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/err.h>
12 #include <linux/export.h>
13 #include <linux/slab.h>
14 #include <linux/mutex.h>
15 #include <linux/clk.h>
16 #include <linux/coresight.h>
17 #include <linux/of_platform.h>
18 #include <linux/delay.h>
19 #include <linux/pm_runtime.h>
20
21 #include "coresight-priv.h"
22
23 static DEFINE_MUTEX(coresight_mutex);
24
25 /**
26 * struct coresight_node - elements of a path, from source to sink
27 * @csdev: Address of an element.
28 * @link: hook to the list.
29 */
30 struct coresight_node {
31 struct coresight_device *csdev;
32 struct list_head link;
33 };
34
35 /*
36 * When operating Coresight drivers from the sysFS interface, only a single
37 * path can exist from a tracer (associated to a CPU) to a sink.
38 */
39 static DEFINE_PER_CPU(struct list_head *, tracer_path);
40
41 /*
42 * As of this writing only a single STM can be found in CS topologies. Since
43 * there is no way to know if we'll ever see more and what kind of
44 * configuration they will enact, for the time being only define a single path
45 * for STM.
46 */
47 static struct list_head *stm_path;
48
49 /*
50 * When losing synchronisation a new barrier packet needs to be inserted at the
51 * beginning of the data collected in a buffer. That way the decoder knows that
52 * it needs to look for another sync sequence.
53 */
54 const u32 barrier_pkt[4] = {0x7fffffff, 0x7fffffff, 0x7fffffff, 0x7fffffff};
55
coresight_id_match(struct device * dev,void * data)56 static int coresight_id_match(struct device *dev, void *data)
57 {
58 int trace_id, i_trace_id;
59 struct coresight_device *csdev, *i_csdev;
60
61 csdev = data;
62 i_csdev = to_coresight_device(dev);
63
64 /*
65 * No need to care about oneself and components that are not
66 * sources or not enabled
67 */
68 if (i_csdev == csdev || !i_csdev->enable ||
69 i_csdev->type != CORESIGHT_DEV_TYPE_SOURCE)
70 return 0;
71
72 /* Get the source ID for both compoment */
73 trace_id = source_ops(csdev)->trace_id(csdev);
74 i_trace_id = source_ops(i_csdev)->trace_id(i_csdev);
75
76 /* All you need is one */
77 if (trace_id == i_trace_id)
78 return 1;
79
80 return 0;
81 }
82
coresight_source_is_unique(struct coresight_device * csdev)83 static int coresight_source_is_unique(struct coresight_device *csdev)
84 {
85 int trace_id = source_ops(csdev)->trace_id(csdev);
86
87 /* this shouldn't happen */
88 if (trace_id < 0)
89 return 0;
90
91 return !bus_for_each_dev(&coresight_bustype, NULL,
92 csdev, coresight_id_match);
93 }
94
coresight_find_link_inport(struct coresight_device * csdev,struct coresight_device * parent)95 static int coresight_find_link_inport(struct coresight_device *csdev,
96 struct coresight_device *parent)
97 {
98 int i;
99 struct coresight_connection *conn;
100
101 for (i = 0; i < parent->nr_outport; i++) {
102 conn = &parent->conns[i];
103 if (conn->child_dev == csdev)
104 return conn->child_port;
105 }
106
107 dev_err(&csdev->dev, "couldn't find inport, parent: %s, child: %s\n",
108 dev_name(&parent->dev), dev_name(&csdev->dev));
109
110 return -ENODEV;
111 }
112
coresight_find_link_outport(struct coresight_device * csdev,struct coresight_device * child)113 static int coresight_find_link_outport(struct coresight_device *csdev,
114 struct coresight_device *child)
115 {
116 int i;
117 struct coresight_connection *conn;
118
119 for (i = 0; i < csdev->nr_outport; i++) {
120 conn = &csdev->conns[i];
121 if (conn->child_dev == child)
122 return conn->outport;
123 }
124
125 dev_err(&csdev->dev, "couldn't find outport, parent: %s, child: %s\n",
126 dev_name(&csdev->dev), dev_name(&child->dev));
127
128 return -ENODEV;
129 }
130
coresight_enable_sink(struct coresight_device * csdev,u32 mode)131 static int coresight_enable_sink(struct coresight_device *csdev, u32 mode)
132 {
133 int ret;
134
135 if (!csdev->enable) {
136 if (sink_ops(csdev)->enable) {
137 ret = sink_ops(csdev)->enable(csdev, mode);
138 if (ret)
139 return ret;
140 }
141 csdev->enable = true;
142 }
143
144 atomic_inc(csdev->refcnt);
145
146 return 0;
147 }
148
coresight_disable_sink(struct coresight_device * csdev)149 static void coresight_disable_sink(struct coresight_device *csdev)
150 {
151 if (atomic_dec_return(csdev->refcnt) == 0) {
152 if (sink_ops(csdev)->disable) {
153 sink_ops(csdev)->disable(csdev);
154 csdev->enable = false;
155 }
156 }
157 }
158
coresight_enable_link(struct coresight_device * csdev,struct coresight_device * parent,struct coresight_device * child)159 static int coresight_enable_link(struct coresight_device *csdev,
160 struct coresight_device *parent,
161 struct coresight_device *child)
162 {
163 int ret;
164 int link_subtype;
165 int refport, inport, outport;
166
167 if (!parent || !child)
168 return -EINVAL;
169
170 inport = coresight_find_link_inport(csdev, parent);
171 outport = coresight_find_link_outport(csdev, child);
172 link_subtype = csdev->subtype.link_subtype;
173
174 if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_MERG)
175 refport = inport;
176 else if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_SPLIT)
177 refport = outport;
178 else
179 refport = 0;
180
181 if (refport < 0)
182 return refport;
183
184 if (atomic_inc_return(&csdev->refcnt[refport]) == 1) {
185 if (link_ops(csdev)->enable) {
186 ret = link_ops(csdev)->enable(csdev, inport, outport);
187 if (ret)
188 return ret;
189 }
190 }
191
192 csdev->enable = true;
193
194 return 0;
195 }
196
coresight_disable_link(struct coresight_device * csdev,struct coresight_device * parent,struct coresight_device * child)197 static void coresight_disable_link(struct coresight_device *csdev,
198 struct coresight_device *parent,
199 struct coresight_device *child)
200 {
201 int i, nr_conns;
202 int link_subtype;
203 int refport, inport, outport;
204
205 if (!parent || !child)
206 return;
207
208 inport = coresight_find_link_inport(csdev, parent);
209 outport = coresight_find_link_outport(csdev, child);
210 link_subtype = csdev->subtype.link_subtype;
211
212 if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_MERG) {
213 refport = inport;
214 nr_conns = csdev->nr_inport;
215 } else if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_SPLIT) {
216 refport = outport;
217 nr_conns = csdev->nr_outport;
218 } else {
219 refport = 0;
220 nr_conns = 1;
221 }
222
223 if (atomic_dec_return(&csdev->refcnt[refport]) == 0) {
224 if (link_ops(csdev)->disable)
225 link_ops(csdev)->disable(csdev, inport, outport);
226 }
227
228 for (i = 0; i < nr_conns; i++)
229 if (atomic_read(&csdev->refcnt[i]) != 0)
230 return;
231
232 csdev->enable = false;
233 }
234
coresight_enable_source(struct coresight_device * csdev,u32 mode)235 static int coresight_enable_source(struct coresight_device *csdev, u32 mode)
236 {
237 int ret;
238
239 if (!coresight_source_is_unique(csdev)) {
240 dev_warn(&csdev->dev, "traceID %d not unique\n",
241 source_ops(csdev)->trace_id(csdev));
242 return -EINVAL;
243 }
244
245 if (!csdev->enable) {
246 if (source_ops(csdev)->enable) {
247 ret = source_ops(csdev)->enable(csdev, NULL, mode);
248 if (ret)
249 return ret;
250 }
251 csdev->enable = true;
252 }
253
254 atomic_inc(csdev->refcnt);
255
256 return 0;
257 }
258
259 /**
260 * coresight_disable_source - Drop the reference count by 1 and disable
261 * the device if there are no users left.
262 *
263 * @csdev - The coresight device to disable
264 *
265 * Returns true if the device has been disabled.
266 */
coresight_disable_source(struct coresight_device * csdev)267 static bool coresight_disable_source(struct coresight_device *csdev)
268 {
269 if (atomic_dec_return(csdev->refcnt) == 0) {
270 if (source_ops(csdev)->disable)
271 source_ops(csdev)->disable(csdev, NULL);
272 csdev->enable = false;
273 }
274 return !csdev->enable;
275 }
276
coresight_disable_path(struct list_head * path)277 void coresight_disable_path(struct list_head *path)
278 {
279 u32 type;
280 struct coresight_node *nd;
281 struct coresight_device *csdev, *parent, *child;
282
283 list_for_each_entry(nd, path, link) {
284 csdev = nd->csdev;
285 type = csdev->type;
286
287 /*
288 * ETF devices are tricky... They can be a link or a sink,
289 * depending on how they are configured. If an ETF has been
290 * "activated" it will be configured as a sink, otherwise
291 * go ahead with the link configuration.
292 */
293 if (type == CORESIGHT_DEV_TYPE_LINKSINK)
294 type = (csdev == coresight_get_sink(path)) ?
295 CORESIGHT_DEV_TYPE_SINK :
296 CORESIGHT_DEV_TYPE_LINK;
297
298 switch (type) {
299 case CORESIGHT_DEV_TYPE_SINK:
300 coresight_disable_sink(csdev);
301 break;
302 case CORESIGHT_DEV_TYPE_SOURCE:
303 /* sources are disabled from either sysFS or Perf */
304 break;
305 case CORESIGHT_DEV_TYPE_LINK:
306 parent = list_prev_entry(nd, link)->csdev;
307 child = list_next_entry(nd, link)->csdev;
308 coresight_disable_link(csdev, parent, child);
309 break;
310 default:
311 break;
312 }
313 }
314 }
315
coresight_enable_path(struct list_head * path,u32 mode)316 int coresight_enable_path(struct list_head *path, u32 mode)
317 {
318
319 int ret = 0;
320 u32 type;
321 struct coresight_node *nd;
322 struct coresight_device *csdev, *parent, *child;
323
324 list_for_each_entry_reverse(nd, path, link) {
325 csdev = nd->csdev;
326 type = csdev->type;
327
328 /*
329 * ETF devices are tricky... They can be a link or a sink,
330 * depending on how they are configured. If an ETF has been
331 * "activated" it will be configured as a sink, otherwise
332 * go ahead with the link configuration.
333 */
334 if (type == CORESIGHT_DEV_TYPE_LINKSINK)
335 type = (csdev == coresight_get_sink(path)) ?
336 CORESIGHT_DEV_TYPE_SINK :
337 CORESIGHT_DEV_TYPE_LINK;
338
339 switch (type) {
340 case CORESIGHT_DEV_TYPE_SINK:
341 ret = coresight_enable_sink(csdev, mode);
342 if (ret)
343 goto err;
344 break;
345 case CORESIGHT_DEV_TYPE_SOURCE:
346 /* sources are enabled from either sysFS or Perf */
347 break;
348 case CORESIGHT_DEV_TYPE_LINK:
349 parent = list_prev_entry(nd, link)->csdev;
350 child = list_next_entry(nd, link)->csdev;
351 ret = coresight_enable_link(csdev, parent, child);
352 if (ret)
353 goto err;
354 break;
355 default:
356 goto err;
357 }
358 }
359
360 out:
361 return ret;
362 err:
363 coresight_disable_path(path);
364 goto out;
365 }
366
coresight_get_sink(struct list_head * path)367 struct coresight_device *coresight_get_sink(struct list_head *path)
368 {
369 struct coresight_device *csdev;
370
371 if (!path)
372 return NULL;
373
374 csdev = list_last_entry(path, struct coresight_node, link)->csdev;
375 if (csdev->type != CORESIGHT_DEV_TYPE_SINK &&
376 csdev->type != CORESIGHT_DEV_TYPE_LINKSINK)
377 return NULL;
378
379 return csdev;
380 }
381
coresight_enabled_sink(struct device * dev,void * data)382 static int coresight_enabled_sink(struct device *dev, void *data)
383 {
384 bool *reset = data;
385 struct coresight_device *csdev = to_coresight_device(dev);
386
387 if ((csdev->type == CORESIGHT_DEV_TYPE_SINK ||
388 csdev->type == CORESIGHT_DEV_TYPE_LINKSINK) &&
389 csdev->activated) {
390 /*
391 * Now that we have a handle on the sink for this session,
392 * disable the sysFS "enable_sink" flag so that possible
393 * concurrent perf session that wish to use another sink don't
394 * trip on it. Doing so has no ramification for the current
395 * session.
396 */
397 if (*reset)
398 csdev->activated = false;
399
400 return 1;
401 }
402
403 return 0;
404 }
405
406 /**
407 * coresight_get_enabled_sink - returns the first enabled sink found on the bus
408 * @deactivate: Whether the 'enable_sink' flag should be reset
409 *
410 * When operated from perf the deactivate parameter should be set to 'true'.
411 * That way the "enabled_sink" flag of the sink that was selected can be reset,
412 * allowing for other concurrent perf sessions to choose a different sink.
413 *
414 * When operated from sysFS users have full control and as such the deactivate
415 * parameter should be set to 'false', hence mandating users to explicitly
416 * clear the flag.
417 */
coresight_get_enabled_sink(bool deactivate)418 struct coresight_device *coresight_get_enabled_sink(bool deactivate)
419 {
420 struct device *dev = NULL;
421
422 dev = bus_find_device(&coresight_bustype, NULL, &deactivate,
423 coresight_enabled_sink);
424
425 return dev ? to_coresight_device(dev) : NULL;
426 }
427
428 /*
429 * coresight_grab_device - Power up this device and any of the helper
430 * devices connected to it for trace operation. Since the helper devices
431 * don't appear on the trace path, they should be handled along with the
432 * the master device.
433 */
coresight_grab_device(struct coresight_device * csdev)434 static void coresight_grab_device(struct coresight_device *csdev)
435 {
436 int i;
437
438 for (i = 0; i < csdev->nr_outport; i++) {
439 struct coresight_device *child = csdev->conns[i].child_dev;
440
441 if (child && child->type == CORESIGHT_DEV_TYPE_HELPER)
442 pm_runtime_get_sync(child->dev.parent);
443 }
444 pm_runtime_get_sync(csdev->dev.parent);
445 }
446
447 /*
448 * coresight_drop_device - Release this device and any of the helper
449 * devices connected to it.
450 */
coresight_drop_device(struct coresight_device * csdev)451 static void coresight_drop_device(struct coresight_device *csdev)
452 {
453 int i;
454
455 pm_runtime_put(csdev->dev.parent);
456 for (i = 0; i < csdev->nr_outport; i++) {
457 struct coresight_device *child = csdev->conns[i].child_dev;
458
459 if (child && child->type == CORESIGHT_DEV_TYPE_HELPER)
460 pm_runtime_put(child->dev.parent);
461 }
462 }
463
464 /**
465 * _coresight_build_path - recursively build a path from a @csdev to a sink.
466 * @csdev: The device to start from.
467 * @path: The list to add devices to.
468 *
469 * The tree of Coresight device is traversed until an activated sink is
470 * found. From there the sink is added to the list along with all the
471 * devices that led to that point - the end result is a list from source
472 * to sink. In that list the source is the first device and the sink the
473 * last one.
474 */
_coresight_build_path(struct coresight_device * csdev,struct coresight_device * sink,struct list_head * path)475 static int _coresight_build_path(struct coresight_device *csdev,
476 struct coresight_device *sink,
477 struct list_head *path)
478 {
479 int i;
480 bool found = false;
481 struct coresight_node *node;
482
483 /* An activated sink has been found. Enqueue the element */
484 if (csdev == sink)
485 goto out;
486
487 /* Not a sink - recursively explore each port found on this element */
488 for (i = 0; i < csdev->nr_outport; i++) {
489 struct coresight_device *child_dev = csdev->conns[i].child_dev;
490
491 if (child_dev &&
492 _coresight_build_path(child_dev, sink, path) == 0) {
493 found = true;
494 break;
495 }
496 }
497
498 if (!found)
499 return -ENODEV;
500
501 out:
502 /*
503 * A path from this element to a sink has been found. The elements
504 * leading to the sink are already enqueued, all that is left to do
505 * is tell the PM runtime core we need this element and add a node
506 * for it.
507 */
508 node = kzalloc(sizeof(struct coresight_node), GFP_KERNEL);
509 if (!node)
510 return -ENOMEM;
511
512 coresight_grab_device(csdev);
513 node->csdev = csdev;
514 list_add(&node->link, path);
515
516 return 0;
517 }
518
coresight_build_path(struct coresight_device * source,struct coresight_device * sink)519 struct list_head *coresight_build_path(struct coresight_device *source,
520 struct coresight_device *sink)
521 {
522 struct list_head *path;
523 int rc;
524
525 if (!sink)
526 return ERR_PTR(-EINVAL);
527
528 path = kzalloc(sizeof(struct list_head), GFP_KERNEL);
529 if (!path)
530 return ERR_PTR(-ENOMEM);
531
532 INIT_LIST_HEAD(path);
533
534 rc = _coresight_build_path(source, sink, path);
535 if (rc) {
536 kfree(path);
537 return ERR_PTR(rc);
538 }
539
540 return path;
541 }
542
543 /**
544 * coresight_release_path - release a previously built path.
545 * @path: the path to release.
546 *
547 * Go through all the elements of a path and 1) removed it from the list and
548 * 2) free the memory allocated for each node.
549 */
coresight_release_path(struct list_head * path)550 void coresight_release_path(struct list_head *path)
551 {
552 struct coresight_device *csdev;
553 struct coresight_node *nd, *next;
554
555 list_for_each_entry_safe(nd, next, path, link) {
556 csdev = nd->csdev;
557
558 coresight_drop_device(csdev);
559 list_del(&nd->link);
560 kfree(nd);
561 }
562
563 kfree(path);
564 path = NULL;
565 }
566
567 /** coresight_validate_source - make sure a source has the right credentials
568 * @csdev: the device structure for a source.
569 * @function: the function this was called from.
570 *
571 * Assumes the coresight_mutex is held.
572 */
coresight_validate_source(struct coresight_device * csdev,const char * function)573 static int coresight_validate_source(struct coresight_device *csdev,
574 const char *function)
575 {
576 u32 type, subtype;
577
578 type = csdev->type;
579 subtype = csdev->subtype.source_subtype;
580
581 if (type != CORESIGHT_DEV_TYPE_SOURCE) {
582 dev_err(&csdev->dev, "wrong device type in %s\n", function);
583 return -EINVAL;
584 }
585
586 if (subtype != CORESIGHT_DEV_SUBTYPE_SOURCE_PROC &&
587 subtype != CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE) {
588 dev_err(&csdev->dev, "wrong device subtype in %s\n", function);
589 return -EINVAL;
590 }
591
592 return 0;
593 }
594
coresight_enable(struct coresight_device * csdev)595 int coresight_enable(struct coresight_device *csdev)
596 {
597 int cpu, ret = 0;
598 struct coresight_device *sink;
599 struct list_head *path;
600 enum coresight_dev_subtype_source subtype;
601
602 subtype = csdev->subtype.source_subtype;
603
604 mutex_lock(&coresight_mutex);
605
606 ret = coresight_validate_source(csdev, __func__);
607 if (ret)
608 goto out;
609
610 if (csdev->enable) {
611 /*
612 * There could be multiple applications driving the software
613 * source. So keep the refcount for each such user when the
614 * source is already enabled.
615 */
616 if (subtype == CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE)
617 atomic_inc(csdev->refcnt);
618 goto out;
619 }
620
621 /*
622 * Search for a valid sink for this session but don't reset the
623 * "enable_sink" flag in sysFS. Users get to do that explicitly.
624 */
625 sink = coresight_get_enabled_sink(false);
626 if (!sink) {
627 ret = -EINVAL;
628 goto out;
629 }
630
631 path = coresight_build_path(csdev, sink);
632 if (IS_ERR(path)) {
633 pr_err("building path(s) failed\n");
634 ret = PTR_ERR(path);
635 goto out;
636 }
637
638 ret = coresight_enable_path(path, CS_MODE_SYSFS);
639 if (ret)
640 goto err_path;
641
642 ret = coresight_enable_source(csdev, CS_MODE_SYSFS);
643 if (ret)
644 goto err_source;
645
646 switch (subtype) {
647 case CORESIGHT_DEV_SUBTYPE_SOURCE_PROC:
648 /*
649 * When working from sysFS it is important to keep track
650 * of the paths that were created so that they can be
651 * undone in 'coresight_disable()'. Since there can only
652 * be a single session per tracer (when working from sysFS)
653 * a per-cpu variable will do just fine.
654 */
655 cpu = source_ops(csdev)->cpu_id(csdev);
656 per_cpu(tracer_path, cpu) = path;
657 break;
658 case CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE:
659 stm_path = path;
660 break;
661 default:
662 /* We can't be here */
663 break;
664 }
665
666 out:
667 mutex_unlock(&coresight_mutex);
668 return ret;
669
670 err_source:
671 coresight_disable_path(path);
672
673 err_path:
674 coresight_release_path(path);
675 goto out;
676 }
677 EXPORT_SYMBOL_GPL(coresight_enable);
678
coresight_disable(struct coresight_device * csdev)679 void coresight_disable(struct coresight_device *csdev)
680 {
681 int cpu, ret;
682 struct list_head *path = NULL;
683
684 mutex_lock(&coresight_mutex);
685
686 ret = coresight_validate_source(csdev, __func__);
687 if (ret)
688 goto out;
689
690 if (!csdev->enable || !coresight_disable_source(csdev))
691 goto out;
692
693 switch (csdev->subtype.source_subtype) {
694 case CORESIGHT_DEV_SUBTYPE_SOURCE_PROC:
695 cpu = source_ops(csdev)->cpu_id(csdev);
696 path = per_cpu(tracer_path, cpu);
697 per_cpu(tracer_path, cpu) = NULL;
698 break;
699 case CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE:
700 path = stm_path;
701 stm_path = NULL;
702 break;
703 default:
704 /* We can't be here */
705 break;
706 }
707
708 coresight_disable_path(path);
709 coresight_release_path(path);
710
711 out:
712 mutex_unlock(&coresight_mutex);
713 }
714 EXPORT_SYMBOL_GPL(coresight_disable);
715
enable_sink_show(struct device * dev,struct device_attribute * attr,char * buf)716 static ssize_t enable_sink_show(struct device *dev,
717 struct device_attribute *attr, char *buf)
718 {
719 struct coresight_device *csdev = to_coresight_device(dev);
720
721 return scnprintf(buf, PAGE_SIZE, "%u\n", csdev->activated);
722 }
723
enable_sink_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)724 static ssize_t enable_sink_store(struct device *dev,
725 struct device_attribute *attr,
726 const char *buf, size_t size)
727 {
728 int ret;
729 unsigned long val;
730 struct coresight_device *csdev = to_coresight_device(dev);
731
732 ret = kstrtoul(buf, 10, &val);
733 if (ret)
734 return ret;
735
736 if (val)
737 csdev->activated = true;
738 else
739 csdev->activated = false;
740
741 return size;
742
743 }
744 static DEVICE_ATTR_RW(enable_sink);
745
enable_source_show(struct device * dev,struct device_attribute * attr,char * buf)746 static ssize_t enable_source_show(struct device *dev,
747 struct device_attribute *attr, char *buf)
748 {
749 struct coresight_device *csdev = to_coresight_device(dev);
750
751 return scnprintf(buf, PAGE_SIZE, "%u\n", csdev->enable);
752 }
753
enable_source_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)754 static ssize_t enable_source_store(struct device *dev,
755 struct device_attribute *attr,
756 const char *buf, size_t size)
757 {
758 int ret = 0;
759 unsigned long val;
760 struct coresight_device *csdev = to_coresight_device(dev);
761
762 ret = kstrtoul(buf, 10, &val);
763 if (ret)
764 return ret;
765
766 if (val) {
767 ret = coresight_enable(csdev);
768 if (ret)
769 return ret;
770 } else {
771 coresight_disable(csdev);
772 }
773
774 return size;
775 }
776 static DEVICE_ATTR_RW(enable_source);
777
778 static struct attribute *coresight_sink_attrs[] = {
779 &dev_attr_enable_sink.attr,
780 NULL,
781 };
782 ATTRIBUTE_GROUPS(coresight_sink);
783
784 static struct attribute *coresight_source_attrs[] = {
785 &dev_attr_enable_source.attr,
786 NULL,
787 };
788 ATTRIBUTE_GROUPS(coresight_source);
789
790 static struct device_type coresight_dev_type[] = {
791 {
792 .name = "none",
793 },
794 {
795 .name = "sink",
796 .groups = coresight_sink_groups,
797 },
798 {
799 .name = "link",
800 },
801 {
802 .name = "linksink",
803 .groups = coresight_sink_groups,
804 },
805 {
806 .name = "source",
807 .groups = coresight_source_groups,
808 },
809 {
810 .name = "helper",
811 },
812 };
813
coresight_device_release(struct device * dev)814 static void coresight_device_release(struct device *dev)
815 {
816 struct coresight_device *csdev = to_coresight_device(dev);
817
818 kfree(csdev->conns);
819 kfree(csdev->refcnt);
820 kfree(csdev);
821 }
822
coresight_orphan_match(struct device * dev,void * data)823 static int coresight_orphan_match(struct device *dev, void *data)
824 {
825 int i;
826 bool still_orphan = false;
827 struct coresight_device *csdev, *i_csdev;
828 struct coresight_connection *conn;
829
830 csdev = data;
831 i_csdev = to_coresight_device(dev);
832
833 /* No need to check oneself */
834 if (csdev == i_csdev)
835 return 0;
836
837 /* Move on to another component if no connection is orphan */
838 if (!i_csdev->orphan)
839 return 0;
840 /*
841 * Circle throuch all the connection of that component. If we find
842 * an orphan connection whose name matches @csdev, link it.
843 */
844 for (i = 0; i < i_csdev->nr_outport; i++) {
845 conn = &i_csdev->conns[i];
846
847 /* We have found at least one orphan connection */
848 if (conn->child_dev == NULL) {
849 /* Does it match this newly added device? */
850 if (conn->child_name &&
851 !strcmp(dev_name(&csdev->dev), conn->child_name)) {
852 conn->child_dev = csdev;
853 } else {
854 /* This component still has an orphan */
855 still_orphan = true;
856 }
857 }
858 }
859
860 i_csdev->orphan = still_orphan;
861
862 /*
863 * Returning '0' ensures that all known component on the
864 * bus will be checked.
865 */
866 return 0;
867 }
868
coresight_fixup_orphan_conns(struct coresight_device * csdev)869 static void coresight_fixup_orphan_conns(struct coresight_device *csdev)
870 {
871 /*
872 * No need to check for a return value as orphan connection(s)
873 * are hooked-up with each newly added component.
874 */
875 bus_for_each_dev(&coresight_bustype, NULL,
876 csdev, coresight_orphan_match);
877 }
878
879
coresight_fixup_device_conns(struct coresight_device * csdev)880 static void coresight_fixup_device_conns(struct coresight_device *csdev)
881 {
882 int i;
883
884 for (i = 0; i < csdev->nr_outport; i++) {
885 struct coresight_connection *conn = &csdev->conns[i];
886 struct device *dev = NULL;
887
888 if (conn->child_name)
889 dev = bus_find_device_by_name(&coresight_bustype, NULL,
890 conn->child_name);
891 if (dev) {
892 conn->child_dev = to_coresight_device(dev);
893 /* and put reference from 'bus_find_device()' */
894 put_device(dev);
895 } else {
896 csdev->orphan = true;
897 conn->child_dev = NULL;
898 }
899 }
900 }
901
coresight_remove_match(struct device * dev,void * data)902 static int coresight_remove_match(struct device *dev, void *data)
903 {
904 int i;
905 struct coresight_device *csdev, *iterator;
906 struct coresight_connection *conn;
907
908 csdev = data;
909 iterator = to_coresight_device(dev);
910
911 /* No need to check oneself */
912 if (csdev == iterator)
913 return 0;
914
915 /*
916 * Circle throuch all the connection of that component. If we find
917 * a connection whose name matches @csdev, remove it.
918 */
919 for (i = 0; i < iterator->nr_outport; i++) {
920 conn = &iterator->conns[i];
921
922 if (conn->child_dev == NULL)
923 continue;
924
925 if (!strcmp(dev_name(&csdev->dev), conn->child_name)) {
926 iterator->orphan = true;
927 conn->child_dev = NULL;
928 /* No need to continue */
929 break;
930 }
931 }
932
933 /*
934 * Returning '0' ensures that all known component on the
935 * bus will be checked.
936 */
937 return 0;
938 }
939
coresight_remove_conns(struct coresight_device * csdev)940 static void coresight_remove_conns(struct coresight_device *csdev)
941 {
942 bus_for_each_dev(&coresight_bustype, NULL,
943 csdev, coresight_remove_match);
944 }
945
946 /**
947 * coresight_timeout - loop until a bit has changed to a specific state.
948 * @addr: base address of the area of interest.
949 * @offset: address of a register, starting from @addr.
950 * @position: the position of the bit of interest.
951 * @value: the value the bit should have.
952 *
953 * Return: 0 as soon as the bit has taken the desired state or -EAGAIN if
954 * TIMEOUT_US has elapsed, which ever happens first.
955 */
956
coresight_timeout(void __iomem * addr,u32 offset,int position,int value)957 int coresight_timeout(void __iomem *addr, u32 offset, int position, int value)
958 {
959 int i;
960 u32 val;
961
962 for (i = TIMEOUT_US; i > 0; i--) {
963 val = __raw_readl(addr + offset);
964 /* waiting on the bit to go from 0 to 1 */
965 if (value) {
966 if (val & BIT(position))
967 return 0;
968 /* waiting on the bit to go from 1 to 0 */
969 } else {
970 if (!(val & BIT(position)))
971 return 0;
972 }
973
974 /*
975 * Delay is arbitrary - the specification doesn't say how long
976 * we are expected to wait. Extra check required to make sure
977 * we don't wait needlessly on the last iteration.
978 */
979 if (i - 1)
980 udelay(1);
981 }
982
983 return -EAGAIN;
984 }
985
986 struct bus_type coresight_bustype = {
987 .name = "coresight",
988 };
989
coresight_init(void)990 static int __init coresight_init(void)
991 {
992 return bus_register(&coresight_bustype);
993 }
994 postcore_initcall(coresight_init);
995
coresight_register(struct coresight_desc * desc)996 struct coresight_device *coresight_register(struct coresight_desc *desc)
997 {
998 int i;
999 int ret;
1000 int link_subtype;
1001 int nr_refcnts = 1;
1002 atomic_t *refcnts = NULL;
1003 struct coresight_device *csdev;
1004 struct coresight_connection *conns = NULL;
1005
1006 csdev = kzalloc(sizeof(*csdev), GFP_KERNEL);
1007 if (!csdev) {
1008 ret = -ENOMEM;
1009 goto err_kzalloc_csdev;
1010 }
1011
1012 if (desc->type == CORESIGHT_DEV_TYPE_LINK ||
1013 desc->type == CORESIGHT_DEV_TYPE_LINKSINK) {
1014 link_subtype = desc->subtype.link_subtype;
1015
1016 if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_MERG)
1017 nr_refcnts = desc->pdata->nr_inport;
1018 else if (link_subtype == CORESIGHT_DEV_SUBTYPE_LINK_SPLIT)
1019 nr_refcnts = desc->pdata->nr_outport;
1020 }
1021
1022 refcnts = kcalloc(nr_refcnts, sizeof(*refcnts), GFP_KERNEL);
1023 if (!refcnts) {
1024 ret = -ENOMEM;
1025 goto err_kzalloc_refcnts;
1026 }
1027
1028 csdev->refcnt = refcnts;
1029
1030 csdev->nr_inport = desc->pdata->nr_inport;
1031 csdev->nr_outport = desc->pdata->nr_outport;
1032
1033 /* Initialise connections if there is at least one outport */
1034 if (csdev->nr_outport) {
1035 conns = kcalloc(csdev->nr_outport, sizeof(*conns), GFP_KERNEL);
1036 if (!conns) {
1037 ret = -ENOMEM;
1038 goto err_kzalloc_conns;
1039 }
1040
1041 for (i = 0; i < csdev->nr_outport; i++) {
1042 conns[i].outport = desc->pdata->outports[i];
1043 conns[i].child_name = desc->pdata->child_names[i];
1044 conns[i].child_port = desc->pdata->child_ports[i];
1045 }
1046 }
1047
1048 csdev->conns = conns;
1049
1050 csdev->type = desc->type;
1051 csdev->subtype = desc->subtype;
1052 csdev->ops = desc->ops;
1053 csdev->orphan = false;
1054
1055 csdev->dev.type = &coresight_dev_type[desc->type];
1056 csdev->dev.groups = desc->groups;
1057 csdev->dev.parent = desc->dev;
1058 csdev->dev.release = coresight_device_release;
1059 csdev->dev.bus = &coresight_bustype;
1060 dev_set_name(&csdev->dev, "%s", desc->pdata->name);
1061
1062 ret = device_register(&csdev->dev);
1063 if (ret) {
1064 put_device(&csdev->dev);
1065 goto err_kzalloc_csdev;
1066 }
1067
1068 mutex_lock(&coresight_mutex);
1069
1070 coresight_fixup_device_conns(csdev);
1071 coresight_fixup_orphan_conns(csdev);
1072
1073 mutex_unlock(&coresight_mutex);
1074
1075 return csdev;
1076
1077 err_kzalloc_conns:
1078 kfree(refcnts);
1079 err_kzalloc_refcnts:
1080 kfree(csdev);
1081 err_kzalloc_csdev:
1082 return ERR_PTR(ret);
1083 }
1084 EXPORT_SYMBOL_GPL(coresight_register);
1085
coresight_unregister(struct coresight_device * csdev)1086 void coresight_unregister(struct coresight_device *csdev)
1087 {
1088 /* Remove references of that device in the topology */
1089 coresight_remove_conns(csdev);
1090 device_unregister(&csdev->dev);
1091 }
1092 EXPORT_SYMBOL_GPL(coresight_unregister);
1093