (sp->u.scmd.cmd)
791
792 #define GET_CMD_SENSE_LEN(sp) \
793 (sp->u.scmd.request_sense_length)
794 #define SET_CMD_SENSE_LEN(sp, len) \
795 (sp->u.scmd.request_sense_length = len)
796 #define GET_CMD_SENSE_PTR(sp) \
797 (sp->u.scmd.request_sense_ptr)
798 #define SET_CMD_SENSE_PTR(sp, ptr) \
799 (sp->u.scmd.request_sense_ptr = ptr)
800 #define GET_FW_SENSE_LEN(sp) \
801 (sp->u.scmd.fw_sense_length)
802 #define SET_FW_SENSE_LEN(sp, len) \
803 (sp->u.scmd.fw_sense_length = len)
804
805 struct msg_echo_lb {
806 dma_addr_t send_dma;
807 dma_addr_t rcv_dma;
808 uint16_t req_sg_cnt;
809 uint16_t rsp_sg_cnt;
810 uint16_t options;
811 uint32_t transfer_size;
812 uint32_t iteration_count;
813 };
814
815 /*
816 * ISP I/O Register Set structure definitions.
817 */
818 struct device_reg_2xxx {
819 __le16 flash_address; /* Flash BIOS address */
820 __le16 flash_data; /* Flash BIOS data */
821 __le16 unused_1[1]; /* Gap */
822 __le16 ctrl_status; /* Control/Status */
823 #define CSR_FLASH_64K_BANK BIT_3 /* Flash upper 64K bank select */
824 #define CSR_FLASH_ENABLE BIT_1 /* Flash BIOS Read/Write enable */
825 #define CSR_ISP_SOFT_RESET BIT_0 /* ISP soft reset */
826
827 __le16 ictrl; /* Interrupt control */
828 #define ICR_EN_INT BIT_15 /* ISP enable interrupts. */
829 #define ICR_EN_RISC BIT_3 /* ISP enable RISC interrupts. */
830
831 __le16 istatus; /* Interrupt status */
832 #define ISR_RISC_INT BIT_3 /* RISC interrupt */
833
834 __le16 semaphore; /* Semaphore */
835 __le16 nvram; /* NVRAM register. */
836 #define NVR_DESELECT 0
837 #define NVR_BUSY BIT_15
838 #define NVR_WRT_ENABLE BIT_14 /* Write enable */
839 #define NVR_PR_ENABLE BIT_13 /* Protection register enable */
840 #define NVR_DATA_IN BIT_3
841 #define NVR_DATA_OUT BIT_2
842 #define NVR_SELECT BIT_1
843 #define NVR_CLOCK BIT_0
844
845 #define NVR_WAIT_CNT 20000
846
847 union {
848 struct {
849 __le16 mailbox0;
850 __le16 mailbox1;
851 __le16 mailbox2;
852 __le16 mailbox3;
853 __le16 mailbox4;
854 __le16 mailbox5;
855 __le16 mailbox6;
856 __le16 mailbox7;
857 __le16 unused_2[59]; /* Gap */
858 } __attribute__((packed)) isp2100;
859 struct {
860 /* Request Queue */
861 __le16 req_q_in; /* In-Pointer */
862 __le16 req_q_out; /* Out-Pointer */
863 /* Response Queue */
864 __le16 rsp_q_in; /* In-Pointer */
865 __le16 rsp_q_out; /* Out-Pointer */
866
867 /* RISC to Host Status */
868 __le32 host_status;
869 #define HSR_RISC_INT BIT_15 /* RISC interrupt */
870 #define HSR_RISC_PAUSED BIT_8 /* RISC Paused */
871
872 /* Host to Host Semaphore */
873 __le16 host_semaphore;
874 __le16 unused_3[17]; /* Gap */
875 __le16 mailbox0;
876 __le16 mailbox1;
877 __le16 mailbox2;
878 __le16 mailbox3;
879 __le16 mailbox4;
880 __le16 mailbox5;
881 __le16 mailbox6;
882 __le16 mailbox7;
883 __le16 mailbox8;
884 __le16 mailbox9;
885 __le16 mailbox10;
886 __le16 mailbox11;
887 __le16 mailbox12;
888 __le16 mailbox13;
889 __le16 mailbox14;
890 __le16 mailbox15;
891 __le16 mailbox16;
892 __le16 mailbox17;
893 __le16 mailbox18;
894 __le16 mailbox19;
895 __le16 mailbox20;
896 __le16 mailbox21;
897 __le16 mailbox22;
898 __le16 mailbox23;
899 __le16 mailbox24;
900 __le16 mailbox25;
901 __le16 mailbox26;
902 __le16 mailbox27;
903 __le16 mailbox28;
904 __le16 mailbox29;
905 __le16 mailbox30;
906 __le16 mailbox31;
907 __le16 fb_cmd;
908 __le16 unused_4[10]; /* Gap */
909 } __attribute__((packed)) isp2300;
910 } u;
911
912 __le16 fpm_diag_config;
913 __le16 unused_5[0x4]; /* Gap */
914 __le16 risc_hw;
915 __le16 unused_5_1; /* Gap */
916 __le16 pcr; /* Processor Control Register. */
917 __le16 unused_6[0x5]; /* Gap */
918 __le16 mctr; /* Memory Configuration and Timing. */
919 __le16 unused_7[0x3]; /* Gap */
920 __le16 fb_cmd_2100; /* Unused on 23XX */
921 __le16 unused_8[0x3]; /* Gap */
922 __le16 hccr; /* Host command & control register. */
923 #define HCCR_HOST_INT BIT_7 /* Host interrupt bit */
924 #define HCCR_RISC_PAUSE BIT_5 /* Pause mode bit */
925 /* HCCR commands */
926 #define HCCR_RESET_RISC 0x1000 /* Reset RISC */
927 #define HCCR_PAUSE_RISC 0x2000 /* Pause RISC */
928 #define HCCR_RELEASE_RISC 0x3000 /* Release RISC from reset. */
929 #define HCCR_SET_HOST_INT 0x5000 /* Set host interrupt */
930 #define HCCR_CLR_HOST_INT 0x6000 /* Clear HOST interrupt */
931 #define HCCR_CLR_RISC_INT 0x7000 /* Clear RISC interrupt */
932 #define HCCR_DISABLE_PARITY_PAUSE 0x4001 /* Disable parity error RISC pause. */
933 #define HCCR_ENABLE_PARITY 0xA000 /* Enable PARITY interrupt */
934
935 __le16 unused_9[5]; /* Gap */
936 __le16 gpiod; /* GPIO Data register. */
937 __le16 gpioe; /* GPIO Enable register. */
938 #define GPIO_LED_MASK 0x00C0
939 #define GPIO_LED_GREEN_OFF_AMBER_OFF 0x0000
940 #define GPIO_LED_GREEN_ON_AMBER_OFF 0x0040
941 #define GPIO_LED_GREEN_OFF_AMBER_ON 0x0080
942 #define GPIO_LED_GREEN_ON_AMBER_ON 0x00C0
943 #define GPIO_LED_ALL_OFF 0x0000
944 #define GPIO_LED_RED_ON_OTHER_OFF 0x0001 /* isp2322 */
945 #define GPIO_LED_RGA_ON 0x00C1 /* isp2322: red green amber */
946
947 union {
948 struct {
949 __le16 unused_10[8]; /* Gap */
950 __le16 mailbox8;
951 __le16 mailbox9;
952 __le16 mailbox10;
953 __le16 mailbox11;
954 __le16 mailbox12;
955 __le16 mailbox13;
956 __le16 mailbox14;
957 __le16 mailbox15;
958 __le16 mailbox16;
959 __le16 mailbox17;
960 __le16 mailbox18;
961 __le16 mailbox19;
962 __le16 mailbox20;
963 __le16 mailbox21;
964 __le16 mailbox22;
965 __le16 mailbox23; /* Also probe reg. */
966 } __attribute__((packed)) isp2200;
967 } u_end;
968 };
969
970 struct device_reg_25xxmq {
971 __le32 req_q_in;
972 __le32 req_q_out;
973 __le32 rsp_q_in;
974 __le32 rsp_q_out;
975 __le32 atio_q_in;
976 __le32 atio_q_out;
977 };
978
979
980 struct device_reg_fx00 {
981 __le32 mailbox0; /* 00 */
982 __le32 mailbox1; /* 04 */
983 __le32 mailbox2; /* 08 */
984 __le32 mailbox3; /* 0C */
985 __le32 mailbox4; /* 10 */
986 __le32 mailbox5; /* 14 */
987 __le32 mailbox6; /* 18 */
988 __le32 mailbox7; /* 1C */
989 __le32 mailbox8; /* 20 */
990 __le32 mailbox9; /* 24 */
991 __le32 mailbox10; /* 28 */
992 __le32 mailbox11;
993 __le32 mailbox12;
994 __le32 mailbox13;
995 __le32 mailbox14;
996 __le32 mailbox15;
997 __le32 mailbox16;
998 __le32 mailbox17;
999 __le32 mailbox18;
1000 __le32 mailbox19;
1001 __le32 mailbox20;
1002 __le32 mailbox21;
1003 __le32 mailbox22;
1004 __le32 mailbox23;
1005 __le32 mailbox24;
1006 __le32 mailbox25;
1007 __le32 mailbox26;
1008 __le32 mailbox27;
1009 __le32 mailbox28;
1010 __le32 mailbox29;
1011 __le32 mailbox30;
1012 __le32 mailbox31;
1013 __le32 aenmailbox0;
1014 __le32 aenmailbox1;
1015 __le32 aenmailbox2;
1016 __le32 aenmailbox3;
1017 __le32 aenmailbox4;
1018 __le32 aenmailbox5;
1019 __le32 aenmailbox6;
1020 __le32 aenmailbox7;
1021 /* Request Queue. */
1022 __le32 req_q_in; /* A0 - Request Queue In-Pointer */
1023 __le32 req_q_out; /* A4 - Request Queue Out-Pointer */
1024 /* Response Queue. */
1025 __le32 rsp_q_in; /* A8 - Response Queue In-Pointer */
1026 __le32 rsp_q_out; /* AC - Response Queue Out-Pointer */
1027 /* Init values shadowed on FW Up Event */
1028 __le32 initval0; /* B0 */
1029 __le32 initval1; /* B4 */
1030 __le32 initval2; /* B8 */
1031 __le32 initval3; /* BC */
1032 __le32 initval4; /* C0 */
1033 __le32 initval5; /* C4 */
1034 __le32 initval6; /* C8 */
1035 __le32 initval7; /* CC */
1036 __le32 fwheartbeat; /* D0 */
1037 __le32 pseudoaen; /* D4 */
1038 };
1039
1040
1041
1042 typedef union {
1043 struct device_reg_2xxx isp;
1044 struct device_reg_24xx isp24;
1045 struct device_reg_25xxmq isp25mq;
1046 struct device_reg_82xx isp82;
1047 struct device_reg_fx00 ispfx00;
1048 } __iomem device_reg_t;
1049
1050 #define ISP_REQ_Q_IN(ha, reg) \
1051 (IS_QLA2100(ha) || IS_QLA2200(ha) ? \
1052 &(reg)->u.isp2100.mailbox4 : \
1053 &(reg)->u.isp2300.req_q_in)
1054 #define ISP_REQ_Q_OUT(ha, reg) \
1055 (IS_QLA2100(ha) || IS_QLA2200(ha) ? \
1056 &(reg)->u.isp2100.mailbox4 : \
1057 &(reg)->u.isp2300.req_q_out)
1058 #define ISP_RSP_Q_IN(ha, reg) \
1059 (IS_QLA2100(ha) || IS_QLA2200(ha) ? \
1060 &(reg)->u.isp2100.mailbox5 : \
1061 &(reg)->u.isp2300.rsp_q_in)
1062 #define ISP_RSP_Q_OUT(ha, reg) \
1063 (IS_QLA2100(ha) || IS_QLA2200(ha) ? \
1064 &(reg)->u.isp2100.mailbox5 : \
1065 &(reg)->u.isp2300.rsp_q_out)
1066
1067 #define ISP_ATIO_Q_IN(vha) (vha->hw->tgt.atio_q_in)
1068 #define ISP_ATIO_Q_OUT(vha) (vha->hw->tgt.atio_q_out)
1069
1070 #define MAILBOX_REG(ha, reg, num) \
1071 (IS_QLA2100(ha) || IS_QLA2200(ha) ? \
1072 (num < 8 ? \
1073 &(reg)->u.isp2100.mailbox0 + (num) : \
1074 &(reg)->u_end.isp2200.mailbox8 + (num) - 8) : \
1075 &(reg)->u.isp2300.mailbox0 + (num))
1076 #define RD_MAILBOX_REG(ha, reg, num) \
1077 rd_reg_word(MAILBOX_REG(ha, reg, num))
1078 #define WRT_MAILBOX_REG(ha, reg, num, data) \
1079 wrt_reg_word(MAILBOX_REG(ha, reg, num), data)
1080
1081 #define FB_CMD_REG(ha, reg) \
1082 (IS_QLA2100(ha) || IS_QLA2200(ha) ? \
1083 &(reg)->fb_cmd_2100 : \
1084 &(reg)->u.isp2300.fb_cmd)
1085 #define RD_FB_CMD_REG(ha, reg) \
1086 rd_reg_word(FB_CMD_REG(ha, reg))
1087 #define WRT_FB_CMD_REG(ha, reg, data) \
1088 wrt_reg_word(FB_CMD_REG(ha, reg), data)
1089
1090 typedef struct {
1091 uint32_t out_mb; /* outbound from driver */
1092 uint32_t in_mb; /* Incoming from RISC */
1093 uint16_t mb[MAILBOX_REGISTER_COUNT];
1094 long buf_size;
1095 void *bufp;
1096 uint32_t tov;
1097 uint8_t flags;
1098 #define MBX_DMA_IN BIT_0
1099 #define MBX_DMA_OUT BIT_1
1100 #define IOCTL_CMD BIT_2
1101 } mbx_cmd_t;
1102
1103 struct mbx_cmd_32 {
1104 uint32_t out_mb; /* outbound from driver */
1105 uint32_t in_mb; /* Incoming from RISC */
1106 uint32_t mb[MAILBOX_REGISTER_COUNT];
1107 long buf_size;
1108 void *bufp;
1109 uint32_t tov;
1110 uint8_t flags;
1111 #define MBX_DMA_IN BIT_0
1112 #define MBX_DMA_OUT BIT_1
1113 #define IOCTL_CMD BIT_2
1114 };
1115
1116
1117 #define MBX_TOV_SECONDS 30
1118
1119 /*
1120 * ISP product identification definitions in mailboxes after reset.
1121 */
1122 #define PROD_ID_1 0x4953
1123 #define PROD_ID_2 0x0000
1124 #define PROD_ID_2a 0x5020
1125 #define PROD_ID_3 0x2020
1126
1127 /*
1128 * ISP mailbox Self-Test status codes
1129 */
1130 #define MBS_FRM_ALIVE 0 /* Firmware Alive. */
1131 #define MBS_CHKSUM_ERR 1 /* Checksum Error. */
1132 #define MBS_BUSY 4 /* Busy. */
1133
1134 /*
1135 * ISP mailbox command complete status codes
1136 */
1137 #define MBS_COMMAND_COMPLETE 0x4000
1138 #define MBS_INVALID_COMMAND 0x4001
1139 #define MBS_HOST_INTERFACE_ERROR 0x4002
1140 #define MBS_TEST_FAILED 0x4003
1141 #define MBS_COMMAND_ERROR 0x4005
1142 #define MBS_COMMAND_PARAMETER_ERROR 0x4006
1143 #define MBS_PORT_ID_USED 0x4007
1144 #define MBS_LOOP_ID_USED 0x4008
1145 #define MBS_ALL_IDS_IN_USE 0x4009
1146 #define MBS_NOT_LOGGED_IN 0x400A
1147 #define MBS_LINK_DOWN_ERROR 0x400B
1148 #define MBS_DIAG_ECHO_TEST_ERROR 0x400C
1149
qla2xxx_is_valid_mbs(unsigned int mbs)1150 static inline bool qla2xxx_is_valid_mbs(unsigned int mbs)
1151 {
1152 return MBS_COMMAND_COMPLETE <= mbs && mbs <= MBS_DIAG_ECHO_TEST_ERROR;
1153 }
1154
1155 /*
1156 * ISP mailbox asynchronous event status codes
1157 */
1158 #define MBA_ASYNC_EVENT 0x8000 /* Asynchronous event. */
1159 #define MBA_RESET 0x8001 /* Reset Detected. */
1160 #define MBA_SYSTEM_ERR 0x8002 /* System Error. */
1161 #define MBA_REQ_TRANSFER_ERR 0x8003 /* Request Transfer Error. */
1162 #define MBA_RSP_TRANSFER_ERR 0x8004 /* Response Transfer Error. */
1163 #define MBA_WAKEUP_THRES 0x8005 /* Request Queue Wake-up. */
1164 #define MBA_LIP_OCCURRED 0x8010 /* Loop Initialization Procedure */
1165 /* occurred. */
1166 #define MBA_LOOP_UP 0x8011 /* FC Loop UP. */
1167 #define MBA_LOOP_DOWN 0x8012 /* FC Loop Down. */
1168 #define MBA_LIP_RESET 0x8013 /* LIP reset occurred. */
1169 #define MBA_PORT_UPDATE 0x8014 /* Port Database update. */
1170 #define MBA_RSCN_UPDATE 0x8015 /* Register State Chg Notification. */
1171 #define MBA_LIP_F8 0x8016 /* Received a LIP F8. */
1172 #define MBA_LOOP_INIT_ERR 0x8017 /* Loop Initialization Error. */
1173 #define MBA_FABRIC_AUTH_REQ 0x801b /* Fabric Authentication Required. */
1174 #define MBA_CONGN_NOTI_RECV 0x801e /* Congestion Notification Received */
1175 #define MBA_SCSI_COMPLETION 0x8020 /* SCSI Command Complete. */
1176 #define MBA_CTIO_COMPLETION 0x8021 /* CTIO Complete. */
1177 #define MBA_IP_COMPLETION 0x8022 /* IP Transmit Command Complete. */
1178 #define MBA_IP_RECEIVE 0x8023 /* IP Received. */
1179 #define MBA_IP_BROADCAST 0x8024 /* IP Broadcast Received. */
1180 #define MBA_IP_LOW_WATER_MARK 0x8025 /* IP Low Water Mark reached. */
1181 #define MBA_IP_RCV_BUFFER_EMPTY 0x8026 /* IP receive buffer queue empty. */
1182 #define MBA_IP_HDR_DATA_SPLIT 0x8027 /* IP header/data splitting feature */
1183 /* used. */
1184 #define MBA_TRACE_NOTIFICATION 0x8028 /* Trace/Diagnostic notification. */
1185 #define MBA_POINT_TO_POINT 0x8030 /* Point to point mode. */
1186 #define MBA_CMPLT_1_16BIT 0x8031 /* Completion 1 16bit IOSB. */
1187 #define MBA_CMPLT_2_16BIT 0x8032 /* Completion 2 16bit IOSB. */
1188 #define MBA_CMPLT_3_16BIT 0x8033 /* Completion 3 16bit IOSB. */
1189 #define MBA_CMPLT_4_16BIT 0x8034 /* Completion 4 16bit IOSB. */
1190 #define MBA_CMPLT_5_16BIT 0x8035 /* Completion 5 16bit IOSB. */
1191 #define MBA_CHG_IN_CONNECTION 0x8036 /* Change in connection mode. */
1192 #define MBA_RIO_RESPONSE 0x8040 /* RIO response queue update. */
1193 #define MBA_ZIO_RESPONSE 0x8040 /* ZIO response queue update. */
1194 #define MBA_CMPLT_2_32BIT 0x8042 /* Completion 2 32bit IOSB. */
1195 #define MBA_BYPASS_NOTIFICATION 0x8043 /* Auto bypass notification. */
1196 #define MBA_DISCARD_RND_FRAME 0x8048 /* discard RND frame due to error. */
1197 #define MBA_REJECTED_FCP_CMD 0x8049 /* rejected FCP_CMD. */
1198 #define MBA_FW_NOT_STARTED 0x8050 /* Firmware not started */
1199 #define MBA_FW_STARTING 0x8051 /* Firmware starting */
1200 #define MBA_FW_RESTART_CMPLT 0x8060 /* Firmware restart complete */
1201 #define MBA_INIT_REQUIRED 0x8061 /* Initialization required */
1202 #define MBA_SHUTDOWN_REQUESTED 0x8062 /* Shutdown Requested */
1203 #define MBA_TEMPERATURE_ALERT 0x8070 /* Temperature Alert */
1204 #define MBA_DPORT_DIAGNOSTICS 0x8080 /* D-port Diagnostics */
1205 #define MBA_TRANS_INSERT 0x8130 /* Transceiver Insertion */
1206 #define MBA_TRANS_REMOVE 0x8131 /* Transceiver Removal */
1207 #define MBA_FW_INIT_FAILURE 0x8401 /* Firmware initialization failure */
1208 #define MBA_MIRROR_LUN_CHANGE 0x8402 /* Mirror LUN State Change
1209 Notification */
1210 #define MBA_FW_POLL_STATE 0x8600 /* Firmware in poll diagnostic state */
1211 #define MBA_FW_RESET_FCT 0x8502 /* Firmware reset factory defaults */
1212 #define MBA_FW_INIT_INPROGRESS 0x8500 /* Firmware boot in progress */
1213 /* 83XX FCoE specific */
1214 #define MBA_IDC_AEN 0x8200 /* FCoE: NIC Core state change AEN */
1215
1216 /* Interrupt type codes */
1217 #define INTR_ROM_MB_SUCCESS 0x1
1218 #define INTR_ROM_MB_FAILED 0x2
1219 #define INTR_MB_SUCCESS 0x10
1220 #define INTR_MB_FAILED 0x11
1221 #define INTR_ASYNC_EVENT 0x12
1222 #define INTR_RSP_QUE_UPDATE 0x13
1223 #define INTR_RSP_QUE_UPDATE_83XX 0x14
1224 #define INTR_ATIO_QUE_UPDATE 0x1C
1225 #define INTR_ATIO_RSP_QUE_UPDATE 0x1D
1226 #define INTR_ATIO_QUE_UPDATE_27XX 0x1E
1227
1228 /* ISP mailbox loopback echo diagnostic error code */
1229 #define MBS_LB_RESET 0x17
1230
1231 /* AEN mailbox Port Diagnostics test */
1232 #define AEN_START_DIAG_TEST 0x0 /* start the diagnostics */
1233 #define AEN_DONE_DIAG_TEST_WITH_NOERR 0x1 /* Done with no errors */
1234 #define AEN_DONE_DIAG_TEST_WITH_ERR 0x2 /* Done with error.*/
1235
1236 /*
1237 * Firmware options 1, 2, 3.
1238 */
1239 #define FO1_AE_ON_LIPF8 BIT_0
1240 #define FO1_AE_ALL_LIP_RESET BIT_1
1241 #define FO1_CTIO_RETRY BIT_3
1242 #define FO1_DISABLE_LIP_F7_SW BIT_4
1243 #define FO1_DISABLE_100MS_LOS_WAIT BIT_5
1244 #define FO1_DISABLE_GPIO6_7 BIT_6 /* LED bits */
1245 #define FO1_AE_ON_LOOP_INIT_ERR BIT_7
1246 #define FO1_SET_EMPHASIS_SWING BIT_8
1247 #define FO1_AE_AUTO_BYPASS BIT_9
1248 #define FO1_ENABLE_PURE_IOCB BIT_10
1249 #define FO1_AE_PLOGI_RJT BIT_11
1250 #define FO1_ENABLE_ABORT_SEQUENCE BIT_12
1251 #define FO1_AE_QUEUE_FULL BIT_13
1252
1253 #define FO2_ENABLE_ATIO_TYPE_3 BIT_0
1254 #define FO2_REV_LOOPBACK BIT_1
1255
1256 #define FO3_ENABLE_EMERG_IOCB BIT_0
1257 #define FO3_AE_RND_ERROR BIT_1
1258
1259 /* 24XX additional firmware options */
1260 #define ADD_FO_COUNT 3
1261 #define ADD_FO1_DISABLE_GPIO_LED_CTRL BIT_6 /* LED bits */
1262 #define ADD_FO1_ENABLE_PUREX_IOCB BIT_10
1263
1264 #define ADD_FO2_ENABLE_SEL_CLS2 BIT_5
1265
1266 #define ADD_FO3_NO_ABT_ON_LINK_DOWN BIT_14
1267
1268 /*
1269 * ISP mailbox commands
1270 */
1271 #define MBC_LOAD_RAM 1 /* Load RAM. */
1272 #define MBC_EXECUTE_FIRMWARE 2 /* Execute firmware. */
1273 #define MBC_LOAD_FLASH_FIRMWARE 3 /* Load flash firmware. */
1274 #define MBC_READ_RAM_WORD 5 /* Read RAM word. */
1275 #define MBC_MAILBOX_REGISTER_TEST 6 /* Wrap incoming mailboxes */
1276 #define MBC_VERIFY_CHECKSUM 7 /* Verify checksum. */
1277 #define MBC_GET_FIRMWARE_VERSION 8 /* Get firmware revision. */
1278 #define MBC_LOAD_RISC_RAM 9 /* Load RAM command. */
1279 #define MBC_DUMP_RISC_RAM 0xa /* Dump RAM command. */
1280 #define MBC_SECURE_FLASH_UPDATE 0xa /* Secure Flash Update(28xx) */
1281 #define MBC_LOAD_RISC_RAM_EXTENDED 0xb /* Load RAM extended. */
1282 #define MBC_DUMP_RISC_RAM_EXTENDED 0xc /* Dump RAM extended. */
1283 #define MBC_WRITE_RAM_WORD_EXTENDED 0xd /* Write RAM word extended */
1284 #define MBC_READ_RAM_EXTENDED 0xf /* Read RAM extended. */
1285 #define MBC_IOCB_COMMAND 0x12 /* Execute IOCB command. */
1286 #define MBC_STOP_FIRMWARE 0x14 /* Stop firmware. */
1287 #define MBC_ABORT_COMMAND 0x15 /* Abort IOCB command. */
1288 #define MBC_ABORT_DEVICE 0x16 /* Abort device (ID/LUN). */
1289 #define MBC_ABORT_TARGET 0x17 /* Abort target (ID). */
1290 #define MBC_RESET 0x18 /* Reset. */
1291 #define MBC_GET_ADAPTER_LOOP_ID 0x20 /* Get loop id of ISP2200. */
1292 #define MBC_GET_SET_ZIO_THRESHOLD 0x21 /* Get/SET ZIO THRESHOLD. */
1293 #define MBC_GET_RETRY_COUNT 0x22 /* Get f/w retry cnt/delay. */
1294 #define MBC_DISABLE_VI 0x24 /* Disable VI operation. */
1295 #define MBC_ENABLE_VI 0x25 /* Enable VI operation. */
1296 #define MBC_GET_FIRMWARE_OPTION 0x28 /* Get Firmware Options. */
1297 #define MBC_GET_MEM_OFFLOAD_CNTRL_STAT 0x34 /* Memory Offload ctrl/Stat*/
1298 #define MBC_SET_FIRMWARE_OPTION 0x38 /* Set Firmware Options. */
1299 #define MBC_SET_GET_FC_LED_CONFIG 0x3b /* Set/Get FC LED config */
1300 #define MBC_LOOP_PORT_BYPASS 0x40 /* Loop Port Bypass. */
1301 #define MBC_LOOP_PORT_ENABLE 0x41 /* Loop Port Enable. */
1302 #define MBC_GET_RESOURCE_COUNTS 0x42 /* Get Resource Counts. */
1303 #define MBC_NON_PARTICIPATE 0x43 /* Non-Participating Mode. */
1304 #define MBC_DIAGNOSTIC_ECHO 0x44 /* Diagnostic echo. */
1305 #define MBC_DIAGNOSTIC_LOOP_BACK 0x45 /* Diagnostic loop back. */
1306 #define MBC_ONLINE_SELF_TEST 0x46 /* Online self-test. */
1307 #define MBC_ENHANCED_GET_PORT_DATABASE 0x47 /* Get port database + login */
1308 #define MBC_CONFIGURE_VF 0x4b /* Configure VFs */
1309 #define MBC_RESET_LINK_STATUS 0x52 /* Reset Link Error Status */
1310 #define MBC_IOCB_COMMAND_A64 0x54 /* Execute IOCB command (64) */
1311 #define MBC_PORT_LOGOUT 0x56 /* Port Logout request */
1312 #define MBC_SEND_RNID_ELS 0x57 /* Send RNID ELS request */
1313 #define MBC_SET_RNID_PARAMS 0x59 /* Set RNID parameters */
1314 #define MBC_GET_RNID_PARAMS 0x5a /* Get RNID parameters */
1315 #define MBC_DATA_RATE 0x5d /* Data Rate */
1316 #define MBC_INITIALIZE_FIRMWARE 0x60 /* Initialize firmware */
1317 #define MBC_INITIATE_LIP 0x62 /* Initiate Loop */
1318 /* Initialization Procedure */
1319 #define MBC_GET_FC_AL_POSITION_MAP 0x63 /* Get FC_AL Position Map. */
1320 #define MBC_GET_PORT_DATABASE 0x64 /* Get Port Database. */
1321 #define MBC_CLEAR_ACA 0x65 /* Clear ACA. */
1322 #define MBC_TARGET_RESET 0x66 /* Target Reset. */
1323 #define MBC_CLEAR_TASK_SET 0x67 /* Clear Task Set. */
1324 #define MBC_ABORT_TASK_SET 0x68 /* Abort Task Set. */
1325 #define MBC_GET_FIRMWARE_STATE 0x69 /* Get firmware state. */
1326 #define MBC_GET_PORT_NAME 0x6a /* Get port name. */
1327 #define MBC_GET_LINK_STATUS 0x6b /* Get port link status. */
1328 #define MBC_LIP_RESET 0x6c /* LIP reset. */
1329 #define MBC_SEND_SNS_COMMAND 0x6e /* Send Simple Name Server */
1330 /* commandd. */
1331 #define MBC_LOGIN_FABRIC_PORT 0x6f /* Login fabric port. */
1332 #define MBC_SEND_CHANGE_REQUEST 0x70 /* Send Change Request. */
1333 #define MBC_LOGOUT_FABRIC_PORT 0x71 /* Logout fabric port. */
1334 #define MBC_LIP_FULL_LOGIN 0x72 /* Full login LIP. */
1335 #define MBC_LOGIN_LOOP_PORT 0x74 /* Login Loop Port. */
1336 #define MBC_PORT_NODE_NAME_LIST 0x75 /* Get port/node name list. */
1337 #define MBC_INITIALIZE_RECEIVE_QUEUE 0x77 /* Initialize receive queue */
1338 #define MBC_UNLOAD_IP 0x79 /* Shutdown IP */
1339 #define MBC_GET_ID_LIST 0x7C /* Get Port ID list. */
1340 #define MBC_SEND_LFA_COMMAND 0x7D /* Send Loop Fabric Address */
1341 #define MBC_LUN_RESET 0x7E /* Send LUN reset */
1342
1343 /*
1344 * all the Mt. Rainier mailbox command codes that clash with FC/FCoE ones
1345 * should be defined with MBC_MR_*
1346 */
1347 #define MBC_MR_DRV_SHUTDOWN 0x6A
1348
1349 /*
1350 * ISP24xx mailbox commands
1351 */
1352 #define MBC_WRITE_SERDES 0x3 /* Write serdes word. */
1353 #define MBC_READ_SERDES 0x4 /* Read serdes word. */
1354 #define MBC_LOAD_DUMP_MPI_RAM 0x5 /* Load/Dump MPI RAM. */
1355 #define MBC_SERDES_PARAMS 0x10 /* Serdes Tx Parameters. */
1356 #define MBC_GET_IOCB_STATUS 0x12 /* Get IOCB status command. */
1357 #define MBC_PORT_PARAMS 0x1A /* Port iDMA Parameters. */
1358 #define MBC_GET_TIMEOUT_PARAMS 0x22 /* Get FW timeouts. */
1359 #define MBC_TRACE_CONTROL 0x27 /* Trace control command. */
1360 #define MBC_GEN_SYSTEM_ERROR 0x2a /* Generate System Error. */
1361 #define MBC_WRITE_SFP 0x30 /* Write SFP Data. */
1362 #define MBC_READ_SFP 0x31 /* Read SFP Data. */
1363 #define MBC_SET_TIMEOUT_PARAMS 0x32 /* Set FW timeouts. */
1364 #define MBC_DPORT_DIAGNOSTICS 0x47 /* D-Port Diagnostics */
1365 #define MBC_MID_INITIALIZE_FIRMWARE 0x48 /* MID Initialize firmware. */
1366 #define MBC_MID_GET_VP_DATABASE 0x49 /* MID Get VP Database. */
1367 #define MBC_MID_GET_VP_ENTRY 0x4a /* MID Get VP Entry. */
1368 #define MBC_HOST_MEMORY_COPY 0x53 /* Host Memory Copy. */
1369 #define MBC_SEND_RNFT_ELS 0x5e /* Send RNFT ELS request */
1370 #define MBC_GET_LINK_PRIV_STATS 0x6d /* Get link & private data. */
1371 #define MBC_LINK_INITIALIZATION 0x72 /* Do link initialization. */
1372 #define MBC_SET_VENDOR_ID 0x76 /* Set Vendor ID. */
1373 #define MBC_PORT_RESET 0x120 /* Port Reset */
1374 #define MBC_SET_PORT_CONFIG 0x122 /* Set port configuration */
1375 #define MBC_GET_PORT_CONFIG 0x123 /* Get port configuration */
1376
1377 /*
1378 * ISP81xx mailbox commands
1379 */
1380 #define MBC_WRITE_MPI_REGISTER 0x01 /* Write MPI Register. */
1381
1382 /*
1383 * ISP8044 mailbox commands
1384 */
1385 #define MBC_SET_GET_ETH_SERDES_REG 0x150
1386 #define HCS_WRITE_SERDES 0x3
1387 #define HCS_READ_SERDES 0x4
1388
1389 /*
1390 * ISP2[7|8]xx mailbox commands.
1391 */
1392 #define MBC_MPI_PASSTHROUGH 0x200
1393
1394 /* MBC_MPI_PASSTHROUGH */
1395 #define MPIPT_REQ_V1 1
1396 enum {
1397 MPIPT_SUBCMD_GET_SUP_CMD = 0x10,
1398 MPIPT_SUBCMD_GET_SUP_FEATURE,
1399 MPIPT_SUBCMD_GET_STATUS,
1400 MPIPT_SUBCMD_VALIDATE_FW,
1401 };
1402
1403 enum {
1404 MPIPT_MPI_STATUS = 1,
1405 MPIPT_FCORE_STATUS,
1406 MPIPT_LOCKDOWN_STATUS,
1407 };
1408
1409 /* Firmware return data sizes */
1410 #define FCAL_MAP_SIZE 128
1411
1412 /* Mailbox bit definitions for out_mb and in_mb */
1413 #define MBX_31 BIT_31
1414 #define MBX_30 BIT_30
1415 #define MBX_29 BIT_29
1416 #define MBX_28 BIT_28
1417 #define MBX_27 BIT_27
1418 #define MBX_26 BIT_26
1419 #define MBX_25 BIT_25
1420 #define MBX_24 BIT_24
1421 #define MBX_23 BIT_23
1422 #define MBX_22 BIT_22
1423 #define MBX_21 BIT_21
1424 #define MBX_20 BIT_20
1425 #define MBX_19 BIT_19
1426 #define MBX_18 BIT_18
1427 #define MBX_17 BIT_17
1428 #define MBX_16 BIT_16
1429 #define MBX_15 BIT_15
1430 #define MBX_14 BIT_14
1431 #define MBX_13 BIT_13
1432 #define MBX_12 BIT_12
1433 #define MBX_11 BIT_11
1434 #define MBX_10 BIT_10
1435 #define MBX_9 BIT_9
1436 #define MBX_8 BIT_8
1437 #define MBX_7 BIT_7
1438 #define MBX_6 BIT_6
1439 #define MBX_5 BIT_5
1440 #define MBX_4 BIT_4
1441 #define MBX_3 BIT_3
1442 #define MBX_2 BIT_2
1443 #define MBX_1 BIT_1
1444 #define MBX_0 BIT_0
1445
1446 #define RNID_TYPE_ELS_CMD 0x5
1447 #define RNID_TYPE_PORT_LOGIN 0x7
1448 #define RNID_BUFFER_CREDITS 0x8
1449 #define RNID_TYPE_SET_VERSION 0x9
1450 #define RNID_TYPE_ASIC_TEMP 0xC
1451
1452 #define ELS_CMD_MAP_SIZE 32
1453
1454 /*
1455 * Firmware state codes from get firmware state mailbox command
1456 */
1457 #define FSTATE_CONFIG_WAIT 0
1458 #define FSTATE_WAIT_AL_PA 1
1459 #define FSTATE_WAIT_LOGIN 2
1460 #define FSTATE_READY 3
1461 #define FSTATE_LOSS_OF_SYNC 4
1462 #define FSTATE_ERROR 5
1463 #define FSTATE_REINIT 6
1464 #define FSTATE_NON_PART 7
1465
1466 #define FSTATE_CONFIG_CORRECT 0
1467 #define FSTATE_P2P_RCV_LIP 1
1468 #define FSTATE_P2P_CHOOSE_LOOP 2
1469 #define FSTATE_P2P_RCV_UNIDEN_LIP 3
1470 #define FSTATE_FATAL_ERROR 4
1471 #define FSTATE_LOOP_BACK_CONN 5
1472
1473 #define QLA27XX_IMG_STATUS_VER_MAJOR 0x01
1474 #define QLA27XX_IMG_STATUS_VER_MINOR 0x00
1475 #define QLA27XX_IMG_STATUS_SIGN 0xFACEFADE
1476 #define QLA28XX_IMG_STATUS_SIGN 0xFACEFADF
1477 #define QLA28XX_IMG_STATUS_SIGN 0xFACEFADF
1478 #define QLA28XX_AUX_IMG_STATUS_SIGN 0xFACEFAED
1479 #define QLA27XX_DEFAULT_IMAGE 0
1480 #define QLA27XX_PRIMARY_IMAGE 1
1481 #define QLA27XX_SECONDARY_IMAGE 2
1482
1483 /*
1484 * Port Database structure definition
1485 * Little endian except where noted.
1486 */
1487 #define PORT_DATABASE_SIZE 128 /* bytes */
1488 typedef struct {
1489 uint8_t options;
1490 uint8_t control;
1491 uint8_t master_state;
1492 uint8_t slave_state;
1493 uint8_t reserved[2];
1494 uint8_t hard_address;
1495 uint8_t reserved_1;
1496 uint8_t port_id[4];
1497 uint8_t node_name[WWN_SIZE];
1498 uint8_t port_name[WWN_SIZE];
1499 __le16 execution_throttle;
1500 uint16_t execution_count;
1501 uint8_t reset_count;
1502 uint8_t reserved_2;
1503 uint16_t resource_allocation;
1504 uint16_t current_allocation;
1505 uint16_t queue_head;
1506 uint16_t queue_tail;
1507 uint16_t transmit_execution_list_next;
1508 uint16_t transmit_execution_list_previous;
1509 uint16_t common_features;
1510 uint16_t total_concurrent_sequences;
1511 uint16_t RO_by_information_category;
1512 uint8_t recipient;
1513 uint8_t initiator;
1514 uint16_t receive_data_size;
1515 uint16_t concurrent_sequences;
1516 uint16_t open_sequences_per_exchange;
1517 uint16_t lun_abort_flags;
1518 uint16_t lun_stop_flags;
1519 uint16_t stop_queue_head;
1520 uint16_t stop_queue_tail;
1521 uint16_t port_retry_timer;
1522 uint16_t next_sequence_id;
1523 uint16_t frame_count;
1524 uint16_t PRLI_payload_length;
1525 uint8_t prli_svc_param_word_0[2]; /* Big endian */
1526 /* Bits 15-0 of word 0 */
1527 uint8_t prli_svc_param_word_3[2]; /* Big endian */
1528 /* Bits 15-0 of word 3 */
1529 uint16_t loop_id;
1530 uint16_t extended_lun_info_list_pointer;
1531 uint16_t extended_lun_stop_list_pointer;
1532 } port_database_t;
1533
1534 /*
1535 * Port database slave/master states
1536 */
1537 #define PD_STATE_DISCOVERY 0
1538 #define PD_STATE_WAIT_DISCOVERY_ACK 1
1539 #define PD_STATE_PORT_LOGIN 2
1540 #define PD_STATE_WAIT_PORT_LOGIN_ACK 3
1541 #define PD_STATE_PROCESS_LOGIN 4
1542 #define PD_STATE_WAIT_PROCESS_LOGIN_ACK 5
1543 #define PD_STATE_PORT_LOGGED_IN 6
1544 #define PD_STATE_PORT_UNAVAILABLE 7
1545 #define PD_STATE_PROCESS_LOGOUT 8
1546 #define PD_STATE_WAIT_PROCESS_LOGOUT_ACK 9
1547 #define PD_STATE_PORT_LOGOUT 10
1548 #define PD_STATE_WAIT_PORT_LOGOUT_ACK 11
1549
1550
1551 #define QLA_ZIO_MODE_6 (BIT_2 | BIT_1)
1552 #define QLA_ZIO_DISABLED 0
1553 #define QLA_ZIO_DEFAULT_TIMER 2
1554
1555 /*
1556 * ISP Initialization Control Block.
1557 * Little endian except where noted.
1558 */
1559 #define ICB_VERSION 1
1560 typedef struct {
1561 uint8_t version;
1562 uint8_t reserved_1;
1563
1564 /*
1565 * LSB BIT 0 = Enable Hard Loop Id
1566 * LSB BIT 1 = Enable Fairness
1567 * LSB BIT 2 = Enable Full-Duplex
1568 * LSB BIT 3 = Enable Fast Posting
1569 * LSB BIT 4 = Enable Target Mode
1570 * LSB BIT 5 = Disable Initiator Mode
1571 * LSB BIT 6 = Enable ADISC
1572 * LSB BIT 7 = Enable Target Inquiry Data
1573 *
1574 * MSB BIT 0 = Enable PDBC Notify
1575 * MSB BIT 1 = Non Participating LIP
1576 * MSB BIT 2 = Descending Loop ID Search
1577 * MSB BIT 3 = Acquire Loop ID in LIPA
1578 * MSB BIT 4 = Stop PortQ on Full Status
1579 * MSB BIT 5 = Full Login after LIP
1580 * MSB BIT 6 = Node Name Option
1581 * MSB BIT 7 = Ext IFWCB enable bit
1582 */
1583 uint8_t firmware_options[2];
1584
1585 __le16 frame_payload_size;
1586 __le16 max_iocb_allocation;
1587 __le16 execution_throttle;
1588 uint8_t retry_count;
1589 uint8_t retry_delay; /* unused */
1590 uint8_t port_name[WWN_SIZE]; /* Big endian. */
1591 uint16_t hard_address;
1592 uint8_t inquiry_data;
1593 uint8_t login_timeout;
1594 uint8_t node_name[WWN_SIZE]; /* Big endian. */
1595
1596 __le16 request_q_outpointer;
1597 __le16 response_q_inpointer;
1598 __le16 request_q_length;
1599 __le16 response_q_length;
1600 __le64 request_q_address __packed;
1601 __le64 response_q_address __packed;
1602
1603 __le16 lun_enables;
1604 uint8_t command_resource_count;
1605 uint8_t immediate_notify_resource_count;
1606 __le16 timeout;
1607 uint8_t reserved_2[2];
1608
1609 /*
1610 * LSB BIT 0 = Timer Operation mode bit 0
1611 * LSB BIT 1 = Timer Operation mode bit 1
1612 * LSB BIT 2 = Timer Operation mode bit 2
1613 * LSB BIT 3 = Timer Operation mode bit 3
1614 * LSB BIT 4 = Init Config Mode bit 0
1615 * LSB BIT 5 = Init Config Mode bit 1
1616 * LSB BIT 6 = Init Config Mode bit 2
1617 * LSB BIT 7 = Enable Non part on LIHA failure
1618 *
1619 * MSB BIT 0 = Enable class 2
1620 * MSB BIT 1 = Enable ACK0
1621 * MSB BIT 2 =
1622 * MSB BIT 3 =
1623 * MSB BIT 4 = FC Tape Enable
1624 * MSB BIT 5 = Enable FC Confirm
1625 * MSB BIT 6 = Enable command queuing in target mode
1626 * MSB BIT 7 = No Logo On Link Down
1627 */
1628 uint8_t add_firmware_options[2];
1629
1630 uint8_t response_accumulation_timer;
1631 uint8_t interrupt_delay_timer;
1632
1633 /*
1634 * LSB BIT 0 = Enable Read xfr_rdy
1635 * LSB BIT 1 = Soft ID only
1636 * LSB BIT 2 =
1637 * LSB BIT 3 =
1638 * LSB BIT 4 = FCP RSP Payload [0]
1639 * LSB BIT 5 = FCP RSP Payload [1] / Sbus enable - 2200
1640 * LSB BIT 6 = Enable Out-of-Order frame handling
1641 * LSB BIT 7 = Disable Automatic PLOGI on Local Loop
1642 *
1643 * MSB BIT 0 = Sbus enable - 2300
1644 * MSB BIT 1 =
1645 * MSB BIT 2 =
1646 * MSB BIT 3 =
1647 * MSB BIT 4 = LED mode
1648 * MSB BIT 5 = enable 50 ohm termination
1649 * MSB BIT 6 = Data Rate (2300 only)
1650 * MSB BIT 7 = Data Rate (2300 only)
1651 */
1652 uint8_t special_options[2];
1653
1654 uint8_t reserved_3[26];
1655 } init_cb_t;
1656
1657 /* Special Features Control Block */
1658 struct init_sf_cb {
1659 uint8_t format;
1660 uint8_t reserved0;
1661 /*
1662 * BIT 15-14 = Reserved
1663 * BIT_13 = SAN Congestion Management (1 - Enabled, 0 - Disabled)
1664 * BIT_12 = Remote Write Optimization (1 - Enabled, 0 - Disabled)
1665 * BIT 11-0 = Reserved
1666 */
1667 __le16 flags;
1668 uint8_t reserved1[32];
1669 uint16_t discard_OHRB_timeout_value;
1670 uint16_t remote_write_opt_queue_num;
1671 uint8_t reserved2[40];
1672 uint8_t scm_related_parameter[16];
1673 uint8_t reserved3[32];
1674 };
1675
1676 /*
1677 * Get Link Status mailbox command return buffer.
1678 */
1679 #define GLSO_SEND_RPS BIT_0
1680 #define GLSO_USE_DID BIT_3
1681
1682 struct link_statistics {
1683 __le32 link_fail_cnt;
1684 __le32 loss_sync_cnt;
1685 __le32 loss_sig_cnt;
1686 __le32 prim_seq_err_cnt;
1687 __le32 inval_xmit_word_cnt;
1688 __le32 inval_crc_cnt;
1689 __le32 lip_cnt;
1690 __le32 link_up_cnt;
1691 __le32 link_down_loop_init_tmo;
1692 __le32 link_down_los;
1693 __le32 link_down_loss_rcv_clk;
1694 uint32_t reserved0[5];
1695 __le32 port_cfg_chg;
1696 uint32_t reserved1[11];
1697 __le32 rsp_q_full;
1698 __le32 atio_q_full;
1699 __le32 drop_ae;
1700 __le32 els_proto_err;
1701 __le32 reserved2;
1702 __le32 tx_frames;
1703 __le32 rx_frames;
1704 __le32 discarded_frames;
1705 __le32 dropped_frames;
1706 uint32_t reserved3;
1707 __le32 nos_rcvd;
1708 uint32_t reserved4[4];
1709 __le32 tx_prjt;
1710 __le32 rcv_exfail;
1711 __le32 rcv_abts;
1712 __le32 seq_frm_miss;
1713 __le32 corr_err;
1714 __le32 mb_rqst;
1715 __le32 nport_full;
1716 __le32 eofa;
1717 uint32_t reserved5;
1718 __le64 fpm_recv_word_cnt;
1719 __le64 fpm_disc_word_cnt;
1720 __le64 fpm_xmit_word_cnt;
1721 uint32_t reserved6[70];
1722 };
1723
1724 /*
1725 * NVRAM Command values.
1726 */
1727 #define NV_START_BIT BIT_2
1728 #define NV_WRITE_OP (BIT_26+BIT_24)
1729 #define NV_READ_OP (BIT_26+BIT_25)
1730 #define NV_ERASE_OP (BIT_26+BIT_25+BIT_24)
1731 #define NV_MASK_OP (BIT_26+BIT_25+BIT_24)
1732 #define NV_DELAY_COUNT 10
1733
1734 /*
1735 * QLogic ISP2100, ISP2200 and ISP2300 NVRAM structure definition.
1736 */
1737 typedef struct {
1738 /*
1739 * NVRAM header
1740 */
1741 uint8_t id[4];
1742 uint8_t nvram_version;
1743 uint8_t reserved_0;
1744
1745 /*
1746 * NVRAM RISC parameter block
1747 */
1748 uint8_t parameter_block_version;
1749 uint8_t reserved_1;
1750
1751 /*
1752 * LSB BIT 0 = Enable Hard Loop Id
1753 * LSB BIT 1 = Enable Fairness
1754 * LSB BIT 2 = Enable Full-Duplex
1755 * LSB BIT 3 = Enable Fast Posting
1756 * LSB BIT 4 = Enable Target Mode
1757 * LSB BIT 5 = Disable Initiator Mode
1758 * LSB BIT 6 = Enable ADISC
1759 * LSB BIT 7 = Enable Target Inquiry Data
1760 *
1761 * MSB BIT 0 = Enable PDBC Notify
1762 * MSB BIT 1 = Non Participating LIP
1763 * MSB BIT 2 = Descending Loop ID Search
1764 * MSB BIT 3 = Acquire Loop ID in LIPA
1765 * MSB BIT 4 = Stop PortQ on Full Status
1766 * MSB BIT 5 = Full Login after LIP
1767 * MSB BIT 6 = Node Name Option
1768 * MSB BIT 7 = Ext IFWCB enable bit
1769 */
1770 uint8_t firmware_options[2];
1771
1772 __le16 frame_payload_size;
1773 __le16 max_iocb_allocation;
1774 __le16 execution_throttle;
1775 uint8_t retry_count;
1776 uint8_t retry_delay; /* unused */
1777 uint8_t port_name[WWN_SIZE]; /* Big endian. */
1778 uint16_t hard_address;
1779 uint8_t inquiry_data;
1780 uint8_t login_timeout;
1781 uint8_t node_name[WWN_SIZE]; /* Big endian. */
1782
1783 /*
1784 * LSB BIT 0 = Timer Operation mode bit 0
1785 * LSB BIT 1 = Timer Operation mode bit 1
1786 * LSB BIT 2 = Timer Operation mode bit 2
1787 * LSB BIT 3 = Timer Operation mode bit 3
1788 * LSB BIT 4 = Init Config Mode bit 0
1789 * LSB BIT 5 = Init Config Mode bit 1
1790 * LSB BIT 6 = Init Config Mode bit 2
1791 * LSB BIT 7 = Enable Non part on LIHA failure
1792 *
1793 * MSB BIT 0 = Enable class 2
1794 * MSB BIT 1 = Enable ACK0
1795 * MSB BIT 2 =
1796 * MSB BIT 3 =
1797 * MSB BIT 4 = FC Tape Enable
1798 * MSB BIT 5 = Enable FC Confirm
1799 * MSB BIT 6 = Enable command queuing in target mode
1800 * MSB BIT 7 = No Logo On Link Down
1801 */
1802 uint8_t add_firmware_options[2];
1803
1804 uint8_t response_accumulation_timer;
1805 uint8_t interrupt_delay_timer;
1806
1807 /*
1808 * LSB BIT 0 = Enable Read xfr_rdy
1809 * LSB BIT 1 = Soft ID only
1810 * LSB BIT 2 =
1811 * LSB BIT 3 =
1812 * LSB BIT 4 = FCP RSP Payload [0]
1813 * LSB BIT 5 = FCP RSP Payload [1] / Sbus enable - 2200
1814 * LSB BIT 6 = Enable Out-of-Order frame handling
1815 * LSB BIT 7 = Disable Automatic PLOGI on Local Loop
1816 *
1817 * MSB BIT 0 = Sbus enable - 2300
1818 * MSB BIT 1 =
1819 * MSB BIT 2 =
1820 * MSB BIT 3 =
1821 * MSB BIT 4 = LED mode
1822 * MSB BIT 5 = enable 50 ohm termination
1823 * MSB BIT 6 = Data Rate (2300 only)
1824 * MSB BIT 7 = Data Rate (2300 only)
1825 */
1826 uint8_t special_options[2];
1827
1828 /* Reserved for expanded RISC parameter block */
1829 uint8_t reserved_2[22];
1830
1831 /*
1832 * LSB BIT 0 = Tx Sensitivity 1G bit 0
1833 * LSB BIT 1 = Tx Sensitivity 1G bit 1
1834 * LSB BIT 2 = Tx Sensitivity 1G bit 2
1835 * LSB BIT 3 = Tx Sensitivity 1G bit 3
1836 * LSB BIT 4 = Rx Sensitivity 1G bit 0
1837 * LSB BIT 5 = Rx Sensitivity 1G bit 1
1838 * LSB BIT 6 = Rx Sensitivity 1G bit 2
1839 * LSB BIT 7 = Rx Sensitivity 1G bit 3
1840 *
1841 * MSB BIT 0 = Tx Sensitivity 2G bit 0
1842 * MSB BIT 1 = Tx Sensitivity 2G bit 1
1843 * MSB BIT 2 = Tx Sensitivity 2G bit 2
1844 * MSB BIT 3 = Tx Sensitivity 2G bit 3
1845 * MSB BIT 4 = Rx Sensitivity 2G bit 0
1846 * MSB BIT 5 = Rx Sensitivity 2G bit 1
1847 * MSB BIT 6 = Rx Sensitivity 2G bit 2
1848 * MSB BIT 7 = Rx Sensitivity 2G bit 3
1849 *
1850 * LSB BIT 0 = Output Swing 1G bit 0
1851 * LSB BIT 1 = Output Swing 1G bit 1
1852 * LSB BIT 2 = Output Swing 1G bit 2
1853 * LSB BIT 3 = Output Emphasis 1G bit 0
1854 * LSB BIT 4 = Output Emphasis 1G bit 1
1855 * LSB BIT 5 = Output Swing 2G bit 0
1856 * LSB BIT 6 = Output Swing 2G bit 1
1857 * LSB BIT 7 = Output Swing 2G bit 2
1858 *
1859 * MSB BIT 0 = Output Emphasis 2G bit 0
1860 * MSB BIT 1 = Output Emphasis 2G bit 1
1861 * MSB BIT 2 = Output Enable
1862 * MSB BIT 3 =
1863 * MSB BIT 4 =
1864 * MSB BIT 5 =
1865 * MSB BIT 6 =
1866 * MSB BIT 7 =
1867 */
1868 uint8_t seriallink_options[4];
1869
1870 /*
1871 * NVRAM host parameter block
1872 *
1873 * LSB BIT 0 = Enable spinup delay
1874 * LSB BIT 1 = Disable BIOS
1875 * LSB BIT 2 = Enable Memory Map BIOS
1876 * LSB BIT 3 = Enable Selectable Boot
1877 * LSB BIT 4 = Disable RISC code load
1878 * LSB BIT 5 = Set cache line size 1
1879 * LSB BIT 6 = PCI Parity Disable
1880 * LSB BIT 7 = Enable extended logging
1881 *
1882 * MSB BIT 0 = Enable 64bit addressing
1883 * MSB BIT 1 = Enable lip reset
1884 * MSB BIT 2 = Enable lip full login
1885 * MSB BIT 3 = Enable target reset
1886 * MSB BIT 4 = Enable database storage
1887 * MSB BIT 5 = Enable cache flush read
1888 * MSB BIT 6 = Enable database load
1889 * MSB BIT 7 = Enable alternate WWN
1890 */
1891 uint8_t host_p[2];
1892
1893 uint8_t boot_node_name[WWN_SIZE];
1894 uint8_t boot_lun_number;
1895 uint8_t reset_delay;
1896 uint8_t port_down_retry_count;
1897 uint8_t boot_id_number;
1898 __le16 max_luns_per_target;
1899 uint8_t fcode_boot_port_name[WWN_SIZE];
1900 uint8_t alternate_port_name[WWN_SIZE];
1901 uint8_t alternate_node_name[WWN_SIZE];
1902
1903 /*
1904 * BIT 0 = Selective Login
1905 * BIT 1 = Alt-Boot Enable
1906 * BIT 2 =
1907 * BIT 3 = Boot Order List
1908 * BIT 4 =
1909 * BIT 5 = Selective LUN
1910 * BIT 6 =
1911 * BIT 7 = unused
1912 */
1913 uint8_t efi_parameters;
1914
1915 uint8_t link_down_timeout;
1916
1917 uint8_t adapter_id[16];
1918
1919 uint8_t alt1_boot_node_name[WWN_SIZE];
1920 uint16_t alt1_boot_lun_number;
1921 uint8_t alt2_boot_node_name[WWN_SIZE];
1922 uint16_t alt2_boot_lun_number;
1923 uint8_t alt3_boot_node_name[WWN_SIZE];
1924 uint16_t alt3_boot_lun_number;
1925 uint8_t alt4_boot_node_name[WWN_SIZE];
1926 uint16_t alt4_boot_lun_number;
1927 uint8_t alt5_boot_node_name[WWN_SIZE];
1928 uint16_t alt5_boot_lun_number;
1929 uint8_t alt6_boot_node_name[WWN_SIZE];
1930 uint16_t alt6_boot_lun_number;
1931 uint8_t alt7_boot_node_name[WWN_SIZE];
1932 uint16_t alt7_boot_lun_number;
1933
1934 uint8_t reserved_3[2];
1935
1936 /* Offset 200-215 : Model Number */
1937 uint8_t model_number[16];
1938
1939 /* OEM related items */
1940 uint8_t oem_specific[16];
1941
1942 /*
1943 * NVRAM Adapter Features offset 232-239
1944 *
1945 * LSB BIT 0 = External GBIC
1946 * LSB BIT 1 = Risc RAM parity
1947 * LSB BIT 2 = Buffer Plus Module
1948 * LSB BIT 3 = Multi Chip Adapter
1949 * LSB BIT 4 = Internal connector
1950 * LSB BIT 5 =
1951 * LSB BIT 6 =
1952 * LSB BIT 7 =
1953 *
1954 * MSB BIT 0 =
1955 * MSB BIT 1 =
1956 * MSB BIT 2 =
1957 * MSB BIT 3 =
1958 * MSB BIT 4 =
1959 * MSB BIT 5 =
1960 * MSB BIT 6 =
1961 * MSB BIT 7 =
1962 */
1963 uint8_t adapter_features[2];
1964
1965 uint8_t reserved_4[16];
1966
1967 /* Subsystem vendor ID for ISP2200 */
1968 uint16_t subsystem_vendor_id_2200;
1969
1970 /* Subsystem device ID for ISP2200 */
1971 uint16_t subsystem_device_id_2200;
1972
1973 uint8_t reserved_5;
1974 uint8_t checksum;
1975 } nvram_t;
1976
1977 /*
1978 * ISP queue - response queue entry definition.
1979 */
1980 typedef struct {
1981 uint8_t entry_type; /* Entry type. */
1982 uint8_t entry_count; /* Entry count. */
1983 uint8_t sys_define; /* System defined. */
1984 uint8_t entry_status; /* Entry Status. */
1985 uint32_t handle; /* System defined handle */
1986 uint8_t data[52];
1987 uint32_t signature;
1988 #define RESPONSE_PROCESSED 0xDEADDEAD /* Signature */
1989 } response_t;
1990
1991 /*
1992 * ISP queue - ATIO queue entry definition.
1993 */
1994 struct atio {
1995 uint8_t entry_type; /* Entry type. */
1996 uint8_t entry_count; /* Entry count. */
1997 __le16 attr_n_length;
1998 uint8_t data[56];
1999 uint32_t signature;
2000 #define ATIO_PROCESSED 0xDEADDEAD /* Signature */
2001 };
2002
2003 typedef union {
2004 __le16 extended;
2005 struct {
2006 uint8_t reserved;
2007 uint8_t standard;
2008 } id;
2009 } target_id_t;
2010
2011 #define SET_TARGET_ID(ha, to, from) \
2012 do { \
2013 if (HAS_EXTENDED_IDS(ha)) \
2014 to.extended = cpu_to_le16(from); \
2015 else \
2016 to.id.standard = (uint8_t)from; \
2017 } while (0)
2018
2019 /*
2020 * ISP queue - command entry structure definition.
2021 */
2022 #define COMMAND_TYPE 0x11 /* Command entry */
2023 typedef struct {
2024 uint8_t entry_type; /* Entry type. */
2025 uint8_t entry_count; /* Entry count. */
2026 uint8_t sys_define; /* System defined. */
2027 uint8_t entry_status; /* Entry Status. */
2028 uint32_t handle; /* System handle. */
2029 target_id_t target; /* SCSI ID */
2030 __le16 lun; /* SCSI LUN */
2031 __le16 control_flags; /* Control flags. */
2032 #define CF_WRITE BIT_6
2033 #define CF_READ BIT_5
2034 #define CF_SIMPLE_TAG BIT_3
2035 #define CF_ORDERED_TAG BIT_2
2036 #define CF_HEAD_TAG BIT_1
2037 uint16_t reserved_1;
2038 __le16 timeout; /* Command timeout. */
2039 __le16 dseg_count; /* Data segment count. */
2040 uint8_t scsi_cdb[MAX_CMDSZ]; /* SCSI command words. */
2041 __le32 byte_count; /* Total byte count. */
2042 union {
2043 struct dsd32 dsd32[3];
2044 struct dsd64 dsd64[2];
2045 };
2046 } cmd_entry_t;
2047
2048 /*
2049 * ISP queue - 64-Bit addressing, command entry structure definition.
2050 */
2051 #define COMMAND_A64_TYPE 0x19 /* Command A64 entry */
2052 typedef struct {
2053 uint8_t entry_type; /* Entry type. */
2054 uint8_t entry_count; /* Entry count. */
2055 uint8_t sys_define; /* System defined. */
2056 uint8_t entry_status; /* Entry Status. */
2057 uint32_t handle; /* System handle. */
2058 target_id_t target; /* SCSI ID */
2059 __le16 lun; /* SCSI LUN */
2060 __le16 control_flags; /* Control flags. */
2061 uint16_t reserved_1;
2062 __le16 timeout; /* Command timeout. */
2063 __le16 dseg_count; /* Data segment count. */
2064 uint8_t scsi_cdb[MAX_CMDSZ]; /* SCSI command words. */
2065 uint32_t byte_count; /* Total byte count. */
2066 struct dsd64 dsd[2];
2067 } cmd_a64_entry_t, request_t;
2068
2069 /*
2070 * ISP queue - continuation entry structure definition.
2071 */
2072 #define CONTINUE_TYPE 0x02 /* Continuation entry. */
2073 typedef struct {
2074 uint8_t entry_type; /* Entry type. */
2075 uint8_t entry_count; /* Entry count. */
2076 uint8_t sys_define; /* System defined. */
2077 uint8_t entry_status; /* Entry Status. */
2078 uint32_t reserved;
2079 struct dsd32 dsd[7];
2080 } cont_entry_t;
2081
2082 /*
2083 * ISP queue - 64-Bit addressing, continuation entry structure definition.
2084 */
2085 #define CONTINUE_A64_TYPE 0x0A /* Continuation A64 entry. */
2086 typedef struct {
2087 uint8_t entry_type; /* Entry type. */
2088 uint8_t entry_count; /* Entry count. */
2089 uint8_t sys_define; /* System defined. */
2090 uint8_t entry_status; /* Entry Status. */
2091 struct dsd64 dsd[5];
2092 } cont_a64_entry_t;
2093
2094 #define PO_MODE_DIF_INSERT 0
2095 #define PO_MODE_DIF_REMOVE 1
2096 #define PO_MODE_DIF_PASS 2
2097 #define PO_MODE_DIF_REPLACE 3
2098 #define PO_MODE_DIF_TCP_CKSUM 6
2099 #define PO_ENABLE_INCR_GUARD_SEED BIT_3
2100 #define PO_DISABLE_GUARD_CHECK BIT_4
2101 #define PO_DISABLE_INCR_REF_TAG BIT_5
2102 #define PO_DIS_HEADER_MODE BIT_7
2103 #define PO_ENABLE_DIF_BUNDLING BIT_8
2104 #define PO_DIS_FRAME_MODE BIT_9
2105 #define PO_DIS_VALD_APP_ESC BIT_10 /* Dis validation for escape tag/ffffh */
2106 #define PO_DIS_VALD_APP_REF_ESC BIT_11
2107
2108 #define PO_DIS_APP_TAG_REPL BIT_12 /* disable REG Tag replacement */
2109 #define PO_DIS_REF_TAG_REPL BIT_13
2110 #define PO_DIS_APP_TAG_VALD BIT_14 /* disable REF Tag validation */
2111 #define PO_DIS_REF_TAG_VALD BIT_15
2112
2113 /*
2114 * ISP queue - 64-Bit addressing, continuation crc entry structure definition.
2115 */
2116 struct crc_context {
2117 uint32_t handle; /* System handle. */
2118 __le32 ref_tag;
2119 __le16 app_tag;
2120 uint8_t ref_tag_mask[4]; /* Validation/Replacement Mask*/
2121 uint8_t app_tag_mask[2]; /* Validation/Replacement Mask*/
2122 __le16 guard_seed; /* Initial Guard Seed */
2123 __le16 prot_opts; /* Requested Data Protection Mode */
2124 __le16 blk_size; /* Data size in bytes */
2125 __le16 runt_blk_guard; /* Guard value for runt block (tape
2126 * only) */
2127 __le32 byte_count; /* Total byte count/ total data
2128 * transfer count */
2129 union {
2130 struct {
2131 uint32_t reserved_1;
2132 uint16_t reserved_2;
2133 uint16_t reserved_3;
2134 uint32_t reserved_4;
2135 struct dsd64 data_dsd[1];
2136 uint32_t reserved_5[2];
2137 uint32_t reserved_6;
2138 } nobundling;
2139 struct {
2140 __le32 dif_byte_count; /* Total DIF byte
2141 * count */
2142 uint16_t reserved_1;
2143 __le16 dseg_count; /* Data segment count */
2144 uint32_t reserved_2;
2145 struct dsd64 data_dsd[1];
2146 struct dsd64 dif_dsd;
2147 } bundling;
2148 } u;
2149
2150 struct fcp_cmnd fcp_cmnd;
2151 dma_addr_t crc_ctx_dma;
2152 /* List of DMA context transfers */
2153 struct list_head dsd_list;
2154
2155 /* List of DIF Bundling context DMA address */
2156 struct list_head ldif_dsd_list;
2157 u8 no_ldif_dsd;
2158
2159 struct list_head ldif_dma_hndl_list;
2160 u32 dif_bundl_len;
2161 u8 no_dif_bundl;
2162 /* This structure should not exceed 512 bytes */
2163 };
2164
2165 #define CRC_CONTEXT_LEN_FW (offsetof(struct crc_context, fcp_cmnd.lun))
2166 #define CRC_CONTEXT_FCPCMND_OFF (offsetof(struct crc_context, fcp_cmnd.lun))
2167
2168 /*
2169 * ISP queue - status entry structure definition.
2170 */
2171 #define STATUS_TYPE 0x03 /* Status entry. */
2172 typedef struct {
2173 uint8_t entry_type; /* Entry type. */
2174 uint8_t entry_count; /* Entry count. */
2175 uint8_t sys_define; /* System defined. */
2176 uint8_t entry_status; /* Entry Status. */
2177 uint32_t handle; /* System handle. */
2178 __le16 scsi_status; /* SCSI status. */
2179 __le16 comp_status; /* Completion status. */
2180 __le16 state_flags; /* State flags. */
2181 __le16 status_flags; /* Status flags. */
2182 __le16 rsp_info_len; /* Response Info Length. */
2183 __le16 req_sense_length; /* Request sense data length. */
2184 __le32 residual_length; /* Residual transfer length. */
2185 uint8_t rsp_info[8]; /* FCP response information. */
2186 uint8_t req_sense_data[32]; /* Request sense data. */
2187 } sts_entry_t;
2188
2189 /*
2190 * Status entry entry status
2191 */
2192 #define RF_RQ_DMA_ERROR BIT_6 /* Request Queue DMA error. */
2193 #define RF_INV_E_ORDER BIT_5 /* Invalid entry order. */
2194 #define RF_INV_E_COUNT BIT_4 /* Invalid entry count. */
2195 #define RF_INV_E_PARAM BIT_3 /* Invalid entry parameter. */
2196 #define RF_INV_E_TYPE BIT_2 /* Invalid entry type. */
2197 #define RF_BUSY BIT_1 /* Busy */
2198 #define RF_MASK (RF_RQ_DMA_ERROR | RF_INV_E_ORDER | RF_INV_E_COUNT | \
2199 RF_INV_E_PARAM | RF_INV_E_TYPE | RF_BUSY)
2200 #define RF_MASK_24XX (RF_INV_E_ORDER | RF_INV_E_COUNT | RF_INV_E_PARAM | \
2201 RF_INV_E_TYPE)
2202
2203 /*
2204 * Status entry SCSI status bit definitions.
2205 */
2206 #define SS_MASK 0xfff /* Reserved bits BIT_12-BIT_15*/
2207 #define SS_RESIDUAL_UNDER BIT_11
2208 #define SS_RESIDUAL_OVER BIT_10
2209 #define SS_SENSE_LEN_VALID BIT_9
2210 #define SS_RESPONSE_INFO_LEN_VALID BIT_8
2211 #define SS_SCSI_STATUS_BYTE 0xff
2212
2213 #define SS_RESERVE_CONFLICT (BIT_4 | BIT_3)
2214 #define SS_BUSY_CONDITION BIT_3
2215 #define SS_CONDITION_MET BIT_2
2216 #define SS_CHECK_CONDITION BIT_1
2217
2218 /*
2219 * Status entry completion status
2220 */
2221 #define CS_COMPLETE 0x0 /* No errors */
2222 #define CS_INCOMPLETE 0x1 /* Incomplete transfer of cmd. */
2223 #define CS_DMA 0x2 /* A DMA direction error. */
2224 #define CS_TRANSPORT 0x3 /* Transport error. */
2225 #define CS_RESET 0x4 /* SCSI bus reset occurred */
2226 #define CS_ABORTED 0x5 /* System aborted command. */
2227 #define CS_TIMEOUT 0x6 /* Timeout error. */
2228 #define CS_DATA_OVERRUN 0x7 /* Data overrun. */
2229 #define CS_DIF_ERROR 0xC /* DIF error detected */
2230
2231 #define CS_DATA_UNDERRUN 0x15 /* Data Underrun. */
2232 #define CS_QUEUE_FULL 0x1C /* Queue Full. */
2233 #define CS_PORT_UNAVAILABLE 0x28 /* Port unavailable */
2234 /* (selection timeout) */
2235 #define CS_PORT_LOGGED_OUT 0x29 /* Port Logged Out */
2236 #define CS_PORT_CONFIG_CHG 0x2A /* Port Configuration Changed */
2237 #define CS_PORT_BUSY 0x2B /* Port Busy */
2238 #define CS_COMPLETE_CHKCOND 0x30 /* Error? */
2239 #define CS_IOCB_ERROR 0x31 /* Generic error for IOCB request
2240 failure */
2241 #define CS_REJECT_RECEIVED 0x4E /* Reject received */
2242 #define CS_EDIF_AUTH_ERROR 0x63 /* decrypt error */
2243 #define CS_EDIF_PAD_LEN_ERROR 0x65 /* pad > frame size, not 4byte align */
2244 #define CS_EDIF_INV_REQ 0x66 /* invalid request */
2245 #define CS_EDIF_SPI_ERROR 0x67 /* rx frame unable to locate sa */
2246 #define CS_EDIF_HDR_ERROR 0x69 /* data frame != expected len */
2247 #define CS_BAD_PAYLOAD 0x80 /* Driver defined */
2248 #define CS_UNKNOWN 0x81 /* Driver defined */
2249 #define CS_RETRY 0x82 /* Driver defined */
2250 #define CS_LOOP_DOWN_ABORT 0x83 /* Driver defined */
2251
2252 #define CS_BIDIR_RD_OVERRUN 0x700
2253 #define CS_BIDIR_RD_WR_OVERRUN 0x707
2254 #define CS_BIDIR_RD_OVERRUN_WR_UNDERRUN 0x715
2255 #define CS_BIDIR_RD_UNDERRUN 0x1500
2256 #define CS_BIDIR_RD_UNDERRUN_WR_OVERRUN 0x1507
2257 #define CS_BIDIR_RD_WR_UNDERRUN 0x1515
2258 #define CS_BIDIR_DMA 0x200
2259 /*
2260 * Status entry status flags
2261 */
2262 #define SF_ABTS_TERMINATED BIT_10
2263 #define SF_LOGOUT_SENT BIT_13
2264
2265 /*
2266 * ISP queue - status continuation entry structure definition.
2267 */
2268 #define STATUS_CONT_TYPE 0x10 /* Status continuation entry. */
2269 typedef struct {
2270 uint8_t entry_type; /* Entry type. */
2271 uint8_t entry_count; /* Entry count. */
2272 uint8_t sys_define; /* System defined. */
2273 uint8_t entry_status; /* Entry Status. */
2274 uint8_t data[60]; /* data */
2275 } sts_cont_entry_t;
2276
2277 /*
2278 * ISP queue - RIO Type 1 status entry (32 bit I/O entry handles)
2279 * structure definition.
2280 */
2281 #define STATUS_TYPE_21 0x21 /* Status entry. */
2282 typedef struct {
2283 uint8_t entry_type; /* Entry type. */
2284 uint8_t entry_count; /* Entry count. */
2285 uint8_t handle_count; /* Handle count. */
2286 uint8_t entry_status; /* Entry Status. */
2287 uint32_t handle[15]; /* System handles. */
2288 } sts21_entry_t;
2289
2290 /*
2291 * ISP queue - RIO Type 2 status entry (16 bit I/O entry handles)
2292 * structure definition.
2293 */
2294 #define STATUS_TYPE_22 0x22 /* Status entry. */
2295 typedef struct {
2296 uint8_t entry_type; /* Entry type. */
2297 uint8_t entry_count; /* Entry count. */
2298 uint8_t handle_count; /* Handle count. */
2299 uint8_t entry_status; /* Entry Status. */
2300 uint16_t handle[30]; /* System handles. */
2301 } sts22_entry_t;
2302
2303 /*
2304 * ISP queue - marker entry structure definition.
2305 */
2306 #define MARKER_TYPE 0x04 /* Marker entry. */
2307 typedef struct {
2308 uint8_t entry_type; /* Entry type. */
2309 uint8_t entry_count; /* Entry count. */
2310 uint8_t handle_count; /* Handle count. */
2311 uint8_t entry_status; /* Entry Status. */
2312 uint32_t sys_define_2; /* System defined. */
2313 target_id_t target; /* SCSI ID */
2314 uint8_t modifier; /* Modifier (7-0). */
2315 #define MK_SYNC_ID_LUN 0 /* Synchronize ID/LUN */
2316 #define MK_SYNC_ID 1 /* Synchronize ID */
2317 #define MK_SYNC_ALL 2 /* Synchronize all ID/LUN */
2318 #define MK_SYNC_LIP 3 /* Synchronize all ID/LUN, */
2319 /* clear port changed, */
2320 /* use sequence number. */
2321 uint8_t reserved_1;
2322 __le16 sequence_number; /* Sequence number of event */
2323 __le16 lun; /* SCSI LUN */
2324 uint8_t reserved_2[48];
2325 } mrk_entry_t;
2326
2327 /*
2328 * ISP queue - Management Server entry structure definition.
2329 */
2330 #define MS_IOCB_TYPE 0x29 /* Management Server IOCB entry */
2331 typedef struct {
2332 uint8_t entry_type; /* Entry type. */
2333 uint8_t entry_count; /* Entry count. */
2334 uint8_t handle_count; /* Handle count. */
2335 uint8_t entry_status; /* Entry Status. */
2336 uint32_t handle1; /* System handle. */
2337 target_id_t loop_id;
2338 __le16 status;
2339 __le16 control_flags; /* Control flags. */
2340 uint16_t reserved2;
2341 __le16 timeout;
2342 __le16 cmd_dsd_count;
2343 __le16 total_dsd_count;
2344 uint8_t type;
2345 uint8_t r_ctl;
2346 __le16 rx_id;
2347 uint16_t reserved3;
2348 uint32_t handle2;
2349 __le32 rsp_bytecount;
2350 __le32 req_bytecount;
2351 struct dsd64 req_dsd;
2352 struct dsd64 rsp_dsd;
2353 } ms_iocb_entry_t;
2354
2355 #define SCM_EDC_ACC_RECEIVED BIT_6
2356 #define SCM_RDF_ACC_RECEIVED BIT_7
2357
2358 /*
2359 * ISP queue - Mailbox Command entry structure definition.
2360 */
2361 #define MBX_IOCB_TYPE 0x39
2362 struct mbx_entry {
2363 uint8_t entry_type;
2364 uint8_t entry_count;
2365 uint8_t sys_define1;
2366 /* Use sys_define1 for source type */
2367 #define SOURCE_SCSI 0x00
2368 #define SOURCE_IP 0x01
2369 #define SOURCE_VI 0x02
2370 #define SOURCE_SCTP 0x03
2371 #define SOURCE_MP 0x04
2372 #define SOURCE_MPIOCTL 0x05
2373 #define SOURCE_ASYNC_IOCB 0x07
2374
2375 uint8_t entry_status;
2376
2377 uint32_t handle;
2378 target_id_t loop_id;
2379
2380 __le16 status;
2381 __le16 state_flags;
2382 __le16 status_flags;
2383
2384 uint32_t sys_define2[2];
2385
2386 __le16 mb0;
2387 __le16 mb1;
2388 __le16 mb2;
2389 __le16 mb3;
2390 __le16 mb6;
2391 __le16 mb7;
2392 __le16 mb9;
2393 __le16 mb10;
2394 uint32_t reserved_2[2];
2395 uint8_t node_name[WWN_SIZE];
2396 uint8_t port_name[WWN_SIZE];
2397 };
2398
2399 #ifndef IMMED_NOTIFY_TYPE
2400 #define IMMED_NOTIFY_TYPE 0x0D /* Immediate notify entry. */
2401 /*
2402 * ISP queue - immediate notify entry structure definition.
2403 * This is sent by the ISP to the Target driver.
2404 * This IOCB would have report of events sent by the
2405 * initiator, that needs to be handled by the target
2406 * driver immediately.
2407 */
2408 struct imm_ntfy_from_isp {
2409 uint8_t entry_type; /* Entry type. */
2410 uint8_t entry_count; /* Entry count. */
2411 uint8_t sys_define; /* System defined. */
2412 uint8_t entry_status; /* Entry Status. */
2413 union {
2414 struct {
2415 __le32 sys_define_2; /* System defined. */
2416 target_id_t target;
2417 __le16 lun;
2418 uint8_t target_id;
2419 uint8_t reserved_1;
2420 __le16 status_modifier;
2421 __le16 status;
2422 __le16 task_flags;
2423 __le16 seq_id;
2424 __le16 srr_rx_id;
2425 __le32 srr_rel_offs;
2426 __le16 srr_ui;
2427 #define SRR_IU_DATA_IN 0x1
2428 #define SRR_IU_DATA_OUT 0x5
2429 #define SRR_IU_STATUS 0x7
2430 __le16 srr_ox_id;
2431 uint8_t reserved_2[28];
2432 } isp2x;
2433 struct {
2434 uint32_t reserved;
2435 __le16 nport_handle;
2436 uint16_t reserved_2;
2437 __le16 flags;
2438 #define NOTIFY24XX_FLAGS_FCSP BIT_5
2439 #define NOTIFY24XX_FLAGS_GLOBAL_TPRLO BIT_1
2440 #define NOTIFY24XX_FLAGS_PUREX_IOCB BIT_0
2441 __le16 srr_rx_id;
2442 __le16 status;
2443 uint8_t status_subcode;
2444 uint8_t fw_handle;
2445 __le32 exchange_address;
2446 __le32 srr_rel_offs;
2447 __le16 srr_ui;
2448 __le16 srr_ox_id;
2449 union {
2450 struct {
2451 uint8_t node_name[8];
2452 } plogi; /* PLOGI/ADISC/PDISC */
2453 struct {
2454 /* PRLI word 3 bit 0-15 */
2455 __le16 wd3_lo;
2456 uint8_t resv0[6];
2457 } prli;
2458 struct {
2459 uint8_t port_id[3];
2460 uint8_t resv1;
2461 __le16 nport_handle;
2462 uint16_t resv2;
2463 } req_els;
2464 } u;
2465 uint8_t port_name[8];
2466 uint8_t resv3[3];
2467 uint8_t vp_index;
2468 uint32_t reserved_5;
2469 uint8_t port_id[3];
2470 uint8_t reserved_6;
2471 } isp24;
2472 } u;
2473 uint16_t reserved_7;
2474 __le16 ox_id;
2475 } __packed;
2476 #endif
2477
2478 /*
2479 * ISP request and response queue entry sizes
2480 */
2481 #define RESPONSE_ENTRY_SIZE (sizeof(response_t))
2482 #define REQUEST_ENTRY_SIZE (sizeof(request_t))
2483
2484
2485
2486 /*
2487 * Switch info gathering structure.
2488 */
2489 typedef struct {
2490 port_id_t d_id;
2491 uint8_t node_name[WWN_SIZE];
2492 uint8_t port_name[WWN_SIZE];
2493 uint8_t fabric_port_name[WWN_SIZE];
2494 uint16_t fp_speed;
2495 uint8_t fc4_type;
2496 uint8_t fc4_features;
2497 } sw_info_t;
2498
2499 /* FCP-4 types */
2500 #define FC4_TYPE_FCP_SCSI 0x08
2501 #define FC4_TYPE_NVME 0x28
2502 #define FC4_TYPE_OTHER 0x0
2503 #define FC4_TYPE_UNKNOWN 0xff
2504
2505 /* mailbox command 4G & above */
2506 struct mbx_24xx_entry {
2507 uint8_t entry_type;
2508 uint8_t entry_count;
2509 uint8_t sys_define1;
2510 uint8_t entry_status;
2511 uint32_t handle;
2512 uint16_t mb[28];
2513 };
2514
2515 #define IOCB_SIZE 64
2516
2517 /*
2518 * Fibre channel port type.
2519 */
2520 typedef enum {
2521 FCT_UNKNOWN,
2522 FCT_BROADCAST = 0x01,
2523 FCT_INITIATOR = 0x02,
2524 FCT_TARGET = 0x04,
2525 FCT_NVME_INITIATOR = 0x10,
2526 FCT_NVME_TARGET = 0x20,
2527 FCT_NVME_DISCOVERY = 0x40,
2528 FCT_NVME = 0xf0,
2529 } fc_port_type_t;
2530
2531 enum qla_sess_deletion {
2532 QLA_SESS_DELETION_NONE = 0,
2533 QLA_SESS_DELETION_IN_PROGRESS,
2534 QLA_SESS_DELETED,
2535 };
2536
2537 enum qlt_plogi_link_t {
2538 QLT_PLOGI_LINK_SAME_WWN,
2539 QLT_PLOGI_LINK_CONFLICT,
2540 QLT_PLOGI_LINK_MAX
2541 };
2542
2543 struct qlt_plogi_ack_t {
2544 struct list_head list;
2545 struct imm_ntfy_from_isp iocb;
2546 port_id_t id;
2547 int ref_count;
2548 void *fcport;
2549 };
2550
2551 struct ct_sns_desc {
2552 struct ct_sns_pkt *ct_sns;
2553 dma_addr_t ct_sns_dma;
2554 };
2555
2556 enum discovery_state {
2557 DSC_DELETED,
2558 DSC_GNL,
2559 DSC_LOGIN_PEND,
2560 DSC_LOGIN_FAILED,
2561 DSC_GPDB,
2562 DSC_UPD_FCPORT,
2563 DSC_LOGIN_COMPLETE,
2564 DSC_ADISC,
2565 DSC_DELETE_PEND,
2566 DSC_LOGIN_AUTH_PEND,
2567 };
2568
2569 enum login_state { /* FW control Target side */
2570 DSC_LS_LLIOCB_SENT = 2,
2571 DSC_LS_PLOGI_PEND,
2572 DSC_LS_PLOGI_COMP,
2573 DSC_LS_PRLI_PEND,
2574 DSC_LS_PRLI_COMP,
2575 DSC_LS_PORT_UNAVAIL,
2576 DSC_LS_PRLO_PEND = 9,
2577 DSC_LS_LOGO_PEND,
2578 };
2579
2580 enum rscn_addr_format {
2581 RSCN_PORT_ADDR,
2582 RSCN_AREA_ADDR,
2583 RSCN_DOM_ADDR,
2584 RSCN_FAB_ADDR,
2585 };
2586
2587 /*
2588 * Fibre channel port structure.
2589 */
2590 typedef struct fc_port {
2591 struct list_head list;
2592 struct scsi_qla_host *vha;
2593 struct list_head unsol_ctx_head;
2594
2595 unsigned int conf_compl_supported:1;
2596 unsigned int deleted:2;
2597 unsigned int free_pending:1;
2598 unsigned int local:1;
2599 unsigned int logout_on_delete:1;
2600 unsigned int logo_ack_needed:1;
2601 unsigned int keep_nport_handle:1;
2602 unsigned int send_els_logo:1;
2603 unsigned int login_pause:1;
2604 unsigned int login_succ:1;
2605 unsigned int query:1;
2606 unsigned int id_changed:1;
2607 unsigned int scan_needed:1;
2608 unsigned int n2n_flag:1;
2609 unsigned int explicit_logout:1;
2610 unsigned int prli_pend_timer:1;
2611 unsigned int do_prli_nvme:1;
2612
2613 uint8_t nvme_flag;
2614 uint8_t node_name[WWN_SIZE];
2615 uint8_t port_name[WWN_SIZE];
2616 port_id_t d_id;
2617 uint16_t loop_id;
2618 uint16_t old_loop_id;
2619
2620 struct completion nvme_del_done;
2621 uint32_t nvme_prli_service_param;
2622 #define NVME_PRLI_SP_PI_CTRL BIT_9
2623 #define NVME_PRLI_SP_SLER BIT_8
2624 #define NVME_PRLI_SP_CONF BIT_7
2625 #define NVME_PRLI_SP_INITIATOR BIT_5
2626 #define NVME_PRLI_SP_TARGET BIT_4
2627 #define NVME_PRLI_SP_DISCOVERY BIT_3
2628 #define NVME_PRLI_SP_FIRST_BURST BIT_0
2629
2630 uint32_t nvme_first_burst_size;
2631 #define NVME_FLAG_REGISTERED 4
2632 #define NVME_FLAG_DELETING 2
2633 #define NVME_FLAG_RESETTING 1
2634
2635 struct fc_port *conflict;
2636 unsigned char logout_completed;
2637 int generation;
2638
2639 struct se_session *se_sess;
2640 struct list_head sess_cmd_list;
2641 spinlock_t sess_cmd_lock;
2642 struct kref sess_kref;
2643 struct qla_tgt *tgt;
2644 unsigned long expires;
2645 struct work_struct free_work;
2646 struct work_struct reg_work;
2647 uint64_t jiffies_at_registration;
2648 unsigned long prli_expired;
2649 struct qlt_plogi_ack_t *plogi_link[QLT_PLOGI_LINK_MAX];
2650
2651 uint16_t tgt_id;
2652 uint16_t old_tgt_id;
2653 uint16_t sec_since_registration;
2654
2655 uint8_t fcp_prio;
2656
2657 uint8_t fabric_port_name[WWN_SIZE];
2658 uint16_t fp_speed;
2659
2660 fc_port_type_t port_type;
2661
2662 atomic_t state;
2663 uint32_t flags;
2664
2665 int login_retry;
2666
2667 struct fc_rport *rport;
2668 u32 supported_classes;
2669
2670 uint8_t fc4_type;
2671 uint8_t fc4_features;
2672 uint8_t scan_state;
2673
2674 unsigned long last_queue_full;
2675 unsigned long last_ramp_up;
2676
2677 uint16_t port_id;
2678
2679 struct nvme_fc_remote_port *nvme_remote_port;
2680
2681 unsigned long retry_delay_timestamp;
2682 struct qla_tgt_sess *tgt_session;
2683 struct ct_sns_desc ct_desc;
2684 enum discovery_state disc_state;
2685 atomic_t shadow_disc_state;
2686 enum discovery_state next_disc_state;
2687 enum login_state fw_login_state;
2688 unsigned long dm_login_expire;
2689 unsigned long plogi_nack_done_deadline;
2690
2691 u32 login_gen, last_login_gen;
2692 u32 rscn_gen, last_rscn_gen;
2693 u32 chip_reset;
2694 struct list_head gnl_entry;
2695 struct work_struct del_work;
2696 u8 iocb[IOCB_SIZE];
2697 u8 current_login_state;
2698 u8 last_login_state;
2699 u16 n2n_link_reset_cnt;
2700 u16 n2n_chip_reset;
2701
2702 struct dentry *dfs_rport_dir;
2703
2704 u64 tgt_short_link_down_cnt;
2705 u64 tgt_link_down_time;
2706 u64 dev_loss_tmo;
2707 /*
2708 * EDIF parameters for encryption.
2709 */
2710 struct {
2711 uint32_t enable:1; /* device is edif enabled/req'd */
2712 uint32_t app_stop:2;
2713 uint32_t aes_gmac:1;
2714 uint32_t app_sess_online:1;
2715 uint32_t tx_sa_set:1;
2716 uint32_t rx_sa_set:1;
2717 uint32_t tx_sa_pending:1;
2718 uint32_t rx_sa_pending:1;
2719 uint32_t tx_rekey_cnt;
2720 uint32_t rx_rekey_cnt;
2721 uint64_t tx_bytes;
2722 uint64_t rx_bytes;
2723 uint8_t sess_down_acked;
2724 uint8_t auth_state;
2725 uint16_t authok:1;
2726 uint16_t rekey_cnt;
2727 struct list_head edif_indx_list;
2728 spinlock_t indx_list_lock;
2729
2730 struct list_head tx_sa_list;
2731 struct list_head rx_sa_list;
2732 spinlock_t sa_list_lock;
2733 } edif;
2734 } fc_port_t;
2735
2736 enum {
2737 FC4_PRIORITY_NVME = 1,
2738 FC4_PRIORITY_FCP = 2,
2739 };
2740
2741 #define QLA_FCPORT_SCAN 1
2742 #define QLA_FCPORT_FOUND 2
2743
2744 struct event_arg {
2745 fc_port_t *fcport;
2746 srb_t *sp;
2747 port_id_t id;
2748 u16 data[2], rc;
2749 u8 port_name[WWN_SIZE];
2750 u32 iop[2];
2751 };
2752
2753 #include "qla_mr.h"
2754
2755 /*
2756 * Fibre channel port/lun states.
2757 */
2758 enum {
2759 FCS_UNKNOWN,
2760 FCS_UNCONFIGURED,
2761 FCS_DEVICE_DEAD,
2762 FCS_DEVICE_LOST,
2763 FCS_ONLINE,
2764 };
2765
2766 extern const char *const port_state_str[5];
2767
2768 static const char *const port_dstate_str[] = {
2769 [DSC_DELETED] = "DELETED",
2770 [DSC_GNL] = "GNL",
2771 [DSC_LOGIN_PEND] = "LOGIN_PEND",
2772 [DSC_LOGIN_FAILED] = "LOGIN_FAILED",
2773 [DSC_GPDB] = "GPDB",
2774 [DSC_UPD_FCPORT] = "UPD_FCPORT",
2775 [DSC_LOGIN_COMPLETE] = "LOGIN_COMPLETE",
2776 [DSC_ADISC] = "ADISC",
2777 [DSC_DELETE_PEND] = "DELETE_PEND",
2778 [DSC_LOGIN_AUTH_PEND] = "LOGIN_AUTH_PEND",
2779 };
2780
2781 /*
2782 * FC port flags.
2783 */
2784 #define FCF_FABRIC_DEVICE BIT_0
2785 #define FCF_LOGIN_NEEDED BIT_1
2786 #define FCF_FCP2_DEVICE BIT_2
2787 #define FCF_ASYNC_SENT BIT_3
2788 #define FCF_CONF_COMP_SUPPORTED BIT_4
2789 #define FCF_ASYNC_ACTIVE BIT_5
2790 #define FCF_FCSP_DEVICE BIT_6
2791 #define FCF_EDIF_DELETE BIT_7
2792
2793 /* No loop ID flag. */
2794 #define FC_NO_LOOP_ID 0x1000
2795
2796 /*
2797 * FC-CT interface
2798 *
2799 * NOTE: All structures are big-endian in form.
2800 */
2801
2802 #define CT_REJECT_RESPONSE 0x8001
2803 #define CT_ACCEPT_RESPONSE 0x8002
2804 #define CT_REASON_INVALID_COMMAND_CODE 0x01
2805 #define CT_REASON_CANNOT_PERFORM 0x09
2806 #define CT_REASON_COMMAND_UNSUPPORTED 0x0b
2807 #define CT_EXPL_ALREADY_REGISTERED 0x10
2808 #define CT_EXPL_HBA_ATTR_NOT_REGISTERED 0x11
2809 #define CT_EXPL_MULTIPLE_HBA_ATTR 0x12
2810 #define CT_EXPL_INVALID_HBA_BLOCK_LENGTH 0x13
2811 #define CT_EXPL_MISSING_REQ_HBA_ATTR 0x14
2812 #define CT_EXPL_PORT_NOT_REGISTERED_ 0x15
2813 #define CT_EXPL_MISSING_HBA_ID_PORT_LIST 0x16
2814 #define CT_EXPL_HBA_NOT_REGISTERED 0x17
2815 #define CT_EXPL_PORT_ATTR_NOT_REGISTERED 0x20
2816 #define CT_EXPL_PORT_NOT_REGISTERED 0x21
2817 #define CT_EXPL_MULTIPLE_PORT_ATTR 0x22
2818 #define CT_EXPL_INVALID_PORT_BLOCK_LENGTH 0x23
2819
2820 #define NS_N_PORT_TYPE 0x01
2821 #define NS_NL_PORT_TYPE 0x02
2822 #define NS_NX_PORT_TYPE 0x7F
2823
2824 #define GA_NXT_CMD 0x100
2825 #define GA_NXT_REQ_SIZE (16 + 4)
2826 #define GA_NXT_RSP_SIZE (16 + 620)
2827
2828 #define GPN_FT_CMD 0x172
2829 #define GPN_FT_REQ_SIZE (16 + 4)
2830 #define GNN_FT_CMD 0x173
2831 #define GNN_FT_REQ_SIZE (16 + 4)
2832
2833 #define GID_PT_CMD 0x1A1
2834 #define GID_PT_REQ_SIZE (16 + 4)
2835
2836 #define GPN_ID_CMD 0x112
2837 #define GPN_ID_REQ_SIZE (16 + 4)
2838 #define GPN_ID_RSP_SIZE (16 + 8)
2839
2840 #define GNN_ID_CMD 0x113
2841 #define GNN_ID_REQ_SIZE (16 + 4)
2842 #define GNN_ID_RSP_SIZE (16 + 8)
2843
2844 #define GFT_ID_CMD 0x117
2845 #define GFT_ID_REQ_SIZE (16 + 4)
2846 #define GFT_ID_RSP_SIZE (16 + 32)
2847
2848 #define GID_PN_CMD 0x121
2849 #define GID_PN_REQ_SIZE (16 + 8)
2850 #define GID_PN_RSP_SIZE (16 + 4)
2851
2852 #define RFT_ID_CMD 0x217
2853 #define RFT_ID_REQ_SIZE (16 + 4 + 32)
2854 #define RFT_ID_RSP_SIZE 16
2855
2856 #define RFF_ID_CMD 0x21F
2857 #define RFF_ID_REQ_SIZE (16 + 4 + 2 + 1 + 1)
2858 #define RFF_ID_RSP_SIZE 16
2859
2860 #define RNN_ID_CMD 0x213
2861 #define RNN_ID_REQ_SIZE (16 + 4 + 8)
2862 #define RNN_ID_RSP_SIZE 16
2863
2864 #define RSNN_NN_CMD 0x239
2865 #define RSNN_NN_REQ_SIZE (16 + 8 + 1 + 255)
2866 #define RSNN_NN_RSP_SIZE 16
2867
2868 #define GFPN_ID_CMD 0x11C
2869 #define GFPN_ID_REQ_SIZE (16 + 4)
2870 #define GFPN_ID_RSP_SIZE (16 + 8)
2871
2872 #define GPSC_CMD 0x127
2873 #define GPSC_REQ_SIZE (16 + 8)
2874 #define GPSC_RSP_SIZE (16 + 2 + 2)
2875
2876 #define GFF_ID_CMD 0x011F
2877 #define GFF_ID_REQ_SIZE (16 + 4)
2878 #define GFF_ID_RSP_SIZE (16 + 128)
2879
2880 /*
2881 * FDMI HBA attribute types.
2882 */
2883 #define FDMI1_HBA_ATTR_COUNT 10
2884 #define FDMI2_HBA_ATTR_COUNT 17
2885
2886 #define FDMI_HBA_NODE_NAME 0x1
2887 #define FDMI_HBA_MANUFACTURER 0x2
2888 #define FDMI_HBA_SERIAL_NUMBER 0x3
2889 #define FDMI_HBA_MODEL 0x4
2890 #define FDMI_HBA_MODEL_DESCRIPTION 0x5
2891 #define FDMI_HBA_HARDWARE_VERSION 0x6
2892 #define FDMI_HBA_DRIVER_VERSION 0x7
2893 #define FDMI_HBA_OPTION_ROM_VERSION 0x8
2894 #define FDMI_HBA_FIRMWARE_VERSION 0x9
2895 #define FDMI_HBA_OS_NAME_AND_VERSION 0xa
2896 #define FDMI_HBA_MAXIMUM_CT_PAYLOAD_LENGTH 0xb
2897
2898 #define FDMI_HBA_NODE_SYMBOLIC_NAME 0xc
2899 #define FDMI_HBA_VENDOR_SPECIFIC_INFO 0xd
2900 #define FDMI_HBA_NUM_PORTS 0xe
2901 #define FDMI_HBA_FABRIC_NAME 0xf
2902 #define FDMI_HBA_BOOT_BIOS_NAME 0x10
2903 #define FDMI_HBA_VENDOR_IDENTIFIER 0xe0
2904
2905 struct ct_fdmi_hba_attr {
2906 __be16 type;
2907 __be16 len;
2908 union {
2909 uint8_t node_name[WWN_SIZE];
2910 uint8_t manufacturer[64];
2911 uint8_t serial_num[32];
2912 uint8_t model[16+1];
2913 uint8_t model_desc[80];
2914 uint8_t hw_version[32];
2915 uint8_t driver_version[32];
2916 uint8_t orom_version[16];
2917 uint8_t fw_version[32];
2918 uint8_t os_version[128];
2919 __be32 max_ct_len;
2920
2921 uint8_t sym_name[256];
2922 __be32 vendor_specific_info;
2923 __be32 num_ports;
2924 uint8_t fabric_name[WWN_SIZE];
2925 uint8_t bios_name[32];
2926 uint8_t vendor_identifier[8];
2927 } a;
2928 };
2929
2930 struct ct_fdmi1_hba_attributes {
2931 __be32 count;
2932 struct ct_fdmi_hba_attr entry[FDMI1_HBA_ATTR_COUNT];
2933 };
2934
2935 struct ct_fdmi2_hba_attributes {
2936 __be32 count;
2937 struct ct_fdmi_hba_attr entry[FDMI2_HBA_ATTR_COUNT];
2938 };
2939
2940 /*
2941 * FDMI Port attribute types.
2942 */
2943 #define FDMI1_PORT_ATTR_COUNT 6
2944 #define FDMI2_PORT_ATTR_COUNT 16
2945 #define FDMI2_SMARTSAN_PORT_ATTR_COUNT 23
2946
2947 #define FDMI_PORT_FC4_TYPES 0x1
2948 #define FDMI_PORT_SUPPORT_SPEED 0x2
2949 #define FDMI_PORT_CURRENT_SPEED 0x3
2950 #define FDMI_PORT_MAX_FRAME_SIZE 0x4
2951 #define FDMI_PORT_OS_DEVICE_NAME 0x5
2952 #define FDMI_PORT_HOST_NAME 0x6
2953
2954 #define FDMI_PORT_NODE_NAME 0x7
2955 #define FDMI_PORT_NAME 0x8
2956 #define FDMI_PORT_SYM_NAME 0x9
2957 #define FDMI_PORT_TYPE 0xa
2958 #define FDMI_PORT_SUPP_COS 0xb
2959 #define FDMI_PORT_FABRIC_NAME 0xc
2960 #define FDMI_PORT_FC4_TYPE 0xd
2961 #define FDMI_PORT_STATE 0x101
2962 #define FDMI_PORT_COUNT 0x102
2963 #define FDMI_PORT_IDENTIFIER 0x103
2964
2965 #define FDMI_SMARTSAN_SERVICE 0xF100
2966 #define FDMI_SMARTSAN_GUID 0xF101
2967 #define FDMI_SMARTSAN_VERSION 0xF102
2968 #define FDMI_SMARTSAN_PROD_NAME 0xF103
2969 #define FDMI_SMARTSAN_PORT_INFO 0xF104
2970 #define FDMI_SMARTSAN_QOS_SUPPORT 0xF105
2971 #define FDMI_SMARTSAN_SECURITY_SUPPORT 0xF106
2972
2973 #define FDMI_PORT_SPEED_1GB 0x1
2974 #define FDMI_PORT_SPEED_2GB 0x2
2975 #define FDMI_PORT_SPEED_10GB 0x4
2976 #define FDMI_PORT_SPEED_4GB 0x8
2977 #define FDMI_PORT_SPEED_8GB 0x10
2978 #define FDMI_PORT_SPEED_16GB 0x20
2979 #define FDMI_PORT_SPEED_32GB 0x40
2980 #define FDMI_PORT_SPEED_20GB 0x80
2981 #define FDMI_PORT_SPEED_40GB 0x100
2982 #define FDMI_PORT_SPEED_128GB 0x200
2983 #define FDMI_PORT_SPEED_64GB 0x400
2984 #define FDMI_PORT_SPEED_256GB 0x800
2985 #define FDMI_PORT_SPEED_UNKNOWN 0x8000
2986
2987 #define FC_CLASS_2 0x04
2988 #define FC_CLASS_3 0x08
2989 #define FC_CLASS_2_3 0x0C
2990
2991 struct ct_fdmi_port_attr {
2992 __be16 type;
2993 __be16 len;
2994 union {
2995 uint8_t fc4_types[32];
2996 __be32 sup_speed;
2997 __be32 cur_speed;
2998 __be32 max_frame_size;
2999 uint8_t os_dev_name[32];
3000 uint8_t host_name[256];
3001
3002 uint8_t node_name[WWN_SIZE];
3003 uint8_t port_name[WWN_SIZE];
3004 uint8_t port_sym_name[128];
3005 __be32 port_type;
3006 __be32 port_supported_cos;
3007 uint8_t fabric_name[WWN_SIZE];
3008 uint8_t port_fc4_type[32];
3009 __be32 port_state;
3010 __be32 num_ports;
3011 __be32 port_id;
3012
3013 uint8_t smartsan_service[24];
3014 uint8_t smartsan_guid[16];
3015 uint8_t smartsan_version[24];
3016 uint8_t smartsan_prod_name[16];
3017 __be32 smartsan_port_info;
3018 __be32 smartsan_qos_support;
3019 __be32 smartsan_security_support;
3020 } a;
3021 };
3022
3023 struct ct_fdmi1_port_attributes {
3024 __be32 count;
3025 struct ct_fdmi_port_attr entry[FDMI1_PORT_ATTR_COUNT];
3026 };
3027
3028 struct ct_fdmi2_port_attributes {
3029 __be32 count;
3030 struct ct_fdmi_port_attr entry[FDMI2_PORT_ATTR_COUNT];
3031 };
3032
3033 #define FDMI_ATTR_TYPELEN(obj) \
3034 (sizeof((obj)->type) + sizeof((obj)->len))
3035
3036 #define FDMI_ATTR_ALIGNMENT(len) \
3037 (4 - ((len) & 3))
3038
3039 /* FDMI register call options */
3040 #define CALLOPT_FDMI1 0
3041 #define CALLOPT_FDMI2 1
3042 #define CALLOPT_FDMI2_SMARTSAN 2
3043
3044 /* FDMI definitions. */
3045 #define GRHL_CMD 0x100
3046 #define GHAT_CMD 0x101
3047 #define GRPL_CMD 0x102
3048 #define GPAT_CMD 0x110
3049
3050 #define RHBA_CMD 0x200
3051 #define RHBA_RSP_SIZE 16
3052
3053 #define RHAT_CMD 0x201
3054
3055 #define RPRT_CMD 0x210
3056 #define RPRT_RSP_SIZE 24
3057
3058 #define RPA_CMD 0x211
3059 #define RPA_RSP_SIZE 16
3060 #define SMARTSAN_RPA_RSP_SIZE 24
3061
3062 #define DHBA_CMD 0x300
3063 #define DHBA_REQ_SIZE (16 + 8)
3064 #define DHBA_RSP_SIZE 16
3065
3066 #define DHAT_CMD 0x301
3067 #define DPRT_CMD 0x310
3068 #define DPA_CMD 0x311
3069
3070 /* CT command header -- request/response common fields */
3071 struct ct_cmd_hdr {
3072 uint8_t revision;
3073 uint8_t in_id[3];
3074 uint8_t gs_type;
3075 uint8_t gs_subtype;
3076 uint8_t options;
3077 uint8_t reserved;
3078 };
3079
3080 /* CT command request */
3081 struct ct_sns_req {
3082 struct ct_cmd_hdr header;
3083 __be16 command;
3084 __be16 max_rsp_size;
3085 uint8_t fragment_id;
3086 uint8_t reserved[3];
3087
3088 union {
3089 /* GA_NXT, GPN_ID, GNN_ID, GFT_ID, GFPN_ID */
3090 struct {
3091 uint8_t reserved;
3092 be_id_t port_id;
3093 } port_id;
3094
3095 struct {
3096 uint8_t reserved;
3097 uint8_t domain;
3098 uint8_t area;
3099 uint8_t port_type;
3100 } gpn_ft;
3101
3102 struct {
3103 uint8_t port_type;
3104 uint8_t domain;
3105 uint8_t area;
3106 uint8_t reserved;
3107 } gid_pt;
3108
3109 struct {
3110 uint8_t reserved;
3111 be_id_t port_id;
3112 uint8_t fc4_types[32];
3113 } rft_id;
3114
3115 struct {
3116 uint8_t reserved;
3117 be_id_t port_id;
3118 uint16_t reserved2;
3119 uint8_t fc4_feature;
3120 uint8_t fc4_type;
3121 } rff_id;
3122
3123 struct {
3124 uint8_t reserved;
3125 be_id_t port_id;
3126 uint8_t node_name[8];
3127 } rnn_id;
3128
3129 struct {
3130 uint8_t node_name[8];
3131 uint8_t name_len;
3132 uint8_t sym_node_name[255];
3133 } rsnn_nn;
3134
3135 struct {
3136 uint8_t hba_identifier[8];
3137 } ghat;
3138
3139 struct {
3140 uint8_t hba_identifier[8];
3141 __be32 entry_count;
3142 uint8_t port_name[8];
3143 struct ct_fdmi2_hba_attributes attrs;
3144 } rhba;
3145
3146 struct {
3147 uint8_t hba_identifier[8];
3148 struct ct_fdmi1_hba_attributes attrs;
3149 } rhat;
3150
3151 struct {
3152 uint8_t port_name[8];
3153 struct ct_fdmi2_port_attributes attrs;
3154 } rpa;
3155
3156 struct {
3157 uint8_t hba_identifier[8];
3158 uint8_t port_name[8];
3159 struct ct_fdmi2_port_attributes attrs;
3160 } rprt;
3161
3162 struct {
3163 uint8_t port_name[8];
3164 } dhba;
3165
3166 struct {
3167 uint8_t port_name[8];
3168 } dhat;
3169
3170 struct {
3171 uint8_t port_name[8];
3172 } dprt;
3173
3174 struct {
3175 uint8_t port_name[8];
3176 } dpa;
3177
3178 struct {
3179 uint8_t port_name[8];
3180 } gpsc;
3181
3182 struct {
3183 uint8_t reserved;
3184 uint8_t port_id[3];
3185 } gff_id;
3186
3187 struct {
3188 uint8_t port_name[8];
3189 } gid_pn;
3190 } req;
3191 };
3192
3193 /* CT command response header */
3194 struct ct_rsp_hdr {
3195 struct ct_cmd_hdr header;
3196 __be16 response;
3197 uint16_t residual;
3198 uint8_t fragment_id;
3199 uint8_t reason_code;
3200 uint8_t explanation_code;
3201 uint8_t vendor_unique;
3202 };
3203
3204 struct ct_sns_gid_pt_data {
3205 uint8_t control_byte;
3206 be_id_t port_id;
3207 };
3208
3209 /* It's the same for both GPN_FT and GNN_FT */
3210 struct ct_sns_gpnft_rsp {
3211 struct {
3212 struct ct_cmd_hdr header;
3213 uint16_t response;
3214 uint16_t residual;
3215 uint8_t fragment_id;
3216 uint8_t reason_code;
3217 uint8_t explanation_code;
3218 uint8_t vendor_unique;
3219 };
3220 /* Assume the largest number of targets for the union */
3221 DECLARE_FLEX_ARRAY(struct ct_sns_gpn_ft_data {
3222 u8 control_byte;
3223 u8 port_id[3];
3224 u32 reserved;
3225 u8 port_name[8];
3226 }, entries);
3227 };
3228
3229 /* CT command response */
3230 struct ct_sns_rsp {
3231 struct ct_rsp_hdr header;
3232
3233 union {
3234 struct {
3235 uint8_t port_type;
3236 be_id_t port_id;
3237 uint8_t port_name[8];
3238 uint8_t sym_port_name_len;
3239 uint8_t sym_port_name[255];
3240 uint8_t node_name[8];
3241 uint8_t sym_node_name_len;
3242 uint8_t sym_node_name[255];
3243 uint8_t init_proc_assoc[8];
3244 uint8_t node_ip_addr[16];
3245 uint8_t class_of_service[4];
3246 uint8_t fc4_types[32];
3247 uint8_t ip_address[16];
3248 uint8_t fabric_port_name[8];
3249 uint8_t reserved;
3250 uint8_t hard_address[3];
3251 } ga_nxt;
3252
3253 struct {
3254 /* Assume the largest number of targets for the union */
3255 struct ct_sns_gid_pt_data
3256 entries[MAX_FIBRE_DEVICES_MAX];
3257 } gid_pt;
3258
3259 struct {
3260 uint8_t port_name[8];
3261 } gpn_id;
3262
3263 struct {
3264 uint8_t node_name[8];
3265 } gnn_id;
3266
3267 struct {
3268 uint8_t fc4_types[32];
3269 } gft_id;
3270
3271 struct {
3272 uint32_t entry_count;
3273 uint8_t port_name[8];
3274 struct ct_fdmi1_hba_attributes attrs;
3275 } ghat;
3276
3277 struct {
3278 uint8_t port_name[8];
3279 } gfpn_id;
3280
3281 struct {
3282 __be16 speeds;
3283 __be16 speed;
3284 } gpsc;
3285
3286 #define GFF_FCP_SCSI_OFFSET 7
3287 #define GFF_NVME_OFFSET 23 /* type = 28h */
3288 struct {
3289 uint8_t fc4_features[128];
3290 #define FC4_FF_TARGET BIT_0
3291 #define FC4_FF_INITIATOR BIT_1
3292 } gff_id;
3293 struct {
3294 uint8_t reserved;
3295 uint8_t port_id[3];
3296 } gid_pn;
3297 } rsp;
3298 };
3299
3300 struct ct_sns_pkt {
3301 union {
3302 struct ct_sns_req req;
3303 struct ct_sns_rsp rsp;
3304 } p;
3305 };
3306
3307 struct ct_sns_gpnft_pkt {
3308 union {
3309 struct ct_sns_req req;
3310 struct ct_sns_gpnft_rsp rsp;
3311 } p;
3312 };
3313
3314 enum scan_flags_t {
3315 SF_SCANNING = BIT_0,
3316 SF_QUEUED = BIT_1,
3317 };
3318
3319 enum fc4type_t {
3320 FS_FC4TYPE_FCP = BIT_0,
3321 FS_FC4TYPE_NVME = BIT_1,
3322 FS_FCP_IS_N2N = BIT_7,
3323 };
3324
3325 struct fab_scan_rp {
3326 port_id_t id;
3327 enum fc4type_t fc4type;
3328 u8 port_name[8];
3329 u8 node_name[8];
3330 };
3331
3332 enum scan_step {
3333 FAB_SCAN_START,
3334 FAB_SCAN_GPNFT_FCP,
3335 FAB_SCAN_GNNFT_FCP,
3336 FAB_SCAN_GPNFT_NVME,
3337 FAB_SCAN_GNNFT_NVME,
3338 };
3339
3340 struct fab_scan {
3341 struct fab_scan_rp *l;
3342 u32 size;
3343 u32 rscn_gen_start;
3344 u32 rscn_gen_end;
3345 enum scan_step step;
3346 u16 scan_retry;
3347 #define MAX_SCAN_RETRIES 5
3348 enum scan_flags_t scan_flags;
3349 struct delayed_work scan_work;
3350 };
3351
3352 /*
3353 * SNS command structures -- for 2200 compatibility.
3354 */
3355 #define RFT_ID_SNS_SCMD_LEN 22
3356 #define RFT_ID_SNS_CMD_SIZE 60
3357 #define RFT_ID_SNS_DATA_SIZE 16
3358
3359 #define RNN_ID_SNS_SCMD_LEN 10
3360 #define RNN_ID_SNS_CMD_SIZE 36
3361 #define RNN_ID_SNS_DATA_SIZE 16
3362
3363 #define GA_NXT_SNS_SCMD_LEN 6
3364 #define GA_NXT_SNS_CMD_SIZE 28
3365 #define GA_NXT_SNS_DATA_SIZE (620 + 16)
3366
3367 #define GID_PT_SNS_SCMD_LEN 6
3368 #define GID_PT_SNS_CMD_SIZE 28
3369 /*
3370 * Assume MAX_FIBRE_DEVICES_2100 as these defines are only used with older
3371 * adapters.
3372 */
3373 #define GID_PT_SNS_DATA_SIZE (MAX_FIBRE_DEVICES_2100 * 4 + 16)
3374
3375 #define GPN_ID_SNS_SCMD_LEN 6
3376 #define GPN_ID_SNS_CMD_SIZE 28
3377 #define GPN_ID_SNS_DATA_SIZE (8 + 16)
3378
3379 #define GNN_ID_SNS_SCMD_LEN 6
3380 #define GNN_ID_SNS_CMD_SIZE 28
3381 #define GNN_ID_SNS_DATA_SIZE (8 + 16)
3382
3383 struct sns_cmd_pkt {
3384 union {
3385 struct {
3386 __le16 buffer_length;
3387 __le16 reserved_1;
3388 __le64 buffer_address __packed;
3389 __le16 subcommand_length;
3390 __le16 reserved_2;
3391 __le16 subcommand;
3392 __le16 size;
3393 uint32_t reserved_3;
3394 uint8_t param[36];
3395 } cmd;
3396
3397 uint8_t rft_data[RFT_ID_SNS_DATA_SIZE];
3398 uint8_t rnn_data[RNN_ID_SNS_DATA_SIZE];
3399 uint8_t gan_data[GA_NXT_SNS_DATA_SIZE];
3400 uint8_t gid_data[GID_PT_SNS_DATA_SIZE];
3401 uint8_t gpn_data[GPN_ID_SNS_DATA_SIZE];
3402 uint8_t gnn_data[GNN_ID_SNS_DATA_SIZE];
3403 } p;
3404 };
3405
3406 struct fw_blob {
3407 char *name;
3408 uint32_t segs[4];
3409 const struct firmware *fw;
3410 };
3411
3412 /* Return data from MBC_GET_ID_LIST call. */
3413 struct gid_list_info {
3414 uint8_t al_pa;
3415 uint8_t area;
3416 uint8_t domain;
3417 uint8_t loop_id_2100; /* ISP2100/ISP2200 -- 4 bytes. */
3418 __le16 loop_id; /* ISP23XX -- 6 bytes. */
3419 uint16_t reserved_1; /* ISP24XX -- 8 bytes. */
3420 };
3421
3422 /* NPIV */
3423 typedef struct vport_info {
3424 uint8_t port_name[WWN_SIZE];
3425 uint8_t node_name[WWN_SIZE];
3426 int vp_id;
3427 uint16_t loop_id;
3428 unsigned long host_no;
3429 uint8_t port_id[3];
3430 int loop_state;
3431 } vport_info_t;
3432
3433 typedef struct vport_params {
3434 uint8_t port_name[WWN_SIZE];
3435 uint8_t node_name[WWN_SIZE];
3436 uint32_t options;
3437 #define VP_OPTS_RETRY_ENABLE BIT_0
3438 #define VP_OPTS_VP_DISABLE BIT_1
3439 } vport_params_t;
3440
3441 /* NPIV - return codes of VP create and modify */
3442 #define VP_RET_CODE_OK 0
3443 #define VP_RET_CODE_FATAL 1
3444 #define VP_RET_CODE_WRONG_ID 2
3445 #define VP_RET_CODE_WWPN 3
3446 #define VP_RET_CODE_RESOURCES 4
3447 #define VP_RET_CODE_NO_MEM 5
3448 #define VP_RET_CODE_NOT_FOUND 6
3449
3450 struct qla_hw_data;
3451 struct rsp_que;
3452 /*
3453 * ISP operations
3454 */
3455 struct isp_operations {
3456
3457 int (*pci_config) (struct scsi_qla_host *);
3458 int (*reset_chip)(struct scsi_qla_host *);
3459 int (*chip_diag) (struct scsi_qla_host *);
3460 void (*config_rings) (struct scsi_qla_host *);
3461 int (*reset_adapter)(struct scsi_qla_host *);
3462 int (*nvram_config) (struct scsi_qla_host *);
3463 void (*update_fw_options) (struct scsi_qla_host *);
3464 int (*load_risc) (struct scsi_qla_host *, uint32_t *);
3465
3466 char * (*pci_info_str)(struct scsi_qla_host *, char *, size_t);
3467 char * (*fw_version_str)(struct scsi_qla_host *, char *, size_t);
3468
3469 irq_handler_t intr_handler;
3470 void (*enable_intrs) (struct qla_hw_data *);
3471 void (*disable_intrs) (struct qla_hw_data *);
3472
3473 int (*abort_command) (srb_t *);
3474 int (*target_reset) (struct fc_port *, uint64_t, int);
3475 int (*lun_reset) (struct fc_port *, uint64_t, int);
3476 int (*fabric_login) (struct scsi_qla_host *, uint16_t, uint8_t,
3477 uint8_t, uint8_t, uint16_t *, uint8_t);
3478 int (*fabric_logout) (struct scsi_qla_host *, uint16_t, uint8_t,
3479 uint8_t, uint8_t);
3480
3481 uint16_t (*calc_req_entries) (uint16_t);
3482 void (*build_iocbs) (srb_t *, cmd_entry_t *, uint16_t);
3483 void *(*prep_ms_iocb) (struct scsi_qla_host *, struct ct_arg *);
3484 void *(*prep_ms_fdmi_iocb) (struct scsi_qla_host *, uint32_t,
3485 uint32_t);
3486
3487 uint8_t *(*read_nvram)(struct scsi_qla_host *, void *,
3488 uint32_t, uint32_t);
3489 int (*write_nvram)(struct scsi_qla_host *, void *, uint32_t,
3490 uint32_t);
3491
3492 void (*fw_dump)(struct scsi_qla_host *vha);
3493 void (*mpi_fw_dump)(struct scsi_qla_host *, int);
3494
3495 /* Context: task, might sleep */
3496 int (*beacon_on) (struct scsi_qla_host *);
3497 int (*beacon_off) (struct scsi_qla_host *);
3498
3499 void (*beacon_blink) (struct scsi_qla_host *);
3500
3501 void *(*read_optrom)(struct scsi_qla_host *, void *,
3502 uint32_t, uint32_t);
3503 int (*write_optrom)(struct scsi_qla_host *, void *, uint32_t,
3504 uint32_t);
3505
3506 int (*get_flash_version) (struct scsi_qla_host *, void *);
3507 int (*start_scsi) (srb_t *);
3508 int (*start_scsi_mq) (srb_t *);
3509
3510 /* Context: task, might sleep */
3511 int (*abort_isp) (struct scsi_qla_host *);
3512
3513 int (*iospace_config)(struct qla_hw_data *);
3514 int (*initialize_adapter)(struct scsi_qla_host *);
3515 };
3516
3517 /* MSI-X Support *************************************************************/
3518
3519 #define QLA_MSIX_CHIP_REV_24XX 3
3520 #define QLA_MSIX_FW_MODE(m) (((m) & (BIT_7|BIT_8|BIT_9)) >> 7)
3521 #define QLA_MSIX_FW_MODE_1(m) (QLA_MSIX_FW_MODE(m) == 1)
3522
3523 #define QLA_BASE_VECTORS 2 /* default + RSP */
3524 #define QLA_MSIX_RSP_Q 0x01
3525 #define QLA_ATIO_VECTOR 0x02
3526 #define QLA_MSIX_QPAIR_MULTIQ_RSP_Q 0x03
3527
3528 #define QLA_MIDX_DEFAULT 0
3529 #define QLA_MIDX_RSP_Q 1
3530 #define QLA_PCI_MSIX_CONTROL 0xa2
3531 #define QLA_83XX_PCI_MSIX_CONTROL 0x92
3532
3533 struct scsi_qla_host;
3534
3535
3536 #define QLA83XX_RSPQ_MSIX_ENTRY_NUMBER 1 /* refer to qla83xx_msix_entries */
3537
3538 struct qla_msix_entry {
3539 int have_irq;
3540 int in_use;
3541 uint32_t vector;
3542 uint32_t vector_base0;
3543 uint16_t entry;
3544 char name[30];
3545 void *handle;
3546 int cpuid;
3547 };
3548
3549 #define WATCH_INTERVAL 1 /* number of seconds */
3550
3551 /* Work events. */
3552 enum qla_work_type {
3553 QLA_EVT_AEN,
3554 QLA_EVT_IDC_ACK,
3555 QLA_EVT_ASYNC_LOGIN,
3556 QLA_EVT_ASYNC_LOGOUT,
3557 QLA_EVT_ASYNC_ADISC,
3558 QLA_EVT_UEVENT,
3559 QLA_EVT_AENFX,
3560 QLA_EVT_UNMAP,
3561 QLA_EVT_NEW_SESS,
3562 QLA_EVT_GPDB,
3563 QLA_EVT_PRLI,
3564 QLA_EVT_GPSC,
3565 QLA_EVT_GNL,
3566 QLA_EVT_NACK,
3567 QLA_EVT_RELOGIN,
3568 QLA_EVT_ASYNC_PRLO,
3569 QLA_EVT_ASYNC_PRLO_DONE,
3570 QLA_EVT_SCAN_CMD,
3571 QLA_EVT_SCAN_FINISH,
3572 QLA_EVT_GFPNID,
3573 QLA_EVT_SP_RETRY,
3574 QLA_EVT_IIDMA,
3575 QLA_EVT_ELS_PLOGI,
3576 QLA_EVT_SA_REPLACE,
3577 };
3578
3579
3580 struct qla_work_evt {
3581 struct list_head list;
3582 enum qla_work_type type;
3583 u32 flags;
3584 #define QLA_EVT_FLAG_FREE 0x1
3585
3586 union {
3587 struct {
3588 enum fc_host_event_code code;
3589 u32 data;
3590 } aen;
3591 struct {
3592 #define QLA_IDC_ACK_REGS 7
3593 uint16_t mb[QLA_IDC_ACK_REGS];
3594 } idc_ack;
3595 struct {
3596 struct fc_port *fcport;
3597 #define QLA_LOGIO_LOGIN_RETRIED BIT_0
3598 u16 data[2];
3599 } logio;
3600 struct {
3601 u32 code;
3602 #define QLA_UEVENT_CODE_FW_DUMP 0
3603 } uevent;
3604 struct {
3605 uint32_t evtcode;
3606 uint32_t mbx[8];
3607 uint32_t count;
3608 } aenfx;
3609 struct {
3610 srb_t *sp;
3611 } iosb;
3612 struct {
3613 port_id_t id;
3614 u8 port_name[8];
3615 u8 node_name[8];
3616 void *pla;
3617 u8 fc4_type;
3618 } new_sess;
3619 struct { /*Get PDB, Get Speed, update fcport, gnl */
3620 fc_port_t *fcport;
3621 u8 opt;
3622 } fcport;
3623 struct {
3624 fc_port_t *fcport;
3625 u8 iocb[IOCB_SIZE];
3626 int type;
3627 } nack;
3628 struct {
3629 u8 fc4_type;
3630 srb_t *sp;
3631 } gpnft;
3632 struct {
3633 struct edif_sa_ctl *sa_ctl;
3634 fc_port_t *fcport;
3635 uint16_t nport_handle;
3636 } sa_update;
3637 } u;
3638 };
3639
3640 struct qla_chip_state_84xx {
3641 struct list_head list;
3642 struct kref kref;
3643
3644 void *bus;
3645 spinlock_t access_lock;
3646 struct mutex fw_update_mutex;
3647 uint32_t fw_update;
3648 uint32_t op_fw_version;
3649 uint32_t op_fw_size;
3650 uint32_t op_fw_seq_size;
3651 uint32_t diag_fw_version;
3652 uint32_t gold_fw_version;
3653 };
3654
3655 struct qla_dif_statistics {
3656 uint64_t dif_input_bytes;
3657 uint64_t dif_output_bytes;
3658 uint64_t dif_input_requests;
3659 uint64_t dif_output_requests;
3660 uint32_t dif_guard_err;
3661 uint32_t dif_ref_tag_err;
3662 uint32_t dif_app_tag_err;
3663 };
3664
3665 struct qla_statistics {
3666 uint32_t total_isp_aborts;
3667 uint64_t input_bytes;
3668 uint64_t output_bytes;
3669 uint64_t input_requests;
3670 uint64_t output_requests;
3671 uint32_t control_requests;
3672
3673 uint64_t jiffies_at_last_reset;
3674 uint32_t stat_max_pend_cmds;
3675 uint32_t stat_max_qfull_cmds_alloc;
3676 uint32_t stat_max_qfull_cmds_dropped;
3677
3678 struct qla_dif_statistics qla_dif_stats;
3679 };
3680
3681 struct bidi_statistics {
3682 unsigned long long io_count;
3683 unsigned long long transfer_bytes;
3684 };
3685
3686 struct qla_tc_param {
3687 struct scsi_qla_host *vha;
3688 uint32_t blk_sz;
3689 uint32_t bufflen;
3690 struct scatterlist *sg;
3691 struct scatterlist *prot_sg;
3692 struct crc_context *ctx;
3693 uint8_t *ctx_dsd_alloced;
3694 };
3695
3696 /* Multi queue support */
3697 #define MBC_INITIALIZE_MULTIQ 0x1f
3698 #define QLA_QUE_PAGE 0X1000
3699 #define QLA_MQ_SIZE 32
3700 #define QLA_MAX_QUEUES 256
3701 #define ISP_QUE_REG(ha, id) \
3702 ((ha->mqenable || IS_QLA83XX(ha) || \
3703 IS_QLA27XX(ha) || IS_QLA28XX(ha)) ? \
3704 ((void __iomem *)ha->mqiobase + (QLA_QUE_PAGE * id)) :\
3705 ((void __iomem *)ha->iobase))
3706 #define QLA_REQ_QUE_ID(tag) \
3707 ((tag < QLA_MAX_QUEUES && tag > 0) ? tag : 0)
3708 #define QLA_DEFAULT_QUE_QOS 5
3709 #define QLA_PRECONFIG_VPORTS 32
3710 #define QLA_MAX_VPORTS_QLA24XX 128
3711 #define QLA_MAX_VPORTS_QLA25XX 256
3712
3713 struct qla_tgt_counters {
3714 uint64_t qla_core_sbt_cmd;
3715 uint64_t core_qla_que_buf;
3716 uint64_t qla_core_ret_ctio;
3717 uint64_t core_qla_snd_status;
3718 uint64_t qla_core_ret_sta_ctio;
3719 uint64_t core_qla_free_cmd;
3720 uint64_t num_q_full_sent;
3721 uint64_t num_alloc_iocb_failed;
3722 uint64_t num_term_xchg_sent;
3723 };
3724
3725 struct qla_counters {
3726 uint64_t input_bytes;
3727 uint64_t input_requests;
3728 uint64_t output_bytes;
3729 uint64_t output_requests;
3730
3731 };
3732
3733 struct qla_qpair;
3734
3735 /* Response queue data structure */
3736 struct rsp_que {
3737 dma_addr_t dma;
3738 response_t *ring;
3739 response_t *ring_ptr;
3740 __le32 __iomem *rsp_q_in; /* FWI2-capable only. */
3741 __le32 __iomem *rsp_q_out;
3742 uint16_t ring_index;
3743 uint16_t out_ptr;
3744 uint16_t *in_ptr; /* queue shadow in index */
3745 uint16_t length;
3746 uint16_t options;
3747 uint16_t rid;
3748 uint16_t id;
3749 uint16_t vp_idx;
3750 struct qla_hw_data *hw;
3751 struct qla_msix_entry *msix;
3752 struct req_que *req;
3753 srb_t *status_srb; /* status continuation entry */
3754 struct qla_qpair *qpair;
3755
3756 dma_addr_t dma_fx00;
3757 response_t *ring_fx00;
3758 uint16_t length_fx00;
3759 uint8_t rsp_pkt[REQUEST_ENTRY_SIZE];
3760 };
3761
3762 /* Request queue data structure */
3763 struct req_que {
3764 dma_addr_t dma;
3765 request_t *ring;
3766 request_t *ring_ptr;
3767 __le32 __iomem *req_q_in; /* FWI2-capable only. */
3768 __le32 __iomem *req_q_out;
3769 uint16_t ring_index;
3770 uint16_t in_ptr;
3771 uint16_t *out_ptr; /* queue shadow out index */
3772 uint16_t cnt;
3773 uint16_t length;
3774 uint16_t options;
3775 uint16_t rid;
3776 uint16_t id;
3777 uint16_t qos;
3778 uint16_t vp_idx;
3779 struct rsp_que *rsp;
3780 srb_t **outstanding_cmds;
3781 uint32_t current_outstanding_cmd;
3782 uint16_t num_outstanding_cmds;
3783 int max_q_depth;
3784
3785 dma_addr_t dma_fx00;
3786 request_t *ring_fx00;
3787 uint16_t length_fx00;
3788 uint8_t req_pkt[REQUEST_ENTRY_SIZE];
3789 };
3790
3791 struct qla_fw_resources {
3792 u16 iocbs_total;
3793 u16 iocbs_limit;
3794 u16 iocbs_qp_limit;
3795 u16 iocbs_used;
3796 u16 exch_total;
3797 u16 exch_limit;
3798 u16 exch_used;
3799 u16 pad;
3800 };
3801
3802 struct qla_fw_res {
3803 u16 iocb_total;
3804 u16 iocb_limit;
3805 atomic_t iocb_used;
3806
3807 u16 exch_total;
3808 u16 exch_limit;
3809 atomic_t exch_used;
3810 };
3811
3812 #define QLA_IOCB_PCT_LIMIT 95
3813
3814 struct qla_buf_pool {
3815 u16 num_bufs;
3816 u16 num_active;
3817 u16 max_used;
3818 u16 num_alloc;
3819 u16 prev_max;
3820 u16 pad;
3821 uint32_t take_snapshot:1;
3822 unsigned long *buf_map;
3823 void **buf_array;
3824 dma_addr_t *dma_array;
3825 };
3826
3827 /*Queue pair data structure */
3828 struct qla_qpair {
3829 spinlock_t qp_lock;
3830 atomic_t ref_count;
3831 uint32_t lun_cnt;
3832 /*
3833 * For qpair 0, qp_lock_ptr will point at hardware_lock due to
3834 * legacy code. For other Qpair(s), it will point at qp_lock.
3835 */
3836 spinlock_t *qp_lock_ptr;
3837 struct scsi_qla_host *vha;
3838 u32 chip_reset;
3839
3840 /* distill these fields down to 'online=0/1'
3841 * ha->flags.eeh_busy
3842 * ha->flags.pci_channel_io_perm_failure
3843 * base_vha->loop_state
3844 */
3845 uint32_t online:1;
3846 /* move vha->flags.difdix_supported here */
3847 uint32_t difdix_supported:1;
3848 uint32_t delete_in_progress:1;
3849 uint32_t fw_started:1;
3850 uint32_t enable_class_2:1;
3851 uint32_t enable_explicit_conf:1;
3852 uint32_t use_shadow_reg:1;
3853 uint32_t rcv_intr:1;
3854
3855 uint16_t id; /* qp number used with FW */
3856 uint16_t vp_idx; /* vport ID */
3857
3858 uint16_t dsd_inuse;
3859 uint16_t dsd_avail;
3860 struct list_head dsd_list;
3861 #define NUM_DSD_CHAIN 4096
3862
3863 mempool_t *srb_mempool;
3864
3865 struct pci_dev *pdev;
3866 void (*reqq_start_iocbs)(struct qla_qpair *);
3867
3868 /* to do: New driver: move queues to here instead of pointers */
3869 struct req_que *req;
3870 struct rsp_que *rsp;
3871 struct atio_que *atio;
3872 struct qla_msix_entry *msix; /* point to &ha->msix_entries[x] */
3873 struct qla_hw_data *hw;
3874 struct work_struct q_work;
3875 struct qla_counters counters;
3876
3877 struct list_head qp_list_elem; /* vha->qp_list */
3878 struct list_head hints_list;
3879
3880 uint16_t retry_term_cnt;
3881 __le32 retry_term_exchg_addr;
3882 uint64_t retry_term_jiff;
3883 struct qla_tgt_counters tgt_counters;
3884 uint16_t cpuid;
3885 bool cpu_mapped;
3886 struct qla_fw_resources fwres ____cacheline_aligned;
3887 struct qla_buf_pool buf_pool;
3888 u32 cmd_cnt;
3889 u32 cmd_completion_cnt;
3890 u32 prev_completion_cnt;
3891 };
3892
3893 /* Place holder for FW buffer parameters */
3894 struct qlfc_fw {
3895 void *fw_buf;
3896 dma_addr_t fw_dma;
3897 uint32_t len;
3898 };
3899
3900 struct rdp_req_payload {
3901 uint32_t els_request;
3902 uint32_t desc_list_len;
3903
3904 /* NPIV descriptor */
3905 struct {
3906 uint32_t desc_tag;
3907 uint32_t desc_len;
3908 uint8_t reserved;
3909 uint8_t nport_id[3];
3910 } npiv_desc;
3911 };
3912
3913 struct rdp_rsp_payload {
3914 struct {
3915 __be32 cmd;
3916 __be32 len;
3917 } hdr;
3918
3919 /* LS Request Info descriptor */
3920 struct {
3921 __be32 desc_tag;
3922 __be32 desc_len;
3923 __be32 req_payload_word_0;
3924 } ls_req_info_desc;
3925
3926 /* LS Request Info descriptor */
3927 struct {
3928 __be32 desc_tag;
3929 __be32 desc_len;
3930 __be32 req_payload_word_0;
3931 } ls_req_info_desc2;
3932
3933 /* SFP diagnostic param descriptor */
3934 struct {
3935 __be32 desc_tag;
3936 __be32 desc_len;
3937 __be16 temperature;
3938 __be16 vcc;
3939 __be16 tx_bias;
3940 __be16 tx_power;
3941 __be16 rx_power;
3942 __be16 sfp_flags;
3943 } sfp_diag_desc;
3944
3945 /* Port Speed Descriptor */
3946 struct {
3947 __be32 desc_tag;
3948 __be32 desc_len;
3949 __be16 speed_capab;
3950 __be16 operating_speed;
3951 } port_speed_desc;
3952
3953 /* Link Error Status Descriptor */
3954 struct {
3955 __be32 desc_tag;
3956 __be32 desc_len;
3957 __be32 link_fail_cnt;
3958 __be32 loss_sync_cnt;
3959 __be32 loss_sig_cnt;
3960 __be32 prim_seq_err_cnt;
3961 __be32 inval_xmit_word_cnt;
3962 __be32 inval_crc_cnt;
3963 uint8_t pn_port_phy_type;
3964 uint8_t reserved[3];
3965 } ls_err_desc;
3966
3967 /* Port name description with diag param */
3968 struct {
3969 __be32 desc_tag;
3970 __be32 desc_len;
3971 uint8_t WWNN[WWN_SIZE];
3972 uint8_t WWPN[WWN_SIZE];
3973 } port_name_diag_desc;
3974
3975 /* Port Name desc for Direct attached Fx_Port or Nx_Port */
3976 struct {
3977 __be32 desc_tag;
3978 __be32 desc_len;
3979 uint8_t WWNN[WWN_SIZE];
3980 uint8_t WWPN[WWN_SIZE];
3981 } port_name_direct_desc;
3982
3983 /* Buffer Credit descriptor */
3984 struct {
3985 __be32 desc_tag;
3986 __be32 desc_len;
3987 __be32 fcport_b2b;
3988 __be32 attached_fcport_b2b;
3989 __be32 fcport_rtt;
3990 } buffer_credit_desc;
3991
3992 /* Optical Element Data Descriptor */
3993 struct {
3994 __be32 desc_tag;
3995 __be32 desc_len;
3996 __be16 high_alarm;
3997 __be16 low_alarm;
3998 __be16 high_warn;
3999 __be16 low_warn;
4000 __be32 element_flags;
4001 } optical_elmt_desc[5];
4002
4003 /* Optical Product Data Descriptor */
4004 struct {
4005 __be32 desc_tag;
4006 __be32 desc_len;
4007 uint8_t vendor_name[16];
4008 uint8_t part_number[16];
4009 uint8_t serial_number[16];
4010 uint8_t revision[4];
4011 uint8_t date[8];
4012 } optical_prod_desc;
4013 };
4014
4015 #define RDP_DESC_LEN(obj) \
4016 (sizeof(obj) - sizeof((obj).desc_tag) - sizeof((obj).desc_len))
4017
4018 #define RDP_PORT_SPEED_1GB BIT_15
4019 #define RDP_PORT_SPEED_2GB BIT_14
4020 #define RDP_PORT_SPEED_4GB BIT_13
4021 #define RDP_PORT_SPEED_10GB BIT_12
4022 #define RDP_PORT_SPEED_8GB BIT_11
4023 #define RDP_PORT_SPEED_16GB BIT_10
4024 #define RDP_PORT_SPEED_32GB BIT_9
4025 #define RDP_PORT_SPEED_64GB BIT_8
4026 #define RDP_PORT_SPEED_UNKNOWN BIT_0
4027
4028 struct scsi_qlt_host {
4029 void *target_lport_ptr;
4030 struct mutex tgt_mutex;
4031 struct mutex tgt_host_action_mutex;
4032 struct qla_tgt *qla_tgt;
4033 };
4034
4035 struct qlt_hw_data {
4036 /* Protected by hw lock */
4037 uint32_t node_name_set:1;
4038
4039 dma_addr_t atio_dma; /* Physical address. */
4040 struct atio *atio_ring; /* Base virtual address */
4041 struct atio *atio_ring_ptr; /* Current address. */
4042 uint16_t atio_ring_index; /* Current index. */
4043 uint16_t atio_q_length;
4044 __le32 __iomem *atio_q_in;
4045 __le32 __iomem *atio_q_out;
4046
4047 const struct qla_tgt_func_tmpl *tgt_ops;
4048
4049 int saved_set;
4050 __le16 saved_exchange_count;
4051 __le32 saved_firmware_options_1;
4052 __le32 saved_firmware_options_2;
4053 __le32 saved_firmware_options_3;
4054 uint8_t saved_firmware_options[2];
4055 uint8_t saved_add_firmware_options[2];
4056
4057 uint8_t tgt_node_name[WWN_SIZE];
4058
4059 struct dentry *dfs_tgt_sess;
4060 struct dentry *dfs_tgt_port_database;
4061 struct dentry *dfs_naqp;
4062
4063 struct list_head q_full_list;
4064 uint32_t num_pend_cmds;
4065 uint32_t num_qfull_cmds_alloc;
4066 uint32_t num_qfull_cmds_dropped;
4067 spinlock_t q_full_lock;
4068 uint32_t leak_exchg_thresh_hold;
4069 spinlock_t sess_lock;
4070 int num_act_qpairs;
4071 #define DEFAULT_NAQP 2
4072 spinlock_t atio_lock ____cacheline_aligned;
4073 };
4074
4075 #define MAX_QFULL_CMDS_ALLOC 8192
4076 #define Q_FULL_THRESH_HOLD_PERCENT 90
4077 #define Q_FULL_THRESH_HOLD(ha) \
4078 ((ha->cur_fw_xcb_count/100) * Q_FULL_THRESH_HOLD_PERCENT)
4079
4080 #define LEAK_EXCHG_THRESH_HOLD_PERCENT 75 /* 75 percent */
4081
4082 struct qla_hw_data_stat {
4083 u32 num_fw_dump;
4084 u32 num_mpi_reset;
4085 };
4086
4087 /* refer to pcie_do_recovery reference */
4088 typedef enum {
4089 QLA_PCI_RESUME,
4090 QLA_PCI_ERR_DETECTED,
4091 QLA_PCI_MMIO_ENABLED,
4092 QLA_PCI_SLOT_RESET,
4093 } pci_error_state_t;
4094 /*
4095 * Qlogic host adapter specific data structure.
4096 */
4097 struct qla_hw_data {
4098 struct pci_dev *pdev;
4099 /* SRB cache. */
4100 #define SRB_MIN_REQ 128
4101 mempool_t *srb_mempool;
4102 u8 port_name[WWN_SIZE];
4103
4104 volatile struct {
4105 uint32_t mbox_int :1;
4106 uint32_t mbox_busy :1;
4107 uint32_t disable_risc_code_load :1;
4108 uint32_t enable_64bit_addressing :1;
4109 uint32_t enable_lip_reset :1;
4110 uint32_t enable_target_reset :1;
4111 uint32_t enable_lip_full_login :1;
4112 uint32_t enable_led_scheme :1;
4113
4114 uint32_t msi_enabled :1;
4115 uint32_t msix_enabled :1;
4116 uint32_t disable_serdes :1;
4117 uint32_t gpsc_supported :1;
4118 uint32_t npiv_supported :1;
4119 uint32_t pci_channel_io_perm_failure :1;
4120 uint32_t fce_enabled :1;
4121 uint32_t user_enabled_fce :1;
4122 uint32_t fce_dump_buf_alloced :1;
4123 uint32_t fac_supported :1;
4124
4125 uint32_t chip_reset_done :1;
4126 uint32_t running_gold_fw :1;
4127 uint32_t eeh_busy :1;
4128 uint32_t disable_msix_handshake :1;
4129 uint32_t fcp_prio_enabled :1;
4130 uint32_t isp82xx_fw_hung:1;
4131 uint32_t nic_core_hung:1;
4132
4133 uint32_t quiesce_owner:1;
4134 uint32_t nic_core_reset_hdlr_active:1;
4135 uint32_t nic_core_reset_owner:1;
4136 uint32_t isp82xx_no_md_cap:1;
4137 uint32_t host_shutting_down:1;
4138 uint32_t idc_compl_status:1;
4139 uint32_t mr_reset_hdlr_active:1;
4140 uint32_t mr_intr_valid:1;
4141
4142 uint32_t dport_enabled:1;
4143 uint32_t fawwpn_enabled:1;
4144 uint32_t exlogins_enabled:1;
4145 uint32_t exchoffld_enabled:1;
4146
4147 uint32_t lip_ae:1;
4148 uint32_t n2n_ae:1;
4149 uint32_t fw_started:1;
4150 uint32_t fw_init_done:1;
4151
4152 uint32_t lr_detected:1;
4153
4154 uint32_t rida_fmt2:1;
4155 uint32_t purge_mbox:1;
4156 uint32_t n2n_bigger:1;
4157 uint32_t secure_adapter:1;
4158 uint32_t secure_fw:1;
4159 /* Supported by Adapter */
4160 uint32_t scm_supported_a:1;
4161 /* Supported by Firmware */
4162 uint32_t scm_supported_f:1;
4163 /* Enabled in Driver */
4164 uint32_t scm_enabled:1;
4165 uint32_t edif_hw:1;
4166 uint32_t edif_enabled:1;
4167 uint32_t n2n_fw_acc_sec:1;
4168 uint32_t plogi_template_valid:1;
4169 uint32_t port_isolated:1;
4170 uint32_t eeh_flush:2;
4171 #define EEH_FLUSH_RDY 1
4172 #define EEH_FLUSH_DONE 2
4173 uint32_t secure_mcu:1;
4174 } flags;
4175
4176 uint16_t max_exchg;
4177 uint16_t lr_distance; /* 32G & above */
4178 #define LR_DISTANCE_5K 1
4179 #define LR_DISTANCE_10K 0
4180
4181 /* This spinlock is used to protect "io transactions", you must
4182 * acquire it before doing any IO to the card, eg with RD_REG*() and
4183 * WRT_REG*() for the duration of your entire commandtransaction.
4184 *
4185 * This spinlock is of lower priority than the io request lock.
4186 */
4187
4188 spinlock_t hardware_lock ____cacheline_aligned;
4189 int bars;
4190 int mem_only;
4191 device_reg_t *iobase; /* Base I/O address */
4192 resource_size_t pio_address;
4193
4194 #define MIN_IOBASE_LEN 0x100
4195 dma_addr_t bar0_hdl;
4196
4197 void __iomem *cregbase;
4198 dma_addr_t bar2_hdl;
4199 #define BAR0_LEN_FX00 (1024 * 1024)
4200 #define BAR2_LEN_FX00 (128 * 1024)
4201
4202 uint32_t rqstq_intr_code;
4203 uint32_t mbx_intr_code;
4204 uint32_t req_que_len;
4205 uint32_t rsp_que_len;
4206 uint32_t req_que_off;
4207 uint32_t rsp_que_off;
4208 unsigned long eeh_jif;
4209
4210 /* Multi queue data structs */
4211 device_reg_t *mqiobase;
4212 device_reg_t *msixbase;
4213 uint16_t msix_count;
4214 uint8_t mqenable;
4215 struct req_que **req_q_map;
4216 struct rsp_que **rsp_q_map;
4217 struct qla_qpair **queue_pair_map;
4218 struct qla_qpair **qp_cpu_map;
4219 unsigned long req_qid_map[(QLA_MAX_QUEUES / 8) / sizeof(unsigned long)];
4220 unsigned long rsp_qid_map[(QLA_MAX_QUEUES / 8) / sizeof(unsigned long)];
4221 unsigned long qpair_qid_map[(QLA_MAX_QUEUES / 8)
4222 / sizeof(unsigned long)];
4223 uint8_t max_req_queues;
4224 uint8_t max_rsp_queues;
4225 uint8_t max_qpairs;
4226 uint8_t num_qpairs;
4227 struct qla_qpair *base_qpair;
4228 struct qla_npiv_entry *npiv_info;
4229 uint16_t nvram_npiv_size;
4230
4231 uint16_t switch_cap;
4232 #define FLOGI_SEQ_DEL BIT_8
4233 #define FLOGI_MID_SUPPORT BIT_10
4234 #define FLOGI_VSAN_SUPPORT BIT_12
4235 #define FLOGI_SP_SUPPORT BIT_13
4236
4237 uint8_t port_no; /* Physical port of adapter */
4238 uint8_t exch_starvation;
4239
4240 /* Timeout timers. */
4241 uint8_t loop_down_abort_time; /* port down timer */
4242 atomic_t loop_down_timer; /* loop down timer */
4243 uint8_t link_down_timeout; /* link down timeout */
4244 uint16_t max_loop_id;
4245 uint16_t max_fibre_devices; /* Maximum number of targets */
4246
4247 uint16_t fb_rev;
4248 uint16_t min_external_loopid; /* First external loop Id */
4249
4250 #define PORT_SPEED_UNKNOWN 0xFFFF
4251 #define PORT_SPEED_1GB 0x00
4252 #define PORT_SPEED_2GB 0x01
4253 #define PORT_SPEED_AUTO 0x02
4254 #define PORT_SPEED_4GB 0x03
4255 #define PORT_SPEED_8GB 0x04
4256 #define PORT_SPEED_16GB 0x05
4257 #define PORT_SPEED_32GB 0x06
4258 #define PORT_SPEED_64GB 0x07
4259 #define PORT_SPEED_10GB 0x13
4260 uint16_t link_data_rate; /* F/W operating speed */
4261 uint16_t set_data_rate; /* Set by user */
4262
4263 uint8_t current_topology;
4264 uint8_t prev_topology;
4265 #define ISP_CFG_NL 1
4266 #define ISP_CFG_N 2
4267 #define ISP_CFG_FL 4
4268 #define ISP_CFG_F 8
4269
4270 uint8_t operating_mode; /* F/W operating mode */
4271 #define LOOP 0
4272 #define P2P 1
4273 #define LOOP_P2P 2
4274 #define P2P_LOOP 3
4275 uint8_t interrupts_on;
4276 uint32_t isp_abort_cnt;
4277 #define PCI_DEVICE_ID_QLOGIC_ISP2532 0x2532
4278 #define PCI_DEVICE_ID_QLOGIC_ISP8432 0x8432
4279 #define PCI_DEVICE_ID_QLOGIC_ISP8001 0x8001
4280 #define PCI_DEVICE_ID_QLOGIC_ISP8031 0x8031
4281 #define PCI_DEVICE_ID_QLOGIC_ISP2031 0x2031
4282 #define PCI_DEVICE_ID_QLOGIC_ISP2071 0x2071
4283 #define PCI_DEVICE_ID_QLOGIC_ISP2271 0x2271
4284 #define PCI_DEVICE_ID_QLOGIC_ISP2261 0x2261
4285 #define PCI_DEVICE_ID_QLOGIC_ISP2061 0x2061
4286 #define PCI_DEVICE_ID_QLOGIC_ISP2081 0x2081
4287 #define PCI_DEVICE_ID_QLOGIC_ISP2089 0x2089
4288 #define PCI_DEVICE_ID_QLOGIC_ISP2281 0x2281
4289 #define PCI_DEVICE_ID_QLOGIC_ISP2289 0x2289
4290
4291 uint32_t isp_type;
4292 #define DT_ISP2100 BIT_0
4293 #define DT_ISP2200 BIT_1
4294 #define DT_ISP2300 BIT_2
4295 #define DT_ISP2312 BIT_3
4296 #define DT_ISP2322 BIT_4
4297 #define DT_ISP6312 BIT_5
4298 #define DT_ISP6322 BIT_6
4299 #define DT_ISP2422 BIT_7
4300 #define DT_ISP2432 BIT_8
4301 #define DT_ISP5422 BIT_9
4302 #define DT_ISP5432 BIT_10
4303 #define DT_ISP2532 BIT_11
4304 #define DT_ISP8432 BIT_12
4305 #define DT_ISP8001 BIT_13
4306 #define DT_ISP8021 BIT_14
4307 #define DT_ISP2031 BIT_15
4308 #define DT_ISP8031 BIT_16
4309 #define DT_ISPFX00 BIT_17
4310 #define DT_ISP8044 BIT_18
4311 #define DT_ISP2071 BIT_19
4312 #define DT_ISP2271 BIT_20
4313 #define DT_ISP2261 BIT_21
4314 #define DT_ISP2061 BIT_22
4315 #define DT_ISP2081 BIT_23
4316 #define DT_ISP2089 BIT_24
4317 #define DT_ISP2281 BIT_25
4318 #define DT_ISP2289 BIT_26
4319 #define DT_ISP_LAST (DT_ISP2289 << 1)
4320
4321 uint32_t device_type;
4322 #define DT_T10_PI BIT_25
4323 #define DT_IIDMA BIT_26
4324 #define DT_FWI2 BIT_27
4325 #define DT_ZIO_SUPPORTED BIT_28
4326 #define DT_OEM_001 BIT_29
4327 #define DT_ISP2200A BIT_30
4328 #define DT_EXTENDED_IDS BIT_31
4329
4330 #define DT_MASK(ha) ((ha)->isp_type & (DT_ISP_LAST - 1))
4331 #define IS_QLA2100(ha) (DT_MASK(ha) & DT_ISP2100)
4332 #define IS_QLA2200(ha) (DT_MASK(ha) & DT_ISP2200)
4333 #define IS_QLA2300(ha) (DT_MASK(ha) & DT_ISP2300)
4334 #define IS_QLA2312(ha) (DT_MASK(ha) & DT_ISP2312)
4335 #define IS_QLA2322(ha) (DT_MASK(ha) & DT_ISP2322)
4336 #define IS_QLA6312(ha) (DT_MASK(ha) & DT_ISP6312)
4337 #define IS_QLA6322(ha) (DT_MASK(ha) & DT_ISP6322)
4338 #define IS_QLA2422(ha) (DT_MASK(ha) & DT_ISP2422)
4339 #define IS_QLA2432(ha) (DT_MASK(ha) & DT_ISP2432)
4340 #define IS_QLA5422(ha) (DT_MASK(ha) & DT_ISP5422)
4341 #define IS_QLA5432(ha) (DT_MASK(ha) & DT_ISP5432)
4342 #define IS_QLA2532(ha) (DT_MASK(ha) & DT_ISP2532)
4343 #define IS_QLA8432(ha) (DT_MASK(ha) & DT_ISP8432)
4344 #define IS_QLA8001(ha) (DT_MASK(ha) & DT_ISP8001)
4345 #define IS_QLA81XX(ha) (IS_QLA8001(ha))
4346 #define IS_QLA82XX(ha) (DT_MASK(ha) & DT_ISP8021)
4347 #define IS_QLA8044(ha) (DT_MASK(ha) & DT_ISP8044)
4348 #define IS_QLA2031(ha) (DT_MASK(ha) & DT_ISP2031)
4349 #define IS_QLA8031(ha) (DT_MASK(ha) & DT_ISP8031)
4350 #define IS_QLAFX00(ha) (DT_MASK(ha) & DT_ISPFX00)
4351 #define IS_QLA2071(ha) (DT_MASK(ha) & DT_ISP2071)
4352 #define IS_QLA2271(ha) (DT_MASK(ha) & DT_ISP2271)
4353 #define IS_QLA2261(ha) (DT_MASK(ha) & DT_ISP2261)
4354 #define IS_QLA2081(ha) (DT_MASK(ha) & DT_ISP2081)
4355 #define IS_QLA2281(ha) (DT_MASK(ha) & DT_ISP2281)
4356
4357 #define IS_QLA23XX(ha) (IS_QLA2300(ha) || IS_QLA2312(ha) || IS_QLA2322(ha) || \
4358 IS_QLA6312(ha) || IS_QLA6322(ha))
4359 #define IS_QLA24XX(ha) (IS_QLA2422(ha) || IS_QLA2432(ha))
4360 #define IS_QLA54XX(ha) (IS_QLA5422(ha) || IS_QLA5432(ha))
4361 #define IS_QLA25XX(ha) (IS_QLA2532(ha))
4362 #define IS_QLA83XX(ha) (IS_QLA2031(ha) || IS_QLA8031(ha))
4363 #define IS_QLA84XX(ha) (IS_QLA8432(ha))
4364 #define IS_QLA27XX(ha) (IS_QLA2071(ha) || IS_QLA2271(ha) || IS_QLA2261(ha))
4365 #define IS_QLA28XX(ha) (IS_QLA2081(ha) || IS_QLA2281(ha))
4366 #define IS_QLA24XX_TYPE(ha) (IS_QLA24XX(ha) || IS_QLA54XX(ha) || \
4367 IS_QLA84XX(ha))
4368 #define IS_CNA_CAPABLE(ha) (IS_QLA81XX(ha) || IS_QLA82XX(ha) || \
4369 IS_QLA8031(ha) || IS_QLA8044(ha))
4370 #define IS_P3P_TYPE(ha) (IS_QLA82XX(ha) || IS_QLA8044(ha))
4371 #define IS_QLA2XXX_MIDTYPE(ha) (IS_QLA24XX(ha) || IS_QLA84XX(ha) || \
4372 IS_QLA25XX(ha) || IS_QLA81XX(ha) || \
4373 IS_QLA82XX(ha) || IS_QLA83XX(ha) || \
4374 IS_QLA8044(ha) || IS_QLA27XX(ha) || \
4375 IS_QLA28XX(ha))
4376 #define IS_MSIX_NACK_CAPABLE(ha) (IS_QLA81XX(ha) || IS_QLA83XX(ha) || \
4377 IS_QLA27XX(ha) || IS_QLA28XX(ha))
4378 #define IS_NOPOLLING_TYPE(ha) (IS_QLA81XX(ha) && (ha)->flags.msix_enabled)
4379 #define IS_FAC_REQUIRED(ha) (IS_QLA81XX(ha) || IS_QLA83XX(ha) || \
4380 IS_QLA27XX(ha) || IS_QLA28XX(ha))
4381 #define IS_NOCACHE_VPD_TYPE(ha) (IS_QLA81XX(ha) || IS_QLA83XX(ha) || \
4382 IS_QLA27XX(ha) || IS_QLA28XX(ha))
4383 #define IS_ALOGIO_CAPABLE(ha) (IS_QLA23XX(ha) || IS_FWI2_CAPABLE(ha))
4384
4385 #define IS_T10_PI_CAPABLE(ha) ((ha)->device_type & DT_T10_PI)
4386 #define IS_IIDMA_CAPABLE(ha) ((ha)->device_type & DT_IIDMA)
4387 #define IS_FWI2_CAPABLE(ha) ((ha)->device_type & DT_FWI2)
4388 #define IS_ZIO_SUPPORTED(ha) ((ha)->device_type & DT_ZIO_SUPPORTED)
4389 #define IS_OEM_001(ha) ((ha)->device_type & DT_OEM_001)
4390 #define HAS_EXTENDED_IDS(ha) ((ha)->device_type & DT_EXTENDED_IDS)
4391 #define IS_CT6_SUPPORTED(ha) ((ha)->device_type & DT_CT6_SUPPORTED)
4392 #define IS_MQUE_CAPABLE(ha) (IS_QLA83XX(ha) || IS_QLA27XX(ha) || \
4393 IS_QLA28XX(ha))
4394 #define IS_BIDI_CAPABLE(ha) \
4395 (IS_QLA25XX(ha) || IS_QLA2031(ha) || IS_QLA27XX(ha) || IS_QLA28XX(ha))
4396 /* Bit 21 of fw_attributes decides the MCTP capabilities */
4397 #define IS_MCTP_CAPABLE(ha) (IS_QLA2031(ha) && \
4398 ((ha)->fw_attributes_ext[0] & BIT_0))
4399 #define QLA_ABTS_FW_ENABLED(_ha) ((_ha)->fw_attributes_ext[0] & BIT_14)
4400 #define QLA_SRB_NVME_LS(_sp) ((_sp)->type == SRB_NVME_LS)
4401 #define QLA_SRB_NVME_CMD(_sp) ((_sp)->type == SRB_NVME_CMD)
4402 #define QLA_NVME_IOS(_sp) (QLA_SRB_NVME_CMD(_sp) || QLA_SRB_NVME_LS(_sp))
4403 #define QLA_LS_ABTS_WAIT_ENABLED(_sp) \
4404 (QLA_SRB_NVME_LS(_sp) && QLA_ABTS_FW_ENABLED(_sp->fcport->vha->hw))
4405 #define QLA_CMD_ABTS_WAIT_ENABLED(_sp) \
4406 (QLA_SRB_NVME_CMD(_sp) && QLA_ABTS_FW_ENABLED(_sp->fcport->vha->hw))
4407 #define QLA_ABTS_WAIT_ENABLED(_sp) \
4408 (QLA_NVME_IOS(_sp) && QLA_ABTS_FW_ENABLED(_sp->fcport->vha->hw))
4409
4410 #define IS_PI_UNINIT_CAPABLE(ha) (IS_QLA83XX(ha) || IS_QLA27XX(ha) || \
4411 IS_QLA28XX(ha))
4412 #define IS_PI_IPGUARD_CAPABLE(ha) (IS_QLA83XX(ha) || IS_QLA27XX(ha) || \
4413 IS_QLA28XX(ha))
4414 #define IS_PI_DIFB_DIX0_CAPABLE(ha) (0)
4415 #define IS_PI_SPLIT_DET_CAPABLE_HBA(ha) (IS_QLA83XX(ha) || IS_QLA27XX(ha) || \
4416 IS_QLA28XX(ha))
4417 #define IS_PI_SPLIT_DET_CAPABLE(ha) (IS_PI_SPLIT_DET_CAPABLE_HBA(ha) && \
4418 (((ha)->fw_attributes_h << 16 | (ha)->fw_attributes) & BIT_22))
4419 #define IS_ATIO_MSIX_CAPABLE(ha) (IS_QLA83XX(ha) || IS_QLA27XX(ha) || \
4420 IS_QLA28XX(ha))
4421 #define IS_TGT_MODE_CAPABLE(ha) (ha->tgt.atio_q_length)
4422 #define IS_SHADOW_REG_CAPABLE(ha) (IS_QLA27XX(ha) || IS_QLA28XX(ha))
4423 #define IS_DPORT_CAPABLE(ha) (IS_QLA83XX(ha) || IS_QLA27XX(ha) || \
4424 IS_QLA28XX(ha))
4425 #define IS_FAWWN_CAPABLE(ha) (IS_QLA83XX(ha) || IS_QLA27XX(ha) || \
4426 IS_QLA28XX(ha))
4427 #define IS_EXCHG_OFFLD_CAPABLE(ha) \
4428 (IS_QLA81XX(ha) || IS_QLA83XX(ha) || IS_QLA27XX(ha) || IS_QLA28XX(ha))
4429 #define IS_EXLOGIN_OFFLD_CAPABLE(ha) \
4430 (IS_QLA25XX(ha) || IS_QLA81XX(ha) || IS_QLA83XX(ha) || \
4431 IS_QLA27XX(ha) || IS_QLA28XX(ha))
4432 #define USE_ASYNC_SCAN(ha) (IS_QLA25XX(ha) || IS_QLA81XX(ha) ||\
4433 IS_QLA83XX(ha) || IS_QLA27XX(ha) || IS_QLA28XX(ha))
4434
4435 #define IS_ZIO_THRESHOLD_CAPABLE(ha) \
4436 ((IS_QLA83XX(ha) || IS_QLA27XX(ha) || IS_QLA28XX(ha)) &&\
4437 (ha->zio_mode == QLA_ZIO_MODE_6))
4438
4439 #define IS_QLA28XX_SECURED(ha) (IS_QLA28XX(ha) && ha->flags.secure_mcu)
4440
4441 /* HBA serial number */
4442 uint8_t serial0;
4443 uint8_t serial1;
4444 uint8_t serial2;
4445
4446 /* NVRAM configuration data */
4447 #define MAX_NVRAM_SIZE 4096
4448 #define VPD_OFFSET (MAX_NVRAM_SIZE / 2)
4449 uint16_t nvram_size;
4450 uint16_t nvram_base;
4451 void *nvram;
4452 uint16_t vpd_size;
4453 uint16_t vpd_base;
4454 void *vpd;
4455
4456 uint16_t loop_reset_delay;
4457 uint8_t retry_count;
4458 uint8_t login_timeout;
4459 uint16_t r_a_tov;
4460 int port_down_retry_count;
4461 uint8_t mbx_count;
4462 uint8_t aen_mbx_count;
4463 atomic_t num_pend_mbx_stage1;
4464 atomic_t num_pend_mbx_stage2;
4465 uint16_t frame_payload_size;
4466
4467 uint32_t login_retry_count;
4468 /* SNS command interfaces. */
4469 ms_iocb_entry_t *ms_iocb;
4470 dma_addr_t ms_iocb_dma;
4471 struct ct_sns_pkt *ct_sns;
4472 dma_addr_t ct_sns_dma;
4473 /* SNS command interfaces for 2200. */
4474 struct sns_cmd_pkt *sns_cmd;
4475 dma_addr_t sns_cmd_dma;
4476
4477 #define SFP_DEV_SIZE 512
4478 #define SFP_BLOCK_SIZE 64
4479 #define SFP_RTDI_LEN SFP_BLOCK_SIZE
4480
4481 void *sfp_data;
4482 dma_addr_t sfp_data_dma;
4483
4484 struct qla_flt_header *flt;
4485 dma_addr_t flt_dma;
4486
4487 #define XGMAC_DATA_SIZE 4096
4488 void *xgmac_data;
4489 dma_addr_t xgmac_data_dma;
4490
4491 #define DCBX_TLV_DATA_SIZE 4096
4492 void *dcbx_tlv;
4493 dma_addr_t dcbx_tlv_dma;
4494
4495 struct task_struct *dpc_thread;
4496 uint8_t dpc_active; /* DPC routine is active */
4497
4498 dma_addr_t gid_list_dma;
4499 struct gid_list_info *gid_list;
4500 int gid_list_info_size;
4501
4502 /* Small DMA pool allocations -- maximum 256 bytes in length. */
4503 #define DMA_POOL_SIZE 256
4504 struct dma_pool *s_dma_pool;
4505
4506 dma_addr_t init_cb_dma;
4507 init_cb_t *init_cb;
4508 int init_cb_size;
4509 dma_addr_t ex_init_cb_dma;
4510 struct ex_init_cb_81xx *ex_init_cb;
4511 dma_addr_t sf_init_cb_dma;
4512 struct init_sf_cb *sf_init_cb;
4513
4514 void *scm_fpin_els_buff;
4515 uint64_t scm_fpin_els_buff_size;
4516 bool scm_fpin_valid;
4517 bool scm_fpin_payload_size;
4518
4519 void *async_pd;
4520 dma_addr_t async_pd_dma;
4521
4522 #define ENABLE_EXTENDED_LOGIN BIT_7
4523
4524 /* Extended Logins */
4525 void *exlogin_buf;
4526 dma_addr_t exlogin_buf_dma;
4527 uint32_t exlogin_size;
4528
4529 #define ENABLE_EXCHANGE_OFFLD BIT_2
4530
4531 /* Exchange Offload */
4532 void *exchoffld_buf;
4533 dma_addr_t exchoffld_buf_dma;
4534 int exchoffld_size;
4535 int exchoffld_count;
4536
4537 /* n2n */
4538 struct fc_els_flogi plogi_els_payld;
4539
4540 void *swl;
4541
4542 /* These are used by mailbox operations. */
4543 uint16_t mailbox_out[MAILBOX_REGISTER_COUNT];
4544 uint32_t mailbox_out32[MAILBOX_REGISTER_COUNT];
4545 uint32_t aenmb[AEN_MAILBOX_REGISTER_COUNT_FX00];
4546
4547 mbx_cmd_t *mcp;
4548 struct mbx_cmd_32 *mcp32;
4549
4550 unsigned long mbx_cmd_flags;
4551 #define MBX_INTERRUPT 1
4552 #define MBX_INTR_WAIT 2
4553 #define MBX_UPDATE_FLASH_ACTIVE 3
4554
4555 struct mutex vport_lock; /* Virtual port synchronization */
4556 spinlock_t vport_slock; /* order is hardware_lock, then vport_slock */
4557 struct mutex mq_lock; /* multi-queue synchronization */
4558 struct completion mbx_cmd_comp; /* Serialize mbx access */
4559 struct completion mbx_intr_comp; /* Used for completion notification */
4560 struct completion dcbx_comp; /* For set port config notification */
4561 struct completion lb_portup_comp; /* Used to wait for link up during
4562 * loopback */
4563 #define DCBX_COMP_TIMEOUT 20
4564 #define LB_PORTUP_COMP_TIMEOUT 10
4565
4566 int notify_dcbx_comp;
4567 int notify_lb_portup_comp;
4568 struct mutex selflogin_lock;
4569
4570 /* Basic firmware related information. */
4571 uint16_t fw_major_version;
4572 uint16_t fw_minor_version;
4573 uint16_t fw_subminor_version;
4574 uint16_t fw_attributes;
4575 uint16_t fw_attributes_h;
4576 #define FW_ATTR_H_NVME_FBURST BIT_1
4577 #define FW_ATTR_H_NVME BIT_10
4578 #define FW_ATTR_H_NVME_UPDATED BIT_14
4579
4580 /* About firmware SCM support */
4581 #define FW_ATTR_EXT0_SCM_SUPPORTED BIT_12
4582 /* Brocade fabric attached */
4583 #define FW_ATTR_EXT0_SCM_BROCADE 0x00001000
4584 /* Cisco fabric attached */
4585 #define FW_ATTR_EXT0_SCM_CISCO 0x00002000
4586 #define FW_ATTR_EXT0_NVME2 BIT_13
4587 #define FW_ATTR_EXT0_EDIF BIT_5
4588 uint16_t fw_attributes_ext[2];
4589 uint32_t fw_memory_size;
4590 uint32_t fw_transfer_size;
4591 uint32_t fw_srisc_address;
4592 #define RISC_START_ADDRESS_2100 0x1000
4593 #define RISC_START_ADDRESS_2300 0x800
4594 #define RISC_START_ADDRESS_2400 0x100000
4595
4596 uint16_t orig_fw_tgt_xcb_count;
4597 uint16_t cur_fw_tgt_xcb_count;
4598 uint16_t orig_fw_xcb_count;
4599 uint16_t cur_fw_xcb_count;
4600 uint16_t orig_fw_iocb_count;
4601 uint16_t cur_fw_iocb_count;
4602 uint16_t fw_max_fcf_count;
4603
4604 uint32_t fw_shared_ram_start;
4605 uint32_t fw_shared_ram_end;
4606 uint32_t fw_ddr_ram_start;
4607 uint32_t fw_ddr_ram_end;
4608
4609 uint16_t fw_options[16]; /* slots: 1,2,3,10,11 */
4610 uint8_t fw_seriallink_options[4];
4611 __le16 fw_seriallink_options24[4];
4612
4613 uint8_t serdes_version[3];
4614 uint8_t mpi_version[3];
4615 uint32_t mpi_capabilities;
4616 uint8_t phy_version[3];
4617 uint8_t pep_version[3];
4618
4619 /* Firmware dump template */
4620 struct fwdt {
4621 void *template;
4622 ulong length;
4623 ulong dump_size;
4624 } fwdt[2];
4625 struct qla2xxx_fw_dump *fw_dump;
4626 uint32_t fw_dump_len;
4627 u32 fw_dump_alloc_len;
4628 bool fw_dumped;
4629 unsigned long fw_dump_cap_flags;
4630 #define RISC_PAUSE_CMPL 0
4631 #define DMA_SHUTDOWN_CMPL 1
4632 #define ISP_RESET_CMPL 2
4633 #define RISC_RDY_AFT_RESET 3
4634 #define RISC_SRAM_DUMP_CMPL 4
4635 #define RISC_EXT_MEM_DUMP_CMPL 5
4636 #define ISP_MBX_RDY 6
4637 #define ISP_SOFT_RESET_CMPL 7
4638 int fw_dump_reading;
4639 void *mpi_fw_dump;
4640 u32 mpi_fw_dump_len;
4641 unsigned int mpi_fw_dump_reading:1;
4642 unsigned int mpi_fw_dumped:1;
4643 int prev_minidump_failed;
4644 dma_addr_t eft_dma;
4645 void *eft;
4646 /* Current size of mctp dump is 0x086064 bytes */
4647 #define MCTP_DUMP_SIZE 0x086064
4648 dma_addr_t mctp_dump_dma;
4649 void *mctp_dump;
4650 int mctp_dumped;
4651 int mctp_dump_reading;
4652 uint32_t chain_offset;
4653 struct dentry *dfs_dir;
4654 struct dentry *dfs_fce;
4655 struct dentry *dfs_tgt_counters;
4656 struct dentry *dfs_fw_resource_cnt;
4657
4658 dma_addr_t fce_dma;
4659 void *fce;
4660 uint32_t fce_bufs;
4661 uint16_t fce_mb[8];
4662 uint64_t fce_wr, fce_rd;
4663 struct mutex fce_mutex;
4664
4665 uint32_t pci_attr;
4666 uint16_t chip_revision;
4667
4668 uint16_t product_id[4];
4669
4670 uint8_t model_number[16+1];
4671 char model_desc[80];
4672 uint8_t adapter_id[16+1];
4673
4674 /* Option ROM information. */
4675 char *optrom_buffer;
4676 uint32_t optrom_size;
4677 int optrom_state;
4678 #define QLA_SWAITING 0
4679 #define QLA_SREADING 1
4680 #define QLA_SWRITING 2
4681 uint32_t optrom_region_start;
4682 uint32_t optrom_region_size;
4683 struct mutex optrom_mutex;
4684
4685 /* PCI expansion ROM image information. */
4686 #define ROM_CODE_TYPE_BIOS 0
4687 #define ROM_CODE_TYPE_FCODE 1
4688 #define ROM_CODE_TYPE_EFI 3
4689 uint8_t bios_revision[2];
4690 uint8_t efi_revision[2];
4691 uint8_t fcode_revision[16];
4692 uint32_t fw_revision[4];
4693
4694 uint32_t gold_fw_version[4];
4695
4696 /* Offsets for flash/nvram access (set to ~0 if not used). */
4697 uint32_t flash_conf_off;
4698 uint32_t flash_data_off;
4699 uint32_t nvram_conf_off;
4700 uint32_t nvram_data_off;
4701
4702 uint32_t fdt_wrt_disable;
4703 uint32_t fdt_wrt_enable;
4704 uint32_t fdt_erase_cmd;
4705 uint32_t fdt_block_size;
4706 uint32_t fdt_unprotect_sec_cmd;
4707 uint32_t fdt_protect_sec_cmd;
4708 uint32_t fdt_wrt_sts_reg_cmd;
4709
4710 struct {
4711 uint32_t flt_region_flt;
4712 uint32_t flt_region_fdt;
4713 uint32_t flt_region_boot;
4714 uint32_t flt_region_boot_sec;
4715 uint32_t flt_region_fw;
4716 uint32_t flt_region_fw_sec;
4717 uint32_t flt_region_vpd_nvram;
4718 uint32_t flt_region_vpd_nvram_sec;
4719 uint32_t flt_region_vpd;
4720 uint32_t flt_region_vpd_sec;
4721 uint32_t flt_region_nvram;
4722 uint32_t flt_region_nvram_sec;
4723 uint32_t flt_region_npiv_conf;
4724 uint32_t flt_region_gold_fw;
4725 uint32_t flt_region_fcp_prio;
4726 uint32_t flt_region_bootload;
4727 uint32_t flt_region_img_status_pri;
4728 uint32_t flt_region_img_status_sec;
4729 uint32_t flt_region_aux_img_status_pri;
4730 uint32_t flt_region_aux_img_status_sec;
4731 };
4732 uint8_t active_image;
4733 uint8_t active_tmf;
4734 #define MAX_ACTIVE_TMF 8
4735
4736 /* Needed for BEACON */
4737 uint16_t beacon_blink_led;
4738 uint8_t beacon_color_state;
4739 #define QLA_LED_GRN_ON 0x01
4740 #define QLA_LED_YLW_ON 0x02
4741 #define QLA_LED_ABR_ON 0x04
4742 #define QLA_LED_ALL_ON 0x07 /* yellow, green, amber. */
4743 /* ISP2322: red, green, amber. */
4744 uint16_t zio_mode;
4745 uint16_t zio_timer;
4746
4747 struct qla_msix_entry *msix_entries;
4748
4749 struct list_head tmf_pending;
4750 struct list_head tmf_active;
4751 struct list_head vp_list; /* list of VP */
4752 unsigned long vp_idx_map[(MAX_MULTI_ID_FABRIC / 8) /
4753 sizeof(unsigned long)];
4754 uint16_t num_vhosts; /* number of vports created */
4755 uint16_t num_vsans; /* number of vsan created */
4756 uint16_t max_npiv_vports; /* 63 or 125 per topoloty */
4757 int cur_vport_count;
4758
4759 struct qla_chip_state_84xx *cs84xx;
4760 struct isp_operations *isp_ops;
4761 struct workqueue_struct *wq;
4762 struct work_struct heartbeat_work;
4763 struct qlfc_fw fw_buf;
4764 unsigned long last_heartbeat_run_jiffies;
4765
4766 /* FCP_CMND priority support */
4767 struct qla_fcp_prio_cfg *fcp_prio_cfg;
4768
4769 struct dma_pool *dl_dma_pool;
4770 #define DSD_LIST_DMA_POOL_SIZE 512
4771
4772 struct dma_pool *fcp_cmnd_dma_pool;
4773 mempool_t *ctx_mempool;
4774 #define FCP_CMND_DMA_POOL_SIZE 512
4775
4776 void __iomem *nx_pcibase; /* Base I/O address */
4777 void __iomem *nxdb_rd_ptr; /* Doorbell read pointer */
4778 void __iomem *nxdb_wr_ptr; /* Door bell write pointer */
4779
4780 uint32_t crb_win;
4781 uint32_t curr_window;
4782 uint32_t ddr_mn_window;
4783 unsigned long mn_win_crb;
4784 unsigned long ms_win_crb;
4785 int qdr_sn_window;
4786 uint32_t fcoe_dev_init_timeout;
4787 uint32_t fcoe_reset_timeout;
4788 rwlock_t hw_lock;
4789 uint16_t portnum; /* port number */
4790 int link_width;
4791 struct fw_blob *hablob;
4792 struct qla82xx_legacy_intr_set nx_legacy_intr;
4793
4794 uint8_t fw_type;
4795 uint32_t file_prd_off; /* File firmware product offset */
4796
4797 uint32_t md_template_size;
4798 void *md_tmplt_hdr;
4799 dma_addr_t md_tmplt_hdr_dma;
4800 void *md_dump;
4801 uint32_t md_dump_size;
4802
4803 void *loop_id_map;
4804
4805 /* QLA83XX IDC specific fields */
4806 uint32_t idc_audit_ts;
4807 uint32_t idc_extend_tmo;
4808
4809 /* DPC low-priority workqueue */
4810 struct workqueue_struct *dpc_lp_wq;
4811 struct work_struct idc_aen;
4812 /* DPC high-priority workqueue */
4813 struct workqueue_struct *dpc_hp_wq;
4814 struct work_struct nic_core_reset;
4815 struct work_struct idc_state_handler;
4816 struct work_struct nic_core_unrecoverable;
4817 struct work_struct board_disable;
4818
4819 struct mr_data_fx00 mr;
4820 uint32_t chip_reset;
4821
4822 struct qlt_hw_data tgt;
4823 int allow_cna_fw_dump;
4824 uint32_t fw_ability_mask;
4825 uint16_t min_supported_speed;
4826 uint16_t max_supported_speed;
4827
4828 /* DMA pool for the DIF bundling buffers */
4829 struct dma_pool *dif_bundl_pool;
4830 #define DIF_BUNDLING_DMA_POOL_SIZE 1024
4831 struct {
4832 struct {
4833 struct list_head head;
4834 uint count;
4835 } good;
4836 struct {
4837 struct list_head head;
4838 uint count;
4839 } unusable;
4840 } pool;
4841
4842 unsigned long long dif_bundle_crossed_pages;
4843 unsigned long long dif_bundle_reads;
4844 unsigned long long dif_bundle_writes;
4845 unsigned long long dif_bundle_kallocs;
4846 unsigned long long dif_bundle_dma_allocs;
4847
4848 atomic_t nvme_active_aen_cnt;
4849 uint16_t nvme_last_rptd_aen; /* Last recorded aen count */
4850
4851 uint8_t fc4_type_priority;
4852
4853 atomic_t zio_threshold;
4854 uint16_t last_zio_threshold;
4855
4856 #define DEFAULT_ZIO_THRESHOLD 5
4857
4858 struct qla_hw_data_stat stat;
4859 pci_error_state_t pci_error_state;
4860 struct dma_pool *purex_dma_pool;
4861 struct btree_head32 host_map;
4862
4863 #define EDIF_NUM_SA_INDEX 512
4864 #define EDIF_TX_SA_INDEX_BASE EDIF_NUM_SA_INDEX
4865 void *edif_rx_sa_id_map;
4866 void *edif_tx_sa_id_map;
4867 spinlock_t sadb_fp_lock;
4868
4869 struct list_head sadb_tx_index_list;
4870 struct list_head sadb_rx_index_list;
4871 spinlock_t sadb_lock; /* protects list */
4872 struct els_reject elsrej;
4873 u8 edif_post_stop_cnt_down;
4874 struct qla_vp_map *vp_map;
4875 struct qla_nvme_fc_rjt lsrjt;
4876 struct qla_fw_res fwres ____cacheline_aligned;
4877 };
4878
4879 #define RX_ELS_SIZE (roundup(sizeof(struct enode) + ELS_MAX_PAYLOAD, SMP_CACHE_BYTES))
4880
4881 struct active_regions {
4882 uint8_t global;
4883 struct {
4884 uint8_t board_config;
4885 uint8_t vpd_nvram;
4886 uint8_t npiv_config_0_1;
4887 uint8_t npiv_config_2_3;
4888 uint8_t nvme_params;
4889 } aux;
4890 };
4891
4892 #define FW_ABILITY_MAX_SPEED_MASK 0xFUL
4893 #define FW_ABILITY_MAX_SPEED_16G 0x0
4894 #define FW_ABILITY_MAX_SPEED_32G 0x1
4895 #define FW_ABILITY_MAX_SPEED(ha) \
4896 (ha->fw_ability_mask & FW_ABILITY_MAX_SPEED_MASK)
4897
4898 #define QLA_GET_DATA_RATE 0
4899 #define QLA_SET_DATA_RATE_NOLR 1
4900 #define QLA_SET_DATA_RATE_LR 2 /* Set speed and initiate LR */
4901
4902 #define QLA_DEFAULT_PAYLOAD_SIZE 64
4903 /*
4904 * This item might be allocated with a size > sizeof(struct purex_item).
4905 * The "size" variable gives the size of the payload (which
4906 * is variable) starting at "iocb".
4907 */
4908 struct purex_item {
4909 void *purls_context;
4910 struct list_head list;
4911 struct scsi_qla_host *vha;
4912 void (*process_item)(struct scsi_qla_host *vha,
4913 struct purex_item *pkt);
4914 atomic_t in_use;
4915 uint16_t size;
4916 struct {
4917 uint8_t iocb[64];
4918 } iocb;
4919 };
4920
4921 #include "qla_edif.h"
4922
4923 #define SCM_FLAG_RDF_REJECT 0x00
4924 #define SCM_FLAG_RDF_COMPLETED 0x01
4925
4926 #define QLA_CON_PRIMITIVE_RECEIVED 0x1
4927 #define QLA_CONGESTION_ARB_WARNING 0x1
4928 #define QLA_CONGESTION_ARB_ALARM 0X2
4929
4930 /*
4931 * Qlogic scsi host structure
4932 */
4933 typedef struct scsi_qla_host {
4934 struct list_head list;
4935 struct list_head vp_fcports; /* list of fcports */
4936 struct list_head work_list;
4937 spinlock_t work_lock;
4938 struct work_struct iocb_work;
4939
4940 /* Commonly used flags and state information. */
4941 struct Scsi_Host *host;
4942 unsigned long host_no;
4943 uint8_t host_str[16];
4944
4945 volatile struct {
4946 uint32_t init_done :1;
4947 uint32_t online :1;
4948 uint32_t reset_active :1;
4949
4950 uint32_t management_server_logged_in :1;
4951 uint32_t process_response_queue :1;
4952 uint32_t difdix_supported:1;
4953 uint32_t delete_progress:1;
4954
4955 uint32_t fw_tgt_reported:1;
4956 uint32_t bbcr_enable:1;
4957 uint32_t qpairs_available:1;
4958 uint32_t qpairs_req_created:1;
4959 uint32_t qpairs_rsp_created:1;
4960 uint32_t nvme_enabled:1;
4961 uint32_t nvme_first_burst:1;
4962 uint32_t nvme2_enabled:1;
4963 } flags;
4964
4965 atomic_t loop_state;
4966 #define LOOP_TIMEOUT 1
4967 #define LOOP_DOWN 2
4968 #define LOOP_UP 3
4969 #define LOOP_UPDATE 4
4970 #define LOOP_READY 5
4971 #define LOOP_DEAD 6
4972
4973 unsigned long buf_expired;
4974 unsigned long relogin_jif;
4975 unsigned long dpc_flags;
4976 #define RESET_MARKER_NEEDED 0 /* Send marker to ISP. */
4977 #define RESET_ACTIVE 1
4978 #define ISP_ABORT_NEEDED 2 /* Initiate ISP abort. */
4979 #define ABORT_ISP_ACTIVE 3 /* ISP abort in progress. */
4980 #define LOOP_RESYNC_NEEDED 4 /* Device Resync needed. */
4981 #define LOOP_RESYNC_ACTIVE 5
4982 #define LOCAL_LOOP_UPDATE 6 /* Perform a local loop update. */
4983 #define RSCN_UPDATE 7 /* Perform an RSCN update. */
4984 #define RELOGIN_NEEDED 8
4985 #define REGISTER_FC4_NEEDED 9 /* SNS FC4 registration required. */
4986 #define ISP_ABORT_RETRY 10 /* ISP aborted. */
4987 #define BEACON_BLINK_NEEDED 11
4988 #define REGISTER_FDMI_NEEDED 12
4989 #define VP_DPC_NEEDED 14 /* wake up for VP dpc handling */
4990 #define UNLOADING 15
4991 #define NPIV_CONFIG_NEEDED 16
4992 #define ISP_UNRECOVERABLE 17
4993 #define FCOE_CTX_RESET_NEEDED 18 /* Initiate FCoE context reset */
4994 #define MPI_RESET_NEEDED 19 /* Initiate MPI FW reset */
4995 #define ISP_QUIESCE_NEEDED 20 /* Driver need some quiescence */
4996 #define N2N_LINK_RESET 21
4997 #define PORT_UPDATE_NEEDED 22
4998 #define FX00_RESET_RECOVERY 23
4999 #define FX00_TARGET_SCAN 24
5000 #define FX00_CRITEMP_RECOVERY 25
5001 #define FX00_HOST_INFO_RESEND 26
5002 #define QPAIR_ONLINE_CHECK_NEEDED 27
5003 #define DO_EEH_RECOVERY 28
5004 #define DETECT_SFP_CHANGE 29
5005 #define N2N_LOGIN_NEEDED 30
5006 #define IOCB_WORK_ACTIVE 31
5007 #define SET_ZIO_THRESHOLD_NEEDED 32
5008 #define ISP_ABORT_TO_ROM 33
5009 #define VPORT_DELETE 34
5010
5011 #define PROCESS_PUREX_IOCB 63
5012
5013 unsigned long pci_flags;
5014 #define PFLG_DISCONNECTED 0 /* PCI device removed */
5015 #define PFLG_DRIVER_REMOVING 1 /* PCI driver .remove */
5016 #define PFLG_DRIVER_PROBING 2 /* PCI driver .probe */
5017
5018 uint32_t device_flags;
5019 #define SWITCH_FOUND BIT_0
5020 #define DFLG_NO_CABLE BIT_1
5021 #define DFLG_DEV_FAILED BIT_5
5022
5023 /* ISP configuration data. */
5024 uint16_t loop_id; /* Host adapter loop id */
5025 uint16_t self_login_loop_id; /* host adapter loop id
5026 * get it on self login
5027 */
5028 fc_port_t bidir_fcport; /* fcport used for bidir cmnds
5029 * no need of allocating it for
5030 * each command
5031 */
5032
5033 port_id_t d_id; /* Host adapter port id */
5034 uint8_t marker_needed;
5035 uint16_t mgmt_svr_loop_id;
5036
5037
5038
5039 /* Timeout timers. */
5040 uint8_t loop_down_abort_time; /* port down timer */
5041 atomic_t loop_down_timer; /* loop down timer */
5042 uint8_t link_down_timeout; /* link down timeout */
5043
5044 uint32_t timer_active;
5045 struct timer_list timer;
5046
5047 uint8_t node_name[WWN_SIZE];
5048 uint8_t port_name[WWN_SIZE];
5049 uint8_t fabric_node_name[WWN_SIZE];
5050 uint8_t fabric_port_name[WWN_SIZE];
5051
5052 struct nvme_fc_local_port *nvme_local_port;
5053 struct completion nvme_del_done;
5054
5055 uint16_t fcoe_vlan_id;
5056 uint16_t fcoe_fcf_idx;
5057 uint8_t fcoe_vn_port_mac[6];
5058
5059 /* list of commands waiting on workqueue */
5060 struct list_head qla_cmd_list;
5061 struct list_head unknown_atio_list;
5062 spinlock_t cmd_list_lock;
5063 struct delayed_work unknown_atio_work;
5064
5065 /* Counter to detect races between ELS and RSCN events */
5066 atomic_t generation_tick;
5067 atomic_t rscn_gen;
5068 /* Time when global fcport update has been scheduled */
5069 int total_fcport_update_gen;
5070 /* List of pending LOGOs, protected by tgt_mutex */
5071 struct list_head logo_list;
5072 /* List of pending PLOGI acks, protected by hw lock */
5073 struct list_head plogi_ack_list;
5074
5075 struct list_head qp_list;
5076
5077 uint32_t vp_abort_cnt;
5078
5079 struct fc_vport *fc_vport; /* holds fc_vport * for each vport */
5080 uint16_t vp_idx; /* vport ID */
5081 struct qla_qpair *qpair; /* base qpair */
5082
5083 unsigned long vp_flags;
5084 #define VP_IDX_ACQUIRED 0 /* bit no 0 */
5085 #define VP_CREATE_NEEDED 1
5086 #define VP_BIND_NEEDED 2
5087 #define VP_DELETE_NEEDED 3
5088 #define VP_SCR_NEEDED 4 /* State Change Request registration */
5089 #define VP_CONFIG_OK 5 /* Flag to cfg VP, if FW is ready */
5090 atomic_t vp_state;
5091 #define VP_OFFLINE 0
5092 #define VP_ACTIVE 1
5093 #define VP_FAILED 2
5094 // #define VP_DISABLE 3
5095 uint16_t vp_err_state;
5096 uint16_t vp_prev_err_state;
5097 #define VP_ERR_UNKWN 0
5098 #define VP_ERR_PORTDWN 1
5099 #define VP_ERR_FAB_UNSUPPORTED 2
5100 #define VP_ERR_FAB_NORESOURCES 3
5101 #define VP_ERR_FAB_LOGOUT 4
5102 #define VP_ERR_ADAP_NORESOURCES 5
5103 struct qla_hw_data *hw;
5104 struct scsi_qlt_host vha_tgt;
5105 struct req_que *req;
5106 int fw_heartbeat_counter;
5107 int seconds_since_last_heartbeat;
5108 struct fc_host_statistics fc_host_stat;
5109 struct qla_statistics qla_stats;
5110 struct bidi_statistics bidi_stats;
5111 atomic_t vref_count;
5112 struct qla8044_reset_template reset_tmplt;
5113 uint16_t bbcr;
5114
5115 uint16_t u_ql2xexchoffld;
5116 uint16_t u_ql2xiniexchg;
5117 uint16_t qlini_mode;
5118 uint16_t ql2xexchoffld;
5119 uint16_t ql2xiniexchg;
5120
5121 struct dentry *dfs_rport_root;
5122
5123 struct purex_list {
5124 struct list_head head;
5125 spinlock_t lock;
5126 } purex_list;
5127 struct purex_item default_item;
5128
5129 struct name_list_extended gnl;
5130 /* Count of active session/fcport */
5131 int fcport_count;
5132 wait_queue_head_t fcport_waitQ;
5133 wait_queue_head_t vref_waitq;
5134 uint8_t min_supported_speed;
5135 uint8_t n2n_node_name[WWN_SIZE];
5136 uint8_t n2n_port_name[WWN_SIZE];
5137 uint16_t n2n_id;
5138 __le16 dport_data[4];
5139 struct fab_scan scan;
5140 uint8_t scm_fabric_connection_flags;
5141
5142 unsigned int irq_offset;
5143
5144 u64 hw_err_cnt;
5145 u64 interface_err_cnt;
5146 u64 cmd_timeout_cnt;
5147 u64 reset_cmd_err_cnt;
5148 u64 link_down_time;
5149 u64 short_link_down_cnt;
5150 struct edif_dbell e_dbell;
5151 struct pur_core pur_cinfo;
5152
5153 #define DPORT_DIAG_IN_PROGRESS BIT_0
5154 #define DPORT_DIAG_CHIP_RESET_IN_PROGRESS BIT_1
5155 uint16_t dport_status;
5156 } scsi_qla_host_t;
5157
5158 struct qla27xx_image_status {
5159 uint8_t image_status_mask;
5160 __le16 generation;
5161 uint8_t ver_major;
5162 uint8_t ver_minor;
5163 uint8_t bitmap; /* 28xx only */
5164 uint8_t reserved[2];
5165 __le32 checksum;
5166 __le32 signature;
5167 } __packed;
5168
5169 /* 28xx aux image status bimap values */
5170 #define QLA28XX_AUX_IMG_BOARD_CONFIG BIT_0
5171 #define QLA28XX_AUX_IMG_VPD_NVRAM BIT_1
5172 #define QLA28XX_AUX_IMG_NPIV_CONFIG_0_1 BIT_2
5173 #define QLA28XX_AUX_IMG_NPIV_CONFIG_2_3 BIT_3
5174 #define QLA28XX_AUX_IMG_NVME_PARAMS BIT_4
5175
5176 #define SET_VP_IDX 1
5177 #define SET_AL_PA 2
5178 #define RESET_VP_IDX 3
5179 #define RESET_AL_PA 4
5180 struct qla_vp_map {
5181 uint8_t idx;
5182 scsi_qla_host_t *vha;
5183 };
5184
5185 struct qla2_sgx {
5186 dma_addr_t dma_addr; /* OUT */
5187 uint32_t dma_len; /* OUT */
5188
5189 uint32_t tot_bytes; /* IN */
5190 struct scatterlist *cur_sg; /* IN */
5191
5192 /* for book keeping, bzero on initial invocation */
5193 uint32_t bytes_consumed;
5194 uint32_t num_bytes;
5195 uint32_t tot_partial;
5196
5197 /* for debugging */
5198 uint32_t num_sg;
5199 srb_t *sp;
5200 };
5201
5202 #define QLA_FW_STARTED(_ha) { \
5203 int i; \
5204 _ha->flags.fw_started = 1; \
5205 _ha->base_qpair->fw_started = 1; \
5206 for (i = 0; i < _ha->max_qpairs; i++) { \
5207 if (_ha->queue_pair_map[i]) \
5208 _ha->queue_pair_map[i]->fw_started = 1; \
5209 } \
5210 }
5211
5212 #define QLA_FW_STOPPED(_ha) { \
5213 int i; \
5214 _ha->flags.fw_started = 0; \
5215 _ha->base_qpair->fw_started = 0; \
5216 for (i = 0; i < _ha->max_qpairs; i++) { \
5217 if (_ha->queue_pair_map[i]) \
5218 _ha->queue_pair_map[i]->fw_started = 0; \
5219 } \
5220 }
5221
5222
5223 #define SFUB_CHECKSUM_SIZE 4
5224
5225 struct secure_flash_update_block {
5226 uint32_t block_info;
5227 uint32_t signature_lo;
5228 uint32_t signature_hi;
5229 uint32_t signature_upper[0x3e];
5230 };
5231
5232 struct secure_flash_update_block_pk {
5233 uint32_t block_info;
5234 uint32_t signature_lo;
5235 uint32_t signature_hi;
5236 uint32_t signature_upper[0x3e];
5237 uint32_t public_key[0x41];
5238 };
5239
5240 /*
5241 * Macros to help code, maintain, etc.
5242 */
5243 #define LOOP_TRANSITION(ha) \
5244 (test_bit(ISP_ABORT_NEEDED, &ha->dpc_flags) || \
5245 test_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags) || \
5246 atomic_read(&ha->loop_state) == LOOP_DOWN)
5247
5248 #define STATE_TRANSITION(ha) \
5249 (test_bit(ISP_ABORT_NEEDED, &ha->dpc_flags) || \
5250 test_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags))
5251
qla_vha_mark_busy(scsi_qla_host_t * vha)5252 static inline bool qla_vha_mark_busy(scsi_qla_host_t *vha)
5253 {
5254 atomic_inc(&vha->vref_count);
5255 mb();
5256 if (vha->flags.delete_progress) {
5257 atomic_dec(&vha->vref_count);
5258 wake_up(&vha->vref_waitq);
5259 return true;
5260 }
5261 return false;
5262 }
5263
5264 #define QLA_VHA_MARK_NOT_BUSY(__vha) do { \
5265 atomic_dec(&__vha->vref_count); \
5266 wake_up(&__vha->vref_waitq); \
5267 } while (0) \
5268
5269 #define QLA_QPAIR_MARK_BUSY(__qpair, __bail) do { \
5270 atomic_inc(&__qpair->ref_count); \
5271 mb(); \
5272 if (__qpair->delete_in_progress) { \
5273 atomic_dec(&__qpair->ref_count); \
5274 __bail = 1; \
5275 } else { \
5276 __bail = 0; \
5277 } \
5278 } while (0)
5279
5280 #define QLA_QPAIR_MARK_NOT_BUSY(__qpair) \
5281 atomic_dec(&__qpair->ref_count)
5282
5283 #define QLA_ENA_CONF(_ha) {\
5284 int i;\
5285 _ha->base_qpair->enable_explicit_conf = 1; \
5286 for (i = 0; i < _ha->max_qpairs; i++) { \
5287 if (_ha->queue_pair_map[i]) \
5288 _ha->queue_pair_map[i]->enable_explicit_conf = 1; \
5289 } \
5290 }
5291
5292 #define QLA_DIS_CONF(_ha) {\
5293 int i;\
5294 _ha->base_qpair->enable_explicit_conf = 0; \
5295 for (i = 0; i < _ha->max_qpairs; i++) { \
5296 if (_ha->queue_pair_map[i]) \
5297 _ha->queue_pair_map[i]->enable_explicit_conf = 0; \
5298 } \
5299 }
5300
5301 /*
5302 * qla2x00 local function return status codes
5303 */
5304 #define MBS_MASK 0x3fff
5305
5306 #define QLA_SUCCESS (MBS_COMMAND_COMPLETE & MBS_MASK)
5307 #define QLA_INVALID_COMMAND (MBS_INVALID_COMMAND & MBS_MASK)
5308 #define QLA_INTERFACE_ERROR (MBS_HOST_INTERFACE_ERROR & MBS_MASK)
5309 #define QLA_TEST_FAILED (MBS_TEST_FAILED & MBS_MASK)
5310 #define QLA_COMMAND_ERROR (MBS_COMMAND_ERROR & MBS_MASK)
5311 #define QLA_PARAMETER_ERROR (MBS_COMMAND_PARAMETER_ERROR & MBS_MASK)
5312 #define QLA_PORT_ID_USED (MBS_PORT_ID_USED & MBS_MASK)
5313 #define QLA_LOOP_ID_USED (MBS_LOOP_ID_USED & MBS_MASK)
5314 #define QLA_ALL_IDS_IN_USE (MBS_ALL_IDS_IN_USE & MBS_MASK)
5315 #define QLA_NOT_LOGGED_IN (MBS_NOT_LOGGED_IN & MBS_MASK)
5316
5317 #define QLA_FUNCTION_TIMEOUT 0x100
5318 #define QLA_FUNCTION_PARAMETER_ERROR 0x101
5319 #define QLA_FUNCTION_FAILED 0x102
5320 #define QLA_MEMORY_ALLOC_FAILED 0x103
5321 #define QLA_LOCK_TIMEOUT 0x104
5322 #define QLA_ABORTED 0x105
5323 #define QLA_SUSPENDED 0x106
5324 #define QLA_BUSY 0x107
5325 #define QLA_ALREADY_REGISTERED 0x109
5326 #define QLA_OS_TIMER_EXPIRED 0x10a
5327 #define QLA_ERR_NO_QPAIR 0x10b
5328 #define QLA_ERR_NOT_FOUND 0x10c
5329 #define QLA_ERR_FROM_FW 0x10d
5330
5331 #define NVRAM_DELAY() udelay(10)
5332
5333 /*
5334 * Flash support definitions
5335 */
5336 #define OPTROM_SIZE_2300 0x20000
5337 #define OPTROM_SIZE_2322 0x100000
5338 #define OPTROM_SIZE_24XX 0x100000
5339 #define OPTROM_SIZE_25XX 0x200000
5340 #define OPTROM_SIZE_81XX 0x400000
5341 #define OPTROM_SIZE_82XX 0x800000
5342 #define OPTROM_SIZE_83XX 0x1000000
5343 #define OPTROM_SIZE_28XX 0x2000000
5344
5345 #define OPTROM_BURST_SIZE 0x1000
5346 #define OPTROM_BURST_DWORDS (OPTROM_BURST_SIZE / 4)
5347
5348 #define QLA_DSDS_PER_IOCB 37
5349
5350 #define QLA_SG_ALL 1024
5351
5352 enum nexus_wait_type {
5353 WAIT_HOST = 0,
5354 WAIT_TARGET,
5355 WAIT_LUN,
5356 };
5357
5358 #define INVALID_EDIF_SA_INDEX 0xffff
5359 #define RX_DELETE_NO_EDIF_SA_INDEX 0xfffe
5360
5361 #define QLA_SKIP_HANDLE QLA_TGT_SKIP_HANDLE
5362
5363 /* edif hash element */
5364 struct edif_list_entry {
5365 uint16_t handle; /* nport_handle */
5366 uint32_t update_sa_index;
5367 uint32_t delete_sa_index;
5368 uint32_t count; /* counter for filtering sa_index */
5369 #define EDIF_ENTRY_FLAGS_CLEANUP 0x01 /* this index is being cleaned up */
5370 uint32_t flags; /* used by sadb cleanup code */
5371 fc_port_t *fcport; /* needed by rx delay timer function */
5372 struct timer_list timer; /* rx delay timer */
5373 struct list_head next;
5374 };
5375
5376 #define EDIF_TX_INDX_BASE 512
5377 #define EDIF_RX_INDX_BASE 0
5378 #define EDIF_RX_DELETE_FILTER_COUNT 3 /* delay queuing rx delete until this many */
5379
5380 /* entry in the sa_index free pool */
5381
5382 struct sa_index_pair {
5383 uint16_t sa_index;
5384 uint32_t spi;
5385 };
5386
5387 /* edif sa_index data structure */
5388 struct edif_sa_index_entry {
5389 struct sa_index_pair sa_pair[2];
5390 fc_port_t *fcport;
5391 uint16_t handle;
5392 struct list_head next;
5393 };
5394
5395 /* Refer to SNIA SFF 8472 */
5396 struct sff_8247_a0 {
5397 u8 txid; /* transceiver id */
5398 u8 ext_txid;
5399 u8 connector;
5400 /* compliance code */
5401 u8 eth_infi_cc3; /* ethernet, inifiband */
5402 u8 sonet_cc4[2];
5403 u8 eth_cc6;
5404 /* link length */
5405 #define FC_LL_VL BIT_7 /* very long */
5406 #define FC_LL_S BIT_6 /* Short */
5407 #define FC_LL_I BIT_5 /* Intermidiate*/
5408 #define FC_LL_L BIT_4 /* Long */
5409 #define FC_LL_M BIT_3 /* Medium */
5410 #define FC_LL_SA BIT_2 /* ShortWave laser */
5411 #define FC_LL_LC BIT_1 /* LongWave laser */
5412 #define FC_LL_EL BIT_0 /* Electrical inter enclosure */
5413 u8 fc_ll_cc7;
5414 /* FC technology */
5415 #define FC_TEC_EL BIT_7 /* Electrical inter enclosure */
5416 #define FC_TEC_SN BIT_6 /* short wave w/o OFC */
5417 #define FC_TEC_SL BIT_5 /* short wave with OFC */
5418 #define FC_TEC_LL BIT_4 /* Longwave Laser */
5419 #define FC_TEC_ACT BIT_3 /* Active cable */
5420 #define FC_TEC_PAS BIT_2 /* Passive cable */
5421 u8 fc_tec_cc8;
5422 /* Transmission Media */
5423 #define FC_MED_TW BIT_7 /* Twin Ax */
5424 #define FC_MED_TP BIT_6 /* Twited Pair */
5425 #define FC_MED_MI BIT_5 /* Min Coax */
5426 #define FC_MED_TV BIT_4 /* Video Coax */
5427 #define FC_MED_M6 BIT_3 /* Multimode, 62.5um */
5428 #define FC_MED_M5 BIT_2 /* Multimode, 50um */
5429 #define FC_MED_SM BIT_0 /* Single Mode */
5430 u8 fc_med_cc9;
5431 /* speed FC_SP_12: 12*100M = 1200 MB/s */
5432 #define FC_SP_12 BIT_7
5433 #define FC_SP_8 BIT_6
5434 #define FC_SP_16 BIT_5
5435 #define FC_SP_4 BIT_4
5436 #define FC_SP_32 BIT_3
5437 #define FC_SP_2 BIT_2
5438 #define FC_SP_1 BIT_0
5439 #define FC_SPEED_2 BIT_1
5440 u8 fc_sp_cc10;
5441 u8 encode;
5442 u8 bitrate;
5443 u8 rate_id;
5444 u8 length_km; /* offset 14/eh */
5445 u8 length_100m;
5446 u8 length_50um_10m;
5447 u8 length_62um_10m;
5448 u8 length_om4_10m;
5449 u8 length_om3_10m;
5450 #define SFF_VEN_NAME_LEN 16
5451 u8 vendor_name[SFF_VEN_NAME_LEN]; /* offset 20/14h */
5452 u8 tx_compat;
5453 u8 vendor_oui[3];
5454 #define SFF_PART_NAME_LEN 16
5455 u8 vendor_pn[SFF_PART_NAME_LEN]; /* part number */
5456 u8 vendor_rev[4];
5457 u8 wavelength[2];
5458 #define FC_SP_64 BIT_0
5459 u8 fiber_channel_speed2;
5460 u8 cc_base;
5461 u8 options[2]; /* offset 64 */
5462 u8 br_max;
5463 u8 br_min;
5464 u8 vendor_sn[16];
5465 u8 date_code[8];
5466 u8 diag;
5467 u8 enh_options;
5468 u8 sff_revision;
5469 u8 cc_ext;
5470 u8 vendor_specific[32];
5471 u8 resv2[128];
5472 };
5473
5474 /* BPM -- Buffer Plus Management support. */
5475 #define IS_BPM_CAPABLE(ha) \
5476 (IS_QLA25XX(ha) || IS_QLA81XX(ha) || IS_QLA83XX(ha) || \
5477 IS_QLA27XX(ha) || IS_QLA28XX(ha))
5478 #define IS_BPM_RANGE_CAPABLE(ha) \
5479 (IS_QLA83XX(ha) || IS_QLA27XX(ha) || IS_QLA28XX(ha))
5480 #define IS_BPM_ENABLED(vha) \
5481 (ql2xautodetectsfp && !vha->vp_idx && IS_BPM_CAPABLE(vha->hw))
5482
5483 #define FLASH_SEMAPHORE_REGISTER_ADDR 0x00101016
5484
5485 #define USER_CTRL_IRQ(_ha) (ql2xuctrlirq && QLA_TGT_MODE_ENABLED() && \
5486 (IS_QLA27XX(_ha) || IS_QLA28XX(_ha) || IS_QLA83XX(_ha)))
5487
5488 #define SAVE_TOPO(_ha) { \
5489 if (_ha->current_topology) \
5490 _ha->prev_topology = _ha->current_topology; \
5491 }
5492
5493 #define N2N_TOPO(ha) \
5494 ((ha->prev_topology == ISP_CFG_N && !ha->current_topology) || \
5495 ha->current_topology == ISP_CFG_N || \
5496 !ha->current_topology)
5497
5498 #define QLA_N2N_WAIT_TIME 5 /* 2 * ra_tov(n2n) + 1 */
5499
5500 #define NVME_TYPE(fcport) \
5501 (fcport->fc4_type & FS_FC4TYPE_NVME) \
5502
5503 #define FCP_TYPE(fcport) \
5504 (fcport->fc4_type & FS_FC4TYPE_FCP) \
5505
5506 #define NVME_ONLY_TARGET(fcport) \
5507 (NVME_TYPE(fcport) && !FCP_TYPE(fcport)) \
5508
5509 #define NVME_FCP_TARGET(fcport) \
5510 (FCP_TYPE(fcport) && NVME_TYPE(fcport)) \
5511
5512 #define NVME_PRIORITY(ha, fcport) \
5513 (NVME_FCP_TARGET(fcport) && \
5514 (ha->fc4_type_priority == FC4_PRIORITY_NVME))
5515
5516 #define NVME_TARGET(ha, fcport) \
5517 (fcport->do_prli_nvme || \
5518 NVME_ONLY_TARGET(fcport)) \
5519
5520 #define PRLI_PHASE(_cls) \
5521 ((_cls == DSC_LS_PRLI_PEND) || (_cls == DSC_LS_PRLI_COMP))
5522
5523 enum ql_vnd_host_stat_action {
5524 QLA_STOP = 0,
5525 QLA_START,
5526 QLA_CLEAR,
5527 };
5528
5529 struct ql_vnd_mng_host_stats_param {
5530 u32 stat_type;
5531 enum ql_vnd_host_stat_action action;
5532 } __packed;
5533
5534 struct ql_vnd_mng_host_stats_resp {
5535 u32 status;
5536 } __packed;
5537
5538 struct ql_vnd_stats_param {
5539 u32 stat_type;
5540 } __packed;
5541
5542 struct ql_vnd_tgt_stats_param {
5543 s32 tgt_id;
5544 u32 stat_type;
5545 } __packed;
5546
5547 enum ql_vnd_host_port_action {
5548 QLA_ENABLE = 0,
5549 QLA_DISABLE,
5550 };
5551
5552 struct ql_vnd_mng_host_port_param {
5553 enum ql_vnd_host_port_action action;
5554 } __packed;
5555
5556 struct ql_vnd_mng_host_port_resp {
5557 u32 status;
5558 } __packed;
5559
5560 struct ql_vnd_stat_entry {
5561 u32 stat_type; /* Failure type */
5562 u32 tgt_num; /* Target Num */
5563 u64 cnt; /* Counter value */
5564 } __packed;
5565
5566 struct ql_vnd_stats {
5567 u64 entry_count; /* Num of entries */
5568 u64 rservd;
5569 struct ql_vnd_stat_entry entry[]; /* Place holder of entries */
5570 } __packed;
5571
5572 struct ql_vnd_host_stats_resp {
5573 u32 status;
5574 struct ql_vnd_stats stats;
5575 } __packed;
5576
5577 struct ql_vnd_tgt_stats_resp {
5578 u32 status;
5579 struct ql_vnd_stats stats;
5580 } __packed;
5581
5582 #include "qla_target.h"
5583 #include "qla_gbl.h"
5584 #include "qla_dbg.h"
5585 #include "qla_inline.h"
5586
5587 #define IS_SESSION_DELETED(_fcport) (_fcport->disc_state == DSC_DELETE_PEND || \
5588 _fcport->disc_state == DSC_DELETED)
5589
5590 #define DBG_FCPORT_PRFMT(_fp, _fmt, _args...) \
5591 "%s: %8phC: " _fmt " (state=%d disc_state=%d scan_state=%d loopid=0x%x deleted=%d flags=0x%x)\n", \
5592 __func__, _fp->port_name, ##_args, atomic_read(&_fp->state), \
5593 _fp->disc_state, _fp->scan_state, _fp->loop_id, _fp->deleted, \
5594 _fp->flags
5595
5596 #define TMF_NOT_READY(_fcport) \
5597 (!_fcport || IS_SESSION_DELETED(_fcport) || atomic_read(&_fcport->state) != FCS_ONLINE || \
5598 !_fcport->vha->hw->flags.fw_started)
5599
5600 #endif
5601