1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Copyright(C) 2015-2018 Linaro Limited.
4 *
5 * Author: Tor Jeremiassen <tor@ti.com>
6 * Author: Mathieu Poirier <mathieu.poirier@linaro.org>
7 */
8
9 #include <linux/err.h>
10 #include <linux/list.h>
11 #include <stdlib.h>
12 #include <opencsd/c_api/opencsd_c_api.h>
13 #include <opencsd/etmv4/trc_pkt_types_etmv4.h>
14 #include <opencsd/ocsd_if_types.h>
15
16 #include "cs-etm.h"
17 #include "cs-etm-decoder.h"
18 #include "intlist.h"
19 #include "util.h"
20
21 #define MAX_BUFFER 1024
22
23 /* use raw logging */
24 #ifdef CS_DEBUG_RAW
25 #define CS_LOG_RAW_FRAMES
26 #ifdef CS_RAW_PACKED
27 #define CS_RAW_DEBUG_FLAGS (OCSD_DFRMTR_UNPACKED_RAW_OUT | \
28 OCSD_DFRMTR_PACKED_RAW_OUT)
29 #else
30 #define CS_RAW_DEBUG_FLAGS (OCSD_DFRMTR_UNPACKED_RAW_OUT)
31 #endif
32 #endif
33
34 #define CS_ETM_INVAL_ADDR 0xdeadbeefdeadbeefUL
35
36 struct cs_etm_decoder {
37 void *data;
38 void (*packet_printer)(const char *msg);
39 bool trace_on;
40 dcd_tree_handle_t dcd_tree;
41 cs_etm_mem_cb_type mem_access;
42 ocsd_datapath_resp_t prev_return;
43 u32 packet_count;
44 u32 head;
45 u32 tail;
46 struct cs_etm_packet packet_buffer[MAX_BUFFER];
47 };
48
49 static u32
cs_etm_decoder__mem_access(const void * context,const ocsd_vaddr_t address,const ocsd_mem_space_acc_t mem_space __maybe_unused,const u32 req_size,u8 * buffer)50 cs_etm_decoder__mem_access(const void *context,
51 const ocsd_vaddr_t address,
52 const ocsd_mem_space_acc_t mem_space __maybe_unused,
53 const u32 req_size,
54 u8 *buffer)
55 {
56 struct cs_etm_decoder *decoder = (struct cs_etm_decoder *) context;
57
58 return decoder->mem_access(decoder->data,
59 address,
60 req_size,
61 buffer);
62 }
63
cs_etm_decoder__add_mem_access_cb(struct cs_etm_decoder * decoder,u64 start,u64 end,cs_etm_mem_cb_type cb_func)64 int cs_etm_decoder__add_mem_access_cb(struct cs_etm_decoder *decoder,
65 u64 start, u64 end,
66 cs_etm_mem_cb_type cb_func)
67 {
68 decoder->mem_access = cb_func;
69
70 if (ocsd_dt_add_callback_mem_acc(decoder->dcd_tree, start, end,
71 OCSD_MEM_SPACE_ANY,
72 cs_etm_decoder__mem_access, decoder))
73 return -1;
74
75 return 0;
76 }
77
cs_etm_decoder__reset(struct cs_etm_decoder * decoder)78 int cs_etm_decoder__reset(struct cs_etm_decoder *decoder)
79 {
80 ocsd_datapath_resp_t dp_ret;
81
82 decoder->prev_return = OCSD_RESP_CONT;
83
84 dp_ret = ocsd_dt_process_data(decoder->dcd_tree, OCSD_OP_RESET,
85 0, 0, NULL, NULL);
86 if (OCSD_DATA_RESP_IS_FATAL(dp_ret))
87 return -1;
88
89 return 0;
90 }
91
cs_etm_decoder__get_packet(struct cs_etm_decoder * decoder,struct cs_etm_packet * packet)92 int cs_etm_decoder__get_packet(struct cs_etm_decoder *decoder,
93 struct cs_etm_packet *packet)
94 {
95 if (!decoder || !packet)
96 return -EINVAL;
97
98 /* Nothing to do, might as well just return */
99 if (decoder->packet_count == 0)
100 return 0;
101 /*
102 * The queueing process in function cs_etm_decoder__buffer_packet()
103 * increments the tail *before* using it. This is somewhat counter
104 * intuitive but it has the advantage of centralizing tail management
105 * at a single location. Because of that we need to follow the same
106 * heuristic with the head, i.e we increment it before using its
107 * value. Otherwise the first element of the packet queue is not
108 * used.
109 */
110 decoder->head = (decoder->head + 1) & (MAX_BUFFER - 1);
111
112 *packet = decoder->packet_buffer[decoder->head];
113
114 decoder->packet_count--;
115
116 return 1;
117 }
118
cs_etm_decoder__gen_etmv4_config(struct cs_etm_trace_params * params,ocsd_etmv4_cfg * config)119 static void cs_etm_decoder__gen_etmv4_config(struct cs_etm_trace_params *params,
120 ocsd_etmv4_cfg *config)
121 {
122 config->reg_configr = params->etmv4.reg_configr;
123 config->reg_traceidr = params->etmv4.reg_traceidr;
124 config->reg_idr0 = params->etmv4.reg_idr0;
125 config->reg_idr1 = params->etmv4.reg_idr1;
126 config->reg_idr2 = params->etmv4.reg_idr2;
127 config->reg_idr8 = params->etmv4.reg_idr8;
128 config->reg_idr9 = 0;
129 config->reg_idr10 = 0;
130 config->reg_idr11 = 0;
131 config->reg_idr12 = 0;
132 config->reg_idr13 = 0;
133 config->arch_ver = ARCH_V8;
134 config->core_prof = profile_CortexA;
135 }
136
cs_etm_decoder__print_str_cb(const void * p_context,const char * msg,const int str_len)137 static void cs_etm_decoder__print_str_cb(const void *p_context,
138 const char *msg,
139 const int str_len)
140 {
141 if (p_context && str_len)
142 ((struct cs_etm_decoder *)p_context)->packet_printer(msg);
143 }
144
145 static int
cs_etm_decoder__init_def_logger_printing(struct cs_etm_decoder_params * d_params,struct cs_etm_decoder * decoder)146 cs_etm_decoder__init_def_logger_printing(struct cs_etm_decoder_params *d_params,
147 struct cs_etm_decoder *decoder)
148 {
149 int ret = 0;
150
151 if (d_params->packet_printer == NULL)
152 return -1;
153
154 decoder->packet_printer = d_params->packet_printer;
155
156 /*
157 * Set up a library default logger to process any printers
158 * (packet/raw frame) we add later.
159 */
160 ret = ocsd_def_errlog_init(OCSD_ERR_SEV_ERROR, 1);
161 if (ret != 0)
162 return -1;
163
164 /* no stdout / err / file output */
165 ret = ocsd_def_errlog_config_output(C_API_MSGLOGOUT_FLG_NONE, NULL);
166 if (ret != 0)
167 return -1;
168
169 /*
170 * Set the string CB for the default logger, passes strings to
171 * perf print logger.
172 */
173 ret = ocsd_def_errlog_set_strprint_cb(decoder->dcd_tree,
174 (void *)decoder,
175 cs_etm_decoder__print_str_cb);
176 if (ret != 0)
177 ret = -1;
178
179 return 0;
180 }
181
182 #ifdef CS_LOG_RAW_FRAMES
183 static void
cs_etm_decoder__init_raw_frame_logging(struct cs_etm_decoder_params * d_params,struct cs_etm_decoder * decoder)184 cs_etm_decoder__init_raw_frame_logging(struct cs_etm_decoder_params *d_params,
185 struct cs_etm_decoder *decoder)
186 {
187 /* Only log these during a --dump operation */
188 if (d_params->operation == CS_ETM_OPERATION_PRINT) {
189 /* set up a library default logger to process the
190 * raw frame printer we add later
191 */
192 ocsd_def_errlog_init(OCSD_ERR_SEV_ERROR, 1);
193
194 /* no stdout / err / file output */
195 ocsd_def_errlog_config_output(C_API_MSGLOGOUT_FLG_NONE, NULL);
196
197 /* set the string CB for the default logger,
198 * passes strings to perf print logger.
199 */
200 ocsd_def_errlog_set_strprint_cb(decoder->dcd_tree,
201 (void *)decoder,
202 cs_etm_decoder__print_str_cb);
203
204 /* use the built in library printer for the raw frames */
205 ocsd_dt_set_raw_frame_printer(decoder->dcd_tree,
206 CS_RAW_DEBUG_FLAGS);
207 }
208 }
209 #else
210 static void
cs_etm_decoder__init_raw_frame_logging(struct cs_etm_decoder_params * d_params __maybe_unused,struct cs_etm_decoder * decoder __maybe_unused)211 cs_etm_decoder__init_raw_frame_logging(
212 struct cs_etm_decoder_params *d_params __maybe_unused,
213 struct cs_etm_decoder *decoder __maybe_unused)
214 {
215 }
216 #endif
217
cs_etm_decoder__create_packet_printer(struct cs_etm_decoder * decoder,const char * decoder_name,void * trace_config)218 static int cs_etm_decoder__create_packet_printer(struct cs_etm_decoder *decoder,
219 const char *decoder_name,
220 void *trace_config)
221 {
222 u8 csid;
223
224 if (ocsd_dt_create_decoder(decoder->dcd_tree, decoder_name,
225 OCSD_CREATE_FLG_PACKET_PROC,
226 trace_config, &csid))
227 return -1;
228
229 if (ocsd_dt_set_pkt_protocol_printer(decoder->dcd_tree, csid, 0))
230 return -1;
231
232 return 0;
233 }
234
235 static int
cs_etm_decoder__create_etm_packet_printer(struct cs_etm_trace_params * t_params,struct cs_etm_decoder * decoder)236 cs_etm_decoder__create_etm_packet_printer(struct cs_etm_trace_params *t_params,
237 struct cs_etm_decoder *decoder)
238 {
239 const char *decoder_name;
240 ocsd_etmv4_cfg trace_config_etmv4;
241 void *trace_config;
242
243 switch (t_params->protocol) {
244 case CS_ETM_PROTO_ETMV4i:
245 cs_etm_decoder__gen_etmv4_config(t_params, &trace_config_etmv4);
246 decoder_name = OCSD_BUILTIN_DCD_ETMV4I;
247 trace_config = &trace_config_etmv4;
248 break;
249 default:
250 return -1;
251 }
252
253 return cs_etm_decoder__create_packet_printer(decoder,
254 decoder_name,
255 trace_config);
256 }
257
cs_etm_decoder__clear_buffer(struct cs_etm_decoder * decoder)258 static void cs_etm_decoder__clear_buffer(struct cs_etm_decoder *decoder)
259 {
260 int i;
261
262 decoder->head = 0;
263 decoder->tail = 0;
264 decoder->packet_count = 0;
265 for (i = 0; i < MAX_BUFFER; i++) {
266 decoder->packet_buffer[i].start_addr = CS_ETM_INVAL_ADDR;
267 decoder->packet_buffer[i].end_addr = CS_ETM_INVAL_ADDR;
268 decoder->packet_buffer[i].last_instr_taken_branch = false;
269 decoder->packet_buffer[i].exc = false;
270 decoder->packet_buffer[i].exc_ret = false;
271 decoder->packet_buffer[i].cpu = INT_MIN;
272 }
273 }
274
275 static ocsd_datapath_resp_t
cs_etm_decoder__buffer_packet(struct cs_etm_decoder * decoder,const u8 trace_chan_id,enum cs_etm_sample_type sample_type)276 cs_etm_decoder__buffer_packet(struct cs_etm_decoder *decoder,
277 const u8 trace_chan_id,
278 enum cs_etm_sample_type sample_type)
279 {
280 u32 et = 0;
281 struct int_node *inode = NULL;
282
283 if (decoder->packet_count >= MAX_BUFFER - 1)
284 return OCSD_RESP_FATAL_SYS_ERR;
285
286 /* Search the RB tree for the cpu associated with this traceID */
287 inode = intlist__find(traceid_list, trace_chan_id);
288 if (!inode)
289 return OCSD_RESP_FATAL_SYS_ERR;
290
291 et = decoder->tail;
292 et = (et + 1) & (MAX_BUFFER - 1);
293 decoder->tail = et;
294 decoder->packet_count++;
295
296 decoder->packet_buffer[et].sample_type = sample_type;
297 decoder->packet_buffer[et].exc = false;
298 decoder->packet_buffer[et].exc_ret = false;
299 decoder->packet_buffer[et].cpu = *((int *)inode->priv);
300 decoder->packet_buffer[et].start_addr = CS_ETM_INVAL_ADDR;
301 decoder->packet_buffer[et].end_addr = CS_ETM_INVAL_ADDR;
302
303 if (decoder->packet_count == MAX_BUFFER - 1)
304 return OCSD_RESP_WAIT;
305
306 return OCSD_RESP_CONT;
307 }
308
309 static ocsd_datapath_resp_t
cs_etm_decoder__buffer_range(struct cs_etm_decoder * decoder,const ocsd_generic_trace_elem * elem,const uint8_t trace_chan_id)310 cs_etm_decoder__buffer_range(struct cs_etm_decoder *decoder,
311 const ocsd_generic_trace_elem *elem,
312 const uint8_t trace_chan_id)
313 {
314 int ret = 0;
315 struct cs_etm_packet *packet;
316
317 ret = cs_etm_decoder__buffer_packet(decoder, trace_chan_id,
318 CS_ETM_RANGE);
319 if (ret != OCSD_RESP_CONT && ret != OCSD_RESP_WAIT)
320 return ret;
321
322 packet = &decoder->packet_buffer[decoder->tail];
323
324 packet->start_addr = elem->st_addr;
325 packet->end_addr = elem->en_addr;
326 switch (elem->last_i_type) {
327 case OCSD_INSTR_BR:
328 case OCSD_INSTR_BR_INDIRECT:
329 packet->last_instr_taken_branch = elem->last_instr_exec;
330 break;
331 case OCSD_INSTR_ISB:
332 case OCSD_INSTR_DSB_DMB:
333 case OCSD_INSTR_OTHER:
334 default:
335 packet->last_instr_taken_branch = false;
336 break;
337 }
338
339 return ret;
340 }
341
342 static ocsd_datapath_resp_t
cs_etm_decoder__buffer_trace_on(struct cs_etm_decoder * decoder,const uint8_t trace_chan_id)343 cs_etm_decoder__buffer_trace_on(struct cs_etm_decoder *decoder,
344 const uint8_t trace_chan_id)
345 {
346 return cs_etm_decoder__buffer_packet(decoder, trace_chan_id,
347 CS_ETM_TRACE_ON);
348 }
349
cs_etm_decoder__gen_trace_elem_printer(const void * context,const ocsd_trc_index_t indx __maybe_unused,const u8 trace_chan_id __maybe_unused,const ocsd_generic_trace_elem * elem)350 static ocsd_datapath_resp_t cs_etm_decoder__gen_trace_elem_printer(
351 const void *context,
352 const ocsd_trc_index_t indx __maybe_unused,
353 const u8 trace_chan_id __maybe_unused,
354 const ocsd_generic_trace_elem *elem)
355 {
356 ocsd_datapath_resp_t resp = OCSD_RESP_CONT;
357 struct cs_etm_decoder *decoder = (struct cs_etm_decoder *) context;
358
359 switch (elem->elem_type) {
360 case OCSD_GEN_TRC_ELEM_UNKNOWN:
361 break;
362 case OCSD_GEN_TRC_ELEM_NO_SYNC:
363 decoder->trace_on = false;
364 break;
365 case OCSD_GEN_TRC_ELEM_TRACE_ON:
366 resp = cs_etm_decoder__buffer_trace_on(decoder,
367 trace_chan_id);
368 decoder->trace_on = true;
369 break;
370 case OCSD_GEN_TRC_ELEM_INSTR_RANGE:
371 resp = cs_etm_decoder__buffer_range(decoder, elem,
372 trace_chan_id);
373 break;
374 case OCSD_GEN_TRC_ELEM_EXCEPTION:
375 decoder->packet_buffer[decoder->tail].exc = true;
376 break;
377 case OCSD_GEN_TRC_ELEM_EXCEPTION_RET:
378 decoder->packet_buffer[decoder->tail].exc_ret = true;
379 break;
380 case OCSD_GEN_TRC_ELEM_PE_CONTEXT:
381 case OCSD_GEN_TRC_ELEM_EO_TRACE:
382 case OCSD_GEN_TRC_ELEM_ADDR_NACC:
383 case OCSD_GEN_TRC_ELEM_TIMESTAMP:
384 case OCSD_GEN_TRC_ELEM_CYCLE_COUNT:
385 case OCSD_GEN_TRC_ELEM_ADDR_UNKNOWN:
386 case OCSD_GEN_TRC_ELEM_EVENT:
387 case OCSD_GEN_TRC_ELEM_SWTRACE:
388 case OCSD_GEN_TRC_ELEM_CUSTOM:
389 default:
390 break;
391 }
392
393 return resp;
394 }
395
cs_etm_decoder__create_etm_packet_decoder(struct cs_etm_trace_params * t_params,struct cs_etm_decoder * decoder)396 static int cs_etm_decoder__create_etm_packet_decoder(
397 struct cs_etm_trace_params *t_params,
398 struct cs_etm_decoder *decoder)
399 {
400 const char *decoder_name;
401 ocsd_etmv4_cfg trace_config_etmv4;
402 void *trace_config;
403 u8 csid;
404
405 switch (t_params->protocol) {
406 case CS_ETM_PROTO_ETMV4i:
407 cs_etm_decoder__gen_etmv4_config(t_params, &trace_config_etmv4);
408 decoder_name = OCSD_BUILTIN_DCD_ETMV4I;
409 trace_config = &trace_config_etmv4;
410 break;
411 default:
412 return -1;
413 }
414
415 if (ocsd_dt_create_decoder(decoder->dcd_tree,
416 decoder_name,
417 OCSD_CREATE_FLG_FULL_DECODER,
418 trace_config, &csid))
419 return -1;
420
421 if (ocsd_dt_set_gen_elem_outfn(decoder->dcd_tree,
422 cs_etm_decoder__gen_trace_elem_printer,
423 decoder))
424 return -1;
425
426 return 0;
427 }
428
429 static int
cs_etm_decoder__create_etm_decoder(struct cs_etm_decoder_params * d_params,struct cs_etm_trace_params * t_params,struct cs_etm_decoder * decoder)430 cs_etm_decoder__create_etm_decoder(struct cs_etm_decoder_params *d_params,
431 struct cs_etm_trace_params *t_params,
432 struct cs_etm_decoder *decoder)
433 {
434 if (d_params->operation == CS_ETM_OPERATION_PRINT)
435 return cs_etm_decoder__create_etm_packet_printer(t_params,
436 decoder);
437 else if (d_params->operation == CS_ETM_OPERATION_DECODE)
438 return cs_etm_decoder__create_etm_packet_decoder(t_params,
439 decoder);
440
441 return -1;
442 }
443
444 struct cs_etm_decoder *
cs_etm_decoder__new(int num_cpu,struct cs_etm_decoder_params * d_params,struct cs_etm_trace_params t_params[])445 cs_etm_decoder__new(int num_cpu, struct cs_etm_decoder_params *d_params,
446 struct cs_etm_trace_params t_params[])
447 {
448 struct cs_etm_decoder *decoder;
449 ocsd_dcd_tree_src_t format;
450 u32 flags;
451 int i, ret;
452
453 if ((!t_params) || (!d_params))
454 return NULL;
455
456 decoder = zalloc(sizeof(*decoder));
457
458 if (!decoder)
459 return NULL;
460
461 decoder->data = d_params->data;
462 decoder->prev_return = OCSD_RESP_CONT;
463 cs_etm_decoder__clear_buffer(decoder);
464 format = (d_params->formatted ? OCSD_TRC_SRC_FRAME_FORMATTED :
465 OCSD_TRC_SRC_SINGLE);
466 flags = 0;
467 flags |= (d_params->fsyncs ? OCSD_DFRMTR_HAS_FSYNCS : 0);
468 flags |= (d_params->hsyncs ? OCSD_DFRMTR_HAS_HSYNCS : 0);
469 flags |= (d_params->frame_aligned ? OCSD_DFRMTR_FRAME_MEM_ALIGN : 0);
470
471 /*
472 * Drivers may add barrier frames when used with perf, set up to
473 * handle this. Barriers const of FSYNC packet repeated 4 times.
474 */
475 flags |= OCSD_DFRMTR_RESET_ON_4X_FSYNC;
476
477 /* Create decode tree for the data source */
478 decoder->dcd_tree = ocsd_create_dcd_tree(format, flags);
479
480 if (decoder->dcd_tree == 0)
481 goto err_free_decoder;
482
483 /* init library print logging support */
484 ret = cs_etm_decoder__init_def_logger_printing(d_params, decoder);
485 if (ret != 0)
486 goto err_free_decoder_tree;
487
488 /* init raw frame logging if required */
489 cs_etm_decoder__init_raw_frame_logging(d_params, decoder);
490
491 for (i = 0; i < num_cpu; i++) {
492 ret = cs_etm_decoder__create_etm_decoder(d_params,
493 &t_params[i],
494 decoder);
495 if (ret != 0)
496 goto err_free_decoder_tree;
497 }
498
499 return decoder;
500
501 err_free_decoder_tree:
502 ocsd_destroy_dcd_tree(decoder->dcd_tree);
503 err_free_decoder:
504 free(decoder);
505 return NULL;
506 }
507
cs_etm_decoder__process_data_block(struct cs_etm_decoder * decoder,u64 indx,const u8 * buf,size_t len,size_t * consumed)508 int cs_etm_decoder__process_data_block(struct cs_etm_decoder *decoder,
509 u64 indx, const u8 *buf,
510 size_t len, size_t *consumed)
511 {
512 int ret = 0;
513 ocsd_datapath_resp_t cur = OCSD_RESP_CONT;
514 ocsd_datapath_resp_t prev_return = decoder->prev_return;
515 size_t processed = 0;
516 u32 count;
517
518 while (processed < len) {
519 if (OCSD_DATA_RESP_IS_WAIT(prev_return)) {
520 cur = ocsd_dt_process_data(decoder->dcd_tree,
521 OCSD_OP_FLUSH,
522 0,
523 0,
524 NULL,
525 NULL);
526 } else if (OCSD_DATA_RESP_IS_CONT(prev_return)) {
527 cur = ocsd_dt_process_data(decoder->dcd_tree,
528 OCSD_OP_DATA,
529 indx + processed,
530 len - processed,
531 &buf[processed],
532 &count);
533 processed += count;
534 } else {
535 ret = -EINVAL;
536 break;
537 }
538
539 /*
540 * Return to the input code if the packet buffer is full.
541 * Flushing will get done once the packet buffer has been
542 * processed.
543 */
544 if (OCSD_DATA_RESP_IS_WAIT(cur))
545 break;
546
547 prev_return = cur;
548 }
549
550 decoder->prev_return = cur;
551 *consumed = processed;
552
553 return ret;
554 }
555
cs_etm_decoder__free(struct cs_etm_decoder * decoder)556 void cs_etm_decoder__free(struct cs_etm_decoder *decoder)
557 {
558 if (!decoder)
559 return;
560
561 ocsd_destroy_dcd_tree(decoder->dcd_tree);
562 decoder->dcd_tree = NULL;
563 free(decoder);
564 }
565