blob: a6dadae1f9989ff24f1e127f652238b863318e51 [file] [log] [blame]
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001/* QLogic qed NIC Driver
2 * Copyright (c) 2015-2017 QLogic Corporation
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 */
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +030032#include <linux/if_ether.h>
33#include <linux/if_vlan.h>
Kalderon, Michal65a91a62017-07-02 10:29:26 +030034#include <linux/ip.h>
35#include <linux/ipv6.h>
36#include <linux/spinlock.h>
37#include <linux/tcp.h>
Kalderon, Michal67b40dc2017-07-02 10:29:22 +030038#include "qed_cxt.h"
39#include "qed_hw.h"
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +030040#include "qed_ll2.h"
Kalderon, Michal67b40dc2017-07-02 10:29:22 +030041#include "qed_rdma.h"
42#include "qed_reg_addr.h"
43#include "qed_sp.h"
44
45#define QED_IWARP_ORD_DEFAULT 32
46#define QED_IWARP_IRD_DEFAULT 32
Kalderon, Michal456a5842017-07-02 10:29:27 +030047#define QED_IWARP_MAX_FW_MSS 4120
48
49#define QED_EP_SIG 0xecabcdef
50
51struct mpa_v2_hdr {
52 __be16 ird;
53 __be16 ord;
54};
55
56#define MPA_V2_PEER2PEER_MODEL 0x8000
57#define MPA_V2_SEND_RTR 0x4000 /* on ird */
58#define MPA_V2_READ_RTR 0x4000 /* on ord */
59#define MPA_V2_WRITE_RTR 0x8000
60#define MPA_V2_IRD_ORD_MASK 0x3FFF
61
62#define MPA_REV2(_mpa_rev) ((_mpa_rev) == MPA_NEGOTIATION_TYPE_ENHANCED)
63
64#define QED_IWARP_INVALID_TCP_CID 0xffffffff
Kalderon, Michal67b40dc2017-07-02 10:29:22 +030065#define QED_IWARP_RCV_WND_SIZE_DEF (256 * 1024)
66#define QED_IWARP_RCV_WND_SIZE_MIN (64 * 1024)
Kalderon, Michal456a5842017-07-02 10:29:27 +030067#define TIMESTAMP_HEADER_SIZE (12)
68
Kalderon, Michal67b40dc2017-07-02 10:29:22 +030069#define QED_IWARP_TS_EN BIT(0)
Kalderon, Michal456a5842017-07-02 10:29:27 +030070#define QED_IWARP_DA_EN BIT(1)
Kalderon, Michal67b40dc2017-07-02 10:29:22 +030071#define QED_IWARP_PARAM_CRC_NEEDED (1)
72#define QED_IWARP_PARAM_P2P (1)
73
74static int qed_iwarp_async_event(struct qed_hwfn *p_hwfn,
75 u8 fw_event_code, u16 echo,
76 union event_ring_data *data,
77 u8 fw_return_code);
78
79/* Override devinfo with iWARP specific values */
80void qed_iwarp_init_devinfo(struct qed_hwfn *p_hwfn)
81{
82 struct qed_rdma_device *dev = p_hwfn->p_rdma_info->dev;
83
84 dev->max_inline = IWARP_REQ_MAX_INLINE_DATA_SIZE;
85 dev->max_qp = min_t(u32,
86 IWARP_MAX_QPS,
Kalderon, Michal456a5842017-07-02 10:29:27 +030087 p_hwfn->p_rdma_info->num_qps) -
88 QED_IWARP_PREALLOC_CNT;
Kalderon, Michal67b40dc2017-07-02 10:29:22 +030089
90 dev->max_cq = dev->max_qp;
91
92 dev->max_qp_resp_rd_atomic_resc = QED_IWARP_IRD_DEFAULT;
93 dev->max_qp_req_rd_atomic_resc = QED_IWARP_ORD_DEFAULT;
94}
95
96void qed_iwarp_init_hw(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
97{
98 p_hwfn->rdma_prs_search_reg = PRS_REG_SEARCH_TCP;
99 qed_wr(p_hwfn, p_ptt, p_hwfn->rdma_prs_search_reg, 1);
100 p_hwfn->b_rdma_enabled_in_prs = true;
101}
102
Kalderon, Michal456a5842017-07-02 10:29:27 +0300103/* We have two cid maps, one for tcp which should be used only from passive
104 * syn processing and replacing a pre-allocated ep in the list. The second
105 * for active tcp and for QPs.
106 */
Kalderon, Michal67b40dc2017-07-02 10:29:22 +0300107static void qed_iwarp_cid_cleaned(struct qed_hwfn *p_hwfn, u32 cid)
108{
109 cid -= qed_cxt_get_proto_cid_start(p_hwfn, p_hwfn->p_rdma_info->proto);
110
111 spin_lock_bh(&p_hwfn->p_rdma_info->lock);
Kalderon, Michal456a5842017-07-02 10:29:27 +0300112
113 if (cid < QED_IWARP_PREALLOC_CNT)
114 qed_bmap_release_id(p_hwfn, &p_hwfn->p_rdma_info->tcp_cid_map,
115 cid);
116 else
117 qed_bmap_release_id(p_hwfn, &p_hwfn->p_rdma_info->cid_map, cid);
118
Kalderon, Michal67b40dc2017-07-02 10:29:22 +0300119 spin_unlock_bh(&p_hwfn->p_rdma_info->lock);
120}
121
122static int qed_iwarp_alloc_cid(struct qed_hwfn *p_hwfn, u32 *cid)
123{
124 int rc;
125
126 spin_lock_bh(&p_hwfn->p_rdma_info->lock);
127 rc = qed_rdma_bmap_alloc_id(p_hwfn, &p_hwfn->p_rdma_info->cid_map, cid);
128 spin_unlock_bh(&p_hwfn->p_rdma_info->lock);
129 if (rc) {
130 DP_NOTICE(p_hwfn, "Failed in allocating iwarp cid\n");
131 return rc;
132 }
133 *cid += qed_cxt_get_proto_cid_start(p_hwfn, p_hwfn->p_rdma_info->proto);
134
135 rc = qed_cxt_dynamic_ilt_alloc(p_hwfn, QED_ELEM_CXT, *cid);
136 if (rc)
137 qed_iwarp_cid_cleaned(p_hwfn, *cid);
138
139 return rc;
140}
141
Kalderon, Michal456a5842017-07-02 10:29:27 +0300142static void qed_iwarp_set_tcp_cid(struct qed_hwfn *p_hwfn, u32 cid)
143{
144 cid -= qed_cxt_get_proto_cid_start(p_hwfn, p_hwfn->p_rdma_info->proto);
145
146 spin_lock_bh(&p_hwfn->p_rdma_info->lock);
147 qed_bmap_set_id(p_hwfn, &p_hwfn->p_rdma_info->tcp_cid_map, cid);
148 spin_unlock_bh(&p_hwfn->p_rdma_info->lock);
149}
150
151/* This function allocates a cid for passive tcp (called from syn receive)
152 * the reason it's separate from the regular cid allocation is because it
153 * is assured that these cids already have ilt allocated. They are preallocated
154 * to ensure that we won't need to allocate memory during syn processing
155 */
156static int qed_iwarp_alloc_tcp_cid(struct qed_hwfn *p_hwfn, u32 *cid)
157{
158 int rc;
159
160 spin_lock_bh(&p_hwfn->p_rdma_info->lock);
161
162 rc = qed_rdma_bmap_alloc_id(p_hwfn,
163 &p_hwfn->p_rdma_info->tcp_cid_map, cid);
164
165 spin_unlock_bh(&p_hwfn->p_rdma_info->lock);
166
167 if (rc) {
168 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
169 "can't allocate iwarp tcp cid max-count=%d\n",
170 p_hwfn->p_rdma_info->tcp_cid_map.max_count);
171
172 *cid = QED_IWARP_INVALID_TCP_CID;
173 return rc;
174 }
175
176 *cid += qed_cxt_get_proto_cid_start(p_hwfn,
177 p_hwfn->p_rdma_info->proto);
178 return 0;
179}
180
Kalderon, Michal67b40dc2017-07-02 10:29:22 +0300181int qed_iwarp_create_qp(struct qed_hwfn *p_hwfn,
182 struct qed_rdma_qp *qp,
183 struct qed_rdma_create_qp_out_params *out_params)
184{
185 struct iwarp_create_qp_ramrod_data *p_ramrod;
186 struct qed_sp_init_data init_data;
187 struct qed_spq_entry *p_ent;
188 u16 physical_queue;
189 u32 cid;
190 int rc;
191
192 qp->shared_queue = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev,
193 IWARP_SHARED_QUEUE_PAGE_SIZE,
194 &qp->shared_queue_phys_addr,
195 GFP_KERNEL);
196 if (!qp->shared_queue)
197 return -ENOMEM;
198
199 out_params->sq_pbl_virt = (u8 *)qp->shared_queue +
200 IWARP_SHARED_QUEUE_PAGE_SQ_PBL_OFFSET;
201 out_params->sq_pbl_phys = qp->shared_queue_phys_addr +
202 IWARP_SHARED_QUEUE_PAGE_SQ_PBL_OFFSET;
203 out_params->rq_pbl_virt = (u8 *)qp->shared_queue +
204 IWARP_SHARED_QUEUE_PAGE_RQ_PBL_OFFSET;
205 out_params->rq_pbl_phys = qp->shared_queue_phys_addr +
206 IWARP_SHARED_QUEUE_PAGE_RQ_PBL_OFFSET;
207
208 rc = qed_iwarp_alloc_cid(p_hwfn, &cid);
209 if (rc)
210 goto err1;
211
212 qp->icid = (u16)cid;
213
214 memset(&init_data, 0, sizeof(init_data));
215 init_data.opaque_fid = p_hwfn->hw_info.opaque_fid;
216 init_data.cid = qp->icid;
217 init_data.comp_mode = QED_SPQ_MODE_EBLOCK;
218
219 rc = qed_sp_init_request(p_hwfn, &p_ent,
220 IWARP_RAMROD_CMD_ID_CREATE_QP,
221 PROTOCOLID_IWARP, &init_data);
222 if (rc)
223 goto err2;
224
225 p_ramrod = &p_ent->ramrod.iwarp_create_qp;
226
227 SET_FIELD(p_ramrod->flags,
228 IWARP_CREATE_QP_RAMROD_DATA_FMR_AND_RESERVED_EN,
229 qp->fmr_and_reserved_lkey);
230
231 SET_FIELD(p_ramrod->flags,
232 IWARP_CREATE_QP_RAMROD_DATA_SIGNALED_COMP, qp->signal_all);
233
234 SET_FIELD(p_ramrod->flags,
235 IWARP_CREATE_QP_RAMROD_DATA_RDMA_RD_EN,
236 qp->incoming_rdma_read_en);
237
238 SET_FIELD(p_ramrod->flags,
239 IWARP_CREATE_QP_RAMROD_DATA_RDMA_WR_EN,
240 qp->incoming_rdma_write_en);
241
242 SET_FIELD(p_ramrod->flags,
243 IWARP_CREATE_QP_RAMROD_DATA_ATOMIC_EN,
244 qp->incoming_atomic_en);
245
246 SET_FIELD(p_ramrod->flags,
247 IWARP_CREATE_QP_RAMROD_DATA_SRQ_FLG, qp->use_srq);
248
249 p_ramrod->pd = qp->pd;
250 p_ramrod->sq_num_pages = qp->sq_num_pages;
251 p_ramrod->rq_num_pages = qp->rq_num_pages;
252
253 p_ramrod->qp_handle_for_cqe.hi = cpu_to_le32(qp->qp_handle.hi);
254 p_ramrod->qp_handle_for_cqe.lo = cpu_to_le32(qp->qp_handle.lo);
255
256 p_ramrod->cq_cid_for_sq =
257 cpu_to_le32((p_hwfn->hw_info.opaque_fid << 16) | qp->sq_cq_id);
258 p_ramrod->cq_cid_for_rq =
259 cpu_to_le32((p_hwfn->hw_info.opaque_fid << 16) | qp->rq_cq_id);
260
261 p_ramrod->dpi = cpu_to_le16(qp->dpi);
262
263 physical_queue = qed_get_cm_pq_idx(p_hwfn, PQ_FLAGS_OFLD);
264 p_ramrod->physical_q0 = cpu_to_le16(physical_queue);
265 physical_queue = qed_get_cm_pq_idx(p_hwfn, PQ_FLAGS_ACK);
266 p_ramrod->physical_q1 = cpu_to_le16(physical_queue);
267
268 rc = qed_spq_post(p_hwfn, p_ent, NULL);
269 if (rc)
270 goto err2;
271
272 return rc;
273
274err2:
275 qed_iwarp_cid_cleaned(p_hwfn, cid);
276err1:
277 dma_free_coherent(&p_hwfn->cdev->pdev->dev,
278 IWARP_SHARED_QUEUE_PAGE_SIZE,
279 qp->shared_queue, qp->shared_queue_phys_addr);
280
281 return rc;
282}
283
284static int qed_iwarp_modify_fw(struct qed_hwfn *p_hwfn, struct qed_rdma_qp *qp)
285{
286 struct iwarp_modify_qp_ramrod_data *p_ramrod;
287 struct qed_sp_init_data init_data;
288 struct qed_spq_entry *p_ent;
289 int rc;
290
291 /* Get SPQ entry */
292 memset(&init_data, 0, sizeof(init_data));
293 init_data.cid = qp->icid;
294 init_data.opaque_fid = p_hwfn->hw_info.opaque_fid;
295 init_data.comp_mode = QED_SPQ_MODE_EBLOCK;
296
297 rc = qed_sp_init_request(p_hwfn, &p_ent,
298 IWARP_RAMROD_CMD_ID_MODIFY_QP,
299 p_hwfn->p_rdma_info->proto, &init_data);
300 if (rc)
301 return rc;
302
303 p_ramrod = &p_ent->ramrod.iwarp_modify_qp;
304 SET_FIELD(p_ramrod->flags, IWARP_MODIFY_QP_RAMROD_DATA_STATE_TRANS_EN,
305 0x1);
306 if (qp->iwarp_state == QED_IWARP_QP_STATE_CLOSING)
307 p_ramrod->transition_to_state = IWARP_MODIFY_QP_STATE_CLOSING;
308 else
309 p_ramrod->transition_to_state = IWARP_MODIFY_QP_STATE_ERROR;
310
311 rc = qed_spq_post(p_hwfn, p_ent, NULL);
312
313 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "QP(0x%x)rc=%d\n", qp->icid, rc);
314
315 return rc;
316}
317
318enum qed_iwarp_qp_state qed_roce2iwarp_state(enum qed_roce_qp_state state)
319{
320 switch (state) {
321 case QED_ROCE_QP_STATE_RESET:
322 case QED_ROCE_QP_STATE_INIT:
323 case QED_ROCE_QP_STATE_RTR:
324 return QED_IWARP_QP_STATE_IDLE;
325 case QED_ROCE_QP_STATE_RTS:
326 return QED_IWARP_QP_STATE_RTS;
327 case QED_ROCE_QP_STATE_SQD:
328 return QED_IWARP_QP_STATE_CLOSING;
329 case QED_ROCE_QP_STATE_ERR:
330 return QED_IWARP_QP_STATE_ERROR;
331 case QED_ROCE_QP_STATE_SQE:
332 return QED_IWARP_QP_STATE_TERMINATE;
333 default:
334 return QED_IWARP_QP_STATE_ERROR;
335 }
336}
337
338static enum qed_roce_qp_state
339qed_iwarp2roce_state(enum qed_iwarp_qp_state state)
340{
341 switch (state) {
342 case QED_IWARP_QP_STATE_IDLE:
343 return QED_ROCE_QP_STATE_INIT;
344 case QED_IWARP_QP_STATE_RTS:
345 return QED_ROCE_QP_STATE_RTS;
346 case QED_IWARP_QP_STATE_TERMINATE:
347 return QED_ROCE_QP_STATE_SQE;
348 case QED_IWARP_QP_STATE_CLOSING:
349 return QED_ROCE_QP_STATE_SQD;
350 case QED_IWARP_QP_STATE_ERROR:
351 return QED_ROCE_QP_STATE_ERR;
352 default:
353 return QED_ROCE_QP_STATE_ERR;
354 }
355}
356
357const char *iwarp_state_names[] = {
358 "IDLE",
359 "RTS",
360 "TERMINATE",
361 "CLOSING",
362 "ERROR",
363};
364
365int
366qed_iwarp_modify_qp(struct qed_hwfn *p_hwfn,
367 struct qed_rdma_qp *qp,
368 enum qed_iwarp_qp_state new_state, bool internal)
369{
370 enum qed_iwarp_qp_state prev_iw_state;
371 bool modify_fw = false;
372 int rc = 0;
373
374 /* modify QP can be called from upper-layer or as a result of async
375 * RST/FIN... therefore need to protect
376 */
377 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.qp_lock);
378 prev_iw_state = qp->iwarp_state;
379
380 if (prev_iw_state == new_state) {
381 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.qp_lock);
382 return 0;
383 }
384
385 switch (prev_iw_state) {
386 case QED_IWARP_QP_STATE_IDLE:
387 switch (new_state) {
388 case QED_IWARP_QP_STATE_RTS:
389 qp->iwarp_state = QED_IWARP_QP_STATE_RTS;
390 break;
391 case QED_IWARP_QP_STATE_ERROR:
392 qp->iwarp_state = QED_IWARP_QP_STATE_ERROR;
393 if (!internal)
394 modify_fw = true;
395 break;
396 default:
397 break;
398 }
399 break;
400 case QED_IWARP_QP_STATE_RTS:
401 switch (new_state) {
402 case QED_IWARP_QP_STATE_CLOSING:
403 if (!internal)
404 modify_fw = true;
405
406 qp->iwarp_state = QED_IWARP_QP_STATE_CLOSING;
407 break;
408 case QED_IWARP_QP_STATE_ERROR:
409 if (!internal)
410 modify_fw = true;
411 qp->iwarp_state = QED_IWARP_QP_STATE_ERROR;
412 break;
413 default:
414 break;
415 }
416 break;
417 case QED_IWARP_QP_STATE_ERROR:
418 switch (new_state) {
419 case QED_IWARP_QP_STATE_IDLE:
420
421 qp->iwarp_state = new_state;
422 break;
423 case QED_IWARP_QP_STATE_CLOSING:
424 /* could happen due to race... do nothing.... */
425 break;
426 default:
427 rc = -EINVAL;
428 }
429 break;
430 case QED_IWARP_QP_STATE_TERMINATE:
431 case QED_IWARP_QP_STATE_CLOSING:
432 qp->iwarp_state = new_state;
433 break;
434 default:
435 break;
436 }
437
438 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "QP(0x%x) %s --> %s%s\n",
439 qp->icid,
440 iwarp_state_names[prev_iw_state],
441 iwarp_state_names[qp->iwarp_state],
442 internal ? "internal" : "");
443
444 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.qp_lock);
445
446 if (modify_fw)
447 rc = qed_iwarp_modify_fw(p_hwfn, qp);
448
449 return rc;
450}
451
452int qed_iwarp_fw_destroy(struct qed_hwfn *p_hwfn, struct qed_rdma_qp *qp)
453{
454 struct qed_sp_init_data init_data;
455 struct qed_spq_entry *p_ent;
456 int rc;
457
458 /* Get SPQ entry */
459 memset(&init_data, 0, sizeof(init_data));
460 init_data.cid = qp->icid;
461 init_data.opaque_fid = p_hwfn->hw_info.opaque_fid;
462 init_data.comp_mode = QED_SPQ_MODE_EBLOCK;
463
464 rc = qed_sp_init_request(p_hwfn, &p_ent,
465 IWARP_RAMROD_CMD_ID_DESTROY_QP,
466 p_hwfn->p_rdma_info->proto, &init_data);
467 if (rc)
468 return rc;
469
470 rc = qed_spq_post(p_hwfn, p_ent, NULL);
471
472 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "QP(0x%x) rc = %d\n", qp->icid, rc);
473
474 return rc;
475}
476
Kalderon, Michal456a5842017-07-02 10:29:27 +0300477static void qed_iwarp_destroy_ep(struct qed_hwfn *p_hwfn,
478 struct qed_iwarp_ep *ep,
479 bool remove_from_active_list)
480{
481 dma_free_coherent(&p_hwfn->cdev->pdev->dev,
482 sizeof(*ep->ep_buffer_virt),
483 ep->ep_buffer_virt, ep->ep_buffer_phys);
484
485 if (remove_from_active_list) {
486 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
487 list_del(&ep->list_entry);
488 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
489 }
490
491 if (ep->qp)
492 ep->qp->ep = NULL;
493
494 kfree(ep);
495}
496
Kalderon, Michal67b40dc2017-07-02 10:29:22 +0300497int qed_iwarp_destroy_qp(struct qed_hwfn *p_hwfn, struct qed_rdma_qp *qp)
498{
499 int rc = 0;
500
501 if (qp->iwarp_state != QED_IWARP_QP_STATE_ERROR) {
502 rc = qed_iwarp_modify_qp(p_hwfn, qp,
503 QED_IWARP_QP_STATE_ERROR, false);
504 if (rc)
505 return rc;
506 }
507
508 rc = qed_iwarp_fw_destroy(p_hwfn, qp);
509
510 if (qp->shared_queue)
511 dma_free_coherent(&p_hwfn->cdev->pdev->dev,
512 IWARP_SHARED_QUEUE_PAGE_SIZE,
513 qp->shared_queue, qp->shared_queue_phys_addr);
514
515 return rc;
516}
517
Kalderon, Michal456a5842017-07-02 10:29:27 +0300518static int
519qed_iwarp_create_ep(struct qed_hwfn *p_hwfn, struct qed_iwarp_ep **ep_out)
520{
521 struct qed_iwarp_ep *ep;
522 int rc;
523
524 ep = kzalloc(sizeof(*ep), GFP_KERNEL);
525 if (!ep)
526 return -ENOMEM;
527
528 ep->state = QED_IWARP_EP_INIT;
529
530 ep->ep_buffer_virt = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev,
531 sizeof(*ep->ep_buffer_virt),
532 &ep->ep_buffer_phys,
533 GFP_KERNEL);
534 if (!ep->ep_buffer_virt) {
535 rc = -ENOMEM;
536 goto err;
537 }
538
539 ep->sig = QED_EP_SIG;
540
541 *ep_out = ep;
542
543 return 0;
544
545err:
546 kfree(ep);
547 return rc;
548}
549
550static void
551qed_iwarp_print_tcp_ramrod(struct qed_hwfn *p_hwfn,
552 struct iwarp_tcp_offload_ramrod_data *p_tcp_ramrod)
553{
554 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "local_mac=%x %x %x, remote_mac=%x %x %x\n",
555 p_tcp_ramrod->tcp.local_mac_addr_lo,
556 p_tcp_ramrod->tcp.local_mac_addr_mid,
557 p_tcp_ramrod->tcp.local_mac_addr_hi,
558 p_tcp_ramrod->tcp.remote_mac_addr_lo,
559 p_tcp_ramrod->tcp.remote_mac_addr_mid,
560 p_tcp_ramrod->tcp.remote_mac_addr_hi);
561
562 if (p_tcp_ramrod->tcp.ip_version == TCP_IPV4) {
563 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
564 "local_ip=%pI4h:%x, remote_ip=%pI4h%x, vlan=%x\n",
565 p_tcp_ramrod->tcp.local_ip,
566 p_tcp_ramrod->tcp.local_port,
567 p_tcp_ramrod->tcp.remote_ip,
568 p_tcp_ramrod->tcp.remote_port,
569 p_tcp_ramrod->tcp.vlan_id);
570 } else {
571 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
572 "local_ip=%pI6h:%x, remote_ip=%pI6h:%x, vlan=%x\n",
573 p_tcp_ramrod->tcp.local_ip,
574 p_tcp_ramrod->tcp.local_port,
575 p_tcp_ramrod->tcp.remote_ip,
576 p_tcp_ramrod->tcp.remote_port,
577 p_tcp_ramrod->tcp.vlan_id);
578 }
579
580 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
581 "flow_label=%x, ttl=%x, tos_or_tc=%x, mss=%x, rcv_wnd_scale=%x, connect_mode=%x, flags=%x\n",
582 p_tcp_ramrod->tcp.flow_label,
583 p_tcp_ramrod->tcp.ttl,
584 p_tcp_ramrod->tcp.tos_or_tc,
585 p_tcp_ramrod->tcp.mss,
586 p_tcp_ramrod->tcp.rcv_wnd_scale,
587 p_tcp_ramrod->tcp.connect_mode,
588 p_tcp_ramrod->tcp.flags);
589
590 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "syn_ip_payload_length=%x, lo=%x, hi=%x\n",
591 p_tcp_ramrod->tcp.syn_ip_payload_length,
592 p_tcp_ramrod->tcp.syn_phy_addr_lo,
593 p_tcp_ramrod->tcp.syn_phy_addr_hi);
594}
595
596static int
597qed_iwarp_tcp_offload(struct qed_hwfn *p_hwfn, struct qed_iwarp_ep *ep)
598{
599 struct qed_iwarp_info *iwarp_info = &p_hwfn->p_rdma_info->iwarp;
600 struct iwarp_tcp_offload_ramrod_data *p_tcp_ramrod;
601 struct tcp_offload_params_opt2 *tcp;
602 struct qed_sp_init_data init_data;
603 struct qed_spq_entry *p_ent;
604 dma_addr_t async_output_phys;
605 dma_addr_t in_pdata_phys;
606 u16 physical_q;
607 u8 tcp_flags;
608 int rc;
609 int i;
610
611 memset(&init_data, 0, sizeof(init_data));
612 init_data.cid = ep->tcp_cid;
613 init_data.opaque_fid = p_hwfn->hw_info.opaque_fid;
614 init_data.comp_mode = QED_SPQ_MODE_CB;
615
616 rc = qed_sp_init_request(p_hwfn, &p_ent,
617 IWARP_RAMROD_CMD_ID_TCP_OFFLOAD,
618 PROTOCOLID_IWARP, &init_data);
619 if (rc)
620 return rc;
621
622 p_tcp_ramrod = &p_ent->ramrod.iwarp_tcp_offload;
623
624 in_pdata_phys = ep->ep_buffer_phys +
625 offsetof(struct qed_iwarp_ep_memory, in_pdata);
626 DMA_REGPAIR_LE(p_tcp_ramrod->iwarp.incoming_ulp_buffer.addr,
627 in_pdata_phys);
628
629 p_tcp_ramrod->iwarp.incoming_ulp_buffer.len =
630 cpu_to_le16(sizeof(ep->ep_buffer_virt->in_pdata));
631
632 async_output_phys = ep->ep_buffer_phys +
633 offsetof(struct qed_iwarp_ep_memory, async_output);
634 DMA_REGPAIR_LE(p_tcp_ramrod->iwarp.async_eqe_output_buf,
635 async_output_phys);
636
637 p_tcp_ramrod->iwarp.handle_for_async.hi = cpu_to_le32(PTR_HI(ep));
638 p_tcp_ramrod->iwarp.handle_for_async.lo = cpu_to_le32(PTR_LO(ep));
639
640 physical_q = qed_get_cm_pq_idx(p_hwfn, PQ_FLAGS_OFLD);
641 p_tcp_ramrod->iwarp.physical_q0 = cpu_to_le16(physical_q);
642 physical_q = qed_get_cm_pq_idx(p_hwfn, PQ_FLAGS_ACK);
643 p_tcp_ramrod->iwarp.physical_q1 = cpu_to_le16(physical_q);
644 p_tcp_ramrod->iwarp.mpa_mode = iwarp_info->mpa_rev;
645
646 tcp = &p_tcp_ramrod->tcp;
647 qed_set_fw_mac_addr(&tcp->remote_mac_addr_hi,
648 &tcp->remote_mac_addr_mid,
649 &tcp->remote_mac_addr_lo, ep->remote_mac_addr);
650 qed_set_fw_mac_addr(&tcp->local_mac_addr_hi, &tcp->local_mac_addr_mid,
651 &tcp->local_mac_addr_lo, ep->local_mac_addr);
652
653 tcp->vlan_id = cpu_to_le16(ep->cm_info.vlan);
654
655 tcp_flags = p_hwfn->p_rdma_info->iwarp.tcp_flags;
656 tcp->flags = 0;
657 SET_FIELD(tcp->flags, TCP_OFFLOAD_PARAMS_OPT2_TS_EN,
658 !!(tcp_flags & QED_IWARP_TS_EN));
659
660 SET_FIELD(tcp->flags, TCP_OFFLOAD_PARAMS_OPT2_DA_EN,
661 !!(tcp_flags & QED_IWARP_DA_EN));
662
663 tcp->ip_version = ep->cm_info.ip_version;
664
665 for (i = 0; i < 4; i++) {
666 tcp->remote_ip[i] = cpu_to_le32(ep->cm_info.remote_ip[i]);
667 tcp->local_ip[i] = cpu_to_le32(ep->cm_info.local_ip[i]);
668 }
669
670 tcp->remote_port = cpu_to_le16(ep->cm_info.remote_port);
671 tcp->local_port = cpu_to_le16(ep->cm_info.local_port);
672 tcp->mss = cpu_to_le16(ep->mss);
673 tcp->flow_label = 0;
674 tcp->ttl = 0x40;
675 tcp->tos_or_tc = 0;
676
677 tcp->rcv_wnd_scale = (u8)p_hwfn->p_rdma_info->iwarp.rcv_wnd_scale;
678 tcp->connect_mode = ep->connect_mode;
679
680 if (ep->connect_mode == TCP_CONNECT_PASSIVE) {
681 tcp->syn_ip_payload_length =
682 cpu_to_le16(ep->syn_ip_payload_length);
683 tcp->syn_phy_addr_hi = DMA_HI_LE(ep->syn_phy_addr);
684 tcp->syn_phy_addr_lo = DMA_LO_LE(ep->syn_phy_addr);
685 }
686
687 qed_iwarp_print_tcp_ramrod(p_hwfn, p_tcp_ramrod);
688
689 rc = qed_spq_post(p_hwfn, p_ent, NULL);
690
691 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
692 "EP(0x%x) Offload completed rc=%d\n", ep->tcp_cid, rc);
693
694 return rc;
695}
696
697static void
698qed_iwarp_mpa_received(struct qed_hwfn *p_hwfn, struct qed_iwarp_ep *ep)
699{
700 struct qed_iwarp_info *iwarp_info = &p_hwfn->p_rdma_info->iwarp;
701 struct qed_iwarp_cm_event_params params;
702 struct mpa_v2_hdr *mpa_v2;
703 union async_output *async_data;
704 u16 mpa_ord, mpa_ird;
705 u8 mpa_hdr_size = 0;
706 u8 mpa_rev;
707
708 async_data = &ep->ep_buffer_virt->async_output;
709
710 mpa_rev = async_data->mpa_request.mpa_handshake_mode;
711 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
712 "private_data_len=%x handshake_mode=%x private_data=(%x)\n",
713 async_data->mpa_request.ulp_data_len,
714 mpa_rev, *((u32 *)((u8 *)ep->ep_buffer_virt->in_pdata)));
715
716 if (mpa_rev == MPA_NEGOTIATION_TYPE_ENHANCED) {
717 /* Read ord/ird values from private data buffer */
718 mpa_v2 = (struct mpa_v2_hdr *)ep->ep_buffer_virt->in_pdata;
719 mpa_hdr_size = sizeof(*mpa_v2);
720
721 mpa_ord = ntohs(mpa_v2->ord);
722 mpa_ird = ntohs(mpa_v2->ird);
723
724 /* Temprary store in cm_info incoming ord/ird requested, later
725 * replace with negotiated value during accept
726 */
727 ep->cm_info.ord = (u8)min_t(u16,
728 (mpa_ord & MPA_V2_IRD_ORD_MASK),
729 QED_IWARP_ORD_DEFAULT);
730
731 ep->cm_info.ird = (u8)min_t(u16,
732 (mpa_ird & MPA_V2_IRD_ORD_MASK),
733 QED_IWARP_IRD_DEFAULT);
734
735 /* Peer2Peer negotiation */
736 ep->rtr_type = MPA_RTR_TYPE_NONE;
737 if (mpa_ird & MPA_V2_PEER2PEER_MODEL) {
738 if (mpa_ord & MPA_V2_WRITE_RTR)
739 ep->rtr_type |= MPA_RTR_TYPE_ZERO_WRITE;
740
741 if (mpa_ord & MPA_V2_READ_RTR)
742 ep->rtr_type |= MPA_RTR_TYPE_ZERO_READ;
743
744 if (mpa_ird & MPA_V2_SEND_RTR)
745 ep->rtr_type |= MPA_RTR_TYPE_ZERO_SEND;
746
747 ep->rtr_type &= iwarp_info->rtr_type;
748
749 /* if we're left with no match send our capabilities */
750 if (ep->rtr_type == MPA_RTR_TYPE_NONE)
751 ep->rtr_type = iwarp_info->rtr_type;
752 }
753
754 ep->mpa_rev = MPA_NEGOTIATION_TYPE_ENHANCED;
755 } else {
756 ep->cm_info.ord = QED_IWARP_ORD_DEFAULT;
757 ep->cm_info.ird = QED_IWARP_IRD_DEFAULT;
758 ep->mpa_rev = MPA_NEGOTIATION_TYPE_BASIC;
759 }
760
761 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
762 "MPA_NEGOTIATE (v%d): ORD: 0x%x IRD: 0x%x rtr:0x%x ulp_data_len = %x mpa_hdr_size = %x\n",
763 mpa_rev, ep->cm_info.ord, ep->cm_info.ird, ep->rtr_type,
764 async_data->mpa_request.ulp_data_len, mpa_hdr_size);
765
766 /* Strip mpa v2 hdr from private data before sending to upper layer */
767 ep->cm_info.private_data = ep->ep_buffer_virt->in_pdata + mpa_hdr_size;
768
769 ep->cm_info.private_data_len = async_data->mpa_request.ulp_data_len -
770 mpa_hdr_size;
771
772 params.event = QED_IWARP_EVENT_MPA_REQUEST;
773 params.cm_info = &ep->cm_info;
774 params.ep_context = ep;
775 params.status = 0;
776
777 ep->state = QED_IWARP_EP_MPA_REQ_RCVD;
778 ep->event_cb(ep->cb_context, &params);
779}
780
781static int
782qed_iwarp_mpa_offload(struct qed_hwfn *p_hwfn, struct qed_iwarp_ep *ep)
783{
784 struct iwarp_mpa_offload_ramrod_data *p_mpa_ramrod;
785 struct qed_sp_init_data init_data;
786 dma_addr_t async_output_phys;
787 struct qed_spq_entry *p_ent;
788 dma_addr_t out_pdata_phys;
789 dma_addr_t in_pdata_phys;
790 struct qed_rdma_qp *qp;
791 bool reject;
792 int rc;
793
794 if (!ep)
795 return -EINVAL;
796
797 qp = ep->qp;
798 reject = !qp;
799
800 memset(&init_data, 0, sizeof(init_data));
801 init_data.cid = reject ? ep->tcp_cid : qp->icid;
802 init_data.opaque_fid = p_hwfn->hw_info.opaque_fid;
803
804 init_data.comp_mode = QED_SPQ_MODE_EBLOCK;
805
806 rc = qed_sp_init_request(p_hwfn, &p_ent,
807 IWARP_RAMROD_CMD_ID_MPA_OFFLOAD,
808 PROTOCOLID_IWARP, &init_data);
809 if (rc)
810 return rc;
811
812 p_mpa_ramrod = &p_ent->ramrod.iwarp_mpa_offload;
813 out_pdata_phys = ep->ep_buffer_phys +
814 offsetof(struct qed_iwarp_ep_memory, out_pdata);
815 DMA_REGPAIR_LE(p_mpa_ramrod->common.outgoing_ulp_buffer.addr,
816 out_pdata_phys);
817 p_mpa_ramrod->common.outgoing_ulp_buffer.len =
818 ep->cm_info.private_data_len;
819 p_mpa_ramrod->common.crc_needed = p_hwfn->p_rdma_info->iwarp.crc_needed;
820
821 p_mpa_ramrod->common.out_rq.ord = ep->cm_info.ord;
822 p_mpa_ramrod->common.out_rq.ird = ep->cm_info.ird;
823
824 p_mpa_ramrod->tcp_cid = p_hwfn->hw_info.opaque_fid << 16 | ep->tcp_cid;
825
826 in_pdata_phys = ep->ep_buffer_phys +
827 offsetof(struct qed_iwarp_ep_memory, in_pdata);
828 p_mpa_ramrod->tcp_connect_side = ep->connect_mode;
829 DMA_REGPAIR_LE(p_mpa_ramrod->incoming_ulp_buffer.addr,
830 in_pdata_phys);
831 p_mpa_ramrod->incoming_ulp_buffer.len =
832 cpu_to_le16(sizeof(ep->ep_buffer_virt->in_pdata));
833 async_output_phys = ep->ep_buffer_phys +
834 offsetof(struct qed_iwarp_ep_memory, async_output);
835 DMA_REGPAIR_LE(p_mpa_ramrod->async_eqe_output_buf,
836 async_output_phys);
837 p_mpa_ramrod->handle_for_async.hi = cpu_to_le32(PTR_HI(ep));
838 p_mpa_ramrod->handle_for_async.lo = cpu_to_le32(PTR_LO(ep));
839
840 if (!reject) {
841 DMA_REGPAIR_LE(p_mpa_ramrod->shared_queue_addr,
842 qp->shared_queue_phys_addr);
843 p_mpa_ramrod->stats_counter_id =
844 RESC_START(p_hwfn, QED_RDMA_STATS_QUEUE) + qp->stats_queue;
845 } else {
846 p_mpa_ramrod->common.reject = 1;
847 }
848
849 p_mpa_ramrod->mode = ep->mpa_rev;
850 SET_FIELD(p_mpa_ramrod->rtr_pref,
851 IWARP_MPA_OFFLOAD_RAMROD_DATA_RTR_SUPPORTED, ep->rtr_type);
852
853 ep->state = QED_IWARP_EP_MPA_OFFLOADED;
854 rc = qed_spq_post(p_hwfn, p_ent, NULL);
855 if (!reject)
856 ep->cid = qp->icid; /* Now they're migrated. */
857
858 DP_VERBOSE(p_hwfn,
859 QED_MSG_RDMA,
860 "QP(0x%x) EP(0x%x) MPA Offload rc = %d IRD=0x%x ORD=0x%x rtr_type=%d mpa_rev=%d reject=%d\n",
861 reject ? 0xffff : qp->icid,
862 ep->tcp_cid,
863 rc,
864 ep->cm_info.ird,
865 ep->cm_info.ord, ep->rtr_type, ep->mpa_rev, reject);
866 return rc;
867}
868
869static void
870qed_iwarp_return_ep(struct qed_hwfn *p_hwfn, struct qed_iwarp_ep *ep)
871{
872 ep->state = QED_IWARP_EP_INIT;
873 if (ep->qp)
874 ep->qp->ep = NULL;
875 ep->qp = NULL;
876 memset(&ep->cm_info, 0, sizeof(ep->cm_info));
877
878 if (ep->tcp_cid == QED_IWARP_INVALID_TCP_CID) {
879 /* We don't care about the return code, it's ok if tcp_cid
880 * remains invalid...in this case we'll defer allocation
881 */
882 qed_iwarp_alloc_tcp_cid(p_hwfn, &ep->tcp_cid);
883 }
884 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
885
886 list_del(&ep->list_entry);
887 list_add_tail(&ep->list_entry,
888 &p_hwfn->p_rdma_info->iwarp.ep_free_list);
889
890 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
891}
892
893#define QED_IWARP_CONNECT_MODE_STRING(ep) \
894 ((ep)->connect_mode == TCP_CONNECT_PASSIVE) ? "Passive" : "Active"
895
896/* Called as a result of the event:
897 * IWARP_EVENT_TYPE_ASYNC_MPA_HANDSHAKE_COMPLETE
898 */
899static void
900qed_iwarp_mpa_complete(struct qed_hwfn *p_hwfn,
901 struct qed_iwarp_ep *ep, u8 fw_return_code)
902{
903 struct qed_iwarp_cm_event_params params;
904
905 params.event = QED_IWARP_EVENT_PASSIVE_COMPLETE;
906
907 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
908 "MPA_NEGOTIATE (v%d): ORD: 0x%x IRD: 0x%x\n",
909 ep->mpa_rev, ep->cm_info.ord, ep->cm_info.ird);
910
911 params.cm_info = &ep->cm_info;
912
913 params.ep_context = ep;
914
915 ep->state = QED_IWARP_EP_CLOSED;
916
917 switch (fw_return_code) {
918 case RDMA_RETURN_OK:
919 ep->qp->max_rd_atomic_req = ep->cm_info.ord;
920 ep->qp->max_rd_atomic_resp = ep->cm_info.ird;
921 qed_iwarp_modify_qp(p_hwfn, ep->qp, QED_IWARP_QP_STATE_RTS, 1);
922 ep->state = QED_IWARP_EP_ESTABLISHED;
923 params.status = 0;
924 break;
925 default:
926 params.status = -ECONNRESET;
927 break;
928 }
929
930 ep->event_cb(ep->cb_context, &params);
931}
932
933static void
934qed_iwarp_mpa_v2_set_private(struct qed_hwfn *p_hwfn,
935 struct qed_iwarp_ep *ep, u8 *mpa_data_size)
936{
937 struct mpa_v2_hdr *mpa_v2_params;
938 u16 mpa_ird, mpa_ord;
939
940 *mpa_data_size = 0;
941 if (MPA_REV2(ep->mpa_rev)) {
942 mpa_v2_params =
943 (struct mpa_v2_hdr *)ep->ep_buffer_virt->out_pdata;
944 *mpa_data_size = sizeof(*mpa_v2_params);
945
946 mpa_ird = (u16)ep->cm_info.ird;
947 mpa_ord = (u16)ep->cm_info.ord;
948
949 if (ep->rtr_type != MPA_RTR_TYPE_NONE) {
950 mpa_ird |= MPA_V2_PEER2PEER_MODEL;
951
952 if (ep->rtr_type & MPA_RTR_TYPE_ZERO_SEND)
953 mpa_ird |= MPA_V2_SEND_RTR;
954
955 if (ep->rtr_type & MPA_RTR_TYPE_ZERO_WRITE)
956 mpa_ord |= MPA_V2_WRITE_RTR;
957
958 if (ep->rtr_type & MPA_RTR_TYPE_ZERO_READ)
959 mpa_ord |= MPA_V2_READ_RTR;
960 }
961
962 mpa_v2_params->ird = htons(mpa_ird);
963 mpa_v2_params->ord = htons(mpa_ord);
964
965 DP_VERBOSE(p_hwfn,
966 QED_MSG_RDMA,
967 "MPA_NEGOTIATE Header: [%x ord:%x ird] %x ord:%x ird:%x peer2peer:%x rtr_send:%x rtr_write:%x rtr_read:%x\n",
968 mpa_v2_params->ird,
969 mpa_v2_params->ord,
970 *((u32 *)mpa_v2_params),
971 mpa_ord & MPA_V2_IRD_ORD_MASK,
972 mpa_ird & MPA_V2_IRD_ORD_MASK,
973 !!(mpa_ird & MPA_V2_PEER2PEER_MODEL),
974 !!(mpa_ird & MPA_V2_SEND_RTR),
975 !!(mpa_ord & MPA_V2_WRITE_RTR),
976 !!(mpa_ord & MPA_V2_READ_RTR));
977 }
978}
979
980static struct qed_iwarp_ep *qed_iwarp_get_free_ep(struct qed_hwfn *p_hwfn)
981{
982 struct qed_iwarp_ep *ep = NULL;
983 int rc;
984
985 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
986
987 if (list_empty(&p_hwfn->p_rdma_info->iwarp.ep_free_list)) {
988 DP_ERR(p_hwfn, "Ep list is empty\n");
989 goto out;
990 }
991
992 ep = list_first_entry(&p_hwfn->p_rdma_info->iwarp.ep_free_list,
993 struct qed_iwarp_ep, list_entry);
994
995 /* in some cases we could have failed allocating a tcp cid when added
996 * from accept / failure... retry now..this is not the common case.
997 */
998 if (ep->tcp_cid == QED_IWARP_INVALID_TCP_CID) {
999 rc = qed_iwarp_alloc_tcp_cid(p_hwfn, &ep->tcp_cid);
1000
1001 /* if we fail we could look for another entry with a valid
1002 * tcp_cid, but since we don't expect to reach this anyway
1003 * it's not worth the handling
1004 */
1005 if (rc) {
1006 ep->tcp_cid = QED_IWARP_INVALID_TCP_CID;
1007 ep = NULL;
1008 goto out;
1009 }
1010 }
1011
1012 list_del(&ep->list_entry);
1013
1014out:
1015 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1016 return ep;
1017}
1018
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001019#define QED_IWARP_MAX_CID_CLEAN_TIME 100
1020#define QED_IWARP_MAX_NO_PROGRESS_CNT 5
1021
1022/* This function waits for all the bits of a bmap to be cleared, as long as
1023 * there is progress ( i.e. the number of bits left to be cleared decreases )
1024 * the function continues.
1025 */
1026static int
1027qed_iwarp_wait_cid_map_cleared(struct qed_hwfn *p_hwfn, struct qed_bmap *bmap)
1028{
1029 int prev_weight = 0;
1030 int wait_count = 0;
1031 int weight = 0;
1032
1033 weight = bitmap_weight(bmap->bitmap, bmap->max_count);
1034 prev_weight = weight;
1035
1036 while (weight) {
1037 msleep(QED_IWARP_MAX_CID_CLEAN_TIME);
1038
1039 weight = bitmap_weight(bmap->bitmap, bmap->max_count);
1040
1041 if (prev_weight == weight) {
1042 wait_count++;
1043 } else {
1044 prev_weight = weight;
1045 wait_count = 0;
1046 }
1047
1048 if (wait_count > QED_IWARP_MAX_NO_PROGRESS_CNT) {
1049 DP_NOTICE(p_hwfn,
1050 "%s bitmap wait timed out (%d cids pending)\n",
1051 bmap->name, weight);
1052 return -EBUSY;
1053 }
1054 }
1055 return 0;
1056}
1057
1058static int qed_iwarp_wait_for_all_cids(struct qed_hwfn *p_hwfn)
1059{
Kalderon, Michal456a5842017-07-02 10:29:27 +03001060 int rc;
1061 int i;
1062
1063 rc = qed_iwarp_wait_cid_map_cleared(p_hwfn,
1064 &p_hwfn->p_rdma_info->tcp_cid_map);
1065 if (rc)
1066 return rc;
1067
1068 /* Now free the tcp cids from the main cid map */
1069 for (i = 0; i < QED_IWARP_PREALLOC_CNT; i++)
1070 qed_bmap_release_id(p_hwfn, &p_hwfn->p_rdma_info->cid_map, i);
1071
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001072 /* Now wait for all cids to be completed */
1073 return qed_iwarp_wait_cid_map_cleared(p_hwfn,
1074 &p_hwfn->p_rdma_info->cid_map);
1075}
1076
Kalderon, Michal456a5842017-07-02 10:29:27 +03001077static void qed_iwarp_free_prealloc_ep(struct qed_hwfn *p_hwfn)
1078{
1079 struct qed_iwarp_ep *ep;
1080
1081 while (!list_empty(&p_hwfn->p_rdma_info->iwarp.ep_free_list)) {
1082 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1083
1084 ep = list_first_entry(&p_hwfn->p_rdma_info->iwarp.ep_free_list,
1085 struct qed_iwarp_ep, list_entry);
1086
1087 if (!ep) {
1088 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1089 break;
1090 }
1091 list_del(&ep->list_entry);
1092
1093 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1094
1095 if (ep->tcp_cid != QED_IWARP_INVALID_TCP_CID)
1096 qed_iwarp_cid_cleaned(p_hwfn, ep->tcp_cid);
1097
1098 qed_iwarp_destroy_ep(p_hwfn, ep, false);
1099 }
1100}
1101
1102static int qed_iwarp_prealloc_ep(struct qed_hwfn *p_hwfn, bool init)
1103{
1104 struct qed_iwarp_ep *ep;
1105 int rc = 0;
1106 int count;
1107 u32 cid;
1108 int i;
1109
1110 count = init ? QED_IWARP_PREALLOC_CNT : 1;
1111 for (i = 0; i < count; i++) {
1112 rc = qed_iwarp_create_ep(p_hwfn, &ep);
1113 if (rc)
1114 return rc;
1115
1116 /* During initialization we allocate from the main pool,
1117 * afterwards we allocate only from the tcp_cid.
1118 */
1119 if (init) {
1120 rc = qed_iwarp_alloc_cid(p_hwfn, &cid);
1121 if (rc)
1122 goto err;
1123 qed_iwarp_set_tcp_cid(p_hwfn, cid);
1124 } else {
1125 /* We don't care about the return code, it's ok if
1126 * tcp_cid remains invalid...in this case we'll
1127 * defer allocation
1128 */
1129 qed_iwarp_alloc_tcp_cid(p_hwfn, &cid);
1130 }
1131
1132 ep->tcp_cid = cid;
1133
1134 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1135 list_add_tail(&ep->list_entry,
1136 &p_hwfn->p_rdma_info->iwarp.ep_free_list);
1137 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1138 }
1139
1140 return rc;
1141
1142err:
1143 qed_iwarp_destroy_ep(p_hwfn, ep, false);
1144
1145 return rc;
1146}
1147
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001148int qed_iwarp_alloc(struct qed_hwfn *p_hwfn)
1149{
Kalderon, Michal456a5842017-07-02 10:29:27 +03001150 int rc;
1151
1152 /* Allocate bitmap for tcp cid. These are used by passive side
1153 * to ensure it can allocate a tcp cid during dpc that was
1154 * pre-acquired and doesn't require dynamic allocation of ilt
1155 */
1156 rc = qed_rdma_bmap_alloc(p_hwfn, &p_hwfn->p_rdma_info->tcp_cid_map,
1157 QED_IWARP_PREALLOC_CNT, "TCP_CID");
1158 if (rc) {
1159 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
1160 "Failed to allocate tcp cid, rc = %d\n", rc);
1161 return rc;
1162 }
1163
1164 INIT_LIST_HEAD(&p_hwfn->p_rdma_info->iwarp.ep_free_list);
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001165 spin_lock_init(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1166
Kalderon, Michal456a5842017-07-02 10:29:27 +03001167 return qed_iwarp_prealloc_ep(p_hwfn, true);
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001168}
1169
1170void qed_iwarp_resc_free(struct qed_hwfn *p_hwfn)
1171{
Kalderon, Michal456a5842017-07-02 10:29:27 +03001172 qed_rdma_bmap_free(p_hwfn, &p_hwfn->p_rdma_info->tcp_cid_map, 1);
1173}
1174
1175int qed_iwarp_accept(void *rdma_cxt, struct qed_iwarp_accept_in *iparams)
1176{
1177 struct qed_hwfn *p_hwfn = (struct qed_hwfn *)rdma_cxt;
1178 struct qed_iwarp_ep *ep;
1179 u8 mpa_data_size = 0;
1180 int rc;
1181
1182 ep = (struct qed_iwarp_ep *)iparams->ep_context;
1183 if (!ep) {
1184 DP_ERR(p_hwfn, "Ep Context receive in accept is NULL\n");
1185 return -EINVAL;
1186 }
1187
1188 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "QP(0x%x) EP(0x%x)\n",
1189 iparams->qp->icid, ep->tcp_cid);
1190
1191 if ((iparams->ord > QED_IWARP_ORD_DEFAULT) ||
1192 (iparams->ird > QED_IWARP_IRD_DEFAULT)) {
1193 DP_VERBOSE(p_hwfn,
1194 QED_MSG_RDMA,
1195 "QP(0x%x) EP(0x%x) ERROR: Invalid ord(0x%x)/ird(0x%x)\n",
1196 iparams->qp->icid,
1197 ep->tcp_cid, iparams->ord, iparams->ord);
1198 return -EINVAL;
1199 }
1200
1201 qed_iwarp_prealloc_ep(p_hwfn, false);
1202
1203 ep->cb_context = iparams->cb_context;
1204 ep->qp = iparams->qp;
1205 ep->qp->ep = ep;
1206
1207 if (ep->mpa_rev == MPA_NEGOTIATION_TYPE_ENHANCED) {
1208 /* Negotiate ord/ird: if upperlayer requested ord larger than
1209 * ird advertised by remote, we need to decrease our ord
1210 */
1211 if (iparams->ord > ep->cm_info.ird)
1212 iparams->ord = ep->cm_info.ird;
1213
1214 if ((ep->rtr_type & MPA_RTR_TYPE_ZERO_READ) &&
1215 (iparams->ird == 0))
1216 iparams->ird = 1;
1217 }
1218
1219 /* Update cm_info ord/ird to be negotiated values */
1220 ep->cm_info.ord = iparams->ord;
1221 ep->cm_info.ird = iparams->ird;
1222
1223 qed_iwarp_mpa_v2_set_private(p_hwfn, ep, &mpa_data_size);
1224
1225 ep->cm_info.private_data = ep->ep_buffer_virt->out_pdata;
1226 ep->cm_info.private_data_len = iparams->private_data_len +
1227 mpa_data_size;
1228
1229 memcpy((u8 *)ep->ep_buffer_virt->out_pdata + mpa_data_size,
1230 iparams->private_data, iparams->private_data_len);
1231
1232 rc = qed_iwarp_mpa_offload(p_hwfn, ep);
1233 if (rc)
1234 qed_iwarp_modify_qp(p_hwfn,
1235 iparams->qp, QED_IWARP_QP_STATE_ERROR, 1);
1236
1237 return rc;
1238}
1239
1240int qed_iwarp_reject(void *rdma_cxt, struct qed_iwarp_reject_in *iparams)
1241{
1242 struct qed_hwfn *p_hwfn = rdma_cxt;
1243 struct qed_iwarp_ep *ep;
1244 u8 mpa_data_size = 0;
1245
1246 ep = iparams->ep_context;
1247 if (!ep) {
1248 DP_ERR(p_hwfn, "Ep Context receive in reject is NULL\n");
1249 return -EINVAL;
1250 }
1251
1252 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "EP(0x%x)\n", ep->tcp_cid);
1253
1254 ep->cb_context = iparams->cb_context;
1255 ep->qp = NULL;
1256
1257 qed_iwarp_mpa_v2_set_private(p_hwfn, ep, &mpa_data_size);
1258
1259 ep->cm_info.private_data = ep->ep_buffer_virt->out_pdata;
1260 ep->cm_info.private_data_len = iparams->private_data_len +
1261 mpa_data_size;
1262
1263 memcpy((u8 *)ep->ep_buffer_virt->out_pdata + mpa_data_size,
1264 iparams->private_data, iparams->private_data_len);
1265
1266 return qed_iwarp_mpa_offload(p_hwfn, ep);
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001267}
1268
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001269static void
1270qed_iwarp_print_cm_info(struct qed_hwfn *p_hwfn,
1271 struct qed_iwarp_cm_info *cm_info)
1272{
1273 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "ip_version = %d\n",
1274 cm_info->ip_version);
1275
1276 if (cm_info->ip_version == QED_TCP_IPV4)
1277 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
1278 "remote_ip %pI4h:%x, local_ip %pI4h:%x vlan=%x\n",
1279 cm_info->remote_ip, cm_info->remote_port,
1280 cm_info->local_ip, cm_info->local_port,
1281 cm_info->vlan);
1282 else
1283 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
1284 "remote_ip %pI6h:%x, local_ip %pI6h:%x vlan=%x\n",
1285 cm_info->remote_ip, cm_info->remote_port,
1286 cm_info->local_ip, cm_info->local_port,
1287 cm_info->vlan);
1288
1289 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
1290 "private_data_len = %x ord = %d, ird = %d\n",
1291 cm_info->private_data_len, cm_info->ord, cm_info->ird);
1292}
1293
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001294static int
1295qed_iwarp_ll2_post_rx(struct qed_hwfn *p_hwfn,
1296 struct qed_iwarp_ll2_buff *buf, u8 handle)
1297{
1298 int rc;
1299
1300 rc = qed_ll2_post_rx_buffer(p_hwfn, handle, buf->data_phys_addr,
1301 (u16)buf->buff_size, buf, 1);
1302 if (rc) {
1303 DP_NOTICE(p_hwfn,
1304 "Failed to repost rx buffer to ll2 rc = %d, handle=%d\n",
1305 rc, handle);
1306 dma_free_coherent(&p_hwfn->cdev->pdev->dev, buf->buff_size,
1307 buf->data, buf->data_phys_addr);
1308 kfree(buf);
1309 }
1310
1311 return rc;
1312}
1313
Kalderon, Michal456a5842017-07-02 10:29:27 +03001314static bool
1315qed_iwarp_ep_exists(struct qed_hwfn *p_hwfn, struct qed_iwarp_cm_info *cm_info)
1316{
1317 struct qed_iwarp_ep *ep = NULL;
1318 bool found = false;
1319
1320 list_for_each_entry(ep,
1321 &p_hwfn->p_rdma_info->iwarp.ep_list,
1322 list_entry) {
1323 if ((ep->cm_info.local_port == cm_info->local_port) &&
1324 (ep->cm_info.remote_port == cm_info->remote_port) &&
1325 (ep->cm_info.vlan == cm_info->vlan) &&
1326 !memcmp(&ep->cm_info.local_ip, cm_info->local_ip,
1327 sizeof(cm_info->local_ip)) &&
1328 !memcmp(&ep->cm_info.remote_ip, cm_info->remote_ip,
1329 sizeof(cm_info->remote_ip))) {
1330 found = true;
1331 break;
1332 }
1333 }
1334
1335 if (found) {
1336 DP_NOTICE(p_hwfn,
1337 "SYN received on active connection - dropping\n");
1338 qed_iwarp_print_cm_info(p_hwfn, cm_info);
1339
1340 return true;
1341 }
1342
1343 return false;
1344}
1345
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001346static struct qed_iwarp_listener *
1347qed_iwarp_get_listener(struct qed_hwfn *p_hwfn,
1348 struct qed_iwarp_cm_info *cm_info)
1349{
1350 struct qed_iwarp_listener *listener = NULL;
1351 static const u32 ip_zero[4] = { 0, 0, 0, 0 };
1352 bool found = false;
1353
1354 qed_iwarp_print_cm_info(p_hwfn, cm_info);
1355
1356 list_for_each_entry(listener,
1357 &p_hwfn->p_rdma_info->iwarp.listen_list,
1358 list_entry) {
1359 if (listener->port == cm_info->local_port) {
1360 if (!memcmp(listener->ip_addr,
1361 ip_zero, sizeof(ip_zero))) {
1362 found = true;
1363 break;
1364 }
1365
1366 if (!memcmp(listener->ip_addr,
1367 cm_info->local_ip,
1368 sizeof(cm_info->local_ip)) &&
1369 (listener->vlan == cm_info->vlan)) {
1370 found = true;
1371 break;
1372 }
1373 }
1374 }
1375
1376 if (found) {
1377 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "listener found = %p\n",
1378 listener);
1379 return listener;
1380 }
1381
1382 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "listener not found\n");
1383 return NULL;
1384}
1385
1386static int
1387qed_iwarp_parse_rx_pkt(struct qed_hwfn *p_hwfn,
1388 struct qed_iwarp_cm_info *cm_info,
1389 void *buf,
1390 u8 *remote_mac_addr,
1391 u8 *local_mac_addr,
1392 int *payload_len, int *tcp_start_offset)
1393{
1394 struct vlan_ethhdr *vethh;
1395 bool vlan_valid = false;
1396 struct ipv6hdr *ip6h;
1397 struct ethhdr *ethh;
1398 struct tcphdr *tcph;
1399 struct iphdr *iph;
1400 int eth_hlen;
1401 int ip_hlen;
1402 int eth_type;
1403 int i;
1404
1405 ethh = buf;
1406 eth_type = ntohs(ethh->h_proto);
1407 if (eth_type == ETH_P_8021Q) {
1408 vlan_valid = true;
1409 vethh = (struct vlan_ethhdr *)ethh;
1410 cm_info->vlan = ntohs(vethh->h_vlan_TCI) & VLAN_VID_MASK;
1411 eth_type = ntohs(vethh->h_vlan_encapsulated_proto);
1412 }
1413
1414 eth_hlen = ETH_HLEN + (vlan_valid ? sizeof(u32) : 0);
1415
Kalderon, Michal456a5842017-07-02 10:29:27 +03001416 ether_addr_copy(remote_mac_addr, ethh->h_source);
1417 ether_addr_copy(local_mac_addr, ethh->h_dest);
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001418
1419 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "eth_type =%d source mac: %pM\n",
1420 eth_type, ethh->h_source);
1421
1422 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "eth_hlen=%d destination mac: %pM\n",
1423 eth_hlen, ethh->h_dest);
1424
1425 iph = (struct iphdr *)((u8 *)(ethh) + eth_hlen);
1426
1427 if (eth_type == ETH_P_IP) {
1428 cm_info->local_ip[0] = ntohl(iph->daddr);
1429 cm_info->remote_ip[0] = ntohl(iph->saddr);
1430 cm_info->ip_version = TCP_IPV4;
1431
1432 ip_hlen = (iph->ihl) * sizeof(u32);
1433 *payload_len = ntohs(iph->tot_len) - ip_hlen;
1434 } else if (eth_type == ETH_P_IPV6) {
1435 ip6h = (struct ipv6hdr *)iph;
1436 for (i = 0; i < 4; i++) {
1437 cm_info->local_ip[i] =
1438 ntohl(ip6h->daddr.in6_u.u6_addr32[i]);
1439 cm_info->remote_ip[i] =
1440 ntohl(ip6h->saddr.in6_u.u6_addr32[i]);
1441 }
1442 cm_info->ip_version = TCP_IPV6;
1443
1444 ip_hlen = sizeof(*ip6h);
1445 *payload_len = ntohs(ip6h->payload_len);
1446 } else {
1447 DP_NOTICE(p_hwfn, "Unexpected ethertype on ll2 %x\n", eth_type);
1448 return -EINVAL;
1449 }
1450
1451 tcph = (struct tcphdr *)((u8 *)iph + ip_hlen);
1452
1453 if (!tcph->syn) {
1454 DP_NOTICE(p_hwfn,
1455 "Only SYN type packet expected on this ll2 conn, iph->ihl=%d source=%d dest=%d\n",
1456 iph->ihl, tcph->source, tcph->dest);
1457 return -EINVAL;
1458 }
1459
1460 cm_info->local_port = ntohs(tcph->dest);
1461 cm_info->remote_port = ntohs(tcph->source);
1462
1463 qed_iwarp_print_cm_info(p_hwfn, cm_info);
1464
1465 *tcp_start_offset = eth_hlen + ip_hlen;
1466
1467 return 0;
1468}
1469
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001470static void
1471qed_iwarp_ll2_comp_syn_pkt(void *cxt, struct qed_ll2_comp_rx_data *data)
1472{
1473 struct qed_iwarp_ll2_buff *buf = data->cookie;
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001474 struct qed_iwarp_listener *listener;
1475 struct qed_ll2_tx_pkt_info tx_pkt;
1476 struct qed_iwarp_cm_info cm_info;
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001477 struct qed_hwfn *p_hwfn = cxt;
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001478 u8 remote_mac_addr[ETH_ALEN];
1479 u8 local_mac_addr[ETH_ALEN];
Kalderon, Michal456a5842017-07-02 10:29:27 +03001480 struct qed_iwarp_ep *ep;
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001481 int tcp_start_offset;
Kalderon, Michal456a5842017-07-02 10:29:27 +03001482 u8 ts_hdr_size = 0;
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001483 u8 ll2_syn_handle;
1484 int payload_len;
Kalderon, Michal456a5842017-07-02 10:29:27 +03001485 u32 hdr_size;
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001486 int rc;
1487
1488 memset(&cm_info, 0, sizeof(cm_info));
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001489
1490 if (GET_FIELD(data->parse_flags,
1491 PARSING_AND_ERR_FLAGS_L4CHKSMWASCALCULATED) &&
1492 GET_FIELD(data->parse_flags, PARSING_AND_ERR_FLAGS_L4CHKSMERROR)) {
1493 DP_NOTICE(p_hwfn, "Syn packet received with checksum error\n");
1494 goto err;
1495 }
1496
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001497 rc = qed_iwarp_parse_rx_pkt(p_hwfn, &cm_info, (u8 *)(buf->data) +
1498 data->u.placement_offset, remote_mac_addr,
1499 local_mac_addr, &payload_len,
1500 &tcp_start_offset);
1501 if (rc)
1502 goto err;
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001503
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001504 /* Check if there is a listener for this 4-tuple+vlan */
1505 ll2_syn_handle = p_hwfn->p_rdma_info->iwarp.ll2_syn_handle;
1506 listener = qed_iwarp_get_listener(p_hwfn, &cm_info);
1507 if (!listener) {
1508 DP_VERBOSE(p_hwfn,
1509 QED_MSG_RDMA,
1510 "SYN received on tuple not listened on parse_flags=%d packet len=%d\n",
1511 data->parse_flags, data->length.packet_length);
1512
1513 memset(&tx_pkt, 0, sizeof(tx_pkt));
1514 tx_pkt.num_of_bds = 1;
1515 tx_pkt.vlan = data->vlan;
1516
1517 if (GET_FIELD(data->parse_flags,
1518 PARSING_AND_ERR_FLAGS_TAG8021QEXIST))
1519 SET_FIELD(tx_pkt.bd_flags,
1520 CORE_TX_BD_DATA_VLAN_INSERTION, 1);
1521
1522 tx_pkt.l4_hdr_offset_w = (data->length.packet_length) >> 2;
1523 tx_pkt.tx_dest = QED_LL2_TX_DEST_LB;
1524 tx_pkt.first_frag = buf->data_phys_addr +
1525 data->u.placement_offset;
1526 tx_pkt.first_frag_len = data->length.packet_length;
1527 tx_pkt.cookie = buf;
1528
1529 rc = qed_ll2_prepare_tx_packet(p_hwfn, ll2_syn_handle,
1530 &tx_pkt, true);
1531
1532 if (rc) {
1533 DP_NOTICE(p_hwfn,
1534 "Can't post SYN back to chip rc=%d\n", rc);
1535 goto err;
1536 }
1537 return;
1538 }
1539
1540 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "Received syn on listening port\n");
Kalderon, Michal456a5842017-07-02 10:29:27 +03001541 /* There may be an open ep on this connection if this is a syn
1542 * retrasnmit... need to make sure there isn't...
1543 */
1544 if (qed_iwarp_ep_exists(p_hwfn, &cm_info))
1545 goto err;
1546
1547 ep = qed_iwarp_get_free_ep(p_hwfn);
1548 if (!ep)
1549 goto err;
1550
1551 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1552 list_add_tail(&ep->list_entry, &p_hwfn->p_rdma_info->iwarp.ep_list);
1553 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1554
1555 ether_addr_copy(ep->remote_mac_addr, remote_mac_addr);
1556 ether_addr_copy(ep->local_mac_addr, local_mac_addr);
1557
1558 memcpy(&ep->cm_info, &cm_info, sizeof(ep->cm_info));
1559
1560 if (p_hwfn->p_rdma_info->iwarp.tcp_flags & QED_IWARP_TS_EN)
1561 ts_hdr_size = TIMESTAMP_HEADER_SIZE;
1562
1563 hdr_size = ((cm_info.ip_version == QED_TCP_IPV4) ? 40 : 60) +
1564 ts_hdr_size;
1565 ep->mss = p_hwfn->p_rdma_info->iwarp.max_mtu - hdr_size;
1566 ep->mss = min_t(u16, QED_IWARP_MAX_FW_MSS, ep->mss);
1567
1568 ep->event_cb = listener->event_cb;
1569 ep->cb_context = listener->cb_context;
1570 ep->connect_mode = TCP_CONNECT_PASSIVE;
1571
1572 ep->syn = buf;
1573 ep->syn_ip_payload_length = (u16)payload_len;
1574 ep->syn_phy_addr = buf->data_phys_addr + data->u.placement_offset +
1575 tcp_start_offset;
1576
1577 rc = qed_iwarp_tcp_offload(p_hwfn, ep);
1578 if (rc) {
1579 qed_iwarp_return_ep(p_hwfn, ep);
1580 goto err;
1581 }
1582
1583 return;
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001584err:
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001585 qed_iwarp_ll2_post_rx(p_hwfn, buf, ll2_syn_handle);
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001586}
1587
1588static void qed_iwarp_ll2_rel_rx_pkt(void *cxt, u8 connection_handle,
1589 void *cookie, dma_addr_t rx_buf_addr,
1590 bool b_last_packet)
1591{
1592 struct qed_iwarp_ll2_buff *buffer = cookie;
1593 struct qed_hwfn *p_hwfn = cxt;
1594
1595 dma_free_coherent(&p_hwfn->cdev->pdev->dev, buffer->buff_size,
1596 buffer->data, buffer->data_phys_addr);
1597 kfree(buffer);
1598}
1599
1600static void qed_iwarp_ll2_comp_tx_pkt(void *cxt, u8 connection_handle,
1601 void *cookie, dma_addr_t first_frag_addr,
1602 bool b_last_fragment, bool b_last_packet)
1603{
1604 struct qed_iwarp_ll2_buff *buffer = cookie;
1605 struct qed_hwfn *p_hwfn = cxt;
1606
1607 /* this was originally an rx packet, post it back */
1608 qed_iwarp_ll2_post_rx(p_hwfn, buffer, connection_handle);
1609}
1610
1611static void qed_iwarp_ll2_rel_tx_pkt(void *cxt, u8 connection_handle,
1612 void *cookie, dma_addr_t first_frag_addr,
1613 bool b_last_fragment, bool b_last_packet)
1614{
1615 struct qed_iwarp_ll2_buff *buffer = cookie;
1616 struct qed_hwfn *p_hwfn = cxt;
1617
1618 if (!buffer)
1619 return;
1620
1621 dma_free_coherent(&p_hwfn->cdev->pdev->dev, buffer->buff_size,
1622 buffer->data, buffer->data_phys_addr);
1623
1624 kfree(buffer);
1625}
1626
1627static int qed_iwarp_ll2_stop(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
1628{
1629 struct qed_iwarp_info *iwarp_info = &p_hwfn->p_rdma_info->iwarp;
1630 int rc = 0;
1631
1632 if (iwarp_info->ll2_syn_handle != QED_IWARP_HANDLE_INVAL) {
1633 rc = qed_ll2_terminate_connection(p_hwfn,
1634 iwarp_info->ll2_syn_handle);
1635 if (rc)
1636 DP_INFO(p_hwfn, "Failed to terminate syn connection\n");
1637
1638 qed_ll2_release_connection(p_hwfn, iwarp_info->ll2_syn_handle);
1639 iwarp_info->ll2_syn_handle = QED_IWARP_HANDLE_INVAL;
1640 }
1641
1642 qed_llh_remove_mac_filter(p_hwfn,
1643 p_ptt, p_hwfn->p_rdma_info->iwarp.mac_addr);
1644 return rc;
1645}
1646
1647static int
1648qed_iwarp_ll2_alloc_buffers(struct qed_hwfn *p_hwfn,
1649 int num_rx_bufs, int buff_size, u8 ll2_handle)
1650{
1651 struct qed_iwarp_ll2_buff *buffer;
1652 int rc = 0;
1653 int i;
1654
1655 for (i = 0; i < num_rx_bufs; i++) {
1656 buffer = kzalloc(sizeof(*buffer), GFP_KERNEL);
1657 if (!buffer) {
1658 rc = -ENOMEM;
1659 break;
1660 }
1661
1662 buffer->data = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev,
1663 buff_size,
1664 &buffer->data_phys_addr,
1665 GFP_KERNEL);
1666 if (!buffer->data) {
1667 kfree(buffer);
1668 rc = -ENOMEM;
1669 break;
1670 }
1671
1672 buffer->buff_size = buff_size;
1673 rc = qed_iwarp_ll2_post_rx(p_hwfn, buffer, ll2_handle);
1674 if (rc)
1675 /* buffers will be deallocated by qed_ll2 */
1676 break;
1677 }
1678 return rc;
1679}
1680
1681#define QED_IWARP_MAX_BUF_SIZE(mtu) \
1682 ALIGN((mtu) + ETH_HLEN + 2 * VLAN_HLEN + 2 + ETH_CACHE_LINE_SIZE, \
1683 ETH_CACHE_LINE_SIZE)
1684
1685static int
1686qed_iwarp_ll2_start(struct qed_hwfn *p_hwfn,
1687 struct qed_rdma_start_in_params *params,
1688 struct qed_ptt *p_ptt)
1689{
1690 struct qed_iwarp_info *iwarp_info;
1691 struct qed_ll2_acquire_data data;
1692 struct qed_ll2_cbs cbs;
1693 int rc = 0;
1694
1695 iwarp_info = &p_hwfn->p_rdma_info->iwarp;
1696 iwarp_info->ll2_syn_handle = QED_IWARP_HANDLE_INVAL;
1697
1698 iwarp_info->max_mtu = params->max_mtu;
1699
1700 ether_addr_copy(p_hwfn->p_rdma_info->iwarp.mac_addr, params->mac_addr);
1701
1702 rc = qed_llh_add_mac_filter(p_hwfn, p_ptt, params->mac_addr);
1703 if (rc)
1704 return rc;
1705
1706 /* Start SYN connection */
1707 cbs.rx_comp_cb = qed_iwarp_ll2_comp_syn_pkt;
1708 cbs.rx_release_cb = qed_iwarp_ll2_rel_rx_pkt;
1709 cbs.tx_comp_cb = qed_iwarp_ll2_comp_tx_pkt;
1710 cbs.tx_release_cb = qed_iwarp_ll2_rel_tx_pkt;
1711 cbs.cookie = p_hwfn;
1712
1713 memset(&data, 0, sizeof(data));
1714 data.input.conn_type = QED_LL2_TYPE_IWARP;
1715 data.input.mtu = QED_IWARP_MAX_SYN_PKT_SIZE;
1716 data.input.rx_num_desc = QED_IWARP_LL2_SYN_RX_SIZE;
1717 data.input.tx_num_desc = QED_IWARP_LL2_SYN_TX_SIZE;
1718 data.input.tx_max_bds_per_packet = 1; /* will never be fragmented */
1719 data.input.tx_tc = PKT_LB_TC;
1720 data.input.tx_dest = QED_LL2_TX_DEST_LB;
1721 data.p_connection_handle = &iwarp_info->ll2_syn_handle;
1722 data.cbs = &cbs;
1723
1724 rc = qed_ll2_acquire_connection(p_hwfn, &data);
1725 if (rc) {
1726 DP_NOTICE(p_hwfn, "Failed to acquire LL2 connection\n");
1727 qed_llh_remove_mac_filter(p_hwfn, p_ptt, params->mac_addr);
1728 return rc;
1729 }
1730
1731 rc = qed_ll2_establish_connection(p_hwfn, iwarp_info->ll2_syn_handle);
1732 if (rc) {
1733 DP_NOTICE(p_hwfn, "Failed to establish LL2 connection\n");
1734 goto err;
1735 }
1736
1737 rc = qed_iwarp_ll2_alloc_buffers(p_hwfn,
1738 QED_IWARP_LL2_SYN_RX_SIZE,
1739 QED_IWARP_MAX_SYN_PKT_SIZE,
1740 iwarp_info->ll2_syn_handle);
1741 if (rc)
1742 goto err;
1743
1744 return rc;
1745err:
1746 qed_iwarp_ll2_stop(p_hwfn, p_ptt);
1747
1748 return rc;
1749}
1750
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001751int qed_iwarp_setup(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt,
1752 struct qed_rdma_start_in_params *params)
1753{
1754 struct qed_iwarp_info *iwarp_info;
1755 u32 rcv_wnd_size;
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001756
1757 iwarp_info = &p_hwfn->p_rdma_info->iwarp;
1758
1759 iwarp_info->tcp_flags = QED_IWARP_TS_EN;
1760 rcv_wnd_size = QED_IWARP_RCV_WND_SIZE_DEF;
1761
1762 /* value 0 is used for ilog2(QED_IWARP_RCV_WND_SIZE_MIN) */
1763 iwarp_info->rcv_wnd_scale = ilog2(rcv_wnd_size) -
1764 ilog2(QED_IWARP_RCV_WND_SIZE_MIN);
1765 iwarp_info->crc_needed = QED_IWARP_PARAM_CRC_NEEDED;
1766 iwarp_info->mpa_rev = MPA_NEGOTIATION_TYPE_ENHANCED;
1767
1768 iwarp_info->peer2peer = QED_IWARP_PARAM_P2P;
1769
Kalderon, Michal456a5842017-07-02 10:29:27 +03001770 iwarp_info->rtr_type = MPA_RTR_TYPE_ZERO_SEND |
1771 MPA_RTR_TYPE_ZERO_WRITE |
1772 MPA_RTR_TYPE_ZERO_READ;
1773
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001774 spin_lock_init(&p_hwfn->p_rdma_info->iwarp.qp_lock);
Kalderon, Michal456a5842017-07-02 10:29:27 +03001775 INIT_LIST_HEAD(&p_hwfn->p_rdma_info->iwarp.ep_list);
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001776 INIT_LIST_HEAD(&p_hwfn->p_rdma_info->iwarp.listen_list);
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001777
1778 qed_spq_register_async_cb(p_hwfn, PROTOCOLID_IWARP,
1779 qed_iwarp_async_event);
1780
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001781 return qed_iwarp_ll2_start(p_hwfn, params, p_ptt);
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001782}
1783
1784int qed_iwarp_stop(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
1785{
1786 int rc;
1787
Kalderon, Michal456a5842017-07-02 10:29:27 +03001788 qed_iwarp_free_prealloc_ep(p_hwfn);
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001789 rc = qed_iwarp_wait_for_all_cids(p_hwfn);
1790 if (rc)
1791 return rc;
1792
1793 qed_spq_unregister_async_cb(p_hwfn, PROTOCOLID_IWARP);
1794
Kalderon, Michalb5c29ca2017-07-02 10:29:25 +03001795 return qed_iwarp_ll2_stop(p_hwfn, p_ptt);
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001796}
1797
Kalderon, Michal456a5842017-07-02 10:29:27 +03001798void
1799qed_iwarp_connect_complete(struct qed_hwfn *p_hwfn,
1800 struct qed_iwarp_ep *ep, u8 fw_return_code)
1801{
1802 /* Done with the SYN packet, post back to ll2 rx */
1803 qed_iwarp_ll2_post_rx(p_hwfn, ep->syn,
1804 p_hwfn->p_rdma_info->iwarp.ll2_syn_handle);
1805 ep->syn = NULL;
1806
1807 /* If connect failed - upper layer doesn't know about it */
1808 qed_iwarp_mpa_received(p_hwfn, ep);
1809}
1810
1811static inline bool
1812qed_iwarp_check_ep_ok(struct qed_hwfn *p_hwfn, struct qed_iwarp_ep *ep)
1813{
1814 if (!ep || (ep->sig != QED_EP_SIG)) {
1815 DP_ERR(p_hwfn, "ERROR ON ASYNC ep=%p\n", ep);
1816 return false;
1817 }
1818
1819 return true;
1820}
1821
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001822static int qed_iwarp_async_event(struct qed_hwfn *p_hwfn,
1823 u8 fw_event_code, u16 echo,
1824 union event_ring_data *data,
1825 u8 fw_return_code)
1826{
Kalderon, Michal456a5842017-07-02 10:29:27 +03001827 struct regpair *fw_handle = &data->rdma_data.async_handle;
1828 struct qed_iwarp_ep *ep = NULL;
1829 u16 cid;
1830
1831 ep = (struct qed_iwarp_ep *)(uintptr_t)HILO_64(fw_handle->hi,
1832 fw_handle->lo);
1833
1834 switch (fw_event_code) {
1835 case IWARP_EVENT_TYPE_ASYNC_CONNECT_COMPLETE:
1836 /* Async completion after TCP 3-way handshake */
1837 if (!qed_iwarp_check_ep_ok(p_hwfn, ep))
1838 return -EINVAL;
1839 DP_VERBOSE(p_hwfn,
1840 QED_MSG_RDMA,
1841 "EP(0x%x) IWARP_EVENT_TYPE_ASYNC_CONNECT_COMPLETE fw_ret_code=%d\n",
1842 ep->tcp_cid, fw_return_code);
1843 qed_iwarp_connect_complete(p_hwfn, ep, fw_return_code);
1844 break;
1845 case IWARP_EVENT_TYPE_ASYNC_MPA_HANDSHAKE_COMPLETE:
1846 if (!qed_iwarp_check_ep_ok(p_hwfn, ep))
1847 return -EINVAL;
1848 DP_VERBOSE(p_hwfn,
1849 QED_MSG_RDMA,
1850 "QP(0x%x) IWARP_EVENT_TYPE_ASYNC_MPA_HANDSHAKE_COMPLETE fw_ret_code=%d\n",
1851 ep->cid, fw_return_code);
1852 qed_iwarp_mpa_complete(p_hwfn, ep, fw_return_code);
1853 break;
1854 case IWARP_EVENT_TYPE_ASYNC_CID_CLEANED:
1855 cid = (u16)le32_to_cpu(fw_handle->lo);
1856 DP_VERBOSE(p_hwfn, QED_MSG_RDMA,
1857 "(0x%x)IWARP_EVENT_TYPE_ASYNC_CID_CLEANED\n", cid);
1858 qed_iwarp_cid_cleaned(p_hwfn, cid);
1859
1860 break;
1861 }
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001862 return 0;
1863}
1864
Kalderon, Michal65a91a62017-07-02 10:29:26 +03001865int
1866qed_iwarp_create_listen(void *rdma_cxt,
1867 struct qed_iwarp_listen_in *iparams,
1868 struct qed_iwarp_listen_out *oparams)
1869{
1870 struct qed_hwfn *p_hwfn = rdma_cxt;
1871 struct qed_iwarp_listener *listener;
1872
1873 listener = kzalloc(sizeof(*listener), GFP_KERNEL);
1874 if (!listener)
1875 return -ENOMEM;
1876
1877 listener->ip_version = iparams->ip_version;
1878 memcpy(listener->ip_addr, iparams->ip_addr, sizeof(listener->ip_addr));
1879 listener->port = iparams->port;
1880 listener->vlan = iparams->vlan;
1881
1882 listener->event_cb = iparams->event_cb;
1883 listener->cb_context = iparams->cb_context;
1884 listener->max_backlog = iparams->max_backlog;
1885 oparams->handle = listener;
1886
1887 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1888 list_add_tail(&listener->list_entry,
1889 &p_hwfn->p_rdma_info->iwarp.listen_list);
1890 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1891
1892 DP_VERBOSE(p_hwfn,
1893 QED_MSG_RDMA,
1894 "callback=%p handle=%p ip=%x:%x:%x:%x port=0x%x vlan=0x%x\n",
1895 listener->event_cb,
1896 listener,
1897 listener->ip_addr[0],
1898 listener->ip_addr[1],
1899 listener->ip_addr[2],
1900 listener->ip_addr[3], listener->port, listener->vlan);
1901
1902 return 0;
1903}
1904
1905int qed_iwarp_destroy_listen(void *rdma_cxt, void *handle)
1906{
1907 struct qed_iwarp_listener *listener = handle;
1908 struct qed_hwfn *p_hwfn = rdma_cxt;
1909
1910 DP_VERBOSE(p_hwfn, QED_MSG_RDMA, "handle=%p\n", handle);
1911
1912 spin_lock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1913 list_del(&listener->list_entry);
1914 spin_unlock_bh(&p_hwfn->p_rdma_info->iwarp.iw_lock);
1915
1916 kfree(listener);
1917
1918 return 0;
1919}
1920
Kalderon, Michal67b40dc2017-07-02 10:29:22 +03001921void
1922qed_iwarp_query_qp(struct qed_rdma_qp *qp,
1923 struct qed_rdma_query_qp_out_params *out_params)
1924{
1925 out_params->state = qed_iwarp2roce_state(qp->iwarp_state);
1926}