xref: /openbmc/linux/drivers/scsi/bnx2i/bnx2i.h (revision 171f1bc7)
1 /* bnx2i.h: Broadcom NetXtreme II iSCSI driver.
2  *
3  * Copyright (c) 2006 - 2011 Broadcom Corporation
4  * Copyright (c) 2007, 2008 Red Hat, Inc.  All rights reserved.
5  * Copyright (c) 2007, 2008 Mike Christie
6  *
7  * This program is free software; you can redistribute it and/or modify
8  * it under the terms of the GNU General Public License as published by
9  * the Free Software Foundation.
10  *
11  * Written by: Anil Veerabhadrappa (anilgv@broadcom.com)
12  * Maintained by: Eddie Wai (eddie.wai@broadcom.com)
13  */
14 
15 #ifndef _BNX2I_H_
16 #define _BNX2I_H_
17 
18 #include <linux/module.h>
19 #include <linux/moduleparam.h>
20 
21 #include <linux/errno.h>
22 #include <linux/pci.h>
23 #include <linux/spinlock.h>
24 #include <linux/interrupt.h>
25 #include <linux/delay.h>
26 #include <linux/sched.h>
27 #include <linux/in.h>
28 #include <linux/kfifo.h>
29 #include <linux/netdevice.h>
30 #include <linux/completion.h>
31 #include <linux/kthread.h>
32 #include <linux/cpu.h>
33 
34 #include <scsi/scsi_cmnd.h>
35 #include <scsi/scsi_device.h>
36 #include <scsi/scsi_eh.h>
37 #include <scsi/scsi_host.h>
38 #include <scsi/scsi.h>
39 #include <scsi/iscsi_proto.h>
40 #include <scsi/libiscsi.h>
41 #include <scsi/scsi_transport_iscsi.h>
42 
43 #include "../../net/ethernet/broadcom/cnic_if.h"
44 #include "57xx_iscsi_hsi.h"
45 #include "57xx_iscsi_constants.h"
46 
47 #define BNX2_ISCSI_DRIVER_NAME		"bnx2i"
48 
49 #define BNX2I_MAX_ADAPTERS		8
50 
51 #define ISCSI_MAX_CONNS_PER_HBA		128
52 #define ISCSI_MAX_SESS_PER_HBA		ISCSI_MAX_CONNS_PER_HBA
53 #define ISCSI_MAX_CMDS_PER_SESS		128
54 
55 /* Total active commands across all connections supported by devices */
56 #define ISCSI_MAX_CMDS_PER_HBA_5708	(28 * (ISCSI_MAX_CMDS_PER_SESS - 1))
57 #define ISCSI_MAX_CMDS_PER_HBA_5709	(128 * (ISCSI_MAX_CMDS_PER_SESS - 1))
58 #define ISCSI_MAX_CMDS_PER_HBA_57710	(256 * (ISCSI_MAX_CMDS_PER_SESS - 1))
59 
60 #define ISCSI_MAX_BDS_PER_CMD		32
61 
62 #define MAX_PAGES_PER_CTRL_STRUCT_POOL	8
63 #define BNX2I_RESERVED_SLOW_PATH_CMD_SLOTS	4
64 
65 #define BNX2I_5771X_DBELL_PAGE_SIZE	128
66 
67 /* 5706/08 hardware has limit on maximum buffer size per BD it can handle */
68 #define MAX_BD_LENGTH			65535
69 #define BD_SPLIT_SIZE			32768
70 
71 /* min, max & default values for SQ/RQ/CQ size, configurable via' modparam */
72 #define BNX2I_SQ_WQES_MIN		16
73 #define BNX2I_570X_SQ_WQES_MAX		128
74 #define BNX2I_5770X_SQ_WQES_MAX		512
75 #define BNX2I_570X_SQ_WQES_DEFAULT	128
76 #define BNX2I_5770X_SQ_WQES_DEFAULT	128
77 
78 #define BNX2I_570X_CQ_WQES_MAX 		128
79 #define BNX2I_5770X_CQ_WQES_MAX 	512
80 
81 #define BNX2I_RQ_WQES_MIN 		16
82 #define BNX2I_RQ_WQES_MAX 		32
83 #define BNX2I_RQ_WQES_DEFAULT 		16
84 
85 /* CCELLs per conn */
86 #define BNX2I_CCELLS_MIN		16
87 #define BNX2I_CCELLS_MAX		96
88 #define BNX2I_CCELLS_DEFAULT		64
89 
90 #define ITT_INVALID_SIGNATURE		0xFFFF
91 
92 #define ISCSI_CMD_CLEANUP_TIMEOUT	100
93 
94 #define BNX2I_CONN_CTX_BUF_SIZE		16384
95 
96 #define BNX2I_SQ_WQE_SIZE		64
97 #define BNX2I_RQ_WQE_SIZE		256
98 #define BNX2I_CQE_SIZE			64
99 
100 #define MB_KERNEL_CTX_SHIFT		8
101 #define MB_KERNEL_CTX_SIZE		(1 << MB_KERNEL_CTX_SHIFT)
102 
103 #define CTX_SHIFT			7
104 #define GET_CID_NUM(cid_addr)		((cid_addr) >> CTX_SHIFT)
105 
106 #define CTX_OFFSET 			0x10000
107 #define MAX_CID_CNT			0x4000
108 
109 #define BNX2I_570X_PAGE_SIZE_DEFAULT	4096
110 
111 /* 5709 context registers */
112 #define BNX2_MQ_CONFIG2			0x00003d00
113 #define BNX2_MQ_CONFIG2_CONT_SZ		(0x7L<<4)
114 #define BNX2_MQ_CONFIG2_FIRST_L4L5	(0x1fL<<8)
115 
116 /* 57710's BAR2 is mapped to doorbell registers */
117 #define BNX2X_DOORBELL_PCI_BAR		2
118 #define BNX2X_MAX_CQS			8
119 
120 #define CNIC_ARM_CQE			1
121 #define CNIC_ARM_CQE_FP			2
122 #define CNIC_DISARM_CQE			0
123 
124 #define REG_RD(__hba, offset)				\
125 		readl(__hba->regview + offset)
126 #define REG_WR(__hba, offset, val)			\
127 		writel(val, __hba->regview + offset)
128 
129 
130 /**
131  * struct generic_pdu_resc - login pdu resource structure
132  *
133  * @req_buf:            driver buffer used to stage payload associated with
134  *                      the login request
135  * @req_dma_addr:       dma address for iscsi login request payload buffer
136  * @req_buf_size:       actual login request payload length
137  * @req_wr_ptr:         pointer into login request buffer when next data is
138  *                      to be written
139  * @resp_hdr:           iscsi header where iscsi login response header is to
140  *                      be recreated
141  * @resp_buf:           buffer to stage login response payload
142  * @resp_dma_addr:      login response payload buffer dma address
143  * @resp_buf_size:      login response paylod length
144  * @resp_wr_ptr:        pointer into login response buffer when next data is
145  *                      to be written
146  * @req_bd_tbl:         iscsi login request payload BD table
147  * @req_bd_dma:         login request BD table dma address
148  * @resp_bd_tbl:        iscsi login response payload BD table
149  * @resp_bd_dma:        login request BD table dma address
150  *
151  * following structure defines buffer info for generic pdus such as iSCSI Login,
152  *	Logout and NOP
153  */
154 struct generic_pdu_resc {
155 	char *req_buf;
156 	dma_addr_t req_dma_addr;
157 	u32 req_buf_size;
158 	char *req_wr_ptr;
159 	struct iscsi_hdr resp_hdr;
160 	char *resp_buf;
161 	dma_addr_t resp_dma_addr;
162 	u32 resp_buf_size;
163 	char *resp_wr_ptr;
164 	char *req_bd_tbl;
165 	dma_addr_t req_bd_dma;
166 	char *resp_bd_tbl;
167 	dma_addr_t resp_bd_dma;
168 };
169 
170 
171 /**
172  * struct bd_resc_page - tracks DMA'able memory allocated for BD tables
173  *
174  * @link:               list head to link elements
175  * @max_ptrs:           maximun pointers that can be stored in this page
176  * @num_valid:          number of pointer valid in this page
177  * @page:               base addess for page pointer array
178  *
179  * structure to track DMA'able memory allocated for command BD tables
180  */
181 struct bd_resc_page {
182 	struct list_head link;
183 	u32 max_ptrs;
184 	u32 num_valid;
185 	void *page[1];
186 };
187 
188 
189 /**
190  * struct io_bdt - I/O buffer destricptor table
191  *
192  * @bd_tbl:             BD table's virtual address
193  * @bd_tbl_dma:         BD table's dma address
194  * @bd_valid:           num valid BD entries
195  *
196  * IO BD table
197  */
198 struct io_bdt {
199 	struct iscsi_bd *bd_tbl;
200 	dma_addr_t bd_tbl_dma;
201 	u16 bd_valid;
202 };
203 
204 
205 /**
206  * bnx2i_cmd - iscsi command structure
207  *
208  * @hdr:                iSCSI header
209  * @conn:               iscsi_conn pointer
210  * @scsi_cmd:           SCSI-ML task pointer corresponding to this iscsi cmd
211  * @sg:                 SG list
212  * @io_tbl:             buffer descriptor (BD) table
213  * @bd_tbl_dma:         buffer descriptor (BD) table's dma address
214  * @req:                bnx2i specific command request struct
215  */
216 struct bnx2i_cmd {
217 	struct iscsi_hdr hdr;
218 	struct bnx2i_conn *conn;
219 	struct scsi_cmnd *scsi_cmd;
220 	struct scatterlist *sg;
221 	struct io_bdt io_tbl;
222 	dma_addr_t bd_tbl_dma;
223 	struct bnx2i_cmd_request req;
224 };
225 
226 
227 /**
228  * struct bnx2i_conn - iscsi connection structure
229  *
230  * @cls_conn:              pointer to iscsi cls conn
231  * @hba:                   adapter structure pointer
232  * @iscsi_conn_cid:        iscsi conn id
233  * @fw_cid:                firmware iscsi context id
234  * @ep:                    endpoint structure pointer
235  * @gen_pdu:               login/nopout/logout pdu resources
236  * @violation_notified:    bit mask used to track iscsi error/warning messages
237  *                         already printed out
238  * @work_cnt:              keeps track of the number of outstanding work
239  *
240  * iSCSI connection structure
241  */
242 struct bnx2i_conn {
243 	struct iscsi_cls_conn *cls_conn;
244 	struct bnx2i_hba *hba;
245 	struct completion cmd_cleanup_cmpl;
246 
247 	u32 iscsi_conn_cid;
248 #define BNX2I_CID_RESERVED	0x5AFF
249 	u32 fw_cid;
250 
251 	struct timer_list poll_timer;
252 	/*
253 	 * Queue Pair (QP) related structure elements.
254 	 */
255 	struct bnx2i_endpoint *ep;
256 
257 	/*
258 	 * Buffer for login negotiation process
259 	 */
260 	struct generic_pdu_resc gen_pdu;
261 	u64 violation_notified;
262 
263 	atomic_t work_cnt;
264 };
265 
266 
267 
268 /**
269  * struct iscsi_cid_queue - Per adapter iscsi cid queue
270  *
271  * @cid_que_base:           queue base memory
272  * @cid_que:                queue memory pointer
273  * @cid_q_prod_idx:         produce index
274  * @cid_q_cons_idx:         consumer index
275  * @cid_q_max_idx:          max index. used to detect wrap around condition
276  * @cid_free_cnt:           queue size
277  * @conn_cid_tbl:           iscsi cid to conn structure mapping table
278  *
279  * Per adapter iSCSI CID Queue
280  */
281 struct iscsi_cid_queue {
282 	void *cid_que_base;
283 	u32 *cid_que;
284 	u32 cid_q_prod_idx;
285 	u32 cid_q_cons_idx;
286 	u32 cid_q_max_idx;
287 	u32 cid_free_cnt;
288 	struct bnx2i_conn **conn_cid_tbl;
289 };
290 
291 /**
292  * struct bnx2i_hba - bnx2i adapter structure
293  *
294  * @link:                  list head to link elements
295  * @cnic:                  pointer to cnic device
296  * @pcidev:                pointer to pci dev
297  * @netdev:                pointer to netdev structure
298  * @regview:               mapped PCI register space
299  * @age:                   age, incremented by every recovery
300  * @cnic_dev_type:         cnic device type, 5706/5708/5709/57710
301  * @mail_queue_access:     mailbox queue access mode, applicable to 5709 only
302  * @reg_with_cnic:         indicates whether the device is register with CNIC
303  * @adapter_state:         adapter state, UP, GOING_DOWN, LINK_DOWN
304  * @mtu_supported:         Ethernet MTU supported
305  * @shost:                 scsi host pointer
306  * @max_sqes:              SQ size
307  * @max_rqes:              RQ size
308  * @max_cqes:              CQ size
309  * @num_ccell:             number of command cells per connection
310  * @ofld_conns_active:     active connection list
311  * @eh_wait:               wait queue for the endpoint to shutdown
312  * @max_active_conns:      max offload connections supported by this device
313  * @cid_que:               iscsi cid queue
314  * @ep_rdwr_lock:          read / write lock to synchronize various ep lists
315  * @ep_ofld_list:          connection list for pending offload completion
316  * @ep_active_list:        connection list for active offload endpoints
317  * @ep_destroy_list:       connection list for pending offload completion
318  * @mp_bd_tbl:             BD table to be used with middle path requests
319  * @mp_bd_dma:             DMA address of 'mp_bd_tbl' memory buffer
320  * @dummy_buffer:          Dummy buffer to be used with zero length scsicmd reqs
321  * @dummy_buf_dma:         DMA address of 'dummy_buffer' memory buffer
322  * @lock:              	   lock to synchonize access to hba structure
323  * @hba_shutdown_tmo:      Timeout value to shutdown each connection
324  * @conn_teardown_tmo:     Timeout value to tear down each connection
325  * @conn_ctx_destroy_tmo:  Timeout value to destroy context of each connection
326  * @pci_did:               PCI device ID
327  * @pci_vid:               PCI vendor ID
328  * @pci_sdid:              PCI subsystem device ID
329  * @pci_svid:              PCI subsystem vendor ID
330  * @pci_func:              PCI function number in system pci tree
331  * @pci_devno:             PCI device number in system pci tree
332  * @num_wqe_sent:          statistic counter, total wqe's sent
333  * @num_cqe_rcvd:          statistic counter, total cqe's received
334  * @num_intr_claimed:      statistic counter, total interrupts claimed
335  * @link_changed_count:    statistic counter, num of link change notifications
336  *                         received
337  * @ipaddr_changed_count:  statistic counter, num times IP address changed while
338  *                         at least one connection is offloaded
339  * @num_sess_opened:       statistic counter, total num sessions opened
340  * @num_conn_opened:       statistic counter, total num conns opened on this hba
341  * @ctx_ccell_tasks:       captures number of ccells and tasks supported by
342  *                         currently offloaded connection, used to decode
343  *                         context memory
344  *
345  * Adapter Data Structure
346  */
347 struct bnx2i_hba {
348 	struct list_head link;
349 	struct cnic_dev *cnic;
350 	struct pci_dev *pcidev;
351 	struct net_device *netdev;
352 	void __iomem *regview;
353 
354 	u32 age;
355 	unsigned long cnic_dev_type;
356 		#define BNX2I_NX2_DEV_5706		0x0
357 		#define BNX2I_NX2_DEV_5708		0x1
358 		#define BNX2I_NX2_DEV_5709		0x2
359 		#define BNX2I_NX2_DEV_57710		0x3
360 	u32 mail_queue_access;
361 		#define BNX2I_MQ_KERNEL_MODE		0x0
362 		#define BNX2I_MQ_KERNEL_BYPASS_MODE	0x1
363 		#define BNX2I_MQ_BIN_MODE		0x2
364 	unsigned long  reg_with_cnic;
365 		#define BNX2I_CNIC_REGISTERED		1
366 
367 	unsigned long  adapter_state;
368 		#define ADAPTER_STATE_UP		0
369 		#define ADAPTER_STATE_GOING_DOWN	1
370 		#define ADAPTER_STATE_LINK_DOWN		2
371 		#define ADAPTER_STATE_INIT_FAILED	31
372 	unsigned int mtu_supported;
373 		#define BNX2I_MAX_MTU_SUPPORTED		9000
374 
375 	struct Scsi_Host *shost;
376 
377 	u32 max_sqes;
378 	u32 max_rqes;
379 	u32 max_cqes;
380 	u32 num_ccell;
381 
382 	int ofld_conns_active;
383 	wait_queue_head_t eh_wait;
384 
385 	int max_active_conns;
386 	struct iscsi_cid_queue cid_que;
387 
388 	rwlock_t ep_rdwr_lock;
389 	struct list_head ep_ofld_list;
390 	struct list_head ep_active_list;
391 	struct list_head ep_destroy_list;
392 
393 	/*
394 	 * BD table to be used with MP (Middle Path requests.
395 	 */
396 	char *mp_bd_tbl;
397 	dma_addr_t mp_bd_dma;
398 	char *dummy_buffer;
399 	dma_addr_t dummy_buf_dma;
400 
401 	spinlock_t lock;	/* protects hba structure access */
402 	struct mutex net_dev_lock;/* sync net device access */
403 
404 	int hba_shutdown_tmo;
405 	int conn_teardown_tmo;
406 	int conn_ctx_destroy_tmo;
407 	/*
408 	 * PCI related info.
409 	 */
410 	u16 pci_did;
411 	u16 pci_vid;
412 	u16 pci_sdid;
413 	u16 pci_svid;
414 	u16 pci_func;
415 	u16 pci_devno;
416 
417 	/*
418 	 * Following are a bunch of statistics useful during development
419 	 * and later stage for score boarding.
420 	 */
421 	u32 num_wqe_sent;
422 	u32 num_cqe_rcvd;
423 	u32 num_intr_claimed;
424 	u32 link_changed_count;
425 	u32 ipaddr_changed_count;
426 	u32 num_sess_opened;
427 	u32 num_conn_opened;
428 	unsigned int ctx_ccell_tasks;
429 };
430 
431 
432 /*******************************************************************************
433  * 	QP [ SQ / RQ / CQ ] info.
434  ******************************************************************************/
435 
436 /*
437  * SQ/RQ/CQ generic structure definition
438  */
439 struct 	sqe {
440 	u8 sqe_byte[BNX2I_SQ_WQE_SIZE];
441 };
442 
443 struct 	rqe {
444 	u8 rqe_byte[BNX2I_RQ_WQE_SIZE];
445 };
446 
447 struct 	cqe {
448 	u8 cqe_byte[BNX2I_CQE_SIZE];
449 };
450 
451 
452 enum {
453 #if defined(__LITTLE_ENDIAN)
454 	CNIC_EVENT_COAL_INDEX	= 0x0,
455 	CNIC_SEND_DOORBELL	= 0x4,
456 	CNIC_EVENT_CQ_ARM	= 0x7,
457 	CNIC_RECV_DOORBELL	= 0x8
458 #elif defined(__BIG_ENDIAN)
459 	CNIC_EVENT_COAL_INDEX	= 0x2,
460 	CNIC_SEND_DOORBELL	= 0x6,
461 	CNIC_EVENT_CQ_ARM	= 0x4,
462 	CNIC_RECV_DOORBELL	= 0xa
463 #endif
464 };
465 
466 
467 /*
468  * CQ DB
469  */
470 struct bnx2x_iscsi_cq_pend_cmpl {
471 	/* CQ producer, updated by Ustorm */
472 	u16 ustrom_prod;
473 	/* CQ pending completion counter */
474 	u16 pend_cntr;
475 };
476 
477 
478 struct bnx2i_5771x_cq_db {
479 	struct bnx2x_iscsi_cq_pend_cmpl qp_pend_cmpl[BNX2X_MAX_CQS];
480 	/* CQ pending completion ITT array */
481 	u16 itt[BNX2X_MAX_CQS];
482 	/* Cstorm CQ sequence to notify array, updated by driver */;
483 	u16 sqn[BNX2X_MAX_CQS];
484 	u32 reserved[4] /* 16 byte allignment */;
485 };
486 
487 
488 struct bnx2i_5771x_sq_rq_db {
489 	u16 prod_idx;
490 	u8 reserved0[62]; /* Pad structure size to 64 bytes */
491 };
492 
493 
494 struct bnx2i_5771x_dbell_hdr {
495 	u8 header;
496 	/* 1 for rx doorbell, 0 for tx doorbell */
497 #define B577XX_DOORBELL_HDR_RX				(0x1<<0)
498 #define B577XX_DOORBELL_HDR_RX_SHIFT			0
499 	/* 0 for normal doorbell, 1 for advertise wnd doorbell */
500 #define B577XX_DOORBELL_HDR_DB_TYPE			(0x1<<1)
501 #define B577XX_DOORBELL_HDR_DB_TYPE_SHIFT		1
502 	/* rdma tx only: DPM transaction size specifier (64/128/256/512B) */
503 #define B577XX_DOORBELL_HDR_DPM_SIZE			(0x3<<2)
504 #define B577XX_DOORBELL_HDR_DPM_SIZE_SHIFT		2
505 	/* connection type */
506 #define B577XX_DOORBELL_HDR_CONN_TYPE			(0xF<<4)
507 #define B577XX_DOORBELL_HDR_CONN_TYPE_SHIFT		4
508 };
509 
510 struct bnx2i_5771x_dbell {
511 	struct bnx2i_5771x_dbell_hdr dbell;
512 	u8 pad[3];
513 
514 };
515 
516 /**
517  * struct qp_info - QP (share queue region) atrributes structure
518  *
519  * @ctx_base:           ioremapped pci register base to access doorbell register
520  *                      pertaining to this offloaded connection
521  * @sq_virt:            virtual address of send queue (SQ) region
522  * @sq_phys:            DMA address of SQ memory region
523  * @sq_mem_size:        SQ size
524  * @sq_prod_qe:         SQ producer entry pointer
525  * @sq_cons_qe:         SQ consumer entry pointer
526  * @sq_first_qe:        virtaul address of first entry in SQ
527  * @sq_last_qe:         virtaul address of last entry in SQ
528  * @sq_prod_idx:        SQ producer index
529  * @sq_cons_idx:        SQ consumer index
530  * @sqe_left:           number sq entry left
531  * @sq_pgtbl_virt:      page table describing buffer consituting SQ region
532  * @sq_pgtbl_phys:      dma address of 'sq_pgtbl_virt'
533  * @sq_pgtbl_size:      SQ page table size
534  * @cq_virt:            virtual address of completion queue (CQ) region
535  * @cq_phys:            DMA address of RQ memory region
536  * @cq_mem_size:        CQ size
537  * @cq_prod_qe:         CQ producer entry pointer
538  * @cq_cons_qe:         CQ consumer entry pointer
539  * @cq_first_qe:        virtaul address of first entry in CQ
540  * @cq_last_qe:         virtaul address of last entry in CQ
541  * @cq_prod_idx:        CQ producer index
542  * @cq_cons_idx:        CQ consumer index
543  * @cqe_left:           number cq entry left
544  * @cqe_size:           size of each CQ entry
545  * @cqe_exp_seq_sn:     next expected CQE sequence number
546  * @cq_pgtbl_virt:      page table describing buffer consituting CQ region
547  * @cq_pgtbl_phys:      dma address of 'cq_pgtbl_virt'
548  * @cq_pgtbl_size:    	CQ page table size
549  * @rq_virt:            virtual address of receive queue (RQ) region
550  * @rq_phys:            DMA address of RQ memory region
551  * @rq_mem_size:        RQ size
552  * @rq_prod_qe:         RQ producer entry pointer
553  * @rq_cons_qe:         RQ consumer entry pointer
554  * @rq_first_qe:        virtaul address of first entry in RQ
555  * @rq_last_qe:         virtaul address of last entry in RQ
556  * @rq_prod_idx:        RQ producer index
557  * @rq_cons_idx:        RQ consumer index
558  * @rqe_left:           number rq entry left
559  * @rq_pgtbl_virt:      page table describing buffer consituting RQ region
560  * @rq_pgtbl_phys:      dma address of 'rq_pgtbl_virt'
561  * @rq_pgtbl_size:      RQ page table size
562  *
563  * queue pair (QP) is a per connection shared data structure which is used
564  *	to send work requests (SQ), receive completion notifications (CQ)
565  *	and receive asynchoronous / scsi sense info (RQ). 'qp_info' structure
566  *	below holds queue memory, consumer/producer indexes and page table
567  *	information
568  */
569 struct qp_info {
570 	void __iomem *ctx_base;
571 #define DPM_TRIGER_TYPE			0x40
572 
573 #define BNX2I_570x_QUE_DB_SIZE		0
574 #define BNX2I_5771x_QUE_DB_SIZE		16
575 	struct sqe *sq_virt;
576 	dma_addr_t sq_phys;
577 	u32 sq_mem_size;
578 
579 	struct sqe *sq_prod_qe;
580 	struct sqe *sq_cons_qe;
581 	struct sqe *sq_first_qe;
582 	struct sqe *sq_last_qe;
583 	u16 sq_prod_idx;
584 	u16 sq_cons_idx;
585 	u32 sqe_left;
586 
587 	void *sq_pgtbl_virt;
588 	dma_addr_t sq_pgtbl_phys;
589 	u32 sq_pgtbl_size;	/* set to PAGE_SIZE for 5708 & 5709 */
590 
591 	struct cqe *cq_virt;
592 	dma_addr_t cq_phys;
593 	u32 cq_mem_size;
594 
595 	struct cqe *cq_prod_qe;
596 	struct cqe *cq_cons_qe;
597 	struct cqe *cq_first_qe;
598 	struct cqe *cq_last_qe;
599 	u16 cq_prod_idx;
600 	u16 cq_cons_idx;
601 	u32 cqe_left;
602 	u32 cqe_size;
603 	u32 cqe_exp_seq_sn;
604 
605 	void *cq_pgtbl_virt;
606 	dma_addr_t cq_pgtbl_phys;
607 	u32 cq_pgtbl_size;	/* set to PAGE_SIZE for 5708 & 5709 */
608 
609 	struct rqe *rq_virt;
610 	dma_addr_t rq_phys;
611 	u32 rq_mem_size;
612 
613 	struct rqe *rq_prod_qe;
614 	struct rqe *rq_cons_qe;
615 	struct rqe *rq_first_qe;
616 	struct rqe *rq_last_qe;
617 	u16 rq_prod_idx;
618 	u16 rq_cons_idx;
619 	u32 rqe_left;
620 
621 	void *rq_pgtbl_virt;
622 	dma_addr_t rq_pgtbl_phys;
623 	u32 rq_pgtbl_size;	/* set to PAGE_SIZE for 5708 & 5709 */
624 };
625 
626 
627 
628 /*
629  * CID handles
630  */
631 struct ep_handles {
632 	u32 fw_cid;
633 	u32 drv_iscsi_cid;
634 	u16 pg_cid;
635 	u16 rsvd;
636 };
637 
638 
639 enum {
640 	EP_STATE_IDLE                   = 0x0,
641 	EP_STATE_PG_OFLD_START          = 0x1,
642 	EP_STATE_PG_OFLD_COMPL          = 0x2,
643 	EP_STATE_OFLD_START             = 0x4,
644 	EP_STATE_OFLD_COMPL             = 0x8,
645 	EP_STATE_CONNECT_START          = 0x10,
646 	EP_STATE_CONNECT_COMPL          = 0x20,
647 	EP_STATE_ULP_UPDATE_START       = 0x40,
648 	EP_STATE_ULP_UPDATE_COMPL       = 0x80,
649 	EP_STATE_DISCONN_START          = 0x100,
650 	EP_STATE_DISCONN_COMPL          = 0x200,
651 	EP_STATE_CLEANUP_START          = 0x400,
652 	EP_STATE_CLEANUP_CMPL           = 0x800,
653 	EP_STATE_TCP_FIN_RCVD           = 0x1000,
654 	EP_STATE_TCP_RST_RCVD           = 0x2000,
655 	EP_STATE_LOGOUT_SENT            = 0x4000,
656 	EP_STATE_LOGOUT_RESP_RCVD       = 0x8000,
657 	EP_STATE_PG_OFLD_FAILED         = 0x1000000,
658 	EP_STATE_ULP_UPDATE_FAILED      = 0x2000000,
659 	EP_STATE_CLEANUP_FAILED         = 0x4000000,
660 	EP_STATE_OFLD_FAILED            = 0x8000000,
661 	EP_STATE_CONNECT_FAILED         = 0x10000000,
662 	EP_STATE_DISCONN_TIMEDOUT       = 0x20000000,
663 	EP_STATE_OFLD_FAILED_CID_BUSY   = 0x80000000,
664 };
665 
666 /**
667  * struct bnx2i_endpoint - representation of tcp connection in NX2 world
668  *
669  * @link:               list head to link elements
670  * @hba:                adapter to which this connection belongs
671  * @conn:               iscsi connection this EP is linked to
672  * @cls_ep:             associated iSCSI endpoint pointer
673  * @cm_sk:              cnic sock struct
674  * @hba_age:            age to detect if 'iscsid' issues ep_disconnect()
675  *                      after HBA reset is completed by bnx2i/cnic/bnx2
676  *                      modules
677  * @state:              tracks offload connection state machine
678  * @timestamp:          tracks the start time when the ep begins to connect
679  * @num_active_cmds:    tracks the number of outstanding commands for this ep
680  * @ec_shift:           the amount of shift as part of the event coal calc
681  * @qp:                 QP information
682  * @ids:                contains chip allocated *context id* & driver assigned
683  *                      *iscsi cid*
684  * @ofld_timer:         offload timer to detect timeout
685  * @ofld_wait:          wait queue
686  *
687  * Endpoint Structure - equivalent of tcp socket structure
688  */
689 struct bnx2i_endpoint {
690 	struct list_head link;
691 	struct bnx2i_hba *hba;
692 	struct bnx2i_conn *conn;
693 	struct iscsi_endpoint *cls_ep;
694 	struct cnic_sock *cm_sk;
695 	u32 hba_age;
696 	u32 state;
697 	unsigned long timestamp;
698 	atomic_t num_active_cmds;
699 	u32 ec_shift;
700 
701 	struct qp_info qp;
702 	struct ep_handles ids;
703 		#define ep_iscsi_cid	ids.drv_iscsi_cid
704 		#define ep_cid		ids.fw_cid
705 		#define ep_pg_cid	ids.pg_cid
706 	struct timer_list ofld_timer;
707 	wait_queue_head_t ofld_wait;
708 };
709 
710 
711 struct bnx2i_work {
712 	struct list_head list;
713 	struct iscsi_session *session;
714 	struct bnx2i_conn *bnx2i_conn;
715 	struct cqe cqe;
716 };
717 
718 struct bnx2i_percpu_s {
719 	struct task_struct *iothread;
720 	struct list_head work_list;
721 	spinlock_t p_work_lock;
722 };
723 
724 
725 /* Global variables */
726 extern unsigned int error_mask1, error_mask2;
727 extern u64 iscsi_error_mask;
728 extern unsigned int en_tcp_dack;
729 extern unsigned int event_coal_div;
730 extern unsigned int event_coal_min;
731 
732 extern struct scsi_transport_template *bnx2i_scsi_xport_template;
733 extern struct iscsi_transport bnx2i_iscsi_transport;
734 extern struct cnic_ulp_ops bnx2i_cnic_cb;
735 
736 extern unsigned int sq_size;
737 extern unsigned int rq_size;
738 
739 extern struct device_attribute *bnx2i_dev_attributes[];
740 
741 
742 
743 /*
744  * Function Prototypes
745  */
746 extern void bnx2i_identify_device(struct bnx2i_hba *hba);
747 
748 extern void bnx2i_ulp_init(struct cnic_dev *dev);
749 extern void bnx2i_ulp_exit(struct cnic_dev *dev);
750 extern void bnx2i_start(void *handle);
751 extern void bnx2i_stop(void *handle);
752 extern struct bnx2i_hba *get_adapter_list_head(void);
753 
754 struct bnx2i_conn *bnx2i_get_conn_from_id(struct bnx2i_hba *hba,
755 					  u16 iscsi_cid);
756 
757 int bnx2i_alloc_ep_pool(void);
758 void bnx2i_release_ep_pool(void);
759 struct bnx2i_endpoint *bnx2i_ep_ofld_list_next(struct bnx2i_hba *hba);
760 struct bnx2i_endpoint *bnx2i_ep_destroy_list_next(struct bnx2i_hba *hba);
761 
762 struct bnx2i_hba *bnx2i_find_hba_for_cnic(struct cnic_dev *cnic);
763 
764 struct bnx2i_hba *bnx2i_alloc_hba(struct cnic_dev *cnic);
765 void bnx2i_free_hba(struct bnx2i_hba *hba);
766 
767 void bnx2i_get_rq_buf(struct bnx2i_conn *conn, char *ptr, int len);
768 void bnx2i_put_rq_buf(struct bnx2i_conn *conn, int count);
769 
770 void bnx2i_iscsi_unmap_sg_list(struct bnx2i_cmd *cmd);
771 
772 void bnx2i_drop_session(struct iscsi_cls_session *session);
773 
774 extern int bnx2i_send_fw_iscsi_init_msg(struct bnx2i_hba *hba);
775 extern int bnx2i_send_iscsi_login(struct bnx2i_conn *conn,
776 				  struct iscsi_task *mtask);
777 extern int bnx2i_send_iscsi_tmf(struct bnx2i_conn *conn,
778 				  struct iscsi_task *mtask);
779 extern int bnx2i_send_iscsi_text(struct bnx2i_conn *conn,
780 				 struct iscsi_task *mtask);
781 extern int bnx2i_send_iscsi_scsicmd(struct bnx2i_conn *conn,
782 				    struct bnx2i_cmd *cmnd);
783 extern int bnx2i_send_iscsi_nopout(struct bnx2i_conn *conn,
784 				   struct iscsi_task *mtask,
785 				   char *datap, int data_len, int unsol);
786 extern int bnx2i_send_iscsi_logout(struct bnx2i_conn *conn,
787 				   struct iscsi_task *mtask);
788 extern void bnx2i_send_cmd_cleanup_req(struct bnx2i_hba *hba,
789 				       struct bnx2i_cmd *cmd);
790 extern int bnx2i_send_conn_ofld_req(struct bnx2i_hba *hba,
791 				    struct bnx2i_endpoint *ep);
792 extern void bnx2i_update_iscsi_conn(struct iscsi_conn *conn);
793 extern int bnx2i_send_conn_destroy(struct bnx2i_hba *hba,
794 				   struct bnx2i_endpoint *ep);
795 
796 extern int bnx2i_alloc_qp_resc(struct bnx2i_hba *hba,
797 			       struct bnx2i_endpoint *ep);
798 extern void bnx2i_free_qp_resc(struct bnx2i_hba *hba,
799 			       struct bnx2i_endpoint *ep);
800 extern void bnx2i_ep_ofld_timer(unsigned long data);
801 extern struct bnx2i_endpoint *bnx2i_find_ep_in_ofld_list(
802 		struct bnx2i_hba *hba, u32 iscsi_cid);
803 extern struct bnx2i_endpoint *bnx2i_find_ep_in_destroy_list(
804 		struct bnx2i_hba *hba, u32 iscsi_cid);
805 
806 extern int bnx2i_map_ep_dbell_regs(struct bnx2i_endpoint *ep);
807 extern int bnx2i_arm_cq_event_coalescing(struct bnx2i_endpoint *ep, u8 action);
808 
809 extern int bnx2i_hw_ep_disconnect(struct bnx2i_endpoint *bnx2i_ep);
810 
811 /* Debug related function prototypes */
812 extern void bnx2i_print_pend_cmd_queue(struct bnx2i_conn *conn);
813 extern void bnx2i_print_active_cmd_queue(struct bnx2i_conn *conn);
814 extern void bnx2i_print_xmit_pdu_queue(struct bnx2i_conn *conn);
815 extern void bnx2i_print_recv_state(struct bnx2i_conn *conn);
816 
817 extern int bnx2i_percpu_io_thread(void *arg);
818 extern int bnx2i_process_scsi_cmd_resp(struct iscsi_session *session,
819 				       struct bnx2i_conn *bnx2i_conn,
820 				       struct cqe *cqe);
821 #endif
822