Linux kernel mirror (for testing)
git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
kernel
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linux
1/*
2 * Copyright (c) 2006, 2007 Cisco Systems, Inc. All rights reserved.
3 *
4 * This software is available to you under a choice of one of two
5 * licenses. You may choose to be licensed under the terms of the GNU
6 * General Public License (GPL) Version 2, available from the file
7 * COPYING in the main directory of this source tree, or the
8 * OpenIB.org BSD license below:
9 *
10 * Redistribution and use in source and binary forms, with or
11 * without modification, are permitted provided that the following
12 * conditions are met:
13 *
14 * - Redistributions of source code must retain the above
15 * copyright notice, this list of conditions and the following
16 * disclaimer.
17 *
18 * - Redistributions in binary form must reproduce the above
19 * copyright notice, this list of conditions and the following
20 * disclaimer in the documentation and/or other materials
21 * provided with the distribution.
22 *
23 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
24 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
25 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
26 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
27 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
28 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
29 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
30 * SOFTWARE.
31 */
32
33#ifndef MLX4_DEVICE_H
34#define MLX4_DEVICE_H
35
36#include <linux/if_ether.h>
37#include <linux/pci.h>
38#include <linux/completion.h>
39#include <linux/radix-tree.h>
40#include <linux/cpu_rmap.h>
41#include <linux/crash_dump.h>
42
43#include <linux/atomic.h>
44
45#include <linux/timecounter.h>
46
47#define DEFAULT_UAR_PAGE_SHIFT 12
48
49#define MAX_MSIX_P_PORT 17
50#define MAX_MSIX 64
51#define MIN_MSIX_P_PORT 5
52#define MLX4_IS_LEGACY_EQ_MODE(dev_cap) ((dev_cap).num_comp_vectors < \
53 (dev_cap).num_ports * MIN_MSIX_P_PORT)
54
55#define MLX4_MAX_100M_UNITS_VAL 255 /*
56 * work around: can't set values
57 * greater then this value when
58 * using 100 Mbps units.
59 */
60#define MLX4_RATELIMIT_100M_UNITS 3 /* 100 Mbps */
61#define MLX4_RATELIMIT_1G_UNITS 4 /* 1 Gbps */
62#define MLX4_RATELIMIT_DEFAULT 0x00ff
63
64#define MLX4_ROCE_MAX_GIDS 128
65#define MLX4_ROCE_PF_GIDS 16
66
67enum {
68 MLX4_FLAG_MSI_X = 1 << 0,
69 MLX4_FLAG_OLD_PORT_CMDS = 1 << 1,
70 MLX4_FLAG_MASTER = 1 << 2,
71 MLX4_FLAG_SLAVE = 1 << 3,
72 MLX4_FLAG_SRIOV = 1 << 4,
73 MLX4_FLAG_OLD_REG_MAC = 1 << 6,
74 MLX4_FLAG_BONDED = 1 << 7,
75 MLX4_FLAG_SECURE_HOST = 1 << 8,
76};
77
78enum {
79 MLX4_PORT_CAP_IS_SM = 1 << 1,
80 MLX4_PORT_CAP_DEV_MGMT_SUP = 1 << 19,
81};
82
83enum {
84 MLX4_MAX_PORTS = 2,
85 MLX4_MAX_PORT_PKEYS = 128,
86 MLX4_MAX_PORT_GIDS = 128
87};
88
89/* base qkey for use in sriov tunnel-qp/proxy-qp communication.
90 * These qkeys must not be allowed for general use. This is a 64k range,
91 * and to test for violation, we use the mask (protect against future chg).
92 */
93#define MLX4_RESERVED_QKEY_BASE (0xFFFF0000)
94#define MLX4_RESERVED_QKEY_MASK (0xFFFF0000)
95
96enum {
97 MLX4_BOARD_ID_LEN = 64
98};
99
100enum {
101 MLX4_MAX_NUM_PF = 16,
102 MLX4_MAX_NUM_VF = 126,
103 MLX4_MAX_NUM_VF_P_PORT = 64,
104 MLX4_MFUNC_MAX = 128,
105 MLX4_MAX_EQ_NUM = 1024,
106 MLX4_MFUNC_EQ_NUM = 4,
107 MLX4_MFUNC_MAX_EQES = 8,
108 MLX4_MFUNC_EQE_MASK = (MLX4_MFUNC_MAX_EQES - 1)
109};
110
111/* Driver supports 3 different device methods to manage traffic steering:
112 * -device managed - High level API for ib and eth flow steering. FW is
113 * managing flow steering tables.
114 * - B0 steering mode - Common low level API for ib and (if supported) eth.
115 * - A0 steering mode - Limited low level API for eth. In case of IB,
116 * B0 mode is in use.
117 */
118enum {
119 MLX4_STEERING_MODE_A0,
120 MLX4_STEERING_MODE_B0,
121 MLX4_STEERING_MODE_DEVICE_MANAGED
122};
123
124enum {
125 MLX4_STEERING_DMFS_A0_DEFAULT,
126 MLX4_STEERING_DMFS_A0_DYNAMIC,
127 MLX4_STEERING_DMFS_A0_STATIC,
128 MLX4_STEERING_DMFS_A0_DISABLE,
129 MLX4_STEERING_DMFS_A0_NOT_SUPPORTED
130};
131
132static inline const char *mlx4_steering_mode_str(int steering_mode)
133{
134 switch (steering_mode) {
135 case MLX4_STEERING_MODE_A0:
136 return "A0 steering";
137
138 case MLX4_STEERING_MODE_B0:
139 return "B0 steering";
140
141 case MLX4_STEERING_MODE_DEVICE_MANAGED:
142 return "Device managed flow steering";
143
144 default:
145 return "Unrecognize steering mode";
146 }
147}
148
149enum {
150 MLX4_TUNNEL_OFFLOAD_MODE_NONE,
151 MLX4_TUNNEL_OFFLOAD_MODE_VXLAN
152};
153
154enum {
155 MLX4_DEV_CAP_FLAG_RC = 1LL << 0,
156 MLX4_DEV_CAP_FLAG_UC = 1LL << 1,
157 MLX4_DEV_CAP_FLAG_UD = 1LL << 2,
158 MLX4_DEV_CAP_FLAG_XRC = 1LL << 3,
159 MLX4_DEV_CAP_FLAG_SRQ = 1LL << 6,
160 MLX4_DEV_CAP_FLAG_IPOIB_CSUM = 1LL << 7,
161 MLX4_DEV_CAP_FLAG_BAD_PKEY_CNTR = 1LL << 8,
162 MLX4_DEV_CAP_FLAG_BAD_QKEY_CNTR = 1LL << 9,
163 MLX4_DEV_CAP_FLAG_DPDP = 1LL << 12,
164 MLX4_DEV_CAP_FLAG_BLH = 1LL << 15,
165 MLX4_DEV_CAP_FLAG_MEM_WINDOW = 1LL << 16,
166 MLX4_DEV_CAP_FLAG_APM = 1LL << 17,
167 MLX4_DEV_CAP_FLAG_ATOMIC = 1LL << 18,
168 MLX4_DEV_CAP_FLAG_RAW_MCAST = 1LL << 19,
169 MLX4_DEV_CAP_FLAG_UD_AV_PORT = 1LL << 20,
170 MLX4_DEV_CAP_FLAG_UD_MCAST = 1LL << 21,
171 MLX4_DEV_CAP_FLAG_IBOE = 1LL << 30,
172 MLX4_DEV_CAP_FLAG_UC_LOOPBACK = 1LL << 32,
173 MLX4_DEV_CAP_FLAG_FCS_KEEP = 1LL << 34,
174 MLX4_DEV_CAP_FLAG_WOL_PORT1 = 1LL << 37,
175 MLX4_DEV_CAP_FLAG_WOL_PORT2 = 1LL << 38,
176 MLX4_DEV_CAP_FLAG_UDP_RSS = 1LL << 40,
177 MLX4_DEV_CAP_FLAG_VEP_UC_STEER = 1LL << 41,
178 MLX4_DEV_CAP_FLAG_VEP_MC_STEER = 1LL << 42,
179 MLX4_DEV_CAP_FLAG_COUNTERS = 1LL << 48,
180 MLX4_DEV_CAP_FLAG_RSS_IP_FRAG = 1LL << 52,
181 MLX4_DEV_CAP_FLAG_SET_ETH_SCHED = 1LL << 53,
182 MLX4_DEV_CAP_FLAG_SENSE_SUPPORT = 1LL << 55,
183 MLX4_DEV_CAP_FLAG_PORT_MNG_CHG_EV = 1LL << 59,
184 MLX4_DEV_CAP_FLAG_64B_EQE = 1LL << 61,
185 MLX4_DEV_CAP_FLAG_64B_CQE = 1LL << 62
186};
187
188enum {
189 MLX4_DEV_CAP_FLAG2_RSS = 1LL << 0,
190 MLX4_DEV_CAP_FLAG2_RSS_TOP = 1LL << 1,
191 MLX4_DEV_CAP_FLAG2_RSS_XOR = 1LL << 2,
192 MLX4_DEV_CAP_FLAG2_FS_EN = 1LL << 3,
193 MLX4_DEV_CAP_FLAG2_REASSIGN_MAC_EN = 1LL << 4,
194 MLX4_DEV_CAP_FLAG2_TS = 1LL << 5,
195 MLX4_DEV_CAP_FLAG2_VLAN_CONTROL = 1LL << 6,
196 MLX4_DEV_CAP_FLAG2_FSM = 1LL << 7,
197 MLX4_DEV_CAP_FLAG2_UPDATE_QP = 1LL << 8,
198 MLX4_DEV_CAP_FLAG2_DMFS_IPOIB = 1LL << 9,
199 MLX4_DEV_CAP_FLAG2_VXLAN_OFFLOADS = 1LL << 10,
200 MLX4_DEV_CAP_FLAG2_MAD_DEMUX = 1LL << 11,
201 MLX4_DEV_CAP_FLAG2_CQE_STRIDE = 1LL << 12,
202 MLX4_DEV_CAP_FLAG2_EQE_STRIDE = 1LL << 13,
203 MLX4_DEV_CAP_FLAG2_ETH_PROT_CTRL = 1LL << 14,
204 MLX4_DEV_CAP_FLAG2_ETH_BACKPL_AN_REP = 1LL << 15,
205 MLX4_DEV_CAP_FLAG2_CONFIG_DEV = 1LL << 16,
206 MLX4_DEV_CAP_FLAG2_SYS_EQS = 1LL << 17,
207 MLX4_DEV_CAP_FLAG2_80_VFS = 1LL << 18,
208 MLX4_DEV_CAP_FLAG2_FS_A0 = 1LL << 19,
209 MLX4_DEV_CAP_FLAG2_RECOVERABLE_ERROR_EVENT = 1LL << 20,
210 MLX4_DEV_CAP_FLAG2_PORT_REMAP = 1LL << 21,
211 MLX4_DEV_CAP_FLAG2_QCN = 1LL << 22,
212 MLX4_DEV_CAP_FLAG2_QP_RATE_LIMIT = 1LL << 23,
213 MLX4_DEV_CAP_FLAG2_FLOWSTATS_EN = 1LL << 24,
214 MLX4_DEV_CAP_FLAG2_QOS_VPP = 1LL << 25,
215 MLX4_DEV_CAP_FLAG2_ETS_CFG = 1LL << 26,
216 MLX4_DEV_CAP_FLAG2_PORT_BEACON = 1LL << 27,
217 MLX4_DEV_CAP_FLAG2_IGNORE_FCS = 1LL << 28,
218 MLX4_DEV_CAP_FLAG2_PHV_EN = 1LL << 29,
219 MLX4_DEV_CAP_FLAG2_SKIP_OUTER_VLAN = 1LL << 30,
220 MLX4_DEV_CAP_FLAG2_UPDATE_QP_SRC_CHECK_LB = 1ULL << 31,
221 MLX4_DEV_CAP_FLAG2_LB_SRC_CHK = 1ULL << 32,
222 MLX4_DEV_CAP_FLAG2_ROCE_V1_V2 = 1ULL << 33,
223 MLX4_DEV_CAP_FLAG2_DMFS_UC_MC_SNIFFER = 1ULL << 34,
224 MLX4_DEV_CAP_FLAG2_DIAG_PER_PORT = 1ULL << 35,
225 MLX4_DEV_CAP_FLAG2_SVLAN_BY_QP = 1ULL << 36,
226 MLX4_DEV_CAP_FLAG2_SL_TO_VL_CHANGE_EVENT = 1ULL << 37,
227};
228
229enum {
230 MLX4_QUERY_FUNC_FLAGS_BF_RES_QP = 1LL << 0,
231 MLX4_QUERY_FUNC_FLAGS_A0_RES_QP = 1LL << 1
232};
233
234enum {
235 MLX4_VF_CAP_FLAG_RESET = 1 << 0
236};
237
238/* bit enums for an 8-bit flags field indicating special use
239 * QPs which require special handling in qp_reserve_range.
240 * Currently, this only includes QPs used by the ETH interface,
241 * where we expect to use blueflame. These QPs must not have
242 * bits 6 and 7 set in their qp number.
243 *
244 * This enum may use only bits 0..7.
245 */
246enum {
247 MLX4_RESERVE_A0_QP = 1 << 6,
248 MLX4_RESERVE_ETH_BF_QP = 1 << 7,
249};
250
251enum {
252 MLX4_DEV_CAP_64B_EQE_ENABLED = 1LL << 0,
253 MLX4_DEV_CAP_64B_CQE_ENABLED = 1LL << 1,
254 MLX4_DEV_CAP_CQE_STRIDE_ENABLED = 1LL << 2,
255 MLX4_DEV_CAP_EQE_STRIDE_ENABLED = 1LL << 3
256};
257
258enum {
259 MLX4_USER_DEV_CAP_LARGE_CQE = 1L << 0
260};
261
262enum {
263 MLX4_FUNC_CAP_64B_EQE_CQE = 1L << 0,
264 MLX4_FUNC_CAP_EQE_CQE_STRIDE = 1L << 1,
265 MLX4_FUNC_CAP_DMFS_A0_STATIC = 1L << 2
266};
267
268
269#define MLX4_ATTR_EXTENDED_PORT_INFO cpu_to_be16(0xff90)
270
271enum {
272 MLX4_BMME_FLAG_WIN_TYPE_2B = 1 << 1,
273 MLX4_BMME_FLAG_LOCAL_INV = 1 << 6,
274 MLX4_BMME_FLAG_REMOTE_INV = 1 << 7,
275 MLX4_BMME_FLAG_TYPE_2_WIN = 1 << 9,
276 MLX4_BMME_FLAG_RESERVED_LKEY = 1 << 10,
277 MLX4_BMME_FLAG_FAST_REG_WR = 1 << 11,
278 MLX4_BMME_FLAG_ROCE_V1_V2 = 1 << 19,
279 MLX4_BMME_FLAG_PORT_REMAP = 1 << 24,
280 MLX4_BMME_FLAG_VSD_INIT2RTR = 1 << 28,
281};
282
283enum {
284 MLX4_FLAG_PORT_REMAP = MLX4_BMME_FLAG_PORT_REMAP,
285 MLX4_FLAG_ROCE_V1_V2 = MLX4_BMME_FLAG_ROCE_V1_V2
286};
287
288enum mlx4_event {
289 MLX4_EVENT_TYPE_COMP = 0x00,
290 MLX4_EVENT_TYPE_PATH_MIG = 0x01,
291 MLX4_EVENT_TYPE_COMM_EST = 0x02,
292 MLX4_EVENT_TYPE_SQ_DRAINED = 0x03,
293 MLX4_EVENT_TYPE_SRQ_QP_LAST_WQE = 0x13,
294 MLX4_EVENT_TYPE_SRQ_LIMIT = 0x14,
295 MLX4_EVENT_TYPE_CQ_ERROR = 0x04,
296 MLX4_EVENT_TYPE_WQ_CATAS_ERROR = 0x05,
297 MLX4_EVENT_TYPE_EEC_CATAS_ERROR = 0x06,
298 MLX4_EVENT_TYPE_PATH_MIG_FAILED = 0x07,
299 MLX4_EVENT_TYPE_WQ_INVAL_REQ_ERROR = 0x10,
300 MLX4_EVENT_TYPE_WQ_ACCESS_ERROR = 0x11,
301 MLX4_EVENT_TYPE_SRQ_CATAS_ERROR = 0x12,
302 MLX4_EVENT_TYPE_LOCAL_CATAS_ERROR = 0x08,
303 MLX4_EVENT_TYPE_PORT_CHANGE = 0x09,
304 MLX4_EVENT_TYPE_EQ_OVERFLOW = 0x0f,
305 MLX4_EVENT_TYPE_ECC_DETECT = 0x0e,
306 MLX4_EVENT_TYPE_CMD = 0x0a,
307 MLX4_EVENT_TYPE_VEP_UPDATE = 0x19,
308 MLX4_EVENT_TYPE_COMM_CHANNEL = 0x18,
309 MLX4_EVENT_TYPE_OP_REQUIRED = 0x1a,
310 MLX4_EVENT_TYPE_FATAL_WARNING = 0x1b,
311 MLX4_EVENT_TYPE_FLR_EVENT = 0x1c,
312 MLX4_EVENT_TYPE_PORT_MNG_CHG_EVENT = 0x1d,
313 MLX4_EVENT_TYPE_RECOVERABLE_ERROR_EVENT = 0x3e,
314 MLX4_EVENT_TYPE_NONE = 0xff,
315};
316
317enum {
318 MLX4_PORT_CHANGE_SUBTYPE_DOWN = 1,
319 MLX4_PORT_CHANGE_SUBTYPE_ACTIVE = 4
320};
321
322enum {
323 MLX4_RECOVERABLE_ERROR_EVENT_SUBTYPE_BAD_CABLE = 1,
324 MLX4_RECOVERABLE_ERROR_EVENT_SUBTYPE_UNSUPPORTED_CABLE = 2,
325};
326
327enum {
328 MLX4_FATAL_WARNING_SUBTYPE_WARMING = 0,
329};
330
331enum slave_port_state {
332 SLAVE_PORT_DOWN = 0,
333 SLAVE_PENDING_UP,
334 SLAVE_PORT_UP,
335};
336
337enum slave_port_gen_event {
338 SLAVE_PORT_GEN_EVENT_DOWN = 0,
339 SLAVE_PORT_GEN_EVENT_UP,
340 SLAVE_PORT_GEN_EVENT_NONE,
341};
342
343enum slave_port_state_event {
344 MLX4_PORT_STATE_DEV_EVENT_PORT_DOWN,
345 MLX4_PORT_STATE_DEV_EVENT_PORT_UP,
346 MLX4_PORT_STATE_IB_PORT_STATE_EVENT_GID_VALID,
347 MLX4_PORT_STATE_IB_EVENT_GID_INVALID,
348};
349
350enum {
351 MLX4_PERM_LOCAL_READ = 1 << 10,
352 MLX4_PERM_LOCAL_WRITE = 1 << 11,
353 MLX4_PERM_REMOTE_READ = 1 << 12,
354 MLX4_PERM_REMOTE_WRITE = 1 << 13,
355 MLX4_PERM_ATOMIC = 1 << 14,
356 MLX4_PERM_BIND_MW = 1 << 15,
357 MLX4_PERM_MASK = 0xFC00
358};
359
360enum {
361 MLX4_OPCODE_NOP = 0x00,
362 MLX4_OPCODE_SEND_INVAL = 0x01,
363 MLX4_OPCODE_RDMA_WRITE = 0x08,
364 MLX4_OPCODE_RDMA_WRITE_IMM = 0x09,
365 MLX4_OPCODE_SEND = 0x0a,
366 MLX4_OPCODE_SEND_IMM = 0x0b,
367 MLX4_OPCODE_LSO = 0x0e,
368 MLX4_OPCODE_RDMA_READ = 0x10,
369 MLX4_OPCODE_ATOMIC_CS = 0x11,
370 MLX4_OPCODE_ATOMIC_FA = 0x12,
371 MLX4_OPCODE_MASKED_ATOMIC_CS = 0x14,
372 MLX4_OPCODE_MASKED_ATOMIC_FA = 0x15,
373 MLX4_OPCODE_BIND_MW = 0x18,
374 MLX4_OPCODE_FMR = 0x19,
375 MLX4_OPCODE_LOCAL_INVAL = 0x1b,
376 MLX4_OPCODE_CONFIG_CMD = 0x1f,
377
378 MLX4_RECV_OPCODE_RDMA_WRITE_IMM = 0x00,
379 MLX4_RECV_OPCODE_SEND = 0x01,
380 MLX4_RECV_OPCODE_SEND_IMM = 0x02,
381 MLX4_RECV_OPCODE_SEND_INVAL = 0x03,
382
383 MLX4_CQE_OPCODE_ERROR = 0x1e,
384 MLX4_CQE_OPCODE_RESIZE = 0x16,
385};
386
387enum {
388 MLX4_STAT_RATE_OFFSET = 5
389};
390
391enum mlx4_protocol {
392 MLX4_PROT_IB_IPV6 = 0,
393 MLX4_PROT_ETH,
394 MLX4_PROT_IB_IPV4,
395 MLX4_PROT_FCOE
396};
397
398enum {
399 MLX4_MTT_FLAG_PRESENT = 1
400};
401
402enum mlx4_qp_region {
403 MLX4_QP_REGION_FW = 0,
404 MLX4_QP_REGION_RSS_RAW_ETH,
405 MLX4_QP_REGION_BOTTOM = MLX4_QP_REGION_RSS_RAW_ETH,
406 MLX4_QP_REGION_ETH_ADDR,
407 MLX4_QP_REGION_FC_ADDR,
408 MLX4_QP_REGION_FC_EXCH,
409 MLX4_NUM_QP_REGION
410};
411
412enum mlx4_port_type {
413 MLX4_PORT_TYPE_NONE = 0,
414 MLX4_PORT_TYPE_IB = 1,
415 MLX4_PORT_TYPE_ETH = 2,
416 MLX4_PORT_TYPE_AUTO = 3
417};
418
419enum mlx4_special_vlan_idx {
420 MLX4_NO_VLAN_IDX = 0,
421 MLX4_VLAN_MISS_IDX,
422 MLX4_VLAN_REGULAR
423};
424
425enum mlx4_steer_type {
426 MLX4_MC_STEER = 0,
427 MLX4_UC_STEER,
428 MLX4_NUM_STEERS
429};
430
431enum mlx4_resource_usage {
432 MLX4_RES_USAGE_NONE,
433 MLX4_RES_USAGE_DRIVER,
434 MLX4_RES_USAGE_USER_VERBS,
435};
436
437enum {
438 MLX4_NUM_FEXCH = 64 * 1024,
439};
440
441enum {
442 MLX4_MAX_FAST_REG_PAGES = 511,
443};
444
445enum {
446 /*
447 * Max wqe size for rdma read is 512 bytes, so this
448 * limits our max_sge_rd as the wqe needs to fit:
449 * - ctrl segment (16 bytes)
450 * - rdma segment (16 bytes)
451 * - scatter elements (16 bytes each)
452 */
453 MLX4_MAX_SGE_RD = (512 - 16 - 16) / 16
454};
455
456enum {
457 MLX4_DEV_PMC_SUBTYPE_GUID_INFO = 0x14,
458 MLX4_DEV_PMC_SUBTYPE_PORT_INFO = 0x15,
459 MLX4_DEV_PMC_SUBTYPE_PKEY_TABLE = 0x16,
460 MLX4_DEV_PMC_SUBTYPE_SL_TO_VL_MAP = 0x17,
461};
462
463/* Port mgmt change event handling */
464enum {
465 MLX4_EQ_PORT_INFO_MSTR_SM_LID_CHANGE_MASK = 1 << 0,
466 MLX4_EQ_PORT_INFO_GID_PFX_CHANGE_MASK = 1 << 1,
467 MLX4_EQ_PORT_INFO_LID_CHANGE_MASK = 1 << 2,
468 MLX4_EQ_PORT_INFO_CLIENT_REREG_MASK = 1 << 3,
469 MLX4_EQ_PORT_INFO_MSTR_SM_SL_CHANGE_MASK = 1 << 4,
470};
471
472union sl2vl_tbl_to_u64 {
473 u8 sl8[8];
474 u64 sl64;
475};
476
477enum {
478 MLX4_DEVICE_STATE_UP = 1 << 0,
479 MLX4_DEVICE_STATE_INTERNAL_ERROR = 1 << 1,
480};
481
482enum {
483 MLX4_INTERFACE_STATE_UP = 1 << 0,
484 MLX4_INTERFACE_STATE_DELETION = 1 << 1,
485 MLX4_INTERFACE_STATE_NOWAIT = 1 << 2,
486};
487
488#define MSTR_SM_CHANGE_MASK (MLX4_EQ_PORT_INFO_MSTR_SM_SL_CHANGE_MASK | \
489 MLX4_EQ_PORT_INFO_MSTR_SM_LID_CHANGE_MASK)
490
491enum mlx4_module_id {
492 MLX4_MODULE_ID_SFP = 0x3,
493 MLX4_MODULE_ID_QSFP = 0xC,
494 MLX4_MODULE_ID_QSFP_PLUS = 0xD,
495 MLX4_MODULE_ID_QSFP28 = 0x11,
496};
497
498enum { /* rl */
499 MLX4_QP_RATE_LIMIT_NONE = 0,
500 MLX4_QP_RATE_LIMIT_KBS = 1,
501 MLX4_QP_RATE_LIMIT_MBS = 2,
502 MLX4_QP_RATE_LIMIT_GBS = 3
503};
504
505struct mlx4_rate_limit_caps {
506 u16 num_rates; /* Number of different rates */
507 u8 min_unit;
508 u16 min_val;
509 u8 max_unit;
510 u16 max_val;
511};
512
513static inline u64 mlx4_fw_ver(u64 major, u64 minor, u64 subminor)
514{
515 return (major << 32) | (minor << 16) | subminor;
516}
517
518struct mlx4_phys_caps {
519 u32 gid_phys_table_len[MLX4_MAX_PORTS + 1];
520 u32 pkey_phys_table_len[MLX4_MAX_PORTS + 1];
521 u32 num_phys_eqs;
522 u32 base_sqpn;
523 u32 base_proxy_sqpn;
524 u32 base_tunnel_sqpn;
525};
526
527struct mlx4_caps {
528 u64 fw_ver;
529 u32 function;
530 int num_ports;
531 int vl_cap[MLX4_MAX_PORTS + 1];
532 int ib_mtu_cap[MLX4_MAX_PORTS + 1];
533 __be32 ib_port_def_cap[MLX4_MAX_PORTS + 1];
534 u64 def_mac[MLX4_MAX_PORTS + 1];
535 int eth_mtu_cap[MLX4_MAX_PORTS + 1];
536 int gid_table_len[MLX4_MAX_PORTS + 1];
537 int pkey_table_len[MLX4_MAX_PORTS + 1];
538 int trans_type[MLX4_MAX_PORTS + 1];
539 int vendor_oui[MLX4_MAX_PORTS + 1];
540 int wavelength[MLX4_MAX_PORTS + 1];
541 u64 trans_code[MLX4_MAX_PORTS + 1];
542 int local_ca_ack_delay;
543 int num_uars;
544 u32 uar_page_size;
545 int bf_reg_size;
546 int bf_regs_per_page;
547 int max_sq_sg;
548 int max_rq_sg;
549 int num_qps;
550 int max_wqes;
551 int max_sq_desc_sz;
552 int max_rq_desc_sz;
553 int max_qp_init_rdma;
554 int max_qp_dest_rdma;
555 int max_tc_eth;
556 u32 *qp0_qkey;
557 u32 *qp0_proxy;
558 u32 *qp1_proxy;
559 u32 *qp0_tunnel;
560 u32 *qp1_tunnel;
561 int num_srqs;
562 int max_srq_wqes;
563 int max_srq_sge;
564 int reserved_srqs;
565 int num_cqs;
566 int max_cqes;
567 int reserved_cqs;
568 int num_sys_eqs;
569 int num_eqs;
570 int reserved_eqs;
571 int num_comp_vectors;
572 int num_mpts;
573 int max_fmr_maps;
574 int num_mtts;
575 int fmr_reserved_mtts;
576 int reserved_mtts;
577 int reserved_mrws;
578 int reserved_uars;
579 int num_mgms;
580 int num_amgms;
581 int reserved_mcgs;
582 int num_qp_per_mgm;
583 int steering_mode;
584 int dmfs_high_steer_mode;
585 int fs_log_max_ucast_qp_range_size;
586 int num_pds;
587 int reserved_pds;
588 int max_xrcds;
589 int reserved_xrcds;
590 int mtt_entry_sz;
591 u32 max_msg_sz;
592 u32 page_size_cap;
593 u64 flags;
594 u64 flags2;
595 u32 bmme_flags;
596 u32 reserved_lkey;
597 u16 stat_rate_support;
598 u8 port_width_cap[MLX4_MAX_PORTS + 1];
599 int max_gso_sz;
600 int max_rss_tbl_sz;
601 int reserved_qps_cnt[MLX4_NUM_QP_REGION];
602 int reserved_qps;
603 int reserved_qps_base[MLX4_NUM_QP_REGION];
604 int log_num_macs;
605 int log_num_vlans;
606 enum mlx4_port_type port_type[MLX4_MAX_PORTS + 1];
607 u8 supported_type[MLX4_MAX_PORTS + 1];
608 u8 suggested_type[MLX4_MAX_PORTS + 1];
609 u8 default_sense[MLX4_MAX_PORTS + 1];
610 u32 port_mask[MLX4_MAX_PORTS + 1];
611 enum mlx4_port_type possible_type[MLX4_MAX_PORTS + 1];
612 u32 max_counters;
613 u8 port_ib_mtu[MLX4_MAX_PORTS + 1];
614 u16 sqp_demux;
615 u32 eqe_size;
616 u32 cqe_size;
617 u8 eqe_factor;
618 u32 userspace_caps; /* userspace must be aware of these */
619 u32 function_caps; /* VFs must be aware of these */
620 u16 hca_core_clock;
621 u64 phys_port_id[MLX4_MAX_PORTS + 1];
622 int tunnel_offload_mode;
623 u8 rx_checksum_flags_port[MLX4_MAX_PORTS + 1];
624 u8 phv_bit[MLX4_MAX_PORTS + 1];
625 u8 alloc_res_qp_mask;
626 u32 dmfs_high_rate_qpn_base;
627 u32 dmfs_high_rate_qpn_range;
628 u32 vf_caps;
629 bool wol_port[MLX4_MAX_PORTS + 1];
630 struct mlx4_rate_limit_caps rl_caps;
631};
632
633struct mlx4_buf_list {
634 void *buf;
635 dma_addr_t map;
636};
637
638struct mlx4_buf {
639 struct mlx4_buf_list direct;
640 struct mlx4_buf_list *page_list;
641 int nbufs;
642 int npages;
643 int page_shift;
644};
645
646struct mlx4_mtt {
647 u32 offset;
648 int order;
649 int page_shift;
650};
651
652enum {
653 MLX4_DB_PER_PAGE = PAGE_SIZE / 4
654};
655
656struct mlx4_db_pgdir {
657 struct list_head list;
658 DECLARE_BITMAP(order0, MLX4_DB_PER_PAGE);
659 DECLARE_BITMAP(order1, MLX4_DB_PER_PAGE / 2);
660 unsigned long *bits[2];
661 __be32 *db_page;
662 dma_addr_t db_dma;
663};
664
665struct mlx4_ib_user_db_page;
666
667struct mlx4_db {
668 __be32 *db;
669 union {
670 struct mlx4_db_pgdir *pgdir;
671 struct mlx4_ib_user_db_page *user_page;
672 } u;
673 dma_addr_t dma;
674 int index;
675 int order;
676};
677
678struct mlx4_hwq_resources {
679 struct mlx4_db db;
680 struct mlx4_mtt mtt;
681 struct mlx4_buf buf;
682};
683
684struct mlx4_mr {
685 struct mlx4_mtt mtt;
686 u64 iova;
687 u64 size;
688 u32 key;
689 u32 pd;
690 u32 access;
691 int enabled;
692};
693
694enum mlx4_mw_type {
695 MLX4_MW_TYPE_1 = 1,
696 MLX4_MW_TYPE_2 = 2,
697};
698
699struct mlx4_mw {
700 u32 key;
701 u32 pd;
702 enum mlx4_mw_type type;
703 int enabled;
704};
705
706struct mlx4_fmr {
707 struct mlx4_mr mr;
708 struct mlx4_mpt_entry *mpt;
709 __be64 *mtts;
710 dma_addr_t dma_handle;
711 int max_pages;
712 int max_maps;
713 int maps;
714 u8 page_shift;
715};
716
717struct mlx4_uar {
718 unsigned long pfn;
719 int index;
720 struct list_head bf_list;
721 unsigned free_bf_bmap;
722 void __iomem *map;
723 void __iomem *bf_map;
724};
725
726struct mlx4_bf {
727 unsigned int offset;
728 int buf_size;
729 struct mlx4_uar *uar;
730 void __iomem *reg;
731};
732
733struct mlx4_cq {
734 void (*comp) (struct mlx4_cq *);
735 void (*event) (struct mlx4_cq *, enum mlx4_event);
736
737 struct mlx4_uar *uar;
738
739 u32 cons_index;
740
741 u16 irq;
742 __be32 *set_ci_db;
743 __be32 *arm_db;
744 int arm_sn;
745
746 int cqn;
747 unsigned vector;
748
749 atomic_t refcount;
750 struct completion free;
751 struct {
752 struct list_head list;
753 void (*comp)(struct mlx4_cq *);
754 void *priv;
755 } tasklet_ctx;
756 int reset_notify_added;
757 struct list_head reset_notify;
758 u8 usage;
759};
760
761struct mlx4_qp {
762 void (*event) (struct mlx4_qp *, enum mlx4_event);
763
764 int qpn;
765
766 atomic_t refcount;
767 struct completion free;
768 u8 usage;
769};
770
771struct mlx4_srq {
772 void (*event) (struct mlx4_srq *, enum mlx4_event);
773
774 int srqn;
775 int max;
776 int max_gs;
777 int wqe_shift;
778
779 atomic_t refcount;
780 struct completion free;
781};
782
783struct mlx4_av {
784 __be32 port_pd;
785 u8 reserved1;
786 u8 g_slid;
787 __be16 dlid;
788 u8 reserved2;
789 u8 gid_index;
790 u8 stat_rate;
791 u8 hop_limit;
792 __be32 sl_tclass_flowlabel;
793 u8 dgid[16];
794};
795
796struct mlx4_eth_av {
797 __be32 port_pd;
798 u8 reserved1;
799 u8 smac_idx;
800 u16 reserved2;
801 u8 reserved3;
802 u8 gid_index;
803 u8 stat_rate;
804 u8 hop_limit;
805 __be32 sl_tclass_flowlabel;
806 u8 dgid[16];
807 u8 s_mac[6];
808 u8 reserved4[2];
809 __be16 vlan;
810 u8 mac[ETH_ALEN];
811};
812
813union mlx4_ext_av {
814 struct mlx4_av ib;
815 struct mlx4_eth_av eth;
816};
817
818/* Counters should be saturate once they reach their maximum value */
819#define ASSIGN_32BIT_COUNTER(counter, value) do { \
820 if ((value) > U32_MAX) \
821 counter = cpu_to_be32(U32_MAX); \
822 else \
823 counter = cpu_to_be32(value); \
824} while (0)
825
826struct mlx4_counter {
827 u8 reserved1[3];
828 u8 counter_mode;
829 __be32 num_ifc;
830 u32 reserved2[2];
831 __be64 rx_frames;
832 __be64 rx_bytes;
833 __be64 tx_frames;
834 __be64 tx_bytes;
835};
836
837struct mlx4_quotas {
838 int qp;
839 int cq;
840 int srq;
841 int mpt;
842 int mtt;
843 int counter;
844 int xrcd;
845};
846
847struct mlx4_vf_dev {
848 u8 min_port;
849 u8 n_ports;
850};
851
852enum mlx4_pci_status {
853 MLX4_PCI_STATUS_DISABLED,
854 MLX4_PCI_STATUS_ENABLED,
855};
856
857struct mlx4_dev_persistent {
858 struct pci_dev *pdev;
859 struct mlx4_dev *dev;
860 int nvfs[MLX4_MAX_PORTS + 1];
861 int num_vfs;
862 enum mlx4_port_type curr_port_type[MLX4_MAX_PORTS + 1];
863 enum mlx4_port_type curr_port_poss_type[MLX4_MAX_PORTS + 1];
864 struct work_struct catas_work;
865 struct workqueue_struct *catas_wq;
866 struct mutex device_state_mutex; /* protect HW state */
867 u8 state;
868 struct mutex interface_state_mutex; /* protect SW state */
869 u8 interface_state;
870 struct mutex pci_status_mutex; /* sync pci state */
871 enum mlx4_pci_status pci_status;
872};
873
874struct mlx4_dev {
875 struct mlx4_dev_persistent *persist;
876 unsigned long flags;
877 unsigned long num_slaves;
878 struct mlx4_caps caps;
879 struct mlx4_phys_caps phys_caps;
880 struct mlx4_quotas quotas;
881 struct radix_tree_root qp_table_tree;
882 u8 rev_id;
883 u8 port_random_macs;
884 char board_id[MLX4_BOARD_ID_LEN];
885 int numa_node;
886 int oper_log_mgm_entry_size;
887 u64 regid_promisc_array[MLX4_MAX_PORTS + 1];
888 u64 regid_allmulti_array[MLX4_MAX_PORTS + 1];
889 struct mlx4_vf_dev *dev_vfs;
890 u8 uar_page_shift;
891};
892
893struct mlx4_clock_params {
894 u64 offset;
895 u8 bar;
896 u8 size;
897};
898
899struct mlx4_eqe {
900 u8 reserved1;
901 u8 type;
902 u8 reserved2;
903 u8 subtype;
904 union {
905 u32 raw[6];
906 struct {
907 __be32 cqn;
908 } __packed comp;
909 struct {
910 u16 reserved1;
911 __be16 token;
912 u32 reserved2;
913 u8 reserved3[3];
914 u8 status;
915 __be64 out_param;
916 } __packed cmd;
917 struct {
918 __be32 qpn;
919 } __packed qp;
920 struct {
921 __be32 srqn;
922 } __packed srq;
923 struct {
924 __be32 cqn;
925 u32 reserved1;
926 u8 reserved2[3];
927 u8 syndrome;
928 } __packed cq_err;
929 struct {
930 u32 reserved1[2];
931 __be32 port;
932 } __packed port_change;
933 struct {
934 #define COMM_CHANNEL_BIT_ARRAY_SIZE 4
935 u32 reserved;
936 u32 bit_vec[COMM_CHANNEL_BIT_ARRAY_SIZE];
937 } __packed comm_channel_arm;
938 struct {
939 u8 port;
940 u8 reserved[3];
941 __be64 mac;
942 } __packed mac_update;
943 struct {
944 __be32 slave_id;
945 } __packed flr_event;
946 struct {
947 __be16 current_temperature;
948 __be16 warning_threshold;
949 } __packed warming;
950 struct {
951 u8 reserved[3];
952 u8 port;
953 union {
954 struct {
955 __be16 mstr_sm_lid;
956 __be16 port_lid;
957 __be32 changed_attr;
958 u8 reserved[3];
959 u8 mstr_sm_sl;
960 __be64 gid_prefix;
961 } __packed port_info;
962 struct {
963 __be32 block_ptr;
964 __be32 tbl_entries_mask;
965 } __packed tbl_change_info;
966 struct {
967 u8 sl2vl_table[8];
968 } __packed sl2vl_tbl_change_info;
969 } params;
970 } __packed port_mgmt_change;
971 struct {
972 u8 reserved[3];
973 u8 port;
974 u32 reserved1[5];
975 } __packed bad_cable;
976 } event;
977 u8 slave_id;
978 u8 reserved3[2];
979 u8 owner;
980} __packed;
981
982struct mlx4_init_port_param {
983 int set_guid0;
984 int set_node_guid;
985 int set_si_guid;
986 u16 mtu;
987 int port_width_cap;
988 u16 vl_cap;
989 u16 max_gid;
990 u16 max_pkey;
991 u64 guid0;
992 u64 node_guid;
993 u64 si_guid;
994};
995
996#define MAD_IFC_DATA_SZ 192
997/* MAD IFC Mailbox */
998struct mlx4_mad_ifc {
999 u8 base_version;
1000 u8 mgmt_class;
1001 u8 class_version;
1002 u8 method;
1003 __be16 status;
1004 __be16 class_specific;
1005 __be64 tid;
1006 __be16 attr_id;
1007 __be16 resv;
1008 __be32 attr_mod;
1009 __be64 mkey;
1010 __be16 dr_slid;
1011 __be16 dr_dlid;
1012 u8 reserved[28];
1013 u8 data[MAD_IFC_DATA_SZ];
1014} __packed;
1015
1016#define mlx4_foreach_port(port, dev, type) \
1017 for ((port) = 1; (port) <= (dev)->caps.num_ports; (port)++) \
1018 if ((type) == (dev)->caps.port_mask[(port)])
1019
1020#define mlx4_foreach_ib_transport_port(port, dev) \
1021 for ((port) = 1; (port) <= (dev)->caps.num_ports; (port)++) \
1022 if (((dev)->caps.port_mask[port] == MLX4_PORT_TYPE_IB) || \
1023 ((dev)->caps.port_mask[port] == MLX4_PORT_TYPE_ETH))
1024
1025#define MLX4_INVALID_SLAVE_ID 0xFF
1026#define MLX4_SINK_COUNTER_INDEX(dev) (dev->caps.max_counters - 1)
1027
1028void handle_port_mgmt_change_event(struct work_struct *work);
1029
1030static inline int mlx4_master_func_num(struct mlx4_dev *dev)
1031{
1032 return dev->caps.function;
1033}
1034
1035static inline int mlx4_is_master(struct mlx4_dev *dev)
1036{
1037 return dev->flags & MLX4_FLAG_MASTER;
1038}
1039
1040static inline int mlx4_num_reserved_sqps(struct mlx4_dev *dev)
1041{
1042 return dev->phys_caps.base_sqpn + 8 +
1043 16 * MLX4_MFUNC_MAX * !!mlx4_is_master(dev);
1044}
1045
1046static inline int mlx4_is_qp_reserved(struct mlx4_dev *dev, u32 qpn)
1047{
1048 return (qpn < dev->phys_caps.base_sqpn + 8 +
1049 16 * MLX4_MFUNC_MAX * !!mlx4_is_master(dev) &&
1050 qpn >= dev->phys_caps.base_sqpn) ||
1051 (qpn < dev->caps.reserved_qps_cnt[MLX4_QP_REGION_FW]);
1052}
1053
1054static inline int mlx4_is_guest_proxy(struct mlx4_dev *dev, int slave, u32 qpn)
1055{
1056 int guest_proxy_base = dev->phys_caps.base_proxy_sqpn + slave * 8;
1057
1058 if (qpn >= guest_proxy_base && qpn < guest_proxy_base + 8)
1059 return 1;
1060
1061 return 0;
1062}
1063
1064static inline int mlx4_is_mfunc(struct mlx4_dev *dev)
1065{
1066 return dev->flags & (MLX4_FLAG_SLAVE | MLX4_FLAG_MASTER);
1067}
1068
1069static inline int mlx4_is_slave(struct mlx4_dev *dev)
1070{
1071 return dev->flags & MLX4_FLAG_SLAVE;
1072}
1073
1074static inline int mlx4_is_eth(struct mlx4_dev *dev, int port)
1075{
1076 return dev->caps.port_type[port] == MLX4_PORT_TYPE_IB ? 0 : 1;
1077}
1078
1079int mlx4_buf_alloc(struct mlx4_dev *dev, int size, int max_direct,
1080 struct mlx4_buf *buf);
1081void mlx4_buf_free(struct mlx4_dev *dev, int size, struct mlx4_buf *buf);
1082static inline void *mlx4_buf_offset(struct mlx4_buf *buf, int offset)
1083{
1084 if (buf->nbufs == 1)
1085 return buf->direct.buf + offset;
1086 else
1087 return buf->page_list[offset >> PAGE_SHIFT].buf +
1088 (offset & (PAGE_SIZE - 1));
1089}
1090
1091int mlx4_pd_alloc(struct mlx4_dev *dev, u32 *pdn);
1092void mlx4_pd_free(struct mlx4_dev *dev, u32 pdn);
1093int mlx4_xrcd_alloc(struct mlx4_dev *dev, u32 *xrcdn);
1094void mlx4_xrcd_free(struct mlx4_dev *dev, u32 xrcdn);
1095
1096int mlx4_uar_alloc(struct mlx4_dev *dev, struct mlx4_uar *uar);
1097void mlx4_uar_free(struct mlx4_dev *dev, struct mlx4_uar *uar);
1098int mlx4_bf_alloc(struct mlx4_dev *dev, struct mlx4_bf *bf, int node);
1099void mlx4_bf_free(struct mlx4_dev *dev, struct mlx4_bf *bf);
1100
1101int mlx4_mtt_init(struct mlx4_dev *dev, int npages, int page_shift,
1102 struct mlx4_mtt *mtt);
1103void mlx4_mtt_cleanup(struct mlx4_dev *dev, struct mlx4_mtt *mtt);
1104u64 mlx4_mtt_addr(struct mlx4_dev *dev, struct mlx4_mtt *mtt);
1105
1106int mlx4_mr_alloc(struct mlx4_dev *dev, u32 pd, u64 iova, u64 size, u32 access,
1107 int npages, int page_shift, struct mlx4_mr *mr);
1108int mlx4_mr_free(struct mlx4_dev *dev, struct mlx4_mr *mr);
1109int mlx4_mr_enable(struct mlx4_dev *dev, struct mlx4_mr *mr);
1110int mlx4_mw_alloc(struct mlx4_dev *dev, u32 pd, enum mlx4_mw_type type,
1111 struct mlx4_mw *mw);
1112void mlx4_mw_free(struct mlx4_dev *dev, struct mlx4_mw *mw);
1113int mlx4_mw_enable(struct mlx4_dev *dev, struct mlx4_mw *mw);
1114int mlx4_write_mtt(struct mlx4_dev *dev, struct mlx4_mtt *mtt,
1115 int start_index, int npages, u64 *page_list);
1116int mlx4_buf_write_mtt(struct mlx4_dev *dev, struct mlx4_mtt *mtt,
1117 struct mlx4_buf *buf);
1118
1119int mlx4_db_alloc(struct mlx4_dev *dev, struct mlx4_db *db, int order);
1120void mlx4_db_free(struct mlx4_dev *dev, struct mlx4_db *db);
1121
1122int mlx4_alloc_hwq_res(struct mlx4_dev *dev, struct mlx4_hwq_resources *wqres,
1123 int size);
1124void mlx4_free_hwq_res(struct mlx4_dev *mdev, struct mlx4_hwq_resources *wqres,
1125 int size);
1126
1127int mlx4_cq_alloc(struct mlx4_dev *dev, int nent, struct mlx4_mtt *mtt,
1128 struct mlx4_uar *uar, u64 db_rec, struct mlx4_cq *cq,
1129 unsigned vector, int collapsed, int timestamp_en);
1130void mlx4_cq_free(struct mlx4_dev *dev, struct mlx4_cq *cq);
1131int mlx4_qp_reserve_range(struct mlx4_dev *dev, int cnt, int align,
1132 int *base, u8 flags, u8 usage);
1133void mlx4_qp_release_range(struct mlx4_dev *dev, int base_qpn, int cnt);
1134
1135int mlx4_qp_alloc(struct mlx4_dev *dev, int qpn, struct mlx4_qp *qp);
1136void mlx4_qp_free(struct mlx4_dev *dev, struct mlx4_qp *qp);
1137
1138int mlx4_srq_alloc(struct mlx4_dev *dev, u32 pdn, u32 cqn, u16 xrcdn,
1139 struct mlx4_mtt *mtt, u64 db_rec, struct mlx4_srq *srq);
1140void mlx4_srq_free(struct mlx4_dev *dev, struct mlx4_srq *srq);
1141int mlx4_srq_arm(struct mlx4_dev *dev, struct mlx4_srq *srq, int limit_watermark);
1142int mlx4_srq_query(struct mlx4_dev *dev, struct mlx4_srq *srq, int *limit_watermark);
1143
1144int mlx4_INIT_PORT(struct mlx4_dev *dev, int port);
1145int mlx4_CLOSE_PORT(struct mlx4_dev *dev, int port);
1146
1147int mlx4_unicast_attach(struct mlx4_dev *dev, struct mlx4_qp *qp, u8 gid[16],
1148 int block_mcast_loopback, enum mlx4_protocol prot);
1149int mlx4_unicast_detach(struct mlx4_dev *dev, struct mlx4_qp *qp, u8 gid[16],
1150 enum mlx4_protocol prot);
1151int mlx4_multicast_attach(struct mlx4_dev *dev, struct mlx4_qp *qp, u8 gid[16],
1152 u8 port, int block_mcast_loopback,
1153 enum mlx4_protocol protocol, u64 *reg_id);
1154int mlx4_multicast_detach(struct mlx4_dev *dev, struct mlx4_qp *qp, u8 gid[16],
1155 enum mlx4_protocol protocol, u64 reg_id);
1156
1157enum {
1158 MLX4_DOMAIN_UVERBS = 0x1000,
1159 MLX4_DOMAIN_ETHTOOL = 0x2000,
1160 MLX4_DOMAIN_RFS = 0x3000,
1161 MLX4_DOMAIN_NIC = 0x5000,
1162};
1163
1164enum mlx4_net_trans_rule_id {
1165 MLX4_NET_TRANS_RULE_ID_ETH = 0,
1166 MLX4_NET_TRANS_RULE_ID_IB,
1167 MLX4_NET_TRANS_RULE_ID_IPV6,
1168 MLX4_NET_TRANS_RULE_ID_IPV4,
1169 MLX4_NET_TRANS_RULE_ID_TCP,
1170 MLX4_NET_TRANS_RULE_ID_UDP,
1171 MLX4_NET_TRANS_RULE_ID_VXLAN,
1172 MLX4_NET_TRANS_RULE_NUM, /* should be last */
1173};
1174
1175extern const u16 __sw_id_hw[];
1176
1177static inline int map_hw_to_sw_id(u16 header_id)
1178{
1179
1180 int i;
1181 for (i = 0; i < MLX4_NET_TRANS_RULE_NUM; i++) {
1182 if (header_id == __sw_id_hw[i])
1183 return i;
1184 }
1185 return -EINVAL;
1186}
1187
1188enum mlx4_net_trans_promisc_mode {
1189 MLX4_FS_REGULAR = 1,
1190 MLX4_FS_ALL_DEFAULT,
1191 MLX4_FS_MC_DEFAULT,
1192 MLX4_FS_MIRROR_RX_PORT,
1193 MLX4_FS_MIRROR_SX_PORT,
1194 MLX4_FS_UC_SNIFFER,
1195 MLX4_FS_MC_SNIFFER,
1196 MLX4_FS_MODE_NUM, /* should be last */
1197};
1198
1199struct mlx4_spec_eth {
1200 u8 dst_mac[ETH_ALEN];
1201 u8 dst_mac_msk[ETH_ALEN];
1202 u8 src_mac[ETH_ALEN];
1203 u8 src_mac_msk[ETH_ALEN];
1204 u8 ether_type_enable;
1205 __be16 ether_type;
1206 __be16 vlan_id_msk;
1207 __be16 vlan_id;
1208};
1209
1210struct mlx4_spec_tcp_udp {
1211 __be16 dst_port;
1212 __be16 dst_port_msk;
1213 __be16 src_port;
1214 __be16 src_port_msk;
1215};
1216
1217struct mlx4_spec_ipv4 {
1218 __be32 dst_ip;
1219 __be32 dst_ip_msk;
1220 __be32 src_ip;
1221 __be32 src_ip_msk;
1222};
1223
1224struct mlx4_spec_ib {
1225 __be32 l3_qpn;
1226 __be32 qpn_msk;
1227 u8 dst_gid[16];
1228 u8 dst_gid_msk[16];
1229};
1230
1231struct mlx4_spec_vxlan {
1232 __be32 vni;
1233 __be32 vni_mask;
1234
1235};
1236
1237struct mlx4_spec_list {
1238 struct list_head list;
1239 enum mlx4_net_trans_rule_id id;
1240 union {
1241 struct mlx4_spec_eth eth;
1242 struct mlx4_spec_ib ib;
1243 struct mlx4_spec_ipv4 ipv4;
1244 struct mlx4_spec_tcp_udp tcp_udp;
1245 struct mlx4_spec_vxlan vxlan;
1246 };
1247};
1248
1249enum mlx4_net_trans_hw_rule_queue {
1250 MLX4_NET_TRANS_Q_FIFO,
1251 MLX4_NET_TRANS_Q_LIFO,
1252};
1253
1254struct mlx4_net_trans_rule {
1255 struct list_head list;
1256 enum mlx4_net_trans_hw_rule_queue queue_mode;
1257 bool exclusive;
1258 bool allow_loopback;
1259 enum mlx4_net_trans_promisc_mode promisc_mode;
1260 u8 port;
1261 u16 priority;
1262 u32 qpn;
1263};
1264
1265struct mlx4_net_trans_rule_hw_ctrl {
1266 __be16 prio;
1267 u8 type;
1268 u8 flags;
1269 u8 rsvd1;
1270 u8 funcid;
1271 u8 vep;
1272 u8 port;
1273 __be32 qpn;
1274 __be32 rsvd2;
1275};
1276
1277struct mlx4_net_trans_rule_hw_ib {
1278 u8 size;
1279 u8 rsvd1;
1280 __be16 id;
1281 u32 rsvd2;
1282 __be32 l3_qpn;
1283 __be32 qpn_mask;
1284 u8 dst_gid[16];
1285 u8 dst_gid_msk[16];
1286} __packed;
1287
1288struct mlx4_net_trans_rule_hw_eth {
1289 u8 size;
1290 u8 rsvd;
1291 __be16 id;
1292 u8 rsvd1[6];
1293 u8 dst_mac[6];
1294 u16 rsvd2;
1295 u8 dst_mac_msk[6];
1296 u16 rsvd3;
1297 u8 src_mac[6];
1298 u16 rsvd4;
1299 u8 src_mac_msk[6];
1300 u8 rsvd5;
1301 u8 ether_type_enable;
1302 __be16 ether_type;
1303 __be16 vlan_tag_msk;
1304 __be16 vlan_tag;
1305} __packed;
1306
1307struct mlx4_net_trans_rule_hw_tcp_udp {
1308 u8 size;
1309 u8 rsvd;
1310 __be16 id;
1311 __be16 rsvd1[3];
1312 __be16 dst_port;
1313 __be16 rsvd2;
1314 __be16 dst_port_msk;
1315 __be16 rsvd3;
1316 __be16 src_port;
1317 __be16 rsvd4;
1318 __be16 src_port_msk;
1319} __packed;
1320
1321struct mlx4_net_trans_rule_hw_ipv4 {
1322 u8 size;
1323 u8 rsvd;
1324 __be16 id;
1325 __be32 rsvd1;
1326 __be32 dst_ip;
1327 __be32 dst_ip_msk;
1328 __be32 src_ip;
1329 __be32 src_ip_msk;
1330} __packed;
1331
1332struct mlx4_net_trans_rule_hw_vxlan {
1333 u8 size;
1334 u8 rsvd;
1335 __be16 id;
1336 __be32 rsvd1;
1337 __be32 vni;
1338 __be32 vni_mask;
1339} __packed;
1340
1341struct _rule_hw {
1342 union {
1343 struct {
1344 u8 size;
1345 u8 rsvd;
1346 __be16 id;
1347 };
1348 struct mlx4_net_trans_rule_hw_eth eth;
1349 struct mlx4_net_trans_rule_hw_ib ib;
1350 struct mlx4_net_trans_rule_hw_ipv4 ipv4;
1351 struct mlx4_net_trans_rule_hw_tcp_udp tcp_udp;
1352 struct mlx4_net_trans_rule_hw_vxlan vxlan;
1353 };
1354};
1355
1356enum {
1357 VXLAN_STEER_BY_OUTER_MAC = 1 << 0,
1358 VXLAN_STEER_BY_OUTER_VLAN = 1 << 1,
1359 VXLAN_STEER_BY_VSID_VNI = 1 << 2,
1360 VXLAN_STEER_BY_INNER_MAC = 1 << 3,
1361 VXLAN_STEER_BY_INNER_VLAN = 1 << 4,
1362};
1363
1364enum {
1365 MLX4_OP_MOD_QUERY_TRANSPORT_CI_ERRORS = 0x2,
1366};
1367
1368int mlx4_flow_steer_promisc_add(struct mlx4_dev *dev, u8 port, u32 qpn,
1369 enum mlx4_net_trans_promisc_mode mode);
1370int mlx4_flow_steer_promisc_remove(struct mlx4_dev *dev, u8 port,
1371 enum mlx4_net_trans_promisc_mode mode);
1372int mlx4_multicast_promisc_add(struct mlx4_dev *dev, u32 qpn, u8 port);
1373int mlx4_multicast_promisc_remove(struct mlx4_dev *dev, u32 qpn, u8 port);
1374int mlx4_unicast_promisc_add(struct mlx4_dev *dev, u32 qpn, u8 port);
1375int mlx4_unicast_promisc_remove(struct mlx4_dev *dev, u32 qpn, u8 port);
1376int mlx4_SET_MCAST_FLTR(struct mlx4_dev *dev, u8 port, u64 mac, u64 clear, u8 mode);
1377
1378int mlx4_register_mac(struct mlx4_dev *dev, u8 port, u64 mac);
1379void mlx4_unregister_mac(struct mlx4_dev *dev, u8 port, u64 mac);
1380int mlx4_get_base_qpn(struct mlx4_dev *dev, u8 port);
1381int __mlx4_replace_mac(struct mlx4_dev *dev, u8 port, int qpn, u64 new_mac);
1382int mlx4_SET_PORT_general(struct mlx4_dev *dev, u8 port, int mtu,
1383 u8 pptx, u8 pfctx, u8 pprx, u8 pfcrx);
1384int mlx4_SET_PORT_user_mtu(struct mlx4_dev *dev, u8 port, u16 user_mtu);
1385int mlx4_SET_PORT_qpn_calc(struct mlx4_dev *dev, u8 port, u32 base_qpn,
1386 u8 promisc);
1387int mlx4_SET_PORT_BEACON(struct mlx4_dev *dev, u8 port, u16 time);
1388int mlx4_SET_PORT_fcs_check(struct mlx4_dev *dev, u8 port,
1389 u8 ignore_fcs_value);
1390int mlx4_SET_PORT_VXLAN(struct mlx4_dev *dev, u8 port, u8 steering, int enable);
1391int set_phv_bit(struct mlx4_dev *dev, u8 port, int new_val);
1392int get_phv_bit(struct mlx4_dev *dev, u8 port, int *phv);
1393int mlx4_get_is_vlan_offload_disabled(struct mlx4_dev *dev, u8 port,
1394 bool *vlan_offload_disabled);
1395void mlx4_handle_eth_header_mcast_prio(struct mlx4_net_trans_rule_hw_ctrl *ctrl,
1396 struct _rule_hw *eth_header);
1397int mlx4_find_cached_mac(struct mlx4_dev *dev, u8 port, u64 mac, int *idx);
1398int mlx4_find_cached_vlan(struct mlx4_dev *dev, u8 port, u16 vid, int *idx);
1399int mlx4_register_vlan(struct mlx4_dev *dev, u8 port, u16 vlan, int *index);
1400void mlx4_unregister_vlan(struct mlx4_dev *dev, u8 port, u16 vlan);
1401
1402int mlx4_map_phys_fmr(struct mlx4_dev *dev, struct mlx4_fmr *fmr, u64 *page_list,
1403 int npages, u64 iova, u32 *lkey, u32 *rkey);
1404int mlx4_fmr_alloc(struct mlx4_dev *dev, u32 pd, u32 access, int max_pages,
1405 int max_maps, u8 page_shift, struct mlx4_fmr *fmr);
1406int mlx4_fmr_enable(struct mlx4_dev *dev, struct mlx4_fmr *fmr);
1407void mlx4_fmr_unmap(struct mlx4_dev *dev, struct mlx4_fmr *fmr,
1408 u32 *lkey, u32 *rkey);
1409int mlx4_fmr_free(struct mlx4_dev *dev, struct mlx4_fmr *fmr);
1410int mlx4_SYNC_TPT(struct mlx4_dev *dev);
1411int mlx4_test_interrupt(struct mlx4_dev *dev, int vector);
1412int mlx4_test_async(struct mlx4_dev *dev);
1413int mlx4_query_diag_counters(struct mlx4_dev *dev, u8 op_modifier,
1414 const u32 offset[], u32 value[],
1415 size_t array_len, u8 port);
1416u32 mlx4_get_eqs_per_port(struct mlx4_dev *dev, u8 port);
1417bool mlx4_is_eq_vector_valid(struct mlx4_dev *dev, u8 port, int vector);
1418struct cpu_rmap *mlx4_get_cpu_rmap(struct mlx4_dev *dev, int port);
1419int mlx4_assign_eq(struct mlx4_dev *dev, u8 port, int *vector);
1420void mlx4_release_eq(struct mlx4_dev *dev, int vec);
1421
1422int mlx4_is_eq_shared(struct mlx4_dev *dev, int vector);
1423int mlx4_eq_get_irq(struct mlx4_dev *dev, int vec);
1424
1425int mlx4_get_phys_port_id(struct mlx4_dev *dev);
1426int mlx4_wol_read(struct mlx4_dev *dev, u64 *config, int port);
1427int mlx4_wol_write(struct mlx4_dev *dev, u64 config, int port);
1428
1429int mlx4_counter_alloc(struct mlx4_dev *dev, u32 *idx, u8 usage);
1430void mlx4_counter_free(struct mlx4_dev *dev, u32 idx);
1431int mlx4_get_default_counter_index(struct mlx4_dev *dev, int port);
1432
1433void mlx4_set_admin_guid(struct mlx4_dev *dev, __be64 guid, int entry,
1434 int port);
1435__be64 mlx4_get_admin_guid(struct mlx4_dev *dev, int entry, int port);
1436void mlx4_set_random_admin_guid(struct mlx4_dev *dev, int entry, int port);
1437int mlx4_flow_attach(struct mlx4_dev *dev,
1438 struct mlx4_net_trans_rule *rule, u64 *reg_id);
1439int mlx4_flow_detach(struct mlx4_dev *dev, u64 reg_id);
1440int mlx4_map_sw_to_hw_steering_mode(struct mlx4_dev *dev,
1441 enum mlx4_net_trans_promisc_mode flow_type);
1442int mlx4_map_sw_to_hw_steering_id(struct mlx4_dev *dev,
1443 enum mlx4_net_trans_rule_id id);
1444int mlx4_hw_rule_sz(struct mlx4_dev *dev, enum mlx4_net_trans_rule_id id);
1445
1446int mlx4_tunnel_steer_add(struct mlx4_dev *dev, unsigned char *addr,
1447 int port, int qpn, u16 prio, u64 *reg_id);
1448
1449void mlx4_sync_pkey_table(struct mlx4_dev *dev, int slave, int port,
1450 int i, int val);
1451
1452int mlx4_get_parav_qkey(struct mlx4_dev *dev, u32 qpn, u32 *qkey);
1453
1454int mlx4_is_slave_active(struct mlx4_dev *dev, int slave);
1455int mlx4_gen_pkey_eqe(struct mlx4_dev *dev, int slave, u8 port);
1456int mlx4_gen_guid_change_eqe(struct mlx4_dev *dev, int slave, u8 port);
1457int mlx4_gen_slaves_port_mgt_ev(struct mlx4_dev *dev, u8 port, int attr);
1458int mlx4_gen_port_state_change_eqe(struct mlx4_dev *dev, int slave, u8 port, u8 port_subtype_change);
1459enum slave_port_state mlx4_get_slave_port_state(struct mlx4_dev *dev, int slave, u8 port);
1460int set_and_calc_slave_port_state(struct mlx4_dev *dev, int slave, u8 port, int event, enum slave_port_gen_event *gen_event);
1461
1462void mlx4_put_slave_node_guid(struct mlx4_dev *dev, int slave, __be64 guid);
1463__be64 mlx4_get_slave_node_guid(struct mlx4_dev *dev, int slave);
1464
1465int mlx4_get_slave_from_roce_gid(struct mlx4_dev *dev, int port, u8 *gid,
1466 int *slave_id);
1467int mlx4_get_roce_gid_from_slave(struct mlx4_dev *dev, int port, int slave_id,
1468 u8 *gid);
1469
1470int mlx4_FLOW_STEERING_IB_UC_QP_RANGE(struct mlx4_dev *dev, u32 min_range_qpn,
1471 u32 max_range_qpn);
1472
1473u64 mlx4_read_clock(struct mlx4_dev *dev);
1474
1475struct mlx4_active_ports {
1476 DECLARE_BITMAP(ports, MLX4_MAX_PORTS);
1477};
1478/* Returns a bitmap of the physical ports which are assigned to slave */
1479struct mlx4_active_ports mlx4_get_active_ports(struct mlx4_dev *dev, int slave);
1480
1481/* Returns the physical port that represents the virtual port of the slave, */
1482/* or a value < 0 in case of an error. If a slave has 2 ports, the identity */
1483/* mapping is returned. */
1484int mlx4_slave_convert_port(struct mlx4_dev *dev, int slave, int port);
1485
1486struct mlx4_slaves_pport {
1487 DECLARE_BITMAP(slaves, MLX4_MFUNC_MAX);
1488};
1489/* Returns a bitmap of all slaves that are assigned to port. */
1490struct mlx4_slaves_pport mlx4_phys_to_slaves_pport(struct mlx4_dev *dev,
1491 int port);
1492
1493/* Returns a bitmap of all slaves that are assigned exactly to all the */
1494/* the ports that are set in crit_ports. */
1495struct mlx4_slaves_pport mlx4_phys_to_slaves_pport_actv(
1496 struct mlx4_dev *dev,
1497 const struct mlx4_active_ports *crit_ports);
1498
1499/* Returns the slave's virtual port that represents the physical port. */
1500int mlx4_phys_to_slave_port(struct mlx4_dev *dev, int slave, int port);
1501
1502int mlx4_get_base_gid_ix(struct mlx4_dev *dev, int slave, int port);
1503
1504int mlx4_config_vxlan_port(struct mlx4_dev *dev, __be16 udp_port);
1505int mlx4_disable_rx_port_check(struct mlx4_dev *dev, bool dis);
1506int mlx4_config_roce_v2_port(struct mlx4_dev *dev, u16 udp_port);
1507int mlx4_virt2phy_port_map(struct mlx4_dev *dev, u32 port1, u32 port2);
1508int mlx4_vf_smi_enabled(struct mlx4_dev *dev, int slave, int port);
1509int mlx4_vf_get_enable_smi_admin(struct mlx4_dev *dev, int slave, int port);
1510int mlx4_vf_set_enable_smi_admin(struct mlx4_dev *dev, int slave, int port,
1511 int enable);
1512int mlx4_mr_hw_get_mpt(struct mlx4_dev *dev, struct mlx4_mr *mmr,
1513 struct mlx4_mpt_entry ***mpt_entry);
1514int mlx4_mr_hw_write_mpt(struct mlx4_dev *dev, struct mlx4_mr *mmr,
1515 struct mlx4_mpt_entry **mpt_entry);
1516int mlx4_mr_hw_change_pd(struct mlx4_dev *dev, struct mlx4_mpt_entry *mpt_entry,
1517 u32 pdn);
1518int mlx4_mr_hw_change_access(struct mlx4_dev *dev,
1519 struct mlx4_mpt_entry *mpt_entry,
1520 u32 access);
1521void mlx4_mr_hw_put_mpt(struct mlx4_dev *dev,
1522 struct mlx4_mpt_entry **mpt_entry);
1523void mlx4_mr_rereg_mem_cleanup(struct mlx4_dev *dev, struct mlx4_mr *mr);
1524int mlx4_mr_rereg_mem_write(struct mlx4_dev *dev, struct mlx4_mr *mr,
1525 u64 iova, u64 size, int npages,
1526 int page_shift, struct mlx4_mpt_entry *mpt_entry);
1527
1528int mlx4_get_module_info(struct mlx4_dev *dev, u8 port,
1529 u16 offset, u16 size, u8 *data);
1530int mlx4_max_tc(struct mlx4_dev *dev);
1531
1532/* Returns true if running in low memory profile (kdump kernel) */
1533static inline bool mlx4_low_memory_profile(void)
1534{
1535 return is_kdump_kernel();
1536}
1537
1538/* ACCESS REG commands */
1539enum mlx4_access_reg_method {
1540 MLX4_ACCESS_REG_QUERY = 0x1,
1541 MLX4_ACCESS_REG_WRITE = 0x2,
1542};
1543
1544/* ACCESS PTYS Reg command */
1545enum mlx4_ptys_proto {
1546 MLX4_PTYS_IB = 1<<0,
1547 MLX4_PTYS_EN = 1<<2,
1548};
1549
1550enum mlx4_ptys_flags {
1551 MLX4_PTYS_AN_DISABLE_CAP = 1 << 5,
1552 MLX4_PTYS_AN_DISABLE_ADMIN = 1 << 6,
1553};
1554
1555struct mlx4_ptys_reg {
1556 u8 flags;
1557 u8 local_port;
1558 u8 resrvd2;
1559 u8 proto_mask;
1560 __be32 resrvd3[2];
1561 __be32 eth_proto_cap;
1562 __be16 ib_width_cap;
1563 __be16 ib_speed_cap;
1564 __be32 resrvd4;
1565 __be32 eth_proto_admin;
1566 __be16 ib_width_admin;
1567 __be16 ib_speed_admin;
1568 __be32 resrvd5;
1569 __be32 eth_proto_oper;
1570 __be16 ib_width_oper;
1571 __be16 ib_speed_oper;
1572 __be32 resrvd6;
1573 __be32 eth_proto_lp_adv;
1574} __packed;
1575
1576int mlx4_ACCESS_PTYS_REG(struct mlx4_dev *dev,
1577 enum mlx4_access_reg_method method,
1578 struct mlx4_ptys_reg *ptys_reg);
1579
1580int mlx4_get_internal_clock_params(struct mlx4_dev *dev,
1581 struct mlx4_clock_params *params);
1582
1583static inline int mlx4_to_hw_uar_index(struct mlx4_dev *dev, int index)
1584{
1585 return (index << (PAGE_SHIFT - dev->uar_page_shift));
1586}
1587
1588static inline int mlx4_get_num_reserved_uar(struct mlx4_dev *dev)
1589{
1590 /* The first 128 UARs are used for EQ doorbells */
1591 return (128 >> (PAGE_SHIFT - dev->uar_page_shift));
1592}
1593#endif /* MLX4_DEVICE_H */