1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Copyright (c) 2012, The Linux Foundation. All rights reserved.
4 */
5
6 #include <linux/kernel.h>
7 #include <linux/init.h>
8 #include <linux/types.h>
9 #include <linux/device.h>
10 #include <linux/io.h>
11 #include <linux/idr.h>
12 #include <linux/err.h>
13 #include <linux/export.h>
14 #include <linux/slab.h>
15 #include <linux/stringhash.h>
16 #include <linux/mutex.h>
17 #include <linux/clk.h>
18 #include <linux/coresight.h>
19 #include <linux/of_platform.h>
20 #include <linux/delay.h>
21 #include <linux/pm_runtime.h>
22
23 #include "coresight-etm-perf.h"
24 #include "coresight-priv.h"
25 #include "coresight-syscfg.h"
26
27 static DEFINE_MUTEX(coresight_mutex);
28 static DEFINE_PER_CPU(struct coresight_device *, csdev_sink);
29
30 /*
31 * Use IDR to map the hash of the source's device name
32 * to the pointer of path for the source. The idr is for
33 * the sources which aren't associated with CPU.
34 */
35 static DEFINE_IDR(path_idr);
36
37 /**
38 * struct coresight_node - elements of a path, from source to sink
39 * @csdev: Address of an element.
40 * @link: hook to the list.
41 */
42 struct coresight_node {
43 struct coresight_device *csdev;
44 struct list_head link;
45 };
46
47 /*
48 * When operating Coresight drivers from the sysFS interface, only a single
49 * path can exist from a tracer (associated to a CPU) to a sink.
50 */
51 static DEFINE_PER_CPU(struct list_head *, tracer_path);
52
53 /*
54 * When losing synchronisation a new barrier packet needs to be inserted at the
55 * beginning of the data collected in a buffer. That way the decoder knows that
56 * it needs to look for another sync sequence.
57 */
58 const u32 coresight_barrier_pkt[4] = {0x7fffffff, 0x7fffffff, 0x7fffffff, 0x7fffffff};
59 EXPORT_SYMBOL_GPL(coresight_barrier_pkt);
60
61 static const struct cti_assoc_op *cti_assoc_ops;
62
coresight_simple_show_pair(struct device * _dev,struct device_attribute * attr,char * buf)63 ssize_t coresight_simple_show_pair(struct device *_dev,
64 struct device_attribute *attr, char *buf)
65 {
66 struct coresight_device *csdev = container_of(_dev, struct coresight_device, dev);
67 struct cs_pair_attribute *cs_attr = container_of(attr, struct cs_pair_attribute, attr);
68 u64 val;
69
70 pm_runtime_get_sync(_dev->parent);
71 val = csdev_access_relaxed_read_pair(&csdev->access, cs_attr->lo_off, cs_attr->hi_off);
72 pm_runtime_put_sync(_dev->parent);
73 return sysfs_emit(buf, "0x%llx\n", val);
74 }
75 EXPORT_SYMBOL_GPL(coresight_simple_show_pair);
76
coresight_simple_show32(struct device * _dev,struct device_attribute * attr,char * buf)77 ssize_t coresight_simple_show32(struct device *_dev,
78 struct device_attribute *attr, char *buf)
79 {
80 struct coresight_device *csdev = container_of(_dev, struct coresight_device, dev);
81 struct cs_off_attribute *cs_attr = container_of(attr, struct cs_off_attribute, attr);
82 u64 val;
83
84 pm_runtime_get_sync(_dev->parent);
85 val = csdev_access_relaxed_read32(&csdev->access, cs_attr->off);
86 pm_runtime_put_sync(_dev->parent);
87 return sysfs_emit(buf, "0x%llx\n", val);
88 }
89 EXPORT_SYMBOL_GPL(coresight_simple_show32);
90
coresight_set_cti_ops(const struct cti_assoc_op * cti_op)91 void coresight_set_cti_ops(const struct cti_assoc_op *cti_op)
92 {
93 cti_assoc_ops = cti_op;
94 }
95 EXPORT_SYMBOL_GPL(coresight_set_cti_ops);
96
coresight_remove_cti_ops(void)97 void coresight_remove_cti_ops(void)
98 {
99 cti_assoc_ops = NULL;
100 }
101 EXPORT_SYMBOL_GPL(coresight_remove_cti_ops);
102
coresight_set_percpu_sink(int cpu,struct coresight_device * csdev)103 void coresight_set_percpu_sink(int cpu, struct coresight_device *csdev)
104 {
105 per_cpu(csdev_sink, cpu) = csdev;
106 }
107 EXPORT_SYMBOL_GPL(coresight_set_percpu_sink);
108
coresight_get_percpu_sink(int cpu)109 struct coresight_device *coresight_get_percpu_sink(int cpu)
110 {
111 return per_cpu(csdev_sink, cpu);
112 }
113 EXPORT_SYMBOL_GPL(coresight_get_percpu_sink);
114
coresight_find_link_inport(struct coresight_device * csdev,struct coresight_device * parent)115 static int coresight_find_link_inport(struct coresight_device *csdev,
116 struct coresight_device *parent)
117 {
118 int i;
119 struct coresight_connection *conn;
120
121 for (i = 0; i < parent->pdata->nr_outport; i++) {
122 conn = &parent->pdata->conns[i];
123 if (conn->child_dev == csdev)
124 return conn->child_port;
125 }
126
127 dev_err(&csdev->dev, "couldn't find inport, parent: %s, child: %s\n",
128 dev_name(&parent->dev), dev_name(&csdev->dev));
129
130 return -ENODEV;
131 }
132
coresight_find_link_outport(struct coresight_device * csdev,struct coresight_device * child)133 static int coresight_find_link_outport(struct coresight_device *csdev,
134 struct coresight_device *child)
135 {
136 int i;
137 struct coresight_connection *conn;
138
139 for (i = 0; i < csdev->pdata->nr_outport; i++) {
140 conn = &csdev->pdata->conns[i];
141 if (conn->child_dev == child)
142 return conn->outport;
143 }
144
145 dev_err(&csdev->dev, "couldn't find outport, parent: %s, child: %s\n",
146 dev_name(&csdev->dev), dev_name(&child->dev));
147
148 return -ENODEV;
149 }
150
coresight_read_claim_tags(struct coresight_device * csdev)151 static inline u32 coresight_read_claim_tags(struct coresight_device *csdev)
152 {
153 return csdev_access_relaxed_read32(&csdev->access, CORESIGHT_CLAIMCLR);
154 }
155
coresight_is_claimed_self_hosted(struct coresight_device * csdev)156 static inline bool coresight_is_claimed_self_hosted(struct coresight_device *csdev)
157 {
158 return coresight_read_claim_tags(csdev) == CORESIGHT_CLAIM_SELF_HOSTED;
159 }
160
coresight_is_claimed_any(struct coresight_device * csdev)161 static inline bool coresight_is_claimed_any(struct coresight_device *csdev)
162 {
163 return coresight_read_claim_tags(csdev) != 0;
164 }
165
coresight_set_claim_tags(struct coresight_device * csdev)166 static inline void coresight_set_claim_tags(struct coresight_device *csdev)
167 {
168 csdev_access_relaxed_write32(&csdev->access, CORESIGHT_CLAIM_SELF_HOSTED,
169 CORESIGHT_CLAIMSET);
170 isb();
171 }
172
coresight_clear_claim_tags(struct coresight_device * csdev)173 static inline void coresight_clear_claim_tags(struct coresight_device *csdev)
174 {
175 csdev_access_relaxed_write32(&csdev->access, CORESIGHT_CLAIM_SELF_HOSTED,
176 CORESIGHT_CLAIMCLR);
177 isb();
178 }
179
180 /*
181 * coresight_claim_device_unlocked : Claim the device for self-hosted usage
182 * to prevent an external tool from touching this device. As per PSCI
183 * standards, section "Preserving the execution context" => "Debug and Trace
184 * save and Restore", DBGCLAIM[1] is reserved for Self-hosted debug/trace and
185 * DBGCLAIM[0] is reserved for external tools.
186 *
187 * Called with CS_UNLOCKed for the component.
188 * Returns : 0 on success
189 */
coresight_claim_device_unlocked(struct coresight_device * csdev)190 int coresight_claim_device_unlocked(struct coresight_device *csdev)
191 {
192 if (WARN_ON(!csdev))
193 return -EINVAL;
194
195 if (coresight_is_claimed_any(csdev))
196 return -EBUSY;
197
198 coresight_set_claim_tags(csdev);
199 if (coresight_is_claimed_self_hosted(csdev))
200 return 0;
201 /* There was a race setting the tags, clean up and fail */
202 coresight_clear_claim_tags(csdev);
203 return -EBUSY;
204 }
205 EXPORT_SYMBOL_GPL(coresight_claim_device_unlocked);
206
coresight_claim_device(struct coresight_device * csdev)207 int coresight_claim_device(struct coresight_device *csdev)
208 {
209 int rc;
210
211 if (WARN_ON(!csdev))
212 return -EINVAL;
213
214 CS_UNLOCK(csdev->access.base);
215 rc = coresight_claim_device_unlocked(csdev);
216 CS_LOCK(csdev->access.base);
217
218 return rc;
219 }
220 EXPORT_SYMBOL_GPL(coresight_claim_device);
221
222 /*
223 * coresight_disclaim_device_unlocked : Clear the claim tags for the device.
224 * Called with CS_UNLOCKed for the component.
225 */
coresight_disclaim_device_unlocked(struct coresight_device * csdev)226 void coresight_disclaim_device_unlocked(struct coresight_device *csdev)
227 {
228
229 if (WARN_ON(!csdev))
230 return;
231
232 if (coresight_is_claimed_self_hosted(csdev))
233 coresight_clear_claim_tags(csdev);
234 else
235 /*
236 * The external agent may have not honoured our claim
237 * and has manipulated it. Or something else has seriously
238 * gone wrong in our driver.
239 */
240 WARN_ON_ONCE(1);
241 }
242 EXPORT_SYMBOL_GPL(coresight_disclaim_device_unlocked);
243
coresight_disclaim_device(struct coresight_device * csdev)244 void coresight_disclaim_device(struct coresight_device *csdev)
245 {
246 if (WARN_ON(!csdev))
247 return;
248
249 CS_UNLOCK(csdev->access.base);
250 coresight_disclaim_device_unlocked(csdev);
251 CS_LOCK(csdev->access.base);
252 }
253 EXPORT_SYMBOL_GPL(coresight_disclaim_device);
254
255 /* enable or disable an associated CTI device of the supplied CS device */
256 static int
coresight_control_assoc_ectdev(struct coresight_device * csdev,bool enable)257 coresight_control_assoc_ectdev(struct coresight_device *csdev, bool enable)
258 {
259 int ect_ret = 0;
260 struct coresight_device *ect_csdev = csdev->ect_dev;
261 struct module *mod;
262
263 if (!ect_csdev)
264 return 0;
265 if ((!ect_ops(ect_csdev)->enable) || (!ect_ops(ect_csdev)->disable))
266 return 0;
267
268 mod = ect_csdev->dev.parent->driver->owner;
269 if (enable) {
270 if (try_module_get(mod)) {
271 ect_ret = ect_ops(ect_csdev)->enable(ect_csdev);
272 if (ect_ret) {
273 module_put(mod);
274 } else {
275 get_device(ect_csdev->dev.parent);
276 csdev->ect_enabled = true;
277 }
278 } else
279 ect_ret = -ENODEV;
280 } else {
281 if (csdev->ect_enabled) {
282 ect_ret = ect_ops(ect_csdev)->disable(ect_csdev);
283 put_device(ect_csdev->dev.parent);
284 module_put(mod);
285 csdev->ect_enabled = false;
286 }
287 }
288
289 /* output warning if ECT enable is preventing trace operation */
290 if (ect_ret)
291 dev_info(&csdev->dev, "Associated ECT device (%s) %s failed\n",
292 dev_name(&ect_csdev->dev),
293 enable ? "enable" : "disable");
294 return ect_ret;
295 }
296
297 /*
298 * Set the associated ect / cti device while holding the coresight_mutex
299 * to avoid a race with coresight_enable that may try to use this value.
300 */
coresight_set_assoc_ectdev_mutex(struct coresight_device * csdev,struct coresight_device * ect_csdev)301 void coresight_set_assoc_ectdev_mutex(struct coresight_device *csdev,
302 struct coresight_device *ect_csdev)
303 {
304 mutex_lock(&coresight_mutex);
305 csdev->ect_dev = ect_csdev;
306 mutex_unlock(&coresight_mutex);
307 }
308 EXPORT_SYMBOL_GPL(coresight_set_assoc_ectdev_mutex);
309
coresight_enable_sink(struct coresight_device * csdev,u32 mode,void * data)310 static int coresight_enable_sink(struct coresight_device *csdev,
311 u32 mode, void *data)
312 {
313 int ret;
314
315 /*
316 * We need to make sure the "new" session is compatible with the
317 * existing "mode" of operation.
318 */
319 if (!sink_ops(csdev)->enable)
320 return -EINVAL;
321
322 ret = coresight_control_assoc_ectdev(csdev, true);
323 if (ret)
324 return ret;
325 ret = sink_ops(csdev)->enable(csdev, mode, data);
326 if (ret) {
327 coresight_control_assoc_ectdev(csdev, false);
328 return ret;
329 }
330 csdev->enable = true;
331
332 return 0;
333 }
334
coresight_disable_sink(struct coresight_device * csdev)335 static void coresight_disable_sink(struct coresight_device *csdev)
336 {
337 int ret;
338
339 if (!sink_ops(csdev)->disable)
340 return;
341
342 ret = sink_ops(csdev)->disable(csdev);
343 if (ret)
344 return;
345 coresight_control_assoc_ectdev(csdev, false);
346 csdev->enable = false;
347 }
348
coresight_enable_link(struct coresight_device * csdev,struct coresight_device * parent,struct coresight_device * child)349 static int coresight_enable_link(struct coresight_device *csdev,
350 struct coresight_device *parent,
351 struct coresight_device *child)
352 {
353 int ret = 0;
354 int link_subtype;
355 int inport, outport;
356
357 if (!parent || !child)
358 return -EINVAL;
359
360 inport = coresight_find_link_inport(csdev, parent);
361 outport = coresight_find_link_outport(csdev, child);
362 link_subtype = csdev->subtype.link_subtype;
363
364 if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_MERG && inport < 0)
365 return inport;
366 if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_SPLIT && outport < 0)
367 return outport;
368
369 if (link_ops(csdev)->enable) {
370 ret = coresight_control_assoc_ectdev(csdev, true);
371 if (!ret) {
372 ret = link_ops(csdev)->enable(csdev, inport, outport);
373 if (ret)
374 coresight_control_assoc_ectdev(csdev, false);
375 }
376 }
377
378 if (!ret)
379 csdev->enable = true;
380
381 return ret;
382 }
383
coresight_disable_link(struct coresight_device * csdev,struct coresight_device * parent,struct coresight_device * child)384 static void coresight_disable_link(struct coresight_device *csdev,
385 struct coresight_device *parent,
386 struct coresight_device *child)
387 {
388 int i, nr_conns;
389 int link_subtype;
390 int inport, outport;
391
392 if (!parent || !child)
393 return;
394
395 inport = coresight_find_link_inport(csdev, parent);
396 outport = coresight_find_link_outport(csdev, child);
397 link_subtype = csdev->subtype.link_subtype;
398
399 if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_MERG) {
400 nr_conns = csdev->pdata->nr_inport;
401 } else if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_SPLIT) {
402 nr_conns = csdev->pdata->nr_outport;
403 } else {
404 nr_conns = 1;
405 }
406
407 if (link_ops(csdev)->disable) {
408 link_ops(csdev)->disable(csdev, inport, outport);
409 coresight_control_assoc_ectdev(csdev, false);
410 }
411
412 for (i = 0; i < nr_conns; i++)
413 if (atomic_read(&csdev->refcnt[i]) != 0)
414 return;
415
416 csdev->enable = false;
417 }
418
coresight_enable_source(struct coresight_device * csdev,u32 mode)419 static int coresight_enable_source(struct coresight_device *csdev, u32 mode)
420 {
421 int ret;
422
423 if (!csdev->enable) {
424 if (source_ops(csdev)->enable) {
425 ret = coresight_control_assoc_ectdev(csdev, true);
426 if (ret)
427 return ret;
428 ret = source_ops(csdev)->enable(csdev, NULL, mode);
429 if (ret) {
430 coresight_control_assoc_ectdev(csdev, false);
431 return ret;
432 }
433 }
434 csdev->enable = true;
435 }
436
437 atomic_inc(csdev->refcnt);
438
439 return 0;
440 }
441
442 /**
443 * coresight_disable_source - Drop the reference count by 1 and disable
444 * the device if there are no users left.
445 *
446 * @csdev: The coresight device to disable
447 *
448 * Returns true if the device has been disabled.
449 */
coresight_disable_source(struct coresight_device * csdev)450 static bool coresight_disable_source(struct coresight_device *csdev)
451 {
452 if (atomic_dec_return(csdev->refcnt) == 0) {
453 if (source_ops(csdev)->disable)
454 source_ops(csdev)->disable(csdev, NULL);
455 coresight_control_assoc_ectdev(csdev, false);
456 csdev->enable = false;
457 }
458 return !csdev->enable;
459 }
460
461 /*
462 * coresight_disable_path_from : Disable components in the given path beyond
463 * @nd in the list. If @nd is NULL, all the components, except the SOURCE are
464 * disabled.
465 */
coresight_disable_path_from(struct list_head * path,struct coresight_node * nd)466 static void coresight_disable_path_from(struct list_head *path,
467 struct coresight_node *nd)
468 {
469 u32 type;
470 struct coresight_device *csdev, *parent, *child;
471
472 if (!nd)
473 nd = list_first_entry(path, struct coresight_node, link);
474
475 list_for_each_entry_continue(nd, path, link) {
476 csdev = nd->csdev;
477 type = csdev->type;
478
479 /*
480 * ETF devices are tricky... They can be a link or a sink,
481 * depending on how they are configured. If an ETF has been
482 * "activated" it will be configured as a sink, otherwise
483 * go ahead with the link configuration.
484 */
485 if (type == CORESIGHT_DEV_TYPE_LINKSINK)
486 type = (csdev == coresight_get_sink(path)) ?
487 CORESIGHT_DEV_TYPE_SINK :
488 CORESIGHT_DEV_TYPE_LINK;
489
490 switch (type) {
491 case CORESIGHT_DEV_TYPE_SINK:
492 coresight_disable_sink(csdev);
493 break;
494 case CORESIGHT_DEV_TYPE_SOURCE:
495 /*
496 * We skip the first node in the path assuming that it
497 * is the source. So we don't expect a source device in
498 * the middle of a path.
499 */
500 WARN_ON(1);
501 break;
502 case CORESIGHT_DEV_TYPE_LINK:
503 parent = list_prev_entry(nd, link)->csdev;
504 child = list_next_entry(nd, link)->csdev;
505 coresight_disable_link(csdev, parent, child);
506 break;
507 default:
508 break;
509 }
510 }
511 }
512
coresight_disable_path(struct list_head * path)513 void coresight_disable_path(struct list_head *path)
514 {
515 coresight_disable_path_from(path, NULL);
516 }
517 EXPORT_SYMBOL_GPL(coresight_disable_path);
518
coresight_enable_path(struct list_head * path,u32 mode,void * sink_data)519 int coresight_enable_path(struct list_head *path, u32 mode, void *sink_data)
520 {
521
522 int ret = 0;
523 u32 type;
524 struct coresight_node *nd;
525 struct coresight_device *csdev, *parent, *child;
526
527 list_for_each_entry_reverse(nd, path, link) {
528 csdev = nd->csdev;
529 type = csdev->type;
530
531 /*
532 * ETF devices are tricky... They can be a link or a sink,
533 * depending on how they are configured. If an ETF has been
534 * "activated" it will be configured as a sink, otherwise
535 * go ahead with the link configuration.
536 */
537 if (type == CORESIGHT_DEV_TYPE_LINKSINK)
538 type = (csdev == coresight_get_sink(path)) ?
539 CORESIGHT_DEV_TYPE_SINK :
540 CORESIGHT_DEV_TYPE_LINK;
541
542 switch (type) {
543 case CORESIGHT_DEV_TYPE_SINK:
544 ret = coresight_enable_sink(csdev, mode, sink_data);
545 /*
546 * Sink is the first component turned on. If we
547 * failed to enable the sink, there are no components
548 * that need disabling. Disabling the path here
549 * would mean we could disrupt an existing session.
550 */
551 if (ret)
552 goto out;
553 break;
554 case CORESIGHT_DEV_TYPE_SOURCE:
555 /* sources are enabled from either sysFS or Perf */
556 break;
557 case CORESIGHT_DEV_TYPE_LINK:
558 parent = list_prev_entry(nd, link)->csdev;
559 child = list_next_entry(nd, link)->csdev;
560 ret = coresight_enable_link(csdev, parent, child);
561 if (ret)
562 goto err;
563 break;
564 default:
565 goto err;
566 }
567 }
568
569 out:
570 return ret;
571 err:
572 coresight_disable_path_from(path, nd);
573 goto out;
574 }
575
coresight_get_sink(struct list_head * path)576 struct coresight_device *coresight_get_sink(struct list_head *path)
577 {
578 struct coresight_device *csdev;
579
580 if (!path)
581 return NULL;
582
583 csdev = list_last_entry(path, struct coresight_node, link)->csdev;
584 if (csdev->type != CORESIGHT_DEV_TYPE_SINK &&
585 csdev->type != CORESIGHT_DEV_TYPE_LINKSINK)
586 return NULL;
587
588 return csdev;
589 }
590
591 static struct coresight_device *
coresight_find_enabled_sink(struct coresight_device * csdev)592 coresight_find_enabled_sink(struct coresight_device *csdev)
593 {
594 int i;
595 struct coresight_device *sink = NULL;
596
597 if ((csdev->type == CORESIGHT_DEV_TYPE_SINK ||
598 csdev->type == CORESIGHT_DEV_TYPE_LINKSINK) &&
599 csdev->activated)
600 return csdev;
601
602 /*
603 * Recursively explore each port found on this element.
604 */
605 for (i = 0; i < csdev->pdata->nr_outport; i++) {
606 struct coresight_device *child_dev;
607
608 child_dev = csdev->pdata->conns[i].child_dev;
609 if (child_dev)
610 sink = coresight_find_enabled_sink(child_dev);
611 if (sink)
612 return sink;
613 }
614
615 return NULL;
616 }
617
618 /**
619 * coresight_get_enabled_sink - returns the first enabled sink using
620 * connection based search starting from the source reference
621 *
622 * @source: Coresight source device reference
623 */
624 struct coresight_device *
coresight_get_enabled_sink(struct coresight_device * source)625 coresight_get_enabled_sink(struct coresight_device *source)
626 {
627 if (!source)
628 return NULL;
629
630 return coresight_find_enabled_sink(source);
631 }
632
coresight_sink_by_id(struct device * dev,const void * data)633 static int coresight_sink_by_id(struct device *dev, const void *data)
634 {
635 struct coresight_device *csdev = to_coresight_device(dev);
636 unsigned long hash;
637
638 if (csdev->type == CORESIGHT_DEV_TYPE_SINK ||
639 csdev->type == CORESIGHT_DEV_TYPE_LINKSINK) {
640
641 if (!csdev->ea)
642 return 0;
643 /*
644 * See function etm_perf_add_symlink_sink() to know where
645 * this comes from.
646 */
647 hash = (unsigned long)csdev->ea->var;
648
649 if ((u32)hash == *(u32 *)data)
650 return 1;
651 }
652
653 return 0;
654 }
655
656 /**
657 * coresight_get_sink_by_id - returns the sink that matches the id
658 * @id: Id of the sink to match
659 *
660 * The name of a sink is unique, whether it is found on the AMBA bus or
661 * otherwise. As such the hash of that name can easily be used to identify
662 * a sink.
663 */
coresight_get_sink_by_id(u32 id)664 struct coresight_device *coresight_get_sink_by_id(u32 id)
665 {
666 struct device *dev = NULL;
667
668 dev = bus_find_device(&coresight_bustype, NULL, &id,
669 coresight_sink_by_id);
670
671 return dev ? to_coresight_device(dev) : NULL;
672 }
673
674 /**
675 * coresight_get_ref- Helper function to increase reference count to module
676 * and device.
677 *
678 * @csdev: The coresight device to get a reference on.
679 *
680 * Return true in successful case and power up the device.
681 * Return false when failed to get reference of module.
682 */
coresight_get_ref(struct coresight_device * csdev)683 static inline bool coresight_get_ref(struct coresight_device *csdev)
684 {
685 struct device *dev = csdev->dev.parent;
686
687 /* Make sure the driver can't be removed */
688 if (!try_module_get(dev->driver->owner))
689 return false;
690 /* Make sure the device can't go away */
691 get_device(dev);
692 pm_runtime_get_sync(dev);
693 return true;
694 }
695
696 /**
697 * coresight_put_ref- Helper function to decrease reference count to module
698 * and device. Power off the device.
699 *
700 * @csdev: The coresight device to decrement a reference from.
701 */
coresight_put_ref(struct coresight_device * csdev)702 static inline void coresight_put_ref(struct coresight_device *csdev)
703 {
704 struct device *dev = csdev->dev.parent;
705
706 pm_runtime_put(dev);
707 put_device(dev);
708 module_put(dev->driver->owner);
709 }
710
711 /*
712 * coresight_grab_device - Power up this device and any of the helper
713 * devices connected to it for trace operation. Since the helper devices
714 * don't appear on the trace path, they should be handled along with the
715 * master device.
716 */
coresight_grab_device(struct coresight_device * csdev)717 static int coresight_grab_device(struct coresight_device *csdev)
718 {
719 int i;
720
721 for (i = 0; i < csdev->pdata->nr_outport; i++) {
722 struct coresight_device *child;
723
724 child = csdev->pdata->conns[i].child_dev;
725 if (child && child->type == CORESIGHT_DEV_TYPE_HELPER)
726 if (!coresight_get_ref(child))
727 goto err;
728 }
729 if (coresight_get_ref(csdev))
730 return 0;
731 err:
732 for (i--; i >= 0; i--) {
733 struct coresight_device *child;
734
735 child = csdev->pdata->conns[i].child_dev;
736 if (child && child->type == CORESIGHT_DEV_TYPE_HELPER)
737 coresight_put_ref(child);
738 }
739 return -ENODEV;
740 }
741
742 /*
743 * coresight_drop_device - Release this device and any of the helper
744 * devices connected to it.
745 */
coresight_drop_device(struct coresight_device * csdev)746 static void coresight_drop_device(struct coresight_device *csdev)
747 {
748 int i;
749
750 coresight_put_ref(csdev);
751 for (i = 0; i < csdev->pdata->nr_outport; i++) {
752 struct coresight_device *child;
753
754 child = csdev->pdata->conns[i].child_dev;
755 if (child && child->type == CORESIGHT_DEV_TYPE_HELPER)
756 coresight_put_ref(child);
757 }
758 }
759
760 /**
761 * _coresight_build_path - recursively build a path from a @csdev to a sink.
762 * @csdev: The device to start from.
763 * @sink: The final sink we want in this path.
764 * @path: The list to add devices to.
765 *
766 * The tree of Coresight device is traversed until an activated sink is
767 * found. From there the sink is added to the list along with all the
768 * devices that led to that point - the end result is a list from source
769 * to sink. In that list the source is the first device and the sink the
770 * last one.
771 */
_coresight_build_path(struct coresight_device * csdev,struct coresight_device * sink,struct list_head * path)772 static int _coresight_build_path(struct coresight_device *csdev,
773 struct coresight_device *sink,
774 struct list_head *path)
775 {
776 int i, ret;
777 bool found = false;
778 struct coresight_node *node;
779
780 /* An activated sink has been found. Enqueue the element */
781 if (csdev == sink)
782 goto out;
783
784 if (coresight_is_percpu_source(csdev) && coresight_is_percpu_sink(sink) &&
785 sink == per_cpu(csdev_sink, source_ops(csdev)->cpu_id(csdev))) {
786 if (_coresight_build_path(sink, sink, path) == 0) {
787 found = true;
788 goto out;
789 }
790 }
791
792 /* Not a sink - recursively explore each port found on this element */
793 for (i = 0; i < csdev->pdata->nr_outport; i++) {
794 struct coresight_device *child_dev;
795
796 child_dev = csdev->pdata->conns[i].child_dev;
797 if (child_dev &&
798 _coresight_build_path(child_dev, sink, path) == 0) {
799 found = true;
800 break;
801 }
802 }
803
804 if (!found)
805 return -ENODEV;
806
807 out:
808 /*
809 * A path from this element to a sink has been found. The elements
810 * leading to the sink are already enqueued, all that is left to do
811 * is tell the PM runtime core we need this element and add a node
812 * for it.
813 */
814 ret = coresight_grab_device(csdev);
815 if (ret)
816 return ret;
817
818 node = kzalloc(sizeof(struct coresight_node), GFP_KERNEL);
819 if (!node)
820 return -ENOMEM;
821
822 node->csdev = csdev;
823 list_add(&node->link, path);
824
825 return 0;
826 }
827
coresight_build_path(struct coresight_device * source,struct coresight_device * sink)828 struct list_head *coresight_build_path(struct coresight_device *source,
829 struct coresight_device *sink)
830 {
831 struct list_head *path;
832 int rc;
833
834 if (!sink)
835 return ERR_PTR(-EINVAL);
836
837 path = kzalloc(sizeof(struct list_head), GFP_KERNEL);
838 if (!path)
839 return ERR_PTR(-ENOMEM);
840
841 INIT_LIST_HEAD(path);
842
843 rc = _coresight_build_path(source, sink, path);
844 if (rc) {
845 kfree(path);
846 return ERR_PTR(rc);
847 }
848
849 return path;
850 }
851
852 /**
853 * coresight_release_path - release a previously built path.
854 * @path: the path to release.
855 *
856 * Go through all the elements of a path and 1) removed it from the list and
857 * 2) free the memory allocated for each node.
858 */
coresight_release_path(struct list_head * path)859 void coresight_release_path(struct list_head *path)
860 {
861 struct coresight_device *csdev;
862 struct coresight_node *nd, *next;
863
864 list_for_each_entry_safe(nd, next, path, link) {
865 csdev = nd->csdev;
866
867 coresight_drop_device(csdev);
868 list_del(&nd->link);
869 kfree(nd);
870 }
871
872 kfree(path);
873 }
874
875 /* return true if the device is a suitable type for a default sink */
coresight_is_def_sink_type(struct coresight_device * csdev)876 static inline bool coresight_is_def_sink_type(struct coresight_device *csdev)
877 {
878 /* sink & correct subtype */
879 if (((csdev->type == CORESIGHT_DEV_TYPE_SINK) ||
880 (csdev->type == CORESIGHT_DEV_TYPE_LINKSINK)) &&
881 (csdev->subtype.sink_subtype >= CORESIGHT_DEV_SUBTYPE_SINK_BUFFER))
882 return true;
883 return false;
884 }
885
886 /**
887 * coresight_select_best_sink - return the best sink for use as default from
888 * the two provided.
889 *
890 * @sink: current best sink.
891 * @depth: search depth where current sink was found.
892 * @new_sink: new sink for comparison with current sink.
893 * @new_depth: search depth where new sink was found.
894 *
895 * Sinks prioritised according to coresight_dev_subtype_sink, with only
896 * subtypes CORESIGHT_DEV_SUBTYPE_SINK_BUFFER or higher being used.
897 *
898 * Where two sinks of equal priority are found, the sink closest to the
899 * source is used (smallest search depth).
900 *
901 * return @new_sink & update @depth if better than @sink, else return @sink.
902 */
903 static struct coresight_device *
coresight_select_best_sink(struct coresight_device * sink,int * depth,struct coresight_device * new_sink,int new_depth)904 coresight_select_best_sink(struct coresight_device *sink, int *depth,
905 struct coresight_device *new_sink, int new_depth)
906 {
907 bool update = false;
908
909 if (!sink) {
910 /* first found at this level */
911 update = true;
912 } else if (new_sink->subtype.sink_subtype >
913 sink->subtype.sink_subtype) {
914 /* found better sink */
915 update = true;
916 } else if ((new_sink->subtype.sink_subtype ==
917 sink->subtype.sink_subtype) &&
918 (*depth > new_depth)) {
919 /* found same but closer sink */
920 update = true;
921 }
922
923 if (update)
924 *depth = new_depth;
925 return update ? new_sink : sink;
926 }
927
928 /**
929 * coresight_find_sink - recursive function to walk trace connections from
930 * source to find a suitable default sink.
931 *
932 * @csdev: source / current device to check.
933 * @depth: [in] search depth of calling dev, [out] depth of found sink.
934 *
935 * This will walk the connection path from a source (ETM) till a suitable
936 * sink is encountered and return that sink to the original caller.
937 *
938 * If current device is a plain sink return that & depth, otherwise recursively
939 * call child connections looking for a sink. Select best possible using
940 * coresight_select_best_sink.
941 *
942 * return best sink found, or NULL if not found at this node or child nodes.
943 */
944 static struct coresight_device *
coresight_find_sink(struct coresight_device * csdev,int * depth)945 coresight_find_sink(struct coresight_device *csdev, int *depth)
946 {
947 int i, curr_depth = *depth + 1, found_depth = 0;
948 struct coresight_device *found_sink = NULL;
949
950 if (coresight_is_def_sink_type(csdev)) {
951 found_depth = curr_depth;
952 found_sink = csdev;
953 if (csdev->type == CORESIGHT_DEV_TYPE_SINK)
954 goto return_def_sink;
955 /* look past LINKSINK for something better */
956 }
957
958 /*
959 * Not a sink we want - or possible child sink may be better.
960 * recursively explore each port found on this element.
961 */
962 for (i = 0; i < csdev->pdata->nr_outport; i++) {
963 struct coresight_device *child_dev, *sink = NULL;
964 int child_depth = curr_depth;
965
966 child_dev = csdev->pdata->conns[i].child_dev;
967 if (child_dev)
968 sink = coresight_find_sink(child_dev, &child_depth);
969
970 if (sink)
971 found_sink = coresight_select_best_sink(found_sink,
972 &found_depth,
973 sink,
974 child_depth);
975 }
976
977 return_def_sink:
978 /* return found sink and depth */
979 if (found_sink)
980 *depth = found_depth;
981 return found_sink;
982 }
983
984 /**
985 * coresight_find_default_sink: Find a sink suitable for use as a
986 * default sink.
987 *
988 * @csdev: starting source to find a connected sink.
989 *
990 * Walks connections graph looking for a suitable sink to enable for the
991 * supplied source. Uses CoreSight device subtypes and distance from source
992 * to select the best sink.
993 *
994 * If a sink is found, then the default sink for this device is set and
995 * will be automatically used in future.
996 *
997 * Used in cases where the CoreSight user (perf / sysfs) has not selected a
998 * sink.
999 */
1000 struct coresight_device *
coresight_find_default_sink(struct coresight_device * csdev)1001 coresight_find_default_sink(struct coresight_device *csdev)
1002 {
1003 int depth = 0;
1004
1005 /* look for a default sink if we have not found for this device */
1006 if (!csdev->def_sink) {
1007 if (coresight_is_percpu_source(csdev))
1008 csdev->def_sink = per_cpu(csdev_sink, source_ops(csdev)->cpu_id(csdev));
1009 if (!csdev->def_sink)
1010 csdev->def_sink = coresight_find_sink(csdev, &depth);
1011 }
1012 return csdev->def_sink;
1013 }
1014
coresight_remove_sink_ref(struct device * dev,void * data)1015 static int coresight_remove_sink_ref(struct device *dev, void *data)
1016 {
1017 struct coresight_device *sink = data;
1018 struct coresight_device *source = to_coresight_device(dev);
1019
1020 if (source->def_sink == sink)
1021 source->def_sink = NULL;
1022 return 0;
1023 }
1024
1025 /**
1026 * coresight_clear_default_sink: Remove all default sink references to the
1027 * supplied sink.
1028 *
1029 * If supplied device is a sink, then check all the bus devices and clear
1030 * out all the references to this sink from the coresight_device def_sink
1031 * parameter.
1032 *
1033 * @csdev: coresight sink - remove references to this from all sources.
1034 */
coresight_clear_default_sink(struct coresight_device * csdev)1035 static void coresight_clear_default_sink(struct coresight_device *csdev)
1036 {
1037 if ((csdev->type == CORESIGHT_DEV_TYPE_SINK) ||
1038 (csdev->type == CORESIGHT_DEV_TYPE_LINKSINK)) {
1039 bus_for_each_dev(&coresight_bustype, NULL, csdev,
1040 coresight_remove_sink_ref);
1041 }
1042 }
1043
1044 /** coresight_validate_source - make sure a source has the right credentials
1045 * @csdev: the device structure for a source.
1046 * @function: the function this was called from.
1047 *
1048 * Assumes the coresight_mutex is held.
1049 */
coresight_validate_source(struct coresight_device * csdev,const char * function)1050 static int coresight_validate_source(struct coresight_device *csdev,
1051 const char *function)
1052 {
1053 u32 type, subtype;
1054
1055 type = csdev->type;
1056 subtype = csdev->subtype.source_subtype;
1057
1058 if (type != CORESIGHT_DEV_TYPE_SOURCE) {
1059 dev_err(&csdev->dev, "wrong device type in %s\n", function);
1060 return -EINVAL;
1061 }
1062
1063 if (subtype != CORESIGHT_DEV_SUBTYPE_SOURCE_PROC &&
1064 subtype != CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE &&
1065 subtype != CORESIGHT_DEV_SUBTYPE_SOURCE_OTHERS) {
1066 dev_err(&csdev->dev, "wrong device subtype in %s\n", function);
1067 return -EINVAL;
1068 }
1069
1070 return 0;
1071 }
1072
coresight_enable(struct coresight_device * csdev)1073 int coresight_enable(struct coresight_device *csdev)
1074 {
1075 int cpu, ret = 0;
1076 struct coresight_device *sink;
1077 struct list_head *path;
1078 enum coresight_dev_subtype_source subtype;
1079 u32 hash;
1080
1081 subtype = csdev->subtype.source_subtype;
1082
1083 mutex_lock(&coresight_mutex);
1084
1085 ret = coresight_validate_source(csdev, __func__);
1086 if (ret)
1087 goto out;
1088
1089 if (csdev->enable) {
1090 /*
1091 * There could be multiple applications driving the software
1092 * source. So keep the refcount for each such user when the
1093 * source is already enabled.
1094 */
1095 if (subtype == CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE)
1096 atomic_inc(csdev->refcnt);
1097 goto out;
1098 }
1099
1100 sink = coresight_get_enabled_sink(csdev);
1101 if (!sink) {
1102 ret = -EINVAL;
1103 goto out;
1104 }
1105
1106 path = coresight_build_path(csdev, sink);
1107 if (IS_ERR(path)) {
1108 pr_err("building path(s) failed\n");
1109 ret = PTR_ERR(path);
1110 goto out;
1111 }
1112
1113 ret = coresight_enable_path(path, CS_MODE_SYSFS, NULL);
1114 if (ret)
1115 goto err_path;
1116
1117 ret = coresight_enable_source(csdev, CS_MODE_SYSFS);
1118 if (ret)
1119 goto err_source;
1120
1121 switch (subtype) {
1122 case CORESIGHT_DEV_SUBTYPE_SOURCE_PROC:
1123 /*
1124 * When working from sysFS it is important to keep track
1125 * of the paths that were created so that they can be
1126 * undone in 'coresight_disable()'. Since there can only
1127 * be a single session per tracer (when working from sysFS)
1128 * a per-cpu variable will do just fine.
1129 */
1130 cpu = source_ops(csdev)->cpu_id(csdev);
1131 per_cpu(tracer_path, cpu) = path;
1132 break;
1133 case CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE:
1134 case CORESIGHT_DEV_SUBTYPE_SOURCE_OTHERS:
1135 /*
1136 * Use the hash of source's device name as ID
1137 * and map the ID to the pointer of the path.
1138 */
1139 hash = hashlen_hash(hashlen_string(NULL, dev_name(&csdev->dev)));
1140 ret = idr_alloc_u32(&path_idr, path, &hash, hash, GFP_KERNEL);
1141 if (ret)
1142 goto err_source;
1143 break;
1144 default:
1145 /* We can't be here */
1146 break;
1147 }
1148
1149 out:
1150 mutex_unlock(&coresight_mutex);
1151 return ret;
1152
1153 err_source:
1154 coresight_disable_path(path);
1155
1156 err_path:
1157 coresight_release_path(path);
1158 goto out;
1159 }
1160 EXPORT_SYMBOL_GPL(coresight_enable);
1161
coresight_disable(struct coresight_device * csdev)1162 void coresight_disable(struct coresight_device *csdev)
1163 {
1164 int cpu, ret;
1165 struct list_head *path = NULL;
1166 u32 hash;
1167
1168 mutex_lock(&coresight_mutex);
1169
1170 ret = coresight_validate_source(csdev, __func__);
1171 if (ret)
1172 goto out;
1173
1174 if (!csdev->enable || !coresight_disable_source(csdev))
1175 goto out;
1176
1177 switch (csdev->subtype.source_subtype) {
1178 case CORESIGHT_DEV_SUBTYPE_SOURCE_PROC:
1179 cpu = source_ops(csdev)->cpu_id(csdev);
1180 path = per_cpu(tracer_path, cpu);
1181 per_cpu(tracer_path, cpu) = NULL;
1182 break;
1183 case CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE:
1184 case CORESIGHT_DEV_SUBTYPE_SOURCE_OTHERS:
1185 hash = hashlen_hash(hashlen_string(NULL, dev_name(&csdev->dev)));
1186 /* Find the path by the hash. */
1187 path = idr_find(&path_idr, hash);
1188 if (path == NULL) {
1189 pr_err("Path is not found for %s\n", dev_name(&csdev->dev));
1190 goto out;
1191 }
1192 idr_remove(&path_idr, hash);
1193 break;
1194 default:
1195 /* We can't be here */
1196 break;
1197 }
1198
1199 coresight_disable_path(path);
1200 coresight_release_path(path);
1201
1202 out:
1203 mutex_unlock(&coresight_mutex);
1204 }
1205 EXPORT_SYMBOL_GPL(coresight_disable);
1206
enable_sink_show(struct device * dev,struct device_attribute * attr,char * buf)1207 static ssize_t enable_sink_show(struct device *dev,
1208 struct device_attribute *attr, char *buf)
1209 {
1210 struct coresight_device *csdev = to_coresight_device(dev);
1211
1212 return scnprintf(buf, PAGE_SIZE, "%u\n", csdev->activated);
1213 }
1214
enable_sink_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)1215 static ssize_t enable_sink_store(struct device *dev,
1216 struct device_attribute *attr,
1217 const char *buf, size_t size)
1218 {
1219 int ret;
1220 unsigned long val;
1221 struct coresight_device *csdev = to_coresight_device(dev);
1222
1223 ret = kstrtoul(buf, 10, &val);
1224 if (ret)
1225 return ret;
1226
1227 if (val)
1228 csdev->activated = true;
1229 else
1230 csdev->activated = false;
1231
1232 return size;
1233
1234 }
1235 static DEVICE_ATTR_RW(enable_sink);
1236
enable_source_show(struct device * dev,struct device_attribute * attr,char * buf)1237 static ssize_t enable_source_show(struct device *dev,
1238 struct device_attribute *attr, char *buf)
1239 {
1240 struct coresight_device *csdev = to_coresight_device(dev);
1241
1242 return scnprintf(buf, PAGE_SIZE, "%u\n", csdev->enable);
1243 }
1244
enable_source_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)1245 static ssize_t enable_source_store(struct device *dev,
1246 struct device_attribute *attr,
1247 const char *buf, size_t size)
1248 {
1249 int ret = 0;
1250 unsigned long val;
1251 struct coresight_device *csdev = to_coresight_device(dev);
1252
1253 ret = kstrtoul(buf, 10, &val);
1254 if (ret)
1255 return ret;
1256
1257 if (val) {
1258 ret = coresight_enable(csdev);
1259 if (ret)
1260 return ret;
1261 } else {
1262 coresight_disable(csdev);
1263 }
1264
1265 return size;
1266 }
1267 static DEVICE_ATTR_RW(enable_source);
1268
1269 static struct attribute *coresight_sink_attrs[] = {
1270 &dev_attr_enable_sink.attr,
1271 NULL,
1272 };
1273 ATTRIBUTE_GROUPS(coresight_sink);
1274
1275 static struct attribute *coresight_source_attrs[] = {
1276 &dev_attr_enable_source.attr,
1277 NULL,
1278 };
1279 ATTRIBUTE_GROUPS(coresight_source);
1280
1281 static struct device_type coresight_dev_type[] = {
1282 {
1283 .name = "sink",
1284 .groups = coresight_sink_groups,
1285 },
1286 {
1287 .name = "link",
1288 },
1289 {
1290 .name = "linksink",
1291 .groups = coresight_sink_groups,
1292 },
1293 {
1294 .name = "source",
1295 .groups = coresight_source_groups,
1296 },
1297 {
1298 .name = "helper",
1299 },
1300 {
1301 .name = "ect",
1302 },
1303 };
1304
coresight_device_release(struct device * dev)1305 static void coresight_device_release(struct device *dev)
1306 {
1307 struct coresight_device *csdev = to_coresight_device(dev);
1308
1309 fwnode_handle_put(csdev->dev.fwnode);
1310 kfree(csdev->refcnt);
1311 kfree(csdev);
1312 }
1313
coresight_orphan_match(struct device * dev,void * data)1314 static int coresight_orphan_match(struct device *dev, void *data)
1315 {
1316 int i, ret = 0;
1317 bool still_orphan = false;
1318 struct coresight_device *csdev, *i_csdev;
1319 struct coresight_connection *conn;
1320
1321 csdev = data;
1322 i_csdev = to_coresight_device(dev);
1323
1324 /* No need to check oneself */
1325 if (csdev == i_csdev)
1326 return 0;
1327
1328 /* Move on to another component if no connection is orphan */
1329 if (!i_csdev->orphan)
1330 return 0;
1331 /*
1332 * Circle throuch all the connection of that component. If we find
1333 * an orphan connection whose name matches @csdev, link it.
1334 */
1335 for (i = 0; i < i_csdev->pdata->nr_outport; i++) {
1336 conn = &i_csdev->pdata->conns[i];
1337
1338 /* Skip the port if FW doesn't describe it */
1339 if (!conn->child_fwnode)
1340 continue;
1341 /* We have found at least one orphan connection */
1342 if (conn->child_dev == NULL) {
1343 /* Does it match this newly added device? */
1344 if (conn->child_fwnode == csdev->dev.fwnode) {
1345 ret = coresight_make_links(i_csdev,
1346 conn, csdev);
1347 if (ret)
1348 return ret;
1349 } else {
1350 /* This component still has an orphan */
1351 still_orphan = true;
1352 }
1353 }
1354 }
1355
1356 i_csdev->orphan = still_orphan;
1357
1358 /*
1359 * Returning '0' in case we didn't encounter any error,
1360 * ensures that all known component on the bus will be checked.
1361 */
1362 return 0;
1363 }
1364
coresight_fixup_orphan_conns(struct coresight_device * csdev)1365 static int coresight_fixup_orphan_conns(struct coresight_device *csdev)
1366 {
1367 return bus_for_each_dev(&coresight_bustype, NULL,
1368 csdev, coresight_orphan_match);
1369 }
1370
1371
coresight_fixup_device_conns(struct coresight_device * csdev)1372 static int coresight_fixup_device_conns(struct coresight_device *csdev)
1373 {
1374 int i, ret = 0;
1375
1376 for (i = 0; i < csdev->pdata->nr_outport; i++) {
1377 struct coresight_connection *conn = &csdev->pdata->conns[i];
1378
1379 if (!conn->child_fwnode)
1380 continue;
1381 conn->child_dev =
1382 coresight_find_csdev_by_fwnode(conn->child_fwnode);
1383 if (conn->child_dev && conn->child_dev->has_conns_grp) {
1384 ret = coresight_make_links(csdev, conn,
1385 conn->child_dev);
1386 if (ret)
1387 break;
1388 } else {
1389 csdev->orphan = true;
1390 }
1391 }
1392
1393 return ret;
1394 }
1395
coresight_remove_match(struct device * dev,void * data)1396 static int coresight_remove_match(struct device *dev, void *data)
1397 {
1398 int i;
1399 struct coresight_device *csdev, *iterator;
1400 struct coresight_connection *conn;
1401
1402 csdev = data;
1403 iterator = to_coresight_device(dev);
1404
1405 /* No need to check oneself */
1406 if (csdev == iterator)
1407 return 0;
1408
1409 /*
1410 * Circle throuch all the connection of that component. If we find
1411 * a connection whose name matches @csdev, remove it.
1412 */
1413 for (i = 0; i < iterator->pdata->nr_outport; i++) {
1414 conn = &iterator->pdata->conns[i];
1415
1416 if (conn->child_dev == NULL || conn->child_fwnode == NULL)
1417 continue;
1418
1419 if (csdev->dev.fwnode == conn->child_fwnode) {
1420 iterator->orphan = true;
1421 coresight_remove_links(iterator, conn);
1422 /*
1423 * Drop the reference to the handle for the remote
1424 * device acquired in parsing the connections from
1425 * platform data.
1426 */
1427 fwnode_handle_put(conn->child_fwnode);
1428 conn->child_fwnode = NULL;
1429 /* No need to continue */
1430 break;
1431 }
1432 }
1433
1434 /*
1435 * Returning '0' ensures that all known component on the
1436 * bus will be checked.
1437 */
1438 return 0;
1439 }
1440
1441 /*
1442 * coresight_remove_conns - Remove references to this given devices
1443 * from the connections of other devices.
1444 */
coresight_remove_conns(struct coresight_device * csdev)1445 static void coresight_remove_conns(struct coresight_device *csdev)
1446 {
1447 /*
1448 * Another device will point to this device only if there is
1449 * an output port connected to this one. i.e, if the device
1450 * doesn't have at least one input port, there is no point
1451 * in searching all the devices.
1452 */
1453 if (csdev->pdata->nr_inport)
1454 bus_for_each_dev(&coresight_bustype, NULL,
1455 csdev, coresight_remove_match);
1456 }
1457
1458 /**
1459 * coresight_timeout - loop until a bit has changed to a specific register
1460 * state.
1461 * @csa: coresight device access for the device
1462 * @offset: Offset of the register from the base of the device.
1463 * @position: the position of the bit of interest.
1464 * @value: the value the bit should have.
1465 *
1466 * Return: 0 as soon as the bit has taken the desired state or -EAGAIN if
1467 * TIMEOUT_US has elapsed, which ever happens first.
1468 */
coresight_timeout(struct csdev_access * csa,u32 offset,int position,int value)1469 int coresight_timeout(struct csdev_access *csa, u32 offset,
1470 int position, int value)
1471 {
1472 int i;
1473 u32 val;
1474
1475 for (i = TIMEOUT_US; i > 0; i--) {
1476 val = csdev_access_read32(csa, offset);
1477 /* waiting on the bit to go from 0 to 1 */
1478 if (value) {
1479 if (val & BIT(position))
1480 return 0;
1481 /* waiting on the bit to go from 1 to 0 */
1482 } else {
1483 if (!(val & BIT(position)))
1484 return 0;
1485 }
1486
1487 /*
1488 * Delay is arbitrary - the specification doesn't say how long
1489 * we are expected to wait. Extra check required to make sure
1490 * we don't wait needlessly on the last iteration.
1491 */
1492 if (i - 1)
1493 udelay(1);
1494 }
1495
1496 return -EAGAIN;
1497 }
1498 EXPORT_SYMBOL_GPL(coresight_timeout);
1499
coresight_relaxed_read32(struct coresight_device * csdev,u32 offset)1500 u32 coresight_relaxed_read32(struct coresight_device *csdev, u32 offset)
1501 {
1502 return csdev_access_relaxed_read32(&csdev->access, offset);
1503 }
1504
coresight_read32(struct coresight_device * csdev,u32 offset)1505 u32 coresight_read32(struct coresight_device *csdev, u32 offset)
1506 {
1507 return csdev_access_read32(&csdev->access, offset);
1508 }
1509
coresight_relaxed_write32(struct coresight_device * csdev,u32 val,u32 offset)1510 void coresight_relaxed_write32(struct coresight_device *csdev,
1511 u32 val, u32 offset)
1512 {
1513 csdev_access_relaxed_write32(&csdev->access, val, offset);
1514 }
1515
coresight_write32(struct coresight_device * csdev,u32 val,u32 offset)1516 void coresight_write32(struct coresight_device *csdev, u32 val, u32 offset)
1517 {
1518 csdev_access_write32(&csdev->access, val, offset);
1519 }
1520
coresight_relaxed_read64(struct coresight_device * csdev,u32 offset)1521 u64 coresight_relaxed_read64(struct coresight_device *csdev, u32 offset)
1522 {
1523 return csdev_access_relaxed_read64(&csdev->access, offset);
1524 }
1525
coresight_read64(struct coresight_device * csdev,u32 offset)1526 u64 coresight_read64(struct coresight_device *csdev, u32 offset)
1527 {
1528 return csdev_access_read64(&csdev->access, offset);
1529 }
1530
coresight_relaxed_write64(struct coresight_device * csdev,u64 val,u32 offset)1531 void coresight_relaxed_write64(struct coresight_device *csdev,
1532 u64 val, u32 offset)
1533 {
1534 csdev_access_relaxed_write64(&csdev->access, val, offset);
1535 }
1536
coresight_write64(struct coresight_device * csdev,u64 val,u32 offset)1537 void coresight_write64(struct coresight_device *csdev, u64 val, u32 offset)
1538 {
1539 csdev_access_write64(&csdev->access, val, offset);
1540 }
1541
1542 /*
1543 * coresight_release_platform_data: Release references to the devices connected
1544 * to the output port of this device.
1545 */
coresight_release_platform_data(struct coresight_device * csdev,struct coresight_platform_data * pdata)1546 void coresight_release_platform_data(struct coresight_device *csdev,
1547 struct coresight_platform_data *pdata)
1548 {
1549 int i;
1550 struct coresight_connection *conns = pdata->conns;
1551
1552 for (i = 0; i < pdata->nr_outport; i++) {
1553 /* If we have made the links, remove them now */
1554 if (csdev && conns[i].child_dev)
1555 coresight_remove_links(csdev, &conns[i]);
1556 /*
1557 * Drop the refcount and clear the handle as this device
1558 * is going away
1559 */
1560 if (conns[i].child_fwnode) {
1561 fwnode_handle_put(conns[i].child_fwnode);
1562 pdata->conns[i].child_fwnode = NULL;
1563 }
1564 }
1565 if (csdev)
1566 coresight_remove_conns_sysfs_group(csdev);
1567 }
1568
coresight_register(struct coresight_desc * desc)1569 struct coresight_device *coresight_register(struct coresight_desc *desc)
1570 {
1571 int ret;
1572 int link_subtype;
1573 int nr_refcnts = 1;
1574 atomic_t *refcnts = NULL;
1575 struct coresight_device *csdev;
1576 bool registered = false;
1577
1578 csdev = kzalloc(sizeof(*csdev), GFP_KERNEL);
1579 if (!csdev) {
1580 ret = -ENOMEM;
1581 goto err_out;
1582 }
1583
1584 if (desc->type == CORESIGHT_DEV_TYPE_LINK ||
1585 desc->type == CORESIGHT_DEV_TYPE_LINKSINK) {
1586 link_subtype = desc->subtype.link_subtype;
1587
1588 if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_MERG)
1589 nr_refcnts = desc->pdata->nr_inport;
1590 else if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_SPLIT)
1591 nr_refcnts = desc->pdata->nr_outport;
1592 }
1593
1594 refcnts = kcalloc(nr_refcnts, sizeof(*refcnts), GFP_KERNEL);
1595 if (!refcnts) {
1596 ret = -ENOMEM;
1597 kfree(csdev);
1598 goto err_out;
1599 }
1600
1601 csdev->refcnt = refcnts;
1602
1603 csdev->pdata = desc->pdata;
1604
1605 csdev->type = desc->type;
1606 csdev->subtype = desc->subtype;
1607 csdev->ops = desc->ops;
1608 csdev->access = desc->access;
1609 csdev->orphan = false;
1610
1611 csdev->dev.type = &coresight_dev_type[desc->type];
1612 csdev->dev.groups = desc->groups;
1613 csdev->dev.parent = desc->dev;
1614 csdev->dev.release = coresight_device_release;
1615 csdev->dev.bus = &coresight_bustype;
1616 /*
1617 * Hold the reference to our parent device. This will be
1618 * dropped only in coresight_device_release().
1619 */
1620 csdev->dev.fwnode = fwnode_handle_get(dev_fwnode(desc->dev));
1621 dev_set_name(&csdev->dev, "%s", desc->name);
1622
1623 /*
1624 * Make sure the device registration and the connection fixup
1625 * are synchronised, so that we don't see uninitialised devices
1626 * on the coresight bus while trying to resolve the connections.
1627 */
1628 mutex_lock(&coresight_mutex);
1629
1630 ret = device_register(&csdev->dev);
1631 if (ret) {
1632 put_device(&csdev->dev);
1633 /*
1634 * All resources are free'd explicitly via
1635 * coresight_device_release(), triggered from put_device().
1636 */
1637 goto out_unlock;
1638 }
1639
1640 if (csdev->type == CORESIGHT_DEV_TYPE_SINK ||
1641 csdev->type == CORESIGHT_DEV_TYPE_LINKSINK) {
1642 ret = etm_perf_add_symlink_sink(csdev);
1643
1644 if (ret) {
1645 device_unregister(&csdev->dev);
1646 /*
1647 * As with the above, all resources are free'd
1648 * explicitly via coresight_device_release() triggered
1649 * from put_device(), which is in turn called from
1650 * function device_unregister().
1651 */
1652 goto out_unlock;
1653 }
1654 }
1655 /* Device is now registered */
1656 registered = true;
1657
1658 ret = coresight_create_conns_sysfs_group(csdev);
1659 if (!ret)
1660 ret = coresight_fixup_device_conns(csdev);
1661 if (!ret)
1662 ret = coresight_fixup_orphan_conns(csdev);
1663
1664 out_unlock:
1665 mutex_unlock(&coresight_mutex);
1666 /* Success */
1667 if (!ret) {
1668 if (cti_assoc_ops && cti_assoc_ops->add)
1669 cti_assoc_ops->add(csdev);
1670 return csdev;
1671 }
1672
1673 /* Unregister the device if needed */
1674 if (registered) {
1675 coresight_unregister(csdev);
1676 return ERR_PTR(ret);
1677 }
1678
1679 err_out:
1680 /* Cleanup the connection information */
1681 coresight_release_platform_data(NULL, desc->pdata);
1682 return ERR_PTR(ret);
1683 }
1684 EXPORT_SYMBOL_GPL(coresight_register);
1685
coresight_unregister(struct coresight_device * csdev)1686 void coresight_unregister(struct coresight_device *csdev)
1687 {
1688 etm_perf_del_symlink_sink(csdev);
1689 /* Remove references of that device in the topology */
1690 if (cti_assoc_ops && cti_assoc_ops->remove)
1691 cti_assoc_ops->remove(csdev);
1692 coresight_remove_conns(csdev);
1693 coresight_clear_default_sink(csdev);
1694 coresight_release_platform_data(csdev, csdev->pdata);
1695 device_unregister(&csdev->dev);
1696 }
1697 EXPORT_SYMBOL_GPL(coresight_unregister);
1698
1699
1700 /*
1701 * coresight_search_device_idx - Search the fwnode handle of a device
1702 * in the given dev_idx list. Must be called with the coresight_mutex held.
1703 *
1704 * Returns the index of the entry, when found. Otherwise, -ENOENT.
1705 */
coresight_search_device_idx(struct coresight_dev_list * dict,struct fwnode_handle * fwnode)1706 static inline int coresight_search_device_idx(struct coresight_dev_list *dict,
1707 struct fwnode_handle *fwnode)
1708 {
1709 int i;
1710
1711 for (i = 0; i < dict->nr_idx; i++)
1712 if (dict->fwnode_list[i] == fwnode)
1713 return i;
1714 return -ENOENT;
1715 }
1716
coresight_loses_context_with_cpu(struct device * dev)1717 bool coresight_loses_context_with_cpu(struct device *dev)
1718 {
1719 return fwnode_property_present(dev_fwnode(dev),
1720 "arm,coresight-loses-context-with-cpu");
1721 }
1722 EXPORT_SYMBOL_GPL(coresight_loses_context_with_cpu);
1723
1724 /*
1725 * coresight_alloc_device_name - Get an index for a given device in the
1726 * device index list specific to a driver. An index is allocated for a
1727 * device and is tracked with the fwnode_handle to prevent allocating
1728 * duplicate indices for the same device (e.g, if we defer probing of
1729 * a device due to dependencies), in case the index is requested again.
1730 */
coresight_alloc_device_name(struct coresight_dev_list * dict,struct device * dev)1731 char *coresight_alloc_device_name(struct coresight_dev_list *dict,
1732 struct device *dev)
1733 {
1734 int idx;
1735 char *name = NULL;
1736 struct fwnode_handle **list;
1737
1738 mutex_lock(&coresight_mutex);
1739
1740 idx = coresight_search_device_idx(dict, dev_fwnode(dev));
1741 if (idx < 0) {
1742 /* Make space for the new entry */
1743 idx = dict->nr_idx;
1744 list = krealloc_array(dict->fwnode_list,
1745 idx + 1, sizeof(*dict->fwnode_list),
1746 GFP_KERNEL);
1747 if (ZERO_OR_NULL_PTR(list)) {
1748 idx = -ENOMEM;
1749 goto done;
1750 }
1751
1752 list[idx] = dev_fwnode(dev);
1753 dict->fwnode_list = list;
1754 dict->nr_idx = idx + 1;
1755 }
1756
1757 name = devm_kasprintf(dev, GFP_KERNEL, "%s%d", dict->pfx, idx);
1758 done:
1759 mutex_unlock(&coresight_mutex);
1760 return name;
1761 }
1762 EXPORT_SYMBOL_GPL(coresight_alloc_device_name);
1763
1764 struct bus_type coresight_bustype = {
1765 .name = "coresight",
1766 };
1767
coresight_init(void)1768 static int __init coresight_init(void)
1769 {
1770 int ret;
1771
1772 ret = bus_register(&coresight_bustype);
1773 if (ret)
1774 return ret;
1775
1776 ret = etm_perf_init();
1777 if (ret)
1778 goto exit_bus_unregister;
1779
1780 /* initialise the coresight syscfg API */
1781 ret = cscfg_init();
1782 if (!ret)
1783 return 0;
1784
1785 etm_perf_exit();
1786 exit_bus_unregister:
1787 bus_unregister(&coresight_bustype);
1788 return ret;
1789 }
1790
coresight_exit(void)1791 static void __exit coresight_exit(void)
1792 {
1793 cscfg_exit();
1794 etm_perf_exit();
1795 bus_unregister(&coresight_bustype);
1796 }
1797
1798 module_init(coresight_init);
1799 module_exit(coresight_exit);
1800
1801 MODULE_LICENSE("GPL v2");
1802 MODULE_AUTHOR("Pratik Patel <pratikp@codeaurora.org>");
1803 MODULE_AUTHOR("Mathieu Poirier <mathieu.poirier@linaro.org>");
1804 MODULE_DESCRIPTION("Arm CoreSight tracer driver");
1805