1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Copyright (c) 2020 Linaro Limited, All rights reserved.
4 * Author: Mike Leach <mike.leach@linaro.org>
5 */
6
7 #include <linux/platform_device.h>
8 #include <linux/slab.h>
9
10 #include "coresight-config.h"
11 #include "coresight-etm-perf.h"
12 #include "coresight-syscfg.h"
13 #include "coresight-syscfg-configfs.h"
14
15 /*
16 * cscfg_ API manages configurations and features for the entire coresight
17 * infrastructure.
18 *
19 * It allows the loading of configurations and features, and loads these into
20 * coresight devices as appropriate.
21 */
22
23 /* protect the cscsg_data and device */
24 static DEFINE_MUTEX(cscfg_mutex);
25
26 /* only one of these */
27 static struct cscfg_manager *cscfg_mgr;
28
29 /* load features and configuations into the lists */
30
31 /* get name feature instance from a coresight device list of features */
32 static struct cscfg_feature_csdev *
cscfg_get_feat_csdev(struct coresight_device * csdev,const char * name)33 cscfg_get_feat_csdev(struct coresight_device *csdev, const char *name)
34 {
35 struct cscfg_feature_csdev *feat_csdev = NULL;
36
37 list_for_each_entry(feat_csdev, &csdev->feature_csdev_list, node) {
38 if (strcmp(feat_csdev->feat_desc->name, name) == 0)
39 return feat_csdev;
40 }
41 return NULL;
42 }
43
44 /* allocate the device config instance - with max number of used features */
45 static struct cscfg_config_csdev *
cscfg_alloc_csdev_cfg(struct coresight_device * csdev,int nr_feats)46 cscfg_alloc_csdev_cfg(struct coresight_device *csdev, int nr_feats)
47 {
48 struct cscfg_config_csdev *config_csdev = NULL;
49 struct device *dev = csdev->dev.parent;
50
51 /* this is being allocated using the devm for the coresight device */
52 config_csdev = devm_kzalloc(dev,
53 offsetof(struct cscfg_config_csdev, feats_csdev[nr_feats]),
54 GFP_KERNEL);
55 if (!config_csdev)
56 return NULL;
57
58 config_csdev->csdev = csdev;
59 return config_csdev;
60 }
61
62 /* Load a config into a device if there are any feature matches between config and device */
cscfg_add_csdev_cfg(struct coresight_device * csdev,struct cscfg_config_desc * config_desc)63 static int cscfg_add_csdev_cfg(struct coresight_device *csdev,
64 struct cscfg_config_desc *config_desc)
65 {
66 struct cscfg_config_csdev *config_csdev = NULL;
67 struct cscfg_feature_csdev *feat_csdev;
68 unsigned long flags;
69 int i;
70
71 /* look at each required feature and see if it matches any feature on the device */
72 for (i = 0; i < config_desc->nr_feat_refs; i++) {
73 /* look for a matching name */
74 feat_csdev = cscfg_get_feat_csdev(csdev, config_desc->feat_ref_names[i]);
75 if (feat_csdev) {
76 /*
77 * At least one feature on this device matches the config
78 * add a config instance to the device and a reference to the feature.
79 */
80 if (!config_csdev) {
81 config_csdev = cscfg_alloc_csdev_cfg(csdev,
82 config_desc->nr_feat_refs);
83 if (!config_csdev)
84 return -ENOMEM;
85 config_csdev->config_desc = config_desc;
86 }
87 config_csdev->feats_csdev[config_csdev->nr_feat++] = feat_csdev;
88 }
89 }
90 /* if matched features, add config to device.*/
91 if (config_csdev) {
92 spin_lock_irqsave(&csdev->cscfg_csdev_lock, flags);
93 list_add(&config_csdev->node, &csdev->config_csdev_list);
94 spin_unlock_irqrestore(&csdev->cscfg_csdev_lock, flags);
95 }
96
97 return 0;
98 }
99
100 /*
101 * Add the config to the set of registered devices - call with mutex locked.
102 * Iterates through devices - any device that matches one or more of the
103 * configuration features will load it, the others will ignore it.
104 */
cscfg_add_cfg_to_csdevs(struct cscfg_config_desc * config_desc)105 static int cscfg_add_cfg_to_csdevs(struct cscfg_config_desc *config_desc)
106 {
107 struct cscfg_registered_csdev *csdev_item;
108 int err;
109
110 list_for_each_entry(csdev_item, &cscfg_mgr->csdev_desc_list, item) {
111 err = cscfg_add_csdev_cfg(csdev_item->csdev, config_desc);
112 if (err)
113 return err;
114 }
115 return 0;
116 }
117
118 /*
119 * Allocate a feature object for load into a csdev.
120 * memory allocated using the csdev->dev object using devm managed allocator.
121 */
122 static struct cscfg_feature_csdev *
cscfg_alloc_csdev_feat(struct coresight_device * csdev,struct cscfg_feature_desc * feat_desc)123 cscfg_alloc_csdev_feat(struct coresight_device *csdev, struct cscfg_feature_desc *feat_desc)
124 {
125 struct cscfg_feature_csdev *feat_csdev = NULL;
126 struct device *dev = csdev->dev.parent;
127 int i;
128
129 feat_csdev = devm_kzalloc(dev, sizeof(struct cscfg_feature_csdev), GFP_KERNEL);
130 if (!feat_csdev)
131 return NULL;
132
133 /* parameters are optional - could be 0 */
134 feat_csdev->nr_params = feat_desc->nr_params;
135
136 /*
137 * if we need parameters, zero alloc the space here, the load routine in
138 * the csdev device driver will fill out some information according to
139 * feature descriptor.
140 */
141 if (feat_csdev->nr_params) {
142 feat_csdev->params_csdev = devm_kcalloc(dev, feat_csdev->nr_params,
143 sizeof(struct cscfg_parameter_csdev),
144 GFP_KERNEL);
145 if (!feat_csdev->params_csdev)
146 return NULL;
147
148 /*
149 * fill in the feature reference in the param - other fields
150 * handled by loader in csdev.
151 */
152 for (i = 0; i < feat_csdev->nr_params; i++)
153 feat_csdev->params_csdev[i].feat_csdev = feat_csdev;
154 }
155
156 /*
157 * Always have registers to program - again the load routine in csdev device
158 * will fill out according to feature descriptor and device requirements.
159 */
160 feat_csdev->nr_regs = feat_desc->nr_regs;
161 feat_csdev->regs_csdev = devm_kcalloc(dev, feat_csdev->nr_regs,
162 sizeof(struct cscfg_regval_csdev),
163 GFP_KERNEL);
164 if (!feat_csdev->regs_csdev)
165 return NULL;
166
167 /* load the feature default values */
168 feat_csdev->feat_desc = feat_desc;
169 feat_csdev->csdev = csdev;
170
171 return feat_csdev;
172 }
173
174 /* load one feature into one coresight device */
cscfg_load_feat_csdev(struct coresight_device * csdev,struct cscfg_feature_desc * feat_desc,struct cscfg_csdev_feat_ops * ops)175 static int cscfg_load_feat_csdev(struct coresight_device *csdev,
176 struct cscfg_feature_desc *feat_desc,
177 struct cscfg_csdev_feat_ops *ops)
178 {
179 struct cscfg_feature_csdev *feat_csdev;
180 unsigned long flags;
181 int err;
182
183 if (!ops->load_feat)
184 return -EINVAL;
185
186 feat_csdev = cscfg_alloc_csdev_feat(csdev, feat_desc);
187 if (!feat_csdev)
188 return -ENOMEM;
189
190 /* load the feature into the device */
191 err = ops->load_feat(csdev, feat_csdev);
192 if (err)
193 return err;
194
195 /* add to internal csdev feature list & initialise using reset call */
196 cscfg_reset_feat(feat_csdev);
197 spin_lock_irqsave(&csdev->cscfg_csdev_lock, flags);
198 list_add(&feat_csdev->node, &csdev->feature_csdev_list);
199 spin_unlock_irqrestore(&csdev->cscfg_csdev_lock, flags);
200
201 return 0;
202 }
203
204 /*
205 * Add feature to any matching devices - call with mutex locked.
206 * Iterates through devices - any device that matches the feature will be
207 * called to load it.
208 */
cscfg_add_feat_to_csdevs(struct cscfg_feature_desc * feat_desc)209 static int cscfg_add_feat_to_csdevs(struct cscfg_feature_desc *feat_desc)
210 {
211 struct cscfg_registered_csdev *csdev_item;
212 int err;
213
214 list_for_each_entry(csdev_item, &cscfg_mgr->csdev_desc_list, item) {
215 if (csdev_item->match_flags & feat_desc->match_flags) {
216 err = cscfg_load_feat_csdev(csdev_item->csdev, feat_desc, &csdev_item->ops);
217 if (err)
218 return err;
219 }
220 }
221 return 0;
222 }
223
224 /* check feature list for a named feature - call with mutex locked. */
cscfg_match_list_feat(const char * name)225 static bool cscfg_match_list_feat(const char *name)
226 {
227 struct cscfg_feature_desc *feat_desc;
228
229 list_for_each_entry(feat_desc, &cscfg_mgr->feat_desc_list, item) {
230 if (strcmp(feat_desc->name, name) == 0)
231 return true;
232 }
233 return false;
234 }
235
236 /* check all feat needed for cfg are in the list - call with mutex locked. */
cscfg_check_feat_for_cfg(struct cscfg_config_desc * config_desc)237 static int cscfg_check_feat_for_cfg(struct cscfg_config_desc *config_desc)
238 {
239 int i;
240
241 for (i = 0; i < config_desc->nr_feat_refs; i++)
242 if (!cscfg_match_list_feat(config_desc->feat_ref_names[i]))
243 return -EINVAL;
244 return 0;
245 }
246
247 /*
248 * load feature - add to feature list.
249 */
cscfg_load_feat(struct cscfg_feature_desc * feat_desc)250 static int cscfg_load_feat(struct cscfg_feature_desc *feat_desc)
251 {
252 int err;
253
254 /* add feature to any matching registered devices */
255 err = cscfg_add_feat_to_csdevs(feat_desc);
256 if (err)
257 return err;
258
259 list_add(&feat_desc->item, &cscfg_mgr->feat_desc_list);
260 return 0;
261 }
262
263 /*
264 * load config into the system - validate used features exist then add to
265 * config list.
266 */
cscfg_load_config(struct cscfg_config_desc * config_desc)267 static int cscfg_load_config(struct cscfg_config_desc *config_desc)
268 {
269 int err;
270
271 /* validate features are present */
272 err = cscfg_check_feat_for_cfg(config_desc);
273 if (err)
274 return err;
275
276 /* add config to any matching registered device */
277 err = cscfg_add_cfg_to_csdevs(config_desc);
278 if (err)
279 return err;
280
281 /* add config to perf fs to allow selection */
282 err = etm_perf_add_symlink_cscfg(cscfg_device(), config_desc);
283 if (err)
284 return err;
285
286 list_add(&config_desc->item, &cscfg_mgr->config_desc_list);
287 atomic_set(&config_desc->active_cnt, 0);
288 return 0;
289 }
290
291 /* get a feature descriptor by name */
cscfg_get_named_feat_desc(const char * name)292 const struct cscfg_feature_desc *cscfg_get_named_feat_desc(const char *name)
293 {
294 const struct cscfg_feature_desc *feat_desc = NULL, *feat_desc_item;
295
296 mutex_lock(&cscfg_mutex);
297
298 list_for_each_entry(feat_desc_item, &cscfg_mgr->feat_desc_list, item) {
299 if (strcmp(feat_desc_item->name, name) == 0) {
300 feat_desc = feat_desc_item;
301 break;
302 }
303 }
304
305 mutex_unlock(&cscfg_mutex);
306 return feat_desc;
307 }
308
309 /* called with cscfg_mutex held */
310 static struct cscfg_feature_csdev *
cscfg_csdev_get_feat_from_desc(struct coresight_device * csdev,struct cscfg_feature_desc * feat_desc)311 cscfg_csdev_get_feat_from_desc(struct coresight_device *csdev,
312 struct cscfg_feature_desc *feat_desc)
313 {
314 struct cscfg_feature_csdev *feat_csdev;
315
316 list_for_each_entry(feat_csdev, &csdev->feature_csdev_list, node) {
317 if (feat_csdev->feat_desc == feat_desc)
318 return feat_csdev;
319 }
320 return NULL;
321 }
322
cscfg_update_feat_param_val(struct cscfg_feature_desc * feat_desc,int param_idx,u64 value)323 int cscfg_update_feat_param_val(struct cscfg_feature_desc *feat_desc,
324 int param_idx, u64 value)
325 {
326 int err = 0;
327 struct cscfg_feature_csdev *feat_csdev;
328 struct cscfg_registered_csdev *csdev_item;
329
330 mutex_lock(&cscfg_mutex);
331
332 /* check if any config active & return busy */
333 if (atomic_read(&cscfg_mgr->sys_active_cnt)) {
334 err = -EBUSY;
335 goto unlock_exit;
336 }
337
338 /* set the value */
339 if ((param_idx < 0) || (param_idx >= feat_desc->nr_params)) {
340 err = -EINVAL;
341 goto unlock_exit;
342 }
343 feat_desc->params_desc[param_idx].value = value;
344
345 /* update loaded instances.*/
346 list_for_each_entry(csdev_item, &cscfg_mgr->csdev_desc_list, item) {
347 feat_csdev = cscfg_csdev_get_feat_from_desc(csdev_item->csdev, feat_desc);
348 if (feat_csdev)
349 feat_csdev->params_csdev[param_idx].current_value = value;
350 }
351
352 unlock_exit:
353 mutex_unlock(&cscfg_mutex);
354 return err;
355 }
356
357 /**
358 * cscfg_load_config_sets - API function to load feature and config sets.
359 *
360 * Take a 0 terminated array of feature descriptors and/or configuration
361 * descriptors and load into the system.
362 * Features are loaded first to ensure configuration dependencies can be met.
363 *
364 * @config_descs: 0 terminated array of configuration descriptors.
365 * @feat_descs: 0 terminated array of feature descriptors.
366 */
cscfg_load_config_sets(struct cscfg_config_desc ** config_descs,struct cscfg_feature_desc ** feat_descs)367 int cscfg_load_config_sets(struct cscfg_config_desc **config_descs,
368 struct cscfg_feature_desc **feat_descs)
369 {
370 int err, i = 0;
371
372 mutex_lock(&cscfg_mutex);
373
374 /* load features first */
375 if (feat_descs) {
376 while (feat_descs[i]) {
377 err = cscfg_load_feat(feat_descs[i]);
378 if (!err)
379 err = cscfg_configfs_add_feature(feat_descs[i]);
380 if (err) {
381 pr_err("coresight-syscfg: Failed to load feature %s\n",
382 feat_descs[i]->name);
383 goto exit_unlock;
384 }
385 i++;
386 }
387 }
388
389 /* next any configurations to check feature dependencies */
390 i = 0;
391 if (config_descs) {
392 while (config_descs[i]) {
393 err = cscfg_load_config(config_descs[i]);
394 if (!err)
395 err = cscfg_configfs_add_config(config_descs[i]);
396 if (err) {
397 pr_err("coresight-syscfg: Failed to load configuration %s\n",
398 config_descs[i]->name);
399 goto exit_unlock;
400 }
401 i++;
402 }
403 }
404
405 exit_unlock:
406 mutex_unlock(&cscfg_mutex);
407 return err;
408 }
409 EXPORT_SYMBOL_GPL(cscfg_load_config_sets);
410
411 /* Handle coresight device registration and add configs and features to devices */
412
413 /* iterate through config lists and load matching configs to device */
cscfg_add_cfgs_csdev(struct coresight_device * csdev)414 static int cscfg_add_cfgs_csdev(struct coresight_device *csdev)
415 {
416 struct cscfg_config_desc *config_desc;
417 int err = 0;
418
419 list_for_each_entry(config_desc, &cscfg_mgr->config_desc_list, item) {
420 err = cscfg_add_csdev_cfg(csdev, config_desc);
421 if (err)
422 break;
423 }
424 return err;
425 }
426
427 /* iterate through feature lists and load matching features to device */
cscfg_add_feats_csdev(struct coresight_device * csdev,u32 match_flags,struct cscfg_csdev_feat_ops * ops)428 static int cscfg_add_feats_csdev(struct coresight_device *csdev,
429 u32 match_flags,
430 struct cscfg_csdev_feat_ops *ops)
431 {
432 struct cscfg_feature_desc *feat_desc;
433 int err = 0;
434
435 if (!ops->load_feat)
436 return -EINVAL;
437
438 list_for_each_entry(feat_desc, &cscfg_mgr->feat_desc_list, item) {
439 if (feat_desc->match_flags & match_flags) {
440 err = cscfg_load_feat_csdev(csdev, feat_desc, ops);
441 if (err)
442 break;
443 }
444 }
445 return err;
446 }
447
448 /* Add coresight device to list and copy its matching info */
cscfg_list_add_csdev(struct coresight_device * csdev,u32 match_flags,struct cscfg_csdev_feat_ops * ops)449 static int cscfg_list_add_csdev(struct coresight_device *csdev,
450 u32 match_flags,
451 struct cscfg_csdev_feat_ops *ops)
452 {
453 struct cscfg_registered_csdev *csdev_item;
454
455 /* allocate the list entry structure */
456 csdev_item = kzalloc(sizeof(struct cscfg_registered_csdev), GFP_KERNEL);
457 if (!csdev_item)
458 return -ENOMEM;
459
460 csdev_item->csdev = csdev;
461 csdev_item->match_flags = match_flags;
462 csdev_item->ops.load_feat = ops->load_feat;
463 list_add(&csdev_item->item, &cscfg_mgr->csdev_desc_list);
464
465 INIT_LIST_HEAD(&csdev->feature_csdev_list);
466 INIT_LIST_HEAD(&csdev->config_csdev_list);
467 spin_lock_init(&csdev->cscfg_csdev_lock);
468
469 return 0;
470 }
471
472 /* remove a coresight device from the list and free data */
cscfg_list_remove_csdev(struct coresight_device * csdev)473 static void cscfg_list_remove_csdev(struct coresight_device *csdev)
474 {
475 struct cscfg_registered_csdev *csdev_item, *tmp;
476
477 list_for_each_entry_safe(csdev_item, tmp, &cscfg_mgr->csdev_desc_list, item) {
478 if (csdev_item->csdev == csdev) {
479 list_del(&csdev_item->item);
480 kfree(csdev_item);
481 break;
482 }
483 }
484 }
485
486 /**
487 * cscfg_register_csdev - register a coresight device with the syscfg manager.
488 *
489 * Registers the coresight device with the system. @match_flags used to check
490 * if the device is a match for registered features. Any currently registered
491 * configurations and features that match the device will be loaded onto it.
492 *
493 * @csdev: The coresight device to register.
494 * @match_flags: Matching information to load features.
495 * @ops: Standard operations supported by the device.
496 */
cscfg_register_csdev(struct coresight_device * csdev,u32 match_flags,struct cscfg_csdev_feat_ops * ops)497 int cscfg_register_csdev(struct coresight_device *csdev,
498 u32 match_flags,
499 struct cscfg_csdev_feat_ops *ops)
500 {
501 int ret = 0;
502
503 mutex_lock(&cscfg_mutex);
504
505 /* add device to list of registered devices */
506 ret = cscfg_list_add_csdev(csdev, match_flags, ops);
507 if (ret)
508 goto reg_csdev_unlock;
509
510 /* now load any registered features and configs matching the device. */
511 ret = cscfg_add_feats_csdev(csdev, match_flags, ops);
512 if (ret) {
513 cscfg_list_remove_csdev(csdev);
514 goto reg_csdev_unlock;
515 }
516
517 ret = cscfg_add_cfgs_csdev(csdev);
518 if (ret) {
519 cscfg_list_remove_csdev(csdev);
520 goto reg_csdev_unlock;
521 }
522
523 pr_info("CSCFG registered %s", dev_name(&csdev->dev));
524
525 reg_csdev_unlock:
526 mutex_unlock(&cscfg_mutex);
527 return ret;
528 }
529 EXPORT_SYMBOL_GPL(cscfg_register_csdev);
530
531 /**
532 * cscfg_unregister_csdev - remove coresight device from syscfg manager.
533 *
534 * @csdev: Device to remove.
535 */
cscfg_unregister_csdev(struct coresight_device * csdev)536 void cscfg_unregister_csdev(struct coresight_device *csdev)
537 {
538 mutex_lock(&cscfg_mutex);
539 cscfg_list_remove_csdev(csdev);
540 mutex_unlock(&cscfg_mutex);
541 }
542 EXPORT_SYMBOL_GPL(cscfg_unregister_csdev);
543
544 /**
545 * cscfg_csdev_reset_feats - reset features for a CoreSight device.
546 *
547 * Resets all parameters and register values for any features loaded
548 * into @csdev to their default values.
549 *
550 * @csdev: The CoreSight device.
551 */
cscfg_csdev_reset_feats(struct coresight_device * csdev)552 void cscfg_csdev_reset_feats(struct coresight_device *csdev)
553 {
554 struct cscfg_feature_csdev *feat_csdev;
555 unsigned long flags;
556
557 spin_lock_irqsave(&csdev->cscfg_csdev_lock, flags);
558 if (list_empty(&csdev->feature_csdev_list))
559 goto unlock_exit;
560
561 list_for_each_entry(feat_csdev, &csdev->feature_csdev_list, node)
562 cscfg_reset_feat(feat_csdev);
563
564 unlock_exit:
565 spin_unlock_irqrestore(&csdev->cscfg_csdev_lock, flags);
566 }
567 EXPORT_SYMBOL_GPL(cscfg_csdev_reset_feats);
568
569 /**
570 * cscfg_activate_config - Mark a configuration descriptor as active.
571 *
572 * This will be seen when csdev devices are enabled in the system.
573 * Only activated configurations can be enabled on individual devices.
574 * Activation protects the configuration from alteration or removal while
575 * active.
576 *
577 * Selection by hash value - generated from the configuration name when it
578 * was loaded and added to the cs_etm/configurations file system for selection
579 * by perf.
580 *
581 * Increments the configuration descriptor active count and the global active
582 * count.
583 *
584 * @cfg_hash: Hash value of the selected configuration name.
585 */
cscfg_activate_config(unsigned long cfg_hash)586 int cscfg_activate_config(unsigned long cfg_hash)
587 {
588 struct cscfg_config_desc *config_desc;
589 int err = -EINVAL;
590
591 mutex_lock(&cscfg_mutex);
592
593 list_for_each_entry(config_desc, &cscfg_mgr->config_desc_list, item) {
594 if ((unsigned long)config_desc->event_ea->var == cfg_hash) {
595 /*
596 * increment the global active count - control changes to
597 * active configurations
598 */
599 atomic_inc(&cscfg_mgr->sys_active_cnt);
600
601 /*
602 * mark the descriptor as active so enable config on a
603 * device instance will use it
604 */
605 atomic_inc(&config_desc->active_cnt);
606
607 err = 0;
608 dev_dbg(cscfg_device(), "Activate config %s.\n", config_desc->name);
609 break;
610 }
611 }
612 mutex_unlock(&cscfg_mutex);
613
614 return err;
615 }
616 EXPORT_SYMBOL_GPL(cscfg_activate_config);
617
618 /**
619 * cscfg_deactivate_config - Mark a config descriptor as inactive.
620 *
621 * Decrement the configuration and global active counts.
622 *
623 * @cfg_hash: Hash value of the selected configuration name.
624 */
cscfg_deactivate_config(unsigned long cfg_hash)625 void cscfg_deactivate_config(unsigned long cfg_hash)
626 {
627 struct cscfg_config_desc *config_desc;
628
629 mutex_lock(&cscfg_mutex);
630
631 list_for_each_entry(config_desc, &cscfg_mgr->config_desc_list, item) {
632 if ((unsigned long)config_desc->event_ea->var == cfg_hash) {
633 atomic_dec(&config_desc->active_cnt);
634 atomic_dec(&cscfg_mgr->sys_active_cnt);
635 dev_dbg(cscfg_device(), "Deactivate config %s.\n", config_desc->name);
636 break;
637 }
638 }
639 mutex_unlock(&cscfg_mutex);
640 }
641 EXPORT_SYMBOL_GPL(cscfg_deactivate_config);
642
643 /**
644 * cscfg_csdev_enable_active_config - Enable matching active configuration for device.
645 *
646 * Enables the configuration selected by @cfg_hash if the configuration is supported
647 * on the device and has been activated.
648 *
649 * If active and supported the CoreSight device @csdev will be programmed with the
650 * configuration, using @preset parameters.
651 *
652 * Should be called before driver hardware enable for the requested device, prior to
653 * programming and enabling the physical hardware.
654 *
655 * @csdev: CoreSight device to program.
656 * @cfg_hash: Selector for the configuration.
657 * @preset: Preset parameter values to use, 0 for current / default values.
658 */
cscfg_csdev_enable_active_config(struct coresight_device * csdev,unsigned long cfg_hash,int preset)659 int cscfg_csdev_enable_active_config(struct coresight_device *csdev,
660 unsigned long cfg_hash, int preset)
661 {
662 struct cscfg_config_csdev *config_csdev_active = NULL, *config_csdev_item;
663 const struct cscfg_config_desc *config_desc;
664 unsigned long flags;
665 int err = 0;
666
667 /* quickly check global count */
668 if (!atomic_read(&cscfg_mgr->sys_active_cnt))
669 return 0;
670
671 /*
672 * Look for matching configuration - set the active configuration
673 * context if found.
674 */
675 spin_lock_irqsave(&csdev->cscfg_csdev_lock, flags);
676 list_for_each_entry(config_csdev_item, &csdev->config_csdev_list, node) {
677 config_desc = config_csdev_item->config_desc;
678 if ((atomic_read(&config_desc->active_cnt)) &&
679 ((unsigned long)config_desc->event_ea->var == cfg_hash)) {
680 config_csdev_active = config_csdev_item;
681 csdev->active_cscfg_ctxt = (void *)config_csdev_active;
682 break;
683 }
684 }
685 spin_unlock_irqrestore(&csdev->cscfg_csdev_lock, flags);
686
687 /*
688 * If found, attempt to enable
689 */
690 if (config_csdev_active) {
691 /*
692 * Call the generic routine that will program up the internal
693 * driver structures prior to programming up the hardware.
694 * This routine takes the driver spinlock saved in the configs.
695 */
696 err = cscfg_csdev_enable_config(config_csdev_active, preset);
697 if (!err) {
698 /*
699 * Successful programming. Check the active_cscfg_ctxt
700 * pointer to ensure no pre-emption disabled it via
701 * cscfg_csdev_disable_active_config() before
702 * we could start.
703 *
704 * Set enabled if OK, err if not.
705 */
706 spin_lock_irqsave(&csdev->cscfg_csdev_lock, flags);
707 if (csdev->active_cscfg_ctxt)
708 config_csdev_active->enabled = true;
709 else
710 err = -EBUSY;
711 spin_unlock_irqrestore(&csdev->cscfg_csdev_lock, flags);
712 }
713 }
714 return err;
715 }
716 EXPORT_SYMBOL_GPL(cscfg_csdev_enable_active_config);
717
718 /**
719 * cscfg_csdev_disable_active_config - disable an active config on the device.
720 *
721 * Disables the active configuration on the CoreSight device @csdev.
722 * Disable will save the values of any registers marked in the configurations
723 * as save on disable.
724 *
725 * Should be called after driver hardware disable for the requested device,
726 * after disabling the physical hardware and reading back registers.
727 *
728 * @csdev: The CoreSight device.
729 */
cscfg_csdev_disable_active_config(struct coresight_device * csdev)730 void cscfg_csdev_disable_active_config(struct coresight_device *csdev)
731 {
732 struct cscfg_config_csdev *config_csdev;
733 unsigned long flags;
734
735 /*
736 * Check if we have an active config, and that it was successfully enabled.
737 * If it was not enabled, we have no work to do, otherwise mark as disabled.
738 * Clear the active config pointer.
739 */
740 spin_lock_irqsave(&csdev->cscfg_csdev_lock, flags);
741 config_csdev = (struct cscfg_config_csdev *)csdev->active_cscfg_ctxt;
742 if (config_csdev) {
743 if (!config_csdev->enabled)
744 config_csdev = NULL;
745 else
746 config_csdev->enabled = false;
747 }
748 csdev->active_cscfg_ctxt = NULL;
749 spin_unlock_irqrestore(&csdev->cscfg_csdev_lock, flags);
750
751 /* true if there was an enabled active config */
752 if (config_csdev)
753 cscfg_csdev_disable_config(config_csdev);
754 }
755 EXPORT_SYMBOL_GPL(cscfg_csdev_disable_active_config);
756
757 /* Initialise system configuration management device. */
758
cscfg_device(void)759 struct device *cscfg_device(void)
760 {
761 return cscfg_mgr ? &cscfg_mgr->dev : NULL;
762 }
763
764 /* Must have a release function or the kernel will complain on module unload */
cscfg_dev_release(struct device * dev)765 static void cscfg_dev_release(struct device *dev)
766 {
767 kfree(cscfg_mgr);
768 cscfg_mgr = NULL;
769 }
770
771 /* a device is needed to "own" some kernel elements such as sysfs entries. */
cscfg_create_device(void)772 static int cscfg_create_device(void)
773 {
774 struct device *dev;
775 int err = -ENOMEM;
776
777 mutex_lock(&cscfg_mutex);
778 if (cscfg_mgr) {
779 err = -EINVAL;
780 goto create_dev_exit_unlock;
781 }
782
783 cscfg_mgr = kzalloc(sizeof(struct cscfg_manager), GFP_KERNEL);
784 if (!cscfg_mgr)
785 goto create_dev_exit_unlock;
786
787 /* setup the device */
788 dev = cscfg_device();
789 dev->release = cscfg_dev_release;
790 dev->init_name = "cs_system_cfg";
791
792 err = device_register(dev);
793 if (err)
794 cscfg_dev_release(dev);
795
796 create_dev_exit_unlock:
797 mutex_unlock(&cscfg_mutex);
798 return err;
799 }
800
cscfg_clear_device(void)801 static void cscfg_clear_device(void)
802 {
803 struct cscfg_config_desc *cfg_desc;
804
805 mutex_lock(&cscfg_mutex);
806 list_for_each_entry(cfg_desc, &cscfg_mgr->config_desc_list, item) {
807 etm_perf_del_symlink_cscfg(cfg_desc);
808 }
809 cscfg_configfs_release(cscfg_mgr);
810 device_unregister(cscfg_device());
811 mutex_unlock(&cscfg_mutex);
812 }
813
814 /* Initialise system config management API device */
cscfg_init(void)815 int __init cscfg_init(void)
816 {
817 int err = 0;
818
819 err = cscfg_create_device();
820 if (err)
821 return err;
822
823 err = cscfg_configfs_init(cscfg_mgr);
824 if (err)
825 goto exit_err;
826
827 INIT_LIST_HEAD(&cscfg_mgr->csdev_desc_list);
828 INIT_LIST_HEAD(&cscfg_mgr->feat_desc_list);
829 INIT_LIST_HEAD(&cscfg_mgr->config_desc_list);
830 atomic_set(&cscfg_mgr->sys_active_cnt, 0);
831
832 /* preload built-in configurations */
833 err = cscfg_preload();
834 if (err)
835 goto exit_err;
836
837 dev_info(cscfg_device(), "CoreSight Configuration manager initialised");
838 return 0;
839
840 exit_err:
841 cscfg_clear_device();
842 return err;
843 }
844
cscfg_exit(void)845 void cscfg_exit(void)
846 {
847 cscfg_clear_device();
848 }
849