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Alexander Shishkinba826642015-09-22 15:47:18 +03001/*
2 * Intel(R) Trace Hub Memory Storage Unit
3 *
4 * Copyright (C) 2014-2015 Intel Corporation.
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope it will be useful, but WITHOUT
11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * more details.
14 */
15
16#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
17
18#include <linux/types.h>
19#include <linux/module.h>
20#include <linux/device.h>
21#include <linux/uaccess.h>
22#include <linux/sizes.h>
23#include <linux/printk.h>
24#include <linux/slab.h>
25#include <linux/mm.h>
26#include <linux/fs.h>
27#include <linux/io.h>
28#include <linux/dma-mapping.h>
29
30#include <asm/cacheflush.h>
31
32#include "intel_th.h"
33#include "msu.h"
34
35#define msc_dev(x) (&(x)->thdev->dev)
36
37/**
38 * struct msc_block - multiblock mode block descriptor
39 * @bdesc: pointer to hardware descriptor (beginning of the block)
40 * @addr: physical address of the block
41 */
42struct msc_block {
43 struct msc_block_desc *bdesc;
44 dma_addr_t addr;
45};
46
47/**
48 * struct msc_window - multiblock mode window descriptor
49 * @entry: window list linkage (msc::win_list)
50 * @pgoff: page offset into the buffer that this window starts at
51 * @nr_blocks: number of blocks (pages) in this window
52 * @block: array of block descriptors
53 */
54struct msc_window {
55 struct list_head entry;
56 unsigned long pgoff;
57 unsigned int nr_blocks;
58 struct msc *msc;
59 struct msc_block block[0];
60};
61
62/**
63 * struct msc_iter - iterator for msc buffer
64 * @entry: msc::iter_list linkage
65 * @msc: pointer to the MSC device
66 * @start_win: oldest window
67 * @win: current window
68 * @offset: current logical offset into the buffer
69 * @start_block: oldest block in the window
70 * @block: block number in the window
71 * @block_off: offset into current block
72 * @wrap_count: block wrapping handling
73 * @eof: end of buffer reached
74 */
75struct msc_iter {
76 struct list_head entry;
77 struct msc *msc;
78 struct msc_window *start_win;
79 struct msc_window *win;
80 unsigned long offset;
81 int start_block;
82 int block;
83 unsigned int block_off;
84 unsigned int wrap_count;
85 unsigned int eof;
86};
87
88/**
89 * struct msc - MSC device representation
90 * @reg_base: register window base address
91 * @thdev: intel_th_device pointer
92 * @win_list: list of windows in multiblock mode
Alexander Shishkin09abe5a2019-05-03 11:44:34 +030093 * @single_sgt: single mode buffer
Alexander Shishkinba826642015-09-22 15:47:18 +030094 * @nr_pages: total number of pages allocated for this buffer
95 * @single_sz: amount of data in single mode
96 * @single_wrap: single mode wrap occurred
97 * @base: buffer's base pointer
98 * @base_addr: buffer's base address
99 * @user_count: number of users of the buffer
100 * @mmap_count: number of mappings
101 * @buf_mutex: mutex to serialize access to buffer-related bits
102
103 * @enabled: MSC is enabled
104 * @wrap: wrapping is enabled
105 * @mode: MSC operating mode
106 * @burst_len: write burst length
107 * @index: number of this MSC in the MSU
108 */
109struct msc {
110 void __iomem *reg_base;
111 struct intel_th_device *thdev;
112
113 struct list_head win_list;
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300114 struct sg_table single_sgt;
Alexander Shishkinba826642015-09-22 15:47:18 +0300115 unsigned long nr_pages;
116 unsigned long single_sz;
117 unsigned int single_wrap : 1;
118 void *base;
119 dma_addr_t base_addr;
120
121 /* <0: no buffer, 0: no users, >0: active users */
122 atomic_t user_count;
123
124 atomic_t mmap_count;
125 struct mutex buf_mutex;
126
Alexander Shishkinba826642015-09-22 15:47:18 +0300127 struct list_head iter_list;
128
129 /* config */
130 unsigned int enabled : 1,
131 wrap : 1;
132 unsigned int mode;
133 unsigned int burst_len;
134 unsigned int index;
135};
136
137static inline bool msc_block_is_empty(struct msc_block_desc *bdesc)
138{
139 /* header hasn't been written */
140 if (!bdesc->valid_dw)
141 return true;
142
143 /* valid_dw includes the header */
144 if (!msc_data_sz(bdesc))
145 return true;
146
147 return false;
148}
149
150/**
151 * msc_oldest_window() - locate the window with oldest data
152 * @msc: MSC device
153 *
154 * This should only be used in multiblock mode. Caller should hold the
155 * msc::user_count reference.
156 *
157 * Return: the oldest window with valid data
158 */
159static struct msc_window *msc_oldest_window(struct msc *msc)
160{
161 struct msc_window *win;
162 u32 reg = ioread32(msc->reg_base + REG_MSU_MSC0NWSA);
163 unsigned long win_addr = (unsigned long)reg << PAGE_SHIFT;
164 unsigned int found = 0;
165
166 if (list_empty(&msc->win_list))
167 return NULL;
168
169 /*
170 * we might need a radix tree for this, depending on how
171 * many windows a typical user would allocate; ideally it's
172 * something like 2, in which case we're good
173 */
174 list_for_each_entry(win, &msc->win_list, entry) {
175 if (win->block[0].addr == win_addr)
176 found++;
177
178 /* skip the empty ones */
179 if (msc_block_is_empty(win->block[0].bdesc))
180 continue;
181
182 if (found)
183 return win;
184 }
185
186 return list_entry(msc->win_list.next, struct msc_window, entry);
187}
188
189/**
190 * msc_win_oldest_block() - locate the oldest block in a given window
191 * @win: window to look at
192 *
193 * Return: index of the block with the oldest data
194 */
195static unsigned int msc_win_oldest_block(struct msc_window *win)
196{
197 unsigned int blk;
198 struct msc_block_desc *bdesc = win->block[0].bdesc;
199
200 /* without wrapping, first block is the oldest */
201 if (!msc_block_wrapped(bdesc))
202 return 0;
203
204 /*
205 * with wrapping, last written block contains both the newest and the
206 * oldest data for this window.
207 */
208 for (blk = 0; blk < win->nr_blocks; blk++) {
209 bdesc = win->block[blk].bdesc;
210
211 if (msc_block_last_written(bdesc))
212 return blk;
213 }
214
215 return 0;
216}
217
218/**
219 * msc_is_last_win() - check if a window is the last one for a given MSC
220 * @win: window
221 * Return: true if @win is the last window in MSC's multiblock buffer
222 */
223static inline bool msc_is_last_win(struct msc_window *win)
224{
225 return win->entry.next == &win->msc->win_list;
226}
227
228/**
229 * msc_next_window() - return next window in the multiblock buffer
230 * @win: current window
231 *
232 * Return: window following the current one
233 */
234static struct msc_window *msc_next_window(struct msc_window *win)
235{
236 if (msc_is_last_win(win))
237 return list_entry(win->msc->win_list.next, struct msc_window,
238 entry);
239
240 return list_entry(win->entry.next, struct msc_window, entry);
241}
242
243static struct msc_block_desc *msc_iter_bdesc(struct msc_iter *iter)
244{
245 return iter->win->block[iter->block].bdesc;
246}
247
248static void msc_iter_init(struct msc_iter *iter)
249{
250 memset(iter, 0, sizeof(*iter));
251 iter->start_block = -1;
252 iter->block = -1;
253}
254
255static struct msc_iter *msc_iter_install(struct msc *msc)
256{
257 struct msc_iter *iter;
258
259 iter = kzalloc(sizeof(*iter), GFP_KERNEL);
260 if (!iter)
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200261 return ERR_PTR(-ENOMEM);
262
263 mutex_lock(&msc->buf_mutex);
264
265 /*
266 * Reading and tracing are mutually exclusive; if msc is
267 * enabled, open() will fail; otherwise existing readers
268 * will prevent enabling the msc and the rest of fops don't
269 * need to worry about it.
270 */
271 if (msc->enabled) {
272 kfree(iter);
273 iter = ERR_PTR(-EBUSY);
274 goto unlock;
275 }
Alexander Shishkinba826642015-09-22 15:47:18 +0300276
277 msc_iter_init(iter);
278 iter->msc = msc;
279
Alexander Shishkinba826642015-09-22 15:47:18 +0300280 list_add_tail(&iter->entry, &msc->iter_list);
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200281unlock:
282 mutex_unlock(&msc->buf_mutex);
Alexander Shishkinba826642015-09-22 15:47:18 +0300283
284 return iter;
285}
286
287static void msc_iter_remove(struct msc_iter *iter, struct msc *msc)
288{
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200289 mutex_lock(&msc->buf_mutex);
Alexander Shishkinba826642015-09-22 15:47:18 +0300290 list_del(&iter->entry);
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200291 mutex_unlock(&msc->buf_mutex);
Alexander Shishkinba826642015-09-22 15:47:18 +0300292
293 kfree(iter);
294}
295
296static void msc_iter_block_start(struct msc_iter *iter)
297{
298 if (iter->start_block != -1)
299 return;
300
301 iter->start_block = msc_win_oldest_block(iter->win);
302 iter->block = iter->start_block;
303 iter->wrap_count = 0;
304
305 /*
306 * start with the block with oldest data; if data has wrapped
307 * in this window, it should be in this block
308 */
309 if (msc_block_wrapped(msc_iter_bdesc(iter)))
310 iter->wrap_count = 2;
311
312}
313
314static int msc_iter_win_start(struct msc_iter *iter, struct msc *msc)
315{
316 /* already started, nothing to do */
317 if (iter->start_win)
318 return 0;
319
320 iter->start_win = msc_oldest_window(msc);
321 if (!iter->start_win)
322 return -EINVAL;
323
324 iter->win = iter->start_win;
325 iter->start_block = -1;
326
327 msc_iter_block_start(iter);
328
329 return 0;
330}
331
332static int msc_iter_win_advance(struct msc_iter *iter)
333{
334 iter->win = msc_next_window(iter->win);
335 iter->start_block = -1;
336
337 if (iter->win == iter->start_win) {
338 iter->eof++;
339 return 1;
340 }
341
342 msc_iter_block_start(iter);
343
344 return 0;
345}
346
347static int msc_iter_block_advance(struct msc_iter *iter)
348{
349 iter->block_off = 0;
350
351 /* wrapping */
352 if (iter->wrap_count && iter->block == iter->start_block) {
353 iter->wrap_count--;
354 if (!iter->wrap_count)
355 /* copied newest data from the wrapped block */
356 return msc_iter_win_advance(iter);
357 }
358
359 /* no wrapping, check for last written block */
360 if (!iter->wrap_count && msc_block_last_written(msc_iter_bdesc(iter)))
361 /* copied newest data for the window */
362 return msc_iter_win_advance(iter);
363
364 /* block advance */
365 if (++iter->block == iter->win->nr_blocks)
366 iter->block = 0;
367
368 /* no wrapping, sanity check in case there is no last written block */
369 if (!iter->wrap_count && iter->block == iter->start_block)
370 return msc_iter_win_advance(iter);
371
372 return 0;
373}
374
375/**
376 * msc_buffer_iterate() - go through multiblock buffer's data
377 * @iter: iterator structure
378 * @size: amount of data to scan
379 * @data: callback's private data
380 * @fn: iterator callback
381 *
382 * This will start at the window which will be written to next (containing
383 * the oldest data) and work its way to the current window, calling @fn
384 * for each chunk of data as it goes.
385 *
386 * Caller should have msc::user_count reference to make sure the buffer
387 * doesn't disappear from under us.
388 *
389 * Return: amount of data actually scanned.
390 */
391static ssize_t
392msc_buffer_iterate(struct msc_iter *iter, size_t size, void *data,
393 unsigned long (*fn)(void *, void *, size_t))
394{
395 struct msc *msc = iter->msc;
396 size_t len = size;
397 unsigned int advance;
398
399 if (iter->eof)
400 return 0;
401
402 /* start with the oldest window */
403 if (msc_iter_win_start(iter, msc))
404 return 0;
405
406 do {
407 unsigned long data_bytes = msc_data_sz(msc_iter_bdesc(iter));
408 void *src = (void *)msc_iter_bdesc(iter) + MSC_BDESC;
409 size_t tocopy = data_bytes, copied = 0;
410 size_t remaining = 0;
411
412 advance = 1;
413
414 /*
415 * If block wrapping happened, we need to visit the last block
416 * twice, because it contains both the oldest and the newest
417 * data in this window.
418 *
419 * First time (wrap_count==2), in the very beginning, to collect
420 * the oldest data, which is in the range
421 * (data_bytes..DATA_IN_PAGE).
422 *
423 * Second time (wrap_count==1), it's just like any other block,
424 * containing data in the range of [MSC_BDESC..data_bytes].
425 */
Laurent FERTe4eca2a2016-02-15 19:11:56 +0200426 if (iter->block == iter->start_block && iter->wrap_count == 2) {
Alexander Shishkinba826642015-09-22 15:47:18 +0300427 tocopy = DATA_IN_PAGE - data_bytes;
428 src += data_bytes;
429 }
430
431 if (!tocopy)
432 goto next_block;
433
434 tocopy -= iter->block_off;
435 src += iter->block_off;
436
437 if (len < tocopy) {
438 tocopy = len;
439 advance = 0;
440 }
441
442 remaining = fn(data, src, tocopy);
443
444 if (remaining)
445 advance = 0;
446
447 copied = tocopy - remaining;
448 len -= copied;
449 iter->block_off += copied;
450 iter->offset += copied;
451
452 if (!advance)
453 break;
454
455next_block:
456 if (msc_iter_block_advance(iter))
457 break;
458
459 } while (len);
460
461 return size - len;
462}
463
464/**
465 * msc_buffer_clear_hw_header() - clear hw header for multiblock
466 * @msc: MSC device
467 */
468static void msc_buffer_clear_hw_header(struct msc *msc)
469{
470 struct msc_window *win;
471
Alexander Shishkinba826642015-09-22 15:47:18 +0300472 list_for_each_entry(win, &msc->win_list, entry) {
473 unsigned int blk;
474 size_t hw_sz = sizeof(struct msc_block_desc) -
475 offsetof(struct msc_block_desc, hw_tag);
476
477 for (blk = 0; blk < win->nr_blocks; blk++) {
478 struct msc_block_desc *bdesc = win->block[blk].bdesc;
479
480 memset(&bdesc->hw_tag, 0, hw_sz);
481 }
482 }
Alexander Shishkinba826642015-09-22 15:47:18 +0300483}
484
485/**
486 * msc_configure() - set up MSC hardware
487 * @msc: the MSC device to configure
488 *
489 * Program storage mode, wrapping, burst length and trace buffer address
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200490 * into a given MSC. Then, enable tracing and set msc::enabled.
491 * The latter is serialized on msc::buf_mutex, so make sure to hold it.
Alexander Shishkinba826642015-09-22 15:47:18 +0300492 */
493static int msc_configure(struct msc *msc)
494{
495 u32 reg;
496
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200497 lockdep_assert_held(&msc->buf_mutex);
498
Alexander Shishkinba826642015-09-22 15:47:18 +0300499 if (msc->mode > MSC_MODE_MULTI)
500 return -ENOTSUPP;
501
502 if (msc->mode == MSC_MODE_MULTI)
503 msc_buffer_clear_hw_header(msc);
504
505 reg = msc->base_addr >> PAGE_SHIFT;
506 iowrite32(reg, msc->reg_base + REG_MSU_MSC0BAR);
507
508 if (msc->mode == MSC_MODE_SINGLE) {
509 reg = msc->nr_pages;
510 iowrite32(reg, msc->reg_base + REG_MSU_MSC0SIZE);
511 }
512
513 reg = ioread32(msc->reg_base + REG_MSU_MSC0CTL);
514 reg &= ~(MSC_MODE | MSC_WRAPEN | MSC_EN | MSC_RD_HDR_OVRD);
515
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200516 reg |= MSC_EN;
Alexander Shishkinba826642015-09-22 15:47:18 +0300517 reg |= msc->mode << __ffs(MSC_MODE);
518 reg |= msc->burst_len << __ffs(MSC_LEN);
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200519
Alexander Shishkinba826642015-09-22 15:47:18 +0300520 if (msc->wrap)
521 reg |= MSC_WRAPEN;
Alexander Shishkinba826642015-09-22 15:47:18 +0300522
523 iowrite32(reg, msc->reg_base + REG_MSU_MSC0CTL);
524
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200525 msc->thdev->output.multiblock = msc->mode == MSC_MODE_MULTI;
526 intel_th_trace_enable(msc->thdev);
527 msc->enabled = 1;
528
Alexander Shishkinba826642015-09-22 15:47:18 +0300529
530 return 0;
531}
532
533/**
534 * msc_disable() - disable MSC hardware
535 * @msc: MSC device to disable
536 *
537 * If @msc is enabled, disable tracing on the switch and then disable MSC
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200538 * storage. Caller must hold msc::buf_mutex.
Alexander Shishkinba826642015-09-22 15:47:18 +0300539 */
540static void msc_disable(struct msc *msc)
541{
542 unsigned long count;
543 u32 reg;
544
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200545 lockdep_assert_held(&msc->buf_mutex);
Alexander Shishkinba826642015-09-22 15:47:18 +0300546
547 intel_th_trace_disable(msc->thdev);
548
549 for (reg = 0, count = MSC_PLE_WAITLOOP_DEPTH;
550 count && !(reg & MSCSTS_PLE); count--) {
551 reg = ioread32(msc->reg_base + REG_MSU_MSC0STS);
552 cpu_relax();
553 }
554
555 if (!count)
556 dev_dbg(msc_dev(msc), "timeout waiting for MSC0 PLE\n");
557
558 if (msc->mode == MSC_MODE_SINGLE) {
559 msc->single_wrap = !!(reg & MSCSTS_WRAPSTAT);
560
561 reg = ioread32(msc->reg_base + REG_MSU_MSC0MWP);
562 msc->single_sz = reg & ((msc->nr_pages << PAGE_SHIFT) - 1);
563 dev_dbg(msc_dev(msc), "MSCnMWP: %08x/%08lx, wrap: %d\n",
564 reg, msc->single_sz, msc->single_wrap);
565 }
566
567 reg = ioread32(msc->reg_base + REG_MSU_MSC0CTL);
568 reg &= ~MSC_EN;
569 iowrite32(reg, msc->reg_base + REG_MSU_MSC0CTL);
570 msc->enabled = 0;
571
572 iowrite32(0, msc->reg_base + REG_MSU_MSC0BAR);
573 iowrite32(0, msc->reg_base + REG_MSU_MSC0SIZE);
574
575 dev_dbg(msc_dev(msc), "MSCnNWSA: %08x\n",
576 ioread32(msc->reg_base + REG_MSU_MSC0NWSA));
577
578 reg = ioread32(msc->reg_base + REG_MSU_MSC0STS);
579 dev_dbg(msc_dev(msc), "MSCnSTS: %08x\n", reg);
580}
581
582static int intel_th_msc_activate(struct intel_th_device *thdev)
583{
584 struct msc *msc = dev_get_drvdata(&thdev->dev);
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200585 int ret = -EBUSY;
Alexander Shishkinba826642015-09-22 15:47:18 +0300586
587 if (!atomic_inc_unless_negative(&msc->user_count))
588 return -ENODEV;
589
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200590 mutex_lock(&msc->buf_mutex);
Alexander Shishkinba826642015-09-22 15:47:18 +0300591
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200592 /* if there are readers, refuse */
593 if (list_empty(&msc->iter_list))
594 ret = msc_configure(msc);
595
596 mutex_unlock(&msc->buf_mutex);
597
598 if (ret)
Alexander Shishkinba826642015-09-22 15:47:18 +0300599 atomic_dec(&msc->user_count);
Alexander Shishkinba826642015-09-22 15:47:18 +0300600
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200601 return ret;
Alexander Shishkinba826642015-09-22 15:47:18 +0300602}
603
604static void intel_th_msc_deactivate(struct intel_th_device *thdev)
605{
606 struct msc *msc = dev_get_drvdata(&thdev->dev);
607
Alexander Shishkina45ff6e2016-03-10 18:21:14 +0200608 mutex_lock(&msc->buf_mutex);
609 if (msc->enabled) {
610 msc_disable(msc);
611 atomic_dec(&msc->user_count);
612 }
613 mutex_unlock(&msc->buf_mutex);
Alexander Shishkinba826642015-09-22 15:47:18 +0300614}
615
616/**
617 * msc_buffer_contig_alloc() - allocate a contiguous buffer for SINGLE mode
618 * @msc: MSC device
619 * @size: allocation size in bytes
620 *
621 * This modifies msc::base, which requires msc::buf_mutex to serialize, so the
622 * caller is expected to hold it.
623 *
624 * Return: 0 on success, -errno otherwise.
625 */
626static int msc_buffer_contig_alloc(struct msc *msc, unsigned long size)
627{
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300628 unsigned long nr_pages = size >> PAGE_SHIFT;
Alexander Shishkinba826642015-09-22 15:47:18 +0300629 unsigned int order = get_order(size);
630 struct page *page;
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300631 int ret;
Alexander Shishkinba826642015-09-22 15:47:18 +0300632
633 if (!size)
634 return 0;
635
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300636 ret = sg_alloc_table(&msc->single_sgt, 1, GFP_KERNEL);
637 if (ret)
638 goto err_out;
639
640 ret = -ENOMEM;
Alexander Shishkin69978cf2019-06-21 19:19:29 +0300641 page = alloc_pages(GFP_KERNEL | __GFP_ZERO | GFP_DMA32, order);
Alexander Shishkinba826642015-09-22 15:47:18 +0300642 if (!page)
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300643 goto err_free_sgt;
Alexander Shishkinba826642015-09-22 15:47:18 +0300644
645 split_page(page, order);
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300646 sg_set_buf(msc->single_sgt.sgl, page_address(page), size);
647
648 ret = dma_map_sg(msc_dev(msc)->parent->parent, msc->single_sgt.sgl, 1,
649 DMA_FROM_DEVICE);
650 if (ret < 0)
651 goto err_free_pages;
652
653 msc->nr_pages = nr_pages;
Alexander Shishkinba826642015-09-22 15:47:18 +0300654 msc->base = page_address(page);
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300655 msc->base_addr = sg_dma_address(msc->single_sgt.sgl);
Alexander Shishkinba826642015-09-22 15:47:18 +0300656
657 return 0;
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300658
659err_free_pages:
660 __free_pages(page, order);
661
662err_free_sgt:
663 sg_free_table(&msc->single_sgt);
664
665err_out:
666 return ret;
Alexander Shishkinba826642015-09-22 15:47:18 +0300667}
668
669/**
670 * msc_buffer_contig_free() - free a contiguous buffer
671 * @msc: MSC configured in SINGLE mode
672 */
673static void msc_buffer_contig_free(struct msc *msc)
674{
675 unsigned long off;
676
Alexander Shishkin09abe5a2019-05-03 11:44:34 +0300677 dma_unmap_sg(msc_dev(msc)->parent->parent, msc->single_sgt.sgl,
678 1, DMA_FROM_DEVICE);
679 sg_free_table(&msc->single_sgt);
680
Alexander Shishkinba826642015-09-22 15:47:18 +0300681 for (off = 0; off < msc->nr_pages << PAGE_SHIFT; off += PAGE_SIZE) {
682 struct page *page = virt_to_page(msc->base + off);
683
684 page->mapping = NULL;
685 __free_page(page);
686 }
687
688 msc->nr_pages = 0;
689}
690
691/**
692 * msc_buffer_contig_get_page() - find a page at a given offset
693 * @msc: MSC configured in SINGLE mode
694 * @pgoff: page offset
695 *
696 * Return: page, if @pgoff is within the range, NULL otherwise.
697 */
698static struct page *msc_buffer_contig_get_page(struct msc *msc,
699 unsigned long pgoff)
700{
701 if (pgoff >= msc->nr_pages)
702 return NULL;
703
704 return virt_to_page(msc->base + (pgoff << PAGE_SHIFT));
705}
706
707/**
708 * msc_buffer_win_alloc() - alloc a window for a multiblock mode
709 * @msc: MSC device
710 * @nr_blocks: number of pages in this window
711 *
712 * This modifies msc::win_list and msc::base, which requires msc::buf_mutex
713 * to serialize, so the caller is expected to hold it.
714 *
715 * Return: 0 on success, -errno otherwise.
716 */
717static int msc_buffer_win_alloc(struct msc *msc, unsigned int nr_blocks)
718{
719 struct msc_window *win;
720 unsigned long size = PAGE_SIZE;
721 int i, ret = -ENOMEM;
722
723 if (!nr_blocks)
724 return 0;
725
726 win = kzalloc(offsetof(struct msc_window, block[nr_blocks]),
727 GFP_KERNEL);
728 if (!win)
729 return -ENOMEM;
730
731 if (!list_empty(&msc->win_list)) {
732 struct msc_window *prev = list_entry(msc->win_list.prev,
733 struct msc_window, entry);
734
735 win->pgoff = prev->pgoff + prev->nr_blocks;
736 }
737
738 for (i = 0; i < nr_blocks; i++) {
739 win->block[i].bdesc = dma_alloc_coherent(msc_dev(msc), size,
740 &win->block[i].addr,
741 GFP_KERNEL);
742
743#ifdef CONFIG_X86
744 /* Set the page as uncached */
745 set_memory_uc((unsigned long)win->block[i].bdesc, 1);
746#endif
747
748 if (!win->block[i].bdesc)
749 goto err_nomem;
750 }
751
752 win->msc = msc;
753 win->nr_blocks = nr_blocks;
754
755 if (list_empty(&msc->win_list)) {
756 msc->base = win->block[0].bdesc;
757 msc->base_addr = win->block[0].addr;
758 }
759
760 list_add_tail(&win->entry, &msc->win_list);
761 msc->nr_pages += nr_blocks;
762
763 return 0;
764
765err_nomem:
766 for (i--; i >= 0; i--) {
767#ifdef CONFIG_X86
768 /* Reset the page to write-back before releasing */
769 set_memory_wb((unsigned long)win->block[i].bdesc, 1);
770#endif
771 dma_free_coherent(msc_dev(msc), size, win->block[i].bdesc,
772 win->block[i].addr);
773 }
774 kfree(win);
775
776 return ret;
777}
778
779/**
780 * msc_buffer_win_free() - free a window from MSC's window list
781 * @msc: MSC device
782 * @win: window to free
783 *
784 * This modifies msc::win_list and msc::base, which requires msc::buf_mutex
785 * to serialize, so the caller is expected to hold it.
786 */
787static void msc_buffer_win_free(struct msc *msc, struct msc_window *win)
788{
789 int i;
790
791 msc->nr_pages -= win->nr_blocks;
792
793 list_del(&win->entry);
794 if (list_empty(&msc->win_list)) {
795 msc->base = NULL;
796 msc->base_addr = 0;
797 }
798
799 for (i = 0; i < win->nr_blocks; i++) {
800 struct page *page = virt_to_page(win->block[i].bdesc);
801
802 page->mapping = NULL;
803#ifdef CONFIG_X86
804 /* Reset the page to write-back before releasing */
805 set_memory_wb((unsigned long)win->block[i].bdesc, 1);
806#endif
807 dma_free_coherent(msc_dev(win->msc), PAGE_SIZE,
808 win->block[i].bdesc, win->block[i].addr);
809 }
810
811 kfree(win);
812}
813
814/**
815 * msc_buffer_relink() - set up block descriptors for multiblock mode
816 * @msc: MSC device
817 *
818 * This traverses msc::win_list, which requires msc::buf_mutex to serialize,
819 * so the caller is expected to hold it.
820 */
821static void msc_buffer_relink(struct msc *msc)
822{
823 struct msc_window *win, *next_win;
824
825 /* call with msc::mutex locked */
826 list_for_each_entry(win, &msc->win_list, entry) {
827 unsigned int blk;
828 u32 sw_tag = 0;
829
830 /*
831 * Last window's next_win should point to the first window
832 * and MSC_SW_TAG_LASTWIN should be set.
833 */
834 if (msc_is_last_win(win)) {
835 sw_tag |= MSC_SW_TAG_LASTWIN;
836 next_win = list_entry(msc->win_list.next,
837 struct msc_window, entry);
838 } else {
839 next_win = list_entry(win->entry.next,
840 struct msc_window, entry);
841 }
842
843 for (blk = 0; blk < win->nr_blocks; blk++) {
844 struct msc_block_desc *bdesc = win->block[blk].bdesc;
845
846 memset(bdesc, 0, sizeof(*bdesc));
847
848 bdesc->next_win = next_win->block[0].addr >> PAGE_SHIFT;
849
850 /*
851 * Similarly to last window, last block should point
852 * to the first one.
853 */
854 if (blk == win->nr_blocks - 1) {
855 sw_tag |= MSC_SW_TAG_LASTBLK;
856 bdesc->next_blk =
857 win->block[0].addr >> PAGE_SHIFT;
858 } else {
859 bdesc->next_blk =
860 win->block[blk + 1].addr >> PAGE_SHIFT;
861 }
862
863 bdesc->sw_tag = sw_tag;
864 bdesc->block_sz = PAGE_SIZE / 64;
865 }
866 }
867
868 /*
869 * Make the above writes globally visible before tracing is
870 * enabled to make sure hardware sees them coherently.
871 */
872 wmb();
873}
874
875static void msc_buffer_multi_free(struct msc *msc)
876{
877 struct msc_window *win, *iter;
878
879 list_for_each_entry_safe(win, iter, &msc->win_list, entry)
880 msc_buffer_win_free(msc, win);
881}
882
883static int msc_buffer_multi_alloc(struct msc *msc, unsigned long *nr_pages,
884 unsigned int nr_wins)
885{
886 int ret, i;
887
888 for (i = 0; i < nr_wins; i++) {
889 ret = msc_buffer_win_alloc(msc, nr_pages[i]);
890 if (ret) {
891 msc_buffer_multi_free(msc);
892 return ret;
893 }
894 }
895
896 msc_buffer_relink(msc);
897
898 return 0;
899}
900
901/**
902 * msc_buffer_free() - free buffers for MSC
903 * @msc: MSC device
904 *
905 * Free MSC's storage buffers.
906 *
907 * This modifies msc::win_list and msc::base, which requires msc::buf_mutex to
908 * serialize, so the caller is expected to hold it.
909 */
910static void msc_buffer_free(struct msc *msc)
911{
912 if (msc->mode == MSC_MODE_SINGLE)
913 msc_buffer_contig_free(msc);
914 else if (msc->mode == MSC_MODE_MULTI)
915 msc_buffer_multi_free(msc);
916}
917
918/**
919 * msc_buffer_alloc() - allocate a buffer for MSC
920 * @msc: MSC device
921 * @size: allocation size in bytes
922 *
923 * Allocate a storage buffer for MSC, depending on the msc::mode, it will be
924 * either done via msc_buffer_contig_alloc() for SINGLE operation mode or
925 * msc_buffer_win_alloc() for multiblock operation. The latter allocates one
926 * window per invocation, so in multiblock mode this can be called multiple
927 * times for the same MSC to allocate multiple windows.
928 *
929 * This modifies msc::win_list and msc::base, which requires msc::buf_mutex
930 * to serialize, so the caller is expected to hold it.
931 *
932 * Return: 0 on success, -errno otherwise.
933 */
934static int msc_buffer_alloc(struct msc *msc, unsigned long *nr_pages,
935 unsigned int nr_wins)
936{
937 int ret;
938
939 /* -1: buffer not allocated */
940 if (atomic_read(&msc->user_count) != -1)
941 return -EBUSY;
942
943 if (msc->mode == MSC_MODE_SINGLE) {
944 if (nr_wins != 1)
945 return -EINVAL;
946
947 ret = msc_buffer_contig_alloc(msc, nr_pages[0] << PAGE_SHIFT);
948 } else if (msc->mode == MSC_MODE_MULTI) {
949 ret = msc_buffer_multi_alloc(msc, nr_pages, nr_wins);
950 } else {
951 ret = -ENOTSUPP;
952 }
953
954 if (!ret) {
955 /* allocation should be visible before the counter goes to 0 */
956 smp_mb__before_atomic();
957
958 if (WARN_ON_ONCE(atomic_cmpxchg(&msc->user_count, -1, 0) != -1))
959 return -EINVAL;
960 }
961
962 return ret;
963}
964
965/**
966 * msc_buffer_unlocked_free_unless_used() - free a buffer unless it's in use
967 * @msc: MSC device
968 *
969 * This will free MSC buffer unless it is in use or there is no allocated
970 * buffer.
971 * Caller needs to hold msc::buf_mutex.
972 *
973 * Return: 0 on successful deallocation or if there was no buffer to
974 * deallocate, -EBUSY if there are active users.
975 */
976static int msc_buffer_unlocked_free_unless_used(struct msc *msc)
977{
978 int count, ret = 0;
979
980 count = atomic_cmpxchg(&msc->user_count, 0, -1);
981
982 /* > 0: buffer is allocated and has users */
983 if (count > 0)
984 ret = -EBUSY;
985 /* 0: buffer is allocated, no users */
986 else if (!count)
987 msc_buffer_free(msc);
988 /* < 0: no buffer, nothing to do */
989
990 return ret;
991}
992
993/**
994 * msc_buffer_free_unless_used() - free a buffer unless it's in use
995 * @msc: MSC device
996 *
997 * This is a locked version of msc_buffer_unlocked_free_unless_used().
998 */
999static int msc_buffer_free_unless_used(struct msc *msc)
1000{
1001 int ret;
1002
1003 mutex_lock(&msc->buf_mutex);
1004 ret = msc_buffer_unlocked_free_unless_used(msc);
1005 mutex_unlock(&msc->buf_mutex);
1006
1007 return ret;
1008}
1009
1010/**
1011 * msc_buffer_get_page() - get MSC buffer page at a given offset
1012 * @msc: MSC device
1013 * @pgoff: page offset into the storage buffer
1014 *
1015 * This traverses msc::win_list, so holding msc::buf_mutex is expected from
1016 * the caller.
1017 *
1018 * Return: page if @pgoff corresponds to a valid buffer page or NULL.
1019 */
1020static struct page *msc_buffer_get_page(struct msc *msc, unsigned long pgoff)
1021{
1022 struct msc_window *win;
1023
1024 if (msc->mode == MSC_MODE_SINGLE)
1025 return msc_buffer_contig_get_page(msc, pgoff);
1026
1027 list_for_each_entry(win, &msc->win_list, entry)
1028 if (pgoff >= win->pgoff && pgoff < win->pgoff + win->nr_blocks)
1029 goto found;
1030
1031 return NULL;
1032
1033found:
1034 pgoff -= win->pgoff;
1035 return virt_to_page(win->block[pgoff].bdesc);
1036}
1037
1038/**
1039 * struct msc_win_to_user_struct - data for copy_to_user() callback
1040 * @buf: userspace buffer to copy data to
1041 * @offset: running offset
1042 */
1043struct msc_win_to_user_struct {
1044 char __user *buf;
1045 unsigned long offset;
1046};
1047
1048/**
1049 * msc_win_to_user() - iterator for msc_buffer_iterate() to copy data to user
1050 * @data: callback's private data
1051 * @src: source buffer
1052 * @len: amount of data to copy from the source buffer
1053 */
1054static unsigned long msc_win_to_user(void *data, void *src, size_t len)
1055{
1056 struct msc_win_to_user_struct *u = data;
1057 unsigned long ret;
1058
1059 ret = copy_to_user(u->buf + u->offset, src, len);
1060 u->offset += len - ret;
1061
1062 return ret;
1063}
1064
1065
1066/*
1067 * file operations' callbacks
1068 */
1069
1070static int intel_th_msc_open(struct inode *inode, struct file *file)
1071{
1072 struct intel_th_device *thdev = file->private_data;
1073 struct msc *msc = dev_get_drvdata(&thdev->dev);
1074 struct msc_iter *iter;
1075
1076 if (!capable(CAP_SYS_RAWIO))
1077 return -EPERM;
1078
1079 iter = msc_iter_install(msc);
Alexander Shishkina45ff6e2016-03-10 18:21:14 +02001080 if (IS_ERR(iter))
1081 return PTR_ERR(iter);
Alexander Shishkinba826642015-09-22 15:47:18 +03001082
1083 file->private_data = iter;
1084
1085 return nonseekable_open(inode, file);
1086}
1087
1088static int intel_th_msc_release(struct inode *inode, struct file *file)
1089{
1090 struct msc_iter *iter = file->private_data;
1091 struct msc *msc = iter->msc;
1092
1093 msc_iter_remove(iter, msc);
1094
1095 return 0;
1096}
1097
1098static ssize_t
1099msc_single_to_user(struct msc *msc, char __user *buf, loff_t off, size_t len)
1100{
Alexander Shishkined392682015-10-06 12:47:18 +03001101 unsigned long size = msc->nr_pages << PAGE_SHIFT, rem = len;
Alexander Shishkinba826642015-09-22 15:47:18 +03001102 unsigned long start = off, tocopy = 0;
1103
1104 if (msc->single_wrap) {
1105 start += msc->single_sz;
1106 if (start < size) {
1107 tocopy = min(rem, size - start);
1108 if (copy_to_user(buf, msc->base + start, tocopy))
1109 return -EFAULT;
1110
1111 buf += tocopy;
1112 rem -= tocopy;
1113 start += tocopy;
1114 }
1115
1116 start &= size - 1;
1117 if (rem) {
1118 tocopy = min(rem, msc->single_sz - start);
1119 if (copy_to_user(buf, msc->base + start, tocopy))
1120 return -EFAULT;
1121
1122 rem -= tocopy;
1123 }
1124
1125 return len - rem;
1126 }
1127
1128 if (copy_to_user(buf, msc->base + start, rem))
1129 return -EFAULT;
1130
1131 return len;
1132}
1133
1134static ssize_t intel_th_msc_read(struct file *file, char __user *buf,
1135 size_t len, loff_t *ppos)
1136{
1137 struct msc_iter *iter = file->private_data;
1138 struct msc *msc = iter->msc;
1139 size_t size;
1140 loff_t off = *ppos;
1141 ssize_t ret = 0;
1142
1143 if (!atomic_inc_unless_negative(&msc->user_count))
1144 return 0;
1145
Alexander Shishkinba826642015-09-22 15:47:18 +03001146 if (msc->mode == MSC_MODE_SINGLE && !msc->single_wrap)
1147 size = msc->single_sz;
1148 else
1149 size = msc->nr_pages << PAGE_SHIFT;
1150
1151 if (!size)
Alexander Shishkinba826642015-09-22 15:47:18 +03001152 goto put_count;
Laurent FERT2bed0742016-02-15 19:11:57 +02001153
1154 if (off >= size)
1155 goto put_count;
1156
Alexander Shishkinba826642015-09-22 15:47:18 +03001157 if (off + len >= size)
1158 len = size - off;
1159
1160 if (msc->mode == MSC_MODE_SINGLE) {
1161 ret = msc_single_to_user(msc, buf, off, len);
1162 if (ret >= 0)
1163 *ppos += ret;
1164 } else if (msc->mode == MSC_MODE_MULTI) {
1165 struct msc_win_to_user_struct u = {
1166 .buf = buf,
1167 .offset = 0,
1168 };
1169
1170 ret = msc_buffer_iterate(iter, len, &u, msc_win_to_user);
1171 if (ret >= 0)
1172 *ppos = iter->offset;
1173 } else {
1174 ret = -ENOTSUPP;
1175 }
1176
1177put_count:
1178 atomic_dec(&msc->user_count);
1179
1180 return ret;
1181}
1182
1183/*
1184 * vm operations callbacks (vm_ops)
1185 */
1186
1187static void msc_mmap_open(struct vm_area_struct *vma)
1188{
1189 struct msc_iter *iter = vma->vm_file->private_data;
1190 struct msc *msc = iter->msc;
1191
1192 atomic_inc(&msc->mmap_count);
1193}
1194
1195static void msc_mmap_close(struct vm_area_struct *vma)
1196{
1197 struct msc_iter *iter = vma->vm_file->private_data;
1198 struct msc *msc = iter->msc;
1199 unsigned long pg;
1200
1201 if (!atomic_dec_and_mutex_lock(&msc->mmap_count, &msc->buf_mutex))
1202 return;
1203
Joonsoo Kim0139aa72016-05-19 17:10:49 -07001204 /* drop page _refcounts */
Alexander Shishkinba826642015-09-22 15:47:18 +03001205 for (pg = 0; pg < msc->nr_pages; pg++) {
1206 struct page *page = msc_buffer_get_page(msc, pg);
1207
1208 if (WARN_ON_ONCE(!page))
1209 continue;
1210
1211 if (page->mapping)
1212 page->mapping = NULL;
1213 }
1214
1215 /* last mapping -- drop user_count */
1216 atomic_dec(&msc->user_count);
1217 mutex_unlock(&msc->buf_mutex);
1218}
1219
1220static int msc_mmap_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
1221{
1222 struct msc_iter *iter = vma->vm_file->private_data;
1223 struct msc *msc = iter->msc;
1224
1225 vmf->page = msc_buffer_get_page(msc, vmf->pgoff);
1226 if (!vmf->page)
1227 return VM_FAULT_SIGBUS;
1228
1229 get_page(vmf->page);
1230 vmf->page->mapping = vma->vm_file->f_mapping;
1231 vmf->page->index = vmf->pgoff;
1232
1233 return 0;
1234}
1235
1236static const struct vm_operations_struct msc_mmap_ops = {
1237 .open = msc_mmap_open,
1238 .close = msc_mmap_close,
1239 .fault = msc_mmap_fault,
1240};
1241
1242static int intel_th_msc_mmap(struct file *file, struct vm_area_struct *vma)
1243{
1244 unsigned long size = vma->vm_end - vma->vm_start;
1245 struct msc_iter *iter = vma->vm_file->private_data;
1246 struct msc *msc = iter->msc;
1247 int ret = -EINVAL;
1248
1249 if (!size || offset_in_page(size))
1250 return -EINVAL;
1251
1252 if (vma->vm_pgoff)
1253 return -EINVAL;
1254
1255 /* grab user_count once per mmap; drop in msc_mmap_close() */
1256 if (!atomic_inc_unless_negative(&msc->user_count))
1257 return -EINVAL;
1258
1259 if (msc->mode != MSC_MODE_SINGLE &&
1260 msc->mode != MSC_MODE_MULTI)
1261 goto out;
1262
1263 if (size >> PAGE_SHIFT != msc->nr_pages)
1264 goto out;
1265
1266 atomic_set(&msc->mmap_count, 1);
1267 ret = 0;
1268
1269out:
1270 if (ret)
1271 atomic_dec(&msc->user_count);
1272
1273 vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
1274 vma->vm_flags |= VM_DONTEXPAND | VM_DONTCOPY;
1275 vma->vm_ops = &msc_mmap_ops;
1276 return ret;
1277}
1278
1279static const struct file_operations intel_th_msc_fops = {
1280 .open = intel_th_msc_open,
1281 .release = intel_th_msc_release,
1282 .read = intel_th_msc_read,
1283 .mmap = intel_th_msc_mmap,
1284 .llseek = no_llseek,
Alexander Shishkin8e9a2be2016-04-08 17:36:04 +03001285 .owner = THIS_MODULE,
Alexander Shishkinba826642015-09-22 15:47:18 +03001286};
1287
1288static int intel_th_msc_init(struct msc *msc)
1289{
1290 atomic_set(&msc->user_count, -1);
1291
1292 msc->mode = MSC_MODE_MULTI;
1293 mutex_init(&msc->buf_mutex);
1294 INIT_LIST_HEAD(&msc->win_list);
Alexander Shishkinba826642015-09-22 15:47:18 +03001295 INIT_LIST_HEAD(&msc->iter_list);
1296
1297 msc->burst_len =
1298 (ioread32(msc->reg_base + REG_MSU_MSC0CTL) & MSC_LEN) >>
1299 __ffs(MSC_LEN);
1300
1301 return 0;
1302}
1303
1304static const char * const msc_mode[] = {
1305 [MSC_MODE_SINGLE] = "single",
1306 [MSC_MODE_MULTI] = "multi",
1307 [MSC_MODE_EXI] = "ExI",
1308 [MSC_MODE_DEBUG] = "debug",
1309};
1310
1311static ssize_t
1312wrap_show(struct device *dev, struct device_attribute *attr, char *buf)
1313{
1314 struct msc *msc = dev_get_drvdata(dev);
1315
1316 return scnprintf(buf, PAGE_SIZE, "%d\n", msc->wrap);
1317}
1318
1319static ssize_t
1320wrap_store(struct device *dev, struct device_attribute *attr, const char *buf,
1321 size_t size)
1322{
1323 struct msc *msc = dev_get_drvdata(dev);
1324 unsigned long val;
1325 int ret;
1326
1327 ret = kstrtoul(buf, 10, &val);
1328 if (ret)
1329 return ret;
1330
1331 msc->wrap = !!val;
1332
1333 return size;
1334}
1335
1336static DEVICE_ATTR_RW(wrap);
1337
1338static ssize_t
1339mode_show(struct device *dev, struct device_attribute *attr, char *buf)
1340{
1341 struct msc *msc = dev_get_drvdata(dev);
1342
1343 return scnprintf(buf, PAGE_SIZE, "%s\n", msc_mode[msc->mode]);
1344}
1345
1346static ssize_t
1347mode_store(struct device *dev, struct device_attribute *attr, const char *buf,
1348 size_t size)
1349{
1350 struct msc *msc = dev_get_drvdata(dev);
1351 size_t len = size;
1352 char *cp;
1353 int i, ret;
1354
1355 if (!capable(CAP_SYS_RAWIO))
1356 return -EPERM;
1357
1358 cp = memchr(buf, '\n', len);
1359 if (cp)
1360 len = cp - buf;
1361
1362 for (i = 0; i < ARRAY_SIZE(msc_mode); i++)
1363 if (!strncmp(msc_mode[i], buf, len))
1364 goto found;
1365
1366 return -EINVAL;
1367
1368found:
1369 mutex_lock(&msc->buf_mutex);
1370 ret = msc_buffer_unlocked_free_unless_used(msc);
1371 if (!ret)
1372 msc->mode = i;
1373 mutex_unlock(&msc->buf_mutex);
1374
1375 return ret ? ret : size;
1376}
1377
1378static DEVICE_ATTR_RW(mode);
1379
1380static ssize_t
1381nr_pages_show(struct device *dev, struct device_attribute *attr, char *buf)
1382{
1383 struct msc *msc = dev_get_drvdata(dev);
1384 struct msc_window *win;
1385 size_t count = 0;
1386
1387 mutex_lock(&msc->buf_mutex);
1388
1389 if (msc->mode == MSC_MODE_SINGLE)
1390 count = scnprintf(buf, PAGE_SIZE, "%ld\n", msc->nr_pages);
1391 else if (msc->mode == MSC_MODE_MULTI) {
1392 list_for_each_entry(win, &msc->win_list, entry) {
1393 count += scnprintf(buf + count, PAGE_SIZE - count,
1394 "%d%c", win->nr_blocks,
1395 msc_is_last_win(win) ? '\n' : ',');
1396 }
1397 } else {
1398 count = scnprintf(buf, PAGE_SIZE, "unsupported\n");
1399 }
1400
1401 mutex_unlock(&msc->buf_mutex);
1402
1403 return count;
1404}
1405
1406static ssize_t
1407nr_pages_store(struct device *dev, struct device_attribute *attr,
1408 const char *buf, size_t size)
1409{
1410 struct msc *msc = dev_get_drvdata(dev);
1411 unsigned long val, *win = NULL, *rewin;
1412 size_t len = size;
1413 const char *p = buf;
1414 char *end, *s;
1415 int ret, nr_wins = 0;
1416
1417 if (!capable(CAP_SYS_RAWIO))
1418 return -EPERM;
1419
1420 ret = msc_buffer_free_unless_used(msc);
1421 if (ret)
1422 return ret;
1423
1424 /* scan the comma-separated list of allocation sizes */
1425 end = memchr(buf, '\n', len);
1426 if (end)
1427 len = end - buf;
1428
1429 do {
1430 end = memchr(p, ',', len);
1431 s = kstrndup(p, end ? end - p : len, GFP_KERNEL);
Alexander Shishkin6575cbd2016-03-04 16:16:31 +02001432 if (!s) {
1433 ret = -ENOMEM;
1434 goto free_win;
1435 }
1436
Alexander Shishkinba826642015-09-22 15:47:18 +03001437 ret = kstrtoul(s, 10, &val);
1438 kfree(s);
1439
1440 if (ret || !val)
1441 goto free_win;
1442
1443 if (nr_wins && msc->mode == MSC_MODE_SINGLE) {
1444 ret = -EINVAL;
1445 goto free_win;
1446 }
1447
1448 nr_wins++;
1449 rewin = krealloc(win, sizeof(*win) * nr_wins, GFP_KERNEL);
1450 if (!rewin) {
1451 kfree(win);
1452 return -ENOMEM;
1453 }
1454
1455 win = rewin;
1456 win[nr_wins - 1] = val;
1457
1458 if (!end)
1459 break;
1460
Alexander Shishkin8fcfb8f2018-12-19 17:19:22 +02001461 /* consume the number and the following comma, hence +1 */
1462 len -= end - p + 1;
Alexander Shishkinba826642015-09-22 15:47:18 +03001463 p = end + 1;
1464 } while (len);
1465
1466 mutex_lock(&msc->buf_mutex);
1467 ret = msc_buffer_alloc(msc, win, nr_wins);
1468 mutex_unlock(&msc->buf_mutex);
1469
1470free_win:
1471 kfree(win);
1472
1473 return ret ? ret : size;
1474}
1475
1476static DEVICE_ATTR_RW(nr_pages);
1477
1478static struct attribute *msc_output_attrs[] = {
1479 &dev_attr_wrap.attr,
1480 &dev_attr_mode.attr,
1481 &dev_attr_nr_pages.attr,
1482 NULL,
1483};
1484
1485static struct attribute_group msc_output_group = {
1486 .attrs = msc_output_attrs,
1487};
1488
1489static int intel_th_msc_probe(struct intel_th_device *thdev)
1490{
1491 struct device *dev = &thdev->dev;
1492 struct resource *res;
1493 struct msc *msc;
1494 void __iomem *base;
1495 int err;
1496
1497 res = intel_th_device_get_resource(thdev, IORESOURCE_MEM, 0);
1498 if (!res)
1499 return -ENODEV;
1500
1501 base = devm_ioremap(dev, res->start, resource_size(res));
Dan Carpenter73061da2015-10-16 17:09:13 +03001502 if (!base)
1503 return -ENOMEM;
Alexander Shishkinba826642015-09-22 15:47:18 +03001504
1505 msc = devm_kzalloc(dev, sizeof(*msc), GFP_KERNEL);
1506 if (!msc)
1507 return -ENOMEM;
1508
1509 msc->index = thdev->id;
1510
1511 msc->thdev = thdev;
1512 msc->reg_base = base + msc->index * 0x100;
1513
1514 err = intel_th_msc_init(msc);
1515 if (err)
1516 return err;
1517
Alexander Shishkinba826642015-09-22 15:47:18 +03001518 dev_set_drvdata(dev, msc);
1519
1520 return 0;
1521}
1522
1523static void intel_th_msc_remove(struct intel_th_device *thdev)
1524{
Alexander Shishkinf152dfe2016-04-08 17:37:40 +03001525 struct msc *msc = dev_get_drvdata(&thdev->dev);
1526 int ret;
1527
1528 intel_th_msc_deactivate(thdev);
1529
1530 /*
1531 * Buffers should not be used at this point except if the
1532 * output character device is still open and the parent
1533 * device gets detached from its bus, which is a FIXME.
1534 */
1535 ret = msc_buffer_free_unless_used(msc);
1536 WARN_ON_ONCE(ret);
Alexander Shishkinba826642015-09-22 15:47:18 +03001537}
1538
1539static struct intel_th_driver intel_th_msc_driver = {
1540 .probe = intel_th_msc_probe,
1541 .remove = intel_th_msc_remove,
1542 .activate = intel_th_msc_activate,
1543 .deactivate = intel_th_msc_deactivate,
1544 .fops = &intel_th_msc_fops,
Alexander Shishkin9d482ae2016-03-04 19:55:10 +02001545 .attr_group = &msc_output_group,
Alexander Shishkinba826642015-09-22 15:47:18 +03001546 .driver = {
1547 .name = "msc",
1548 .owner = THIS_MODULE,
1549 },
1550};
1551
1552module_driver(intel_th_msc_driver,
1553 intel_th_driver_register,
1554 intel_th_driver_unregister);
1555
1556MODULE_LICENSE("GPL v2");
1557MODULE_DESCRIPTION("Intel(R) Trace Hub Memory Storage Unit driver");
1558MODULE_AUTHOR("Alexander Shishkin <alexander.shishkin@linux.intel.com>");