Cleanup: clarify strcpy/strcpy_from_user local variables
[lttng-modules.git] / include / ringbuffer / backend_internal.h
CommitLineData
b7cdc182 1/* SPDX-License-Identifier: (GPL-2.0-only OR LGPL-2.1-only)
9f36eaed 2 *
24591303 3 * ringbuffer/backend_internal.h
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4 *
5 * Ring buffer backend (internal helpers).
6 *
886d51a3 7 * Copyright (C) 2008-2012 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
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8 */
9
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10#ifndef _LIB_RING_BUFFER_BACKEND_INTERNAL_H
11#define _LIB_RING_BUFFER_BACKEND_INTERNAL_H
12
a8f2d0c7 13#include <wrapper/compiler.h>
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14#include <wrapper/inline_memcpy.h>
15#include <ringbuffer/config.h>
16#include <ringbuffer/backend_types.h>
17#include <ringbuffer/frontend_types.h>
f3bc08c5 18#include <linux/string.h>
4ea00e4f 19#include <linux/uaccess.h>
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20
21/* Ring buffer backend API presented to the frontend */
22
23/* Ring buffer and channel backend create/free */
24
e20c0fec 25int lib_ring_buffer_backend_create(struct lttng_kernel_ring_buffer_backend *bufb,
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26 struct channel_backend *chan, int cpu);
27void channel_backend_unregister_notifiers(struct channel_backend *chanb);
e20c0fec 28void lib_ring_buffer_backend_free(struct lttng_kernel_ring_buffer_backend *bufb);
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29int channel_backend_init(struct channel_backend *chanb,
30 const char *name,
e20c0fec 31 const struct lttng_kernel_ring_buffer_config *config,
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32 void *priv, size_t subbuf_size,
33 size_t num_subbuf);
34void channel_backend_free(struct channel_backend *chanb);
35
e20c0fec 36void lib_ring_buffer_backend_reset(struct lttng_kernel_ring_buffer_backend *bufb);
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37void channel_backend_reset(struct channel_backend *chanb);
38
39int lib_ring_buffer_backend_init(void);
40void lib_ring_buffer_backend_exit(void);
41
e20c0fec 42extern void _lib_ring_buffer_write(struct lttng_kernel_ring_buffer_backend *bufb,
f3bc08c5 43 size_t offset, const void *src, size_t len,
bfe529f9 44 size_t pagecpy);
e20c0fec 45extern void _lib_ring_buffer_memset(struct lttng_kernel_ring_buffer_backend *bufb,
4ea00e4f 46 size_t offset, int c, size_t len,
bfe529f9 47 size_t pagecpy);
e20c0fec 48extern void _lib_ring_buffer_strcpy(struct lttng_kernel_ring_buffer_backend *bufb,
e5f1eb9a 49 size_t offset, const char *src, size_t len, int pad);
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50extern void _lib_ring_buffer_pstrcpy(struct lttng_kernel_ring_buffer_backend *bufb,
51 size_t offset, const char *src, size_t len, int pad);
e20c0fec 52extern void _lib_ring_buffer_copy_from_user_inatomic(struct lttng_kernel_ring_buffer_backend *bufb,
4ea00e4f 53 size_t offset, const void *src,
bfe529f9 54 size_t len, size_t pagecpy);
e20c0fec 55extern void _lib_ring_buffer_strcpy_from_user_inatomic(struct lttng_kernel_ring_buffer_backend *bufb,
e5f1eb9a 56 size_t offset, const char __user *src, size_t len, int pad);
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57extern void _lib_ring_buffer_pstrcpy_from_user_inatomic(struct lttng_kernel_ring_buffer_backend *bufb,
58 size_t offset, const char __user *src, size_t len, int pad);
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59
60/*
61 * Subbuffer ID bits for overwrite mode. Need to fit within a single word to be
62 * exchanged atomically.
63 *
64 * Top half word, except lowest bit, belongs to "offset", which is used to keep
65 * to count the produced buffers. For overwrite mode, this provides the
66 * consumer with the capacity to read subbuffers in order, handling the
67 * situation where producers would write up to 2^15 buffers (or 2^31 for 64-bit
68 * systems) concurrently with a single execution of get_subbuf (between offset
69 * sampling and subbuffer ID exchange).
70 */
71
72#define HALF_ULONG_BITS (BITS_PER_LONG >> 1)
73
74#define SB_ID_OFFSET_SHIFT (HALF_ULONG_BITS + 1)
75#define SB_ID_OFFSET_COUNT (1UL << SB_ID_OFFSET_SHIFT)
76#define SB_ID_OFFSET_MASK (~(SB_ID_OFFSET_COUNT - 1))
77/*
78 * Lowest bit of top word half belongs to noref. Used only for overwrite mode.
79 */
80#define SB_ID_NOREF_SHIFT (SB_ID_OFFSET_SHIFT - 1)
81#define SB_ID_NOREF_COUNT (1UL << SB_ID_NOREF_SHIFT)
82#define SB_ID_NOREF_MASK SB_ID_NOREF_COUNT
83/*
84 * In overwrite mode: lowest half of word is used for index.
85 * Limit of 2^16 subbuffers per buffer on 32-bit, 2^32 on 64-bit.
86 * In producer-consumer mode: whole word used for index.
87 */
88#define SB_ID_INDEX_SHIFT 0
89#define SB_ID_INDEX_COUNT (1UL << SB_ID_INDEX_SHIFT)
90#define SB_ID_INDEX_MASK (SB_ID_NOREF_COUNT - 1)
91
92/*
93 * Construct the subbuffer id from offset, index and noref. Use only the index
94 * for producer-consumer mode (offset and noref are only used in overwrite
95 * mode).
96 */
97static inline
e20c0fec 98unsigned long subbuffer_id(const struct lttng_kernel_ring_buffer_config *config,
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99 unsigned long offset, unsigned long noref,
100 unsigned long index)
101{
102 if (config->mode == RING_BUFFER_OVERWRITE)
103 return (offset << SB_ID_OFFSET_SHIFT)
104 | (noref << SB_ID_NOREF_SHIFT)
105 | index;
106 else
107 return index;
108}
109
110/*
111 * Compare offset with the offset contained within id. Return 1 if the offset
112 * bits are identical, else 0.
113 */
114static inline
e20c0fec 115int subbuffer_id_compare_offset(const struct lttng_kernel_ring_buffer_config *config,
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116 unsigned long id, unsigned long offset)
117{
118 return (id & SB_ID_OFFSET_MASK) == (offset << SB_ID_OFFSET_SHIFT);
119}
120
121static inline
e20c0fec 122unsigned long subbuffer_id_get_index(const struct lttng_kernel_ring_buffer_config *config,
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123 unsigned long id)
124{
125 if (config->mode == RING_BUFFER_OVERWRITE)
126 return id & SB_ID_INDEX_MASK;
127 else
128 return id;
129}
130
131static inline
e20c0fec 132unsigned long subbuffer_id_is_noref(const struct lttng_kernel_ring_buffer_config *config,
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133 unsigned long id)
134{
135 if (config->mode == RING_BUFFER_OVERWRITE)
136 return !!(id & SB_ID_NOREF_MASK);
137 else
138 return 1;
139}
140
141/*
142 * Only used by reader on subbuffer ID it has exclusive access to. No volatile
143 * needed.
144 */
145static inline
e20c0fec 146void subbuffer_id_set_noref(const struct lttng_kernel_ring_buffer_config *config,
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147 unsigned long *id)
148{
149 if (config->mode == RING_BUFFER_OVERWRITE)
150 *id |= SB_ID_NOREF_MASK;
151}
152
153static inline
e20c0fec 154void subbuffer_id_set_noref_offset(const struct lttng_kernel_ring_buffer_config *config,
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155 unsigned long *id, unsigned long offset)
156{
157 unsigned long tmp;
158
159 if (config->mode == RING_BUFFER_OVERWRITE) {
160 tmp = *id;
161 tmp &= ~SB_ID_OFFSET_MASK;
162 tmp |= offset << SB_ID_OFFSET_SHIFT;
163 tmp |= SB_ID_NOREF_MASK;
164 /* Volatile store, read concurrently by readers. */
a8f2d0c7 165 WRITE_ONCE(*id, tmp);
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166 }
167}
168
169/* No volatile access, since already used locally */
170static inline
e20c0fec 171void subbuffer_id_clear_noref(const struct lttng_kernel_ring_buffer_config *config,
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172 unsigned long *id)
173{
174 if (config->mode == RING_BUFFER_OVERWRITE)
175 *id &= ~SB_ID_NOREF_MASK;
176}
177
178/*
179 * For overwrite mode, cap the number of subbuffers per buffer to:
180 * 2^16 on 32-bit architectures
181 * 2^32 on 64-bit architectures
182 * This is required to fit in the index part of the ID. Return 0 on success,
183 * -EPERM on failure.
184 */
185static inline
e20c0fec 186int subbuffer_id_check_index(const struct lttng_kernel_ring_buffer_config *config,
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187 unsigned long num_subbuf)
188{
189 if (config->mode == RING_BUFFER_OVERWRITE)
190 return (num_subbuf > (1UL << HALF_ULONG_BITS)) ? -EPERM : 0;
191 else
192 return 0;
193}
194
85a07c33 195static inline
e20c0fec 196void lib_ring_buffer_backend_get_pages(const struct lttng_kernel_ring_buffer_config *config,
8a57ec02 197 struct lttng_kernel_ring_buffer_ctx *ctx,
e20c0fec 198 struct lttng_kernel_ring_buffer_backend_pages **backend_pages)
85a07c33 199{
e20c0fec 200 struct lttng_kernel_ring_buffer_backend *bufb = &ctx->priv.buf->backend;
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201 struct channel_backend *chanb = &ctx->priv.chan->backend;
202 size_t sbidx, offset = ctx->priv.buf_offset;
85a07c33 203 unsigned long sb_bindex, id;
e20c0fec 204 struct lttng_kernel_ring_buffer_backend_pages *rpages;
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205
206 offset &= chanb->buf_size - 1;
207 sbidx = offset >> chanb->subbuf_size_order;
208 id = bufb->buf_wsb[sbidx].id;
209 sb_bindex = subbuffer_id_get_index(config, id);
210 rpages = bufb->array[sb_bindex];
b1199bd3 211 CHAN_WARN_ON(ctx->priv.chan,
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212 config->mode == RING_BUFFER_OVERWRITE
213 && subbuffer_id_is_noref(config, id));
214 *backend_pages = rpages;
215}
216
217/* Get backend pages from cache. */
218static inline
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219struct lttng_kernel_ring_buffer_backend_pages *
220 lib_ring_buffer_get_backend_pages_from_ctx(const struct lttng_kernel_ring_buffer_config *config,
8a57ec02 221 struct lttng_kernel_ring_buffer_ctx *ctx)
85a07c33 222{
b1199bd3 223 return ctx->priv.backend_pages;
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224}
225
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226/*
227 * The ring buffer can count events recorded and overwritten per buffer,
228 * but it is disabled by default due to its performance overhead.
229 */
230#ifdef LTTNG_RING_BUFFER_COUNT_EVENTS
f3bc08c5 231static inline
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232void subbuffer_count_record(const struct lttng_kernel_ring_buffer_config *config,
233 struct lttng_kernel_ring_buffer_backend *bufb,
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234 unsigned long idx)
235{
236 unsigned long sb_bindex;
237
238 sb_bindex = subbuffer_id_get_index(config, bufb->buf_wsb[idx].id);
239 v_inc(config, &bufb->array[sb_bindex]->records_commit);
240}
241
242/*
243 * Reader has exclusive subbuffer access for record consumption. No need to
244 * perform the decrement atomically.
245 */
246static inline
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247void subbuffer_consume_record(const struct lttng_kernel_ring_buffer_config *config,
248 struct lttng_kernel_ring_buffer_backend *bufb)
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249{
250 unsigned long sb_bindex;
251
252 sb_bindex = subbuffer_id_get_index(config, bufb->buf_rsb.id);
253 CHAN_WARN_ON(bufb->chan,
254 !v_read(config, &bufb->array[sb_bindex]->records_unread));
255 /* Non-atomic decrement protected by exclusive subbuffer access */
256 _v_dec(config, &bufb->array[sb_bindex]->records_unread);
257 v_inc(config, &bufb->records_read);
258}
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259#else /* LTTNG_RING_BUFFER_COUNT_EVENTS */
260static inline
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261void subbuffer_count_record(const struct lttng_kernel_ring_buffer_config *config,
262 struct lttng_kernel_ring_buffer_backend *bufb,
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263 unsigned long idx)
264{
265}
266static inline
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267void subbuffer_consume_record(const struct lttng_kernel_ring_buffer_config *config,
268 struct lttng_kernel_ring_buffer_backend *bufb)
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269{
270}
271#endif /* #else LTTNG_RING_BUFFER_COUNT_EVENTS */
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272
273static inline
274unsigned long subbuffer_get_records_count(
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275 const struct lttng_kernel_ring_buffer_config *config,
276 struct lttng_kernel_ring_buffer_backend *bufb,
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277 unsigned long idx)
278{
279 unsigned long sb_bindex;
280
281 sb_bindex = subbuffer_id_get_index(config, bufb->buf_wsb[idx].id);
282 return v_read(config, &bufb->array[sb_bindex]->records_commit);
283}
284
285/*
286 * Must be executed at subbuffer delivery when the writer has _exclusive_
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287 * subbuffer access. See lib_ring_buffer_check_deliver() for details.
288 * lib_ring_buffer_get_records_count() must be called to get the records
289 * count before this function, because it resets the records_commit
290 * count.
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291 */
292static inline
293unsigned long subbuffer_count_records_overrun(
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294 const struct lttng_kernel_ring_buffer_config *config,
295 struct lttng_kernel_ring_buffer_backend *bufb,
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296 unsigned long idx)
297{
e20c0fec 298 struct lttng_kernel_ring_buffer_backend_pages *pages;
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299 unsigned long overruns, sb_bindex;
300
301 sb_bindex = subbuffer_id_get_index(config, bufb->buf_wsb[idx].id);
302 pages = bufb->array[sb_bindex];
303 overruns = v_read(config, &pages->records_unread);
304 v_set(config, &pages->records_unread,
305 v_read(config, &pages->records_commit));
306 v_set(config, &pages->records_commit, 0);
307
308 return overruns;
309}
310
311static inline
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312void subbuffer_set_data_size(const struct lttng_kernel_ring_buffer_config *config,
313 struct lttng_kernel_ring_buffer_backend *bufb,
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314 unsigned long idx,
315 unsigned long data_size)
316{
e20c0fec 317 struct lttng_kernel_ring_buffer_backend_pages *pages;
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318 unsigned long sb_bindex;
319
320 sb_bindex = subbuffer_id_get_index(config, bufb->buf_wsb[idx].id);
321 pages = bufb->array[sb_bindex];
322 pages->data_size = data_size;
323}
324
325static inline
326unsigned long subbuffer_get_read_data_size(
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327 const struct lttng_kernel_ring_buffer_config *config,
328 struct lttng_kernel_ring_buffer_backend *bufb)
f3bc08c5 329{
e20c0fec 330 struct lttng_kernel_ring_buffer_backend_pages *pages;
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331 unsigned long sb_bindex;
332
333 sb_bindex = subbuffer_id_get_index(config, bufb->buf_rsb.id);
334 pages = bufb->array[sb_bindex];
335 return pages->data_size;
336}
337
338static inline
339unsigned long subbuffer_get_data_size(
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340 const struct lttng_kernel_ring_buffer_config *config,
341 struct lttng_kernel_ring_buffer_backend *bufb,
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342 unsigned long idx)
343{
e20c0fec 344 struct lttng_kernel_ring_buffer_backend_pages *pages;
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345 unsigned long sb_bindex;
346
347 sb_bindex = subbuffer_id_get_index(config, bufb->buf_wsb[idx].id);
348 pages = bufb->array[sb_bindex];
349 return pages->data_size;
350}
351
5b3cf4f9 352static inline
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353void subbuffer_inc_packet_count(const struct lttng_kernel_ring_buffer_config *config,
354 struct lttng_kernel_ring_buffer_backend *bufb,
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355 unsigned long idx)
356{
357 bufb->buf_cnt[idx].seq_cnt++;
358}
359
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360/**
361 * lib_ring_buffer_clear_noref - Clear the noref subbuffer flag, called by
362 * writer.
363 */
364static inline
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365void lib_ring_buffer_clear_noref(const struct lttng_kernel_ring_buffer_config *config,
366 struct lttng_kernel_ring_buffer_backend *bufb,
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367 unsigned long idx)
368{
369 unsigned long id, new_id;
370
371 if (config->mode != RING_BUFFER_OVERWRITE)
372 return;
373
374 /*
375 * Performing a volatile access to read the sb_pages, because we want to
376 * read a coherent version of the pointer and the associated noref flag.
377 */
585e5dcc 378 id = LTTNG_READ_ONCE(bufb->buf_wsb[idx].id);
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379 for (;;) {
380 /* This check is called on the fast path for each record. */
381 if (likely(!subbuffer_id_is_noref(config, id))) {
382 /*
383 * Store after load dependency ordering the writes to
384 * the subbuffer after load and test of the noref flag
385 * matches the memory barrier implied by the cmpxchg()
386 * in update_read_sb_index().
387 */
388 return; /* Already writing to this buffer */
389 }
390 new_id = id;
391 subbuffer_id_clear_noref(config, &new_id);
392 new_id = cmpxchg(&bufb->buf_wsb[idx].id, id, new_id);
393 if (likely(new_id == id))
394 break;
395 id = new_id;
396 }
397}
398
399/**
400 * lib_ring_buffer_set_noref_offset - Set the noref subbuffer flag and offset,
401 * called by writer.
402 */
403static inline
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404void lib_ring_buffer_set_noref_offset(const struct lttng_kernel_ring_buffer_config *config,
405 struct lttng_kernel_ring_buffer_backend *bufb,
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406 unsigned long idx, unsigned long offset)
407{
408 if (config->mode != RING_BUFFER_OVERWRITE)
409 return;
410
411 /*
412 * Because ring_buffer_set_noref() is only called by a single thread
413 * (the one which updated the cc_sb value), there are no concurrent
414 * updates to take care of: other writers have not updated cc_sb, so
415 * they cannot set the noref flag, and concurrent readers cannot modify
416 * the pointer because the noref flag is not set yet.
417 * The smp_wmb() in ring_buffer_commit() takes care of ordering writes
418 * to the subbuffer before this set noref operation.
419 * subbuffer_set_noref() uses a volatile store to deal with concurrent
420 * readers of the noref flag.
421 */
422 CHAN_WARN_ON(bufb->chan,
423 subbuffer_id_is_noref(config, bufb->buf_wsb[idx].id));
424 /*
425 * Memory barrier that ensures counter stores are ordered before set
426 * noref and offset.
427 */
428 smp_mb();
429 subbuffer_id_set_noref_offset(config, &bufb->buf_wsb[idx].id, offset);
430}
431
432/**
433 * update_read_sb_index - Read-side subbuffer index update.
434 */
435static inline
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436int update_read_sb_index(const struct lttng_kernel_ring_buffer_config *config,
437 struct lttng_kernel_ring_buffer_backend *bufb,
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438 struct channel_backend *chanb,
439 unsigned long consumed_idx,
440 unsigned long consumed_count)
441{
442 unsigned long old_id, new_id;
443
444 if (config->mode == RING_BUFFER_OVERWRITE) {
445 /*
446 * Exchange the target writer subbuffer with our own unused
a8f2d0c7 447 * subbuffer. No need to use READ_ONCE() here to read the
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448 * old_wpage, because the value read will be confirmed by the
449 * following cmpxchg().
450 */
451 old_id = bufb->buf_wsb[consumed_idx].id;
452 if (unlikely(!subbuffer_id_is_noref(config, old_id)))
453 return -EAGAIN;
454 /*
455 * Make sure the offset count we are expecting matches the one
456 * indicated by the writer.
457 */
458 if (unlikely(!subbuffer_id_compare_offset(config, old_id,
459 consumed_count)))
460 return -EAGAIN;
461 CHAN_WARN_ON(bufb->chan,
462 !subbuffer_id_is_noref(config, bufb->buf_rsb.id));
463 subbuffer_id_set_noref_offset(config, &bufb->buf_rsb.id,
464 consumed_count);
465 new_id = cmpxchg(&bufb->buf_wsb[consumed_idx].id, old_id,
466 bufb->buf_rsb.id);
467 if (unlikely(old_id != new_id))
468 return -EAGAIN;
469 bufb->buf_rsb.id = new_id;
470 } else {
471 /* No page exchange, use the writer page directly */
472 bufb->buf_rsb.id = bufb->buf_wsb[consumed_idx].id;
473 }
474 return 0;
475}
476
327177e6 477static inline __attribute__((always_inline))
04707312 478void lttng_inline_memcpy(void *dest, const void *src,
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479 unsigned long len)
480{
481 switch (len) {
482 case 1:
483 *(uint8_t *) dest = *(const uint8_t *) src;
484 break;
485 case 2:
486 *(uint16_t *) dest = *(const uint16_t *) src;
487 break;
488 case 4:
489 *(uint32_t *) dest = *(const uint32_t *) src;
490 break;
491 case 8:
492 *(uint64_t *) dest = *(const uint64_t *) src;
493 break;
494 default:
495 inline_memcpy(dest, src, len);
496 }
497}
498
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499/*
500 * Use the architecture-specific memcpy implementation for constant-sized
501 * inputs, but rely on an inline memcpy for length statically unknown.
502 * The function call to memcpy is just way too expensive for a fast path.
503 */
504#define lib_ring_buffer_do_copy(config, dest, src, len) \
505do { \
506 size_t __len = (len); \
507 if (__builtin_constant_p(len)) \
508 memcpy(dest, src, __len); \
509 else \
327177e6 510 lttng_inline_memcpy(dest, src, __len); \
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511} while (0)
512
4ea00e4f 513/*
7b8ea3a5 514 * We use __copy_from_user_inatomic to copy userspace data since we already
4ea00e4f 515 * did the access_ok for the whole range.
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516 *
517 * Return 0 if OK, nonzero on error.
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518 */
519static inline
7b8ea3a5 520unsigned long lib_ring_buffer_do_copy_from_user_inatomic(void *dest,
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521 const void __user *src,
522 unsigned long len)
523{
7b8ea3a5 524 return __copy_from_user_inatomic(dest, src, len);
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525}
526
527/*
528 * write len bytes to dest with c
529 */
530static inline
531void lib_ring_buffer_do_memset(char *dest, int c,
532 unsigned long len)
533{
534 unsigned long i;
535
536 for (i = 0; i < len; i++)
537 dest[i] = c;
538}
539
886d51a3 540#endif /* _LIB_RING_BUFFER_BACKEND_INTERNAL_H */
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