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1 /* bnx2x_sriov.h: QLogic Everest network driver.
2  *
3  * Copyright 2009-2013 Broadcom Corporation
4  * Copyright 2014 QLogic Corporation
5  * All rights reserved
6  *
7  * Unless you and QLogic execute a separate written software license
8  * agreement governing use of this software, this software is licensed to you
9  * under the terms of the GNU General Public License version 2, available
10  * at http://www.gnu.org/licenses/old-licenses/gpl-2.0.html (the "GPL").
11  *
12  * Notwithstanding the above, under no circumstances may you combine this
13  * software in any way with any other QLogic software provided under a
14  * license other than the GPL, without QLogic's express prior written
15  * consent.
16  *
17  * Maintained by: Ariel Elior <ariel.elior@qlogic.com>
18  * Written by: Shmulik Ravid
19  *	       Ariel Elior <ariel.elior@qlogic.com>
20  */
21 #ifndef BNX2X_SRIOV_H
22 #define BNX2X_SRIOV_H
23 
24 #include "bnx2x_vfpf.h"
25 #include "bnx2x.h"
26 
27 enum sample_bulletin_result {
28 	   PFVF_BULLETIN_UNCHANGED,
29 	   PFVF_BULLETIN_UPDATED,
30 	   PFVF_BULLETIN_CRC_ERR
31 };
32 
33 #ifdef CONFIG_BNX2X_SRIOV
34 
35 extern struct workqueue_struct *bnx2x_iov_wq;
36 
37 /* The bnx2x device structure holds vfdb structure described below.
38  * The VF array is indexed by the relative vfid.
39  */
40 #define BNX2X_VF_MAX_QUEUES		16
41 #define BNX2X_VF_MAX_TPA_AGG_QUEUES	8
42 
43 struct bnx2x_sriov {
44 	u32 first_vf_in_pf;
45 
46 	/* standard SRIOV capability fields, mostly for debugging */
47 	int pos;		/* capability position */
48 	int nres;		/* number of resources */
49 	u32 cap;		/* SR-IOV Capabilities */
50 	u16 ctrl;		/* SR-IOV Control */
51 	u16 total;		/* total VFs associated with the PF */
52 	u16 initial;		/* initial VFs associated with the PF */
53 	u16 nr_virtfn;		/* number of VFs available */
54 	u16 offset;		/* first VF Routing ID offset */
55 	u16 stride;		/* following VF stride */
56 	u32 pgsz;		/* page size for BAR alignment */
57 	u8 link;		/* Function Dependency Link */
58 };
59 
60 /* bars */
61 struct bnx2x_vf_bar {
62 	u64 bar;
63 	u32 size;
64 };
65 
66 struct bnx2x_vf_bar_info {
67 	struct bnx2x_vf_bar bars[PCI_SRIOV_NUM_BARS];
68 	u8 nr_bars;
69 };
70 
71 /* vf queue (used both for rx or tx) */
72 struct bnx2x_vf_queue {
73 	struct eth_context		*cxt;
74 
75 	/* MACs object */
76 	struct bnx2x_vlan_mac_obj	mac_obj;
77 
78 	/* VLANs object */
79 	struct bnx2x_vlan_mac_obj	vlan_obj;
80 
81 	/* VLAN-MACs object */
82 	struct bnx2x_vlan_mac_obj	vlan_mac_obj;
83 
84 	unsigned long accept_flags;	/* last accept flags configured */
85 
86 	/* Queue Slow-path State object */
87 	struct bnx2x_queue_sp_obj	sp_obj;
88 
89 	u32 cid;
90 	u16 index;
91 	u16 sb_idx;
92 	bool is_leading;
93 	bool sp_initialized;
94 };
95 
96 /* struct bnx2x_vf_queue_construct_params - prepare queue construction
97  * parameters: q-init, q-setup and SB index
98  */
99 struct bnx2x_vf_queue_construct_params {
100 	struct bnx2x_queue_state_params		qstate;
101 	struct bnx2x_queue_setup_params		prep_qsetup;
102 };
103 
104 /* forward */
105 struct bnx2x_virtf;
106 
107 /* VFOP definitions */
108 
109 struct bnx2x_vf_mac_vlan_filter {
110 	int type;
111 #define BNX2X_VF_FILTER_MAC	BIT(0)
112 #define BNX2X_VF_FILTER_VLAN	BIT(1)
113 #define BNX2X_VF_FILTER_VLAN_MAC \
114 	(BNX2X_VF_FILTER_MAC | BNX2X_VF_FILTER_VLAN) /*shortcut*/
115 
116 	bool add;
117 	bool applied;
118 	u8 *mac;
119 	u16 vid;
120 };
121 
122 struct bnx2x_vf_mac_vlan_filters {
123 	int count;
124 	struct bnx2x_vf_mac_vlan_filter filters[];
125 };
126 
127 /* vf context */
128 struct bnx2x_virtf {
129 	u16 cfg_flags;
130 #define VF_CFG_STATS_COALESCE	0x1
131 #define VF_CFG_EXT_BULLETIN	0x2
132 #define VF_CFG_VLAN_FILTER	0x4
133 	u8 link_cfg;		/* IFLA_VF_LINK_STATE_AUTO
134 				 * IFLA_VF_LINK_STATE_ENABLE
135 				 * IFLA_VF_LINK_STATE_DISABLE
136 				 */
137 	u8 state;
138 #define VF_FREE		0	/* VF ready to be acquired holds no resc */
139 #define VF_ACQUIRED	1	/* VF acquired, but not initialized */
140 #define VF_ENABLED	2	/* VF Enabled */
141 #define VF_RESET	3	/* VF FLR'd, pending cleanup */
142 #define VF_LOST		4	/* Recovery while VFs are loaded */
143 
144 	bool flr_clnup_stage;	/* true during flr cleanup */
145 	bool malicious;		/* true if FW indicated so, until FLR */
146 
147 	/* dma */
148 	dma_addr_t fw_stat_map;
149 	u16 stats_stride;
150 	dma_addr_t bulletin_map;
151 
152 	/* Allocated resources counters. Before the VF is acquired, the
153 	 * counters hold the following values:
154 	 *
155 	 * - xxq_count = 0 as the queues memory is not allocated yet.
156 	 *
157 	 * - sb_count  = The number of status blocks configured for this VF in
158 	 *		 the IGU CAM. Initially read during probe.
159 	 *
160 	 * - xx_rules_count = The number of rules statically and equally
161 	 *		      allocated for each VF, during PF load.
162 	 */
163 	struct vf_pf_resc_request	alloc_resc;
164 #define vf_rxq_count(vf)		((vf)->alloc_resc.num_rxqs)
165 #define vf_txq_count(vf)		((vf)->alloc_resc.num_txqs)
166 #define vf_sb_count(vf)			((vf)->alloc_resc.num_sbs)
167 #define vf_mac_rules_cnt(vf)		((vf)->alloc_resc.num_mac_filters)
168 #define vf_vlan_rules_cnt(vf)		((vf)->alloc_resc.num_vlan_filters)
169 #define vf_mc_rules_cnt(vf)		((vf)->alloc_resc.num_mc_filters)
170 
171 	u8 sb_count;	/* actual number of SBs */
172 	u8 igu_base_id;	/* base igu status block id */
173 
174 	struct bnx2x_vf_queue	*vfqs;
175 #define LEADING_IDX			0
176 #define bnx2x_vfq_is_leading(vfq)	((vfq)->index == LEADING_IDX)
177 #define bnx2x_vfq(vf, nr, var)		((vf)->vfqs[(nr)].var)
178 #define bnx2x_leading_vfq(vf, var)	((vf)->vfqs[LEADING_IDX].var)
179 
180 	u8 index;	/* index in the vf array */
181 	u8 abs_vfid;
182 	u8 sp_cl_id;
183 	u32 error;	/* 0 means all's-well */
184 
185 	/* BDF */
186 	unsigned int bus;
187 	unsigned int devfn;
188 
189 	/* bars */
190 	struct bnx2x_vf_bar bars[PCI_SRIOV_NUM_BARS];
191 
192 	/* set-mac ramrod state 1-pending, 0-done */
193 	unsigned long	filter_state;
194 
195 	/* leading rss client id ~~ the client id of the first rxq, must be
196 	 * set for each txq.
197 	 */
198 	int leading_rss;
199 
200 	/* MCAST object */
201 	struct bnx2x_mcast_obj		mcast_obj;
202 
203 	/* RSS configuration object */
204 	struct bnx2x_rss_config_obj     rss_conf_obj;
205 
206 	/* slow-path operations */
207 	struct mutex			op_mutex; /* one vfop at a time mutex */
208 	enum channel_tlvs		op_current;
209 
210 	u8 fp_hsi;
211 
212 	struct bnx2x_credit_pool_obj	vf_vlans_pool;
213 	struct bnx2x_credit_pool_obj	vf_macs_pool;
214 };
215 
216 #define BNX2X_NR_VIRTFN(bp)	((bp)->vfdb->sriov.nr_virtfn)
217 
218 #define for_each_vf(bp, var) \
219 		for ((var) = 0; (var) < BNX2X_NR_VIRTFN(bp); (var)++)
220 
221 #define for_each_vfq(vf, var) \
222 		for ((var) = 0; (var) < vf_rxq_count(vf); (var)++)
223 
224 #define for_each_vf_sb(vf, var) \
225 		for ((var) = 0; (var) < vf_sb_count(vf); (var)++)
226 
227 #define is_vf_multi(vf)	(vf_rxq_count(vf) > 1)
228 
229 #define HW_VF_HANDLE(bp, abs_vfid) \
230 	(u16)(BP_ABS_FUNC((bp)) | (1<<3) |  ((u16)(abs_vfid) << 4))
231 
232 #define FW_PF_MAX_HANDLE	8
233 
234 #define FW_VF_HANDLE(abs_vfid)	\
235 	(abs_vfid + FW_PF_MAX_HANDLE)
236 
237 #define GET_NUM_VFS_PER_PATH(bp)	64 /* use max possible value */
238 #define GET_NUM_VFS_PER_PF(bp)		((bp)->vfdb ? (bp)->vfdb->sriov.total \
239 						    : 0)
240 #define VF_MAC_CREDIT_CNT		1
241 #define VF_VLAN_CREDIT_CNT		2 /* VLAN0 + 'real' VLAN */
242 
243 /* locking and unlocking the channel mutex */
244 void bnx2x_lock_vf_pf_channel(struct bnx2x *bp, struct bnx2x_virtf *vf,
245 			      enum channel_tlvs tlv);
246 
247 void bnx2x_unlock_vf_pf_channel(struct bnx2x *bp, struct bnx2x_virtf *vf,
248 				enum channel_tlvs expected_tlv);
249 
250 /* VF mail box (aka vf-pf channel) */
251 
252 /* a container for the bi-directional vf<-->pf messages.
253  *  The actual response will be placed according to the offset parameter
254  *  provided in the request
255  */
256 
257 #define MBX_MSG_ALIGN	8
258 #define MBX_MSG_ALIGNED_SIZE	(roundup(sizeof(struct bnx2x_vf_mbx_msg), \
259 				MBX_MSG_ALIGN))
260 
261 struct bnx2x_vf_mbx_msg {
262 	union vfpf_tlvs req;
263 	union pfvf_tlvs resp;
264 };
265 
266 struct bnx2x_vf_mbx {
267 	struct bnx2x_vf_mbx_msg *msg;
268 	dma_addr_t msg_mapping;
269 
270 	/* VF GPA address */
271 	u32 vf_addr_lo;
272 	u32 vf_addr_hi;
273 
274 	struct vfpf_first_tlv first_tlv;	/* saved VF request header */
275 };
276 
277 struct bnx2x_vf_sp {
278 	union {
279 		struct eth_classify_rules_ramrod_data	e2;
280 	} mac_rdata;
281 
282 	union {
283 		struct eth_classify_rules_ramrod_data	e2;
284 	} vlan_rdata;
285 
286 	union {
287 		struct eth_classify_rules_ramrod_data	e2;
288 	} vlan_mac_rdata;
289 
290 	union {
291 		struct eth_filter_rules_ramrod_data	e2;
292 	} rx_mode_rdata;
293 
294 	union {
295 		struct eth_multicast_rules_ramrod_data  e2;
296 	} mcast_rdata;
297 
298 	union {
299 		struct client_init_ramrod_data  init_data;
300 		struct client_update_ramrod_data update_data;
301 	} q_data;
302 
303 	union {
304 		struct eth_rss_update_ramrod_data e2;
305 	} rss_rdata;
306 };
307 
308 struct hw_dma {
309 	void *addr;
310 	dma_addr_t mapping;
311 	size_t size;
312 };
313 
314 struct bnx2x_vfdb {
315 #define BP_VFDB(bp)		((bp)->vfdb)
316 	/* vf array */
317 	struct bnx2x_virtf	*vfs;
318 #define BP_VF(bp, idx)		((BP_VFDB(bp) && (bp)->vfdb->vfs) ? \
319 					&((bp)->vfdb->vfs[idx]) : NULL)
320 #define bnx2x_vf(bp, idx, var)	((bp)->vfdb->vfs[idx].var)
321 
322 	/* queue array - for all vfs */
323 	struct bnx2x_vf_queue *vfqs;
324 
325 	/* vf HW contexts */
326 	struct hw_dma		context[BNX2X_VF_CIDS/ILT_PAGE_CIDS];
327 #define	BP_VF_CXT_PAGE(bp, i)	(&(bp)->vfdb->context[i])
328 
329 	/* SR-IOV information */
330 	struct bnx2x_sriov	sriov;
331 	struct hw_dma		mbx_dma;
332 #define BP_VF_MBX_DMA(bp)	(&((bp)->vfdb->mbx_dma))
333 	struct bnx2x_vf_mbx	mbxs[BNX2X_MAX_NUM_OF_VFS];
334 #define BP_VF_MBX(bp, vfid)	(&((bp)->vfdb->mbxs[vfid]))
335 
336 	struct hw_dma		bulletin_dma;
337 #define BP_VF_BULLETIN_DMA(bp)	(&((bp)->vfdb->bulletin_dma))
338 #define	BP_VF_BULLETIN(bp, vf) \
339 	(((struct pf_vf_bulletin_content *)(BP_VF_BULLETIN_DMA(bp)->addr)) \
340 	 + (vf))
341 
342 	struct hw_dma		sp_dma;
343 #define bnx2x_vf_sp(bp, vf, field) ((bp)->vfdb->sp_dma.addr +		\
344 		(vf)->index * sizeof(struct bnx2x_vf_sp) +		\
345 		offsetof(struct bnx2x_vf_sp, field))
346 #define bnx2x_vf_sp_map(bp, vf, field) ((bp)->vfdb->sp_dma.mapping +	\
347 		(vf)->index * sizeof(struct bnx2x_vf_sp) +		\
348 		offsetof(struct bnx2x_vf_sp, field))
349 
350 #define FLRD_VFS_DWORDS (BNX2X_MAX_NUM_OF_VFS / 32)
351 	u32 flrd_vfs[FLRD_VFS_DWORDS];
352 
353 	/* the number of msix vectors belonging to this PF designated for VFs */
354 	u16 vf_sbs_pool;
355 	u16 first_vf_igu_entry;
356 
357 	/* sp_rtnl synchronization */
358 	struct mutex			event_mutex;
359 	u64				event_occur;
360 
361 	/* bulletin board update synchronization */
362 	struct mutex			bulletin_mutex;
363 };
364 
365 /* queue access */
vfq_get(struct bnx2x_virtf * vf,u8 index)366 static inline struct bnx2x_vf_queue *vfq_get(struct bnx2x_virtf *vf, u8 index)
367 {
368 	return &(vf->vfqs[index]);
369 }
370 
371 /* FW ids */
vf_igu_sb(struct bnx2x_virtf * vf,u16 sb_idx)372 static inline u8 vf_igu_sb(struct bnx2x_virtf *vf, u16 sb_idx)
373 {
374 	return vf->igu_base_id + sb_idx;
375 }
376 
vf_hc_qzone(struct bnx2x_virtf * vf,u16 sb_idx)377 static inline u8 vf_hc_qzone(struct bnx2x_virtf *vf, u16 sb_idx)
378 {
379 	return vf_igu_sb(vf, sb_idx);
380 }
381 
vfq_cl_id(struct bnx2x_virtf * vf,struct bnx2x_vf_queue * q)382 static u8 vfq_cl_id(struct bnx2x_virtf *vf, struct bnx2x_vf_queue *q)
383 {
384 	return vf->igu_base_id + q->index;
385 }
386 
vfq_stat_id(struct bnx2x_virtf * vf,struct bnx2x_vf_queue * q)387 static inline u8 vfq_stat_id(struct bnx2x_virtf *vf, struct bnx2x_vf_queue *q)
388 {
389 	if (vf->cfg_flags & VF_CFG_STATS_COALESCE)
390 		return vf->leading_rss;
391 	else
392 		return vfq_cl_id(vf, q);
393 }
394 
vfq_qzone_id(struct bnx2x_virtf * vf,struct bnx2x_vf_queue * q)395 static inline u8 vfq_qzone_id(struct bnx2x_virtf *vf, struct bnx2x_vf_queue *q)
396 {
397 	return vfq_cl_id(vf, q);
398 }
399 
400 /* global iov routines */
401 int bnx2x_iov_init_ilt(struct bnx2x *bp, u16 line);
402 int bnx2x_iov_init_one(struct bnx2x *bp, int int_mode_param, int num_vfs_param);
403 void bnx2x_iov_remove_one(struct bnx2x *bp);
404 void bnx2x_iov_free_mem(struct bnx2x *bp);
405 int bnx2x_iov_alloc_mem(struct bnx2x *bp);
406 int bnx2x_iov_nic_init(struct bnx2x *bp);
407 int bnx2x_iov_chip_cleanup(struct bnx2x *bp);
408 void bnx2x_iov_init_dq(struct bnx2x *bp);
409 void bnx2x_iov_init_dmae(struct bnx2x *bp);
410 void bnx2x_iov_set_queue_sp_obj(struct bnx2x *bp, int vf_cid,
411 				struct bnx2x_queue_sp_obj **q_obj);
412 int bnx2x_iov_eq_sp_event(struct bnx2x *bp, union event_ring_elem *elem);
413 void bnx2x_iov_adjust_stats_req(struct bnx2x *bp);
414 void bnx2x_iov_storm_stats_update(struct bnx2x *bp);
415 /* global vf mailbox routines */
416 void bnx2x_vf_mbx(struct bnx2x *bp);
417 void bnx2x_vf_mbx_schedule(struct bnx2x *bp,
418 			   struct vf_pf_event_data *vfpf_event);
419 void bnx2x_vf_enable_mbx(struct bnx2x *bp, u8 abs_vfid);
420 
421 /* CORE VF API */
422 typedef u8 bnx2x_mac_addr_t[ETH_ALEN];
423 
424 /* acquire */
425 int bnx2x_vf_acquire(struct bnx2x *bp, struct bnx2x_virtf *vf,
426 		     struct vf_pf_resc_request *resc);
427 /* init */
428 int bnx2x_vf_init(struct bnx2x *bp, struct bnx2x_virtf *vf,
429 		  dma_addr_t *sb_map);
430 
431 /* VFOP queue construction helpers */
432 void bnx2x_vfop_qctor_dump_tx(struct bnx2x *bp, struct bnx2x_virtf *vf,
433 			    struct bnx2x_queue_init_params *init_params,
434 			    struct bnx2x_queue_setup_params *setup_params,
435 			    u16 q_idx, u16 sb_idx);
436 
437 void bnx2x_vfop_qctor_dump_rx(struct bnx2x *bp, struct bnx2x_virtf *vf,
438 			    struct bnx2x_queue_init_params *init_params,
439 			    struct bnx2x_queue_setup_params *setup_params,
440 			    u16 q_idx, u16 sb_idx);
441 
442 void bnx2x_vfop_qctor_prep(struct bnx2x *bp,
443 			   struct bnx2x_virtf *vf,
444 			   struct bnx2x_vf_queue *q,
445 			   struct bnx2x_vf_queue_construct_params *p,
446 			   unsigned long q_type);
447 
448 int bnx2x_vf_mac_vlan_config_list(struct bnx2x *bp, struct bnx2x_virtf *vf,
449 				  struct bnx2x_vf_mac_vlan_filters *filters,
450 				  int qid, bool drv_only);
451 
452 int bnx2x_vf_queue_setup(struct bnx2x *bp, struct bnx2x_virtf *vf, int qid,
453 			 struct bnx2x_vf_queue_construct_params *qctor);
454 
455 int bnx2x_vf_queue_teardown(struct bnx2x *bp, struct bnx2x_virtf *vf, int qid);
456 
457 int bnx2x_vf_mcast(struct bnx2x *bp, struct bnx2x_virtf *vf,
458 		   bnx2x_mac_addr_t *mcasts, int mc_num, bool drv_only);
459 
460 int bnx2x_vf_rxmode(struct bnx2x *bp, struct bnx2x_virtf *vf,
461 		    int qid, unsigned long accept_flags);
462 
463 int bnx2x_vf_close(struct bnx2x *bp, struct bnx2x_virtf *vf);
464 
465 int bnx2x_vf_free(struct bnx2x *bp, struct bnx2x_virtf *vf);
466 
467 int bnx2x_vf_rss_update(struct bnx2x *bp, struct bnx2x_virtf *vf,
468 			struct bnx2x_config_rss_params *rss);
469 
470 int bnx2x_vf_tpa_update(struct bnx2x *bp, struct bnx2x_virtf *vf,
471 			struct vfpf_tpa_tlv *tlv,
472 			struct bnx2x_queue_update_tpa_params *params);
473 
474 /* VF release ~ VF close + VF release-resources
475  *
476  * Release is the ultimate SW shutdown and is called whenever an
477  * irrecoverable error is encountered.
478  */
479 int bnx2x_vf_release(struct bnx2x *bp, struct bnx2x_virtf *vf);
480 int bnx2x_vf_idx_by_abs_fid(struct bnx2x *bp, u16 abs_vfid);
481 u8 bnx2x_vf_max_queue_cnt(struct bnx2x *bp, struct bnx2x_virtf *vf);
482 
483 /* FLR routines */
484 
485 /* VF FLR helpers */
486 int bnx2x_vf_flr_clnup_epilog(struct bnx2x *bp, u8 abs_vfid);
487 void bnx2x_vf_enable_access(struct bnx2x *bp, u8 abs_vfid);
488 
489 /* Handles an FLR (or VF_DISABLE) notification form the MCP */
490 void bnx2x_vf_handle_flr_event(struct bnx2x *bp);
491 
492 bool bnx2x_tlv_supported(u16 tlvtype);
493 
494 u32 bnx2x_crc_vf_bulletin(struct pf_vf_bulletin_content *bulletin);
495 int bnx2x_post_vf_bulletin(struct bnx2x *bp, int vf);
496 void bnx2x_vf_bulletin_finalize(struct pf_vf_bulletin_content *bulletin,
497 				bool support_long);
498 
499 enum sample_bulletin_result bnx2x_sample_bulletin(struct bnx2x *bp);
500 
501 /* VF side vfpf channel functions */
502 int bnx2x_vfpf_acquire(struct bnx2x *bp, u8 tx_count, u8 rx_count);
503 int bnx2x_vfpf_release(struct bnx2x *bp);
504 int bnx2x_vfpf_release(struct bnx2x *bp);
505 int bnx2x_vfpf_init(struct bnx2x *bp);
506 void bnx2x_vfpf_close_vf(struct bnx2x *bp);
507 int bnx2x_vfpf_setup_q(struct bnx2x *bp, struct bnx2x_fastpath *fp,
508 		       bool is_leading);
509 int bnx2x_vfpf_config_mac(struct bnx2x *bp, u8 *addr, u8 vf_qid, bool set);
510 int bnx2x_vfpf_config_rss(struct bnx2x *bp,
511 			  struct bnx2x_config_rss_params *params);
512 int bnx2x_vfpf_set_mcast(struct net_device *dev);
513 int bnx2x_vfpf_storm_rx_mode(struct bnx2x *bp);
514 
bnx2x_vf_fill_fw_str(struct bnx2x * bp,char * buf,size_t buf_len)515 static inline void bnx2x_vf_fill_fw_str(struct bnx2x *bp, char *buf,
516 					size_t buf_len)
517 {
518 	strlcpy(buf, bp->acquire_resp.pfdev_info.fw_ver, buf_len);
519 }
520 
bnx2x_vf_ustorm_prods_offset(struct bnx2x * bp,struct bnx2x_fastpath * fp)521 static inline int bnx2x_vf_ustorm_prods_offset(struct bnx2x *bp,
522 					       struct bnx2x_fastpath *fp)
523 {
524 	return PXP_VF_ADDR_USDM_QUEUES_START +
525 		bp->acquire_resp.resc.hw_qid[fp->index] *
526 		sizeof(struct ustorm_queue_zone_data);
527 }
528 
529 enum sample_bulletin_result bnx2x_sample_bulletin(struct bnx2x *bp);
530 void bnx2x_timer_sriov(struct bnx2x *bp);
531 void __iomem *bnx2x_vf_doorbells(struct bnx2x *bp);
532 void bnx2x_vf_pci_dealloc(struct bnx2x *bp);
533 int bnx2x_vf_pci_alloc(struct bnx2x *bp);
534 int bnx2x_enable_sriov(struct bnx2x *bp);
535 void bnx2x_disable_sriov(struct bnx2x *bp);
bnx2x_vf_headroom(struct bnx2x * bp)536 static inline int bnx2x_vf_headroom(struct bnx2x *bp)
537 {
538 	return bp->vfdb->sriov.nr_virtfn * BNX2X_CIDS_PER_VF;
539 }
540 void bnx2x_pf_set_vfs_vlan(struct bnx2x *bp);
541 int bnx2x_sriov_configure(struct pci_dev *dev, int num_vfs);
542 void bnx2x_iov_channel_down(struct bnx2x *bp);
543 
544 void bnx2x_iov_task(struct work_struct *work);
545 
546 void bnx2x_schedule_iov_task(struct bnx2x *bp, enum bnx2x_iov_flag flag);
547 
548 void bnx2x_iov_link_update(struct bnx2x *bp);
549 int bnx2x_iov_link_update_vf(struct bnx2x *bp, int idx);
550 
551 int bnx2x_set_vf_link_state(struct net_device *dev, int vf, int link_state);
552 
553 int bnx2x_vfpf_update_vlan(struct bnx2x *bp, u16 vid, u8 vf_qid, bool add);
554 #else /* CONFIG_BNX2X_SRIOV */
555 
556 #define GET_NUM_VFS_PER_PATH(bp)	0
557 #define GET_NUM_VFS_PER_PF(bp)		0
558 #define VF_MAC_CREDIT_CNT		0
559 #define VF_VLAN_CREDIT_CNT		0
560 
bnx2x_iov_set_queue_sp_obj(struct bnx2x * bp,int vf_cid,struct bnx2x_queue_sp_obj ** q_obj)561 static inline void bnx2x_iov_set_queue_sp_obj(struct bnx2x *bp, int vf_cid,
562 				struct bnx2x_queue_sp_obj **q_obj) {}
bnx2x_vf_handle_flr_event(struct bnx2x * bp)563 static inline void bnx2x_vf_handle_flr_event(struct bnx2x *bp) {}
bnx2x_iov_eq_sp_event(struct bnx2x * bp,union event_ring_elem * elem)564 static inline int bnx2x_iov_eq_sp_event(struct bnx2x *bp,
565 					union event_ring_elem *elem) {return 1; }
bnx2x_vf_mbx(struct bnx2x * bp)566 static inline void bnx2x_vf_mbx(struct bnx2x *bp) {}
bnx2x_vf_mbx_schedule(struct bnx2x * bp,struct vf_pf_event_data * vfpf_event)567 static inline void bnx2x_vf_mbx_schedule(struct bnx2x *bp,
568 					 struct vf_pf_event_data *vfpf_event) {}
bnx2x_iov_init_ilt(struct bnx2x * bp,u16 line)569 static inline int bnx2x_iov_init_ilt(struct bnx2x *bp, u16 line) {return line; }
bnx2x_iov_init_dq(struct bnx2x * bp)570 static inline void bnx2x_iov_init_dq(struct bnx2x *bp) {}
bnx2x_iov_alloc_mem(struct bnx2x * bp)571 static inline int bnx2x_iov_alloc_mem(struct bnx2x *bp) {return 0; }
bnx2x_iov_free_mem(struct bnx2x * bp)572 static inline void bnx2x_iov_free_mem(struct bnx2x *bp) {}
bnx2x_iov_chip_cleanup(struct bnx2x * bp)573 static inline int bnx2x_iov_chip_cleanup(struct bnx2x *bp) {return 0; }
bnx2x_iov_init_dmae(struct bnx2x * bp)574 static inline void bnx2x_iov_init_dmae(struct bnx2x *bp) {}
bnx2x_iov_init_one(struct bnx2x * bp,int int_mode_param,int num_vfs_param)575 static inline int bnx2x_iov_init_one(struct bnx2x *bp, int int_mode_param,
576 				     int num_vfs_param) {return 0; }
bnx2x_iov_remove_one(struct bnx2x * bp)577 static inline void bnx2x_iov_remove_one(struct bnx2x *bp) {}
bnx2x_enable_sriov(struct bnx2x * bp)578 static inline int bnx2x_enable_sriov(struct bnx2x *bp) {return 0; }
bnx2x_disable_sriov(struct bnx2x * bp)579 static inline void bnx2x_disable_sriov(struct bnx2x *bp) {}
bnx2x_vfpf_acquire(struct bnx2x * bp,u8 tx_count,u8 rx_count)580 static inline int bnx2x_vfpf_acquire(struct bnx2x *bp,
581 				     u8 tx_count, u8 rx_count) {return 0; }
bnx2x_vfpf_release(struct bnx2x * bp)582 static inline int bnx2x_vfpf_release(struct bnx2x *bp) {return 0; }
bnx2x_vfpf_init(struct bnx2x * bp)583 static inline int bnx2x_vfpf_init(struct bnx2x *bp) {return 0; }
bnx2x_vfpf_close_vf(struct bnx2x * bp)584 static inline void bnx2x_vfpf_close_vf(struct bnx2x *bp) {}
bnx2x_vfpf_setup_q(struct bnx2x * bp,struct bnx2x_fastpath * fp,bool is_leading)585 static inline int bnx2x_vfpf_setup_q(struct bnx2x *bp, struct bnx2x_fastpath *fp, bool is_leading) {return 0; }
bnx2x_vfpf_config_mac(struct bnx2x * bp,u8 * addr,u8 vf_qid,bool set)586 static inline int bnx2x_vfpf_config_mac(struct bnx2x *bp, u8 *addr,
587 					u8 vf_qid, bool set) {return 0; }
bnx2x_vfpf_config_rss(struct bnx2x * bp,struct bnx2x_config_rss_params * params)588 static inline int bnx2x_vfpf_config_rss(struct bnx2x *bp,
589 					struct bnx2x_config_rss_params *params) {return 0; }
bnx2x_vfpf_set_mcast(struct net_device * dev)590 static inline int bnx2x_vfpf_set_mcast(struct net_device *dev) {return 0; }
bnx2x_vfpf_storm_rx_mode(struct bnx2x * bp)591 static inline int bnx2x_vfpf_storm_rx_mode(struct bnx2x *bp) {return 0; }
bnx2x_iov_nic_init(struct bnx2x * bp)592 static inline int bnx2x_iov_nic_init(struct bnx2x *bp) {return 0; }
bnx2x_vf_headroom(struct bnx2x * bp)593 static inline int bnx2x_vf_headroom(struct bnx2x *bp) {return 0; }
bnx2x_iov_adjust_stats_req(struct bnx2x * bp)594 static inline void bnx2x_iov_adjust_stats_req(struct bnx2x *bp) {}
bnx2x_vf_fill_fw_str(struct bnx2x * bp,char * buf,size_t buf_len)595 static inline void bnx2x_vf_fill_fw_str(struct bnx2x *bp, char *buf,
596 					size_t buf_len) {}
bnx2x_vf_ustorm_prods_offset(struct bnx2x * bp,struct bnx2x_fastpath * fp)597 static inline int bnx2x_vf_ustorm_prods_offset(struct bnx2x *bp,
598 					       struct bnx2x_fastpath *fp) {return 0; }
bnx2x_sample_bulletin(struct bnx2x * bp)599 static inline enum sample_bulletin_result bnx2x_sample_bulletin(struct bnx2x *bp)
600 {
601 	return PFVF_BULLETIN_UNCHANGED;
602 }
bnx2x_timer_sriov(struct bnx2x * bp)603 static inline void bnx2x_timer_sriov(struct bnx2x *bp) {}
604 
bnx2x_vf_doorbells(struct bnx2x * bp)605 static inline void __iomem *bnx2x_vf_doorbells(struct bnx2x *bp)
606 {
607 	return NULL;
608 }
609 
bnx2x_vf_pci_dealloc(struct bnx2x * bp)610 static inline void bnx2x_vf_pci_dealloc(struct bnx2x *bp) {}
bnx2x_vf_pci_alloc(struct bnx2x * bp)611 static inline int bnx2x_vf_pci_alloc(struct bnx2x *bp) {return 0; }
bnx2x_pf_set_vfs_vlan(struct bnx2x * bp)612 static inline void bnx2x_pf_set_vfs_vlan(struct bnx2x *bp) {}
bnx2x_sriov_configure(struct pci_dev * dev,int num_vfs)613 static inline int bnx2x_sriov_configure(struct pci_dev *dev, int num_vfs) {return 0; }
bnx2x_iov_channel_down(struct bnx2x * bp)614 static inline void bnx2x_iov_channel_down(struct bnx2x *bp) {}
615 
bnx2x_iov_task(struct work_struct * work)616 static inline void bnx2x_iov_task(struct work_struct *work) {}
bnx2x_schedule_iov_task(struct bnx2x * bp,enum bnx2x_iov_flag flag)617 static inline void bnx2x_schedule_iov_task(struct bnx2x *bp, enum bnx2x_iov_flag flag) {}
bnx2x_iov_link_update(struct bnx2x * bp)618 static inline void bnx2x_iov_link_update(struct bnx2x *bp) {}
bnx2x_iov_link_update_vf(struct bnx2x * bp,int idx)619 static inline int bnx2x_iov_link_update_vf(struct bnx2x *bp, int idx) {return 0; }
620 
bnx2x_set_vf_link_state(struct net_device * dev,int vf,int link_state)621 static inline int bnx2x_set_vf_link_state(struct net_device *dev, int vf,
622 					  int link_state) {return 0; }
623 struct pf_vf_bulletin_content;
bnx2x_vf_bulletin_finalize(struct pf_vf_bulletin_content * bulletin,bool support_long)624 static inline void bnx2x_vf_bulletin_finalize(struct pf_vf_bulletin_content *bulletin,
625 					      bool support_long) {}
626 
bnx2x_vfpf_update_vlan(struct bnx2x * bp,u16 vid,u8 vf_qid,bool add)627 static inline int bnx2x_vfpf_update_vlan(struct bnx2x *bp, u16 vid, u8 vf_qid, bool add) {return 0; }
628 
629 #endif /* CONFIG_BNX2X_SRIOV */
630 #endif /* bnx2x_sriov.h */
631