1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Copyright (c) 2018 Linaro Limited, All rights reserved.
4 * Author: Mike Leach <mike.leach@linaro.org>
5 */
6
7 #include <linux/amba/bus.h>
8 #include <linux/atomic.h>
9 #include <linux/bits.h>
10 #include <linux/coresight.h>
11 #include <linux/cpu_pm.h>
12 #include <linux/cpuhotplug.h>
13 #include <linux/device.h>
14 #include <linux/io.h>
15 #include <linux/kernel.h>
16 #include <linux/list.h>
17 #include <linux/mutex.h>
18 #include <linux/pm_runtime.h>
19 #include <linux/property.h>
20 #include <linux/spinlock.h>
21
22 #include "coresight-priv.h"
23 #include "coresight-cti.h"
24
25 /*
26 * CTI devices can be associated with a PE, or be connected to CoreSight
27 * hardware. We have a list of all CTIs irrespective of CPU bound or
28 * otherwise.
29 *
30 * We assume that the non-CPU CTIs are always powered as we do with sinks etc.
31 *
32 * We leave the client to figure out if all the CTIs are interconnected with
33 * the same CTM, in general this is the case but does not always have to be.
34 */
35
36 /* net of CTI devices connected via CTM */
37 static LIST_HEAD(ect_net);
38
39 /* protect the list */
40 static DEFINE_MUTEX(ect_mutex);
41
42 #define csdev_to_cti_drvdata(csdev) \
43 dev_get_drvdata(csdev->dev.parent)
44
45 /* write set of regs to hardware - call with spinlock claimed */
cti_write_all_hw_regs(struct cti_drvdata * drvdata)46 void cti_write_all_hw_regs(struct cti_drvdata *drvdata)
47 {
48 struct cti_config *config = &drvdata->config;
49 int i;
50
51 CS_UNLOCK(drvdata->base);
52
53 /* disable CTI before writing registers */
54 writel_relaxed(0, drvdata->base + CTICONTROL);
55
56 /* write the CTI trigger registers */
57 for (i = 0; i < config->nr_trig_max; i++) {
58 writel_relaxed(config->ctiinen[i], drvdata->base + CTIINEN(i));
59 writel_relaxed(config->ctiouten[i],
60 drvdata->base + CTIOUTEN(i));
61 }
62
63 /* other regs */
64 writel_relaxed(config->ctigate, drvdata->base + CTIGATE);
65 if (config->asicctl_impl)
66 writel_relaxed(config->asicctl, drvdata->base + ASICCTL);
67 writel_relaxed(config->ctiappset, drvdata->base + CTIAPPSET);
68
69 /* re-enable CTI */
70 writel_relaxed(1, drvdata->base + CTICONTROL);
71
72 CS_LOCK(drvdata->base);
73 }
74
75 /* write regs to hardware and enable */
cti_enable_hw(struct cti_drvdata * drvdata)76 static int cti_enable_hw(struct cti_drvdata *drvdata)
77 {
78 struct cti_config *config = &drvdata->config;
79 int rc;
80
81 guard(raw_spinlock_irqsave)(&drvdata->spinlock);
82
83 /* no need to do anything if enabled */
84 if (cti_is_active(config))
85 goto cti_state_unchanged;
86
87 /* claim the device */
88 rc = coresight_claim_device(drvdata->csdev);
89 if (rc)
90 return rc;
91
92 cti_write_all_hw_regs(drvdata);
93
94 cti_state_unchanged:
95 drvdata->config.enable_req_count++;
96 return 0;
97 }
98
99 /* disable hardware */
cti_disable_hw(struct cti_drvdata * drvdata)100 static int cti_disable_hw(struct cti_drvdata *drvdata)
101 {
102 struct cti_config *config = &drvdata->config;
103 struct coresight_device *csdev = drvdata->csdev;
104
105 guard(raw_spinlock_irqsave)(&drvdata->spinlock);
106
107 /* don't allow negative refcounts, return an error */
108 if (!cti_is_active(config))
109 return -EINVAL;
110
111 /* check refcount - disable on 0 */
112 if (--drvdata->config.enable_req_count > 0)
113 return 0;
114
115 CS_UNLOCK(drvdata->base);
116
117 /* disable CTI */
118 writel_relaxed(0, drvdata->base + CTICONTROL);
119
120 coresight_disclaim_device_unlocked(csdev);
121 CS_LOCK(drvdata->base);
122 return 0;
123 }
124
cti_read_single_reg(struct cti_drvdata * drvdata,int offset)125 u32 cti_read_single_reg(struct cti_drvdata *drvdata, int offset)
126 {
127 int val;
128
129 CS_UNLOCK(drvdata->base);
130 val = readl_relaxed(drvdata->base + offset);
131 CS_LOCK(drvdata->base);
132
133 return val;
134 }
135
cti_write_single_reg(struct cti_drvdata * drvdata,int offset,u32 value)136 void cti_write_single_reg(struct cti_drvdata *drvdata, int offset, u32 value)
137 {
138 CS_UNLOCK(drvdata->base);
139 writel_relaxed(value, drvdata->base + offset);
140 CS_LOCK(drvdata->base);
141 }
142
cti_write_intack(struct device * dev,u32 ackval)143 void cti_write_intack(struct device *dev, u32 ackval)
144 {
145 struct cti_drvdata *drvdata = dev_get_drvdata(dev->parent);
146 struct cti_config *config = &drvdata->config;
147
148 guard(raw_spinlock_irqsave)(&drvdata->spinlock);
149
150 /* write if enabled */
151 if (cti_is_active(config))
152 cti_write_single_reg(drvdata, CTIINTACK, ackval);
153 }
154
155 /*
156 * Look at the HW DEVID register for some of the HW settings.
157 * DEVID[15:8] - max number of in / out triggers.
158 */
159 #define CTI_DEVID_MAXTRIGS(devid_val) ((int) BMVAL(devid_val, 8, 15))
160
161 /* DEVID[19:16] - number of CTM channels */
162 #define CTI_DEVID_CTMCHANNELS(devid_val) ((int) BMVAL(devid_val, 16, 19))
163
cti_set_default_config(struct device * dev,struct cti_drvdata * drvdata)164 static void cti_set_default_config(struct device *dev,
165 struct cti_drvdata *drvdata)
166 {
167 struct cti_config *config = &drvdata->config;
168 u32 devid;
169
170 devid = readl_relaxed(drvdata->base + CORESIGHT_DEVID);
171 config->nr_trig_max = CTI_DEVID_MAXTRIGS(devid);
172
173 /*
174 * no current hardware should exceed this, but protect the driver
175 * in case of fault / out of spec hw
176 */
177 if (config->nr_trig_max > CTIINOUTEN_MAX) {
178 dev_warn_once(dev,
179 "Limiting HW MaxTrig value(%d) to driver max(%d)\n",
180 config->nr_trig_max, CTIINOUTEN_MAX);
181 config->nr_trig_max = CTIINOUTEN_MAX;
182 }
183
184 config->nr_ctm_channels = CTI_DEVID_CTMCHANNELS(devid);
185
186 /* Most regs default to 0 as zalloc'ed except...*/
187 config->trig_filter_enable = true;
188 config->ctigate = GENMASK(config->nr_ctm_channels - 1, 0);
189 config->enable_req_count = 0;
190
191 config->asicctl_impl = !!FIELD_GET(GENMASK(4, 0), devid);
192 }
193
194 /*
195 * Add a connection entry to the list of connections for this
196 * CTI device.
197 */
cti_add_connection_entry(struct device * dev,struct cti_drvdata * drvdata,struct cti_trig_con * tc,struct coresight_device * csdev,const char * assoc_dev_name)198 int cti_add_connection_entry(struct device *dev, struct cti_drvdata *drvdata,
199 struct cti_trig_con *tc,
200 struct coresight_device *csdev,
201 const char *assoc_dev_name)
202 {
203 struct cti_device *cti_dev = &drvdata->ctidev;
204
205 tc->con_dev = csdev;
206 /*
207 * Prefer actual associated CS device dev name to supplied value -
208 * which is likely to be node name / other conn name.
209 */
210 if (csdev)
211 tc->con_dev_name = dev_name(&csdev->dev);
212 else if (assoc_dev_name != NULL) {
213 tc->con_dev_name = devm_kstrdup(dev,
214 assoc_dev_name, GFP_KERNEL);
215 if (!tc->con_dev_name)
216 return -ENOMEM;
217 }
218 list_add_tail(&tc->node, &cti_dev->trig_cons);
219 cti_dev->nr_trig_con++;
220
221 /* add connection usage bit info to overall info */
222 drvdata->config.trig_in_use |= tc->con_in->used_mask;
223 drvdata->config.trig_out_use |= tc->con_out->used_mask;
224
225 return 0;
226 }
227
228 /* create a trigger connection with appropriately sized signal groups */
cti_allocate_trig_con(struct device * dev,int in_sigs,int out_sigs)229 struct cti_trig_con *cti_allocate_trig_con(struct device *dev, int in_sigs,
230 int out_sigs)
231 {
232 struct cti_trig_con *tc = NULL;
233 struct cti_trig_grp *in = NULL, *out = NULL;
234
235 tc = devm_kzalloc(dev, sizeof(struct cti_trig_con), GFP_KERNEL);
236 if (!tc)
237 return tc;
238
239 in = devm_kzalloc(dev,
240 offsetof(struct cti_trig_grp, sig_types[in_sigs]),
241 GFP_KERNEL);
242 if (!in)
243 return NULL;
244
245 out = devm_kzalloc(dev,
246 offsetof(struct cti_trig_grp, sig_types[out_sigs]),
247 GFP_KERNEL);
248 if (!out)
249 return NULL;
250
251 tc->con_in = in;
252 tc->con_out = out;
253 tc->con_in->nr_sigs = in_sigs;
254 tc->con_out->nr_sigs = out_sigs;
255 return tc;
256 }
257
258 /*
259 * Add a default connection if nothing else is specified.
260 * single connection based on max in/out info, no assoc device
261 */
cti_add_default_connection(struct device * dev,struct cti_drvdata * drvdata)262 int cti_add_default_connection(struct device *dev, struct cti_drvdata *drvdata)
263 {
264 int ret = 0;
265 int n_trigs = drvdata->config.nr_trig_max;
266 u32 n_trig_mask = GENMASK(n_trigs - 1, 0);
267 struct cti_trig_con *tc = NULL;
268
269 /*
270 * Assume max trigs for in and out,
271 * all used, default sig types allocated
272 */
273 tc = cti_allocate_trig_con(dev, n_trigs, n_trigs);
274 if (!tc)
275 return -ENOMEM;
276
277 tc->con_in->used_mask = n_trig_mask;
278 tc->con_out->used_mask = n_trig_mask;
279 ret = cti_add_connection_entry(dev, drvdata, tc, NULL, "default");
280 return ret;
281 }
282
283 /** cti channel api **/
284 /* attach/detach channel from trigger - write through if enabled. */
cti_channel_trig_op(struct device * dev,enum cti_chan_op op,enum cti_trig_dir direction,u32 channel_idx,u32 trigger_idx)285 int cti_channel_trig_op(struct device *dev, enum cti_chan_op op,
286 enum cti_trig_dir direction, u32 channel_idx,
287 u32 trigger_idx)
288 {
289 struct cti_drvdata *drvdata = dev_get_drvdata(dev->parent);
290 struct cti_config *config = &drvdata->config;
291 u32 trig_bitmask;
292 u32 chan_bitmask;
293 u32 reg_value;
294 int reg_offset;
295
296 /* ensure indexes in range */
297 if ((channel_idx >= config->nr_ctm_channels) ||
298 (trigger_idx >= config->nr_trig_max))
299 return -EINVAL;
300
301 trig_bitmask = BIT(trigger_idx);
302
303 /* ensure registered triggers and not out filtered */
304 if (direction == CTI_TRIG_IN) {
305 if (!(trig_bitmask & config->trig_in_use))
306 return -EINVAL;
307 } else {
308 if (!(trig_bitmask & config->trig_out_use))
309 return -EINVAL;
310
311 if ((config->trig_filter_enable) &&
312 (config->trig_out_filter & trig_bitmask))
313 return -EINVAL;
314 }
315
316 /* update the local register values */
317 chan_bitmask = BIT(channel_idx);
318 reg_offset = (direction == CTI_TRIG_IN ? CTIINEN(trigger_idx) :
319 CTIOUTEN(trigger_idx));
320
321 guard(raw_spinlock_irqsave)(&drvdata->spinlock);
322
323 /* read - modify write - the trigger / channel enable value */
324 reg_value = direction == CTI_TRIG_IN ? config->ctiinen[trigger_idx] :
325 config->ctiouten[trigger_idx];
326 if (op == CTI_CHAN_ATTACH)
327 reg_value |= chan_bitmask;
328 else
329 reg_value &= ~chan_bitmask;
330
331 /* write local copy */
332 if (direction == CTI_TRIG_IN)
333 config->ctiinen[trigger_idx] = reg_value;
334 else
335 config->ctiouten[trigger_idx] = reg_value;
336
337 /* write through if enabled */
338 if (cti_is_active(config))
339 cti_write_single_reg(drvdata, reg_offset, reg_value);
340
341 return 0;
342 }
343
cti_channel_gate_op(struct device * dev,enum cti_chan_gate_op op,u32 channel_idx)344 int cti_channel_gate_op(struct device *dev, enum cti_chan_gate_op op,
345 u32 channel_idx)
346 {
347 struct cti_drvdata *drvdata = dev_get_drvdata(dev->parent);
348 struct cti_config *config = &drvdata->config;
349 u32 chan_bitmask;
350 u32 reg_value;
351 int err = 0;
352
353 if (channel_idx >= config->nr_ctm_channels)
354 return -EINVAL;
355
356 chan_bitmask = BIT(channel_idx);
357
358 guard(raw_spinlock_irqsave)(&drvdata->spinlock);
359
360 reg_value = config->ctigate;
361 switch (op) {
362 case CTI_GATE_CHAN_ENABLE:
363 reg_value |= chan_bitmask;
364 break;
365
366 case CTI_GATE_CHAN_DISABLE:
367 reg_value &= ~chan_bitmask;
368 break;
369
370 default:
371 err = -EINVAL;
372 break;
373 }
374 if (err == 0) {
375 config->ctigate = reg_value;
376 if (cti_is_active(config))
377 cti_write_single_reg(drvdata, CTIGATE, reg_value);
378 }
379
380 return err;
381 }
382
cti_channel_setop(struct device * dev,enum cti_chan_set_op op,u32 channel_idx)383 int cti_channel_setop(struct device *dev, enum cti_chan_set_op op,
384 u32 channel_idx)
385 {
386 struct cti_drvdata *drvdata = dev_get_drvdata(dev->parent);
387 struct cti_config *config = &drvdata->config;
388 u32 chan_bitmask;
389 u32 reg_value;
390 u32 reg_offset;
391 int err = 0;
392
393 if (channel_idx >= config->nr_ctm_channels)
394 return -EINVAL;
395
396 chan_bitmask = BIT(channel_idx);
397
398 guard(raw_spinlock_irqsave)(&drvdata->spinlock);
399
400 reg_value = config->ctiappset;
401 switch (op) {
402 case CTI_CHAN_SET:
403 config->ctiappset |= chan_bitmask;
404 reg_value = config->ctiappset;
405 reg_offset = CTIAPPSET;
406 break;
407
408 case CTI_CHAN_CLR:
409 config->ctiappset &= ~chan_bitmask;
410 reg_value = chan_bitmask;
411 reg_offset = CTIAPPCLEAR;
412 break;
413
414 case CTI_CHAN_PULSE:
415 config->ctiappset &= ~chan_bitmask;
416 reg_value = chan_bitmask;
417 reg_offset = CTIAPPPULSE;
418 break;
419
420 default:
421 err = -EINVAL;
422 break;
423 }
424
425 if ((err == 0) && cti_is_active(config))
426 cti_write_single_reg(drvdata, reg_offset, reg_value);
427
428 return err;
429 }
430
cti_add_sysfs_link(struct cti_drvdata * drvdata,struct cti_trig_con * tc)431 static bool cti_add_sysfs_link(struct cti_drvdata *drvdata,
432 struct cti_trig_con *tc)
433 {
434 struct coresight_sysfs_link link_info;
435 int link_err = 0;
436
437 link_info.orig = drvdata->csdev;
438 link_info.orig_name = tc->con_dev_name;
439 link_info.target = tc->con_dev;
440 link_info.target_name = dev_name(&drvdata->csdev->dev);
441
442 link_err = coresight_add_sysfs_link(&link_info);
443 if (link_err)
444 dev_warn(&drvdata->csdev->dev,
445 "Failed to set CTI sysfs link %s<=>%s\n",
446 link_info.orig_name, link_info.target_name);
447 return !link_err;
448 }
449
cti_remove_sysfs_link(struct cti_drvdata * drvdata,struct cti_trig_con * tc)450 static void cti_remove_sysfs_link(struct cti_drvdata *drvdata,
451 struct cti_trig_con *tc)
452 {
453 struct coresight_sysfs_link link_info;
454
455 link_info.orig = drvdata->csdev;
456 link_info.orig_name = tc->con_dev_name;
457 link_info.target = tc->con_dev;
458 link_info.target_name = dev_name(&drvdata->csdev->dev);
459 coresight_remove_sysfs_link(&link_info);
460 }
461
462 /*
463 * Look for a matching connection device name in the list of connections.
464 * If found then swap in the csdev name, set trig con association pointer
465 * and return found.
466 */
467 static bool
cti_match_fixup_csdev(struct cti_device * ctidev,const char * node_name,struct coresight_device * csdev)468 cti_match_fixup_csdev(struct cti_device *ctidev, const char *node_name,
469 struct coresight_device *csdev)
470 {
471 struct cti_trig_con *tc;
472 struct cti_drvdata *drvdata = container_of(ctidev, struct cti_drvdata,
473 ctidev);
474
475 list_for_each_entry(tc, &ctidev->trig_cons, node) {
476 if (tc->con_dev_name) {
477 if (!strcmp(node_name, tc->con_dev_name)) {
478 /* match: so swap in csdev name & dev */
479 tc->con_dev_name = dev_name(&csdev->dev);
480 tc->con_dev = csdev;
481 /* try to set sysfs link */
482 if (cti_add_sysfs_link(drvdata, tc))
483 return true;
484 /* link failed - remove CTI reference */
485 tc->con_dev = NULL;
486 break;
487 }
488 }
489 }
490 return false;
491 }
492
493 /*
494 * Search the cti list to add an associated CTI into the supplied CS device
495 * This will set the association if CTI declared before the CS device.
496 * (called from coresight_register() without coresight_mutex locked).
497 */
cti_add_assoc_to_csdev(struct coresight_device * csdev)498 static void cti_add_assoc_to_csdev(struct coresight_device *csdev)
499 {
500 struct cti_drvdata *ect_item;
501 struct cti_device *ctidev;
502 const char *node_name = NULL;
503
504 /* protect the list */
505 mutex_lock(&ect_mutex);
506
507 /* exit if current is an ECT device.*/
508 if ((csdev->type == CORESIGHT_DEV_TYPE_HELPER &&
509 csdev->subtype.helper_subtype ==
510 CORESIGHT_DEV_SUBTYPE_HELPER_ECT_CTI) ||
511 list_empty(&ect_net))
512 goto cti_add_done;
513
514 /* if we didn't find the csdev previously we used the fwnode name */
515 node_name = cti_plat_get_node_name(dev_fwnode(csdev->dev.parent));
516 if (!node_name)
517 goto cti_add_done;
518
519 /* for each CTI in list... */
520 list_for_each_entry(ect_item, &ect_net, node) {
521 ctidev = &ect_item->ctidev;
522 if (cti_match_fixup_csdev(ctidev, node_name, csdev)) {
523 /*
524 * if we found a matching csdev then update the ECT
525 * association pointer for the device with this CTI.
526 */
527 coresight_add_helper(csdev, ect_item->csdev);
528 break;
529 }
530 }
531 cti_add_done:
532 mutex_unlock(&ect_mutex);
533 }
534
535 /*
536 * Removing the associated devices is easier.
537 */
cti_remove_assoc_from_csdev(struct coresight_device * csdev)538 static void cti_remove_assoc_from_csdev(struct coresight_device *csdev)
539 {
540 struct cti_drvdata *ctidrv;
541 struct cti_trig_con *tc;
542 struct cti_device *ctidev;
543 union coresight_dev_subtype cti_subtype = {
544 .helper_subtype = CORESIGHT_DEV_SUBTYPE_HELPER_ECT_CTI
545 };
546 struct coresight_device *cti_csdev = coresight_find_output_type(
547 csdev->pdata, CORESIGHT_DEV_TYPE_HELPER, cti_subtype);
548
549 if (!cti_csdev)
550 return;
551
552 mutex_lock(&ect_mutex);
553 ctidrv = csdev_to_cti_drvdata(cti_csdev);
554 ctidev = &ctidrv->ctidev;
555 list_for_each_entry(tc, &ctidev->trig_cons, node) {
556 if (tc->con_dev == csdev) {
557 cti_remove_sysfs_link(ctidrv, tc);
558 tc->con_dev = NULL;
559 break;
560 }
561 }
562 mutex_unlock(&ect_mutex);
563 }
564
565 /*
566 * Operations to add and remove associated CTI.
567 * Register to coresight core driver as call back function.
568 */
569 static struct cti_assoc_op cti_assoc_ops = {
570 .add = cti_add_assoc_to_csdev,
571 .remove = cti_remove_assoc_from_csdev
572 };
573
574 /*
575 * Update the cross references where the associated device was found
576 * while we were building the connection info. This will occur if the
577 * assoc device was registered before the CTI.
578 */
cti_update_conn_xrefs(struct cti_drvdata * drvdata)579 static void cti_update_conn_xrefs(struct cti_drvdata *drvdata)
580 {
581 struct cti_trig_con *tc;
582 struct cti_device *ctidev = &drvdata->ctidev;
583
584 list_for_each_entry(tc, &ctidev->trig_cons, node) {
585 if (tc->con_dev) {
586 /* if we can set the sysfs link */
587 if (cti_add_sysfs_link(drvdata, tc))
588 /* set the CTI/csdev association */
589 coresight_add_helper(tc->con_dev,
590 drvdata->csdev);
591 else
592 /* otherwise remove reference from CTI */
593 tc->con_dev = NULL;
594 }
595 }
596 }
597
cti_remove_conn_xrefs(struct cti_drvdata * drvdata)598 static void cti_remove_conn_xrefs(struct cti_drvdata *drvdata)
599 {
600 struct cti_trig_con *tc;
601 struct cti_device *ctidev = &drvdata->ctidev;
602
603 list_for_each_entry(tc, &ctidev->trig_cons, node) {
604 if (tc->con_dev) {
605 cti_remove_sysfs_link(drvdata, tc);
606 tc->con_dev = NULL;
607 }
608 }
609 }
610
611 /** cti ect operations **/
cti_enable(struct coresight_device * csdev,enum cs_mode mode,struct coresight_path * path)612 int cti_enable(struct coresight_device *csdev, enum cs_mode mode,
613 struct coresight_path *path)
614 {
615 struct cti_drvdata *drvdata = csdev_to_cti_drvdata(csdev);
616
617 return cti_enable_hw(drvdata);
618 }
619
cti_disable(struct coresight_device * csdev,struct coresight_path * path)620 int cti_disable(struct coresight_device *csdev, struct coresight_path *path)
621 {
622 struct cti_drvdata *drvdata = csdev_to_cti_drvdata(csdev);
623
624 return cti_disable_hw(drvdata);
625 }
626
627 static const struct coresight_ops_helper cti_ops_ect = {
628 .enable = cti_enable,
629 .disable = cti_disable,
630 };
631
632 static const struct coresight_ops cti_ops = {
633 .helper_ops = &cti_ops_ect,
634 };
635
cti_remove(struct amba_device * adev)636 static void cti_remove(struct amba_device *adev)
637 {
638 struct cti_drvdata *drvdata = dev_get_drvdata(&adev->dev);
639 struct cti_drvdata *ect_item, *ect_tmp;
640
641 mutex_lock(&ect_mutex);
642 cti_remove_conn_xrefs(drvdata);
643
644 /* remove from the list */
645 list_for_each_entry_safe(ect_item, ect_tmp, &ect_net, node) {
646 if (ect_item == drvdata) {
647 list_del(&ect_item->node);
648 break;
649 }
650 }
651 mutex_unlock(&ect_mutex);
652
653 coresight_unregister(drvdata->csdev);
654 }
655
cti_probe(struct amba_device * adev,const struct amba_id * id)656 static int cti_probe(struct amba_device *adev, const struct amba_id *id)
657 {
658 int ret = 0;
659 void __iomem *base;
660 struct device *dev = &adev->dev;
661 struct cti_drvdata *drvdata = NULL;
662 struct coresight_desc cti_desc;
663 struct coresight_platform_data *pdata = NULL;
664 struct resource *res = &adev->res;
665
666 /* driver data*/
667 drvdata = devm_kzalloc(dev, sizeof(*drvdata), GFP_KERNEL);
668 if (!drvdata)
669 return -ENOMEM;
670
671 /* Validity for the resource is already checked by the AMBA core */
672 base = devm_ioremap_resource(dev, res);
673 if (IS_ERR(base))
674 return PTR_ERR(base);
675
676 drvdata->base = base;
677 cti_desc.access = CSDEV_ACCESS_IOMEM(base);
678
679 dev_set_drvdata(dev, drvdata);
680
681 /* default CTI device info */
682 drvdata->ctidev.cpu = -1;
683 drvdata->ctidev.nr_trig_con = 0;
684 drvdata->ctidev.ctm_id = 0;
685 INIT_LIST_HEAD(&drvdata->ctidev.trig_cons);
686
687 raw_spin_lock_init(&drvdata->spinlock);
688
689 /* initialise CTI driver config values */
690 cti_set_default_config(dev, drvdata);
691
692 pdata = coresight_cti_get_platform_data(dev);
693 if (IS_ERR(pdata)) {
694 dev_err(dev, "coresight_cti_get_platform_data err\n");
695 return PTR_ERR(pdata);
696 }
697
698 /*
699 * Set up device name - will depend if cpu bound or otherwise.
700 *
701 * CTI bound to cores will have the name cti_cpu<N> where N is th
702 * eCPU ID. System CTIs will have the name cti_sys<I> where I is an
703 * index allocated by order of discovery.
704 */
705 if (drvdata->ctidev.cpu >= 0)
706 cti_desc.name = devm_kasprintf(dev, GFP_KERNEL, "cti_cpu%d",
707 drvdata->ctidev.cpu);
708 else
709 cti_desc.name = coresight_alloc_device_name("cti_sys", dev);
710 if (!cti_desc.name)
711 return -ENOMEM;
712
713 /* create dynamic attributes for connections */
714 ret = cti_create_cons_sysfs(dev, drvdata);
715 if (ret) {
716 dev_err(dev, "%s: create dynamic sysfs entries failed\n",
717 cti_desc.name);
718 return ret;
719 }
720
721 /* set up coresight component description */
722 cti_desc.pdata = pdata;
723 cti_desc.type = CORESIGHT_DEV_TYPE_HELPER;
724 cti_desc.subtype.helper_subtype = CORESIGHT_DEV_SUBTYPE_HELPER_ECT_CTI;
725 cti_desc.ops = &cti_ops;
726 cti_desc.groups = drvdata->ctidev.con_groups;
727 cti_desc.dev = dev;
728
729 coresight_clear_self_claim_tag(&cti_desc.access);
730 drvdata->csdev = coresight_register(&cti_desc);
731 if (IS_ERR(drvdata->csdev))
732 return PTR_ERR(drvdata->csdev);
733
734 /* add to list of CTI devices */
735 mutex_lock(&ect_mutex);
736 list_add(&drvdata->node, &ect_net);
737 /* set any cross references */
738 cti_update_conn_xrefs(drvdata);
739 mutex_unlock(&ect_mutex);
740
741 /* all done - dec pm refcount */
742 pm_runtime_put(&adev->dev);
743 dev_info(&drvdata->csdev->dev, "CTI initialized\n");
744 return 0;
745 }
746
747 static struct amba_cs_uci_id uci_id_cti[] = {
748 {
749 /* CTI UCI data */
750 .devarch = 0x47701a14, /* CTI v2 */
751 .devarch_mask = 0xfff0ffff,
752 .devtype = 0x00000014, /* maj(0x4-debug) min(0x1-ECT) */
753 }
754 };
755
756 static const struct amba_id cti_ids[] = {
757 CS_AMBA_ID(0x000bb906), /* Coresight CTI (SoC 400), C-A72, C-A57 */
758 CS_AMBA_ID(0x000bb922), /* CTI - C-A8 */
759 CS_AMBA_ID(0x000bb9a8), /* CTI - C-A53 */
760 CS_AMBA_ID(0x000bb9aa), /* CTI - C-A73 */
761 CS_AMBA_UCI_ID(0x000bb9da, uci_id_cti), /* CTI - C-A35 */
762 CS_AMBA_UCI_ID(0x000bb9ed, uci_id_cti), /* Coresight CTI (SoC 600) */
763 { 0, 0, NULL },
764 };
765
766 MODULE_DEVICE_TABLE(amba, cti_ids);
767
768 static struct amba_driver cti_driver = {
769 .drv = {
770 .name = "coresight-cti",
771 .suppress_bind_attrs = true,
772 },
773 .probe = cti_probe,
774 .remove = cti_remove,
775 .id_table = cti_ids,
776 };
777
cti_init(void)778 static int __init cti_init(void)
779 {
780 int ret;
781
782 ret = amba_driver_register(&cti_driver);
783 if (ret)
784 pr_info("Error registering cti driver\n");
785 coresight_set_cti_ops(&cti_assoc_ops);
786 return ret;
787 }
788
cti_exit(void)789 static void __exit cti_exit(void)
790 {
791 coresight_remove_cti_ops();
792 amba_driver_unregister(&cti_driver);
793 }
794
795 module_init(cti_init);
796 module_exit(cti_exit);
797
798 MODULE_AUTHOR("Mike Leach <mike.leach@linaro.org>");
799 MODULE_DESCRIPTION("Arm CoreSight CTI Driver");
800 MODULE_LICENSE("GPL v2");
801