2 * Copyright(c) 2015 - 2018 Intel Corporation.
4 * This file is provided under a dual BSD/GPLv2 license. When using or
5 * redistributing this file, you may do so under either license.
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of version 2 of the GNU General Public License as
11 * published by the Free Software Foundation.
13 * This program is distributed in the hope that it will be useful, but
14 * WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * General Public License for more details.
20 * Redistribution and use in source and binary forms, with or without
21 * modification, are permitted provided that the following conditions
24 * - Redistributions of source code must retain the above copyright
25 * notice, this list of conditions and the following disclaimer.
26 * - Redistributions in binary form must reproduce the above copyright
27 * notice, this list of conditions and the following disclaimer in
28 * the documentation and/or other materials provided with the
30 * - Neither the name of Intel Corporation nor the names of its
31 * contributors may be used to endorse or promote products derived
32 * from this software without specific prior written permission.
34 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
35 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
36 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
37 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
38 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
39 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
40 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
41 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
42 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
43 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
44 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
47 #define CREATE_TRACE_POINTS
51 static u8
__get_ib_hdr_len(struct ib_header
*hdr
)
53 struct ib_other_headers
*ohdr
;
56 if (ib_get_lnh(hdr
) == HFI1_LRH_BTH
)
60 opcode
= ib_bth_get_opcode(ohdr
);
61 return hdr_len_by_opcode
[opcode
] == 0 ?
62 0 : hdr_len_by_opcode
[opcode
] - (12 + 8);
65 static u8
__get_16b_hdr_len(struct hfi1_16b_header
*hdr
)
67 struct ib_other_headers
*ohdr
= NULL
;
69 u8 l4
= hfi1_16B_get_l4(hdr
);
71 if (l4
== OPA_16B_L4_FM
) {
72 opcode
= IB_OPCODE_UD_SEND_ONLY
;
73 return (8 + 8); /* No BTH */
76 if (l4
== OPA_16B_L4_IB_LOCAL
)
81 opcode
= ib_bth_get_opcode(ohdr
);
82 return hdr_len_by_opcode
[opcode
] == 0 ?
83 0 : hdr_len_by_opcode
[opcode
] - (12 + 8 + 8);
86 u8
hfi1_trace_packet_hdr_len(struct hfi1_packet
*packet
)
88 if (packet
->etype
!= RHF_RCV_TYPE_BYPASS
)
89 return __get_ib_hdr_len(packet
->hdr
);
91 return __get_16b_hdr_len(packet
->hdr
);
94 u8
hfi1_trace_opa_hdr_len(struct hfi1_opa_header
*opa_hdr
)
96 if (!opa_hdr
->hdr_type
)
97 return __get_ib_hdr_len(&opa_hdr
->ibh
);
99 return __get_16b_hdr_len(&opa_hdr
->opah
);
102 const char *hfi1_trace_get_packet_l4_str(u8 l4
)
110 const char *hfi1_trace_get_packet_l2_str(u8 l2
)
125 #define IMM_PRN "imm:%d"
126 #define RETH_PRN "reth vaddr:0x%.16llx rkey:0x%.8x dlen:0x%.8x"
127 #define AETH_PRN "aeth syn:0x%.2x %s msn:0x%.8x"
128 #define DETH_PRN "deth qkey:0x%.8x sqpn:0x%.6x"
129 #define IETH_PRN "ieth rkey:0x%.8x"
130 #define ATOMICACKETH_PRN "origdata:%llx"
131 #define ATOMICETH_PRN "vaddr:0x%llx rkey:0x%.8x sdata:%llx cdata:%llx"
132 #define TID_RDMA_KDETH "kdeth0 0x%x kdeth1 0x%x"
133 #define TID_RDMA_KDETH_DATA "kdeth0 0x%x: kver %u sh %u intr %u tidctrl %u tid %x offset %x kdeth1 0x%x: jkey %x"
134 #define TID_READ_REQ_PRN "tid_flow_psn 0x%x tid_flow_qp 0x%x verbs_qp 0x%x"
135 #define TID_READ_RSP_PRN "verbs_qp 0x%x"
136 #define TID_WRITE_REQ_PRN "original_qp 0x%x"
137 #define TID_WRITE_RSP_PRN "tid_flow_psn 0x%x tid_flow_qp 0x%x verbs_qp 0x%x"
138 #define TID_WRITE_DATA_PRN "verbs_qp 0x%x"
139 #define TID_ACK_PRN "tid_flow_psn 0x%x verbs_psn 0x%x tid_flow_qp 0x%x verbs_qp 0x%x"
140 #define TID_RESYNC_PRN "verbs_qp 0x%x"
142 #define OP(transport, op) IB_OPCODE_## transport ## _ ## op
144 static const char *parse_syndrome(u8 syndrome
)
146 switch (syndrome
>> 5) {
157 void hfi1_trace_parse_9b_bth(struct ib_other_headers
*ohdr
,
158 u8
*ack
, bool *becn
, bool *fecn
, u8
*mig
,
159 u8
*se
, u8
*pad
, u8
*opcode
, u8
*tver
,
160 u16
*pkey
, u32
*psn
, u32
*qpn
)
162 *ack
= ib_bth_get_ackreq(ohdr
);
163 *becn
= ib_bth_get_becn(ohdr
);
164 *fecn
= ib_bth_get_fecn(ohdr
);
165 *mig
= ib_bth_get_migreq(ohdr
);
166 *se
= ib_bth_get_se(ohdr
);
167 *pad
= ib_bth_get_pad(ohdr
);
168 *opcode
= ib_bth_get_opcode(ohdr
);
169 *tver
= ib_bth_get_tver(ohdr
);
170 *pkey
= ib_bth_get_pkey(ohdr
);
171 *psn
= mask_psn(ib_bth_get_psn(ohdr
));
172 *qpn
= ib_bth_get_qpn(ohdr
);
175 void hfi1_trace_parse_16b_bth(struct ib_other_headers
*ohdr
,
176 u8
*ack
, u8
*mig
, u8
*opcode
,
177 u8
*pad
, u8
*se
, u8
*tver
,
180 *ack
= ib_bth_get_ackreq(ohdr
);
181 *mig
= ib_bth_get_migreq(ohdr
);
182 *opcode
= ib_bth_get_opcode(ohdr
);
183 *pad
= ib_bth_get_pad(ohdr
);
184 *se
= ib_bth_get_se(ohdr
);
185 *tver
= ib_bth_get_tver(ohdr
);
186 *psn
= mask_psn(ib_bth_get_psn(ohdr
));
187 *qpn
= ib_bth_get_qpn(ohdr
);
190 void hfi1_trace_parse_9b_hdr(struct ib_header
*hdr
, bool sc5
,
191 u8
*lnh
, u8
*lver
, u8
*sl
, u8
*sc
,
192 u16
*len
, u32
*dlid
, u32
*slid
)
194 *lnh
= ib_get_lnh(hdr
);
195 *lver
= ib_get_lver(hdr
);
196 *sl
= ib_get_sl(hdr
);
197 *sc
= ib_get_sc(hdr
) | (sc5
<< 4);
198 *len
= ib_get_len(hdr
);
199 *dlid
= ib_get_dlid(hdr
);
200 *slid
= ib_get_slid(hdr
);
203 void hfi1_trace_parse_16b_hdr(struct hfi1_16b_header
*hdr
,
204 u8
*age
, bool *becn
, bool *fecn
,
205 u8
*l4
, u8
*rc
, u8
*sc
,
206 u16
*entropy
, u16
*len
, u16
*pkey
,
207 u32
*dlid
, u32
*slid
)
209 *age
= hfi1_16B_get_age(hdr
);
210 *becn
= hfi1_16B_get_becn(hdr
);
211 *fecn
= hfi1_16B_get_fecn(hdr
);
212 *l4
= hfi1_16B_get_l4(hdr
);
213 *rc
= hfi1_16B_get_rc(hdr
);
214 *sc
= hfi1_16B_get_sc(hdr
);
215 *entropy
= hfi1_16B_get_entropy(hdr
);
216 *len
= hfi1_16B_get_len(hdr
);
217 *pkey
= hfi1_16B_get_pkey(hdr
);
218 *dlid
= hfi1_16B_get_dlid(hdr
);
219 *slid
= hfi1_16B_get_slid(hdr
);
222 #define LRH_PRN "len:%d sc:%d dlid:0x%.4x slid:0x%.4x "
223 #define LRH_9B_PRN "lnh:%d,%s lver:%d sl:%d"
224 #define LRH_16B_PRN "age:%d becn:%d fecn:%d l4:%d " \
225 "rc:%d sc:%d pkey:0x%.4x entropy:0x%.4x"
226 const char *hfi1_trace_fmt_lrh(struct trace_seq
*p
, bool bypass
,
227 u8 age
, bool becn
, bool fecn
, u8 l4
,
228 u8 lnh
, const char *lnh_name
, u8 lver
,
229 u8 rc
, u8 sc
, u8 sl
, u16 entropy
,
230 u16 len
, u16 pkey
, u32 dlid
, u32 slid
)
232 const char *ret
= trace_seq_buffer_ptr(p
);
234 trace_seq_printf(p
, LRH_PRN
, len
, sc
, dlid
, slid
);
237 trace_seq_printf(p
, LRH_16B_PRN
,
238 age
, becn
, fecn
, l4
, rc
, sc
, pkey
, entropy
);
241 trace_seq_printf(p
, LRH_9B_PRN
,
242 lnh
, lnh_name
, lver
, sl
);
243 trace_seq_putc(p
, 0);
249 "op:0x%.2x,%s se:%d m:%d pad:%d tver:%d pkey:0x%.4x " \
250 "f:%d b:%d qpn:0x%.6x a:%d psn:0x%.8x"
251 #define BTH_16B_PRN \
252 "op:0x%.2x,%s se:%d m:%d pad:%d tver:%d " \
253 "qpn:0x%.6x a:%d psn:0x%.8x"
254 #define L4_FM_16B_PRN \
255 "op:0x%.2x,%s dest_qpn:0x%.6x src_qpn:0x%.6x"
256 const char *hfi1_trace_fmt_rest(struct trace_seq
*p
, bool bypass
, u8 l4
,
257 u8 ack
, bool becn
, bool fecn
, u8 mig
,
258 u8 se
, u8 pad
, u8 opcode
, const char *opname
,
259 u8 tver
, u16 pkey
, u32 psn
, u32 qpn
,
260 u32 dest_qpn
, u32 src_qpn
)
262 const char *ret
= trace_seq_buffer_ptr(p
);
265 if (l4
== OPA_16B_L4_FM
)
266 trace_seq_printf(p
, L4_FM_16B_PRN
,
267 opcode
, opname
, dest_qpn
, src_qpn
);
269 trace_seq_printf(p
, BTH_16B_PRN
,
271 se
, mig
, pad
, tver
, qpn
, ack
, psn
);
274 trace_seq_printf(p
, BTH_9B_PRN
,
276 se
, mig
, pad
, tver
, pkey
, fecn
, becn
,
278 trace_seq_putc(p
, 0);
283 const char *parse_everbs_hdrs(
285 u8 opcode
, u8 l4
, u32 dest_qpn
, u32 src_qpn
,
288 union ib_ehdrs
*eh
= ehdrs
;
289 const char *ret
= trace_seq_buffer_ptr(p
);
291 if (l4
== OPA_16B_L4_FM
) {
292 trace_seq_printf(p
, "mgmt pkt");
298 case OP(RC
, SEND_LAST_WITH_IMMEDIATE
):
299 case OP(UC
, SEND_LAST_WITH_IMMEDIATE
):
300 case OP(RC
, SEND_ONLY_WITH_IMMEDIATE
):
301 case OP(UC
, SEND_ONLY_WITH_IMMEDIATE
):
302 case OP(RC
, RDMA_WRITE_LAST_WITH_IMMEDIATE
):
303 case OP(UC
, RDMA_WRITE_LAST_WITH_IMMEDIATE
):
304 trace_seq_printf(p
, IMM_PRN
,
305 be32_to_cpu(eh
->imm_data
));
308 case OP(RC
, RDMA_WRITE_ONLY_WITH_IMMEDIATE
):
309 case OP(UC
, RDMA_WRITE_ONLY_WITH_IMMEDIATE
):
310 trace_seq_printf(p
, RETH_PRN
" " IMM_PRN
,
311 get_ib_reth_vaddr(&eh
->rc
.reth
),
312 be32_to_cpu(eh
->rc
.reth
.rkey
),
313 be32_to_cpu(eh
->rc
.reth
.length
),
314 be32_to_cpu(eh
->rc
.imm_data
));
317 case OP(RC
, RDMA_READ_REQUEST
):
318 case OP(RC
, RDMA_WRITE_FIRST
):
319 case OP(UC
, RDMA_WRITE_FIRST
):
320 case OP(RC
, RDMA_WRITE_ONLY
):
321 case OP(UC
, RDMA_WRITE_ONLY
):
322 trace_seq_printf(p
, RETH_PRN
,
323 get_ib_reth_vaddr(&eh
->rc
.reth
),
324 be32_to_cpu(eh
->rc
.reth
.rkey
),
325 be32_to_cpu(eh
->rc
.reth
.length
));
327 case OP(RC
, RDMA_READ_RESPONSE_FIRST
):
328 case OP(RC
, RDMA_READ_RESPONSE_LAST
):
329 case OP(RC
, RDMA_READ_RESPONSE_ONLY
):
330 case OP(RC
, ACKNOWLEDGE
):
331 trace_seq_printf(p
, AETH_PRN
, be32_to_cpu(eh
->aeth
) >> 24,
332 parse_syndrome(be32_to_cpu(eh
->aeth
) >> 24),
333 be32_to_cpu(eh
->aeth
) & IB_MSN_MASK
);
335 case OP(TID_RDMA
, WRITE_REQ
):
336 trace_seq_printf(p
, TID_RDMA_KDETH
" " RETH_PRN
" "
338 le32_to_cpu(eh
->tid_rdma
.w_req
.kdeth0
),
339 le32_to_cpu(eh
->tid_rdma
.w_req
.kdeth1
),
340 ib_u64_get(&eh
->tid_rdma
.w_req
.reth
.vaddr
),
341 be32_to_cpu(eh
->tid_rdma
.w_req
.reth
.rkey
),
342 be32_to_cpu(eh
->tid_rdma
.w_req
.reth
.length
),
343 be32_to_cpu(eh
->tid_rdma
.w_req
.verbs_qp
));
345 case OP(TID_RDMA
, WRITE_RESP
):
346 trace_seq_printf(p
, TID_RDMA_KDETH
" " AETH_PRN
" "
348 le32_to_cpu(eh
->tid_rdma
.w_rsp
.kdeth0
),
349 le32_to_cpu(eh
->tid_rdma
.w_rsp
.kdeth1
),
350 be32_to_cpu(eh
->tid_rdma
.w_rsp
.aeth
) >> 24,
351 parse_syndrome(/* aeth */
352 be32_to_cpu(eh
->tid_rdma
.w_rsp
.aeth
)
354 (be32_to_cpu(eh
->tid_rdma
.w_rsp
.aeth
) &
356 be32_to_cpu(eh
->tid_rdma
.w_rsp
.tid_flow_psn
),
357 be32_to_cpu(eh
->tid_rdma
.w_rsp
.tid_flow_qp
),
358 be32_to_cpu(eh
->tid_rdma
.w_rsp
.verbs_qp
));
360 case OP(TID_RDMA
, WRITE_DATA_LAST
):
361 case OP(TID_RDMA
, WRITE_DATA
):
362 trace_seq_printf(p
, TID_RDMA_KDETH_DATA
" " TID_WRITE_DATA_PRN
,
363 le32_to_cpu(eh
->tid_rdma
.w_data
.kdeth0
),
364 KDETH_GET(eh
->tid_rdma
.w_data
.kdeth0
, KVER
),
365 KDETH_GET(eh
->tid_rdma
.w_data
.kdeth0
, SH
),
366 KDETH_GET(eh
->tid_rdma
.w_data
.kdeth0
, INTR
),
367 KDETH_GET(eh
->tid_rdma
.w_data
.kdeth0
, TIDCTRL
),
368 KDETH_GET(eh
->tid_rdma
.w_data
.kdeth0
, TID
),
369 KDETH_GET(eh
->tid_rdma
.w_data
.kdeth0
, OFFSET
),
370 le32_to_cpu(eh
->tid_rdma
.w_data
.kdeth1
),
371 KDETH_GET(eh
->tid_rdma
.w_data
.kdeth1
, JKEY
),
372 be32_to_cpu(eh
->tid_rdma
.w_data
.verbs_qp
));
374 case OP(TID_RDMA
, READ_REQ
):
375 trace_seq_printf(p
, TID_RDMA_KDETH
" " RETH_PRN
" "
377 le32_to_cpu(eh
->tid_rdma
.r_req
.kdeth0
),
378 le32_to_cpu(eh
->tid_rdma
.r_req
.kdeth1
),
379 ib_u64_get(&eh
->tid_rdma
.r_req
.reth
.vaddr
),
380 be32_to_cpu(eh
->tid_rdma
.r_req
.reth
.rkey
),
381 be32_to_cpu(eh
->tid_rdma
.r_req
.reth
.length
),
382 be32_to_cpu(eh
->tid_rdma
.r_req
.tid_flow_psn
),
383 be32_to_cpu(eh
->tid_rdma
.r_req
.tid_flow_qp
),
384 be32_to_cpu(eh
->tid_rdma
.r_req
.verbs_qp
));
386 case OP(TID_RDMA
, READ_RESP
):
387 trace_seq_printf(p
, TID_RDMA_KDETH_DATA
" " AETH_PRN
" "
389 le32_to_cpu(eh
->tid_rdma
.r_rsp
.kdeth0
),
390 KDETH_GET(eh
->tid_rdma
.r_rsp
.kdeth0
, KVER
),
391 KDETH_GET(eh
->tid_rdma
.r_rsp
.kdeth0
, SH
),
392 KDETH_GET(eh
->tid_rdma
.r_rsp
.kdeth0
, INTR
),
393 KDETH_GET(eh
->tid_rdma
.r_rsp
.kdeth0
, TIDCTRL
),
394 KDETH_GET(eh
->tid_rdma
.r_rsp
.kdeth0
, TID
),
395 KDETH_GET(eh
->tid_rdma
.r_rsp
.kdeth0
, OFFSET
),
396 le32_to_cpu(eh
->tid_rdma
.r_rsp
.kdeth1
),
397 KDETH_GET(eh
->tid_rdma
.r_rsp
.kdeth1
, JKEY
),
398 be32_to_cpu(eh
->tid_rdma
.r_rsp
.aeth
) >> 24,
399 parse_syndrome(/* aeth */
400 be32_to_cpu(eh
->tid_rdma
.r_rsp
.aeth
)
402 (be32_to_cpu(eh
->tid_rdma
.r_rsp
.aeth
) &
404 be32_to_cpu(eh
->tid_rdma
.r_rsp
.verbs_qp
));
406 case OP(TID_RDMA
, ACK
):
407 trace_seq_printf(p
, TID_RDMA_KDETH
" " AETH_PRN
" "
409 le32_to_cpu(eh
->tid_rdma
.ack
.kdeth0
),
410 le32_to_cpu(eh
->tid_rdma
.ack
.kdeth1
),
411 be32_to_cpu(eh
->tid_rdma
.ack
.aeth
) >> 24,
412 parse_syndrome(/* aeth */
413 be32_to_cpu(eh
->tid_rdma
.ack
.aeth
)
415 (be32_to_cpu(eh
->tid_rdma
.ack
.aeth
) &
417 be32_to_cpu(eh
->tid_rdma
.ack
.tid_flow_psn
),
418 be32_to_cpu(eh
->tid_rdma
.ack
.verbs_psn
),
419 be32_to_cpu(eh
->tid_rdma
.ack
.tid_flow_qp
),
420 be32_to_cpu(eh
->tid_rdma
.ack
.verbs_qp
));
422 case OP(TID_RDMA
, RESYNC
):
423 trace_seq_printf(p
, TID_RDMA_KDETH
" " TID_RESYNC_PRN
,
424 le32_to_cpu(eh
->tid_rdma
.resync
.kdeth0
),
425 le32_to_cpu(eh
->tid_rdma
.resync
.kdeth1
),
426 be32_to_cpu(eh
->tid_rdma
.resync
.verbs_qp
));
428 /* aeth + atomicacketh */
429 case OP(RC
, ATOMIC_ACKNOWLEDGE
):
430 trace_seq_printf(p
, AETH_PRN
" " ATOMICACKETH_PRN
,
431 be32_to_cpu(eh
->at
.aeth
) >> 24,
432 parse_syndrome(be32_to_cpu(eh
->at
.aeth
) >> 24),
433 be32_to_cpu(eh
->at
.aeth
) & IB_MSN_MASK
,
434 ib_u64_get(&eh
->at
.atomic_ack_eth
));
437 case OP(RC
, COMPARE_SWAP
):
438 case OP(RC
, FETCH_ADD
):
439 trace_seq_printf(p
, ATOMICETH_PRN
,
440 get_ib_ateth_vaddr(&eh
->atomic_eth
),
442 get_ib_ateth_swap(&eh
->atomic_eth
),
443 get_ib_ateth_compare(&eh
->atomic_eth
));
446 case OP(UD
, SEND_ONLY
):
447 case OP(UD
, SEND_ONLY_WITH_IMMEDIATE
):
448 trace_seq_printf(p
, DETH_PRN
,
449 be32_to_cpu(eh
->ud
.deth
[0]),
450 be32_to_cpu(eh
->ud
.deth
[1]) & RVT_QPN_MASK
);
453 case OP(RC
, SEND_LAST_WITH_INVALIDATE
):
454 case OP(RC
, SEND_ONLY_WITH_INVALIDATE
):
455 trace_seq_printf(p
, IETH_PRN
,
456 be32_to_cpu(eh
->ieth
));
460 trace_seq_putc(p
, 0);
464 const char *parse_sdma_flags(
466 u64 desc0
, u64 desc1
)
468 const char *ret
= trace_seq_buffer_ptr(p
);
469 char flags
[5] = { 'x', 'x', 'x', 'x', 0 };
471 flags
[0] = (desc1
& SDMA_DESC1_INT_REQ_FLAG
) ? 'I' : '-';
472 flags
[1] = (desc1
& SDMA_DESC1_HEAD_TO_HOST_FLAG
) ? 'H' : '-';
473 flags
[2] = (desc0
& SDMA_DESC0_FIRST_DESC_FLAG
) ? 'F' : '-';
474 flags
[3] = (desc0
& SDMA_DESC0_LAST_DESC_FLAG
) ? 'L' : '-';
475 trace_seq_printf(p
, "%s", flags
);
476 if (desc0
& SDMA_DESC0_FIRST_DESC_FLAG
)
477 trace_seq_printf(p
, " amode:%u aidx:%u alen:%u",
478 (u8
)((desc1
>> SDMA_DESC1_HEADER_MODE_SHIFT
) &
479 SDMA_DESC1_HEADER_MODE_MASK
),
480 (u8
)((desc1
>> SDMA_DESC1_HEADER_INDEX_SHIFT
) &
481 SDMA_DESC1_HEADER_INDEX_MASK
),
482 (u8
)((desc1
>> SDMA_DESC1_HEADER_DWS_SHIFT
) &
483 SDMA_DESC1_HEADER_DWS_MASK
));
487 const char *print_u32_array(
492 const char *ret
= trace_seq_buffer_ptr(p
);
494 for (i
= 0; i
< len
; i
++)
495 trace_seq_printf(p
, "%s%#x", i
== 0 ? "" : " ", arr
[i
]);
496 trace_seq_putc(p
, 0);
500 u8
hfi1_trace_get_tid_ctrl(u32 ent
)
502 return EXP_TID_GET(ent
, CTRL
);
505 u16
hfi1_trace_get_tid_len(u32 ent
)
507 return EXP_TID_GET(ent
, LEN
);
510 u16
hfi1_trace_get_tid_idx(u32 ent
)
512 return EXP_TID_GET(ent
, IDX
);
515 __hfi1_trace_fn(AFFINITY
);
516 __hfi1_trace_fn(PKT
);
517 __hfi1_trace_fn(PROC
);
518 __hfi1_trace_fn(SDMA
);
519 __hfi1_trace_fn(LINKVERB
);
520 __hfi1_trace_fn(DEBUG
);
521 __hfi1_trace_fn(SNOOP
);
522 __hfi1_trace_fn(CNTR
);
523 __hfi1_trace_fn(PIO
);
524 __hfi1_trace_fn(DC8051
);
525 __hfi1_trace_fn(FIRMWARE
);
526 __hfi1_trace_fn(RCVCTRL
);
527 __hfi1_trace_fn(TID
);
528 __hfi1_trace_fn(MMU
);
529 __hfi1_trace_fn(IOCTL
);