6206de92896468dd677edbb023a41c32dfeed22a
[deliverable/linux.git] / drivers / net / ethernet / chelsio / cxgb4 / cxgb4.h
1 /*
2 * This file is part of the Chelsio T4 Ethernet driver for Linux.
3 *
4 * Copyright (c) 2003-2014 Chelsio Communications, Inc. All rights reserved.
5 *
6 * This software is available to you under a choice of one of two
7 * licenses. You may choose to be licensed under the terms of the GNU
8 * General Public License (GPL) Version 2, available from the file
9 * COPYING in the main directory of this source tree, or the
10 * OpenIB.org BSD license below:
11 *
12 * Redistribution and use in source and binary forms, with or
13 * without modification, are permitted provided that the following
14 * conditions are met:
15 *
16 * - Redistributions of source code must retain the above
17 * copyright notice, this list of conditions and the following
18 * disclaimer.
19 *
20 * - Redistributions in binary form must reproduce the above
21 * copyright notice, this list of conditions and the following
22 * disclaimer in the documentation and/or other materials
23 * provided with the distribution.
24 *
25 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
26 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
27 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
28 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
29 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
30 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
31 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
32 * SOFTWARE.
33 */
34
35 #ifndef __CXGB4_H__
36 #define __CXGB4_H__
37
38 #include "t4_hw.h"
39
40 #include <linux/bitops.h>
41 #include <linux/cache.h>
42 #include <linux/interrupt.h>
43 #include <linux/list.h>
44 #include <linux/netdevice.h>
45 #include <linux/pci.h>
46 #include <linux/spinlock.h>
47 #include <linux/timer.h>
48 #include <linux/vmalloc.h>
49 #include <linux/etherdevice.h>
50 #include <linux/net_tstamp.h>
51 #include <asm/io.h>
52 #include "t4_chip_type.h"
53 #include "cxgb4_uld.h"
54
55 #define CH_WARN(adap, fmt, ...) dev_warn(adap->pdev_dev, fmt, ## __VA_ARGS__)
56
57 enum {
58 MAX_NPORTS = 4, /* max # of ports */
59 SERNUM_LEN = 24, /* Serial # length */
60 EC_LEN = 16, /* E/C length */
61 ID_LEN = 16, /* ID length */
62 PN_LEN = 16, /* Part Number length */
63 MACADDR_LEN = 12, /* MAC Address length */
64 };
65
66 enum {
67 T4_REGMAP_SIZE = (160 * 1024),
68 T5_REGMAP_SIZE = (332 * 1024),
69 };
70
71 enum {
72 MEM_EDC0,
73 MEM_EDC1,
74 MEM_MC,
75 MEM_MC0 = MEM_MC,
76 MEM_MC1
77 };
78
79 enum {
80 MEMWIN0_APERTURE = 2048,
81 MEMWIN0_BASE = 0x1b800,
82 MEMWIN1_APERTURE = 32768,
83 MEMWIN1_BASE = 0x28000,
84 MEMWIN1_BASE_T5 = 0x52000,
85 MEMWIN2_APERTURE = 65536,
86 MEMWIN2_BASE = 0x30000,
87 MEMWIN2_APERTURE_T5 = 131072,
88 MEMWIN2_BASE_T5 = 0x60000,
89 };
90
91 enum dev_master {
92 MASTER_CANT,
93 MASTER_MAY,
94 MASTER_MUST
95 };
96
97 enum dev_state {
98 DEV_STATE_UNINIT,
99 DEV_STATE_INIT,
100 DEV_STATE_ERR
101 };
102
103 enum {
104 PAUSE_RX = 1 << 0,
105 PAUSE_TX = 1 << 1,
106 PAUSE_AUTONEG = 1 << 2
107 };
108
109 struct port_stats {
110 u64 tx_octets; /* total # of octets in good frames */
111 u64 tx_frames; /* all good frames */
112 u64 tx_bcast_frames; /* all broadcast frames */
113 u64 tx_mcast_frames; /* all multicast frames */
114 u64 tx_ucast_frames; /* all unicast frames */
115 u64 tx_error_frames; /* all error frames */
116
117 u64 tx_frames_64; /* # of Tx frames in a particular range */
118 u64 tx_frames_65_127;
119 u64 tx_frames_128_255;
120 u64 tx_frames_256_511;
121 u64 tx_frames_512_1023;
122 u64 tx_frames_1024_1518;
123 u64 tx_frames_1519_max;
124
125 u64 tx_drop; /* # of dropped Tx frames */
126 u64 tx_pause; /* # of transmitted pause frames */
127 u64 tx_ppp0; /* # of transmitted PPP prio 0 frames */
128 u64 tx_ppp1; /* # of transmitted PPP prio 1 frames */
129 u64 tx_ppp2; /* # of transmitted PPP prio 2 frames */
130 u64 tx_ppp3; /* # of transmitted PPP prio 3 frames */
131 u64 tx_ppp4; /* # of transmitted PPP prio 4 frames */
132 u64 tx_ppp5; /* # of transmitted PPP prio 5 frames */
133 u64 tx_ppp6; /* # of transmitted PPP prio 6 frames */
134 u64 tx_ppp7; /* # of transmitted PPP prio 7 frames */
135
136 u64 rx_octets; /* total # of octets in good frames */
137 u64 rx_frames; /* all good frames */
138 u64 rx_bcast_frames; /* all broadcast frames */
139 u64 rx_mcast_frames; /* all multicast frames */
140 u64 rx_ucast_frames; /* all unicast frames */
141 u64 rx_too_long; /* # of frames exceeding MTU */
142 u64 rx_jabber; /* # of jabber frames */
143 u64 rx_fcs_err; /* # of received frames with bad FCS */
144 u64 rx_len_err; /* # of received frames with length error */
145 u64 rx_symbol_err; /* symbol errors */
146 u64 rx_runt; /* # of short frames */
147
148 u64 rx_frames_64; /* # of Rx frames in a particular range */
149 u64 rx_frames_65_127;
150 u64 rx_frames_128_255;
151 u64 rx_frames_256_511;
152 u64 rx_frames_512_1023;
153 u64 rx_frames_1024_1518;
154 u64 rx_frames_1519_max;
155
156 u64 rx_pause; /* # of received pause frames */
157 u64 rx_ppp0; /* # of received PPP prio 0 frames */
158 u64 rx_ppp1; /* # of received PPP prio 1 frames */
159 u64 rx_ppp2; /* # of received PPP prio 2 frames */
160 u64 rx_ppp3; /* # of received PPP prio 3 frames */
161 u64 rx_ppp4; /* # of received PPP prio 4 frames */
162 u64 rx_ppp5; /* # of received PPP prio 5 frames */
163 u64 rx_ppp6; /* # of received PPP prio 6 frames */
164 u64 rx_ppp7; /* # of received PPP prio 7 frames */
165
166 u64 rx_ovflow0; /* drops due to buffer-group 0 overflows */
167 u64 rx_ovflow1; /* drops due to buffer-group 1 overflows */
168 u64 rx_ovflow2; /* drops due to buffer-group 2 overflows */
169 u64 rx_ovflow3; /* drops due to buffer-group 3 overflows */
170 u64 rx_trunc0; /* buffer-group 0 truncated packets */
171 u64 rx_trunc1; /* buffer-group 1 truncated packets */
172 u64 rx_trunc2; /* buffer-group 2 truncated packets */
173 u64 rx_trunc3; /* buffer-group 3 truncated packets */
174 };
175
176 struct lb_port_stats {
177 u64 octets;
178 u64 frames;
179 u64 bcast_frames;
180 u64 mcast_frames;
181 u64 ucast_frames;
182 u64 error_frames;
183
184 u64 frames_64;
185 u64 frames_65_127;
186 u64 frames_128_255;
187 u64 frames_256_511;
188 u64 frames_512_1023;
189 u64 frames_1024_1518;
190 u64 frames_1519_max;
191
192 u64 drop;
193
194 u64 ovflow0;
195 u64 ovflow1;
196 u64 ovflow2;
197 u64 ovflow3;
198 u64 trunc0;
199 u64 trunc1;
200 u64 trunc2;
201 u64 trunc3;
202 };
203
204 struct tp_tcp_stats {
205 u32 tcp_out_rsts;
206 u64 tcp_in_segs;
207 u64 tcp_out_segs;
208 u64 tcp_retrans_segs;
209 };
210
211 struct tp_usm_stats {
212 u32 frames;
213 u32 drops;
214 u64 octets;
215 };
216
217 struct tp_fcoe_stats {
218 u32 frames_ddp;
219 u32 frames_drop;
220 u64 octets_ddp;
221 };
222
223 struct tp_err_stats {
224 u32 mac_in_errs[4];
225 u32 hdr_in_errs[4];
226 u32 tcp_in_errs[4];
227 u32 tnl_cong_drops[4];
228 u32 ofld_chan_drops[4];
229 u32 tnl_tx_drops[4];
230 u32 ofld_vlan_drops[4];
231 u32 tcp6_in_errs[4];
232 u32 ofld_no_neigh;
233 u32 ofld_cong_defer;
234 };
235
236 struct tp_cpl_stats {
237 u32 req[4];
238 u32 rsp[4];
239 };
240
241 struct tp_rdma_stats {
242 u32 rqe_dfr_pkt;
243 u32 rqe_dfr_mod;
244 };
245
246 struct sge_params {
247 u32 hps; /* host page size for our PF/VF */
248 u32 eq_qpp; /* egress queues/page for our PF/VF */
249 u32 iq_qpp; /* egress queues/page for our PF/VF */
250 };
251
252 struct tp_params {
253 unsigned int tre; /* log2 of core clocks per TP tick */
254 unsigned int la_mask; /* what events are recorded by TP LA */
255 unsigned short tx_modq_map; /* TX modulation scheduler queue to */
256 /* channel map */
257
258 uint32_t dack_re; /* DACK timer resolution */
259 unsigned short tx_modq[NCHAN]; /* channel to modulation queue map */
260
261 u32 vlan_pri_map; /* cached TP_VLAN_PRI_MAP */
262 u32 ingress_config; /* cached TP_INGRESS_CONFIG */
263
264 /* TP_VLAN_PRI_MAP Compressed Filter Tuple field offsets. This is a
265 * subset of the set of fields which may be present in the Compressed
266 * Filter Tuple portion of filters and TCP TCB connections. The
267 * fields which are present are controlled by the TP_VLAN_PRI_MAP.
268 * Since a variable number of fields may or may not be present, their
269 * shifted field positions within the Compressed Filter Tuple may
270 * vary, or not even be present if the field isn't selected in
271 * TP_VLAN_PRI_MAP. Since some of these fields are needed in various
272 * places we store their offsets here, or a -1 if the field isn't
273 * present.
274 */
275 int vlan_shift;
276 int vnic_shift;
277 int port_shift;
278 int protocol_shift;
279 };
280
281 struct vpd_params {
282 unsigned int cclk;
283 u8 ec[EC_LEN + 1];
284 u8 sn[SERNUM_LEN + 1];
285 u8 id[ID_LEN + 1];
286 u8 pn[PN_LEN + 1];
287 u8 na[MACADDR_LEN + 1];
288 };
289
290 struct pci_params {
291 unsigned char speed;
292 unsigned char width;
293 };
294
295 struct devlog_params {
296 u32 memtype; /* which memory (EDC0, EDC1, MC) */
297 u32 start; /* start of log in firmware memory */
298 u32 size; /* size of log */
299 };
300
301 /* Stores chip specific parameters */
302 struct arch_specific_params {
303 u8 nchan;
304 u8 pm_stats_cnt;
305 u8 cng_ch_bits_log; /* congestion channel map bits width */
306 u16 mps_rplc_size;
307 u16 vfcount;
308 u32 sge_fl_db;
309 u16 mps_tcam_size;
310 };
311
312 struct adapter_params {
313 struct sge_params sge;
314 struct tp_params tp;
315 struct vpd_params vpd;
316 struct pci_params pci;
317 struct devlog_params devlog;
318 enum pcie_memwin drv_memwin;
319
320 unsigned int cim_la_size;
321
322 unsigned int sf_size; /* serial flash size in bytes */
323 unsigned int sf_nsec; /* # of flash sectors */
324 unsigned int sf_fw_start; /* start of FW image in flash */
325
326 unsigned int fw_vers;
327 unsigned int tp_vers;
328 u8 api_vers[7];
329
330 unsigned short mtus[NMTUS];
331 unsigned short a_wnd[NCCTRL_WIN];
332 unsigned short b_wnd[NCCTRL_WIN];
333
334 unsigned char nports; /* # of ethernet ports */
335 unsigned char portvec;
336 enum chip_type chip; /* chip code */
337 struct arch_specific_params arch; /* chip specific params */
338 unsigned char offload;
339
340 unsigned char bypass;
341
342 unsigned int ofldq_wr_cred;
343 bool ulptx_memwrite_dsgl; /* use of T5 DSGL allowed */
344
345 unsigned int max_ordird_qp; /* Max read depth per RDMA QP */
346 unsigned int max_ird_adapter; /* Max read depth per adapter */
347 };
348
349 /* State needed to monitor the forward progress of SGE Ingress DMA activities
350 * and possible hangs.
351 */
352 struct sge_idma_monitor_state {
353 unsigned int idma_1s_thresh; /* 1s threshold in Core Clock ticks */
354 unsigned int idma_stalled[2]; /* synthesized stalled timers in HZ */
355 unsigned int idma_state[2]; /* IDMA Hang detect state */
356 unsigned int idma_qid[2]; /* IDMA Hung Ingress Queue ID */
357 unsigned int idma_warn[2]; /* time to warning in HZ */
358 };
359
360 #include "t4fw_api.h"
361
362 #define FW_VERSION(chip) ( \
363 FW_HDR_FW_VER_MAJOR_G(chip##FW_VERSION_MAJOR) | \
364 FW_HDR_FW_VER_MINOR_G(chip##FW_VERSION_MINOR) | \
365 FW_HDR_FW_VER_MICRO_G(chip##FW_VERSION_MICRO) | \
366 FW_HDR_FW_VER_BUILD_G(chip##FW_VERSION_BUILD))
367 #define FW_INTFVER(chip, intf) (FW_HDR_INTFVER_##intf)
368
369 struct fw_info {
370 u8 chip;
371 char *fs_name;
372 char *fw_mod_name;
373 struct fw_hdr fw_hdr;
374 };
375
376
377 struct trace_params {
378 u32 data[TRACE_LEN / 4];
379 u32 mask[TRACE_LEN / 4];
380 unsigned short snap_len;
381 unsigned short min_len;
382 unsigned char skip_ofst;
383 unsigned char skip_len;
384 unsigned char invert;
385 unsigned char port;
386 };
387
388 struct link_config {
389 unsigned short supported; /* link capabilities */
390 unsigned short advertising; /* advertised capabilities */
391 unsigned short requested_speed; /* speed user has requested */
392 unsigned short speed; /* actual link speed */
393 unsigned char requested_fc; /* flow control user has requested */
394 unsigned char fc; /* actual link flow control */
395 unsigned char autoneg; /* autonegotiating? */
396 unsigned char link_ok; /* link up? */
397 };
398
399 #define FW_LEN16(fw_struct) FW_CMD_LEN16_V(sizeof(fw_struct) / 16)
400
401 enum {
402 MAX_ETH_QSETS = 32, /* # of Ethernet Tx/Rx queue sets */
403 MAX_OFLD_QSETS = 16, /* # of offload Tx, iscsi Rx queue sets */
404 MAX_CTRL_QUEUES = NCHAN, /* # of control Tx queues */
405 MAX_RDMA_QUEUES = NCHAN, /* # of streaming RDMA Rx queues */
406 MAX_RDMA_CIQS = 32, /* # of RDMA concentrator IQs */
407
408 /* # of streaming iSCSIT Rx queues */
409 MAX_ISCSIT_QUEUES = MAX_OFLD_QSETS,
410 };
411
412 enum {
413 MAX_TXQ_ENTRIES = 16384,
414 MAX_CTRL_TXQ_ENTRIES = 1024,
415 MAX_RSPQ_ENTRIES = 16384,
416 MAX_RX_BUFFERS = 16384,
417 MIN_TXQ_ENTRIES = 32,
418 MIN_CTRL_TXQ_ENTRIES = 32,
419 MIN_RSPQ_ENTRIES = 128,
420 MIN_FL_ENTRIES = 16
421 };
422
423 enum {
424 INGQ_EXTRAS = 2, /* firmware event queue and */
425 /* forwarded interrupts */
426 MAX_INGQ = MAX_ETH_QSETS + MAX_OFLD_QSETS + MAX_RDMA_QUEUES +
427 MAX_RDMA_CIQS + MAX_ISCSIT_QUEUES + INGQ_EXTRAS,
428 };
429
430 struct adapter;
431 struct sge_rspq;
432
433 #include "cxgb4_dcb.h"
434
435 #ifdef CONFIG_CHELSIO_T4_FCOE
436 #include "cxgb4_fcoe.h"
437 #endif /* CONFIG_CHELSIO_T4_FCOE */
438
439 struct port_info {
440 struct adapter *adapter;
441 u16 viid;
442 s16 xact_addr_filt; /* index of exact MAC address filter */
443 u16 rss_size; /* size of VI's RSS table slice */
444 s8 mdio_addr;
445 enum fw_port_type port_type;
446 u8 mod_type;
447 u8 port_id;
448 u8 tx_chan;
449 u8 lport; /* associated offload logical port */
450 u8 nqsets; /* # of qsets */
451 u8 first_qset; /* index of first qset */
452 u8 rss_mode;
453 struct link_config link_cfg;
454 u16 *rss;
455 struct port_stats stats_base;
456 #ifdef CONFIG_CHELSIO_T4_DCB
457 struct port_dcb_info dcb; /* Data Center Bridging support */
458 #endif
459 #ifdef CONFIG_CHELSIO_T4_FCOE
460 struct cxgb_fcoe fcoe;
461 #endif /* CONFIG_CHELSIO_T4_FCOE */
462 bool rxtstamp; /* Enable TS */
463 struct hwtstamp_config tstamp_config;
464 };
465
466 struct dentry;
467 struct work_struct;
468
469 enum { /* adapter flags */
470 FULL_INIT_DONE = (1 << 0),
471 DEV_ENABLED = (1 << 1),
472 USING_MSI = (1 << 2),
473 USING_MSIX = (1 << 3),
474 FW_OK = (1 << 4),
475 RSS_TNLALLLOOKUP = (1 << 5),
476 USING_SOFT_PARAMS = (1 << 6),
477 MASTER_PF = (1 << 7),
478 FW_OFLD_CONN = (1 << 9),
479 };
480
481 struct rx_sw_desc;
482
483 struct sge_fl { /* SGE free-buffer queue state */
484 unsigned int avail; /* # of available Rx buffers */
485 unsigned int pend_cred; /* new buffers since last FL DB ring */
486 unsigned int cidx; /* consumer index */
487 unsigned int pidx; /* producer index */
488 unsigned long alloc_failed; /* # of times buffer allocation failed */
489 unsigned long large_alloc_failed;
490 unsigned long mapping_err; /* # of RX Buffer DMA Mapping failures */
491 unsigned long low; /* # of times momentarily starving */
492 unsigned long starving;
493 /* RO fields */
494 unsigned int cntxt_id; /* SGE context id for the free list */
495 unsigned int size; /* capacity of free list */
496 struct rx_sw_desc *sdesc; /* address of SW Rx descriptor ring */
497 __be64 *desc; /* address of HW Rx descriptor ring */
498 dma_addr_t addr; /* bus address of HW ring start */
499 void __iomem *bar2_addr; /* address of BAR2 Queue registers */
500 unsigned int bar2_qid; /* Queue ID for BAR2 Queue registers */
501 };
502
503 /* A packet gather list */
504 struct pkt_gl {
505 u64 sgetstamp; /* SGE Time Stamp for Ingress Packet */
506 struct page_frag frags[MAX_SKB_FRAGS];
507 void *va; /* virtual address of first byte */
508 unsigned int nfrags; /* # of fragments */
509 unsigned int tot_len; /* total length of fragments */
510 };
511
512 typedef int (*rspq_handler_t)(struct sge_rspq *q, const __be64 *rsp,
513 const struct pkt_gl *gl);
514
515 struct sge_rspq { /* state for an SGE response queue */
516 struct napi_struct napi;
517 const __be64 *cur_desc; /* current descriptor in queue */
518 unsigned int cidx; /* consumer index */
519 u8 gen; /* current generation bit */
520 u8 intr_params; /* interrupt holdoff parameters */
521 u8 next_intr_params; /* holdoff params for next interrupt */
522 u8 adaptive_rx;
523 u8 pktcnt_idx; /* interrupt packet threshold */
524 u8 uld; /* ULD handling this queue */
525 u8 idx; /* queue index within its group */
526 int offset; /* offset into current Rx buffer */
527 u16 cntxt_id; /* SGE context id for the response q */
528 u16 abs_id; /* absolute SGE id for the response q */
529 __be64 *desc; /* address of HW response ring */
530 dma_addr_t phys_addr; /* physical address of the ring */
531 void __iomem *bar2_addr; /* address of BAR2 Queue registers */
532 unsigned int bar2_qid; /* Queue ID for BAR2 Queue registers */
533 unsigned int iqe_len; /* entry size */
534 unsigned int size; /* capacity of response queue */
535 struct adapter *adap;
536 struct net_device *netdev; /* associated net device */
537 rspq_handler_t handler;
538 #ifdef CONFIG_NET_RX_BUSY_POLL
539 #define CXGB_POLL_STATE_IDLE 0
540 #define CXGB_POLL_STATE_NAPI BIT(0) /* NAPI owns this poll */
541 #define CXGB_POLL_STATE_POLL BIT(1) /* poll owns this poll */
542 #define CXGB_POLL_STATE_NAPI_YIELD BIT(2) /* NAPI yielded this poll */
543 #define CXGB_POLL_STATE_POLL_YIELD BIT(3) /* poll yielded this poll */
544 #define CXGB_POLL_YIELD (CXGB_POLL_STATE_NAPI_YIELD | \
545 CXGB_POLL_STATE_POLL_YIELD)
546 #define CXGB_POLL_LOCKED (CXGB_POLL_STATE_NAPI | \
547 CXGB_POLL_STATE_POLL)
548 #define CXGB_POLL_USER_PEND (CXGB_POLL_STATE_POLL | \
549 CXGB_POLL_STATE_POLL_YIELD)
550 unsigned int bpoll_state;
551 spinlock_t bpoll_lock; /* lock for busy poll */
552 #endif /* CONFIG_NET_RX_BUSY_POLL */
553
554 };
555
556 struct sge_eth_stats { /* Ethernet queue statistics */
557 unsigned long pkts; /* # of ethernet packets */
558 unsigned long lro_pkts; /* # of LRO super packets */
559 unsigned long lro_merged; /* # of wire packets merged by LRO */
560 unsigned long rx_cso; /* # of Rx checksum offloads */
561 unsigned long vlan_ex; /* # of Rx VLAN extractions */
562 unsigned long rx_drops; /* # of packets dropped due to no mem */
563 };
564
565 struct sge_eth_rxq { /* SW Ethernet Rx queue */
566 struct sge_rspq rspq;
567 struct sge_fl fl;
568 struct sge_eth_stats stats;
569 } ____cacheline_aligned_in_smp;
570
571 struct sge_ofld_stats { /* offload queue statistics */
572 unsigned long pkts; /* # of packets */
573 unsigned long imm; /* # of immediate-data packets */
574 unsigned long an; /* # of asynchronous notifications */
575 unsigned long nomem; /* # of responses deferred due to no mem */
576 };
577
578 struct sge_ofld_rxq { /* SW offload Rx queue */
579 struct sge_rspq rspq;
580 struct sge_fl fl;
581 struct sge_ofld_stats stats;
582 } ____cacheline_aligned_in_smp;
583
584 struct tx_desc {
585 __be64 flit[8];
586 };
587
588 struct tx_sw_desc;
589
590 struct sge_txq {
591 unsigned int in_use; /* # of in-use Tx descriptors */
592 unsigned int size; /* # of descriptors */
593 unsigned int cidx; /* SW consumer index */
594 unsigned int pidx; /* producer index */
595 unsigned long stops; /* # of times q has been stopped */
596 unsigned long restarts; /* # of queue restarts */
597 unsigned int cntxt_id; /* SGE context id for the Tx q */
598 struct tx_desc *desc; /* address of HW Tx descriptor ring */
599 struct tx_sw_desc *sdesc; /* address of SW Tx descriptor ring */
600 struct sge_qstat *stat; /* queue status entry */
601 dma_addr_t phys_addr; /* physical address of the ring */
602 spinlock_t db_lock;
603 int db_disabled;
604 unsigned short db_pidx;
605 unsigned short db_pidx_inc;
606 void __iomem *bar2_addr; /* address of BAR2 Queue registers */
607 unsigned int bar2_qid; /* Queue ID for BAR2 Queue registers */
608 };
609
610 struct sge_eth_txq { /* state for an SGE Ethernet Tx queue */
611 struct sge_txq q;
612 struct netdev_queue *txq; /* associated netdev TX queue */
613 #ifdef CONFIG_CHELSIO_T4_DCB
614 u8 dcb_prio; /* DCB Priority bound to queue */
615 #endif
616 unsigned long tso; /* # of TSO requests */
617 unsigned long tx_cso; /* # of Tx checksum offloads */
618 unsigned long vlan_ins; /* # of Tx VLAN insertions */
619 unsigned long mapping_err; /* # of I/O MMU packet mapping errors */
620 } ____cacheline_aligned_in_smp;
621
622 struct sge_ofld_txq { /* state for an SGE offload Tx queue */
623 struct sge_txq q;
624 struct adapter *adap;
625 struct sk_buff_head sendq; /* list of backpressured packets */
626 struct tasklet_struct qresume_tsk; /* restarts the queue */
627 bool service_ofldq_running; /* service_ofldq() is processing sendq */
628 u8 full; /* the Tx ring is full */
629 unsigned long mapping_err; /* # of I/O MMU packet mapping errors */
630 } ____cacheline_aligned_in_smp;
631
632 struct sge_ctrl_txq { /* state for an SGE control Tx queue */
633 struct sge_txq q;
634 struct adapter *adap;
635 struct sk_buff_head sendq; /* list of backpressured packets */
636 struct tasklet_struct qresume_tsk; /* restarts the queue */
637 u8 full; /* the Tx ring is full */
638 } ____cacheline_aligned_in_smp;
639
640 struct sge {
641 struct sge_eth_txq ethtxq[MAX_ETH_QSETS];
642 struct sge_ofld_txq ofldtxq[MAX_OFLD_QSETS];
643 struct sge_ctrl_txq ctrlq[MAX_CTRL_QUEUES];
644
645 struct sge_eth_rxq ethrxq[MAX_ETH_QSETS];
646 struct sge_ofld_rxq iscsirxq[MAX_OFLD_QSETS];
647 struct sge_ofld_rxq iscsitrxq[MAX_ISCSIT_QUEUES];
648 struct sge_ofld_rxq rdmarxq[MAX_RDMA_QUEUES];
649 struct sge_ofld_rxq rdmaciq[MAX_RDMA_CIQS];
650 struct sge_rspq fw_evtq ____cacheline_aligned_in_smp;
651
652 struct sge_rspq intrq ____cacheline_aligned_in_smp;
653 spinlock_t intrq_lock;
654
655 u16 max_ethqsets; /* # of available Ethernet queue sets */
656 u16 ethqsets; /* # of active Ethernet queue sets */
657 u16 ethtxq_rover; /* Tx queue to clean up next */
658 u16 iscsiqsets; /* # of active iSCSI queue sets */
659 u16 niscsitq; /* # of available iSCST Rx queues */
660 u16 rdmaqs; /* # of available RDMA Rx queues */
661 u16 rdmaciqs; /* # of available RDMA concentrator IQs */
662 u16 iscsi_rxq[MAX_OFLD_QSETS];
663 u16 iscsit_rxq[MAX_ISCSIT_QUEUES];
664 u16 rdma_rxq[MAX_RDMA_QUEUES];
665 u16 rdma_ciq[MAX_RDMA_CIQS];
666 u16 timer_val[SGE_NTIMERS];
667 u8 counter_val[SGE_NCOUNTERS];
668 u32 fl_pg_order; /* large page allocation size */
669 u32 stat_len; /* length of status page at ring end */
670 u32 pktshift; /* padding between CPL & packet data */
671 u32 fl_align; /* response queue message alignment */
672 u32 fl_starve_thres; /* Free List starvation threshold */
673
674 struct sge_idma_monitor_state idma_monitor;
675 unsigned int egr_start;
676 unsigned int egr_sz;
677 unsigned int ingr_start;
678 unsigned int ingr_sz;
679 void **egr_map; /* qid->queue egress queue map */
680 struct sge_rspq **ingr_map; /* qid->queue ingress queue map */
681 unsigned long *starving_fl;
682 unsigned long *txq_maperr;
683 unsigned long *blocked_fl;
684 struct timer_list rx_timer; /* refills starving FLs */
685 struct timer_list tx_timer; /* checks Tx queues */
686 };
687
688 #define for_each_ethrxq(sge, i) for (i = 0; i < (sge)->ethqsets; i++)
689 #define for_each_iscsirxq(sge, i) for (i = 0; i < (sge)->iscsiqsets; i++)
690 #define for_each_iscsitrxq(sge, i) for (i = 0; i < (sge)->niscsitq; i++)
691 #define for_each_rdmarxq(sge, i) for (i = 0; i < (sge)->rdmaqs; i++)
692 #define for_each_rdmaciq(sge, i) for (i = 0; i < (sge)->rdmaciqs; i++)
693
694 struct l2t_data;
695
696 #ifdef CONFIG_PCI_IOV
697
698 /* T4 supports SRIOV on PF0-3 and T5 on PF0-7. However, the Serial
699 * Configuration initialization for T5 only has SR-IOV functionality enabled
700 * on PF0-3 in order to simplify everything.
701 */
702 #define NUM_OF_PF_WITH_SRIOV 4
703
704 #endif
705
706 struct doorbell_stats {
707 u32 db_drop;
708 u32 db_empty;
709 u32 db_full;
710 };
711
712 struct adapter {
713 void __iomem *regs;
714 void __iomem *bar2;
715 u32 t4_bar0;
716 struct pci_dev *pdev;
717 struct device *pdev_dev;
718 unsigned int mbox;
719 unsigned int pf;
720 unsigned int flags;
721 enum chip_type chip;
722
723 int msg_enable;
724
725 struct adapter_params params;
726 struct cxgb4_virt_res vres;
727 unsigned int swintr;
728
729 struct {
730 unsigned short vec;
731 char desc[IFNAMSIZ + 10];
732 } msix_info[MAX_INGQ + 1];
733
734 struct doorbell_stats db_stats;
735 struct sge sge;
736
737 struct net_device *port[MAX_NPORTS];
738 u8 chan_map[NCHAN]; /* channel -> port map */
739
740 u32 filter_mode;
741 unsigned int l2t_start;
742 unsigned int l2t_end;
743 struct l2t_data *l2t;
744 unsigned int clipt_start;
745 unsigned int clipt_end;
746 struct clip_tbl *clipt;
747 void *uld_handle[CXGB4_ULD_MAX];
748 struct list_head list_node;
749 struct list_head rcu_node;
750
751 struct tid_info tids;
752 void **tid_release_head;
753 spinlock_t tid_release_lock;
754 struct workqueue_struct *workq;
755 struct work_struct tid_release_task;
756 struct work_struct db_full_task;
757 struct work_struct db_drop_task;
758 bool tid_release_task_busy;
759
760 struct dentry *debugfs_root;
761 bool use_bd; /* Use SGE Back Door intfc for reading SGE Contexts */
762 bool trace_rss; /* 1 implies that different RSS flit per filter is
763 * used per filter else if 0 default RSS flit is
764 * used for all 4 filters.
765 */
766
767 spinlock_t stats_lock;
768 spinlock_t win0_lock ____cacheline_aligned_in_smp;
769 };
770
771 /* Defined bit width of user definable filter tuples
772 */
773 #define ETHTYPE_BITWIDTH 16
774 #define FRAG_BITWIDTH 1
775 #define MACIDX_BITWIDTH 9
776 #define FCOE_BITWIDTH 1
777 #define IPORT_BITWIDTH 3
778 #define MATCHTYPE_BITWIDTH 3
779 #define PROTO_BITWIDTH 8
780 #define TOS_BITWIDTH 8
781 #define PF_BITWIDTH 8
782 #define VF_BITWIDTH 8
783 #define IVLAN_BITWIDTH 16
784 #define OVLAN_BITWIDTH 16
785
786 /* Filter matching rules. These consist of a set of ingress packet field
787 * (value, mask) tuples. The associated ingress packet field matches the
788 * tuple when ((field & mask) == value). (Thus a wildcard "don't care" field
789 * rule can be constructed by specifying a tuple of (0, 0).) A filter rule
790 * matches an ingress packet when all of the individual individual field
791 * matching rules are true.
792 *
793 * Partial field masks are always valid, however, while it may be easy to
794 * understand their meanings for some fields (e.g. IP address to match a
795 * subnet), for others making sensible partial masks is less intuitive (e.g.
796 * MPS match type) ...
797 *
798 * Most of the following data structures are modeled on T4 capabilities.
799 * Drivers for earlier chips use the subsets which make sense for those chips.
800 * We really need to come up with a hardware-independent mechanism to
801 * represent hardware filter capabilities ...
802 */
803 struct ch_filter_tuple {
804 /* Compressed header matching field rules. The TP_VLAN_PRI_MAP
805 * register selects which of these fields will participate in the
806 * filter match rules -- up to a maximum of 36 bits. Because
807 * TP_VLAN_PRI_MAP is a global register, all filters must use the same
808 * set of fields.
809 */
810 uint32_t ethtype:ETHTYPE_BITWIDTH; /* Ethernet type */
811 uint32_t frag:FRAG_BITWIDTH; /* IP fragmentation header */
812 uint32_t ivlan_vld:1; /* inner VLAN valid */
813 uint32_t ovlan_vld:1; /* outer VLAN valid */
814 uint32_t pfvf_vld:1; /* PF/VF valid */
815 uint32_t macidx:MACIDX_BITWIDTH; /* exact match MAC index */
816 uint32_t fcoe:FCOE_BITWIDTH; /* FCoE packet */
817 uint32_t iport:IPORT_BITWIDTH; /* ingress port */
818 uint32_t matchtype:MATCHTYPE_BITWIDTH; /* MPS match type */
819 uint32_t proto:PROTO_BITWIDTH; /* protocol type */
820 uint32_t tos:TOS_BITWIDTH; /* TOS/Traffic Type */
821 uint32_t pf:PF_BITWIDTH; /* PCI-E PF ID */
822 uint32_t vf:VF_BITWIDTH; /* PCI-E VF ID */
823 uint32_t ivlan:IVLAN_BITWIDTH; /* inner VLAN */
824 uint32_t ovlan:OVLAN_BITWIDTH; /* outer VLAN */
825
826 /* Uncompressed header matching field rules. These are always
827 * available for field rules.
828 */
829 uint8_t lip[16]; /* local IP address (IPv4 in [3:0]) */
830 uint8_t fip[16]; /* foreign IP address (IPv4 in [3:0]) */
831 uint16_t lport; /* local port */
832 uint16_t fport; /* foreign port */
833 };
834
835 /* A filter ioctl command.
836 */
837 struct ch_filter_specification {
838 /* Administrative fields for filter.
839 */
840 uint32_t hitcnts:1; /* count filter hits in TCB */
841 uint32_t prio:1; /* filter has priority over active/server */
842
843 /* Fundamental filter typing. This is the one element of filter
844 * matching that doesn't exist as a (value, mask) tuple.
845 */
846 uint32_t type:1; /* 0 => IPv4, 1 => IPv6 */
847
848 /* Packet dispatch information. Ingress packets which match the
849 * filter rules will be dropped, passed to the host or switched back
850 * out as egress packets.
851 */
852 uint32_t action:2; /* drop, pass, switch */
853
854 uint32_t rpttid:1; /* report TID in RSS hash field */
855
856 uint32_t dirsteer:1; /* 0 => RSS, 1 => steer to iq */
857 uint32_t iq:10; /* ingress queue */
858
859 uint32_t maskhash:1; /* dirsteer=0: store RSS hash in TCB */
860 uint32_t dirsteerhash:1;/* dirsteer=1: 0 => TCB contains RSS hash */
861 /* 1 => TCB contains IQ ID */
862
863 /* Switch proxy/rewrite fields. An ingress packet which matches a
864 * filter with "switch" set will be looped back out as an egress
865 * packet -- potentially with some Ethernet header rewriting.
866 */
867 uint32_t eport:2; /* egress port to switch packet out */
868 uint32_t newdmac:1; /* rewrite destination MAC address */
869 uint32_t newsmac:1; /* rewrite source MAC address */
870 uint32_t newvlan:2; /* rewrite VLAN Tag */
871 uint8_t dmac[ETH_ALEN]; /* new destination MAC address */
872 uint8_t smac[ETH_ALEN]; /* new source MAC address */
873 uint16_t vlan; /* VLAN Tag to insert */
874
875 /* Filter rule value/mask pairs.
876 */
877 struct ch_filter_tuple val;
878 struct ch_filter_tuple mask;
879 };
880
881 enum {
882 FILTER_PASS = 0, /* default */
883 FILTER_DROP,
884 FILTER_SWITCH
885 };
886
887 enum {
888 VLAN_NOCHANGE = 0, /* default */
889 VLAN_REMOVE,
890 VLAN_INSERT,
891 VLAN_REWRITE
892 };
893
894 static inline int is_offload(const struct adapter *adap)
895 {
896 return adap->params.offload;
897 }
898
899 static inline u32 t4_read_reg(struct adapter *adap, u32 reg_addr)
900 {
901 return readl(adap->regs + reg_addr);
902 }
903
904 static inline void t4_write_reg(struct adapter *adap, u32 reg_addr, u32 val)
905 {
906 writel(val, adap->regs + reg_addr);
907 }
908
909 #ifndef readq
910 static inline u64 readq(const volatile void __iomem *addr)
911 {
912 return readl(addr) + ((u64)readl(addr + 4) << 32);
913 }
914
915 static inline void writeq(u64 val, volatile void __iomem *addr)
916 {
917 writel(val, addr);
918 writel(val >> 32, addr + 4);
919 }
920 #endif
921
922 static inline u64 t4_read_reg64(struct adapter *adap, u32 reg_addr)
923 {
924 return readq(adap->regs + reg_addr);
925 }
926
927 static inline void t4_write_reg64(struct adapter *adap, u32 reg_addr, u64 val)
928 {
929 writeq(val, adap->regs + reg_addr);
930 }
931
932 /**
933 * t4_set_hw_addr - store a port's MAC address in SW
934 * @adapter: the adapter
935 * @port_idx: the port index
936 * @hw_addr: the Ethernet address
937 *
938 * Store the Ethernet address of the given port in SW. Called by the common
939 * code when it retrieves a port's Ethernet address from EEPROM.
940 */
941 static inline void t4_set_hw_addr(struct adapter *adapter, int port_idx,
942 u8 hw_addr[])
943 {
944 ether_addr_copy(adapter->port[port_idx]->dev_addr, hw_addr);
945 ether_addr_copy(adapter->port[port_idx]->perm_addr, hw_addr);
946 }
947
948 /**
949 * netdev2pinfo - return the port_info structure associated with a net_device
950 * @dev: the netdev
951 *
952 * Return the struct port_info associated with a net_device
953 */
954 static inline struct port_info *netdev2pinfo(const struct net_device *dev)
955 {
956 return netdev_priv(dev);
957 }
958
959 /**
960 * adap2pinfo - return the port_info of a port
961 * @adap: the adapter
962 * @idx: the port index
963 *
964 * Return the port_info structure for the port of the given index.
965 */
966 static inline struct port_info *adap2pinfo(struct adapter *adap, int idx)
967 {
968 return netdev_priv(adap->port[idx]);
969 }
970
971 /**
972 * netdev2adap - return the adapter structure associated with a net_device
973 * @dev: the netdev
974 *
975 * Return the struct adapter associated with a net_device
976 */
977 static inline struct adapter *netdev2adap(const struct net_device *dev)
978 {
979 return netdev2pinfo(dev)->adapter;
980 }
981
982 #ifdef CONFIG_NET_RX_BUSY_POLL
983 static inline void cxgb_busy_poll_init_lock(struct sge_rspq *q)
984 {
985 spin_lock_init(&q->bpoll_lock);
986 q->bpoll_state = CXGB_POLL_STATE_IDLE;
987 }
988
989 static inline bool cxgb_poll_lock_napi(struct sge_rspq *q)
990 {
991 bool rc = true;
992
993 spin_lock(&q->bpoll_lock);
994 if (q->bpoll_state & CXGB_POLL_LOCKED) {
995 q->bpoll_state |= CXGB_POLL_STATE_NAPI_YIELD;
996 rc = false;
997 } else {
998 q->bpoll_state = CXGB_POLL_STATE_NAPI;
999 }
1000 spin_unlock(&q->bpoll_lock);
1001 return rc;
1002 }
1003
1004 static inline bool cxgb_poll_unlock_napi(struct sge_rspq *q)
1005 {
1006 bool rc = false;
1007
1008 spin_lock(&q->bpoll_lock);
1009 if (q->bpoll_state & CXGB_POLL_STATE_POLL_YIELD)
1010 rc = true;
1011 q->bpoll_state = CXGB_POLL_STATE_IDLE;
1012 spin_unlock(&q->bpoll_lock);
1013 return rc;
1014 }
1015
1016 static inline bool cxgb_poll_lock_poll(struct sge_rspq *q)
1017 {
1018 bool rc = true;
1019
1020 spin_lock_bh(&q->bpoll_lock);
1021 if (q->bpoll_state & CXGB_POLL_LOCKED) {
1022 q->bpoll_state |= CXGB_POLL_STATE_POLL_YIELD;
1023 rc = false;
1024 } else {
1025 q->bpoll_state |= CXGB_POLL_STATE_POLL;
1026 }
1027 spin_unlock_bh(&q->bpoll_lock);
1028 return rc;
1029 }
1030
1031 static inline bool cxgb_poll_unlock_poll(struct sge_rspq *q)
1032 {
1033 bool rc = false;
1034
1035 spin_lock_bh(&q->bpoll_lock);
1036 if (q->bpoll_state & CXGB_POLL_STATE_POLL_YIELD)
1037 rc = true;
1038 q->bpoll_state = CXGB_POLL_STATE_IDLE;
1039 spin_unlock_bh(&q->bpoll_lock);
1040 return rc;
1041 }
1042
1043 static inline bool cxgb_poll_busy_polling(struct sge_rspq *q)
1044 {
1045 return q->bpoll_state & CXGB_POLL_USER_PEND;
1046 }
1047 #else
1048 static inline void cxgb_busy_poll_init_lock(struct sge_rspq *q)
1049 {
1050 }
1051
1052 static inline bool cxgb_poll_lock_napi(struct sge_rspq *q)
1053 {
1054 return true;
1055 }
1056
1057 static inline bool cxgb_poll_unlock_napi(struct sge_rspq *q)
1058 {
1059 return false;
1060 }
1061
1062 static inline bool cxgb_poll_lock_poll(struct sge_rspq *q)
1063 {
1064 return false;
1065 }
1066
1067 static inline bool cxgb_poll_unlock_poll(struct sge_rspq *q)
1068 {
1069 return false;
1070 }
1071
1072 static inline bool cxgb_poll_busy_polling(struct sge_rspq *q)
1073 {
1074 return false;
1075 }
1076 #endif /* CONFIG_NET_RX_BUSY_POLL */
1077
1078 /* Return a version number to identify the type of adapter. The scheme is:
1079 * - bits 0..9: chip version
1080 * - bits 10..15: chip revision
1081 * - bits 16..23: register dump version
1082 */
1083 static inline unsigned int mk_adap_vers(struct adapter *ap)
1084 {
1085 return CHELSIO_CHIP_VERSION(ap->params.chip) |
1086 (CHELSIO_CHIP_RELEASE(ap->params.chip) << 10) | (1 << 16);
1087 }
1088
1089 /* Return a queue's interrupt hold-off time in us. 0 means no timer. */
1090 static inline unsigned int qtimer_val(const struct adapter *adap,
1091 const struct sge_rspq *q)
1092 {
1093 unsigned int idx = q->intr_params >> 1;
1094
1095 return idx < SGE_NTIMERS ? adap->sge.timer_val[idx] : 0;
1096 }
1097
1098 /* driver version & name used for ethtool_drvinfo */
1099 extern char cxgb4_driver_name[];
1100 extern const char cxgb4_driver_version[];
1101
1102 void t4_os_portmod_changed(const struct adapter *adap, int port_id);
1103 void t4_os_link_changed(struct adapter *adap, int port_id, int link_stat);
1104
1105 void *t4_alloc_mem(size_t size);
1106
1107 void t4_free_sge_resources(struct adapter *adap);
1108 void t4_free_ofld_rxqs(struct adapter *adap, int n, struct sge_ofld_rxq *q);
1109 irq_handler_t t4_intr_handler(struct adapter *adap);
1110 netdev_tx_t t4_eth_xmit(struct sk_buff *skb, struct net_device *dev);
1111 int t4_ethrx_handler(struct sge_rspq *q, const __be64 *rsp,
1112 const struct pkt_gl *gl);
1113 int t4_mgmt_tx(struct adapter *adap, struct sk_buff *skb);
1114 int t4_ofld_send(struct adapter *adap, struct sk_buff *skb);
1115 int t4_sge_alloc_rxq(struct adapter *adap, struct sge_rspq *iq, bool fwevtq,
1116 struct net_device *dev, int intr_idx,
1117 struct sge_fl *fl, rspq_handler_t hnd, int cong);
1118 int t4_sge_alloc_eth_txq(struct adapter *adap, struct sge_eth_txq *txq,
1119 struct net_device *dev, struct netdev_queue *netdevq,
1120 unsigned int iqid);
1121 int t4_sge_alloc_ctrl_txq(struct adapter *adap, struct sge_ctrl_txq *txq,
1122 struct net_device *dev, unsigned int iqid,
1123 unsigned int cmplqid);
1124 int t4_sge_alloc_ofld_txq(struct adapter *adap, struct sge_ofld_txq *txq,
1125 struct net_device *dev, unsigned int iqid);
1126 irqreturn_t t4_sge_intr_msix(int irq, void *cookie);
1127 int t4_sge_init(struct adapter *adap);
1128 void t4_sge_start(struct adapter *adap);
1129 void t4_sge_stop(struct adapter *adap);
1130 int cxgb_busy_poll(struct napi_struct *napi);
1131 int cxgb4_set_rspq_intr_params(struct sge_rspq *q, unsigned int us,
1132 unsigned int cnt);
1133 void cxgb4_set_ethtool_ops(struct net_device *netdev);
1134 int cxgb4_write_rss(const struct port_info *pi, const u16 *queues);
1135 extern int dbfifo_int_thresh;
1136
1137 #define for_each_port(adapter, iter) \
1138 for (iter = 0; iter < (adapter)->params.nports; ++iter)
1139
1140 static inline int is_bypass(struct adapter *adap)
1141 {
1142 return adap->params.bypass;
1143 }
1144
1145 static inline int is_bypass_device(int device)
1146 {
1147 /* this should be set based upon device capabilities */
1148 switch (device) {
1149 case 0x440b:
1150 case 0x440c:
1151 return 1;
1152 default:
1153 return 0;
1154 }
1155 }
1156
1157 static inline int is_10gbt_device(int device)
1158 {
1159 /* this should be set based upon device capabilities */
1160 switch (device) {
1161 case 0x4409:
1162 case 0x4486:
1163 return 1;
1164
1165 default:
1166 return 0;
1167 }
1168 }
1169
1170 static inline unsigned int core_ticks_per_usec(const struct adapter *adap)
1171 {
1172 return adap->params.vpd.cclk / 1000;
1173 }
1174
1175 static inline unsigned int us_to_core_ticks(const struct adapter *adap,
1176 unsigned int us)
1177 {
1178 return (us * adap->params.vpd.cclk) / 1000;
1179 }
1180
1181 static inline unsigned int core_ticks_to_us(const struct adapter *adapter,
1182 unsigned int ticks)
1183 {
1184 /* add Core Clock / 2 to round ticks to nearest uS */
1185 return ((ticks * 1000 + adapter->params.vpd.cclk/2) /
1186 adapter->params.vpd.cclk);
1187 }
1188
1189 void t4_set_reg_field(struct adapter *adap, unsigned int addr, u32 mask,
1190 u32 val);
1191
1192 int t4_wr_mbox_meat_timeout(struct adapter *adap, int mbox, const void *cmd,
1193 int size, void *rpl, bool sleep_ok, int timeout);
1194 int t4_wr_mbox_meat(struct adapter *adap, int mbox, const void *cmd, int size,
1195 void *rpl, bool sleep_ok);
1196
1197 static inline int t4_wr_mbox_timeout(struct adapter *adap, int mbox,
1198 const void *cmd, int size, void *rpl,
1199 int timeout)
1200 {
1201 return t4_wr_mbox_meat_timeout(adap, mbox, cmd, size, rpl, true,
1202 timeout);
1203 }
1204
1205 static inline int t4_wr_mbox(struct adapter *adap, int mbox, const void *cmd,
1206 int size, void *rpl)
1207 {
1208 return t4_wr_mbox_meat(adap, mbox, cmd, size, rpl, true);
1209 }
1210
1211 static inline int t4_wr_mbox_ns(struct adapter *adap, int mbox, const void *cmd,
1212 int size, void *rpl)
1213 {
1214 return t4_wr_mbox_meat(adap, mbox, cmd, size, rpl, false);
1215 }
1216
1217 void t4_write_indirect(struct adapter *adap, unsigned int addr_reg,
1218 unsigned int data_reg, const u32 *vals,
1219 unsigned int nregs, unsigned int start_idx);
1220 void t4_read_indirect(struct adapter *adap, unsigned int addr_reg,
1221 unsigned int data_reg, u32 *vals, unsigned int nregs,
1222 unsigned int start_idx);
1223 void t4_hw_pci_read_cfg4(struct adapter *adapter, int reg, u32 *val);
1224
1225 struct fw_filter_wr;
1226
1227 void t4_intr_enable(struct adapter *adapter);
1228 void t4_intr_disable(struct adapter *adapter);
1229 int t4_slow_intr_handler(struct adapter *adapter);
1230
1231 int t4_wait_dev_ready(void __iomem *regs);
1232 int t4_link_l1cfg(struct adapter *adap, unsigned int mbox, unsigned int port,
1233 struct link_config *lc);
1234 int t4_restart_aneg(struct adapter *adap, unsigned int mbox, unsigned int port);
1235
1236 u32 t4_read_pcie_cfg4(struct adapter *adap, int reg);
1237 u32 t4_get_util_window(struct adapter *adap);
1238 void t4_setup_memwin(struct adapter *adap, u32 memwin_base, u32 window);
1239
1240 #define T4_MEMORY_WRITE 0
1241 #define T4_MEMORY_READ 1
1242 int t4_memory_rw(struct adapter *adap, int win, int mtype, u32 addr, u32 len,
1243 void *buf, int dir);
1244 static inline int t4_memory_write(struct adapter *adap, int mtype, u32 addr,
1245 u32 len, __be32 *buf)
1246 {
1247 return t4_memory_rw(adap, 0, mtype, addr, len, buf, 0);
1248 }
1249
1250 unsigned int t4_get_regs_len(struct adapter *adapter);
1251 void t4_get_regs(struct adapter *adap, void *buf, size_t buf_size);
1252
1253 int t4_seeprom_wp(struct adapter *adapter, bool enable);
1254 int t4_get_raw_vpd_params(struct adapter *adapter, struct vpd_params *p);
1255 int t4_get_vpd_params(struct adapter *adapter, struct vpd_params *p);
1256 int t4_read_flash(struct adapter *adapter, unsigned int addr,
1257 unsigned int nwords, u32 *data, int byte_oriented);
1258 int t4_load_fw(struct adapter *adapter, const u8 *fw_data, unsigned int size);
1259 int t4_load_phy_fw(struct adapter *adap,
1260 int win, spinlock_t *lock,
1261 int (*phy_fw_version)(const u8 *, size_t),
1262 const u8 *phy_fw_data, size_t phy_fw_size);
1263 int t4_phy_fw_ver(struct adapter *adap, int *phy_fw_ver);
1264 int t4_fwcache(struct adapter *adap, enum fw_params_param_dev_fwcache op);
1265 int t4_fw_upgrade(struct adapter *adap, unsigned int mbox,
1266 const u8 *fw_data, unsigned int size, int force);
1267 int t4_fl_pkt_align(struct adapter *adap);
1268 unsigned int t4_flash_cfg_addr(struct adapter *adapter);
1269 int t4_check_fw_version(struct adapter *adap);
1270 int t4_get_fw_version(struct adapter *adapter, u32 *vers);
1271 int t4_get_tp_version(struct adapter *adapter, u32 *vers);
1272 int t4_get_exprom_version(struct adapter *adapter, u32 *vers);
1273 int t4_prep_fw(struct adapter *adap, struct fw_info *fw_info,
1274 const u8 *fw_data, unsigned int fw_size,
1275 struct fw_hdr *card_fw, enum dev_state state, int *reset);
1276 int t4_prep_adapter(struct adapter *adapter);
1277
1278 enum t4_bar2_qtype { T4_BAR2_QTYPE_EGRESS, T4_BAR2_QTYPE_INGRESS };
1279 int t4_bar2_sge_qregs(struct adapter *adapter,
1280 unsigned int qid,
1281 enum t4_bar2_qtype qtype,
1282 int user,
1283 u64 *pbar2_qoffset,
1284 unsigned int *pbar2_qid);
1285
1286 unsigned int qtimer_val(const struct adapter *adap,
1287 const struct sge_rspq *q);
1288
1289 int t4_init_devlog_params(struct adapter *adapter);
1290 int t4_init_sge_params(struct adapter *adapter);
1291 int t4_init_tp_params(struct adapter *adap);
1292 int t4_filter_field_shift(const struct adapter *adap, int filter_sel);
1293 int t4_init_rss_mode(struct adapter *adap, int mbox);
1294 int t4_port_init(struct adapter *adap, int mbox, int pf, int vf);
1295 void t4_fatal_err(struct adapter *adapter);
1296 int t4_config_rss_range(struct adapter *adapter, int mbox, unsigned int viid,
1297 int start, int n, const u16 *rspq, unsigned int nrspq);
1298 int t4_config_glbl_rss(struct adapter *adapter, int mbox, unsigned int mode,
1299 unsigned int flags);
1300 int t4_config_vi_rss(struct adapter *adapter, int mbox, unsigned int viid,
1301 unsigned int flags, unsigned int defq);
1302 int t4_read_rss(struct adapter *adapter, u16 *entries);
1303 void t4_read_rss_key(struct adapter *adapter, u32 *key);
1304 void t4_write_rss_key(struct adapter *adap, const u32 *key, int idx);
1305 void t4_read_rss_pf_config(struct adapter *adapter, unsigned int index,
1306 u32 *valp);
1307 void t4_read_rss_vf_config(struct adapter *adapter, unsigned int index,
1308 u32 *vfl, u32 *vfh);
1309 u32 t4_read_rss_pf_map(struct adapter *adapter);
1310 u32 t4_read_rss_pf_mask(struct adapter *adapter);
1311
1312 unsigned int t4_get_mps_bg_map(struct adapter *adapter, int idx);
1313 void t4_pmtx_get_stats(struct adapter *adap, u32 cnt[], u64 cycles[]);
1314 void t4_pmrx_get_stats(struct adapter *adap, u32 cnt[], u64 cycles[]);
1315 int t4_read_cim_ibq(struct adapter *adap, unsigned int qid, u32 *data,
1316 size_t n);
1317 int t4_read_cim_obq(struct adapter *adap, unsigned int qid, u32 *data,
1318 size_t n);
1319 int t4_cim_read(struct adapter *adap, unsigned int addr, unsigned int n,
1320 unsigned int *valp);
1321 int t4_cim_write(struct adapter *adap, unsigned int addr, unsigned int n,
1322 const unsigned int *valp);
1323 int t4_cim_read_la(struct adapter *adap, u32 *la_buf, unsigned int *wrptr);
1324 void t4_cim_read_pif_la(struct adapter *adap, u32 *pif_req, u32 *pif_rsp,
1325 unsigned int *pif_req_wrptr,
1326 unsigned int *pif_rsp_wrptr);
1327 void t4_cim_read_ma_la(struct adapter *adap, u32 *ma_req, u32 *ma_rsp);
1328 void t4_read_cimq_cfg(struct adapter *adap, u16 *base, u16 *size, u16 *thres);
1329 const char *t4_get_port_type_description(enum fw_port_type port_type);
1330 void t4_get_port_stats(struct adapter *adap, int idx, struct port_stats *p);
1331 void t4_get_port_stats_offset(struct adapter *adap, int idx,
1332 struct port_stats *stats,
1333 struct port_stats *offset);
1334 void t4_get_lb_stats(struct adapter *adap, int idx, struct lb_port_stats *p);
1335 void t4_read_mtu_tbl(struct adapter *adap, u16 *mtus, u8 *mtu_log);
1336 void t4_read_cong_tbl(struct adapter *adap, u16 incr[NMTUS][NCCTRL_WIN]);
1337 void t4_tp_wr_bits_indirect(struct adapter *adap, unsigned int addr,
1338 unsigned int mask, unsigned int val);
1339 void t4_tp_read_la(struct adapter *adap, u64 *la_buf, unsigned int *wrptr);
1340 void t4_tp_get_err_stats(struct adapter *adap, struct tp_err_stats *st);
1341 void t4_tp_get_cpl_stats(struct adapter *adap, struct tp_cpl_stats *st);
1342 void t4_tp_get_rdma_stats(struct adapter *adap, struct tp_rdma_stats *st);
1343 void t4_get_usm_stats(struct adapter *adap, struct tp_usm_stats *st);
1344 void t4_tp_get_tcp_stats(struct adapter *adap, struct tp_tcp_stats *v4,
1345 struct tp_tcp_stats *v6);
1346 void t4_get_fcoe_stats(struct adapter *adap, unsigned int idx,
1347 struct tp_fcoe_stats *st);
1348 void t4_load_mtus(struct adapter *adap, const unsigned short *mtus,
1349 const unsigned short *alpha, const unsigned short *beta);
1350
1351 void t4_ulprx_read_la(struct adapter *adap, u32 *la_buf);
1352
1353 void t4_get_chan_txrate(struct adapter *adap, u64 *nic_rate, u64 *ofld_rate);
1354 void t4_mk_filtdelwr(unsigned int ftid, struct fw_filter_wr *wr, int qid);
1355
1356 void t4_wol_magic_enable(struct adapter *adap, unsigned int port,
1357 const u8 *addr);
1358 int t4_wol_pat_enable(struct adapter *adap, unsigned int port, unsigned int map,
1359 u64 mask0, u64 mask1, unsigned int crc, bool enable);
1360
1361 int t4_fw_hello(struct adapter *adap, unsigned int mbox, unsigned int evt_mbox,
1362 enum dev_master master, enum dev_state *state);
1363 int t4_fw_bye(struct adapter *adap, unsigned int mbox);
1364 int t4_early_init(struct adapter *adap, unsigned int mbox);
1365 int t4_fw_reset(struct adapter *adap, unsigned int mbox, int reset);
1366 int t4_fixup_host_params(struct adapter *adap, unsigned int page_size,
1367 unsigned int cache_line_size);
1368 int t4_fw_initialize(struct adapter *adap, unsigned int mbox);
1369 int t4_query_params(struct adapter *adap, unsigned int mbox, unsigned int pf,
1370 unsigned int vf, unsigned int nparams, const u32 *params,
1371 u32 *val);
1372 int t4_query_params_rw(struct adapter *adap, unsigned int mbox, unsigned int pf,
1373 unsigned int vf, unsigned int nparams, const u32 *params,
1374 u32 *val, int rw);
1375 int t4_set_params_timeout(struct adapter *adap, unsigned int mbox,
1376 unsigned int pf, unsigned int vf,
1377 unsigned int nparams, const u32 *params,
1378 const u32 *val, int timeout);
1379 int t4_set_params(struct adapter *adap, unsigned int mbox, unsigned int pf,
1380 unsigned int vf, unsigned int nparams, const u32 *params,
1381 const u32 *val);
1382 int t4_cfg_pfvf(struct adapter *adap, unsigned int mbox, unsigned int pf,
1383 unsigned int vf, unsigned int txq, unsigned int txq_eth_ctrl,
1384 unsigned int rxqi, unsigned int rxq, unsigned int tc,
1385 unsigned int vi, unsigned int cmask, unsigned int pmask,
1386 unsigned int nexact, unsigned int rcaps, unsigned int wxcaps);
1387 int t4_alloc_vi(struct adapter *adap, unsigned int mbox, unsigned int port,
1388 unsigned int pf, unsigned int vf, unsigned int nmac, u8 *mac,
1389 unsigned int *rss_size);
1390 int t4_free_vi(struct adapter *adap, unsigned int mbox,
1391 unsigned int pf, unsigned int vf,
1392 unsigned int viid);
1393 int t4_set_rxmode(struct adapter *adap, unsigned int mbox, unsigned int viid,
1394 int mtu, int promisc, int all_multi, int bcast, int vlanex,
1395 bool sleep_ok);
1396 int t4_alloc_mac_filt(struct adapter *adap, unsigned int mbox,
1397 unsigned int viid, bool free, unsigned int naddr,
1398 const u8 **addr, u16 *idx, u64 *hash, bool sleep_ok);
1399 int t4_change_mac(struct adapter *adap, unsigned int mbox, unsigned int viid,
1400 int idx, const u8 *addr, bool persist, bool add_smt);
1401 int t4_set_addr_hash(struct adapter *adap, unsigned int mbox, unsigned int viid,
1402 bool ucast, u64 vec, bool sleep_ok);
1403 int t4_enable_vi_params(struct adapter *adap, unsigned int mbox,
1404 unsigned int viid, bool rx_en, bool tx_en, bool dcb_en);
1405 int t4_enable_vi(struct adapter *adap, unsigned int mbox, unsigned int viid,
1406 bool rx_en, bool tx_en);
1407 int t4_identify_port(struct adapter *adap, unsigned int mbox, unsigned int viid,
1408 unsigned int nblinks);
1409 int t4_mdio_rd(struct adapter *adap, unsigned int mbox, unsigned int phy_addr,
1410 unsigned int mmd, unsigned int reg, u16 *valp);
1411 int t4_mdio_wr(struct adapter *adap, unsigned int mbox, unsigned int phy_addr,
1412 unsigned int mmd, unsigned int reg, u16 val);
1413 int t4_iq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
1414 unsigned int vf, unsigned int iqtype, unsigned int iqid,
1415 unsigned int fl0id, unsigned int fl1id);
1416 int t4_eth_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
1417 unsigned int vf, unsigned int eqid);
1418 int t4_ctrl_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
1419 unsigned int vf, unsigned int eqid);
1420 int t4_ofld_eq_free(struct adapter *adap, unsigned int mbox, unsigned int pf,
1421 unsigned int vf, unsigned int eqid);
1422 int t4_sge_ctxt_flush(struct adapter *adap, unsigned int mbox);
1423 int t4_handle_fw_rpl(struct adapter *adap, const __be64 *rpl);
1424 void t4_db_full(struct adapter *adapter);
1425 void t4_db_dropped(struct adapter *adapter);
1426 int t4_set_trace_filter(struct adapter *adapter, const struct trace_params *tp,
1427 int filter_index, int enable);
1428 void t4_get_trace_filter(struct adapter *adapter, struct trace_params *tp,
1429 int filter_index, int *enabled);
1430 int t4_fwaddrspace_write(struct adapter *adap, unsigned int mbox,
1431 u32 addr, u32 val);
1432 void t4_sge_decode_idma_state(struct adapter *adapter, int state);
1433 void t4_free_mem(void *addr);
1434 void t4_idma_monitor_init(struct adapter *adapter,
1435 struct sge_idma_monitor_state *idma);
1436 void t4_idma_monitor(struct adapter *adapter,
1437 struct sge_idma_monitor_state *idma,
1438 int hz, int ticks);
1439 #endif /* __CXGB4_H__ */
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