Merge branch 'perf-urgent-for-linus' of git://git.kernel.org/pub/scm/linux/kernel...
[cris-mirror.git] / drivers / hwtracing / coresight / coresight-etb10.c
blob4d20b0be0c0b6a337cdec7cbbfd17f8ce94e2a63
1 /* Copyright (c) 2011-2012, The Linux Foundation. All rights reserved.
3 * Description: CoreSight Embedded Trace Buffer driver
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 and
7 * only version 2 as published by the Free Software Foundation.
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
15 #include <asm/local.h>
16 #include <linux/kernel.h>
17 #include <linux/init.h>
18 #include <linux/types.h>
19 #include <linux/device.h>
20 #include <linux/io.h>
21 #include <linux/err.h>
22 #include <linux/fs.h>
23 #include <linux/miscdevice.h>
24 #include <linux/uaccess.h>
25 #include <linux/slab.h>
26 #include <linux/spinlock.h>
27 #include <linux/pm_runtime.h>
28 #include <linux/seq_file.h>
29 #include <linux/coresight.h>
30 #include <linux/amba/bus.h>
31 #include <linux/clk.h>
32 #include <linux/circ_buf.h>
33 #include <linux/mm.h>
34 #include <linux/perf_event.h>
36 #include <asm/local.h>
38 #include "coresight-priv.h"
40 #define ETB_RAM_DEPTH_REG 0x004
41 #define ETB_STATUS_REG 0x00c
42 #define ETB_RAM_READ_DATA_REG 0x010
43 #define ETB_RAM_READ_POINTER 0x014
44 #define ETB_RAM_WRITE_POINTER 0x018
45 #define ETB_TRG 0x01c
46 #define ETB_CTL_REG 0x020
47 #define ETB_RWD_REG 0x024
48 #define ETB_FFSR 0x300
49 #define ETB_FFCR 0x304
50 #define ETB_ITMISCOP0 0xee0
51 #define ETB_ITTRFLINACK 0xee4
52 #define ETB_ITTRFLIN 0xee8
53 #define ETB_ITATBDATA0 0xeeC
54 #define ETB_ITATBCTR2 0xef0
55 #define ETB_ITATBCTR1 0xef4
56 #define ETB_ITATBCTR0 0xef8
58 /* register description */
59 /* STS - 0x00C */
60 #define ETB_STATUS_RAM_FULL BIT(0)
61 /* CTL - 0x020 */
62 #define ETB_CTL_CAPT_EN BIT(0)
63 /* FFCR - 0x304 */
64 #define ETB_FFCR_EN_FTC BIT(0)
65 #define ETB_FFCR_FON_MAN BIT(6)
66 #define ETB_FFCR_STOP_FI BIT(12)
67 #define ETB_FFCR_STOP_TRIGGER BIT(13)
69 #define ETB_FFCR_BIT 6
70 #define ETB_FFSR_BIT 1
71 #define ETB_FRAME_SIZE_WORDS 4
73 /**
74 * struct etb_drvdata - specifics associated to an ETB component
75 * @base: memory mapped base address for this component.
76 * @dev: the device entity associated to this component.
77 * @atclk: optional clock for the core parts of the ETB.
78 * @csdev: component vitals needed by the framework.
79 * @miscdev: specifics to handle "/dev/xyz.etb" entry.
80 * @spinlock: only one at a time pls.
81 * @reading: synchronise user space access to etb buffer.
82 * @mode: this ETB is being used.
83 * @buf: area of memory where ETB buffer content gets sent.
84 * @buffer_depth: size of @buf.
85 * @trigger_cntr: amount of words to store after a trigger.
87 struct etb_drvdata {
88 void __iomem *base;
89 struct device *dev;
90 struct clk *atclk;
91 struct coresight_device *csdev;
92 struct miscdevice miscdev;
93 spinlock_t spinlock;
94 local_t reading;
95 local_t mode;
96 u8 *buf;
97 u32 buffer_depth;
98 u32 trigger_cntr;
101 static unsigned int etb_get_buffer_depth(struct etb_drvdata *drvdata)
103 u32 depth = 0;
105 pm_runtime_get_sync(drvdata->dev);
107 /* RO registers don't need locking */
108 depth = readl_relaxed(drvdata->base + ETB_RAM_DEPTH_REG);
110 pm_runtime_put(drvdata->dev);
111 return depth;
114 static void etb_enable_hw(struct etb_drvdata *drvdata)
116 int i;
117 u32 depth;
119 CS_UNLOCK(drvdata->base);
121 depth = drvdata->buffer_depth;
122 /* reset write RAM pointer address */
123 writel_relaxed(0x0, drvdata->base + ETB_RAM_WRITE_POINTER);
124 /* clear entire RAM buffer */
125 for (i = 0; i < depth; i++)
126 writel_relaxed(0x0, drvdata->base + ETB_RWD_REG);
128 /* reset write RAM pointer address */
129 writel_relaxed(0x0, drvdata->base + ETB_RAM_WRITE_POINTER);
130 /* reset read RAM pointer address */
131 writel_relaxed(0x0, drvdata->base + ETB_RAM_READ_POINTER);
133 writel_relaxed(drvdata->trigger_cntr, drvdata->base + ETB_TRG);
134 writel_relaxed(ETB_FFCR_EN_FTC | ETB_FFCR_STOP_TRIGGER,
135 drvdata->base + ETB_FFCR);
136 /* ETB trace capture enable */
137 writel_relaxed(ETB_CTL_CAPT_EN, drvdata->base + ETB_CTL_REG);
139 CS_LOCK(drvdata->base);
142 static int etb_enable(struct coresight_device *csdev, u32 mode)
144 u32 val;
145 unsigned long flags;
146 struct etb_drvdata *drvdata = dev_get_drvdata(csdev->dev.parent);
148 val = local_cmpxchg(&drvdata->mode,
149 CS_MODE_DISABLED, mode);
151 * When accessing from Perf, a HW buffer can be handled
152 * by a single trace entity. In sysFS mode many tracers
153 * can be logging to the same HW buffer.
155 if (val == CS_MODE_PERF)
156 return -EBUSY;
158 /* Nothing to do, the tracer is already enabled. */
159 if (val == CS_MODE_SYSFS)
160 goto out;
162 spin_lock_irqsave(&drvdata->spinlock, flags);
163 etb_enable_hw(drvdata);
164 spin_unlock_irqrestore(&drvdata->spinlock, flags);
166 out:
167 dev_info(drvdata->dev, "ETB enabled\n");
168 return 0;
171 static void etb_disable_hw(struct etb_drvdata *drvdata)
173 u32 ffcr;
175 CS_UNLOCK(drvdata->base);
177 ffcr = readl_relaxed(drvdata->base + ETB_FFCR);
178 /* stop formatter when a stop has completed */
179 ffcr |= ETB_FFCR_STOP_FI;
180 writel_relaxed(ffcr, drvdata->base + ETB_FFCR);
181 /* manually generate a flush of the system */
182 ffcr |= ETB_FFCR_FON_MAN;
183 writel_relaxed(ffcr, drvdata->base + ETB_FFCR);
185 if (coresight_timeout(drvdata->base, ETB_FFCR, ETB_FFCR_BIT, 0)) {
186 dev_err(drvdata->dev,
187 "timeout observed when probing at offset %#x\n",
188 ETB_FFCR);
191 /* disable trace capture */
192 writel_relaxed(0x0, drvdata->base + ETB_CTL_REG);
194 if (coresight_timeout(drvdata->base, ETB_FFSR, ETB_FFSR_BIT, 1)) {
195 dev_err(drvdata->dev,
196 "timeout observed when probing at offset %#x\n",
197 ETB_FFCR);
200 CS_LOCK(drvdata->base);
203 static void etb_dump_hw(struct etb_drvdata *drvdata)
205 int i;
206 u8 *buf_ptr;
207 u32 read_data, depth;
208 u32 read_ptr, write_ptr;
209 u32 frame_off, frame_endoff;
211 CS_UNLOCK(drvdata->base);
213 read_ptr = readl_relaxed(drvdata->base + ETB_RAM_READ_POINTER);
214 write_ptr = readl_relaxed(drvdata->base + ETB_RAM_WRITE_POINTER);
216 frame_off = write_ptr % ETB_FRAME_SIZE_WORDS;
217 frame_endoff = ETB_FRAME_SIZE_WORDS - frame_off;
218 if (frame_off) {
219 dev_err(drvdata->dev,
220 "write_ptr: %lu not aligned to formatter frame size\n",
221 (unsigned long)write_ptr);
222 dev_err(drvdata->dev, "frameoff: %lu, frame_endoff: %lu\n",
223 (unsigned long)frame_off, (unsigned long)frame_endoff);
224 write_ptr += frame_endoff;
227 if ((readl_relaxed(drvdata->base + ETB_STATUS_REG)
228 & ETB_STATUS_RAM_FULL) == 0)
229 writel_relaxed(0x0, drvdata->base + ETB_RAM_READ_POINTER);
230 else
231 writel_relaxed(write_ptr, drvdata->base + ETB_RAM_READ_POINTER);
233 depth = drvdata->buffer_depth;
234 buf_ptr = drvdata->buf;
235 for (i = 0; i < depth; i++) {
236 read_data = readl_relaxed(drvdata->base +
237 ETB_RAM_READ_DATA_REG);
238 *buf_ptr++ = read_data >> 0;
239 *buf_ptr++ = read_data >> 8;
240 *buf_ptr++ = read_data >> 16;
241 *buf_ptr++ = read_data >> 24;
244 if (frame_off) {
245 buf_ptr -= (frame_endoff * 4);
246 for (i = 0; i < frame_endoff; i++) {
247 *buf_ptr++ = 0x0;
248 *buf_ptr++ = 0x0;
249 *buf_ptr++ = 0x0;
250 *buf_ptr++ = 0x0;
254 writel_relaxed(read_ptr, drvdata->base + ETB_RAM_READ_POINTER);
256 CS_LOCK(drvdata->base);
259 static void etb_disable(struct coresight_device *csdev)
261 struct etb_drvdata *drvdata = dev_get_drvdata(csdev->dev.parent);
262 unsigned long flags;
264 spin_lock_irqsave(&drvdata->spinlock, flags);
265 etb_disable_hw(drvdata);
266 etb_dump_hw(drvdata);
267 spin_unlock_irqrestore(&drvdata->spinlock, flags);
269 local_set(&drvdata->mode, CS_MODE_DISABLED);
271 dev_info(drvdata->dev, "ETB disabled\n");
274 static void *etb_alloc_buffer(struct coresight_device *csdev, int cpu,
275 void **pages, int nr_pages, bool overwrite)
277 int node;
278 struct cs_buffers *buf;
280 if (cpu == -1)
281 cpu = smp_processor_id();
282 node = cpu_to_node(cpu);
284 buf = kzalloc_node(sizeof(struct cs_buffers), GFP_KERNEL, node);
285 if (!buf)
286 return NULL;
288 buf->snapshot = overwrite;
289 buf->nr_pages = nr_pages;
290 buf->data_pages = pages;
292 return buf;
295 static void etb_free_buffer(void *config)
297 struct cs_buffers *buf = config;
299 kfree(buf);
302 static int etb_set_buffer(struct coresight_device *csdev,
303 struct perf_output_handle *handle,
304 void *sink_config)
306 int ret = 0;
307 unsigned long head;
308 struct cs_buffers *buf = sink_config;
310 /* wrap head around to the amount of space we have */
311 head = handle->head & ((buf->nr_pages << PAGE_SHIFT) - 1);
313 /* find the page to write to */
314 buf->cur = head / PAGE_SIZE;
316 /* and offset within that page */
317 buf->offset = head % PAGE_SIZE;
319 local_set(&buf->data_size, 0);
321 return ret;
324 static unsigned long etb_reset_buffer(struct coresight_device *csdev,
325 struct perf_output_handle *handle,
326 void *sink_config, bool *lost)
328 unsigned long size = 0;
329 struct cs_buffers *buf = sink_config;
331 if (buf) {
333 * In snapshot mode ->data_size holds the new address of the
334 * ring buffer's head. The size itself is the whole address
335 * range since we want the latest information.
337 if (buf->snapshot)
338 handle->head = local_xchg(&buf->data_size,
339 buf->nr_pages << PAGE_SHIFT);
342 * Tell the tracer PMU how much we got in this run and if
343 * something went wrong along the way. Nobody else can use
344 * this cs_buffers instance until we are done. As such
345 * resetting parameters here and squaring off with the ring
346 * buffer API in the tracer PMU is fine.
348 *lost = !!local_xchg(&buf->lost, 0);
349 size = local_xchg(&buf->data_size, 0);
352 return size;
355 static void etb_update_buffer(struct coresight_device *csdev,
356 struct perf_output_handle *handle,
357 void *sink_config)
359 int i, cur;
360 u8 *buf_ptr;
361 u32 read_ptr, write_ptr, capacity;
362 u32 status, read_data, to_read;
363 unsigned long offset;
364 struct cs_buffers *buf = sink_config;
365 struct etb_drvdata *drvdata = dev_get_drvdata(csdev->dev.parent);
367 if (!buf)
368 return;
370 capacity = drvdata->buffer_depth * ETB_FRAME_SIZE_WORDS;
372 CS_UNLOCK(drvdata->base);
373 etb_disable_hw(drvdata);
375 /* unit is in words, not bytes */
376 read_ptr = readl_relaxed(drvdata->base + ETB_RAM_READ_POINTER);
377 write_ptr = readl_relaxed(drvdata->base + ETB_RAM_WRITE_POINTER);
380 * Entries should be aligned to the frame size. If they are not
381 * go back to the last alignement point to give decoding tools a
382 * chance to fix things.
384 if (write_ptr % ETB_FRAME_SIZE_WORDS) {
385 dev_err(drvdata->dev,
386 "write_ptr: %lu not aligned to formatter frame size\n",
387 (unsigned long)write_ptr);
389 write_ptr &= ~(ETB_FRAME_SIZE_WORDS - 1);
390 local_inc(&buf->lost);
394 * Get a hold of the status register and see if a wrap around
395 * has occurred. If so adjust things accordingly. Otherwise
396 * start at the beginning and go until the write pointer has
397 * been reached.
399 status = readl_relaxed(drvdata->base + ETB_STATUS_REG);
400 if (status & ETB_STATUS_RAM_FULL) {
401 local_inc(&buf->lost);
402 to_read = capacity;
403 read_ptr = write_ptr;
404 } else {
405 to_read = CIRC_CNT(write_ptr, read_ptr, drvdata->buffer_depth);
406 to_read *= ETB_FRAME_SIZE_WORDS;
410 * Make sure we don't overwrite data that hasn't been consumed yet.
411 * It is entirely possible that the HW buffer has more data than the
412 * ring buffer can currently handle. If so adjust the start address
413 * to take only the last traces.
415 * In snapshot mode we are looking to get the latest traces only and as
416 * such, we don't care about not overwriting data that hasn't been
417 * processed by user space.
419 if (!buf->snapshot && to_read > handle->size) {
420 u32 mask = ~(ETB_FRAME_SIZE_WORDS - 1);
422 /* The new read pointer must be frame size aligned */
423 to_read = handle->size & mask;
425 * Move the RAM read pointer up, keeping in mind that
426 * everything is in frame size units.
428 read_ptr = (write_ptr + drvdata->buffer_depth) -
429 to_read / ETB_FRAME_SIZE_WORDS;
430 /* Wrap around if need be*/
431 if (read_ptr > (drvdata->buffer_depth - 1))
432 read_ptr -= drvdata->buffer_depth;
433 /* let the decoder know we've skipped ahead */
434 local_inc(&buf->lost);
437 /* finally tell HW where we want to start reading from */
438 writel_relaxed(read_ptr, drvdata->base + ETB_RAM_READ_POINTER);
440 cur = buf->cur;
441 offset = buf->offset;
442 for (i = 0; i < to_read; i += 4) {
443 buf_ptr = buf->data_pages[cur] + offset;
444 read_data = readl_relaxed(drvdata->base +
445 ETB_RAM_READ_DATA_REG);
446 *buf_ptr++ = read_data >> 0;
447 *buf_ptr++ = read_data >> 8;
448 *buf_ptr++ = read_data >> 16;
449 *buf_ptr++ = read_data >> 24;
451 offset += 4;
452 if (offset >= PAGE_SIZE) {
453 offset = 0;
454 cur++;
455 /* wrap around at the end of the buffer */
456 cur &= buf->nr_pages - 1;
460 /* reset ETB buffer for next run */
461 writel_relaxed(0x0, drvdata->base + ETB_RAM_READ_POINTER);
462 writel_relaxed(0x0, drvdata->base + ETB_RAM_WRITE_POINTER);
465 * In snapshot mode all we have to do is communicate to
466 * perf_aux_output_end() the address of the current head. In full
467 * trace mode the same function expects a size to move rb->aux_head
468 * forward.
470 if (buf->snapshot)
471 local_set(&buf->data_size, (cur * PAGE_SIZE) + offset);
472 else
473 local_add(to_read, &buf->data_size);
475 etb_enable_hw(drvdata);
476 CS_LOCK(drvdata->base);
479 static const struct coresight_ops_sink etb_sink_ops = {
480 .enable = etb_enable,
481 .disable = etb_disable,
482 .alloc_buffer = etb_alloc_buffer,
483 .free_buffer = etb_free_buffer,
484 .set_buffer = etb_set_buffer,
485 .reset_buffer = etb_reset_buffer,
486 .update_buffer = etb_update_buffer,
489 static const struct coresight_ops etb_cs_ops = {
490 .sink_ops = &etb_sink_ops,
493 static void etb_dump(struct etb_drvdata *drvdata)
495 unsigned long flags;
497 spin_lock_irqsave(&drvdata->spinlock, flags);
498 if (local_read(&drvdata->mode) == CS_MODE_SYSFS) {
499 etb_disable_hw(drvdata);
500 etb_dump_hw(drvdata);
501 etb_enable_hw(drvdata);
503 spin_unlock_irqrestore(&drvdata->spinlock, flags);
505 dev_info(drvdata->dev, "ETB dumped\n");
508 static int etb_open(struct inode *inode, struct file *file)
510 struct etb_drvdata *drvdata = container_of(file->private_data,
511 struct etb_drvdata, miscdev);
513 if (local_cmpxchg(&drvdata->reading, 0, 1))
514 return -EBUSY;
516 dev_dbg(drvdata->dev, "%s: successfully opened\n", __func__);
517 return 0;
520 static ssize_t etb_read(struct file *file, char __user *data,
521 size_t len, loff_t *ppos)
523 u32 depth;
524 struct etb_drvdata *drvdata = container_of(file->private_data,
525 struct etb_drvdata, miscdev);
527 etb_dump(drvdata);
529 depth = drvdata->buffer_depth;
530 if (*ppos + len > depth * 4)
531 len = depth * 4 - *ppos;
533 if (copy_to_user(data, drvdata->buf + *ppos, len)) {
534 dev_dbg(drvdata->dev, "%s: copy_to_user failed\n", __func__);
535 return -EFAULT;
538 *ppos += len;
540 dev_dbg(drvdata->dev, "%s: %zu bytes copied, %d bytes left\n",
541 __func__, len, (int)(depth * 4 - *ppos));
542 return len;
545 static int etb_release(struct inode *inode, struct file *file)
547 struct etb_drvdata *drvdata = container_of(file->private_data,
548 struct etb_drvdata, miscdev);
549 local_set(&drvdata->reading, 0);
551 dev_dbg(drvdata->dev, "%s: released\n", __func__);
552 return 0;
555 static const struct file_operations etb_fops = {
556 .owner = THIS_MODULE,
557 .open = etb_open,
558 .read = etb_read,
559 .release = etb_release,
560 .llseek = no_llseek,
563 #define coresight_etb10_simple_func(name, offset) \
564 coresight_simple_func(struct etb_drvdata, name, offset)
566 coresight_etb10_simple_func(rdp, ETB_RAM_DEPTH_REG);
567 coresight_etb10_simple_func(sts, ETB_STATUS_REG);
568 coresight_etb10_simple_func(rrp, ETB_RAM_READ_POINTER);
569 coresight_etb10_simple_func(rwp, ETB_RAM_WRITE_POINTER);
570 coresight_etb10_simple_func(trg, ETB_TRG);
571 coresight_etb10_simple_func(ctl, ETB_CTL_REG);
572 coresight_etb10_simple_func(ffsr, ETB_FFSR);
573 coresight_etb10_simple_func(ffcr, ETB_FFCR);
575 static struct attribute *coresight_etb_mgmt_attrs[] = {
576 &dev_attr_rdp.attr,
577 &dev_attr_sts.attr,
578 &dev_attr_rrp.attr,
579 &dev_attr_rwp.attr,
580 &dev_attr_trg.attr,
581 &dev_attr_ctl.attr,
582 &dev_attr_ffsr.attr,
583 &dev_attr_ffcr.attr,
584 NULL,
587 static ssize_t trigger_cntr_show(struct device *dev,
588 struct device_attribute *attr, char *buf)
590 struct etb_drvdata *drvdata = dev_get_drvdata(dev->parent);
591 unsigned long val = drvdata->trigger_cntr;
593 return sprintf(buf, "%#lx\n", val);
596 static ssize_t trigger_cntr_store(struct device *dev,
597 struct device_attribute *attr,
598 const char *buf, size_t size)
600 int ret;
601 unsigned long val;
602 struct etb_drvdata *drvdata = dev_get_drvdata(dev->parent);
604 ret = kstrtoul(buf, 16, &val);
605 if (ret)
606 return ret;
608 drvdata->trigger_cntr = val;
609 return size;
611 static DEVICE_ATTR_RW(trigger_cntr);
613 static struct attribute *coresight_etb_attrs[] = {
614 &dev_attr_trigger_cntr.attr,
615 NULL,
618 static const struct attribute_group coresight_etb_group = {
619 .attrs = coresight_etb_attrs,
622 static const struct attribute_group coresight_etb_mgmt_group = {
623 .attrs = coresight_etb_mgmt_attrs,
624 .name = "mgmt",
627 const struct attribute_group *coresight_etb_groups[] = {
628 &coresight_etb_group,
629 &coresight_etb_mgmt_group,
630 NULL,
633 static int etb_probe(struct amba_device *adev, const struct amba_id *id)
635 int ret;
636 void __iomem *base;
637 struct device *dev = &adev->dev;
638 struct coresight_platform_data *pdata = NULL;
639 struct etb_drvdata *drvdata;
640 struct resource *res = &adev->res;
641 struct coresight_desc *desc;
642 struct device_node *np = adev->dev.of_node;
644 if (np) {
645 pdata = of_get_coresight_platform_data(dev, np);
646 if (IS_ERR(pdata))
647 return PTR_ERR(pdata);
648 adev->dev.platform_data = pdata;
651 drvdata = devm_kzalloc(dev, sizeof(*drvdata), GFP_KERNEL);
652 if (!drvdata)
653 return -ENOMEM;
655 drvdata->dev = &adev->dev;
656 drvdata->atclk = devm_clk_get(&adev->dev, "atclk"); /* optional */
657 if (!IS_ERR(drvdata->atclk)) {
658 ret = clk_prepare_enable(drvdata->atclk);
659 if (ret)
660 return ret;
662 dev_set_drvdata(dev, drvdata);
664 /* validity for the resource is already checked by the AMBA core */
665 base = devm_ioremap_resource(dev, res);
666 if (IS_ERR(base))
667 return PTR_ERR(base);
669 drvdata->base = base;
671 spin_lock_init(&drvdata->spinlock);
673 drvdata->buffer_depth = etb_get_buffer_depth(drvdata);
674 pm_runtime_put(&adev->dev);
676 if (drvdata->buffer_depth & 0x80000000)
677 return -EINVAL;
679 drvdata->buf = devm_kzalloc(dev,
680 drvdata->buffer_depth * 4, GFP_KERNEL);
681 if (!drvdata->buf) {
682 dev_err(dev, "Failed to allocate %u bytes for buffer data\n",
683 drvdata->buffer_depth * 4);
684 return -ENOMEM;
687 desc = devm_kzalloc(dev, sizeof(*desc), GFP_KERNEL);
688 if (!desc)
689 return -ENOMEM;
691 desc->type = CORESIGHT_DEV_TYPE_SINK;
692 desc->subtype.sink_subtype = CORESIGHT_DEV_SUBTYPE_SINK_BUFFER;
693 desc->ops = &etb_cs_ops;
694 desc->pdata = pdata;
695 desc->dev = dev;
696 desc->groups = coresight_etb_groups;
697 drvdata->csdev = coresight_register(desc);
698 if (IS_ERR(drvdata->csdev))
699 return PTR_ERR(drvdata->csdev);
701 drvdata->miscdev.name = pdata->name;
702 drvdata->miscdev.minor = MISC_DYNAMIC_MINOR;
703 drvdata->miscdev.fops = &etb_fops;
704 ret = misc_register(&drvdata->miscdev);
705 if (ret)
706 goto err_misc_register;
708 return 0;
710 err_misc_register:
711 coresight_unregister(drvdata->csdev);
712 return ret;
715 #ifdef CONFIG_PM
716 static int etb_runtime_suspend(struct device *dev)
718 struct etb_drvdata *drvdata = dev_get_drvdata(dev);
720 if (drvdata && !IS_ERR(drvdata->atclk))
721 clk_disable_unprepare(drvdata->atclk);
723 return 0;
726 static int etb_runtime_resume(struct device *dev)
728 struct etb_drvdata *drvdata = dev_get_drvdata(dev);
730 if (drvdata && !IS_ERR(drvdata->atclk))
731 clk_prepare_enable(drvdata->atclk);
733 return 0;
735 #endif
737 static const struct dev_pm_ops etb_dev_pm_ops = {
738 SET_RUNTIME_PM_OPS(etb_runtime_suspend, etb_runtime_resume, NULL)
741 static struct amba_id etb_ids[] = {
743 .id = 0x0003b907,
744 .mask = 0x0003ffff,
746 { 0, 0},
749 static struct amba_driver etb_driver = {
750 .drv = {
751 .name = "coresight-etb10",
752 .owner = THIS_MODULE,
753 .pm = &etb_dev_pm_ops,
754 .suppress_bind_attrs = true,
757 .probe = etb_probe,
758 .id_table = etb_ids,
760 builtin_amba_driver(etb_driver);