Imported Upstream version 16.11
[deb_dpdk.git] / drivers / net / qede / base / ecore_spq.c
1 /*
2  * Copyright (c) 2016 QLogic Corporation.
3  * All rights reserved.
4  * www.qlogic.com
5  *
6  * See LICENSE.qede_pmd for copyright and licensing details.
7  */
8
9 #include "bcm_osal.h"
10 #include "reg_addr.h"
11 #include "ecore_gtt_reg_addr.h"
12 #include "ecore_hsi_common.h"
13 #include "ecore.h"
14 #include "ecore_sp_api.h"
15 #include "ecore_spq.h"
16 #include "ecore_iro.h"
17 #include "ecore_init_fw_funcs.h"
18 #include "ecore_cxt.h"
19 #include "ecore_int.h"
20 #include "ecore_dev_api.h"
21 #include "ecore_mcp.h"
22 #include "ecore_hw.h"
23 #include "ecore_sriov.h"
24
25 /***************************************************************************
26  * Structures & Definitions
27  ***************************************************************************/
28
29 #define SPQ_HIGH_PRI_RESERVE_DEFAULT    (1)
30
31 #define SPQ_BLOCK_DELAY_MAX_ITER        (10)
32 #define SPQ_BLOCK_DELAY_US              (10)
33 #define SPQ_BLOCK_SLEEP_MAX_ITER        (1000)
34 #define SPQ_BLOCK_SLEEP_MS              (5)
35
36 /***************************************************************************
37  * Blocking Imp. (BLOCK/EBLOCK mode)
38  ***************************************************************************/
39 static void ecore_spq_blocking_cb(struct ecore_hwfn *p_hwfn,
40                                   void *cookie,
41                                   union event_ring_data *data,
42                                   u8 fw_return_code)
43 {
44         struct ecore_spq_comp_done *comp_done;
45
46         comp_done = (struct ecore_spq_comp_done *)cookie;
47
48         comp_done->done = 0x1;
49         comp_done->fw_return_code = fw_return_code;
50
51         /* make update visible to waiting thread */
52         OSAL_SMP_WMB(p_hwfn->p_dev);
53 }
54
55 static enum _ecore_status_t __ecore_spq_block(struct ecore_hwfn *p_hwfn,
56                                               struct ecore_spq_entry *p_ent,
57                                               u8 *p_fw_ret,
58                                               bool sleep_between_iter)
59 {
60         struct ecore_spq_comp_done *comp_done;
61         u32 iter_cnt;
62
63         comp_done = (struct ecore_spq_comp_done *)p_ent->comp_cb.cookie;
64         iter_cnt = sleep_between_iter ? SPQ_BLOCK_SLEEP_MAX_ITER
65                                       : SPQ_BLOCK_DELAY_MAX_ITER;
66
67         while (iter_cnt--) {
68                 OSAL_POLL_MODE_DPC(p_hwfn);
69                 OSAL_SMP_RMB(p_hwfn->p_dev);
70                 if (comp_done->done == 1) {
71                         if (p_fw_ret)
72                                 *p_fw_ret = comp_done->fw_return_code;
73                         return ECORE_SUCCESS;
74                 }
75
76                 if (sleep_between_iter)
77                         OSAL_MSLEEP(SPQ_BLOCK_SLEEP_MS);
78                 else
79                         OSAL_UDELAY(SPQ_BLOCK_DELAY_US);
80         }
81
82         return ECORE_TIMEOUT;
83 }
84
85 static enum _ecore_status_t ecore_spq_block(struct ecore_hwfn *p_hwfn,
86                                             struct ecore_spq_entry *p_ent,
87                                             u8 *p_fw_ret, bool skip_quick_poll)
88 {
89         struct ecore_spq_comp_done *comp_done;
90         enum _ecore_status_t rc;
91
92         /* A relatively short polling period w/o sleeping, to allow the FW to
93          * complete the ramrod and thus possibly to avoid the following sleeps.
94          */
95         if (!skip_quick_poll) {
96                 rc = __ecore_spq_block(p_hwfn, p_ent, p_fw_ret, false);
97                 if (rc == ECORE_SUCCESS)
98                         return ECORE_SUCCESS;
99         }
100
101         /* Move to polling with a sleeping period between iterations */
102         rc = __ecore_spq_block(p_hwfn, p_ent, p_fw_ret, true);
103         if (rc == ECORE_SUCCESS)
104                 return ECORE_SUCCESS;
105
106         DP_INFO(p_hwfn, "Ramrod is stuck, requesting MCP drain\n");
107         rc = ecore_mcp_drain(p_hwfn, p_hwfn->p_main_ptt);
108         if (rc != ECORE_SUCCESS) {
109                 DP_NOTICE(p_hwfn, true, "MCP drain failed\n");
110                 goto err;
111         }
112
113         /* Retry after drain */
114         rc = __ecore_spq_block(p_hwfn, p_ent, p_fw_ret, true);
115         if (rc == ECORE_SUCCESS)
116                 return ECORE_SUCCESS;
117
118         comp_done = (struct ecore_spq_comp_done *)p_ent->comp_cb.cookie;
119         if (comp_done->done == 1) {
120                 if (p_fw_ret)
121                         *p_fw_ret = comp_done->fw_return_code;
122                 return ECORE_SUCCESS;
123         }
124 err:
125         DP_NOTICE(p_hwfn, true,
126                   "Ramrod is stuck [CID %08x cmd %02x proto %02x echo %04x]\n",
127                   OSAL_LE32_TO_CPU(p_ent->elem.hdr.cid),
128                   p_ent->elem.hdr.cmd_id, p_ent->elem.hdr.protocol_id,
129                   OSAL_LE16_TO_CPU(p_ent->elem.hdr.echo));
130
131         ecore_hw_err_notify(p_hwfn, ECORE_HW_ERR_RAMROD_FAIL);
132
133         return ECORE_BUSY;
134 }
135
136 /***************************************************************************
137  * SPQ entries inner API
138  ***************************************************************************/
139 static enum _ecore_status_t
140 ecore_spq_fill_entry(struct ecore_hwfn *p_hwfn, struct ecore_spq_entry *p_ent)
141 {
142         p_ent->flags = 0;
143
144         switch (p_ent->comp_mode) {
145         case ECORE_SPQ_MODE_EBLOCK:
146         case ECORE_SPQ_MODE_BLOCK:
147                 p_ent->comp_cb.function = ecore_spq_blocking_cb;
148                 break;
149         case ECORE_SPQ_MODE_CB:
150                 break;
151         default:
152                 DP_NOTICE(p_hwfn, true, "Unknown SPQE completion mode %d\n",
153                           p_ent->comp_mode);
154                 return ECORE_INVAL;
155         }
156
157         DP_VERBOSE(p_hwfn, ECORE_MSG_SPQ,
158                    "Ramrod header: [CID 0x%08x CMD 0x%02x protocol 0x%02x]"
159                    " Data pointer: [%08x:%08x] Completion Mode: %s\n",
160                    p_ent->elem.hdr.cid, p_ent->elem.hdr.cmd_id,
161                    p_ent->elem.hdr.protocol_id,
162                    p_ent->elem.data_ptr.hi, p_ent->elem.data_ptr.lo,
163                    D_TRINE(p_ent->comp_mode, ECORE_SPQ_MODE_EBLOCK,
164                            ECORE_SPQ_MODE_BLOCK, "MODE_EBLOCK", "MODE_BLOCK",
165                            "MODE_CB"));
166
167         return ECORE_SUCCESS;
168 }
169
170 /***************************************************************************
171  * HSI access
172  ***************************************************************************/
173 static void ecore_spq_hw_initialize(struct ecore_hwfn *p_hwfn,
174                                     struct ecore_spq *p_spq)
175 {
176         u16 pq;
177         struct ecore_cxt_info cxt_info;
178         struct core_conn_context *p_cxt;
179         union ecore_qm_pq_params pq_params;
180         enum _ecore_status_t rc;
181
182         cxt_info.iid = p_spq->cid;
183
184         rc = ecore_cxt_get_cid_info(p_hwfn, &cxt_info);
185
186         if (rc < 0) {
187                 DP_NOTICE(p_hwfn, true, "Cannot find context info for cid=%d\n",
188                           p_spq->cid);
189                 return;
190         }
191
192         p_cxt = cxt_info.p_cxt;
193
194         SET_FIELD(p_cxt->xstorm_ag_context.flags10,
195                   XSTORM_CORE_CONN_AG_CTX_DQ_CF_EN, 1);
196         SET_FIELD(p_cxt->xstorm_ag_context.flags1,
197                   XSTORM_CORE_CONN_AG_CTX_DQ_CF_ACTIVE, 1);
198         /* SET_FIELD(p_cxt->xstorm_ag_context.flags10,
199          *           XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_EN, 1);
200          */
201         SET_FIELD(p_cxt->xstorm_ag_context.flags9,
202                   XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_EN, 1);
203
204         /* CDU validation - FIXME currently disabled */
205
206         /* QM physical queue */
207         OSAL_MEMSET(&pq_params, 0, sizeof(pq_params));
208         pq_params.core.tc = LB_TC;
209         pq = ecore_get_qm_pq(p_hwfn, PROTOCOLID_CORE, &pq_params);
210         p_cxt->xstorm_ag_context.physical_q0 = OSAL_CPU_TO_LE16(pq);
211
212         p_cxt->xstorm_st_context.spq_base_lo =
213             DMA_LO_LE(p_spq->chain.p_phys_addr);
214         p_cxt->xstorm_st_context.spq_base_hi =
215             DMA_HI_LE(p_spq->chain.p_phys_addr);
216
217         DMA_REGPAIR_LE(p_cxt->xstorm_st_context.consolid_base_addr,
218                        p_hwfn->p_consq->chain.p_phys_addr);
219 }
220
221 static enum _ecore_status_t ecore_spq_hw_post(struct ecore_hwfn *p_hwfn,
222                                               struct ecore_spq *p_spq,
223                                               struct ecore_spq_entry *p_ent)
224 {
225         struct ecore_chain *p_chain = &p_hwfn->p_spq->chain;
226         u16 echo = ecore_chain_get_prod_idx(p_chain);
227         struct slow_path_element *elem;
228         struct core_db_data db;
229
230         p_ent->elem.hdr.echo = OSAL_CPU_TO_LE16(echo);
231         elem = ecore_chain_produce(p_chain);
232         if (!elem) {
233                 DP_NOTICE(p_hwfn, true, "Failed to produce from SPQ chain\n");
234                 return ECORE_INVAL;
235         }
236
237         *elem = p_ent->elem;    /* struct assignment */
238
239         /* send a doorbell on the slow hwfn session */
240         OSAL_MEMSET(&db, 0, sizeof(db));
241         SET_FIELD(db.params, CORE_DB_DATA_DEST, DB_DEST_XCM);
242         SET_FIELD(db.params, CORE_DB_DATA_AGG_CMD, DB_AGG_CMD_SET);
243         SET_FIELD(db.params, CORE_DB_DATA_AGG_VAL_SEL,
244                   DQ_XCM_CORE_SPQ_PROD_CMD);
245         db.agg_flags = DQ_XCM_CORE_DQ_CF_CMD;
246         db.spq_prod = OSAL_CPU_TO_LE16(ecore_chain_get_prod_idx(p_chain));
247
248         /* make sure the SPQE is updated before the doorbell */
249         OSAL_WMB(p_hwfn->p_dev);
250
251         DOORBELL(p_hwfn, DB_ADDR(p_spq->cid, DQ_DEMS_LEGACY), *(u32 *)&db);
252
253         /* make sure doorbell is rang */
254         OSAL_WMB(p_hwfn->p_dev);
255
256         DP_VERBOSE(p_hwfn, ECORE_MSG_SPQ,
257                    "Doorbelled [0x%08x, CID 0x%08x] with Flags: %02x"
258                    " agg_params: %02x, prod: %04x\n",
259                    DB_ADDR(p_spq->cid, DQ_DEMS_LEGACY), p_spq->cid, db.params,
260                    db.agg_flags, ecore_chain_get_prod_idx(p_chain));
261
262         return ECORE_SUCCESS;
263 }
264
265 /***************************************************************************
266  * Asynchronous events
267  ***************************************************************************/
268
269 static enum _ecore_status_t
270 ecore_async_event_completion(struct ecore_hwfn *p_hwfn,
271                              struct event_ring_entry *p_eqe)
272 {
273         switch (p_eqe->protocol_id) {
274         case PROTOCOLID_COMMON:
275                 return ecore_sriov_eqe_event(p_hwfn,
276                                              p_eqe->opcode,
277                                              p_eqe->echo, &p_eqe->data);
278         default:
279                 DP_NOTICE(p_hwfn,
280                           true, "Unknown Async completion for protocol: %d\n",
281                           p_eqe->protocol_id);
282                 return ECORE_INVAL;
283         }
284 }
285
286 /***************************************************************************
287  * EQ API
288  ***************************************************************************/
289 void ecore_eq_prod_update(struct ecore_hwfn *p_hwfn, u16 prod)
290 {
291         u32 addr = GTT_BAR0_MAP_REG_USDM_RAM +
292             USTORM_EQE_CONS_OFFSET(p_hwfn->rel_pf_id);
293
294         REG_WR16(p_hwfn, addr, prod);
295
296         /* keep prod updates ordered */
297         OSAL_MMIOWB(p_hwfn->p_dev);
298 }
299
300 enum _ecore_status_t ecore_eq_completion(struct ecore_hwfn *p_hwfn,
301                                          void *cookie)
302 {
303         struct ecore_eq *p_eq = cookie;
304         struct ecore_chain *p_chain = &p_eq->chain;
305         enum _ecore_status_t rc = 0;
306
307         /* take a snapshot of the FW consumer */
308         u16 fw_cons_idx = OSAL_LE16_TO_CPU(*p_eq->p_fw_cons);
309
310         DP_VERBOSE(p_hwfn, ECORE_MSG_SPQ, "fw_cons_idx %x\n", fw_cons_idx);
311
312         /* Need to guarantee the fw_cons index we use points to a usuable
313          * element (to comply with our chain), so our macros would comply
314          */
315         if ((fw_cons_idx & ecore_chain_get_usable_per_page(p_chain)) ==
316             ecore_chain_get_usable_per_page(p_chain)) {
317                 fw_cons_idx += ecore_chain_get_unusable_per_page(p_chain);
318         }
319
320         /* Complete current segment of eq entries */
321         while (fw_cons_idx != ecore_chain_get_cons_idx(p_chain)) {
322                 struct event_ring_entry *p_eqe = ecore_chain_consume(p_chain);
323                 if (!p_eqe) {
324                         rc = ECORE_INVAL;
325                         break;
326                 }
327
328                 DP_VERBOSE(p_hwfn, ECORE_MSG_SPQ,
329                            "op %x prot %x res0 %x echo %x fwret %x flags %x\n",
330                            p_eqe->opcode,            /* Event Opcode */
331                            p_eqe->protocol_id,  /* Event Protocol ID */
332                            p_eqe->reserved0,    /* Reserved */
333                            /* Echo value from ramrod data on the host */
334                            OSAL_LE16_TO_CPU(p_eqe->echo),
335                            p_eqe->fw_return_code,    /* FW return code for SP
336                                                       * ramrods
337                                                       */
338                            p_eqe->flags);
339
340                 if (GET_FIELD(p_eqe->flags, EVENT_RING_ENTRY_ASYNC)) {
341                         if (ecore_async_event_completion(p_hwfn, p_eqe))
342                                 rc = ECORE_INVAL;
343                 } else if (ecore_spq_completion(p_hwfn,
344                                                 p_eqe->echo,
345                                                 p_eqe->fw_return_code,
346                                                 &p_eqe->data)) {
347                         rc = ECORE_INVAL;
348                 }
349
350                 ecore_chain_recycle_consumed(p_chain);
351         }
352
353         ecore_eq_prod_update(p_hwfn, ecore_chain_get_prod_idx(p_chain));
354
355         return rc;
356 }
357
358 struct ecore_eq *ecore_eq_alloc(struct ecore_hwfn *p_hwfn, u16 num_elem)
359 {
360         struct ecore_eq *p_eq;
361
362         /* Allocate EQ struct */
363         p_eq = OSAL_ZALLOC(p_hwfn->p_dev, GFP_KERNEL, sizeof(*p_eq));
364         if (!p_eq) {
365                 DP_NOTICE(p_hwfn, true,
366                           "Failed to allocate `struct ecore_eq'\n");
367                 return OSAL_NULL;
368         }
369
370         /* Allocate and initialize EQ chain*/
371         if (ecore_chain_alloc(p_hwfn->p_dev,
372                               ECORE_CHAIN_USE_TO_PRODUCE,
373                               ECORE_CHAIN_MODE_PBL,
374                               ECORE_CHAIN_CNT_TYPE_U16,
375                               num_elem,
376                               sizeof(union event_ring_element), &p_eq->chain)) {
377                 DP_NOTICE(p_hwfn, true, "Failed to allocate eq chain\n");
378                 goto eq_allocate_fail;
379         }
380
381         /* register EQ completion on the SP SB */
382         ecore_int_register_cb(p_hwfn,
383                               ecore_eq_completion,
384                               p_eq, &p_eq->eq_sb_index, &p_eq->p_fw_cons);
385
386         return p_eq;
387
388 eq_allocate_fail:
389         ecore_eq_free(p_hwfn, p_eq);
390         return OSAL_NULL;
391 }
392
393 void ecore_eq_setup(struct ecore_hwfn *p_hwfn, struct ecore_eq *p_eq)
394 {
395         ecore_chain_reset(&p_eq->chain);
396 }
397
398 void ecore_eq_free(struct ecore_hwfn *p_hwfn, struct ecore_eq *p_eq)
399 {
400         if (!p_eq)
401                 return;
402         ecore_chain_free(p_hwfn->p_dev, &p_eq->chain);
403         OSAL_FREE(p_hwfn->p_dev, p_eq);
404 }
405
406 /***************************************************************************
407 * CQE API - manipulate EQ functionality
408 ***************************************************************************/
409 static enum _ecore_status_t ecore_cqe_completion(struct ecore_hwfn *p_hwfn,
410                                                  struct eth_slow_path_rx_cqe
411                                                  *cqe,
412                                                  enum protocol_type protocol)
413 {
414         if (IS_VF(p_hwfn->p_dev))
415                 return OSAL_VF_CQE_COMPLETION(p_hwfn, cqe, protocol);
416
417         /* @@@tmp - it's possible we'll eventually want to handle some
418          * actual commands that can arrive here, but for now this is only
419          * used to complete the ramrod using the echo value on the cqe
420          */
421         return ecore_spq_completion(p_hwfn, cqe->echo, 0, OSAL_NULL);
422 }
423
424 enum _ecore_status_t ecore_eth_cqe_completion(struct ecore_hwfn *p_hwfn,
425                                               struct eth_slow_path_rx_cqe *cqe)
426 {
427         enum _ecore_status_t rc;
428
429         rc = ecore_cqe_completion(p_hwfn, cqe, PROTOCOLID_ETH);
430         if (rc) {
431                 DP_NOTICE(p_hwfn, true,
432                           "Failed to handle RXQ CQE [cmd 0x%02x]\n",
433                           cqe->ramrod_cmd_id);
434         }
435
436         return rc;
437 }
438
439 /***************************************************************************
440  * Slow hwfn Queue (spq)
441  ***************************************************************************/
442 void ecore_spq_setup(struct ecore_hwfn *p_hwfn)
443 {
444         struct ecore_spq *p_spq = p_hwfn->p_spq;
445         struct ecore_spq_entry *p_virt = OSAL_NULL;
446         dma_addr_t p_phys = 0;
447         u32 i, capacity;
448
449         OSAL_LIST_INIT(&p_spq->pending);
450         OSAL_LIST_INIT(&p_spq->completion_pending);
451         OSAL_LIST_INIT(&p_spq->free_pool);
452         OSAL_LIST_INIT(&p_spq->unlimited_pending);
453         OSAL_SPIN_LOCK_INIT(&p_spq->lock);
454
455         /* SPQ empty pool */
456         p_phys = p_spq->p_phys + OFFSETOF(struct ecore_spq_entry, ramrod);
457         p_virt = p_spq->p_virt;
458
459         capacity = ecore_chain_get_capacity(&p_spq->chain);
460         for (i = 0; i < capacity; i++) {
461                 DMA_REGPAIR_LE(p_virt->elem.data_ptr, p_phys);
462
463                 OSAL_LIST_PUSH_TAIL(&p_virt->list, &p_spq->free_pool);
464
465                 p_virt++;
466                 p_phys += sizeof(struct ecore_spq_entry);
467         }
468
469         /* Statistics */
470         p_spq->normal_count = 0;
471         p_spq->comp_count = 0;
472         p_spq->comp_sent_count = 0;
473         p_spq->unlimited_pending_count = 0;
474
475         OSAL_MEM_ZERO(p_spq->p_comp_bitmap,
476                       SPQ_COMP_BMAP_SIZE * sizeof(unsigned long));
477         p_spq->comp_bitmap_idx = 0;
478
479         /* SPQ cid, cannot fail */
480         ecore_cxt_acquire_cid(p_hwfn, PROTOCOLID_CORE, &p_spq->cid);
481         ecore_spq_hw_initialize(p_hwfn, p_spq);
482
483         /* reset the chain itself */
484         ecore_chain_reset(&p_spq->chain);
485 }
486
487 enum _ecore_status_t ecore_spq_alloc(struct ecore_hwfn *p_hwfn)
488 {
489         struct ecore_spq_entry *p_virt = OSAL_NULL;
490         struct ecore_spq *p_spq = OSAL_NULL;
491         dma_addr_t p_phys = 0;
492         u32 capacity;
493
494         /* SPQ struct */
495         p_spq =
496             OSAL_ZALLOC(p_hwfn->p_dev, GFP_KERNEL, sizeof(struct ecore_spq));
497         if (!p_spq) {
498                 DP_NOTICE(p_hwfn, true,
499                           "Failed to allocate `struct ecore_spq'\n");
500                 return ECORE_NOMEM;
501         }
502
503         /* SPQ ring  */
504         if (ecore_chain_alloc(p_hwfn->p_dev, ECORE_CHAIN_USE_TO_PRODUCE,
505                         ECORE_CHAIN_MODE_SINGLE, ECORE_CHAIN_CNT_TYPE_U16, 0,
506                         /* N/A when the mode is SINGLE */
507                         sizeof(struct slow_path_element), &p_spq->chain)) {
508                 DP_NOTICE(p_hwfn, true, "Failed to allocate spq chain\n");
509                 goto spq_allocate_fail;
510         }
511
512         /* allocate and fill the SPQ elements (incl. ramrod data list) */
513         capacity = ecore_chain_get_capacity(&p_spq->chain);
514         p_virt = OSAL_DMA_ALLOC_COHERENT(p_hwfn->p_dev, &p_phys,
515                                          capacity *
516                                          sizeof(struct ecore_spq_entry));
517         if (!p_virt)
518                 goto spq_allocate_fail;
519
520         p_spq->p_virt = p_virt;
521         p_spq->p_phys = p_phys;
522
523         OSAL_SPIN_LOCK_ALLOC(p_hwfn, &p_spq->lock);
524
525         p_hwfn->p_spq = p_spq;
526         return ECORE_SUCCESS;
527
528 spq_allocate_fail:
529         ecore_chain_free(p_hwfn->p_dev, &p_spq->chain);
530         OSAL_FREE(p_hwfn->p_dev, p_spq);
531         return ECORE_NOMEM;
532 }
533
534 void ecore_spq_free(struct ecore_hwfn *p_hwfn)
535 {
536         struct ecore_spq *p_spq = p_hwfn->p_spq;
537         u32 capacity;
538
539         if (!p_spq)
540                 return;
541
542         if (p_spq->p_virt) {
543                 capacity = ecore_chain_get_capacity(&p_spq->chain);
544                 OSAL_DMA_FREE_COHERENT(p_hwfn->p_dev,
545                                        p_spq->p_virt,
546                                        p_spq->p_phys,
547                                        capacity *
548                                        sizeof(struct ecore_spq_entry));
549         }
550
551         ecore_chain_free(p_hwfn->p_dev, &p_spq->chain);
552         OSAL_SPIN_LOCK_DEALLOC(&p_spq->lock);
553         OSAL_FREE(p_hwfn->p_dev, p_spq);
554 }
555
556 enum _ecore_status_t
557 ecore_spq_get_entry(struct ecore_hwfn *p_hwfn, struct ecore_spq_entry **pp_ent)
558 {
559         struct ecore_spq *p_spq = p_hwfn->p_spq;
560         struct ecore_spq_entry *p_ent = OSAL_NULL;
561         enum _ecore_status_t rc = ECORE_SUCCESS;
562
563         OSAL_SPIN_LOCK(&p_spq->lock);
564
565         if (OSAL_LIST_IS_EMPTY(&p_spq->free_pool)) {
566                 p_ent = OSAL_ZALLOC(p_hwfn->p_dev, GFP_ATOMIC, sizeof(*p_ent));
567                 if (!p_ent) {
568                         DP_NOTICE(p_hwfn, true,
569                                  "Failed to allocate an SPQ entry for a pending"
570                                  " ramrod\n");
571                         rc = ECORE_NOMEM;
572                         goto out_unlock;
573                 }
574                 p_ent->queue = &p_spq->unlimited_pending;
575         } else {
576                 p_ent = OSAL_LIST_FIRST_ENTRY(&p_spq->free_pool,
577                                               struct ecore_spq_entry, list);
578                 OSAL_LIST_REMOVE_ENTRY(&p_ent->list, &p_spq->free_pool);
579                 p_ent->queue = &p_spq->pending;
580         }
581
582         *pp_ent = p_ent;
583
584 out_unlock:
585         OSAL_SPIN_UNLOCK(&p_spq->lock);
586         return rc;
587 }
588
589 /* Locked variant; Should be called while the SPQ lock is taken */
590 static void __ecore_spq_return_entry(struct ecore_hwfn *p_hwfn,
591                                      struct ecore_spq_entry *p_ent)
592 {
593         OSAL_LIST_PUSH_TAIL(&p_ent->list, &p_hwfn->p_spq->free_pool);
594 }
595
596 void ecore_spq_return_entry(struct ecore_hwfn *p_hwfn,
597                             struct ecore_spq_entry *p_ent)
598 {
599         OSAL_SPIN_LOCK(&p_hwfn->p_spq->lock);
600         __ecore_spq_return_entry(p_hwfn, p_ent);
601         OSAL_SPIN_UNLOCK(&p_hwfn->p_spq->lock);
602 }
603
604 /**
605  * @brief ecore_spq_add_entry - adds a new entry to the pending
606  *        list. Should be used while lock is being held.
607  *
608  * Addes an entry to the pending list is there is room (en empty
609  * element is available in the free_pool), or else places the
610  * entry in the unlimited_pending pool.
611  *
612  * @param p_hwfn
613  * @param p_ent
614  * @param priority
615  *
616  * @return enum _ecore_status_t
617  */
618 static enum _ecore_status_t
619 ecore_spq_add_entry(struct ecore_hwfn *p_hwfn,
620                     struct ecore_spq_entry *p_ent, enum spq_priority priority)
621 {
622         struct ecore_spq *p_spq = p_hwfn->p_spq;
623
624         if (p_ent->queue == &p_spq->unlimited_pending) {
625                 if (OSAL_LIST_IS_EMPTY(&p_spq->free_pool)) {
626                         OSAL_LIST_PUSH_TAIL(&p_ent->list,
627                                             &p_spq->unlimited_pending);
628                         p_spq->unlimited_pending_count++;
629
630                         return ECORE_SUCCESS;
631
632                 } else {
633                         struct ecore_spq_entry *p_en2;
634
635                         p_en2 = OSAL_LIST_FIRST_ENTRY(&p_spq->free_pool,
636                                                      struct ecore_spq_entry,
637                                                      list);
638                         OSAL_LIST_REMOVE_ENTRY(&p_en2->list, &p_spq->free_pool);
639
640                         /* Copy the ring element physical pointer to the new
641                          * entry, since we are about to override the entire ring
642                          * entry and don't want to lose the pointer.
643                          */
644                         p_ent->elem.data_ptr = p_en2->elem.data_ptr;
645
646                         *p_en2 = *p_ent;
647
648                         /* EBLOCK responsible to free the allocated p_ent */
649                         if (p_ent->comp_mode != ECORE_SPQ_MODE_EBLOCK)
650                                 OSAL_FREE(p_hwfn->p_dev, p_ent);
651
652                         p_ent = p_en2;
653                 }
654         }
655
656         /* entry is to be placed in 'pending' queue */
657         switch (priority) {
658         case ECORE_SPQ_PRIORITY_NORMAL:
659                 OSAL_LIST_PUSH_TAIL(&p_ent->list, &p_spq->pending);
660                 p_spq->normal_count++;
661                 break;
662         case ECORE_SPQ_PRIORITY_HIGH:
663                 OSAL_LIST_PUSH_HEAD(&p_ent->list, &p_spq->pending);
664                 p_spq->high_count++;
665                 break;
666         default:
667                 return ECORE_INVAL;
668         }
669
670         return ECORE_SUCCESS;
671 }
672
673 /***************************************************************************
674  * Accessor
675  ***************************************************************************/
676
677 u32 ecore_spq_get_cid(struct ecore_hwfn *p_hwfn)
678 {
679         if (!p_hwfn->p_spq)
680                 return 0xffffffff;      /* illegal */
681         return p_hwfn->p_spq->cid;
682 }
683
684 /***************************************************************************
685  * Posting new Ramrods
686  ***************************************************************************/
687
688 static enum _ecore_status_t ecore_spq_post_list(struct ecore_hwfn *p_hwfn,
689                                                 osal_list_t *head,
690                                                 u32 keep_reserve)
691 {
692         struct ecore_spq *p_spq = p_hwfn->p_spq;
693         enum _ecore_status_t rc;
694
695         /* TODO - implementation might be wasteful; will always keep room
696          * for an additional high priority ramrod (even if one is already
697          * pending FW)
698          */
699         while (ecore_chain_get_elem_left(&p_spq->chain) > keep_reserve &&
700                !OSAL_LIST_IS_EMPTY(head)) {
701                 struct ecore_spq_entry *p_ent =
702                     OSAL_LIST_FIRST_ENTRY(head, struct ecore_spq_entry, list);
703                 if (p_ent != OSAL_NULL) {
704 #if defined(_NTDDK_)
705 #pragma warning(suppress : 6011 28182)
706 #endif
707                         OSAL_LIST_REMOVE_ENTRY(&p_ent->list, head);
708                         OSAL_LIST_PUSH_TAIL(&p_ent->list,
709                                             &p_spq->completion_pending);
710                         p_spq->comp_sent_count++;
711
712                         rc = ecore_spq_hw_post(p_hwfn, p_spq, p_ent);
713                         if (rc) {
714                                 OSAL_LIST_REMOVE_ENTRY(&p_ent->list,
715                                                     &p_spq->completion_pending);
716                                 __ecore_spq_return_entry(p_hwfn, p_ent);
717                                 return rc;
718                         }
719                 }
720         }
721
722         return ECORE_SUCCESS;
723 }
724
725 static enum _ecore_status_t ecore_spq_pend_post(struct ecore_hwfn *p_hwfn)
726 {
727         struct ecore_spq *p_spq = p_hwfn->p_spq;
728         struct ecore_spq_entry *p_ent = OSAL_NULL;
729
730         while (!OSAL_LIST_IS_EMPTY(&p_spq->free_pool)) {
731                 if (OSAL_LIST_IS_EMPTY(&p_spq->unlimited_pending))
732                         break;
733
734                 p_ent = OSAL_LIST_FIRST_ENTRY(&p_spq->unlimited_pending,
735                                               struct ecore_spq_entry, list);
736                 if (!p_ent)
737                         return ECORE_INVAL;
738
739 #if defined(_NTDDK_)
740 #pragma warning(suppress : 6011)
741 #endif
742                 OSAL_LIST_REMOVE_ENTRY(&p_ent->list, &p_spq->unlimited_pending);
743
744                 ecore_spq_add_entry(p_hwfn, p_ent, p_ent->priority);
745         }
746
747         return ecore_spq_post_list(p_hwfn,
748                                  &p_spq->pending, SPQ_HIGH_PRI_RESERVE_DEFAULT);
749 }
750
751 enum _ecore_status_t ecore_spq_post(struct ecore_hwfn *p_hwfn,
752                                     struct ecore_spq_entry *p_ent,
753                                     u8 *fw_return_code)
754 {
755         enum _ecore_status_t rc = ECORE_SUCCESS;
756         struct ecore_spq *p_spq = p_hwfn ? p_hwfn->p_spq : OSAL_NULL;
757         bool b_ret_ent = true;
758
759         if (!p_hwfn)
760                 return ECORE_INVAL;
761
762         if (!p_ent) {
763                 DP_NOTICE(p_hwfn, true, "Got a NULL pointer\n");
764                 return ECORE_INVAL;
765         }
766
767         if (p_hwfn->p_dev->recov_in_prog) {
768                 DP_VERBOSE(p_hwfn, ECORE_MSG_SPQ,
769                            "Recovery is in progress -> skip spq post"
770                            " [cmd %02x protocol %02x]\n",
771                            p_ent->elem.hdr.cmd_id, p_ent->elem.hdr.protocol_id);
772                 /* Return success to let the flows to be completed successfully
773                  * w/o any error handling.
774                  */
775                 return ECORE_SUCCESS;
776         }
777
778         OSAL_SPIN_LOCK(&p_spq->lock);
779
780         /* Complete the entry */
781         rc = ecore_spq_fill_entry(p_hwfn, p_ent);
782
783         /* Check return value after LOCK is taken for cleaner error flow */
784         if (rc)
785                 goto spq_post_fail;
786
787         /* Add the request to the pending queue */
788         rc = ecore_spq_add_entry(p_hwfn, p_ent, p_ent->priority);
789         if (rc)
790                 goto spq_post_fail;
791
792         rc = ecore_spq_pend_post(p_hwfn);
793         if (rc) {
794                 /* Since it's possible that pending failed for a different
795                  * entry [although unlikely], the failed entry was already
796                  * dealt with; No need to return it here.
797                  */
798                 b_ret_ent = false;
799                 goto spq_post_fail;
800         }
801
802         OSAL_SPIN_UNLOCK(&p_spq->lock);
803
804         if (p_ent->comp_mode == ECORE_SPQ_MODE_EBLOCK) {
805                 /* For entries in ECORE BLOCK mode, the completion code cannot
806                  * perform the necessary cleanup - if it did, we couldn't
807                  * access p_ent here to see whether it's successful or not.
808                  * Thus, after gaining the answer perform the cleanup here.
809                  */
810                 rc = ecore_spq_block(p_hwfn, p_ent, fw_return_code,
811                                      p_ent->queue == &p_spq->unlimited_pending);
812
813                 if (p_ent->queue == &p_spq->unlimited_pending) {
814                         /* This is an allocated p_ent which does not need to
815                          * return to pool.
816                          */
817                         OSAL_FREE(p_hwfn->p_dev, p_ent);
818
819                         /* TBD: handle error flow and remove p_ent from
820                          * completion pending
821                          */
822                         return rc;
823                 }
824
825                 if (rc)
826                         goto spq_post_fail2;
827
828                 /* return to pool */
829                 ecore_spq_return_entry(p_hwfn, p_ent);
830         }
831         return rc;
832
833 spq_post_fail2:
834         OSAL_SPIN_LOCK(&p_spq->lock);
835         OSAL_LIST_REMOVE_ENTRY(&p_ent->list, &p_spq->completion_pending);
836         ecore_chain_return_produced(&p_spq->chain);
837
838 spq_post_fail:
839         /* return to the free pool */
840         if (b_ret_ent)
841                 __ecore_spq_return_entry(p_hwfn, p_ent);
842         OSAL_SPIN_UNLOCK(&p_spq->lock);
843
844         return rc;
845 }
846
847 enum _ecore_status_t ecore_spq_completion(struct ecore_hwfn *p_hwfn,
848                                           __le16 echo,
849                                           u8 fw_return_code,
850                                           union event_ring_data *p_data)
851 {
852         struct ecore_spq *p_spq;
853         struct ecore_spq_entry *p_ent = OSAL_NULL;
854         struct ecore_spq_entry *tmp;
855         struct ecore_spq_entry *found = OSAL_NULL;
856         enum _ecore_status_t rc;
857
858         if (!p_hwfn)
859                 return ECORE_INVAL;
860
861         p_spq = p_hwfn->p_spq;
862         if (!p_spq)
863                 return ECORE_INVAL;
864
865         OSAL_SPIN_LOCK(&p_spq->lock);
866         OSAL_LIST_FOR_EACH_ENTRY_SAFE(p_ent,
867                                       tmp,
868                                       &p_spq->completion_pending,
869                                       list, struct ecore_spq_entry) {
870                 if (p_ent->elem.hdr.echo == echo) {
871                         OSAL_LIST_REMOVE_ENTRY(&p_ent->list,
872                                                &p_spq->completion_pending);
873
874                         /* Avoid overriding of SPQ entries when getting
875                          * out-of-order completions, by marking the completions
876                          * in a bitmap and increasing the chain consumer only
877                          * for the first successive completed entries.
878                          */
879                         SPQ_COMP_BMAP_SET_BIT(p_spq, echo);
880                         while (SPQ_COMP_BMAP_TEST_BIT(p_spq,
881                                                       p_spq->comp_bitmap_idx)) {
882                                 SPQ_COMP_BMAP_CLEAR_BIT(p_spq,
883                                                         p_spq->comp_bitmap_idx);
884                                 p_spq->comp_bitmap_idx++;
885                                 ecore_chain_return_produced(&p_spq->chain);
886                         }
887
888                         p_spq->comp_count++;
889                         found = p_ent;
890                         break;
891                 }
892
893                 /* This is debug and should be relatively uncommon - depends
894                  * on scenarios which have mutliple per-PF sent ramrods.
895                  */
896                 DP_VERBOSE(p_hwfn, ECORE_MSG_SPQ,
897                            "Got completion for echo %04x - doesn't match"
898                            " echo %04x in completion pending list\n",
899                            OSAL_LE16_TO_CPU(echo),
900                            OSAL_LE16_TO_CPU(p_ent->elem.hdr.echo));
901         }
902
903         /* Release lock before callback, as callback may post
904          * an additional ramrod.
905          */
906         OSAL_SPIN_UNLOCK(&p_spq->lock);
907
908         if (!found) {
909                 DP_NOTICE(p_hwfn, true,
910                           "Failed to find an entry this"
911                           " EQE [echo %04x] completes\n",
912                           OSAL_LE16_TO_CPU(echo));
913                 return ECORE_EXISTS;
914         }
915
916         DP_VERBOSE(p_hwfn, ECORE_MSG_SPQ,
917                    "Complete EQE [echo %04x]: func %p cookie %p)\n",
918                    OSAL_LE16_TO_CPU(echo),
919                    p_ent->comp_cb.function, p_ent->comp_cb.cookie);
920         if (found->comp_cb.function)
921                 found->comp_cb.function(p_hwfn, found->comp_cb.cookie, p_data,
922                                         fw_return_code);
923
924         if ((found->comp_mode != ECORE_SPQ_MODE_EBLOCK) ||
925             (found->queue == &p_spq->unlimited_pending))
926                 /* EBLOCK  is responsible for returning its own entry into the
927                  * free list, unless it originally added the entry into the
928                  * unlimited pending list.
929                  */
930                 ecore_spq_return_entry(p_hwfn, found);
931
932         /* Attempt to post pending requests */
933         OSAL_SPIN_LOCK(&p_spq->lock);
934         rc = ecore_spq_pend_post(p_hwfn);
935         OSAL_SPIN_UNLOCK(&p_spq->lock);
936
937         return rc;
938 }
939
940 struct ecore_consq *ecore_consq_alloc(struct ecore_hwfn *p_hwfn)
941 {
942         struct ecore_consq *p_consq;
943
944         /* Allocate ConsQ struct */
945         p_consq =
946             OSAL_ZALLOC(p_hwfn->p_dev, GFP_KERNEL, sizeof(*p_consq));
947         if (!p_consq) {
948                 DP_NOTICE(p_hwfn, true,
949                           "Failed to allocate `struct ecore_consq'\n");
950                 return OSAL_NULL;
951         }
952
953         /* Allocate and initialize EQ chain */
954         if (ecore_chain_alloc(p_hwfn->p_dev,
955                               ECORE_CHAIN_USE_TO_PRODUCE,
956                               ECORE_CHAIN_MODE_PBL,
957                               ECORE_CHAIN_CNT_TYPE_U16,
958                               ECORE_CHAIN_PAGE_SIZE / 0x80,
959                               0x80, &p_consq->chain)) {
960                 DP_NOTICE(p_hwfn, true, "Failed to allocate consq chain");
961                 goto consq_allocate_fail;
962         }
963
964         return p_consq;
965
966 consq_allocate_fail:
967         ecore_consq_free(p_hwfn, p_consq);
968         return OSAL_NULL;
969 }
970
971 void ecore_consq_setup(struct ecore_hwfn *p_hwfn, struct ecore_consq *p_consq)
972 {
973         ecore_chain_reset(&p_consq->chain);
974 }
975
976 void ecore_consq_free(struct ecore_hwfn *p_hwfn, struct ecore_consq *p_consq)
977 {
978         if (!p_consq)
979                 return;
980         ecore_chain_free(p_hwfn->p_dev, &p_consq->chain);
981         OSAL_FREE(p_hwfn->p_dev, p_consq);
982 }