xref: /dpdk/drivers/common/sfc_efx/base/efx_rx.c (revision f4eac3a09c51a1a2dab1f2fd3a10fe0619286a0d)
1 /* SPDX-License-Identifier: BSD-3-Clause
2  *
3  * Copyright(c) 2019-2021 Xilinx, Inc.
4  * Copyright(c) 2007-2019 Solarflare Communications Inc.
5  */
6 
7 #include "efx.h"
8 #include "efx_impl.h"
9 
10 
11 #if EFSYS_OPT_SIENA
12 
13 static	__checkReturn	efx_rc_t
14 siena_rx_init(
15 	__in		efx_nic_t *enp);
16 
17 static			void
18 siena_rx_fini(
19 	__in		efx_nic_t *enp);
20 
21 #if EFSYS_OPT_RX_SCATTER
22 static	__checkReturn	efx_rc_t
23 siena_rx_scatter_enable(
24 	__in		efx_nic_t *enp,
25 	__in		unsigned int buf_size);
26 #endif /* EFSYS_OPT_RX_SCATTER */
27 
28 #if EFSYS_OPT_RX_SCALE
29 static	__checkReturn	efx_rc_t
30 siena_rx_scale_mode_set(
31 	__in		efx_nic_t *enp,
32 	__in		uint32_t rss_context,
33 	__in		efx_rx_hash_alg_t alg,
34 	__in		efx_rx_hash_type_t type,
35 	__in		boolean_t insert);
36 
37 static	__checkReturn	efx_rc_t
38 siena_rx_scale_key_set(
39 	__in		efx_nic_t *enp,
40 	__in		uint32_t rss_context,
41 	__in_ecount(n)	uint8_t *key,
42 	__in		size_t n);
43 
44 static	__checkReturn		efx_rc_t
45 siena_rx_scale_tbl_set(
46 	__in			efx_nic_t *enp,
47 	__in			uint32_t rss_context,
48 	__in_ecount(nentries)	unsigned int *table,
49 	__in			size_t nentries);
50 
51 static	__checkReturn	uint32_t
52 siena_rx_prefix_hash(
53 	__in		efx_nic_t *enp,
54 	__in		efx_rx_hash_alg_t func,
55 	__in		uint8_t *buffer);
56 
57 #endif /* EFSYS_OPT_RX_SCALE */
58 
59 static	__checkReturn	efx_rc_t
60 siena_rx_prefix_pktlen(
61 	__in		efx_nic_t *enp,
62 	__in		uint8_t *buffer,
63 	__out		uint16_t *lengthp);
64 
65 static				void
66 siena_rx_qpost(
67 	__in			efx_rxq_t *erp,
68 	__in_ecount(ndescs)	efsys_dma_addr_t *addrp,
69 	__in			size_t size,
70 	__in			unsigned int ndescs,
71 	__in			unsigned int completed,
72 	__in			unsigned int added);
73 
74 static			void
75 siena_rx_qpush(
76 	__in		efx_rxq_t *erp,
77 	__in		unsigned int added,
78 	__inout		unsigned int *pushedp);
79 
80 #if EFSYS_OPT_RX_PACKED_STREAM
81 static		void
82 siena_rx_qpush_ps_credits(
83 	__in		efx_rxq_t *erp);
84 
85 static	__checkReturn	uint8_t *
86 siena_rx_qps_packet_info(
87 	__in		efx_rxq_t *erp,
88 	__in		uint8_t *buffer,
89 	__in		uint32_t buffer_length,
90 	__in		uint32_t current_offset,
91 	__out		uint16_t *lengthp,
92 	__out		uint32_t *next_offsetp,
93 	__out		uint32_t *timestamp);
94 #endif
95 
96 static	__checkReturn	efx_rc_t
97 siena_rx_qflush(
98 	__in		efx_rxq_t *erp);
99 
100 static			void
101 siena_rx_qenable(
102 	__in		efx_rxq_t *erp);
103 
104 static	__checkReturn	efx_rc_t
105 siena_rx_qcreate(
106 	__in		efx_nic_t *enp,
107 	__in		unsigned int index,
108 	__in		unsigned int label,
109 	__in		efx_rxq_type_t type,
110 	__in_opt	const efx_rxq_type_data_t *type_data,
111 	__in		efsys_mem_t *esmp,
112 	__in		size_t ndescs,
113 	__in		uint32_t id,
114 	__in		unsigned int flags,
115 	__in		efx_evq_t *eep,
116 	__in		efx_rxq_t *erp);
117 
118 static			void
119 siena_rx_qdestroy(
120 	__in		efx_rxq_t *erp);
121 
122 #endif /* EFSYS_OPT_SIENA */
123 
124 
125 #if EFSYS_OPT_SIENA
126 static const efx_rx_ops_t __efx_rx_siena_ops = {
127 	siena_rx_init,				/* erxo_init */
128 	siena_rx_fini,				/* erxo_fini */
129 #if EFSYS_OPT_RX_SCATTER
130 	siena_rx_scatter_enable,		/* erxo_scatter_enable */
131 #endif
132 #if EFSYS_OPT_RX_SCALE
133 	NULL,					/* erxo_scale_context_alloc */
134 	NULL,					/* erxo_scale_context_free */
135 	siena_rx_scale_mode_set,		/* erxo_scale_mode_set */
136 	siena_rx_scale_key_set,			/* erxo_scale_key_set */
137 	siena_rx_scale_tbl_set,			/* erxo_scale_tbl_set */
138 	siena_rx_prefix_hash,			/* erxo_prefix_hash */
139 #endif
140 	siena_rx_prefix_pktlen,			/* erxo_prefix_pktlen */
141 	siena_rx_qpost,				/* erxo_qpost */
142 	siena_rx_qpush,				/* erxo_qpush */
143 #if EFSYS_OPT_RX_PACKED_STREAM
144 	siena_rx_qpush_ps_credits,		/* erxo_qpush_ps_credits */
145 	siena_rx_qps_packet_info,		/* erxo_qps_packet_info */
146 #endif
147 	siena_rx_qflush,			/* erxo_qflush */
148 	siena_rx_qenable,			/* erxo_qenable */
149 	siena_rx_qcreate,			/* erxo_qcreate */
150 	siena_rx_qdestroy,			/* erxo_qdestroy */
151 };
152 #endif	/* EFSYS_OPT_SIENA */
153 
154 #if EFX_OPTS_EF10()
155 static const efx_rx_ops_t __efx_rx_ef10_ops = {
156 	ef10_rx_init,				/* erxo_init */
157 	ef10_rx_fini,				/* erxo_fini */
158 #if EFSYS_OPT_RX_SCATTER
159 	ef10_rx_scatter_enable,			/* erxo_scatter_enable */
160 #endif
161 #if EFSYS_OPT_RX_SCALE
162 	ef10_rx_scale_context_alloc,		/* erxo_scale_context_alloc */
163 	ef10_rx_scale_context_free,		/* erxo_scale_context_free */
164 	ef10_rx_scale_mode_set,			/* erxo_scale_mode_set */
165 	ef10_rx_scale_key_set,			/* erxo_scale_key_set */
166 	ef10_rx_scale_tbl_set,			/* erxo_scale_tbl_set */
167 	ef10_rx_prefix_hash,			/* erxo_prefix_hash */
168 #endif
169 	ef10_rx_prefix_pktlen,			/* erxo_prefix_pktlen */
170 	ef10_rx_qpost,				/* erxo_qpost */
171 	ef10_rx_qpush,				/* erxo_qpush */
172 #if EFSYS_OPT_RX_PACKED_STREAM
173 	ef10_rx_qpush_ps_credits,		/* erxo_qpush_ps_credits */
174 	ef10_rx_qps_packet_info,		/* erxo_qps_packet_info */
175 #endif
176 	ef10_rx_qflush,				/* erxo_qflush */
177 	ef10_rx_qenable,			/* erxo_qenable */
178 	ef10_rx_qcreate,			/* erxo_qcreate */
179 	ef10_rx_qdestroy,			/* erxo_qdestroy */
180 };
181 #endif	/* EFX_OPTS_EF10() */
182 
183 #if EFSYS_OPT_RIVERHEAD
184 static const efx_rx_ops_t __efx_rx_rhead_ops = {
185 	rhead_rx_init,				/* erxo_init */
186 	rhead_rx_fini,				/* erxo_fini */
187 #if EFSYS_OPT_RX_SCATTER
188 	rhead_rx_scatter_enable,		/* erxo_scatter_enable */
189 #endif
190 #if EFSYS_OPT_RX_SCALE
191 	rhead_rx_scale_context_alloc,		/* erxo_scale_context_alloc */
192 	rhead_rx_scale_context_free,		/* erxo_scale_context_free */
193 	rhead_rx_scale_mode_set,		/* erxo_scale_mode_set */
194 	rhead_rx_scale_key_set,			/* erxo_scale_key_set */
195 	rhead_rx_scale_tbl_set,			/* erxo_scale_tbl_set */
196 	rhead_rx_prefix_hash,			/* erxo_prefix_hash */
197 #endif
198 	rhead_rx_prefix_pktlen,			/* erxo_prefix_pktlen */
199 	rhead_rx_qpost,				/* erxo_qpost */
200 	rhead_rx_qpush,				/* erxo_qpush */
201 #if EFSYS_OPT_RX_PACKED_STREAM
202 	NULL,					/* erxo_qpush_ps_credits */
203 	NULL,					/* erxo_qps_packet_info */
204 #endif
205 	rhead_rx_qflush,			/* erxo_qflush */
206 	rhead_rx_qenable,			/* erxo_qenable */
207 	rhead_rx_qcreate,			/* erxo_qcreate */
208 	rhead_rx_qdestroy,			/* erxo_qdestroy */
209 };
210 #endif	/* EFSYS_OPT_RIVERHEAD */
211 
212 
213 	__checkReturn	efx_rc_t
214 efx_rx_init(
215 	__inout		efx_nic_t *enp)
216 {
217 	const efx_rx_ops_t *erxop;
218 	efx_rc_t rc;
219 
220 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
221 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_NIC);
222 
223 	if (!(enp->en_mod_flags & EFX_MOD_EV)) {
224 		rc = EINVAL;
225 		goto fail1;
226 	}
227 
228 	if (enp->en_mod_flags & EFX_MOD_RX) {
229 		rc = EINVAL;
230 		goto fail2;
231 	}
232 
233 	switch (enp->en_family) {
234 #if EFSYS_OPT_SIENA
235 	case EFX_FAMILY_SIENA:
236 		erxop = &__efx_rx_siena_ops;
237 		break;
238 #endif /* EFSYS_OPT_SIENA */
239 
240 #if EFSYS_OPT_HUNTINGTON
241 	case EFX_FAMILY_HUNTINGTON:
242 		erxop = &__efx_rx_ef10_ops;
243 		break;
244 #endif /* EFSYS_OPT_HUNTINGTON */
245 
246 #if EFSYS_OPT_MEDFORD
247 	case EFX_FAMILY_MEDFORD:
248 		erxop = &__efx_rx_ef10_ops;
249 		break;
250 #endif /* EFSYS_OPT_MEDFORD */
251 
252 #if EFSYS_OPT_MEDFORD2
253 	case EFX_FAMILY_MEDFORD2:
254 		erxop = &__efx_rx_ef10_ops;
255 		break;
256 #endif /* EFSYS_OPT_MEDFORD2 */
257 
258 #if EFSYS_OPT_RIVERHEAD
259 	case EFX_FAMILY_RIVERHEAD:
260 		erxop = &__efx_rx_rhead_ops;
261 		break;
262 #endif /* EFSYS_OPT_RIVERHEAD */
263 
264 	default:
265 		EFSYS_ASSERT(0);
266 		rc = ENOTSUP;
267 		goto fail3;
268 	}
269 
270 	if ((rc = erxop->erxo_init(enp)) != 0)
271 		goto fail4;
272 
273 	enp->en_erxop = erxop;
274 	enp->en_mod_flags |= EFX_MOD_RX;
275 	return (0);
276 
277 fail4:
278 	EFSYS_PROBE(fail4);
279 fail3:
280 	EFSYS_PROBE(fail3);
281 fail2:
282 	EFSYS_PROBE(fail2);
283 fail1:
284 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
285 
286 	enp->en_erxop = NULL;
287 	enp->en_mod_flags &= ~EFX_MOD_RX;
288 	return (rc);
289 }
290 
291 			void
292 efx_rx_fini(
293 	__in		efx_nic_t *enp)
294 {
295 	const efx_rx_ops_t *erxop = enp->en_erxop;
296 
297 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
298 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_NIC);
299 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
300 	EFSYS_ASSERT3U(enp->en_rx_qcount, ==, 0);
301 
302 	erxop->erxo_fini(enp);
303 
304 	enp->en_erxop = NULL;
305 	enp->en_mod_flags &= ~EFX_MOD_RX;
306 }
307 
308 #if EFSYS_OPT_RX_SCATTER
309 	__checkReturn	efx_rc_t
310 efx_rx_scatter_enable(
311 	__in		efx_nic_t *enp,
312 	__in		unsigned int buf_size)
313 {
314 	const efx_rx_ops_t *erxop = enp->en_erxop;
315 	efx_rc_t rc;
316 
317 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
318 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
319 
320 	if ((rc = erxop->erxo_scatter_enable(enp, buf_size)) != 0)
321 		goto fail1;
322 
323 	return (0);
324 
325 fail1:
326 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
327 	return (rc);
328 }
329 #endif	/* EFSYS_OPT_RX_SCATTER */
330 
331 #if EFSYS_OPT_RX_SCALE
332 	__checkReturn				efx_rc_t
333 efx_rx_scale_hash_flags_get(
334 	__in					efx_nic_t *enp,
335 	__in					efx_rx_hash_alg_t hash_alg,
336 	__out_ecount_part(max_nflags, *nflagsp)	unsigned int *flagsp,
337 	__in					unsigned int max_nflags,
338 	__out					unsigned int *nflagsp)
339 {
340 	efx_nic_cfg_t *encp = &enp->en_nic_cfg;
341 	unsigned int nflags = 0;
342 	efx_rc_t rc;
343 
344 	if (flagsp == NULL || nflagsp == NULL) {
345 		rc = EINVAL;
346 		goto fail1;
347 	}
348 
349 	if ((encp->enc_rx_scale_hash_alg_mask & (1U << hash_alg)) == 0) {
350 		nflags = 0;
351 		goto done;
352 	}
353 
354 	/* Helper to add flags word to flags array without buffer overflow */
355 #define	INSERT_FLAGS(_flags)			\
356 	do {					\
357 		if (nflags >= max_nflags) {	\
358 			rc = E2BIG;		\
359 			goto fail2;		\
360 		}				\
361 		*(flagsp + nflags) = (_flags);	\
362 		nflags++;			\
363 						\
364 		_NOTE(CONSTANTCONDITION)	\
365 	} while (B_FALSE)
366 
367 	if (encp->enc_rx_scale_l4_hash_supported != B_FALSE) {
368 		INSERT_FLAGS(EFX_RX_HASH(IPV4_TCP, 4TUPLE));
369 		INSERT_FLAGS(EFX_RX_HASH(IPV6_TCP, 4TUPLE));
370 	}
371 
372 	if ((encp->enc_rx_scale_l4_hash_supported != B_FALSE) &&
373 	    (encp->enc_rx_scale_additional_modes_supported != B_FALSE)) {
374 		INSERT_FLAGS(EFX_RX_HASH(IPV4_TCP, 2TUPLE_DST));
375 		INSERT_FLAGS(EFX_RX_HASH(IPV4_TCP, 2TUPLE_SRC));
376 
377 		INSERT_FLAGS(EFX_RX_HASH(IPV6_TCP, 2TUPLE_DST));
378 		INSERT_FLAGS(EFX_RX_HASH(IPV6_TCP, 2TUPLE_SRC));
379 
380 		INSERT_FLAGS(EFX_RX_HASH(IPV4_UDP, 4TUPLE));
381 		INSERT_FLAGS(EFX_RX_HASH(IPV4_UDP, 2TUPLE_DST));
382 		INSERT_FLAGS(EFX_RX_HASH(IPV4_UDP, 2TUPLE_SRC));
383 
384 		INSERT_FLAGS(EFX_RX_HASH(IPV6_UDP, 4TUPLE));
385 		INSERT_FLAGS(EFX_RX_HASH(IPV6_UDP, 2TUPLE_DST));
386 		INSERT_FLAGS(EFX_RX_HASH(IPV6_UDP, 2TUPLE_SRC));
387 	}
388 
389 	INSERT_FLAGS(EFX_RX_HASH(IPV4_TCP, 2TUPLE));
390 	INSERT_FLAGS(EFX_RX_HASH(IPV6_TCP, 2TUPLE));
391 
392 	INSERT_FLAGS(EFX_RX_HASH(IPV4, 2TUPLE));
393 	INSERT_FLAGS(EFX_RX_HASH(IPV6, 2TUPLE));
394 
395 	if (encp->enc_rx_scale_additional_modes_supported != B_FALSE) {
396 		INSERT_FLAGS(EFX_RX_HASH(IPV4_TCP, 1TUPLE_DST));
397 		INSERT_FLAGS(EFX_RX_HASH(IPV4_TCP, 1TUPLE_SRC));
398 
399 		INSERT_FLAGS(EFX_RX_HASH(IPV6_TCP, 1TUPLE_DST));
400 		INSERT_FLAGS(EFX_RX_HASH(IPV6_TCP, 1TUPLE_SRC));
401 
402 		INSERT_FLAGS(EFX_RX_HASH(IPV4_UDP, 2TUPLE));
403 		INSERT_FLAGS(EFX_RX_HASH(IPV4_UDP, 1TUPLE_DST));
404 		INSERT_FLAGS(EFX_RX_HASH(IPV4_UDP, 1TUPLE_SRC));
405 
406 		INSERT_FLAGS(EFX_RX_HASH(IPV6_UDP, 2TUPLE));
407 		INSERT_FLAGS(EFX_RX_HASH(IPV6_UDP, 1TUPLE_DST));
408 		INSERT_FLAGS(EFX_RX_HASH(IPV6_UDP, 1TUPLE_SRC));
409 
410 		INSERT_FLAGS(EFX_RX_HASH(IPV4, 1TUPLE_DST));
411 		INSERT_FLAGS(EFX_RX_HASH(IPV4, 1TUPLE_SRC));
412 
413 		INSERT_FLAGS(EFX_RX_HASH(IPV6, 1TUPLE_DST));
414 		INSERT_FLAGS(EFX_RX_HASH(IPV6, 1TUPLE_SRC));
415 	}
416 
417 	INSERT_FLAGS(EFX_RX_HASH(IPV4_TCP, DISABLE));
418 	INSERT_FLAGS(EFX_RX_HASH(IPV6_TCP, DISABLE));
419 
420 	INSERT_FLAGS(EFX_RX_HASH(IPV4_UDP, DISABLE));
421 	INSERT_FLAGS(EFX_RX_HASH(IPV6_UDP, DISABLE));
422 
423 	INSERT_FLAGS(EFX_RX_HASH(IPV4, DISABLE));
424 	INSERT_FLAGS(EFX_RX_HASH(IPV6, DISABLE));
425 
426 #undef INSERT_FLAGS
427 
428 done:
429 	*nflagsp = nflags;
430 	return (0);
431 
432 fail2:
433 	EFSYS_PROBE(fail2);
434 fail1:
435 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
436 
437 	return (rc);
438 }
439 
440 	__checkReturn	efx_rc_t
441 efx_rx_hash_default_support_get(
442 	__in		efx_nic_t *enp,
443 	__out		efx_rx_hash_support_t *supportp)
444 {
445 	efx_rc_t rc;
446 
447 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
448 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
449 
450 	if (supportp == NULL) {
451 		rc = EINVAL;
452 		goto fail1;
453 	}
454 
455 	/*
456 	 * Report the hashing support the client gets by default if it
457 	 * does not allocate an RSS context itself.
458 	 */
459 	*supportp = enp->en_hash_support;
460 
461 	return (0);
462 
463 fail1:
464 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
465 
466 	return (rc);
467 }
468 
469 	__checkReturn	efx_rc_t
470 efx_rx_scale_default_support_get(
471 	__in		efx_nic_t *enp,
472 	__out		efx_rx_scale_context_type_t *typep)
473 {
474 	efx_rc_t rc;
475 
476 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
477 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
478 
479 	if (typep == NULL) {
480 		rc = EINVAL;
481 		goto fail1;
482 	}
483 
484 	/*
485 	 * Report the RSS support the client gets by default if it
486 	 * does not allocate an RSS context itself.
487 	 */
488 	*typep = enp->en_rss_context_type;
489 
490 	return (0);
491 
492 fail1:
493 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
494 
495 	return (rc);
496 }
497 #endif	/* EFSYS_OPT_RX_SCALE */
498 
499 #if EFSYS_OPT_RX_SCALE
500 	__checkReturn	efx_rc_t
501 efx_rx_scale_context_alloc(
502 	__in		efx_nic_t *enp,
503 	__in		efx_rx_scale_context_type_t type,
504 	__in		uint32_t num_queues,
505 	__out		uint32_t *rss_contextp)
506 {
507 	uint32_t table_nentries = EFX_RSS_TBL_SIZE;
508 	const efx_rx_ops_t *erxop = enp->en_erxop;
509 	efx_rc_t rc;
510 
511 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
512 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
513 
514 	if (erxop->erxo_scale_context_alloc == NULL) {
515 		rc = ENOTSUP;
516 		goto fail1;
517 	}
518 
519 	if (type == EFX_RX_SCALE_EVEN_SPREAD)
520 		table_nentries = 0;
521 
522 	if ((rc = erxop->erxo_scale_context_alloc(enp, type, num_queues,
523 			    table_nentries, rss_contextp)) != 0) {
524 		goto fail2;
525 	}
526 
527 	return (0);
528 
529 fail2:
530 	EFSYS_PROBE(fail2);
531 fail1:
532 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
533 	return (rc);
534 }
535 #endif	/* EFSYS_OPT_RX_SCALE */
536 
537 #if EFSYS_OPT_RX_SCALE
538 	__checkReturn	efx_rc_t
539 efx_rx_scale_context_alloc_v2(
540 	__in		efx_nic_t *enp,
541 	__in		efx_rx_scale_context_type_t type,
542 	__in		uint32_t num_queues,
543 	__in		uint32_t table_nentries,
544 	__out		uint32_t *rss_contextp)
545 {
546 	const efx_rx_ops_t *erxop = enp->en_erxop;
547 	efx_rc_t rc;
548 
549 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
550 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
551 
552 	if (erxop->erxo_scale_context_alloc == NULL) {
553 		rc = ENOTSUP;
554 		goto fail1;
555 	}
556 
557 	if ((rc = erxop->erxo_scale_context_alloc(enp, type,
558 			    num_queues, table_nentries, rss_contextp)) != 0) {
559 		goto fail2;
560 	}
561 
562 	return (0);
563 
564 fail2:
565 	EFSYS_PROBE(fail2);
566 fail1:
567 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
568 	return (rc);
569 }
570 #endif	/* EFSYS_OPT_RX_SCALE */
571 
572 #if EFSYS_OPT_RX_SCALE
573 	__checkReturn	efx_rc_t
574 efx_rx_scale_context_free(
575 	__in		efx_nic_t *enp,
576 	__in		uint32_t rss_context)
577 {
578 	const efx_rx_ops_t *erxop = enp->en_erxop;
579 	efx_rc_t rc;
580 
581 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
582 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
583 
584 	if (erxop->erxo_scale_context_free == NULL) {
585 		rc = ENOTSUP;
586 		goto fail1;
587 	}
588 	if ((rc = erxop->erxo_scale_context_free(enp, rss_context)) != 0)
589 		goto fail2;
590 
591 	return (0);
592 
593 fail2:
594 	EFSYS_PROBE(fail2);
595 fail1:
596 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
597 	return (rc);
598 }
599 #endif	/* EFSYS_OPT_RX_SCALE */
600 
601 #if EFSYS_OPT_RX_SCALE
602 	__checkReturn	efx_rc_t
603 efx_rx_scale_mode_set(
604 	__in		efx_nic_t *enp,
605 	__in		uint32_t rss_context,
606 	__in		efx_rx_hash_alg_t alg,
607 	__in		efx_rx_hash_type_t type,
608 	__in		boolean_t insert)
609 {
610 	efx_nic_cfg_t *encp = &enp->en_nic_cfg;
611 	const efx_rx_ops_t *erxop = enp->en_erxop;
612 	efx_rx_hash_type_t type_check;
613 	unsigned int i;
614 	efx_rc_t rc;
615 
616 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
617 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
618 
619 	/*
620 	 * Legacy flags and modern bits cannot be
621 	 * used at the same time in the hash type.
622 	 */
623 	if ((type & EFX_RX_HASH_LEGACY_MASK) &&
624 	    (type & ~EFX_RX_HASH_LEGACY_MASK)) {
625 		rc = EINVAL;
626 		goto fail1;
627 	}
628 
629 	/*
630 	 * If RSS hash type is represented by additional bits
631 	 * in the value, the latter need to be verified since
632 	 * not all bit combinations are valid RSS modes. Also,
633 	 * depending on the firmware, some valid combinations
634 	 * may be unsupported. Discern additional bits in the
635 	 * type value and try to recognise valid combinations.
636 	 * If some bits remain unrecognised, report the error.
637 	 */
638 	type_check = type & ~EFX_RX_HASH_LEGACY_MASK;
639 	if (type_check != 0) {
640 		unsigned int type_flags[EFX_RX_HASH_NFLAGS];
641 		unsigned int type_nflags;
642 
643 		rc = efx_rx_scale_hash_flags_get(enp, alg, type_flags,
644 				    EFX_ARRAY_SIZE(type_flags), &type_nflags);
645 		if (rc != 0)
646 			goto fail2;
647 
648 		for (i = 0; i < type_nflags; ++i) {
649 			if ((type_check & type_flags[i]) == type_flags[i])
650 				type_check &= ~(type_flags[i]);
651 		}
652 
653 		if (type_check != 0) {
654 			rc = EINVAL;
655 			goto fail3;
656 		}
657 	}
658 
659 	/*
660 	 * Translate EFX_RX_HASH() flags to their legacy counterparts
661 	 * provided that the FW claims no support for additional modes.
662 	 */
663 	if (encp->enc_rx_scale_additional_modes_supported == B_FALSE) {
664 		efx_rx_hash_type_t t_ipv4 = EFX_RX_HASH(IPV4, 2TUPLE) |
665 					    EFX_RX_HASH(IPV4_TCP, 2TUPLE);
666 		efx_rx_hash_type_t t_ipv6 = EFX_RX_HASH(IPV6, 2TUPLE) |
667 					    EFX_RX_HASH(IPV6_TCP, 2TUPLE);
668 		efx_rx_hash_type_t t_ipv4_tcp = EFX_RX_HASH(IPV4_TCP, 4TUPLE);
669 		efx_rx_hash_type_t t_ipv6_tcp = EFX_RX_HASH(IPV6_TCP, 4TUPLE);
670 
671 		if ((type & t_ipv4) == t_ipv4)
672 			type |= EFX_RX_HASH_IPV4;
673 		if ((type & t_ipv6) == t_ipv6)
674 			type |= EFX_RX_HASH_IPV6;
675 
676 		if (encp->enc_rx_scale_l4_hash_supported == B_TRUE) {
677 			if ((type & t_ipv4_tcp) == t_ipv4_tcp)
678 				type |= EFX_RX_HASH_TCPIPV4;
679 			if ((type & t_ipv6_tcp) == t_ipv6_tcp)
680 				type |= EFX_RX_HASH_TCPIPV6;
681 		}
682 
683 		type &= EFX_RX_HASH_LEGACY_MASK;
684 	}
685 
686 	if (erxop->erxo_scale_mode_set != NULL) {
687 		if ((rc = erxop->erxo_scale_mode_set(enp, rss_context, alg,
688 			    type, insert)) != 0)
689 			goto fail4;
690 	}
691 
692 	return (0);
693 
694 fail4:
695 	EFSYS_PROBE(fail4);
696 fail3:
697 	EFSYS_PROBE(fail3);
698 fail2:
699 	EFSYS_PROBE(fail2);
700 fail1:
701 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
702 	return (rc);
703 }
704 #endif	/* EFSYS_OPT_RX_SCALE */
705 
706 #if EFSYS_OPT_RX_SCALE
707 	__checkReturn	efx_rc_t
708 efx_rx_scale_key_set(
709 	__in		efx_nic_t *enp,
710 	__in		uint32_t rss_context,
711 	__in_ecount(n)	uint8_t *key,
712 	__in		size_t n)
713 {
714 	const efx_rx_ops_t *erxop = enp->en_erxop;
715 	efx_rc_t rc;
716 
717 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
718 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
719 
720 	if ((rc = erxop->erxo_scale_key_set(enp, rss_context, key, n)) != 0)
721 		goto fail1;
722 
723 	return (0);
724 
725 fail1:
726 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
727 
728 	return (rc);
729 }
730 #endif	/* EFSYS_OPT_RX_SCALE */
731 
732 #if EFSYS_OPT_RX_SCALE
733 	__checkReturn		efx_rc_t
734 efx_rx_scale_tbl_set(
735 	__in			efx_nic_t *enp,
736 	__in			uint32_t rss_context,
737 	__in_ecount(nentries)	unsigned int *table,
738 	__in			size_t nentries)
739 {
740 	const efx_rx_ops_t *erxop = enp->en_erxop;
741 	efx_rc_t rc;
742 
743 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
744 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
745 
746 	if ((rc = erxop->erxo_scale_tbl_set(enp, rss_context, table,
747 		    nentries)) != 0)
748 		goto fail1;
749 
750 	return (0);
751 
752 fail1:
753 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
754 
755 	return (rc);
756 }
757 #endif	/* EFSYS_OPT_RX_SCALE */
758 
759 				void
760 efx_rx_qpost(
761 	__in			efx_rxq_t *erp,
762 	__in_ecount(ndescs)	efsys_dma_addr_t *addrp,
763 	__in			size_t size,
764 	__in			unsigned int ndescs,
765 	__in			unsigned int completed,
766 	__in			unsigned int added)
767 {
768 	efx_nic_t *enp = erp->er_enp;
769 	const efx_rx_ops_t *erxop = enp->en_erxop;
770 
771 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
772 	EFSYS_ASSERT(erp->er_buf_size == 0 || size == erp->er_buf_size);
773 
774 	erxop->erxo_qpost(erp, addrp, size, ndescs, completed, added);
775 }
776 
777 #if EFSYS_OPT_RX_PACKED_STREAM
778 
779 			void
780 efx_rx_qpush_ps_credits(
781 	__in		efx_rxq_t *erp)
782 {
783 	efx_nic_t *enp = erp->er_enp;
784 	const efx_rx_ops_t *erxop = enp->en_erxop;
785 
786 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
787 
788 	erxop->erxo_qpush_ps_credits(erp);
789 }
790 
791 	__checkReturn	uint8_t *
792 efx_rx_qps_packet_info(
793 	__in		efx_rxq_t *erp,
794 	__in		uint8_t *buffer,
795 	__in		uint32_t buffer_length,
796 	__in		uint32_t current_offset,
797 	__out		uint16_t *lengthp,
798 	__out		uint32_t *next_offsetp,
799 	__out		uint32_t *timestamp)
800 {
801 	efx_nic_t *enp = erp->er_enp;
802 	const efx_rx_ops_t *erxop = enp->en_erxop;
803 
804 	return (erxop->erxo_qps_packet_info(erp, buffer,
805 		buffer_length, current_offset, lengthp,
806 		next_offsetp, timestamp));
807 }
808 
809 #endif /* EFSYS_OPT_RX_PACKED_STREAM */
810 
811 			void
812 efx_rx_qpush(
813 	__in		efx_rxq_t *erp,
814 	__in		unsigned int added,
815 	__inout		unsigned int *pushedp)
816 {
817 	efx_nic_t *enp = erp->er_enp;
818 	const efx_rx_ops_t *erxop = enp->en_erxop;
819 
820 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
821 
822 	erxop->erxo_qpush(erp, added, pushedp);
823 }
824 
825 	__checkReturn	efx_rc_t
826 efx_rx_qflush(
827 	__in		efx_rxq_t *erp)
828 {
829 	efx_nic_t *enp = erp->er_enp;
830 	const efx_rx_ops_t *erxop = enp->en_erxop;
831 	efx_rc_t rc;
832 
833 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
834 
835 	if ((rc = erxop->erxo_qflush(erp)) != 0)
836 		goto fail1;
837 
838 	return (0);
839 
840 fail1:
841 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
842 
843 	return (rc);
844 }
845 
846 	__checkReturn	size_t
847 efx_rxq_size(
848 	__in	const efx_nic_t *enp,
849 	__in	unsigned int ndescs)
850 {
851 	const efx_nic_cfg_t *encp = efx_nic_cfg_get(enp);
852 
853 	return (ndescs * encp->enc_rx_desc_size);
854 }
855 
856 	__checkReturn	unsigned int
857 efx_rxq_nbufs(
858 	__in	const efx_nic_t *enp,
859 	__in	unsigned int ndescs)
860 {
861 	return (EFX_DIV_ROUND_UP(efx_rxq_size(enp, ndescs), EFX_BUF_SIZE));
862 }
863 
864 			void
865 efx_rx_qenable(
866 	__in		efx_rxq_t *erp)
867 {
868 	efx_nic_t *enp = erp->er_enp;
869 	const efx_rx_ops_t *erxop = enp->en_erxop;
870 
871 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
872 
873 	erxop->erxo_qenable(erp);
874 }
875 
876 static	__checkReturn	efx_rc_t
877 efx_rx_qcreate_internal(
878 	__in		efx_nic_t *enp,
879 	__in		unsigned int index,
880 	__in		unsigned int label,
881 	__in		efx_rxq_type_t type,
882 	__in_opt	const efx_rxq_type_data_t *type_data,
883 	__in		efsys_mem_t *esmp,
884 	__in		size_t ndescs,
885 	__in		uint32_t id,
886 	__in		unsigned int flags,
887 	__in		efx_evq_t *eep,
888 	__deref_out	efx_rxq_t **erpp)
889 {
890 	const efx_rx_ops_t *erxop = enp->en_erxop;
891 	efx_rxq_t *erp;
892 	const efx_nic_cfg_t *encp = efx_nic_cfg_get(enp);
893 	efx_rc_t rc;
894 
895 	EFSYS_ASSERT3U(enp->en_magic, ==, EFX_NIC_MAGIC);
896 	EFSYS_ASSERT3U(enp->en_mod_flags, &, EFX_MOD_RX);
897 
898 	EFSYS_ASSERT3U(enp->en_rx_qcount + 1, <, encp->enc_rxq_limit);
899 
900 	EFSYS_ASSERT(ISP2(encp->enc_rxq_max_ndescs));
901 	EFSYS_ASSERT(ISP2(encp->enc_rxq_min_ndescs));
902 
903 	if (index >= encp->enc_rxq_limit) {
904 		rc = EINVAL;
905 		goto fail1;
906 	}
907 
908 	if (!ISP2(ndescs) ||
909 	    ndescs < encp->enc_rxq_min_ndescs ||
910 	    ndescs > encp->enc_rxq_max_ndescs) {
911 		rc = EINVAL;
912 		goto fail2;
913 	}
914 
915 	/* Allocate an RXQ object */
916 	EFSYS_KMEM_ALLOC(enp->en_esip, sizeof (efx_rxq_t), erp);
917 
918 	if (erp == NULL) {
919 		rc = ENOMEM;
920 		goto fail3;
921 	}
922 
923 	erp->er_magic = EFX_RXQ_MAGIC;
924 	erp->er_enp = enp;
925 	erp->er_index = index;
926 	erp->er_mask = ndescs - 1;
927 	erp->er_esmp = esmp;
928 
929 	if ((rc = erxop->erxo_qcreate(enp, index, label, type, type_data, esmp,
930 	    ndescs, id, flags, eep, erp)) != 0)
931 		goto fail4;
932 
933 	/* Sanity check queue creation result */
934 	if (flags & EFX_RXQ_FLAG_RSS_HASH) {
935 		const efx_rx_prefix_layout_t *erplp = &erp->er_prefix_layout;
936 		const efx_rx_prefix_field_info_t *rss_hash_field;
937 
938 		rss_hash_field =
939 		    &erplp->erpl_fields[EFX_RX_PREFIX_FIELD_RSS_HASH];
940 		if (rss_hash_field->erpfi_width_bits == 0)
941 			goto fail5;
942 	}
943 
944 	enp->en_rx_qcount++;
945 	*erpp = erp;
946 
947 	return (0);
948 
949 fail5:
950 	EFSYS_PROBE(fail5);
951 
952 	erxop->erxo_qdestroy(erp);
953 fail4:
954 	EFSYS_PROBE(fail4);
955 
956 	EFSYS_KMEM_FREE(enp->en_esip, sizeof (efx_rxq_t), erp);
957 fail3:
958 	EFSYS_PROBE(fail3);
959 fail2:
960 	EFSYS_PROBE(fail2);
961 fail1:
962 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
963 
964 	return (rc);
965 }
966 
967 	__checkReturn	efx_rc_t
968 efx_rx_qcreate(
969 	__in		efx_nic_t *enp,
970 	__in		unsigned int index,
971 	__in		unsigned int label,
972 	__in		efx_rxq_type_t type,
973 	__in		size_t buf_size,
974 	__in		efsys_mem_t *esmp,
975 	__in		size_t ndescs,
976 	__in		uint32_t id,
977 	__in		unsigned int flags,
978 	__in		efx_evq_t *eep,
979 	__deref_out	efx_rxq_t **erpp)
980 {
981 	efx_rxq_type_data_t type_data;
982 
983 	memset(&type_data, 0, sizeof (type_data));
984 
985 	type_data.ertd_default.ed_buf_size = buf_size;
986 
987 	return efx_rx_qcreate_internal(enp, index, label, type, &type_data,
988 	    esmp, ndescs, id, flags, eep, erpp);
989 }
990 
991 #if EFSYS_OPT_RX_PACKED_STREAM
992 
993 	__checkReturn	efx_rc_t
994 efx_rx_qcreate_packed_stream(
995 	__in		efx_nic_t *enp,
996 	__in		unsigned int index,
997 	__in		unsigned int label,
998 	__in		uint32_t ps_buf_size,
999 	__in		efsys_mem_t *esmp,
1000 	__in		size_t ndescs,
1001 	__in		efx_evq_t *eep,
1002 	__deref_out	efx_rxq_t **erpp)
1003 {
1004 	efx_rxq_type_data_t type_data;
1005 
1006 	memset(&type_data, 0, sizeof (type_data));
1007 
1008 	type_data.ertd_packed_stream.eps_buf_size = ps_buf_size;
1009 
1010 	return efx_rx_qcreate_internal(enp, index, label,
1011 	    EFX_RXQ_TYPE_PACKED_STREAM, &type_data, esmp, ndescs,
1012 	    0 /* id unused on EF10 */, EFX_RXQ_FLAG_NONE, eep, erpp);
1013 }
1014 
1015 #endif
1016 
1017 #if EFSYS_OPT_RX_ES_SUPER_BUFFER
1018 
1019 	__checkReturn	efx_rc_t
1020 efx_rx_qcreate_es_super_buffer(
1021 	__in		efx_nic_t *enp,
1022 	__in		unsigned int index,
1023 	__in		unsigned int label,
1024 	__in		uint32_t n_bufs_per_desc,
1025 	__in		uint32_t max_dma_len,
1026 	__in		uint32_t buf_stride,
1027 	__in		uint32_t hol_block_timeout,
1028 	__in		efsys_mem_t *esmp,
1029 	__in		size_t ndescs,
1030 	__in		unsigned int flags,
1031 	__in		efx_evq_t *eep,
1032 	__deref_out	efx_rxq_t **erpp)
1033 {
1034 	efx_rc_t rc;
1035 	efx_rxq_type_data_t type_data;
1036 
1037 	if (hol_block_timeout > EFX_RXQ_ES_SUPER_BUFFER_HOL_BLOCK_MAX) {
1038 		rc = EINVAL;
1039 		goto fail1;
1040 	}
1041 
1042 	memset(&type_data, 0, sizeof (type_data));
1043 
1044 	type_data.ertd_es_super_buffer.eessb_bufs_per_desc = n_bufs_per_desc;
1045 	type_data.ertd_es_super_buffer.eessb_max_dma_len = max_dma_len;
1046 	type_data.ertd_es_super_buffer.eessb_buf_stride = buf_stride;
1047 	type_data.ertd_es_super_buffer.eessb_hol_block_timeout =
1048 	    hol_block_timeout;
1049 
1050 	rc = efx_rx_qcreate_internal(enp, index, label,
1051 	    EFX_RXQ_TYPE_ES_SUPER_BUFFER, &type_data, esmp, ndescs,
1052 	    0 /* id unused on EF10 */, flags, eep, erpp);
1053 	if (rc != 0)
1054 		goto fail2;
1055 
1056 	return (0);
1057 
1058 fail2:
1059 	EFSYS_PROBE(fail2);
1060 fail1:
1061 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
1062 
1063 	return (rc);
1064 }
1065 
1066 #endif
1067 
1068 
1069 			void
1070 efx_rx_qdestroy(
1071 	__in		efx_rxq_t *erp)
1072 {
1073 	efx_nic_t *enp = erp->er_enp;
1074 	const efx_rx_ops_t *erxop = enp->en_erxop;
1075 
1076 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
1077 
1078 	EFSYS_ASSERT(enp->en_rx_qcount != 0);
1079 	--enp->en_rx_qcount;
1080 
1081 	erxop->erxo_qdestroy(erp);
1082 
1083 	/* Free the RXQ object */
1084 	EFSYS_KMEM_FREE(enp->en_esip, sizeof (efx_rxq_t), erp);
1085 }
1086 
1087 	__checkReturn	efx_rc_t
1088 efx_pseudo_hdr_pkt_length_get(
1089 	__in		efx_rxq_t *erp,
1090 	__in		uint8_t *buffer,
1091 	__out		uint16_t *lengthp)
1092 {
1093 	efx_nic_t *enp = erp->er_enp;
1094 	const efx_rx_ops_t *erxop = enp->en_erxop;
1095 
1096 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
1097 
1098 	return (erxop->erxo_prefix_pktlen(enp, buffer, lengthp));
1099 }
1100 
1101 #if EFSYS_OPT_RX_SCALE
1102 	__checkReturn	uint32_t
1103 efx_pseudo_hdr_hash_get(
1104 	__in		efx_rxq_t *erp,
1105 	__in		efx_rx_hash_alg_t func,
1106 	__in		uint8_t *buffer)
1107 {
1108 	efx_nic_t *enp = erp->er_enp;
1109 	const efx_rx_ops_t *erxop = enp->en_erxop;
1110 
1111 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
1112 
1113 	EFSYS_ASSERT3U(enp->en_hash_support, ==, EFX_RX_HASH_AVAILABLE);
1114 	return (erxop->erxo_prefix_hash(enp, func, buffer));
1115 }
1116 #endif	/* EFSYS_OPT_RX_SCALE */
1117 
1118 	__checkReturn	efx_rc_t
1119 efx_rx_prefix_get_layout(
1120 	__in		const efx_rxq_t *erp,
1121 	__out		efx_rx_prefix_layout_t *erplp)
1122 {
1123 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
1124 
1125 	*erplp = erp->er_prefix_layout;
1126 
1127 	return (0);
1128 }
1129 
1130 #if EFSYS_OPT_SIENA
1131 
1132 static	__checkReturn	efx_rc_t
1133 siena_rx_init(
1134 	__in		efx_nic_t *enp)
1135 {
1136 	efx_oword_t oword;
1137 	unsigned int index;
1138 
1139 	EFX_BAR_READO(enp, FR_AZ_RX_CFG_REG, &oword);
1140 
1141 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_DESC_PUSH_EN, 0);
1142 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_HASH_ALG, 0);
1143 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_IP_HASH, 0);
1144 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_TCP_SUP, 0);
1145 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_HASH_INSRT_HDR, 0);
1146 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_USR_BUF_SIZE, 0x3000 / 32);
1147 	EFX_BAR_WRITEO(enp, FR_AZ_RX_CFG_REG, &oword);
1148 
1149 	/* Zero the RSS table */
1150 	for (index = 0; index < FR_BZ_RX_INDIRECTION_TBL_ROWS;
1151 	    index++) {
1152 		EFX_ZERO_OWORD(oword);
1153 		EFX_BAR_TBL_WRITEO(enp, FR_BZ_RX_INDIRECTION_TBL,
1154 				    index, &oword, B_TRUE);
1155 	}
1156 
1157 #if EFSYS_OPT_RX_SCALE
1158 	/* The RSS key and indirection table are writable. */
1159 	enp->en_rss_context_type = EFX_RX_SCALE_EXCLUSIVE;
1160 
1161 	/* Hardware can insert RX hash with/without RSS */
1162 	enp->en_hash_support = EFX_RX_HASH_AVAILABLE;
1163 #endif	/* EFSYS_OPT_RX_SCALE */
1164 
1165 	return (0);
1166 }
1167 
1168 #if EFSYS_OPT_RX_SCATTER
1169 static	__checkReturn	efx_rc_t
1170 siena_rx_scatter_enable(
1171 	__in		efx_nic_t *enp,
1172 	__in		unsigned int buf_size)
1173 {
1174 	unsigned int nbuf32;
1175 	efx_oword_t oword;
1176 	efx_rc_t rc;
1177 
1178 	nbuf32 = buf_size / 32;
1179 	if ((nbuf32 == 0) ||
1180 	    (nbuf32 >= (1 << FRF_BZ_RX_USR_BUF_SIZE_WIDTH)) ||
1181 	    ((buf_size % 32) != 0)) {
1182 		rc = EINVAL;
1183 		goto fail1;
1184 	}
1185 
1186 	if (enp->en_rx_qcount > 0) {
1187 		rc = EBUSY;
1188 		goto fail2;
1189 	}
1190 
1191 	/* Set scatter buffer size */
1192 	EFX_BAR_READO(enp, FR_AZ_RX_CFG_REG, &oword);
1193 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_USR_BUF_SIZE, nbuf32);
1194 	EFX_BAR_WRITEO(enp, FR_AZ_RX_CFG_REG, &oword);
1195 
1196 	/* Enable scatter for packets not matching a filter */
1197 	EFX_BAR_READO(enp, FR_AZ_RX_FILTER_CTL_REG, &oword);
1198 	EFX_SET_OWORD_FIELD(oword, FRF_BZ_SCATTER_ENBL_NO_MATCH_Q, 1);
1199 	EFX_BAR_WRITEO(enp, FR_AZ_RX_FILTER_CTL_REG, &oword);
1200 
1201 	return (0);
1202 
1203 fail2:
1204 	EFSYS_PROBE(fail2);
1205 fail1:
1206 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
1207 
1208 	return (rc);
1209 }
1210 #endif	/* EFSYS_OPT_RX_SCATTER */
1211 
1212 
1213 #define	EFX_RX_LFSR_HASH(_enp, _insert)					\
1214 	do {								\
1215 		efx_oword_t oword;					\
1216 									\
1217 		EFX_BAR_READO((_enp), FR_AZ_RX_CFG_REG, &oword);	\
1218 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_HASH_ALG, 0);	\
1219 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_IP_HASH, 0);	\
1220 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_TCP_SUP, 0);	\
1221 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_HASH_INSRT_HDR,	\
1222 		    (_insert) ? 1 : 0);					\
1223 		EFX_BAR_WRITEO((_enp), FR_AZ_RX_CFG_REG, &oword);	\
1224 									\
1225 		if ((_enp)->en_family == EFX_FAMILY_SIENA) {		\
1226 			EFX_BAR_READO((_enp), FR_CZ_RX_RSS_IPV6_REG3,	\
1227 			    &oword);					\
1228 			EFX_SET_OWORD_FIELD(oword,			\
1229 			    FRF_CZ_RX_RSS_IPV6_THASH_ENABLE, 0);	\
1230 			EFX_BAR_WRITEO((_enp), FR_CZ_RX_RSS_IPV6_REG3,	\
1231 			    &oword);					\
1232 		}							\
1233 									\
1234 		_NOTE(CONSTANTCONDITION)				\
1235 	} while (B_FALSE)
1236 
1237 #define	EFX_RX_TOEPLITZ_IPV4_HASH(_enp, _insert, _ip, _tcp)		\
1238 	do {								\
1239 		efx_oword_t oword;					\
1240 									\
1241 		EFX_BAR_READO((_enp), FR_AZ_RX_CFG_REG,	&oword);	\
1242 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_HASH_ALG, 1);	\
1243 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_IP_HASH,		\
1244 		    (_ip) ? 1 : 0);					\
1245 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_TCP_SUP,		\
1246 		    (_tcp) ? 0 : 1);					\
1247 		EFX_SET_OWORD_FIELD(oword, FRF_BZ_RX_HASH_INSRT_HDR,	\
1248 		    (_insert) ? 1 : 0);					\
1249 		EFX_BAR_WRITEO((_enp), FR_AZ_RX_CFG_REG, &oword);	\
1250 									\
1251 		_NOTE(CONSTANTCONDITION)				\
1252 	} while (B_FALSE)
1253 
1254 #define	EFX_RX_TOEPLITZ_IPV6_HASH(_enp, _ip, _tcp, _rc)			\
1255 	do {								\
1256 		efx_oword_t oword;					\
1257 									\
1258 		EFX_BAR_READO((_enp), FR_CZ_RX_RSS_IPV6_REG3, &oword);	\
1259 		EFX_SET_OWORD_FIELD(oword,				\
1260 		    FRF_CZ_RX_RSS_IPV6_THASH_ENABLE, 1);		\
1261 		EFX_SET_OWORD_FIELD(oword,				\
1262 		    FRF_CZ_RX_RSS_IPV6_IP_THASH_ENABLE, (_ip) ? 1 : 0);	\
1263 		EFX_SET_OWORD_FIELD(oword,				\
1264 		    FRF_CZ_RX_RSS_IPV6_TCP_SUPPRESS, (_tcp) ? 0 : 1);	\
1265 		EFX_BAR_WRITEO((_enp), FR_CZ_RX_RSS_IPV6_REG3, &oword);	\
1266 									\
1267 		(_rc) = 0;						\
1268 									\
1269 		_NOTE(CONSTANTCONDITION)				\
1270 	} while (B_FALSE)
1271 
1272 
1273 #if EFSYS_OPT_RX_SCALE
1274 
1275 static	__checkReturn	efx_rc_t
1276 siena_rx_scale_mode_set(
1277 	__in		efx_nic_t *enp,
1278 	__in		uint32_t rss_context,
1279 	__in		efx_rx_hash_alg_t alg,
1280 	__in		efx_rx_hash_type_t type,
1281 	__in		boolean_t insert)
1282 {
1283 	efx_rc_t rc;
1284 
1285 	if (rss_context != EFX_RSS_CONTEXT_DEFAULT) {
1286 		rc = EINVAL;
1287 		goto fail1;
1288 	}
1289 
1290 	switch (alg) {
1291 	case EFX_RX_HASHALG_LFSR:
1292 		EFX_RX_LFSR_HASH(enp, insert);
1293 		break;
1294 
1295 	case EFX_RX_HASHALG_TOEPLITZ:
1296 		EFX_RX_TOEPLITZ_IPV4_HASH(enp, insert,
1297 		    (type & EFX_RX_HASH_IPV4) ? B_TRUE : B_FALSE,
1298 		    (type & EFX_RX_HASH_TCPIPV4) ? B_TRUE : B_FALSE);
1299 
1300 		EFX_RX_TOEPLITZ_IPV6_HASH(enp,
1301 		    (type & EFX_RX_HASH_IPV6) ? B_TRUE : B_FALSE,
1302 		    (type & EFX_RX_HASH_TCPIPV6) ? B_TRUE : B_FALSE,
1303 		    rc);
1304 		if (rc != 0)
1305 			goto fail2;
1306 
1307 		break;
1308 
1309 	default:
1310 		rc = EINVAL;
1311 		goto fail3;
1312 	}
1313 
1314 	return (0);
1315 
1316 fail3:
1317 	EFSYS_PROBE(fail3);
1318 fail2:
1319 	EFSYS_PROBE(fail2);
1320 fail1:
1321 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
1322 
1323 	EFX_RX_LFSR_HASH(enp, B_FALSE);
1324 
1325 	return (rc);
1326 }
1327 #endif
1328 
1329 #if EFSYS_OPT_RX_SCALE
1330 static	__checkReturn	efx_rc_t
1331 siena_rx_scale_key_set(
1332 	__in		efx_nic_t *enp,
1333 	__in		uint32_t rss_context,
1334 	__in_ecount(n)	uint8_t *key,
1335 	__in		size_t n)
1336 {
1337 	efx_oword_t oword;
1338 	unsigned int byte;
1339 	unsigned int offset;
1340 	efx_rc_t rc;
1341 
1342 	if (rss_context != EFX_RSS_CONTEXT_DEFAULT) {
1343 		rc = EINVAL;
1344 		goto fail1;
1345 	}
1346 
1347 	byte = 0;
1348 
1349 	/* Write Toeplitz IPv4 hash key */
1350 	EFX_ZERO_OWORD(oword);
1351 	for (offset = (FRF_BZ_RX_RSS_TKEY_LBN + FRF_BZ_RX_RSS_TKEY_WIDTH) / 8;
1352 	    offset > 0 && byte < n;
1353 	    --offset)
1354 		oword.eo_u8[offset - 1] = key[byte++];
1355 
1356 	EFX_BAR_WRITEO(enp, FR_BZ_RX_RSS_TKEY_REG, &oword);
1357 
1358 	byte = 0;
1359 
1360 	/* Verify Toeplitz IPv4 hash key */
1361 	EFX_BAR_READO(enp, FR_BZ_RX_RSS_TKEY_REG, &oword);
1362 	for (offset = (FRF_BZ_RX_RSS_TKEY_LBN + FRF_BZ_RX_RSS_TKEY_WIDTH) / 8;
1363 	    offset > 0 && byte < n;
1364 	    --offset) {
1365 		if (oword.eo_u8[offset - 1] != key[byte++]) {
1366 			rc = EFAULT;
1367 			goto fail2;
1368 		}
1369 	}
1370 
1371 	if ((enp->en_features & EFX_FEATURE_IPV6) == 0)
1372 		goto done;
1373 
1374 	byte = 0;
1375 
1376 	/* Write Toeplitz IPv6 hash key 3 */
1377 	EFX_BAR_READO(enp, FR_CZ_RX_RSS_IPV6_REG3, &oword);
1378 	for (offset = (FRF_CZ_RX_RSS_IPV6_TKEY_HI_LBN +
1379 	    FRF_CZ_RX_RSS_IPV6_TKEY_HI_WIDTH) / 8;
1380 	    offset > 0 && byte < n;
1381 	    --offset)
1382 		oword.eo_u8[offset - 1] = key[byte++];
1383 
1384 	EFX_BAR_WRITEO(enp, FR_CZ_RX_RSS_IPV6_REG3, &oword);
1385 
1386 	/* Write Toeplitz IPv6 hash key 2 */
1387 	EFX_ZERO_OWORD(oword);
1388 	for (offset = (FRF_CZ_RX_RSS_IPV6_TKEY_MID_LBN +
1389 	    FRF_CZ_RX_RSS_IPV6_TKEY_MID_WIDTH) / 8;
1390 	    offset > 0 && byte < n;
1391 	    --offset)
1392 		oword.eo_u8[offset - 1] = key[byte++];
1393 
1394 	EFX_BAR_WRITEO(enp, FR_CZ_RX_RSS_IPV6_REG2, &oword);
1395 
1396 	/* Write Toeplitz IPv6 hash key 1 */
1397 	EFX_ZERO_OWORD(oword);
1398 	for (offset = (FRF_CZ_RX_RSS_IPV6_TKEY_LO_LBN +
1399 	    FRF_CZ_RX_RSS_IPV6_TKEY_LO_WIDTH) / 8;
1400 	    offset > 0 && byte < n;
1401 	    --offset)
1402 		oword.eo_u8[offset - 1] = key[byte++];
1403 
1404 	EFX_BAR_WRITEO(enp, FR_CZ_RX_RSS_IPV6_REG1, &oword);
1405 
1406 	byte = 0;
1407 
1408 	/* Verify Toeplitz IPv6 hash key 3 */
1409 	EFX_BAR_READO(enp, FR_CZ_RX_RSS_IPV6_REG3, &oword);
1410 	for (offset = (FRF_CZ_RX_RSS_IPV6_TKEY_HI_LBN +
1411 	    FRF_CZ_RX_RSS_IPV6_TKEY_HI_WIDTH) / 8;
1412 	    offset > 0 && byte < n;
1413 	    --offset) {
1414 		if (oword.eo_u8[offset - 1] != key[byte++]) {
1415 			rc = EFAULT;
1416 			goto fail3;
1417 		}
1418 	}
1419 
1420 	/* Verify Toeplitz IPv6 hash key 2 */
1421 	EFX_BAR_READO(enp, FR_CZ_RX_RSS_IPV6_REG2, &oword);
1422 	for (offset = (FRF_CZ_RX_RSS_IPV6_TKEY_MID_LBN +
1423 	    FRF_CZ_RX_RSS_IPV6_TKEY_MID_WIDTH) / 8;
1424 	    offset > 0 && byte < n;
1425 	    --offset) {
1426 		if (oword.eo_u8[offset - 1] != key[byte++]) {
1427 			rc = EFAULT;
1428 			goto fail4;
1429 		}
1430 	}
1431 
1432 	/* Verify Toeplitz IPv6 hash key 1 */
1433 	EFX_BAR_READO(enp, FR_CZ_RX_RSS_IPV6_REG1, &oword);
1434 	for (offset = (FRF_CZ_RX_RSS_IPV6_TKEY_LO_LBN +
1435 	    FRF_CZ_RX_RSS_IPV6_TKEY_LO_WIDTH) / 8;
1436 	    offset > 0 && byte < n;
1437 	    --offset) {
1438 		if (oword.eo_u8[offset - 1] != key[byte++]) {
1439 			rc = EFAULT;
1440 			goto fail5;
1441 		}
1442 	}
1443 
1444 done:
1445 	return (0);
1446 
1447 fail5:
1448 	EFSYS_PROBE(fail5);
1449 fail4:
1450 	EFSYS_PROBE(fail4);
1451 fail3:
1452 	EFSYS_PROBE(fail3);
1453 fail2:
1454 	EFSYS_PROBE(fail2);
1455 fail1:
1456 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
1457 
1458 	return (rc);
1459 }
1460 #endif
1461 
1462 #if EFSYS_OPT_RX_SCALE
1463 static	__checkReturn		efx_rc_t
1464 siena_rx_scale_tbl_set(
1465 	__in			efx_nic_t *enp,
1466 	__in			uint32_t rss_context,
1467 	__in_ecount(nentries)	unsigned int *table,
1468 	__in			size_t nentries)
1469 {
1470 	efx_oword_t oword;
1471 	int index;
1472 	efx_rc_t rc;
1473 
1474 	EFX_STATIC_ASSERT(EFX_RSS_TBL_SIZE == FR_BZ_RX_INDIRECTION_TBL_ROWS);
1475 	EFX_STATIC_ASSERT(EFX_MAXRSS == (1 << FRF_BZ_IT_QUEUE_WIDTH));
1476 
1477 	if (rss_context != EFX_RSS_CONTEXT_DEFAULT) {
1478 		rc = EINVAL;
1479 		goto fail1;
1480 	}
1481 
1482 	if (nentries > FR_BZ_RX_INDIRECTION_TBL_ROWS) {
1483 		rc = EINVAL;
1484 		goto fail2;
1485 	}
1486 
1487 	for (index = 0; index < FR_BZ_RX_INDIRECTION_TBL_ROWS; index++) {
1488 		uint32_t byte;
1489 
1490 		/* Calculate the entry to place in the table */
1491 		byte = (nentries > 0) ? (uint32_t)table[index % nentries] : 0;
1492 
1493 		EFSYS_PROBE2(table, int, index, uint32_t, byte);
1494 
1495 		EFX_POPULATE_OWORD_1(oword, FRF_BZ_IT_QUEUE, byte);
1496 
1497 		/* Write the table */
1498 		EFX_BAR_TBL_WRITEO(enp, FR_BZ_RX_INDIRECTION_TBL,
1499 				    index, &oword, B_TRUE);
1500 	}
1501 
1502 	for (index = FR_BZ_RX_INDIRECTION_TBL_ROWS - 1; index >= 0; --index) {
1503 		uint32_t byte;
1504 
1505 		/* Determine if we're starting a new batch */
1506 		byte = (nentries > 0) ? (uint32_t)table[index % nentries] : 0;
1507 
1508 		/* Read the table */
1509 		EFX_BAR_TBL_READO(enp, FR_BZ_RX_INDIRECTION_TBL,
1510 				    index, &oword, B_TRUE);
1511 
1512 		/* Verify the entry */
1513 		if (EFX_OWORD_FIELD(oword, FRF_BZ_IT_QUEUE) != byte) {
1514 			rc = EFAULT;
1515 			goto fail3;
1516 		}
1517 	}
1518 
1519 	return (0);
1520 
1521 fail3:
1522 	EFSYS_PROBE(fail3);
1523 fail2:
1524 	EFSYS_PROBE(fail2);
1525 fail1:
1526 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
1527 
1528 	return (rc);
1529 }
1530 #endif
1531 
1532 /*
1533  * Falcon/Siena pseudo-header
1534  * --------------------------
1535  *
1536  * Receive packets are prefixed by an optional 16 byte pseudo-header.
1537  * The pseudo-header is a byte array of one of the forms:
1538  *
1539  *  0  1  2  3  4  5  6  7  8  9 10 11 12 13 14 15
1540  * xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.TT.TT.TT.TT
1541  * xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.xx.LL.LL
1542  *
1543  * where:
1544  *   TT.TT.TT.TT   Toeplitz hash (32-bit big-endian)
1545  *   LL.LL         LFSR hash     (16-bit big-endian)
1546  */
1547 
1548 /*
1549  * Provide Rx prefix layout with Toeplitz hash only since LSFR is
1550  * used by no supported drivers.
1551  *
1552  * Siena does not support Rx prefix choice via MC_CMD_GET_RX_PREFIX_ID
1553  * and query its layout using MC_CMD_QUERY_RX_PREFIX_ID.
1554  */
1555 static const efx_rx_prefix_layout_t siena_toeplitz_rx_prefix_layout = {
1556 	.erpl_id	= 0,
1557 	.erpl_length	= 16,
1558 	.erpl_fields	= {
1559 		[EFX_RX_PREFIX_FIELD_RSS_HASH] = { 12 * 8, 32, B_TRUE },
1560 	}
1561 };
1562 
1563 #if EFSYS_OPT_RX_SCALE
1564 static	__checkReturn	uint32_t
1565 siena_rx_prefix_hash(
1566 	__in		efx_nic_t *enp,
1567 	__in		efx_rx_hash_alg_t func,
1568 	__in		uint8_t *buffer)
1569 {
1570 	_NOTE(ARGUNUSED(enp))
1571 
1572 	switch (func) {
1573 	case EFX_RX_HASHALG_TOEPLITZ:
1574 		return ((buffer[12] << 24) |
1575 		    (buffer[13] << 16) |
1576 		    (buffer[14] <<  8) |
1577 		    buffer[15]);
1578 
1579 	case EFX_RX_HASHALG_LFSR:
1580 		return ((buffer[14] << 8) | buffer[15]);
1581 
1582 	default:
1583 		EFSYS_ASSERT(0);
1584 		return (0);
1585 	}
1586 }
1587 #endif /* EFSYS_OPT_RX_SCALE */
1588 
1589 static	__checkReturn	efx_rc_t
1590 siena_rx_prefix_pktlen(
1591 	__in		efx_nic_t *enp,
1592 	__in		uint8_t *buffer,
1593 	__out		uint16_t *lengthp)
1594 {
1595 	_NOTE(ARGUNUSED(enp, buffer, lengthp))
1596 
1597 	/* Not supported by Falcon/Siena hardware */
1598 	EFSYS_ASSERT(0);
1599 	return (ENOTSUP);
1600 }
1601 
1602 
1603 static				void
1604 siena_rx_qpost(
1605 	__in			efx_rxq_t *erp,
1606 	__in_ecount(ndescs)	efsys_dma_addr_t *addrp,
1607 	__in			size_t size,
1608 	__in			unsigned int ndescs,
1609 	__in			unsigned int completed,
1610 	__in			unsigned int added)
1611 {
1612 	efx_qword_t qword;
1613 	unsigned int i;
1614 	unsigned int offset;
1615 	unsigned int id;
1616 
1617 	/* The client driver must not overfill the queue */
1618 	EFSYS_ASSERT3U(added - completed + ndescs, <=,
1619 	    EFX_RXQ_LIMIT(erp->er_mask + 1));
1620 
1621 	id = added & (erp->er_mask);
1622 	for (i = 0; i < ndescs; i++) {
1623 		EFSYS_PROBE4(rx_post, unsigned int, erp->er_index,
1624 		    unsigned int, id, efsys_dma_addr_t, addrp[i],
1625 		    size_t, size);
1626 
1627 		EFX_POPULATE_QWORD_3(qword,
1628 		    FSF_AZ_RX_KER_BUF_SIZE, (uint32_t)(size),
1629 		    FSF_AZ_RX_KER_BUF_ADDR_DW0,
1630 		    (uint32_t)(addrp[i] & 0xffffffff),
1631 		    FSF_AZ_RX_KER_BUF_ADDR_DW1,
1632 		    (uint32_t)(addrp[i] >> 32));
1633 
1634 		offset = id * sizeof (efx_qword_t);
1635 		EFSYS_MEM_WRITEQ(erp->er_esmp, offset, &qword);
1636 
1637 		id = (id + 1) & (erp->er_mask);
1638 	}
1639 }
1640 
1641 static			void
1642 siena_rx_qpush(
1643 	__in	efx_rxq_t *erp,
1644 	__in	unsigned int added,
1645 	__inout	unsigned int *pushedp)
1646 {
1647 	efx_nic_t *enp = erp->er_enp;
1648 	unsigned int pushed = *pushedp;
1649 	uint32_t wptr;
1650 	efx_oword_t oword;
1651 	efx_dword_t dword;
1652 
1653 	/* All descriptors are pushed */
1654 	*pushedp = added;
1655 
1656 	/* Push the populated descriptors out */
1657 	wptr = added & erp->er_mask;
1658 
1659 	EFX_POPULATE_OWORD_1(oword, FRF_AZ_RX_DESC_WPTR, wptr);
1660 
1661 	/* Only write the third DWORD */
1662 	EFX_POPULATE_DWORD_1(dword,
1663 	    EFX_DWORD_0, EFX_OWORD_FIELD(oword, EFX_DWORD_3));
1664 
1665 	/* Guarantee ordering of memory (descriptors) and PIO (doorbell) */
1666 	EFX_DMA_SYNC_QUEUE_FOR_DEVICE(erp->er_esmp, erp->er_mask + 1,
1667 	    SIENA_RXQ_DESC_SIZE, wptr, pushed & erp->er_mask);
1668 	EFSYS_PIO_WRITE_BARRIER();
1669 	EFX_BAR_TBL_WRITED3(enp, FR_BZ_RX_DESC_UPD_REGP0,
1670 			    erp->er_index, &dword, B_FALSE);
1671 }
1672 
1673 #if EFSYS_OPT_RX_PACKED_STREAM
1674 static		void
1675 siena_rx_qpush_ps_credits(
1676 	__in		efx_rxq_t *erp)
1677 {
1678 	/* Not supported by Siena hardware */
1679 	EFSYS_ASSERT(0);
1680 }
1681 
1682 static		uint8_t *
1683 siena_rx_qps_packet_info(
1684 	__in		efx_rxq_t *erp,
1685 	__in		uint8_t *buffer,
1686 	__in		uint32_t buffer_length,
1687 	__in		uint32_t current_offset,
1688 	__out		uint16_t *lengthp,
1689 	__out		uint32_t *next_offsetp,
1690 	__out		uint32_t *timestamp)
1691 {
1692 	/* Not supported by Siena hardware */
1693 	EFSYS_ASSERT(0);
1694 
1695 	return (NULL);
1696 }
1697 #endif /* EFSYS_OPT_RX_PACKED_STREAM */
1698 
1699 static	__checkReturn	efx_rc_t
1700 siena_rx_qflush(
1701 	__in	efx_rxq_t *erp)
1702 {
1703 	efx_nic_t *enp = erp->er_enp;
1704 	efx_oword_t oword;
1705 	uint32_t label;
1706 
1707 	label = erp->er_index;
1708 
1709 	/* Flush the queue */
1710 	EFX_POPULATE_OWORD_2(oword, FRF_AZ_RX_FLUSH_DESCQ_CMD, 1,
1711 	    FRF_AZ_RX_FLUSH_DESCQ, label);
1712 	EFX_BAR_WRITEO(enp, FR_AZ_RX_FLUSH_DESCQ_REG, &oword);
1713 
1714 	return (0);
1715 }
1716 
1717 static		void
1718 siena_rx_qenable(
1719 	__in	efx_rxq_t *erp)
1720 {
1721 	efx_nic_t *enp = erp->er_enp;
1722 	efx_oword_t oword;
1723 
1724 	EFSYS_ASSERT3U(erp->er_magic, ==, EFX_RXQ_MAGIC);
1725 
1726 	EFX_BAR_TBL_READO(enp, FR_AZ_RX_DESC_PTR_TBL,
1727 			    erp->er_index, &oword, B_TRUE);
1728 
1729 	EFX_SET_OWORD_FIELD(oword, FRF_AZ_RX_DC_HW_RPTR, 0);
1730 	EFX_SET_OWORD_FIELD(oword, FRF_AZ_RX_DESCQ_HW_RPTR, 0);
1731 	EFX_SET_OWORD_FIELD(oword, FRF_AZ_RX_DESCQ_EN, 1);
1732 
1733 	EFX_BAR_TBL_WRITEO(enp, FR_AZ_RX_DESC_PTR_TBL,
1734 			    erp->er_index, &oword, B_TRUE);
1735 }
1736 
1737 static	__checkReturn	efx_rc_t
1738 siena_rx_qcreate(
1739 	__in		efx_nic_t *enp,
1740 	__in		unsigned int index,
1741 	__in		unsigned int label,
1742 	__in		efx_rxq_type_t type,
1743 	__in_opt	const efx_rxq_type_data_t *type_data,
1744 	__in		efsys_mem_t *esmp,
1745 	__in		size_t ndescs,
1746 	__in		uint32_t id,
1747 	__in		unsigned int flags,
1748 	__in		efx_evq_t *eep,
1749 	__in		efx_rxq_t *erp)
1750 {
1751 	efx_nic_cfg_t *encp = &(enp->en_nic_cfg);
1752 	efx_oword_t oword;
1753 	uint32_t size;
1754 	boolean_t jumbo = B_FALSE;
1755 	efx_rc_t rc;
1756 
1757 	_NOTE(ARGUNUSED(esmp))
1758 
1759 	EFX_STATIC_ASSERT(EFX_EV_RX_NLABELS ==
1760 	    (1 << FRF_AZ_RX_DESCQ_LABEL_WIDTH));
1761 	EFSYS_ASSERT3U(label, <, EFX_EV_RX_NLABELS);
1762 
1763 	for (size = 0;
1764 	    (1U << size) <= encp->enc_rxq_max_ndescs / encp->enc_rxq_min_ndescs;
1765 	    size++)
1766 		if ((1U << size) == (uint32_t)ndescs / encp->enc_rxq_min_ndescs)
1767 			break;
1768 	if (id + (1 << size) >= encp->enc_buftbl_limit) {
1769 		rc = EINVAL;
1770 		goto fail1;
1771 	}
1772 
1773 	switch (type) {
1774 	case EFX_RXQ_TYPE_DEFAULT:
1775 		erp->er_buf_size = type_data->ertd_default.ed_buf_size;
1776 		/*
1777 		 * Ignore EFX_RXQ_FLAG_RSS_HASH since if RSS hash is calculated
1778 		 * it is always delivered from HW in the pseudo-header.
1779 		 */
1780 		break;
1781 
1782 	default:
1783 		rc = EINVAL;
1784 		goto fail2;
1785 	}
1786 
1787 #if EFSYS_OPT_RX_SCATTER
1788 #define SUPPORTED_RXQ_FLAGS EFX_RXQ_FLAG_SCATTER
1789 #else
1790 #define SUPPORTED_RXQ_FLAGS EFX_RXQ_FLAG_NONE
1791 #endif
1792 	/* Reject flags for unsupported queue features */
1793 	if ((flags & ~SUPPORTED_RXQ_FLAGS) != 0) {
1794 		rc = EINVAL;
1795 		goto fail3;
1796 	}
1797 #undef SUPPORTED_RXQ_FLAGS
1798 
1799 	if (flags & EFX_RXQ_FLAG_SCATTER)
1800 		jumbo = B_TRUE;
1801 
1802 	/* Set up the new descriptor queue */
1803 	EFX_POPULATE_OWORD_7(oword,
1804 	    FRF_AZ_RX_DESCQ_BUF_BASE_ID, id,
1805 	    FRF_AZ_RX_DESCQ_EVQ_ID, eep->ee_index,
1806 	    FRF_AZ_RX_DESCQ_OWNER_ID, 0,
1807 	    FRF_AZ_RX_DESCQ_LABEL, label,
1808 	    FRF_AZ_RX_DESCQ_SIZE, size,
1809 	    FRF_AZ_RX_DESCQ_TYPE, 0,
1810 	    FRF_AZ_RX_DESCQ_JUMBO, jumbo);
1811 
1812 	EFX_BAR_TBL_WRITEO(enp, FR_AZ_RX_DESC_PTR_TBL,
1813 			    erp->er_index, &oword, B_TRUE);
1814 
1815 	erp->er_prefix_layout = siena_toeplitz_rx_prefix_layout;
1816 
1817 	return (0);
1818 
1819 fail3:
1820 	EFSYS_PROBE(fail3);
1821 fail2:
1822 	EFSYS_PROBE(fail2);
1823 fail1:
1824 	EFSYS_PROBE1(fail1, efx_rc_t, rc);
1825 
1826 	return (rc);
1827 }
1828 
1829 static		void
1830 siena_rx_qdestroy(
1831 	__in	efx_rxq_t *erp)
1832 {
1833 	efx_nic_t *enp = erp->er_enp;
1834 	efx_oword_t oword;
1835 
1836 	/* Purge descriptor queue */
1837 	EFX_ZERO_OWORD(oword);
1838 
1839 	EFX_BAR_TBL_WRITEO(enp, FR_AZ_RX_DESC_PTR_TBL,
1840 			    erp->er_index, &oword, B_TRUE);
1841 }
1842 
1843 static		void
1844 siena_rx_fini(
1845 	__in	efx_nic_t *enp)
1846 {
1847 	_NOTE(ARGUNUSED(enp))
1848 }
1849 
1850 #endif /* EFSYS_OPT_SIENA */
1851 
1852 static	__checkReturn	boolean_t
1853 efx_rx_prefix_layout_fields_match(
1854 	__in		const efx_rx_prefix_field_info_t *erpfip1,
1855 	__in		const efx_rx_prefix_field_info_t *erpfip2)
1856 {
1857 	if (erpfip1->erpfi_offset_bits != erpfip2->erpfi_offset_bits)
1858 		return (B_FALSE);
1859 
1860 	if (erpfip1->erpfi_width_bits != erpfip2->erpfi_width_bits)
1861 		return (B_FALSE);
1862 
1863 	if (erpfip1->erpfi_big_endian != erpfip2->erpfi_big_endian)
1864 		return (B_FALSE);
1865 
1866 	return (B_TRUE);
1867 }
1868 
1869 	__checkReturn	uint32_t
1870 efx_rx_prefix_layout_check(
1871 	__in		const efx_rx_prefix_layout_t *available,
1872 	__in		const efx_rx_prefix_layout_t *wanted)
1873 {
1874 	uint32_t result = 0;
1875 	unsigned int i;
1876 
1877 	EFX_STATIC_ASSERT(EFX_RX_PREFIX_NFIELDS < sizeof (result) * 8);
1878 	for (i = 0; i < EFX_RX_PREFIX_NFIELDS; ++i) {
1879 		/* Skip the field if driver does not want to use it */
1880 		if (wanted->erpl_fields[i].erpfi_width_bits == 0)
1881 			continue;
1882 
1883 		if (efx_rx_prefix_layout_fields_match(
1884 			    &available->erpl_fields[i],
1885 			    &wanted->erpl_fields[i]) == B_FALSE)
1886 			result |= (1U << i);
1887 	}
1888 
1889 	return (result);
1890 }
1891