buffer.c revision 1.4 1 1.4 christos /* $NetBSD: buffer.c,v 1.4 2017/01/31 23:17:39 christos Exp $ */
2 1.1 plunky /*
3 1.2 christos * Copyright (c) 2002-2007 Niels Provos <provos (at) citi.umich.edu>
4 1.2 christos * Copyright (c) 2007-2012 Niels Provos and Nick Mathewson
5 1.1 plunky *
6 1.1 plunky * Redistribution and use in source and binary forms, with or without
7 1.1 plunky * modification, are permitted provided that the following conditions
8 1.1 plunky * are met:
9 1.1 plunky * 1. Redistributions of source code must retain the above copyright
10 1.1 plunky * notice, this list of conditions and the following disclaimer.
11 1.1 plunky * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 plunky * notice, this list of conditions and the following disclaimer in the
13 1.1 plunky * documentation and/or other materials provided with the distribution.
14 1.1 plunky * 3. The name of the author may not be used to endorse or promote products
15 1.1 plunky * derived from this software without specific prior written permission.
16 1.1 plunky *
17 1.1 plunky * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 1.1 plunky * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 1.1 plunky * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 1.1 plunky * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 1.1 plunky * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 1.1 plunky * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 1.1 plunky * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 1.1 plunky * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 1.1 plunky * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 1.1 plunky * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 1.1 plunky */
28 1.1 plunky
29 1.2 christos #include "event2/event-config.h"
30 1.2 christos #include <sys/cdefs.h>
31 1.4 christos __RCSID("$NetBSD: buffer.c,v 1.4 2017/01/31 23:17:39 christos Exp $");
32 1.4 christos #include "evconfig-private.h"
33 1.1 plunky
34 1.4 christos #ifdef _WIN32
35 1.1 plunky #include <winsock2.h>
36 1.1 plunky #include <windows.h>
37 1.2 christos #include <io.h>
38 1.1 plunky #endif
39 1.1 plunky
40 1.4 christos #ifdef EVENT__HAVE_VASPRINTF
41 1.4 christos /* If we have vasprintf, we need to define _GNU_SOURCE before we include
42 1.4 christos * stdio.h. This comes from evconfig-private.h.
43 1.4 christos */
44 1.1 plunky #endif
45 1.1 plunky
46 1.1 plunky #include <sys/types.h>
47 1.1 plunky
48 1.4 christos #ifdef EVENT__HAVE_SYS_TIME_H
49 1.1 plunky #include <sys/time.h>
50 1.1 plunky #endif
51 1.1 plunky
52 1.4 christos #ifdef EVENT__HAVE_SYS_SOCKET_H
53 1.2 christos #include <sys/socket.h>
54 1.2 christos #endif
55 1.2 christos
56 1.4 christos #ifdef EVENT__HAVE_SYS_UIO_H
57 1.2 christos #include <sys/uio.h>
58 1.2 christos #endif
59 1.2 christos
60 1.4 christos #ifdef EVENT__HAVE_SYS_IOCTL_H
61 1.1 plunky #include <sys/ioctl.h>
62 1.1 plunky #endif
63 1.1 plunky
64 1.4 christos #ifdef EVENT__HAVE_SYS_MMAN_H
65 1.2 christos #include <sys/mman.h>
66 1.2 christos #endif
67 1.2 christos
68 1.4 christos #ifdef EVENT__HAVE_SYS_SENDFILE_H
69 1.2 christos #include <sys/sendfile.h>
70 1.2 christos #endif
71 1.4 christos #ifdef EVENT__HAVE_SYS_STAT_H
72 1.4 christos #include <sys/stat.h>
73 1.4 christos #endif
74 1.4 christos
75 1.2 christos
76 1.1 plunky #include <errno.h>
77 1.1 plunky #include <stdio.h>
78 1.1 plunky #include <stdlib.h>
79 1.1 plunky #include <string.h>
80 1.4 christos #ifdef EVENT__HAVE_STDARG_H
81 1.1 plunky #include <stdarg.h>
82 1.1 plunky #endif
83 1.4 christos #ifdef EVENT__HAVE_UNISTD_H
84 1.1 plunky #include <unistd.h>
85 1.1 plunky #endif
86 1.2 christos #include <limits.h>
87 1.2 christos
88 1.2 christos #include "event2/event.h"
89 1.2 christos #include "event2/buffer.h"
90 1.2 christos #include "event2/buffer_compat.h"
91 1.2 christos #include "event2/bufferevent.h"
92 1.2 christos #include "event2/bufferevent_compat.h"
93 1.2 christos #include "event2/bufferevent_struct.h"
94 1.2 christos #include "event2/thread.h"
95 1.2 christos #include "log-internal.h"
96 1.2 christos #include "mm-internal.h"
97 1.2 christos #include "util-internal.h"
98 1.2 christos #include "evthread-internal.h"
99 1.2 christos #include "evbuffer-internal.h"
100 1.2 christos #include "bufferevent-internal.h"
101 1.2 christos
102 1.2 christos /* some systems do not have MAP_FAILED */
103 1.2 christos #ifndef MAP_FAILED
104 1.2 christos #define MAP_FAILED ((void *)-1)
105 1.2 christos #endif
106 1.2 christos
107 1.2 christos /* send file support */
108 1.4 christos #if defined(EVENT__HAVE_SYS_SENDFILE_H) && defined(EVENT__HAVE_SENDFILE) && defined(__linux__)
109 1.2 christos #define USE_SENDFILE 1
110 1.2 christos #define SENDFILE_IS_LINUX 1
111 1.4 christos #elif defined(EVENT__HAVE_SENDFILE) && defined(__FreeBSD__)
112 1.2 christos #define USE_SENDFILE 1
113 1.2 christos #define SENDFILE_IS_FREEBSD 1
114 1.4 christos #elif defined(EVENT__HAVE_SENDFILE) && defined(__APPLE__)
115 1.2 christos #define USE_SENDFILE 1
116 1.2 christos #define SENDFILE_IS_MACOSX 1
117 1.4 christos #elif defined(EVENT__HAVE_SENDFILE) && defined(__sun__) && defined(__svr4__)
118 1.2 christos #define USE_SENDFILE 1
119 1.2 christos #define SENDFILE_IS_SOLARIS 1
120 1.2 christos #endif
121 1.2 christos
122 1.2 christos /* Mask of user-selectable callback flags. */
123 1.2 christos #define EVBUFFER_CB_USER_FLAGS 0xffff
124 1.2 christos /* Mask of all internal-use-only flags. */
125 1.2 christos #define EVBUFFER_CB_INTERNAL_FLAGS 0xffff0000
126 1.2 christos
127 1.2 christos /* Flag set if the callback is using the cb_obsolete function pointer */
128 1.2 christos #define EVBUFFER_CB_OBSOLETE 0x00040000
129 1.2 christos
130 1.2 christos /* evbuffer_chain support */
131 1.2 christos #define CHAIN_SPACE_PTR(ch) ((ch)->buffer + (ch)->misalign + (ch)->off)
132 1.2 christos #define CHAIN_SPACE_LEN(ch) ((ch)->flags & EVBUFFER_IMMUTABLE ? \
133 1.2 christos 0 : (ch)->buffer_len - ((ch)->misalign + (ch)->off))
134 1.2 christos
135 1.2 christos #define CHAIN_PINNED(ch) (((ch)->flags & EVBUFFER_MEM_PINNED_ANY) != 0)
136 1.2 christos #define CHAIN_PINNED_R(ch) (((ch)->flags & EVBUFFER_MEM_PINNED_R) != 0)
137 1.2 christos
138 1.4 christos /* evbuffer_ptr support */
139 1.4 christos #define PTR_NOT_FOUND(ptr) do { \
140 1.4 christos (ptr)->pos = -1; \
141 1.4 christos (ptr)->internal_.chain = NULL; \
142 1.4 christos (ptr)->internal_.pos_in_chain = 0; \
143 1.4 christos } while (0)
144 1.4 christos
145 1.2 christos static void evbuffer_chain_align(struct evbuffer_chain *chain);
146 1.2 christos static int evbuffer_chain_should_realign(struct evbuffer_chain *chain,
147 1.2 christos size_t datalen);
148 1.4 christos static void evbuffer_deferred_callback(struct event_callback *cb, void *arg);
149 1.2 christos static int evbuffer_ptr_memcmp(const struct evbuffer *buf,
150 1.2 christos const struct evbuffer_ptr *pos, const char *mem, size_t len);
151 1.2 christos static struct evbuffer_chain *evbuffer_expand_singlechain(struct evbuffer *buf,
152 1.2 christos size_t datlen);
153 1.4 christos static int evbuffer_ptr_subtract(struct evbuffer *buf, struct evbuffer_ptr *pos,
154 1.4 christos size_t howfar);
155 1.4 christos static int evbuffer_file_segment_materialize(struct evbuffer_file_segment *seg);
156 1.4 christos static inline void evbuffer_chain_incref(struct evbuffer_chain *chain);
157 1.2 christos
158 1.2 christos static struct evbuffer_chain *
159 1.2 christos evbuffer_chain_new(size_t size)
160 1.1 plunky {
161 1.2 christos struct evbuffer_chain *chain;
162 1.2 christos size_t to_alloc;
163 1.2 christos
164 1.3 spz if (size > EVBUFFER_CHAIN_MAX - EVBUFFER_CHAIN_SIZE)
165 1.3 spz return (NULL);
166 1.3 spz
167 1.2 christos size += EVBUFFER_CHAIN_SIZE;
168 1.2 christos
169 1.2 christos /* get the next largest memory that can hold the buffer */
170 1.3 spz if (size < EVBUFFER_CHAIN_MAX / 2) {
171 1.3 spz to_alloc = MIN_BUFFER_SIZE;
172 1.3 spz while (to_alloc < size) {
173 1.3 spz to_alloc <<= 1;
174 1.3 spz }
175 1.3 spz } else {
176 1.3 spz to_alloc = size;
177 1.3 spz }
178 1.2 christos
179 1.2 christos /* we get everything in one chunk */
180 1.2 christos if ((chain = mm_malloc(to_alloc)) == NULL)
181 1.2 christos return (NULL);
182 1.2 christos
183 1.2 christos memset(chain, 0, EVBUFFER_CHAIN_SIZE);
184 1.2 christos
185 1.2 christos chain->buffer_len = to_alloc - EVBUFFER_CHAIN_SIZE;
186 1.2 christos
187 1.2 christos /* this way we can manipulate the buffer to different addresses,
188 1.2 christos * which is required for mmap for example.
189 1.2 christos */
190 1.4 christos chain->buffer = EVBUFFER_CHAIN_EXTRA(unsigned char, chain);
191 1.4 christos
192 1.4 christos chain->refcnt = 1;
193 1.1 plunky
194 1.2 christos return (chain);
195 1.1 plunky }
196 1.1 plunky
197 1.2 christos static inline void
198 1.2 christos evbuffer_chain_free(struct evbuffer_chain *chain)
199 1.1 plunky {
200 1.4 christos EVUTIL_ASSERT(chain->refcnt > 0);
201 1.4 christos if (--chain->refcnt > 0) {
202 1.4 christos /* chain is still referenced by other chains */
203 1.4 christos return;
204 1.4 christos }
205 1.4 christos
206 1.2 christos if (CHAIN_PINNED(chain)) {
207 1.4 christos /* will get freed once no longer dangling */
208 1.4 christos chain->refcnt++;
209 1.2 christos chain->flags |= EVBUFFER_DANGLING;
210 1.2 christos return;
211 1.2 christos }
212 1.4 christos
213 1.4 christos /* safe to release chain, it's either a referencing
214 1.4 christos * chain or all references to it have been freed */
215 1.4 christos if (chain->flags & EVBUFFER_REFERENCE) {
216 1.4 christos struct evbuffer_chain_reference *info =
217 1.4 christos EVBUFFER_CHAIN_EXTRA(
218 1.4 christos struct evbuffer_chain_reference,
219 1.4 christos chain);
220 1.4 christos if (info->cleanupfn)
221 1.4 christos (*info->cleanupfn)(chain->buffer,
222 1.4 christos chain->buffer_len,
223 1.4 christos info->extra);
224 1.4 christos }
225 1.4 christos if (chain->flags & EVBUFFER_FILESEGMENT) {
226 1.4 christos struct evbuffer_chain_file_segment *info =
227 1.4 christos EVBUFFER_CHAIN_EXTRA(
228 1.4 christos struct evbuffer_chain_file_segment,
229 1.4 christos chain);
230 1.4 christos if (info->segment) {
231 1.4 christos #ifdef _WIN32
232 1.4 christos if (info->segment->is_mapping)
233 1.4 christos UnmapViewOfFile(chain->buffer);
234 1.4 christos #endif
235 1.4 christos evbuffer_file_segment_free(info->segment);
236 1.4 christos }
237 1.4 christos }
238 1.4 christos if (chain->flags & EVBUFFER_MULTICAST) {
239 1.4 christos struct evbuffer_multicast_parent *info =
240 1.4 christos EVBUFFER_CHAIN_EXTRA(
241 1.4 christos struct evbuffer_multicast_parent,
242 1.4 christos chain);
243 1.4 christos /* referencing chain is being freed, decrease
244 1.4 christos * refcounts of source chain and associated
245 1.4 christos * evbuffer (which get freed once both reach
246 1.4 christos * zero) */
247 1.4 christos EVUTIL_ASSERT(info->source != NULL);
248 1.4 christos EVUTIL_ASSERT(info->parent != NULL);
249 1.4 christos EVBUFFER_LOCK(info->source);
250 1.4 christos evbuffer_chain_free(info->parent);
251 1.4 christos evbuffer_decref_and_unlock_(info->source);
252 1.2 christos }
253 1.2 christos
254 1.2 christos mm_free(chain);
255 1.1 plunky }
256 1.1 plunky
257 1.2 christos static void
258 1.2 christos evbuffer_free_all_chains(struct evbuffer_chain *chain)
259 1.2 christos {
260 1.2 christos struct evbuffer_chain *next;
261 1.2 christos for (; chain; chain = next) {
262 1.2 christos next = chain->next;
263 1.2 christos evbuffer_chain_free(chain);
264 1.2 christos }
265 1.2 christos }
266 1.1 plunky
267 1.2 christos #ifndef NDEBUG
268 1.2 christos static int
269 1.2 christos evbuffer_chains_all_empty(struct evbuffer_chain *chain)
270 1.2 christos {
271 1.2 christos for (; chain; chain = chain->next) {
272 1.2 christos if (chain->off)
273 1.2 christos return 0;
274 1.2 christos }
275 1.2 christos return 1;
276 1.2 christos }
277 1.2 christos #else
278 1.2 christos /* The definition is needed for EVUTIL_ASSERT, which uses sizeof to avoid
279 1.2 christos "unused variable" warnings. */
280 1.2 christos static inline int evbuffer_chains_all_empty(struct evbuffer_chain *chain) {
281 1.2 christos return 1;
282 1.2 christos }
283 1.2 christos #endif
284 1.1 plunky
285 1.2 christos /* Free all trailing chains in 'buf' that are neither pinned nor empty, prior
286 1.2 christos * to replacing them all with a new chain. Return a pointer to the place
287 1.2 christos * where the new chain will go.
288 1.2 christos *
289 1.2 christos * Internal; requires lock. The caller must fix up buf->last and buf->first
290 1.2 christos * as needed; they might have been freed.
291 1.2 christos */
292 1.2 christos static struct evbuffer_chain **
293 1.2 christos evbuffer_free_trailing_empty_chains(struct evbuffer *buf)
294 1.1 plunky {
295 1.2 christos struct evbuffer_chain **ch = buf->last_with_datap;
296 1.2 christos /* Find the first victim chain. It might be *last_with_datap */
297 1.2 christos while ((*ch) && ((*ch)->off != 0 || CHAIN_PINNED(*ch)))
298 1.2 christos ch = &(*ch)->next;
299 1.2 christos if (*ch) {
300 1.2 christos EVUTIL_ASSERT(evbuffer_chains_all_empty(*ch));
301 1.2 christos evbuffer_free_all_chains(*ch);
302 1.2 christos *ch = NULL;
303 1.1 plunky }
304 1.2 christos return ch;
305 1.2 christos }
306 1.1 plunky
307 1.2 christos /* Add a single chain 'chain' to the end of 'buf', freeing trailing empty
308 1.2 christos * chains as necessary. Requires lock. Does not schedule callbacks.
309 1.2 christos */
310 1.2 christos static void
311 1.2 christos evbuffer_chain_insert(struct evbuffer *buf,
312 1.2 christos struct evbuffer_chain *chain)
313 1.2 christos {
314 1.2 christos ASSERT_EVBUFFER_LOCKED(buf);
315 1.2 christos if (*buf->last_with_datap == NULL) {
316 1.2 christos /* There are no chains data on the buffer at all. */
317 1.2 christos EVUTIL_ASSERT(buf->last_with_datap == &buf->first);
318 1.2 christos EVUTIL_ASSERT(buf->first == NULL);
319 1.2 christos buf->first = buf->last = chain;
320 1.2 christos } else {
321 1.4 christos struct evbuffer_chain **chp;
322 1.4 christos chp = evbuffer_free_trailing_empty_chains(buf);
323 1.4 christos *chp = chain;
324 1.4 christos if (chain->off)
325 1.4 christos buf->last_with_datap = chp;
326 1.2 christos buf->last = chain;
327 1.1 plunky }
328 1.2 christos buf->total_len += chain->off;
329 1.2 christos }
330 1.1 plunky
331 1.2 christos static inline struct evbuffer_chain *
332 1.2 christos evbuffer_chain_insert_new(struct evbuffer *buf, size_t datlen)
333 1.2 christos {
334 1.2 christos struct evbuffer_chain *chain;
335 1.2 christos if ((chain = evbuffer_chain_new(datlen)) == NULL)
336 1.2 christos return NULL;
337 1.2 christos evbuffer_chain_insert(buf, chain);
338 1.2 christos return chain;
339 1.1 plunky }
340 1.1 plunky
341 1.2 christos void
342 1.4 christos evbuffer_chain_pin_(struct evbuffer_chain *chain, unsigned flag)
343 1.1 plunky {
344 1.2 christos EVUTIL_ASSERT((chain->flags & flag) == 0);
345 1.2 christos chain->flags |= flag;
346 1.2 christos }
347 1.1 plunky
348 1.2 christos void
349 1.4 christos evbuffer_chain_unpin_(struct evbuffer_chain *chain, unsigned flag)
350 1.2 christos {
351 1.2 christos EVUTIL_ASSERT((chain->flags & flag) != 0);
352 1.2 christos chain->flags &= ~flag;
353 1.2 christos if (chain->flags & EVBUFFER_DANGLING)
354 1.2 christos evbuffer_chain_free(chain);
355 1.2 christos }
356 1.1 plunky
357 1.4 christos static inline void
358 1.4 christos evbuffer_chain_incref(struct evbuffer_chain *chain)
359 1.4 christos {
360 1.4 christos ++chain->refcnt;
361 1.4 christos }
362 1.4 christos
363 1.2 christos struct evbuffer *
364 1.2 christos evbuffer_new(void)
365 1.2 christos {
366 1.2 christos struct evbuffer *buffer;
367 1.1 plunky
368 1.2 christos buffer = mm_calloc(1, sizeof(struct evbuffer));
369 1.2 christos if (buffer == NULL)
370 1.2 christos return (NULL);
371 1.1 plunky
372 1.4 christos LIST_INIT(&buffer->callbacks);
373 1.2 christos buffer->refcnt = 1;
374 1.2 christos buffer->last_with_datap = &buffer->first;
375 1.1 plunky
376 1.2 christos return (buffer);
377 1.2 christos }
378 1.1 plunky
379 1.2 christos int
380 1.2 christos evbuffer_set_flags(struct evbuffer *buf, ev_uint64_t flags)
381 1.2 christos {
382 1.2 christos EVBUFFER_LOCK(buf);
383 1.2 christos buf->flags |= (ev_uint32_t)flags;
384 1.2 christos EVBUFFER_UNLOCK(buf);
385 1.2 christos return 0;
386 1.1 plunky }
387 1.1 plunky
388 1.1 plunky int
389 1.2 christos evbuffer_clear_flags(struct evbuffer *buf, ev_uint64_t flags)
390 1.1 plunky {
391 1.2 christos EVBUFFER_LOCK(buf);
392 1.2 christos buf->flags &= ~(ev_uint32_t)flags;
393 1.2 christos EVBUFFER_UNLOCK(buf);
394 1.2 christos return 0;
395 1.2 christos }
396 1.1 plunky
397 1.2 christos void
398 1.4 christos evbuffer_incref_(struct evbuffer *buf)
399 1.2 christos {
400 1.2 christos EVBUFFER_LOCK(buf);
401 1.2 christos ++buf->refcnt;
402 1.2 christos EVBUFFER_UNLOCK(buf);
403 1.2 christos }
404 1.1 plunky
405 1.2 christos void
406 1.4 christos evbuffer_incref_and_lock_(struct evbuffer *buf)
407 1.2 christos {
408 1.2 christos EVBUFFER_LOCK(buf);
409 1.2 christos ++buf->refcnt;
410 1.1 plunky }
411 1.1 plunky
412 1.2 christos int
413 1.2 christos evbuffer_defer_callbacks(struct evbuffer *buffer, struct event_base *base)
414 1.2 christos {
415 1.2 christos EVBUFFER_LOCK(buffer);
416 1.4 christos buffer->cb_queue = base;
417 1.2 christos buffer->deferred_cbs = 1;
418 1.4 christos event_deferred_cb_init_(&buffer->deferred,
419 1.4 christos event_base_get_npriorities(base) / 2,
420 1.2 christos evbuffer_deferred_callback, buffer);
421 1.2 christos EVBUFFER_UNLOCK(buffer);
422 1.2 christos return 0;
423 1.2 christos }
424 1.1 plunky
425 1.1 plunky int
426 1.2 christos evbuffer_enable_locking(struct evbuffer *buf, void *lock)
427 1.1 plunky {
428 1.4 christos #ifdef EVENT__DISABLE_THREAD_SUPPORT
429 1.2 christos return -1;
430 1.2 christos #else
431 1.2 christos if (buf->lock)
432 1.2 christos return -1;
433 1.2 christos
434 1.2 christos if (!lock) {
435 1.2 christos EVTHREAD_ALLOC_LOCK(lock, EVTHREAD_LOCKTYPE_RECURSIVE);
436 1.2 christos if (!lock)
437 1.2 christos return -1;
438 1.2 christos buf->lock = lock;
439 1.2 christos buf->own_lock = 1;
440 1.2 christos } else {
441 1.2 christos buf->lock = lock;
442 1.2 christos buf->own_lock = 0;
443 1.2 christos }
444 1.2 christos
445 1.2 christos return 0;
446 1.2 christos #endif
447 1.1 plunky }
448 1.1 plunky
449 1.2 christos void
450 1.4 christos evbuffer_set_parent_(struct evbuffer *buf, struct bufferevent *bev)
451 1.2 christos {
452 1.2 christos EVBUFFER_LOCK(buf);
453 1.2 christos buf->parent = bev;
454 1.2 christos EVBUFFER_UNLOCK(buf);
455 1.2 christos }
456 1.1 plunky
457 1.2 christos static void
458 1.2 christos evbuffer_run_callbacks(struct evbuffer *buffer, int running_deferred)
459 1.1 plunky {
460 1.2 christos struct evbuffer_cb_entry *cbent, *next;
461 1.2 christos struct evbuffer_cb_info info;
462 1.2 christos size_t new_size;
463 1.2 christos ev_uint32_t mask, masked_val;
464 1.2 christos int clear = 1;
465 1.2 christos
466 1.2 christos if (running_deferred) {
467 1.2 christos mask = EVBUFFER_CB_NODEFER|EVBUFFER_CB_ENABLED;
468 1.2 christos masked_val = EVBUFFER_CB_ENABLED;
469 1.2 christos } else if (buffer->deferred_cbs) {
470 1.2 christos mask = EVBUFFER_CB_NODEFER|EVBUFFER_CB_ENABLED;
471 1.2 christos masked_val = EVBUFFER_CB_NODEFER|EVBUFFER_CB_ENABLED;
472 1.2 christos /* Don't zero-out n_add/n_del, since the deferred callbacks
473 1.2 christos will want to see them. */
474 1.2 christos clear = 0;
475 1.2 christos } else {
476 1.2 christos mask = EVBUFFER_CB_ENABLED;
477 1.2 christos masked_val = EVBUFFER_CB_ENABLED;
478 1.1 plunky }
479 1.1 plunky
480 1.2 christos ASSERT_EVBUFFER_LOCKED(buffer);
481 1.1 plunky
482 1.4 christos if (LIST_EMPTY(&buffer->callbacks)) {
483 1.2 christos buffer->n_add_for_cb = buffer->n_del_for_cb = 0;
484 1.2 christos return;
485 1.1 plunky }
486 1.2 christos if (buffer->n_add_for_cb == 0 && buffer->n_del_for_cb == 0)
487 1.2 christos return;
488 1.1 plunky
489 1.2 christos new_size = buffer->total_len;
490 1.2 christos info.orig_size = new_size + buffer->n_del_for_cb - buffer->n_add_for_cb;
491 1.2 christos info.n_added = buffer->n_add_for_cb;
492 1.2 christos info.n_deleted = buffer->n_del_for_cb;
493 1.2 christos if (clear) {
494 1.2 christos buffer->n_add_for_cb = 0;
495 1.2 christos buffer->n_del_for_cb = 0;
496 1.2 christos }
497 1.4 christos for (cbent = LIST_FIRST(&buffer->callbacks);
498 1.4 christos cbent != LIST_END(&buffer->callbacks);
499 1.2 christos cbent = next) {
500 1.2 christos /* Get the 'next' pointer now in case this callback decides
501 1.2 christos * to remove itself or something. */
502 1.4 christos next = LIST_NEXT(cbent, next);
503 1.2 christos
504 1.2 christos if ((cbent->flags & mask) != masked_val)
505 1.2 christos continue;
506 1.2 christos
507 1.2 christos if ((cbent->flags & EVBUFFER_CB_OBSOLETE))
508 1.2 christos cbent->cb.cb_obsolete(buffer,
509 1.2 christos info.orig_size, new_size, cbent->cbarg);
510 1.2 christos else
511 1.2 christos cbent->cb.cb_func(buffer, &info, cbent->cbarg);
512 1.2 christos }
513 1.2 christos }
514 1.1 plunky
515 1.2 christos void
516 1.4 christos evbuffer_invoke_callbacks_(struct evbuffer *buffer)
517 1.2 christos {
518 1.4 christos if (LIST_EMPTY(&buffer->callbacks)) {
519 1.2 christos buffer->n_add_for_cb = buffer->n_del_for_cb = 0;
520 1.2 christos return;
521 1.2 christos }
522 1.1 plunky
523 1.2 christos if (buffer->deferred_cbs) {
524 1.4 christos if (event_deferred_cb_schedule_(buffer->cb_queue, &buffer->deferred)) {
525 1.4 christos evbuffer_incref_and_lock_(buffer);
526 1.4 christos if (buffer->parent)
527 1.4 christos bufferevent_incref_(buffer->parent);
528 1.4 christos }
529 1.2 christos EVBUFFER_UNLOCK(buffer);
530 1.1 plunky }
531 1.1 plunky
532 1.2 christos evbuffer_run_callbacks(buffer, 0);
533 1.2 christos }
534 1.2 christos
535 1.2 christos static void
536 1.4 christos evbuffer_deferred_callback(struct event_callback *cb, void *arg)
537 1.2 christos {
538 1.2 christos struct bufferevent *parent = NULL;
539 1.2 christos struct evbuffer *buffer = arg;
540 1.1 plunky
541 1.2 christos /* XXXX It would be better to run these callbacks without holding the
542 1.2 christos * lock */
543 1.2 christos EVBUFFER_LOCK(buffer);
544 1.2 christos parent = buffer->parent;
545 1.2 christos evbuffer_run_callbacks(buffer, 1);
546 1.4 christos evbuffer_decref_and_unlock_(buffer);
547 1.2 christos if (parent)
548 1.4 christos bufferevent_decref_(parent);
549 1.1 plunky }
550 1.1 plunky
551 1.1 plunky static void
552 1.2 christos evbuffer_remove_all_callbacks(struct evbuffer *buffer)
553 1.1 plunky {
554 1.2 christos struct evbuffer_cb_entry *cbent;
555 1.2 christos
556 1.4 christos while ((cbent = LIST_FIRST(&buffer->callbacks))) {
557 1.4 christos LIST_REMOVE(cbent, next);
558 1.4 christos mm_free(cbent);
559 1.2 christos }
560 1.1 plunky }
561 1.1 plunky
562 1.2 christos void
563 1.4 christos evbuffer_decref_and_unlock_(struct evbuffer *buffer)
564 1.2 christos {
565 1.2 christos struct evbuffer_chain *chain, *next;
566 1.2 christos ASSERT_EVBUFFER_LOCKED(buffer);
567 1.1 plunky
568 1.2 christos EVUTIL_ASSERT(buffer->refcnt > 0);
569 1.1 plunky
570 1.2 christos if (--buffer->refcnt > 0) {
571 1.2 christos EVBUFFER_UNLOCK(buffer);
572 1.2 christos return;
573 1.2 christos }
574 1.1 plunky
575 1.2 christos for (chain = buffer->first; chain != NULL; chain = next) {
576 1.2 christos next = chain->next;
577 1.2 christos evbuffer_chain_free(chain);
578 1.2 christos }
579 1.2 christos evbuffer_remove_all_callbacks(buffer);
580 1.2 christos if (buffer->deferred_cbs)
581 1.4 christos event_deferred_cb_cancel_(buffer->cb_queue, &buffer->deferred);
582 1.2 christos
583 1.2 christos EVBUFFER_UNLOCK(buffer);
584 1.2 christos if (buffer->own_lock)
585 1.2 christos EVTHREAD_FREE_LOCK(buffer->lock, EVTHREAD_LOCKTYPE_RECURSIVE);
586 1.2 christos mm_free(buffer);
587 1.2 christos }
588 1.1 plunky
589 1.2 christos void
590 1.2 christos evbuffer_free(struct evbuffer *buffer)
591 1.2 christos {
592 1.2 christos EVBUFFER_LOCK(buffer);
593 1.4 christos evbuffer_decref_and_unlock_(buffer);
594 1.2 christos }
595 1.1 plunky
596 1.2 christos void
597 1.2 christos evbuffer_lock(struct evbuffer *buf)
598 1.2 christos {
599 1.2 christos EVBUFFER_LOCK(buf);
600 1.2 christos }
601 1.1 plunky
602 1.2 christos void
603 1.2 christos evbuffer_unlock(struct evbuffer *buf)
604 1.2 christos {
605 1.2 christos EVBUFFER_UNLOCK(buf);
606 1.1 plunky }
607 1.1 plunky
608 1.2 christos size_t
609 1.2 christos evbuffer_get_length(const struct evbuffer *buffer)
610 1.1 plunky {
611 1.2 christos size_t result;
612 1.2 christos
613 1.2 christos EVBUFFER_LOCK(buffer);
614 1.1 plunky
615 1.2 christos result = (buffer->total_len);
616 1.2 christos
617 1.2 christos EVBUFFER_UNLOCK(buffer);
618 1.2 christos
619 1.2 christos return result;
620 1.2 christos }
621 1.1 plunky
622 1.2 christos size_t
623 1.2 christos evbuffer_get_contiguous_space(const struct evbuffer *buf)
624 1.2 christos {
625 1.2 christos struct evbuffer_chain *chain;
626 1.2 christos size_t result;
627 1.1 plunky
628 1.2 christos EVBUFFER_LOCK(buf);
629 1.2 christos chain = buf->first;
630 1.2 christos result = (chain != NULL ? chain->off : 0);
631 1.2 christos EVBUFFER_UNLOCK(buf);
632 1.1 plunky
633 1.2 christos return result;
634 1.1 plunky }
635 1.1 plunky
636 1.4 christos size_t
637 1.4 christos evbuffer_add_iovec(struct evbuffer * buf, struct evbuffer_iovec * vec, int n_vec) {
638 1.4 christos int n;
639 1.4 christos size_t res;
640 1.4 christos size_t to_alloc;
641 1.4 christos
642 1.4 christos EVBUFFER_LOCK(buf);
643 1.4 christos
644 1.4 christos res = to_alloc = 0;
645 1.4 christos
646 1.4 christos for (n = 0; n < n_vec; n++) {
647 1.4 christos to_alloc += vec[n].iov_len;
648 1.4 christos }
649 1.4 christos
650 1.4 christos if (evbuffer_expand_fast_(buf, to_alloc, 2) < 0) {
651 1.4 christos goto done;
652 1.4 christos }
653 1.4 christos
654 1.4 christos for (n = 0; n < n_vec; n++) {
655 1.4 christos /* XXX each 'add' call here does a bunch of setup that's
656 1.4 christos * obviated by evbuffer_expand_fast_, and some cleanup that we
657 1.4 christos * would like to do only once. Instead we should just extract
658 1.4 christos * the part of the code that's needed. */
659 1.4 christos
660 1.4 christos if (evbuffer_add(buf, vec[n].iov_base, vec[n].iov_len) < 0) {
661 1.4 christos goto done;
662 1.4 christos }
663 1.4 christos
664 1.4 christos res += vec[n].iov_len;
665 1.4 christos }
666 1.4 christos
667 1.4 christos done:
668 1.4 christos EVBUFFER_UNLOCK(buf);
669 1.4 christos return res;
670 1.4 christos }
671 1.4 christos
672 1.2 christos int
673 1.2 christos evbuffer_reserve_space(struct evbuffer *buf, ev_ssize_t size,
674 1.2 christos struct evbuffer_iovec *vec, int n_vecs)
675 1.1 plunky {
676 1.2 christos struct evbuffer_chain *chain, **chainp;
677 1.2 christos int n = -1;
678 1.1 plunky
679 1.2 christos EVBUFFER_LOCK(buf);
680 1.2 christos if (buf->freeze_end)
681 1.2 christos goto done;
682 1.2 christos if (n_vecs < 1)
683 1.1 plunky goto done;
684 1.2 christos if (n_vecs == 1) {
685 1.2 christos if ((chain = evbuffer_expand_singlechain(buf, size)) == NULL)
686 1.2 christos goto done;
687 1.2 christos
688 1.4 christos vec[0].iov_base = (void *)CHAIN_SPACE_PTR(chain);
689 1.4 christos vec[0].iov_len = (size_t)CHAIN_SPACE_LEN(chain);
690 1.2 christos EVUTIL_ASSERT(size<0 || (size_t)vec[0].iov_len >= (size_t)size);
691 1.2 christos n = 1;
692 1.2 christos } else {
693 1.4 christos if (evbuffer_expand_fast_(buf, size, n_vecs)<0)
694 1.2 christos goto done;
695 1.4 christos n = evbuffer_read_setup_vecs_(buf, size, vec, n_vecs,
696 1.2 christos &chainp, 0);
697 1.1 plunky }
698 1.1 plunky
699 1.2 christos done:
700 1.2 christos EVBUFFER_UNLOCK(buf);
701 1.2 christos return n;
702 1.2 christos
703 1.2 christos }
704 1.1 plunky
705 1.2 christos static int
706 1.2 christos advance_last_with_data(struct evbuffer *buf)
707 1.2 christos {
708 1.2 christos int n = 0;
709 1.2 christos ASSERT_EVBUFFER_LOCKED(buf);
710 1.1 plunky
711 1.2 christos if (!*buf->last_with_datap)
712 1.2 christos return 0;
713 1.1 plunky
714 1.2 christos while ((*buf->last_with_datap)->next && (*buf->last_with_datap)->next->off) {
715 1.2 christos buf->last_with_datap = &(*buf->last_with_datap)->next;
716 1.2 christos ++n;
717 1.2 christos }
718 1.2 christos return n;
719 1.1 plunky }
720 1.1 plunky
721 1.1 plunky int
722 1.2 christos evbuffer_commit_space(struct evbuffer *buf,
723 1.2 christos struct evbuffer_iovec *vec, int n_vecs)
724 1.1 plunky {
725 1.2 christos struct evbuffer_chain *chain, **firstchainp, **chainp;
726 1.2 christos int result = -1;
727 1.2 christos size_t added = 0;
728 1.2 christos int i;
729 1.2 christos
730 1.2 christos EVBUFFER_LOCK(buf);
731 1.1 plunky
732 1.2 christos if (buf->freeze_end)
733 1.2 christos goto done;
734 1.2 christos if (n_vecs == 0) {
735 1.2 christos result = 0;
736 1.2 christos goto done;
737 1.2 christos } else if (n_vecs == 1 &&
738 1.4 christos (buf->last && vec[0].iov_base == (void *)CHAIN_SPACE_PTR(buf->last))) {
739 1.2 christos /* The user only got or used one chain; it might not
740 1.2 christos * be the first one with space in it. */
741 1.2 christos if ((size_t)vec[0].iov_len > (size_t)CHAIN_SPACE_LEN(buf->last))
742 1.2 christos goto done;
743 1.2 christos buf->last->off += vec[0].iov_len;
744 1.2 christos added = vec[0].iov_len;
745 1.2 christos if (added)
746 1.2 christos advance_last_with_data(buf);
747 1.2 christos goto okay;
748 1.1 plunky }
749 1.1 plunky
750 1.2 christos /* Advance 'firstchain' to the first chain with space in it. */
751 1.2 christos firstchainp = buf->last_with_datap;
752 1.2 christos if (!*firstchainp)
753 1.2 christos goto done;
754 1.2 christos if (CHAIN_SPACE_LEN(*firstchainp) == 0) {
755 1.2 christos firstchainp = &(*firstchainp)->next;
756 1.2 christos }
757 1.1 plunky
758 1.2 christos chain = *firstchainp;
759 1.2 christos /* pass 1: make sure that the pointers and lengths of vecs[] are in
760 1.2 christos * bounds before we try to commit anything. */
761 1.2 christos for (i=0; i<n_vecs; ++i) {
762 1.2 christos if (!chain)
763 1.2 christos goto done;
764 1.4 christos if (vec[i].iov_base != (void *)CHAIN_SPACE_PTR(chain) ||
765 1.2 christos (size_t)vec[i].iov_len > CHAIN_SPACE_LEN(chain))
766 1.2 christos goto done;
767 1.2 christos chain = chain->next;
768 1.2 christos }
769 1.2 christos /* pass 2: actually adjust all the chains. */
770 1.2 christos chainp = firstchainp;
771 1.2 christos for (i=0; i<n_vecs; ++i) {
772 1.2 christos (*chainp)->off += vec[i].iov_len;
773 1.2 christos added += vec[i].iov_len;
774 1.2 christos if (vec[i].iov_len) {
775 1.2 christos buf->last_with_datap = chainp;
776 1.2 christos }
777 1.2 christos chainp = &(*chainp)->next;
778 1.2 christos }
779 1.1 plunky
780 1.2 christos okay:
781 1.2 christos buf->total_len += added;
782 1.2 christos buf->n_add_for_cb += added;
783 1.2 christos result = 0;
784 1.4 christos evbuffer_invoke_callbacks_(buf);
785 1.2 christos
786 1.2 christos done:
787 1.2 christos EVBUFFER_UNLOCK(buf);
788 1.2 christos return result;
789 1.2 christos }
790 1.1 plunky
791 1.2 christos static inline int
792 1.2 christos HAS_PINNED_R(struct evbuffer *buf)
793 1.2 christos {
794 1.2 christos return (buf->last && CHAIN_PINNED_R(buf->last));
795 1.2 christos }
796 1.1 plunky
797 1.2 christos static inline void
798 1.2 christos ZERO_CHAIN(struct evbuffer *dst)
799 1.2 christos {
800 1.2 christos ASSERT_EVBUFFER_LOCKED(dst);
801 1.2 christos dst->first = NULL;
802 1.2 christos dst->last = NULL;
803 1.2 christos dst->last_with_datap = &(dst)->first;
804 1.2 christos dst->total_len = 0;
805 1.1 plunky }
806 1.1 plunky
807 1.2 christos /* Prepares the contents of src to be moved to another buffer by removing
808 1.2 christos * read-pinned chains. The first pinned chain is saved in first, and the
809 1.2 christos * last in last. If src has no read-pinned chains, first and last are set
810 1.2 christos * to NULL. */
811 1.2 christos static int
812 1.2 christos PRESERVE_PINNED(struct evbuffer *src, struct evbuffer_chain **first,
813 1.2 christos struct evbuffer_chain **last)
814 1.1 plunky {
815 1.2 christos struct evbuffer_chain *chain, **pinned;
816 1.2 christos
817 1.2 christos ASSERT_EVBUFFER_LOCKED(src);
818 1.2 christos
819 1.2 christos if (!HAS_PINNED_R(src)) {
820 1.2 christos *first = *last = NULL;
821 1.2 christos return 0;
822 1.2 christos }
823 1.1 plunky
824 1.2 christos pinned = src->last_with_datap;
825 1.2 christos if (!CHAIN_PINNED_R(*pinned))
826 1.2 christos pinned = &(*pinned)->next;
827 1.2 christos EVUTIL_ASSERT(CHAIN_PINNED_R(*pinned));
828 1.2 christos chain = *first = *pinned;
829 1.2 christos *last = src->last;
830 1.2 christos
831 1.2 christos /* If there's data in the first pinned chain, we need to allocate
832 1.2 christos * a new chain and copy the data over. */
833 1.2 christos if (chain->off) {
834 1.2 christos struct evbuffer_chain *tmp;
835 1.2 christos
836 1.2 christos EVUTIL_ASSERT(pinned == src->last_with_datap);
837 1.2 christos tmp = evbuffer_chain_new(chain->off);
838 1.2 christos if (!tmp)
839 1.2 christos return -1;
840 1.2 christos memcpy(tmp->buffer, chain->buffer + chain->misalign,
841 1.2 christos chain->off);
842 1.2 christos tmp->off = chain->off;
843 1.2 christos *src->last_with_datap = tmp;
844 1.2 christos src->last = tmp;
845 1.2 christos chain->misalign += chain->off;
846 1.2 christos chain->off = 0;
847 1.2 christos } else {
848 1.2 christos src->last = *src->last_with_datap;
849 1.2 christos *pinned = NULL;
850 1.2 christos }
851 1.1 plunky
852 1.2 christos return 0;
853 1.1 plunky }
854 1.1 plunky
855 1.2 christos static inline void
856 1.2 christos RESTORE_PINNED(struct evbuffer *src, struct evbuffer_chain *pinned,
857 1.2 christos struct evbuffer_chain *last)
858 1.1 plunky {
859 1.2 christos ASSERT_EVBUFFER_LOCKED(src);
860 1.1 plunky
861 1.2 christos if (!pinned) {
862 1.2 christos ZERO_CHAIN(src);
863 1.2 christos return;
864 1.1 plunky }
865 1.1 plunky
866 1.2 christos src->first = pinned;
867 1.2 christos src->last = last;
868 1.2 christos src->last_with_datap = &src->first;
869 1.2 christos src->total_len = 0;
870 1.1 plunky }
871 1.1 plunky
872 1.2 christos static inline void
873 1.2 christos COPY_CHAIN(struct evbuffer *dst, struct evbuffer *src)
874 1.1 plunky {
875 1.2 christos ASSERT_EVBUFFER_LOCKED(dst);
876 1.2 christos ASSERT_EVBUFFER_LOCKED(src);
877 1.2 christos dst->first = src->first;
878 1.2 christos if (src->last_with_datap == &src->first)
879 1.2 christos dst->last_with_datap = &dst->first;
880 1.2 christos else
881 1.2 christos dst->last_with_datap = src->last_with_datap;
882 1.2 christos dst->last = src->last;
883 1.2 christos dst->total_len = src->total_len;
884 1.2 christos }
885 1.2 christos
886 1.2 christos static void
887 1.2 christos APPEND_CHAIN(struct evbuffer *dst, struct evbuffer *src)
888 1.2 christos {
889 1.4 christos struct evbuffer_chain **chp;
890 1.4 christos
891 1.2 christos ASSERT_EVBUFFER_LOCKED(dst);
892 1.2 christos ASSERT_EVBUFFER_LOCKED(src);
893 1.4 christos
894 1.4 christos chp = evbuffer_free_trailing_empty_chains(dst);
895 1.4 christos *chp = src->first;
896 1.4 christos
897 1.2 christos if (src->last_with_datap == &src->first)
898 1.4 christos dst->last_with_datap = chp;
899 1.2 christos else
900 1.2 christos dst->last_with_datap = src->last_with_datap;
901 1.2 christos dst->last = src->last;
902 1.2 christos dst->total_len += src->total_len;
903 1.2 christos }
904 1.2 christos
905 1.4 christos static inline void
906 1.4 christos APPEND_CHAIN_MULTICAST(struct evbuffer *dst, struct evbuffer *src)
907 1.4 christos {
908 1.4 christos struct evbuffer_chain *tmp;
909 1.4 christos struct evbuffer_chain *chain = src->first;
910 1.4 christos struct evbuffer_multicast_parent *extra;
911 1.4 christos
912 1.4 christos ASSERT_EVBUFFER_LOCKED(dst);
913 1.4 christos ASSERT_EVBUFFER_LOCKED(src);
914 1.4 christos
915 1.4 christos for (; chain; chain = chain->next) {
916 1.4 christos if (!chain->off || chain->flags & EVBUFFER_DANGLING) {
917 1.4 christos /* skip empty chains */
918 1.4 christos continue;
919 1.4 christos }
920 1.4 christos
921 1.4 christos tmp = evbuffer_chain_new(sizeof(struct evbuffer_multicast_parent));
922 1.4 christos if (!tmp) {
923 1.4 christos event_warn("%s: out of memory", __func__);
924 1.4 christos return;
925 1.4 christos }
926 1.4 christos extra = EVBUFFER_CHAIN_EXTRA(struct evbuffer_multicast_parent, tmp);
927 1.4 christos /* reference evbuffer containing source chain so it
928 1.4 christos * doesn't get released while the chain is still
929 1.4 christos * being referenced to */
930 1.4 christos evbuffer_incref_(src);
931 1.4 christos extra->source = src;
932 1.4 christos /* reference source chain which now becomes immutable */
933 1.4 christos evbuffer_chain_incref(chain);
934 1.4 christos extra->parent = chain;
935 1.4 christos chain->flags |= EVBUFFER_IMMUTABLE;
936 1.4 christos tmp->buffer_len = chain->buffer_len;
937 1.4 christos tmp->misalign = chain->misalign;
938 1.4 christos tmp->off = chain->off;
939 1.4 christos tmp->flags |= EVBUFFER_MULTICAST|EVBUFFER_IMMUTABLE;
940 1.4 christos tmp->buffer = chain->buffer;
941 1.4 christos evbuffer_chain_insert(dst, tmp);
942 1.4 christos }
943 1.4 christos }
944 1.4 christos
945 1.2 christos static void
946 1.2 christos PREPEND_CHAIN(struct evbuffer *dst, struct evbuffer *src)
947 1.2 christos {
948 1.2 christos ASSERT_EVBUFFER_LOCKED(dst);
949 1.2 christos ASSERT_EVBUFFER_LOCKED(src);
950 1.2 christos src->last->next = dst->first;
951 1.2 christos dst->first = src->first;
952 1.2 christos dst->total_len += src->total_len;
953 1.2 christos if (*dst->last_with_datap == NULL) {
954 1.2 christos if (src->last_with_datap == &(src)->first)
955 1.2 christos dst->last_with_datap = &dst->first;
956 1.2 christos else
957 1.2 christos dst->last_with_datap = src->last_with_datap;
958 1.2 christos } else if (dst->last_with_datap == &dst->first) {
959 1.2 christos dst->last_with_datap = &src->last->next;
960 1.2 christos }
961 1.2 christos }
962 1.2 christos
963 1.2 christos int
964 1.2 christos evbuffer_add_buffer(struct evbuffer *outbuf, struct evbuffer *inbuf)
965 1.2 christos {
966 1.2 christos struct evbuffer_chain *pinned, *last;
967 1.2 christos size_t in_total_len, out_total_len;
968 1.2 christos int result = 0;
969 1.2 christos
970 1.2 christos EVBUFFER_LOCK2(inbuf, outbuf);
971 1.2 christos in_total_len = inbuf->total_len;
972 1.2 christos out_total_len = outbuf->total_len;
973 1.2 christos
974 1.2 christos if (in_total_len == 0 || outbuf == inbuf)
975 1.2 christos goto done;
976 1.2 christos
977 1.2 christos if (outbuf->freeze_end || inbuf->freeze_start) {
978 1.2 christos result = -1;
979 1.2 christos goto done;
980 1.2 christos }
981 1.2 christos
982 1.2 christos if (PRESERVE_PINNED(inbuf, &pinned, &last) < 0) {
983 1.2 christos result = -1;
984 1.2 christos goto done;
985 1.2 christos }
986 1.2 christos
987 1.2 christos if (out_total_len == 0) {
988 1.2 christos /* There might be an empty chain at the start of outbuf; free
989 1.2 christos * it. */
990 1.2 christos evbuffer_free_all_chains(outbuf->first);
991 1.2 christos COPY_CHAIN(outbuf, inbuf);
992 1.2 christos } else {
993 1.2 christos APPEND_CHAIN(outbuf, inbuf);
994 1.2 christos }
995 1.2 christos
996 1.2 christos RESTORE_PINNED(inbuf, pinned, last);
997 1.2 christos
998 1.2 christos inbuf->n_del_for_cb += in_total_len;
999 1.2 christos outbuf->n_add_for_cb += in_total_len;
1000 1.2 christos
1001 1.4 christos evbuffer_invoke_callbacks_(inbuf);
1002 1.4 christos evbuffer_invoke_callbacks_(outbuf);
1003 1.4 christos
1004 1.4 christos done:
1005 1.4 christos EVBUFFER_UNLOCK2(inbuf, outbuf);
1006 1.4 christos return result;
1007 1.4 christos }
1008 1.4 christos
1009 1.4 christos int
1010 1.4 christos evbuffer_add_buffer_reference(struct evbuffer *outbuf, struct evbuffer *inbuf)
1011 1.4 christos {
1012 1.4 christos size_t in_total_len, out_total_len;
1013 1.4 christos struct evbuffer_chain *chain;
1014 1.4 christos int result = 0;
1015 1.4 christos
1016 1.4 christos EVBUFFER_LOCK2(inbuf, outbuf);
1017 1.4 christos in_total_len = inbuf->total_len;
1018 1.4 christos out_total_len = outbuf->total_len;
1019 1.4 christos chain = inbuf->first;
1020 1.4 christos
1021 1.4 christos if (in_total_len == 0)
1022 1.4 christos goto done;
1023 1.4 christos
1024 1.4 christos if (outbuf->freeze_end || outbuf == inbuf) {
1025 1.4 christos result = -1;
1026 1.4 christos goto done;
1027 1.4 christos }
1028 1.4 christos
1029 1.4 christos for (; chain; chain = chain->next) {
1030 1.4 christos if ((chain->flags & (EVBUFFER_FILESEGMENT|EVBUFFER_SENDFILE|EVBUFFER_MULTICAST)) != 0) {
1031 1.4 christos /* chain type can not be referenced */
1032 1.4 christos result = -1;
1033 1.4 christos goto done;
1034 1.4 christos }
1035 1.4 christos }
1036 1.4 christos
1037 1.4 christos if (out_total_len == 0) {
1038 1.4 christos /* There might be an empty chain at the start of outbuf; free
1039 1.4 christos * it. */
1040 1.4 christos evbuffer_free_all_chains(outbuf->first);
1041 1.4 christos }
1042 1.4 christos APPEND_CHAIN_MULTICAST(outbuf, inbuf);
1043 1.4 christos
1044 1.4 christos outbuf->n_add_for_cb += in_total_len;
1045 1.4 christos evbuffer_invoke_callbacks_(outbuf);
1046 1.2 christos
1047 1.2 christos done:
1048 1.2 christos EVBUFFER_UNLOCK2(inbuf, outbuf);
1049 1.2 christos return result;
1050 1.2 christos }
1051 1.2 christos
1052 1.2 christos int
1053 1.2 christos evbuffer_prepend_buffer(struct evbuffer *outbuf, struct evbuffer *inbuf)
1054 1.2 christos {
1055 1.2 christos struct evbuffer_chain *pinned, *last;
1056 1.2 christos size_t in_total_len, out_total_len;
1057 1.2 christos int result = 0;
1058 1.2 christos
1059 1.2 christos EVBUFFER_LOCK2(inbuf, outbuf);
1060 1.2 christos
1061 1.2 christos in_total_len = inbuf->total_len;
1062 1.2 christos out_total_len = outbuf->total_len;
1063 1.2 christos
1064 1.2 christos if (!in_total_len || inbuf == outbuf)
1065 1.2 christos goto done;
1066 1.2 christos
1067 1.2 christos if (outbuf->freeze_start || inbuf->freeze_start) {
1068 1.2 christos result = -1;
1069 1.2 christos goto done;
1070 1.2 christos }
1071 1.2 christos
1072 1.2 christos if (PRESERVE_PINNED(inbuf, &pinned, &last) < 0) {
1073 1.2 christos result = -1;
1074 1.2 christos goto done;
1075 1.2 christos }
1076 1.2 christos
1077 1.2 christos if (out_total_len == 0) {
1078 1.2 christos /* There might be an empty chain at the start of outbuf; free
1079 1.2 christos * it. */
1080 1.2 christos evbuffer_free_all_chains(outbuf->first);
1081 1.2 christos COPY_CHAIN(outbuf, inbuf);
1082 1.2 christos } else {
1083 1.2 christos PREPEND_CHAIN(outbuf, inbuf);
1084 1.2 christos }
1085 1.2 christos
1086 1.2 christos RESTORE_PINNED(inbuf, pinned, last);
1087 1.2 christos
1088 1.2 christos inbuf->n_del_for_cb += in_total_len;
1089 1.2 christos outbuf->n_add_for_cb += in_total_len;
1090 1.2 christos
1091 1.4 christos evbuffer_invoke_callbacks_(inbuf);
1092 1.4 christos evbuffer_invoke_callbacks_(outbuf);
1093 1.2 christos done:
1094 1.2 christos EVBUFFER_UNLOCK2(inbuf, outbuf);
1095 1.2 christos return result;
1096 1.2 christos }
1097 1.2 christos
1098 1.2 christos int
1099 1.2 christos evbuffer_drain(struct evbuffer *buf, size_t len)
1100 1.2 christos {
1101 1.2 christos struct evbuffer_chain *chain, *next;
1102 1.2 christos size_t remaining, old_len;
1103 1.2 christos int result = 0;
1104 1.2 christos
1105 1.2 christos EVBUFFER_LOCK(buf);
1106 1.2 christos old_len = buf->total_len;
1107 1.2 christos
1108 1.2 christos if (old_len == 0)
1109 1.2 christos goto done;
1110 1.2 christos
1111 1.2 christos if (buf->freeze_start) {
1112 1.2 christos result = -1;
1113 1.2 christos goto done;
1114 1.2 christos }
1115 1.2 christos
1116 1.2 christos if (len >= old_len && !HAS_PINNED_R(buf)) {
1117 1.2 christos len = old_len;
1118 1.2 christos for (chain = buf->first; chain != NULL; chain = next) {
1119 1.2 christos next = chain->next;
1120 1.2 christos evbuffer_chain_free(chain);
1121 1.2 christos }
1122 1.2 christos
1123 1.2 christos ZERO_CHAIN(buf);
1124 1.2 christos } else {
1125 1.2 christos if (len >= old_len)
1126 1.2 christos len = old_len;
1127 1.2 christos
1128 1.2 christos buf->total_len -= len;
1129 1.2 christos remaining = len;
1130 1.2 christos for (chain = buf->first;
1131 1.2 christos remaining >= chain->off;
1132 1.2 christos chain = next) {
1133 1.2 christos next = chain->next;
1134 1.2 christos remaining -= chain->off;
1135 1.2 christos
1136 1.2 christos if (chain == *buf->last_with_datap) {
1137 1.2 christos buf->last_with_datap = &buf->first;
1138 1.2 christos }
1139 1.2 christos if (&chain->next == buf->last_with_datap)
1140 1.2 christos buf->last_with_datap = &buf->first;
1141 1.2 christos
1142 1.2 christos if (CHAIN_PINNED_R(chain)) {
1143 1.2 christos EVUTIL_ASSERT(remaining == 0);
1144 1.2 christos chain->misalign += chain->off;
1145 1.2 christos chain->off = 0;
1146 1.2 christos break;
1147 1.2 christos } else
1148 1.2 christos evbuffer_chain_free(chain);
1149 1.2 christos }
1150 1.2 christos
1151 1.2 christos buf->first = chain;
1152 1.4 christos EVUTIL_ASSERT(chain && remaining <= chain->off);
1153 1.4 christos chain->misalign += remaining;
1154 1.4 christos chain->off -= remaining;
1155 1.2 christos }
1156 1.2 christos
1157 1.2 christos buf->n_del_for_cb += len;
1158 1.2 christos /* Tell someone about changes in this buffer */
1159 1.4 christos evbuffer_invoke_callbacks_(buf);
1160 1.2 christos
1161 1.2 christos done:
1162 1.2 christos EVBUFFER_UNLOCK(buf);
1163 1.2 christos return result;
1164 1.2 christos }
1165 1.2 christos
1166 1.2 christos /* Reads data from an event buffer and drains the bytes read */
1167 1.2 christos int
1168 1.2 christos evbuffer_remove(struct evbuffer *buf, void *data_out, size_t datlen)
1169 1.2 christos {
1170 1.2 christos ev_ssize_t n;
1171 1.2 christos EVBUFFER_LOCK(buf);
1172 1.4 christos n = evbuffer_copyout_from(buf, NULL, data_out, datlen);
1173 1.2 christos if (n > 0) {
1174 1.2 christos if (evbuffer_drain(buf, n)<0)
1175 1.2 christos n = -1;
1176 1.2 christos }
1177 1.2 christos EVBUFFER_UNLOCK(buf);
1178 1.2 christos return (int)n;
1179 1.2 christos }
1180 1.2 christos
1181 1.2 christos ev_ssize_t
1182 1.2 christos evbuffer_copyout(struct evbuffer *buf, void *data_out, size_t datlen)
1183 1.2 christos {
1184 1.4 christos return evbuffer_copyout_from(buf, NULL, data_out, datlen);
1185 1.4 christos }
1186 1.4 christos
1187 1.4 christos ev_ssize_t
1188 1.4 christos evbuffer_copyout_from(struct evbuffer *buf, const struct evbuffer_ptr *pos,
1189 1.4 christos void *data_out, size_t datlen)
1190 1.4 christos {
1191 1.2 christos /*XXX fails badly on sendfile case. */
1192 1.2 christos struct evbuffer_chain *chain;
1193 1.2 christos char *data = data_out;
1194 1.2 christos size_t nread;
1195 1.2 christos ev_ssize_t result = 0;
1196 1.4 christos size_t pos_in_chain;
1197 1.2 christos
1198 1.2 christos EVBUFFER_LOCK(buf);
1199 1.2 christos
1200 1.4 christos if (pos) {
1201 1.4 christos if (datlen > (size_t)(EV_SSIZE_MAX - pos->pos)) {
1202 1.4 christos result = -1;
1203 1.4 christos goto done;
1204 1.4 christos }
1205 1.4 christos chain = pos->internal_.chain;
1206 1.4 christos pos_in_chain = pos->internal_.pos_in_chain;
1207 1.4 christos if (datlen + pos->pos > buf->total_len)
1208 1.4 christos datlen = buf->total_len - pos->pos;
1209 1.4 christos } else {
1210 1.4 christos chain = buf->first;
1211 1.4 christos pos_in_chain = 0;
1212 1.4 christos if (datlen > buf->total_len)
1213 1.4 christos datlen = buf->total_len;
1214 1.4 christos }
1215 1.2 christos
1216 1.2 christos
1217 1.2 christos if (datlen == 0)
1218 1.2 christos goto done;
1219 1.2 christos
1220 1.2 christos if (buf->freeze_start) {
1221 1.2 christos result = -1;
1222 1.2 christos goto done;
1223 1.2 christos }
1224 1.2 christos
1225 1.2 christos nread = datlen;
1226 1.2 christos
1227 1.4 christos while (datlen && datlen >= chain->off - pos_in_chain) {
1228 1.4 christos size_t copylen = chain->off - pos_in_chain;
1229 1.4 christos memcpy(data,
1230 1.4 christos chain->buffer + chain->misalign + pos_in_chain,
1231 1.4 christos copylen);
1232 1.4 christos data += copylen;
1233 1.4 christos datlen -= copylen;
1234 1.2 christos
1235 1.2 christos chain = chain->next;
1236 1.4 christos pos_in_chain = 0;
1237 1.2 christos EVUTIL_ASSERT(chain || datlen==0);
1238 1.2 christos }
1239 1.2 christos
1240 1.2 christos if (datlen) {
1241 1.2 christos EVUTIL_ASSERT(chain);
1242 1.4 christos EVUTIL_ASSERT(datlen+pos_in_chain <= chain->off);
1243 1.4 christos
1244 1.4 christos memcpy(data, chain->buffer + chain->misalign + pos_in_chain,
1245 1.4 christos datlen);
1246 1.2 christos }
1247 1.2 christos
1248 1.2 christos result = nread;
1249 1.2 christos done:
1250 1.2 christos EVBUFFER_UNLOCK(buf);
1251 1.2 christos return result;
1252 1.2 christos }
1253 1.2 christos
1254 1.2 christos /* reads data from the src buffer to the dst buffer, avoids memcpy as
1255 1.2 christos * possible. */
1256 1.2 christos /* XXXX should return ev_ssize_t */
1257 1.2 christos int
1258 1.2 christos evbuffer_remove_buffer(struct evbuffer *src, struct evbuffer *dst,
1259 1.2 christos size_t datlen)
1260 1.2 christos {
1261 1.2 christos /*XXX We should have an option to force this to be zero-copy.*/
1262 1.2 christos
1263 1.2 christos /*XXX can fail badly on sendfile case. */
1264 1.2 christos struct evbuffer_chain *chain, *previous;
1265 1.2 christos size_t nread = 0;
1266 1.2 christos int result;
1267 1.2 christos
1268 1.2 christos EVBUFFER_LOCK2(src, dst);
1269 1.2 christos
1270 1.2 christos chain = previous = src->first;
1271 1.2 christos
1272 1.2 christos if (datlen == 0 || dst == src) {
1273 1.2 christos result = 0;
1274 1.2 christos goto done;
1275 1.2 christos }
1276 1.2 christos
1277 1.2 christos if (dst->freeze_end || src->freeze_start) {
1278 1.2 christos result = -1;
1279 1.2 christos goto done;
1280 1.2 christos }
1281 1.2 christos
1282 1.2 christos /* short-cut if there is no more data buffered */
1283 1.2 christos if (datlen >= src->total_len) {
1284 1.2 christos datlen = src->total_len;
1285 1.2 christos evbuffer_add_buffer(dst, src);
1286 1.2 christos result = (int)datlen; /*XXXX should return ev_ssize_t*/
1287 1.2 christos goto done;
1288 1.2 christos }
1289 1.2 christos
1290 1.2 christos /* removes chains if possible */
1291 1.2 christos while (chain->off <= datlen) {
1292 1.2 christos /* We can't remove the last with data from src unless we
1293 1.2 christos * remove all chains, in which case we would have done the if
1294 1.2 christos * block above */
1295 1.2 christos EVUTIL_ASSERT(chain != *src->last_with_datap);
1296 1.2 christos nread += chain->off;
1297 1.2 christos datlen -= chain->off;
1298 1.2 christos previous = chain;
1299 1.2 christos if (src->last_with_datap == &chain->next)
1300 1.2 christos src->last_with_datap = &src->first;
1301 1.2 christos chain = chain->next;
1302 1.2 christos }
1303 1.2 christos
1304 1.2 christos if (nread) {
1305 1.2 christos /* we can remove the chain */
1306 1.2 christos struct evbuffer_chain **chp;
1307 1.2 christos chp = evbuffer_free_trailing_empty_chains(dst);
1308 1.2 christos
1309 1.2 christos if (dst->first == NULL) {
1310 1.2 christos dst->first = src->first;
1311 1.2 christos } else {
1312 1.2 christos *chp = src->first;
1313 1.2 christos }
1314 1.2 christos dst->last = previous;
1315 1.2 christos previous->next = NULL;
1316 1.2 christos src->first = chain;
1317 1.2 christos advance_last_with_data(dst);
1318 1.2 christos
1319 1.2 christos dst->total_len += nread;
1320 1.2 christos dst->n_add_for_cb += nread;
1321 1.2 christos }
1322 1.2 christos
1323 1.2 christos /* we know that there is more data in the src buffer than
1324 1.2 christos * we want to read, so we manually drain the chain */
1325 1.2 christos evbuffer_add(dst, chain->buffer + chain->misalign, datlen);
1326 1.2 christos chain->misalign += datlen;
1327 1.2 christos chain->off -= datlen;
1328 1.2 christos nread += datlen;
1329 1.2 christos
1330 1.2 christos /* You might think we would want to increment dst->n_add_for_cb
1331 1.2 christos * here too. But evbuffer_add above already took care of that.
1332 1.2 christos */
1333 1.2 christos src->total_len -= nread;
1334 1.2 christos src->n_del_for_cb += nread;
1335 1.2 christos
1336 1.2 christos if (nread) {
1337 1.4 christos evbuffer_invoke_callbacks_(dst);
1338 1.4 christos evbuffer_invoke_callbacks_(src);
1339 1.2 christos }
1340 1.2 christos result = (int)nread;/*XXXX should change return type */
1341 1.2 christos
1342 1.2 christos done:
1343 1.2 christos EVBUFFER_UNLOCK2(src, dst);
1344 1.2 christos return result;
1345 1.2 christos }
1346 1.2 christos
1347 1.2 christos unsigned char *
1348 1.2 christos evbuffer_pullup(struct evbuffer *buf, ev_ssize_t size)
1349 1.2 christos {
1350 1.2 christos struct evbuffer_chain *chain, *next, *tmp, *last_with_data;
1351 1.2 christos unsigned char *buffer, *result = NULL;
1352 1.2 christos ev_ssize_t remaining;
1353 1.2 christos int removed_last_with_data = 0;
1354 1.2 christos int removed_last_with_datap = 0;
1355 1.2 christos
1356 1.2 christos EVBUFFER_LOCK(buf);
1357 1.2 christos
1358 1.2 christos chain = buf->first;
1359 1.2 christos
1360 1.2 christos if (size < 0)
1361 1.2 christos size = buf->total_len;
1362 1.2 christos /* if size > buf->total_len, we cannot guarantee to the user that she
1363 1.2 christos * is going to have a long enough buffer afterwards; so we return
1364 1.2 christos * NULL */
1365 1.2 christos if (size == 0 || (size_t)size > buf->total_len)
1366 1.2 christos goto done;
1367 1.2 christos
1368 1.2 christos /* No need to pull up anything; the first size bytes are
1369 1.2 christos * already here. */
1370 1.2 christos if (chain->off >= (size_t)size) {
1371 1.2 christos result = chain->buffer + chain->misalign;
1372 1.2 christos goto done;
1373 1.2 christos }
1374 1.2 christos
1375 1.2 christos /* Make sure that none of the chains we need to copy from is pinned. */
1376 1.2 christos remaining = size - chain->off;
1377 1.2 christos EVUTIL_ASSERT(remaining >= 0);
1378 1.2 christos for (tmp=chain->next; tmp; tmp=tmp->next) {
1379 1.2 christos if (CHAIN_PINNED(tmp))
1380 1.2 christos goto done;
1381 1.2 christos if (tmp->off >= (size_t)remaining)
1382 1.2 christos break;
1383 1.2 christos remaining -= tmp->off;
1384 1.2 christos }
1385 1.2 christos
1386 1.2 christos if (CHAIN_PINNED(chain)) {
1387 1.2 christos size_t old_off = chain->off;
1388 1.2 christos if (CHAIN_SPACE_LEN(chain) < size - chain->off) {
1389 1.2 christos /* not enough room at end of chunk. */
1390 1.2 christos goto done;
1391 1.2 christos }
1392 1.2 christos buffer = CHAIN_SPACE_PTR(chain);
1393 1.2 christos tmp = chain;
1394 1.2 christos tmp->off = size;
1395 1.2 christos size -= old_off;
1396 1.2 christos chain = chain->next;
1397 1.2 christos } else if (chain->buffer_len - chain->misalign >= (size_t)size) {
1398 1.2 christos /* already have enough space in the first chain */
1399 1.2 christos size_t old_off = chain->off;
1400 1.2 christos buffer = chain->buffer + chain->misalign + chain->off;
1401 1.2 christos tmp = chain;
1402 1.2 christos tmp->off = size;
1403 1.2 christos size -= old_off;
1404 1.2 christos chain = chain->next;
1405 1.2 christos } else {
1406 1.2 christos if ((tmp = evbuffer_chain_new(size)) == NULL) {
1407 1.2 christos event_warn("%s: out of memory", __func__);
1408 1.2 christos goto done;
1409 1.2 christos }
1410 1.2 christos buffer = tmp->buffer;
1411 1.2 christos tmp->off = size;
1412 1.2 christos buf->first = tmp;
1413 1.2 christos }
1414 1.2 christos
1415 1.2 christos /* TODO(niels): deal with buffers that point to NULL like sendfile */
1416 1.2 christos
1417 1.2 christos /* Copy and free every chunk that will be entirely pulled into tmp */
1418 1.2 christos last_with_data = *buf->last_with_datap;
1419 1.2 christos for (; chain != NULL && (size_t)size >= chain->off; chain = next) {
1420 1.2 christos next = chain->next;
1421 1.2 christos
1422 1.2 christos memcpy(buffer, chain->buffer + chain->misalign, chain->off);
1423 1.2 christos size -= chain->off;
1424 1.2 christos buffer += chain->off;
1425 1.2 christos if (chain == last_with_data)
1426 1.2 christos removed_last_with_data = 1;
1427 1.2 christos if (&chain->next == buf->last_with_datap)
1428 1.2 christos removed_last_with_datap = 1;
1429 1.2 christos
1430 1.2 christos evbuffer_chain_free(chain);
1431 1.2 christos }
1432 1.2 christos
1433 1.2 christos if (chain != NULL) {
1434 1.2 christos memcpy(buffer, chain->buffer + chain->misalign, size);
1435 1.2 christos chain->misalign += size;
1436 1.2 christos chain->off -= size;
1437 1.2 christos } else {
1438 1.2 christos buf->last = tmp;
1439 1.2 christos }
1440 1.2 christos
1441 1.2 christos tmp->next = chain;
1442 1.2 christos
1443 1.2 christos if (removed_last_with_data) {
1444 1.2 christos buf->last_with_datap = &buf->first;
1445 1.2 christos } else if (removed_last_with_datap) {
1446 1.2 christos if (buf->first->next && buf->first->next->off)
1447 1.2 christos buf->last_with_datap = &buf->first->next;
1448 1.2 christos else
1449 1.2 christos buf->last_with_datap = &buf->first;
1450 1.2 christos }
1451 1.2 christos
1452 1.2 christos result = (tmp->buffer + tmp->misalign);
1453 1.2 christos
1454 1.2 christos done:
1455 1.2 christos EVBUFFER_UNLOCK(buf);
1456 1.2 christos return result;
1457 1.2 christos }
1458 1.2 christos
1459 1.2 christos /*
1460 1.2 christos * Reads a line terminated by either '\r\n', '\n\r' or '\r' or '\n'.
1461 1.2 christos * The returned buffer needs to be freed by the called.
1462 1.2 christos */
1463 1.2 christos char *
1464 1.2 christos evbuffer_readline(struct evbuffer *buffer)
1465 1.2 christos {
1466 1.2 christos return evbuffer_readln(buffer, NULL, EVBUFFER_EOL_ANY);
1467 1.2 christos }
1468 1.2 christos
1469 1.2 christos static inline ev_ssize_t
1470 1.2 christos evbuffer_strchr(struct evbuffer_ptr *it, const char chr)
1471 1.2 christos {
1472 1.4 christos struct evbuffer_chain *chain = it->internal_.chain;
1473 1.4 christos size_t i = it->internal_.pos_in_chain;
1474 1.2 christos while (chain != NULL) {
1475 1.2 christos char *buffer = (char *)chain->buffer + chain->misalign;
1476 1.2 christos char *cp = memchr(buffer+i, chr, chain->off-i);
1477 1.2 christos if (cp) {
1478 1.4 christos it->internal_.chain = chain;
1479 1.4 christos it->internal_.pos_in_chain = cp - buffer;
1480 1.2 christos it->pos += (cp - buffer - i);
1481 1.2 christos return it->pos;
1482 1.2 christos }
1483 1.2 christos it->pos += chain->off - i;
1484 1.2 christos i = 0;
1485 1.2 christos chain = chain->next;
1486 1.2 christos }
1487 1.2 christos
1488 1.2 christos return (-1);
1489 1.2 christos }
1490 1.2 christos
1491 1.2 christos static inline char *
1492 1.2 christos find_eol_char(char *s, size_t len)
1493 1.2 christos {
1494 1.2 christos #define CHUNK_SZ 128
1495 1.2 christos /* Lots of benchmarking found this approach to be faster in practice
1496 1.2 christos * than doing two memchrs over the whole buffer, doin a memchr on each
1497 1.2 christos * char of the buffer, or trying to emulate memchr by hand. */
1498 1.2 christos char *s_end, *cr, *lf;
1499 1.2 christos s_end = s+len;
1500 1.2 christos while (s < s_end) {
1501 1.2 christos size_t chunk = (s + CHUNK_SZ < s_end) ? CHUNK_SZ : (s_end - s);
1502 1.2 christos cr = memchr(s, '\r', chunk);
1503 1.2 christos lf = memchr(s, '\n', chunk);
1504 1.2 christos if (cr) {
1505 1.2 christos if (lf && lf < cr)
1506 1.2 christos return lf;
1507 1.2 christos return cr;
1508 1.2 christos } else if (lf) {
1509 1.2 christos return lf;
1510 1.2 christos }
1511 1.2 christos s += CHUNK_SZ;
1512 1.2 christos }
1513 1.2 christos
1514 1.2 christos return NULL;
1515 1.2 christos #undef CHUNK_SZ
1516 1.2 christos }
1517 1.2 christos
1518 1.2 christos static ev_ssize_t
1519 1.2 christos evbuffer_find_eol_char(struct evbuffer_ptr *it)
1520 1.2 christos {
1521 1.4 christos struct evbuffer_chain *chain = it->internal_.chain;
1522 1.4 christos size_t i = it->internal_.pos_in_chain;
1523 1.2 christos while (chain != NULL) {
1524 1.2 christos char *buffer = (char *)chain->buffer + chain->misalign;
1525 1.2 christos char *cp = find_eol_char(buffer+i, chain->off-i);
1526 1.2 christos if (cp) {
1527 1.4 christos it->internal_.chain = chain;
1528 1.4 christos it->internal_.pos_in_chain = cp - buffer;
1529 1.2 christos it->pos += (cp - buffer) - i;
1530 1.2 christos return it->pos;
1531 1.2 christos }
1532 1.2 christos it->pos += chain->off - i;
1533 1.2 christos i = 0;
1534 1.2 christos chain = chain->next;
1535 1.2 christos }
1536 1.2 christos
1537 1.2 christos return (-1);
1538 1.2 christos }
1539 1.2 christos
1540 1.2 christos static inline int
1541 1.2 christos evbuffer_strspn(
1542 1.2 christos struct evbuffer_ptr *ptr, const char *chrset)
1543 1.2 christos {
1544 1.2 christos int count = 0;
1545 1.4 christos struct evbuffer_chain *chain = ptr->internal_.chain;
1546 1.4 christos size_t i = ptr->internal_.pos_in_chain;
1547 1.2 christos
1548 1.2 christos if (!chain)
1549 1.4 christos return 0;
1550 1.2 christos
1551 1.2 christos while (1) {
1552 1.2 christos char *buffer = (char *)chain->buffer + chain->misalign;
1553 1.2 christos for (; i < chain->off; ++i) {
1554 1.2 christos const char *p = chrset;
1555 1.2 christos while (*p) {
1556 1.2 christos if (buffer[i] == *p++)
1557 1.2 christos goto next;
1558 1.2 christos }
1559 1.4 christos ptr->internal_.chain = chain;
1560 1.4 christos ptr->internal_.pos_in_chain = i;
1561 1.2 christos ptr->pos += count;
1562 1.2 christos return count;
1563 1.2 christos next:
1564 1.2 christos ++count;
1565 1.2 christos }
1566 1.2 christos i = 0;
1567 1.2 christos
1568 1.2 christos if (! chain->next) {
1569 1.4 christos ptr->internal_.chain = chain;
1570 1.4 christos ptr->internal_.pos_in_chain = i;
1571 1.2 christos ptr->pos += count;
1572 1.2 christos return count;
1573 1.2 christos }
1574 1.2 christos
1575 1.2 christos chain = chain->next;
1576 1.2 christos }
1577 1.2 christos }
1578 1.2 christos
1579 1.2 christos
1580 1.4 christos static inline int
1581 1.2 christos evbuffer_getchr(struct evbuffer_ptr *it)
1582 1.2 christos {
1583 1.4 christos struct evbuffer_chain *chain = it->internal_.chain;
1584 1.4 christos size_t off = it->internal_.pos_in_chain;
1585 1.4 christos
1586 1.4 christos if (chain == NULL)
1587 1.4 christos return -1;
1588 1.2 christos
1589 1.4 christos return (unsigned char)chain->buffer[chain->misalign + off];
1590 1.2 christos }
1591 1.2 christos
1592 1.2 christos struct evbuffer_ptr
1593 1.2 christos evbuffer_search_eol(struct evbuffer *buffer,
1594 1.2 christos struct evbuffer_ptr *start, size_t *eol_len_out,
1595 1.2 christos enum evbuffer_eol_style eol_style)
1596 1.2 christos {
1597 1.2 christos struct evbuffer_ptr it, it2;
1598 1.2 christos size_t extra_drain = 0;
1599 1.2 christos int ok = 0;
1600 1.2 christos
1601 1.4 christos /* Avoid locking in trivial edge cases */
1602 1.4 christos if (start && start->internal_.chain == NULL) {
1603 1.4 christos PTR_NOT_FOUND(&it);
1604 1.4 christos if (eol_len_out)
1605 1.4 christos *eol_len_out = extra_drain;
1606 1.4 christos return it;
1607 1.4 christos }
1608 1.4 christos
1609 1.2 christos EVBUFFER_LOCK(buffer);
1610 1.2 christos
1611 1.2 christos if (start) {
1612 1.2 christos memcpy(&it, start, sizeof(it));
1613 1.2 christos } else {
1614 1.2 christos it.pos = 0;
1615 1.4 christos it.internal_.chain = buffer->first;
1616 1.4 christos it.internal_.pos_in_chain = 0;
1617 1.2 christos }
1618 1.2 christos
1619 1.2 christos /* the eol_style determines our first stop character and how many
1620 1.2 christos * characters we are going to drain afterwards. */
1621 1.2 christos switch (eol_style) {
1622 1.2 christos case EVBUFFER_EOL_ANY:
1623 1.2 christos if (evbuffer_find_eol_char(&it) < 0)
1624 1.2 christos goto done;
1625 1.2 christos memcpy(&it2, &it, sizeof(it));
1626 1.2 christos extra_drain = evbuffer_strspn(&it2, "\r\n");
1627 1.2 christos break;
1628 1.2 christos case EVBUFFER_EOL_CRLF_STRICT: {
1629 1.2 christos it = evbuffer_search(buffer, "\r\n", 2, &it);
1630 1.2 christos if (it.pos < 0)
1631 1.2 christos goto done;
1632 1.2 christos extra_drain = 2;
1633 1.2 christos break;
1634 1.2 christos }
1635 1.4 christos case EVBUFFER_EOL_CRLF: {
1636 1.4 christos ev_ssize_t start_pos = it.pos;
1637 1.4 christos /* Look for a LF ... */
1638 1.4 christos if (evbuffer_strchr(&it, '\n') < 0)
1639 1.4 christos goto done;
1640 1.4 christos extra_drain = 1;
1641 1.4 christos /* ... optionally preceeded by a CR. */
1642 1.4 christos if (it.pos == start_pos)
1643 1.4 christos break; /* If the first character is \n, don't back up */
1644 1.4 christos /* This potentially does an extra linear walk over the first
1645 1.4 christos * few chains. Probably, that's not too expensive unless you
1646 1.4 christos * have a really pathological setup. */
1647 1.4 christos memcpy(&it2, &it, sizeof(it));
1648 1.4 christos if (evbuffer_ptr_subtract(buffer, &it2, 1)<0)
1649 1.4 christos break;
1650 1.4 christos if (evbuffer_getchr(&it2) == '\r') {
1651 1.4 christos memcpy(&it, &it2, sizeof(it));
1652 1.4 christos extra_drain = 2;
1653 1.2 christos }
1654 1.2 christos break;
1655 1.4 christos }
1656 1.2 christos case EVBUFFER_EOL_LF:
1657 1.2 christos if (evbuffer_strchr(&it, '\n') < 0)
1658 1.2 christos goto done;
1659 1.2 christos extra_drain = 1;
1660 1.2 christos break;
1661 1.4 christos case EVBUFFER_EOL_NUL:
1662 1.4 christos if (evbuffer_strchr(&it, '\0') < 0)
1663 1.4 christos goto done;
1664 1.4 christos extra_drain = 1;
1665 1.4 christos break;
1666 1.2 christos default:
1667 1.2 christos goto done;
1668 1.2 christos }
1669 1.2 christos
1670 1.2 christos ok = 1;
1671 1.2 christos done:
1672 1.2 christos EVBUFFER_UNLOCK(buffer);
1673 1.2 christos
1674 1.4 christos if (!ok)
1675 1.4 christos PTR_NOT_FOUND(&it);
1676 1.2 christos if (eol_len_out)
1677 1.2 christos *eol_len_out = extra_drain;
1678 1.2 christos
1679 1.2 christos return it;
1680 1.2 christos }
1681 1.2 christos
1682 1.2 christos char *
1683 1.2 christos evbuffer_readln(struct evbuffer *buffer, size_t *n_read_out,
1684 1.2 christos enum evbuffer_eol_style eol_style)
1685 1.2 christos {
1686 1.2 christos struct evbuffer_ptr it;
1687 1.2 christos char *line;
1688 1.2 christos size_t n_to_copy=0, extra_drain=0;
1689 1.2 christos char *result = NULL;
1690 1.2 christos
1691 1.2 christos EVBUFFER_LOCK(buffer);
1692 1.2 christos
1693 1.2 christos if (buffer->freeze_start) {
1694 1.2 christos goto done;
1695 1.2 christos }
1696 1.2 christos
1697 1.2 christos it = evbuffer_search_eol(buffer, NULL, &extra_drain, eol_style);
1698 1.2 christos if (it.pos < 0)
1699 1.2 christos goto done;
1700 1.2 christos n_to_copy = it.pos;
1701 1.2 christos
1702 1.2 christos if ((line = mm_malloc(n_to_copy+1)) == NULL) {
1703 1.2 christos event_warn("%s: out of memory", __func__);
1704 1.2 christos goto done;
1705 1.2 christos }
1706 1.2 christos
1707 1.2 christos evbuffer_remove(buffer, line, n_to_copy);
1708 1.2 christos line[n_to_copy] = '\0';
1709 1.2 christos
1710 1.2 christos evbuffer_drain(buffer, extra_drain);
1711 1.2 christos result = line;
1712 1.2 christos done:
1713 1.2 christos EVBUFFER_UNLOCK(buffer);
1714 1.2 christos
1715 1.2 christos if (n_read_out)
1716 1.2 christos *n_read_out = result ? n_to_copy : 0;
1717 1.2 christos
1718 1.2 christos return result;
1719 1.2 christos }
1720 1.2 christos
1721 1.2 christos #define EVBUFFER_CHAIN_MAX_AUTO_SIZE 4096
1722 1.2 christos
1723 1.2 christos /* Adds data to an event buffer */
1724 1.2 christos
1725 1.2 christos int
1726 1.2 christos evbuffer_add(struct evbuffer *buf, const void *data_in, size_t datlen)
1727 1.2 christos {
1728 1.2 christos struct evbuffer_chain *chain, *tmp;
1729 1.2 christos const unsigned char *data = data_in;
1730 1.2 christos size_t remain, to_alloc;
1731 1.2 christos int result = -1;
1732 1.2 christos
1733 1.2 christos EVBUFFER_LOCK(buf);
1734 1.2 christos
1735 1.2 christos if (buf->freeze_end) {
1736 1.2 christos goto done;
1737 1.2 christos }
1738 1.3 spz /* Prevent buf->total_len overflow */
1739 1.3 spz if (datlen > EV_SIZE_MAX - buf->total_len) {
1740 1.3 spz goto done;
1741 1.3 spz }
1742 1.2 christos
1743 1.4 christos if (*buf->last_with_datap == NULL) {
1744 1.4 christos chain = buf->last;
1745 1.4 christos } else {
1746 1.4 christos chain = *buf->last_with_datap;
1747 1.4 christos }
1748 1.2 christos
1749 1.2 christos /* If there are no chains allocated for this buffer, allocate one
1750 1.2 christos * big enough to hold all the data. */
1751 1.2 christos if (chain == NULL) {
1752 1.2 christos chain = evbuffer_chain_new(datlen);
1753 1.2 christos if (!chain)
1754 1.2 christos goto done;
1755 1.2 christos evbuffer_chain_insert(buf, chain);
1756 1.2 christos }
1757 1.2 christos
1758 1.2 christos if ((chain->flags & EVBUFFER_IMMUTABLE) == 0) {
1759 1.3 spz /* Always true for mutable buffers */
1760 1.3 spz EVUTIL_ASSERT(chain->misalign >= 0 &&
1761 1.3 spz (ev_uint64_t)chain->misalign <= EVBUFFER_CHAIN_MAX);
1762 1.3 spz remain = chain->buffer_len - (size_t)chain->misalign - chain->off;
1763 1.2 christos if (remain >= datlen) {
1764 1.2 christos /* there's enough space to hold all the data in the
1765 1.2 christos * current last chain */
1766 1.2 christos memcpy(chain->buffer + chain->misalign + chain->off,
1767 1.2 christos data, datlen);
1768 1.2 christos chain->off += datlen;
1769 1.2 christos buf->total_len += datlen;
1770 1.2 christos buf->n_add_for_cb += datlen;
1771 1.2 christos goto out;
1772 1.2 christos } else if (!CHAIN_PINNED(chain) &&
1773 1.2 christos evbuffer_chain_should_realign(chain, datlen)) {
1774 1.2 christos /* we can fit the data into the misalignment */
1775 1.2 christos evbuffer_chain_align(chain);
1776 1.2 christos
1777 1.2 christos memcpy(chain->buffer + chain->off, data, datlen);
1778 1.2 christos chain->off += datlen;
1779 1.2 christos buf->total_len += datlen;
1780 1.2 christos buf->n_add_for_cb += datlen;
1781 1.2 christos goto out;
1782 1.2 christos }
1783 1.2 christos } else {
1784 1.2 christos /* we cannot write any data to the last chain */
1785 1.2 christos remain = 0;
1786 1.2 christos }
1787 1.2 christos
1788 1.2 christos /* we need to add another chain */
1789 1.2 christos to_alloc = chain->buffer_len;
1790 1.2 christos if (to_alloc <= EVBUFFER_CHAIN_MAX_AUTO_SIZE/2)
1791 1.2 christos to_alloc <<= 1;
1792 1.2 christos if (datlen > to_alloc)
1793 1.2 christos to_alloc = datlen;
1794 1.2 christos tmp = evbuffer_chain_new(to_alloc);
1795 1.2 christos if (tmp == NULL)
1796 1.2 christos goto done;
1797 1.2 christos
1798 1.2 christos if (remain) {
1799 1.2 christos memcpy(chain->buffer + chain->misalign + chain->off,
1800 1.2 christos data, remain);
1801 1.2 christos chain->off += remain;
1802 1.2 christos buf->total_len += remain;
1803 1.2 christos buf->n_add_for_cb += remain;
1804 1.2 christos }
1805 1.2 christos
1806 1.2 christos data += remain;
1807 1.2 christos datlen -= remain;
1808 1.2 christos
1809 1.2 christos memcpy(tmp->buffer, data, datlen);
1810 1.2 christos tmp->off = datlen;
1811 1.2 christos evbuffer_chain_insert(buf, tmp);
1812 1.2 christos buf->n_add_for_cb += datlen;
1813 1.2 christos
1814 1.2 christos out:
1815 1.4 christos evbuffer_invoke_callbacks_(buf);
1816 1.2 christos result = 0;
1817 1.2 christos done:
1818 1.2 christos EVBUFFER_UNLOCK(buf);
1819 1.2 christos return result;
1820 1.2 christos }
1821 1.2 christos
1822 1.2 christos int
1823 1.2 christos evbuffer_prepend(struct evbuffer *buf, const void *data, size_t datlen)
1824 1.2 christos {
1825 1.2 christos struct evbuffer_chain *chain, *tmp;
1826 1.2 christos int result = -1;
1827 1.2 christos
1828 1.2 christos EVBUFFER_LOCK(buf);
1829 1.2 christos
1830 1.2 christos if (buf->freeze_start) {
1831 1.2 christos goto done;
1832 1.2 christos }
1833 1.3 spz if (datlen > EV_SIZE_MAX - buf->total_len) {
1834 1.3 spz goto done;
1835 1.3 spz }
1836 1.2 christos
1837 1.2 christos chain = buf->first;
1838 1.2 christos
1839 1.2 christos if (chain == NULL) {
1840 1.2 christos chain = evbuffer_chain_new(datlen);
1841 1.2 christos if (!chain)
1842 1.2 christos goto done;
1843 1.2 christos evbuffer_chain_insert(buf, chain);
1844 1.2 christos }
1845 1.2 christos
1846 1.2 christos /* we cannot touch immutable buffers */
1847 1.2 christos if ((chain->flags & EVBUFFER_IMMUTABLE) == 0) {
1848 1.3 spz /* Always true for mutable buffers */
1849 1.3 spz EVUTIL_ASSERT(chain->misalign >= 0 &&
1850 1.3 spz (ev_uint64_t)chain->misalign <= EVBUFFER_CHAIN_MAX);
1851 1.3 spz
1852 1.2 christos /* If this chain is empty, we can treat it as
1853 1.2 christos * 'empty at the beginning' rather than 'empty at the end' */
1854 1.2 christos if (chain->off == 0)
1855 1.2 christos chain->misalign = chain->buffer_len;
1856 1.2 christos
1857 1.2 christos if ((size_t)chain->misalign >= datlen) {
1858 1.2 christos /* we have enough space to fit everything */
1859 1.2 christos memcpy(chain->buffer + chain->misalign - datlen,
1860 1.2 christos data, datlen);
1861 1.2 christos chain->off += datlen;
1862 1.2 christos chain->misalign -= datlen;
1863 1.2 christos buf->total_len += datlen;
1864 1.2 christos buf->n_add_for_cb += datlen;
1865 1.2 christos goto out;
1866 1.2 christos } else if (chain->misalign) {
1867 1.2 christos /* we can only fit some of the data. */
1868 1.2 christos memcpy(chain->buffer,
1869 1.2 christos (const char*)data + datlen - chain->misalign,
1870 1.2 christos (size_t)chain->misalign);
1871 1.2 christos chain->off += (size_t)chain->misalign;
1872 1.2 christos buf->total_len += (size_t)chain->misalign;
1873 1.2 christos buf->n_add_for_cb += (size_t)chain->misalign;
1874 1.2 christos datlen -= (size_t)chain->misalign;
1875 1.2 christos chain->misalign = 0;
1876 1.2 christos }
1877 1.2 christos }
1878 1.2 christos
1879 1.2 christos /* we need to add another chain */
1880 1.2 christos if ((tmp = evbuffer_chain_new(datlen)) == NULL)
1881 1.2 christos goto done;
1882 1.2 christos buf->first = tmp;
1883 1.2 christos if (buf->last_with_datap == &buf->first)
1884 1.2 christos buf->last_with_datap = &tmp->next;
1885 1.2 christos
1886 1.2 christos tmp->next = chain;
1887 1.2 christos
1888 1.2 christos tmp->off = datlen;
1889 1.3 spz EVUTIL_ASSERT(datlen <= tmp->buffer_len);
1890 1.2 christos tmp->misalign = tmp->buffer_len - datlen;
1891 1.2 christos
1892 1.2 christos memcpy(tmp->buffer + tmp->misalign, data, datlen);
1893 1.2 christos buf->total_len += datlen;
1894 1.4 christos buf->n_add_for_cb += datlen;
1895 1.2 christos
1896 1.2 christos out:
1897 1.4 christos evbuffer_invoke_callbacks_(buf);
1898 1.2 christos result = 0;
1899 1.2 christos done:
1900 1.2 christos EVBUFFER_UNLOCK(buf);
1901 1.2 christos return result;
1902 1.2 christos }
1903 1.2 christos
1904 1.2 christos /** Helper: realigns the memory in chain->buffer so that misalign is 0. */
1905 1.2 christos static void
1906 1.2 christos evbuffer_chain_align(struct evbuffer_chain *chain)
1907 1.2 christos {
1908 1.2 christos EVUTIL_ASSERT(!(chain->flags & EVBUFFER_IMMUTABLE));
1909 1.2 christos EVUTIL_ASSERT(!(chain->flags & EVBUFFER_MEM_PINNED_ANY));
1910 1.2 christos memmove(chain->buffer, chain->buffer + chain->misalign, chain->off);
1911 1.2 christos chain->misalign = 0;
1912 1.2 christos }
1913 1.2 christos
1914 1.2 christos #define MAX_TO_COPY_IN_EXPAND 4096
1915 1.2 christos #define MAX_TO_REALIGN_IN_EXPAND 2048
1916 1.2 christos
1917 1.2 christos /** Helper: return true iff we should realign chain to fit datalen bytes of
1918 1.2 christos data in it. */
1919 1.2 christos static int
1920 1.2 christos evbuffer_chain_should_realign(struct evbuffer_chain *chain,
1921 1.2 christos size_t datlen)
1922 1.2 christos {
1923 1.2 christos return chain->buffer_len - chain->off >= datlen &&
1924 1.2 christos (chain->off < chain->buffer_len / 2) &&
1925 1.2 christos (chain->off <= MAX_TO_REALIGN_IN_EXPAND);
1926 1.2 christos }
1927 1.2 christos
1928 1.2 christos /* Expands the available space in the event buffer to at least datlen, all in
1929 1.2 christos * a single chunk. Return that chunk. */
1930 1.2 christos static struct evbuffer_chain *
1931 1.2 christos evbuffer_expand_singlechain(struct evbuffer *buf, size_t datlen)
1932 1.2 christos {
1933 1.2 christos struct evbuffer_chain *chain, **chainp;
1934 1.2 christos struct evbuffer_chain *result = NULL;
1935 1.2 christos ASSERT_EVBUFFER_LOCKED(buf);
1936 1.2 christos
1937 1.2 christos chainp = buf->last_with_datap;
1938 1.2 christos
1939 1.2 christos /* XXX If *chainp is no longer writeable, but has enough space in its
1940 1.2 christos * misalign, this might be a bad idea: we could still use *chainp, not
1941 1.2 christos * (*chainp)->next. */
1942 1.2 christos if (*chainp && CHAIN_SPACE_LEN(*chainp) == 0)
1943 1.2 christos chainp = &(*chainp)->next;
1944 1.2 christos
1945 1.2 christos /* 'chain' now points to the first chain with writable space (if any)
1946 1.2 christos * We will either use it, realign it, replace it, or resize it. */
1947 1.2 christos chain = *chainp;
1948 1.2 christos
1949 1.2 christos if (chain == NULL ||
1950 1.2 christos (chain->flags & (EVBUFFER_IMMUTABLE|EVBUFFER_MEM_PINNED_ANY))) {
1951 1.2 christos /* We can't use the last_with_data chain at all. Just add a
1952 1.2 christos * new one that's big enough. */
1953 1.2 christos goto insert_new;
1954 1.2 christos }
1955 1.2 christos
1956 1.2 christos /* If we can fit all the data, then we don't have to do anything */
1957 1.2 christos if (CHAIN_SPACE_LEN(chain) >= datlen) {
1958 1.2 christos result = chain;
1959 1.2 christos goto ok;
1960 1.2 christos }
1961 1.2 christos
1962 1.2 christos /* If the chain is completely empty, just replace it by adding a new
1963 1.2 christos * empty chain. */
1964 1.2 christos if (chain->off == 0) {
1965 1.2 christos goto insert_new;
1966 1.2 christos }
1967 1.2 christos
1968 1.2 christos /* If the misalignment plus the remaining space fulfills our data
1969 1.2 christos * needs, we could just force an alignment to happen. Afterwards, we
1970 1.2 christos * have enough space. But only do this if we're saving a lot of space
1971 1.2 christos * and not moving too much data. Otherwise the space savings are
1972 1.2 christos * probably offset by the time lost in copying.
1973 1.2 christos */
1974 1.2 christos if (evbuffer_chain_should_realign(chain, datlen)) {
1975 1.2 christos evbuffer_chain_align(chain);
1976 1.2 christos result = chain;
1977 1.2 christos goto ok;
1978 1.2 christos }
1979 1.2 christos
1980 1.2 christos /* At this point, we can either resize the last chunk with space in
1981 1.2 christos * it, use the next chunk after it, or If we add a new chunk, we waste
1982 1.2 christos * CHAIN_SPACE_LEN(chain) bytes in the former last chunk. If we
1983 1.2 christos * resize, we have to copy chain->off bytes.
1984 1.2 christos */
1985 1.2 christos
1986 1.2 christos /* Would expanding this chunk be affordable and worthwhile? */
1987 1.2 christos if (CHAIN_SPACE_LEN(chain) < chain->buffer_len / 8 ||
1988 1.3 spz chain->off > MAX_TO_COPY_IN_EXPAND ||
1989 1.4 christos datlen >= (EVBUFFER_CHAIN_MAX - chain->off)) {
1990 1.2 christos /* It's not worth resizing this chain. Can the next one be
1991 1.2 christos * used? */
1992 1.2 christos if (chain->next && CHAIN_SPACE_LEN(chain->next) >= datlen) {
1993 1.2 christos /* Yes, we can just use the next chain (which should
1994 1.2 christos * be empty. */
1995 1.2 christos result = chain->next;
1996 1.2 christos goto ok;
1997 1.2 christos } else {
1998 1.2 christos /* No; append a new chain (which will free all
1999 1.2 christos * terminal empty chains.) */
2000 1.2 christos goto insert_new;
2001 1.2 christos }
2002 1.2 christos } else {
2003 1.2 christos /* Okay, we're going to try to resize this chain: Not doing so
2004 1.2 christos * would waste at least 1/8 of its current allocation, and we
2005 1.2 christos * can do so without having to copy more than
2006 1.2 christos * MAX_TO_COPY_IN_EXPAND bytes. */
2007 1.2 christos /* figure out how much space we need */
2008 1.2 christos size_t length = chain->off + datlen;
2009 1.2 christos struct evbuffer_chain *tmp = evbuffer_chain_new(length);
2010 1.2 christos if (tmp == NULL)
2011 1.2 christos goto err;
2012 1.2 christos
2013 1.2 christos /* copy the data over that we had so far */
2014 1.2 christos tmp->off = chain->off;
2015 1.2 christos memcpy(tmp->buffer, chain->buffer + chain->misalign,
2016 1.2 christos chain->off);
2017 1.2 christos /* fix up the list */
2018 1.2 christos EVUTIL_ASSERT(*chainp == chain);
2019 1.2 christos result = *chainp = tmp;
2020 1.2 christos
2021 1.2 christos if (buf->last == chain)
2022 1.2 christos buf->last = tmp;
2023 1.2 christos
2024 1.2 christos tmp->next = chain->next;
2025 1.2 christos evbuffer_chain_free(chain);
2026 1.2 christos goto ok;
2027 1.2 christos }
2028 1.2 christos
2029 1.2 christos insert_new:
2030 1.2 christos result = evbuffer_chain_insert_new(buf, datlen);
2031 1.2 christos if (!result)
2032 1.2 christos goto err;
2033 1.2 christos ok:
2034 1.2 christos EVUTIL_ASSERT(result);
2035 1.2 christos EVUTIL_ASSERT(CHAIN_SPACE_LEN(result) >= datlen);
2036 1.2 christos err:
2037 1.2 christos return result;
2038 1.2 christos }
2039 1.2 christos
2040 1.2 christos /* Make sure that datlen bytes are available for writing in the last n
2041 1.2 christos * chains. Never copies or moves data. */
2042 1.2 christos int
2043 1.4 christos evbuffer_expand_fast_(struct evbuffer *buf, size_t datlen, int n)
2044 1.2 christos {
2045 1.2 christos struct evbuffer_chain *chain = buf->last, *tmp, *next;
2046 1.2 christos size_t avail;
2047 1.2 christos int used;
2048 1.2 christos
2049 1.2 christos ASSERT_EVBUFFER_LOCKED(buf);
2050 1.2 christos EVUTIL_ASSERT(n >= 2);
2051 1.2 christos
2052 1.2 christos if (chain == NULL || (chain->flags & EVBUFFER_IMMUTABLE)) {
2053 1.2 christos /* There is no last chunk, or we can't touch the last chunk.
2054 1.2 christos * Just add a new chunk. */
2055 1.2 christos chain = evbuffer_chain_new(datlen);
2056 1.2 christos if (chain == NULL)
2057 1.2 christos return (-1);
2058 1.2 christos
2059 1.2 christos evbuffer_chain_insert(buf, chain);
2060 1.2 christos return (0);
2061 1.2 christos }
2062 1.2 christos
2063 1.2 christos used = 0; /* number of chains we're using space in. */
2064 1.2 christos avail = 0; /* how much space they have. */
2065 1.2 christos /* How many bytes can we stick at the end of buffer as it is? Iterate
2066 1.2 christos * over the chains at the end of the buffer, tring to see how much
2067 1.2 christos * space we have in the first n. */
2068 1.2 christos for (chain = *buf->last_with_datap; chain; chain = chain->next) {
2069 1.2 christos if (chain->off) {
2070 1.2 christos size_t space = (size_t) CHAIN_SPACE_LEN(chain);
2071 1.2 christos EVUTIL_ASSERT(chain == *buf->last_with_datap);
2072 1.2 christos if (space) {
2073 1.2 christos avail += space;
2074 1.2 christos ++used;
2075 1.2 christos }
2076 1.2 christos } else {
2077 1.2 christos /* No data in chain; realign it. */
2078 1.2 christos chain->misalign = 0;
2079 1.2 christos avail += chain->buffer_len;
2080 1.2 christos ++used;
2081 1.2 christos }
2082 1.2 christos if (avail >= datlen) {
2083 1.2 christos /* There is already enough space. Just return */
2084 1.2 christos return (0);
2085 1.2 christos }
2086 1.2 christos if (used == n)
2087 1.2 christos break;
2088 1.2 christos }
2089 1.2 christos
2090 1.2 christos /* There wasn't enough space in the first n chains with space in
2091 1.2 christos * them. Either add a new chain with enough space, or replace all
2092 1.2 christos * empty chains with one that has enough space, depending on n. */
2093 1.2 christos if (used < n) {
2094 1.2 christos /* The loop ran off the end of the chains before it hit n
2095 1.2 christos * chains; we can add another. */
2096 1.2 christos EVUTIL_ASSERT(chain == NULL);
2097 1.2 christos
2098 1.2 christos tmp = evbuffer_chain_new(datlen - avail);
2099 1.2 christos if (tmp == NULL)
2100 1.2 christos return (-1);
2101 1.2 christos
2102 1.2 christos buf->last->next = tmp;
2103 1.2 christos buf->last = tmp;
2104 1.2 christos /* (we would only set last_with_data if we added the first
2105 1.2 christos * chain. But if the buffer had no chains, we would have
2106 1.2 christos * just allocated a new chain earlier) */
2107 1.2 christos return (0);
2108 1.2 christos } else {
2109 1.2 christos /* Nuke _all_ the empty chains. */
2110 1.2 christos int rmv_all = 0; /* True iff we removed last_with_data. */
2111 1.2 christos chain = *buf->last_with_datap;
2112 1.2 christos if (!chain->off) {
2113 1.2 christos EVUTIL_ASSERT(chain == buf->first);
2114 1.2 christos rmv_all = 1;
2115 1.2 christos avail = 0;
2116 1.2 christos } else {
2117 1.3 spz /* can't overflow, since only mutable chains have
2118 1.3 spz * huge misaligns. */
2119 1.2 christos avail = (size_t) CHAIN_SPACE_LEN(chain);
2120 1.2 christos chain = chain->next;
2121 1.2 christos }
2122 1.2 christos
2123 1.2 christos
2124 1.2 christos for (; chain; chain = next) {
2125 1.2 christos next = chain->next;
2126 1.2 christos EVUTIL_ASSERT(chain->off == 0);
2127 1.2 christos evbuffer_chain_free(chain);
2128 1.2 christos }
2129 1.3 spz EVUTIL_ASSERT(datlen >= avail);
2130 1.2 christos tmp = evbuffer_chain_new(datlen - avail);
2131 1.2 christos if (tmp == NULL) {
2132 1.2 christos if (rmv_all) {
2133 1.2 christos ZERO_CHAIN(buf);
2134 1.2 christos } else {
2135 1.2 christos buf->last = *buf->last_with_datap;
2136 1.2 christos (*buf->last_with_datap)->next = NULL;
2137 1.2 christos }
2138 1.2 christos return (-1);
2139 1.2 christos }
2140 1.2 christos
2141 1.2 christos if (rmv_all) {
2142 1.2 christos buf->first = buf->last = tmp;
2143 1.2 christos buf->last_with_datap = &buf->first;
2144 1.2 christos } else {
2145 1.2 christos (*buf->last_with_datap)->next = tmp;
2146 1.2 christos buf->last = tmp;
2147 1.2 christos }
2148 1.2 christos return (0);
2149 1.2 christos }
2150 1.2 christos }
2151 1.2 christos
2152 1.2 christos int
2153 1.2 christos evbuffer_expand(struct evbuffer *buf, size_t datlen)
2154 1.2 christos {
2155 1.2 christos struct evbuffer_chain *chain;
2156 1.2 christos
2157 1.2 christos EVBUFFER_LOCK(buf);
2158 1.2 christos chain = evbuffer_expand_singlechain(buf, datlen);
2159 1.2 christos EVBUFFER_UNLOCK(buf);
2160 1.2 christos return chain ? 0 : -1;
2161 1.2 christos }
2162 1.2 christos
2163 1.2 christos /*
2164 1.2 christos * Reads data from a file descriptor into a buffer.
2165 1.2 christos */
2166 1.2 christos
2167 1.4 christos #if defined(EVENT__HAVE_SYS_UIO_H) || defined(_WIN32)
2168 1.2 christos #define USE_IOVEC_IMPL
2169 1.2 christos #endif
2170 1.2 christos
2171 1.2 christos #ifdef USE_IOVEC_IMPL
2172 1.2 christos
2173 1.4 christos #ifdef EVENT__HAVE_SYS_UIO_H
2174 1.2 christos /* number of iovec we use for writev, fragmentation is going to determine
2175 1.2 christos * how much we end up writing */
2176 1.2 christos
2177 1.2 christos #define DEFAULT_WRITE_IOVEC 128
2178 1.2 christos
2179 1.2 christos #if defined(UIO_MAXIOV) && UIO_MAXIOV < DEFAULT_WRITE_IOVEC
2180 1.2 christos #define NUM_WRITE_IOVEC UIO_MAXIOV
2181 1.2 christos #elif defined(IOV_MAX) && IOV_MAX < DEFAULT_WRITE_IOVEC
2182 1.2 christos #define NUM_WRITE_IOVEC IOV_MAX
2183 1.2 christos #else
2184 1.2 christos #define NUM_WRITE_IOVEC DEFAULT_WRITE_IOVEC
2185 1.2 christos #endif
2186 1.2 christos
2187 1.2 christos #define IOV_TYPE struct iovec
2188 1.2 christos #define IOV_PTR_FIELD iov_base
2189 1.2 christos #define IOV_LEN_FIELD iov_len
2190 1.2 christos #define IOV_LEN_TYPE size_t
2191 1.2 christos #else
2192 1.2 christos #define NUM_WRITE_IOVEC 16
2193 1.2 christos #define IOV_TYPE WSABUF
2194 1.2 christos #define IOV_PTR_FIELD buf
2195 1.2 christos #define IOV_LEN_FIELD len
2196 1.2 christos #define IOV_LEN_TYPE unsigned long
2197 1.2 christos #endif
2198 1.2 christos #endif
2199 1.2 christos #define NUM_READ_IOVEC 4
2200 1.2 christos
2201 1.2 christos #define EVBUFFER_MAX_READ 4096
2202 1.2 christos
2203 1.2 christos /** Helper function to figure out which space to use for reading data into
2204 1.2 christos an evbuffer. Internal use only.
2205 1.2 christos
2206 1.2 christos @param buf The buffer to read into
2207 1.2 christos @param howmuch How much we want to read.
2208 1.2 christos @param vecs An array of two or more iovecs or WSABUFs.
2209 1.2 christos @param n_vecs_avail The length of vecs
2210 1.2 christos @param chainp A pointer to a variable to hold the first chain we're
2211 1.2 christos reading into.
2212 1.2 christos @param exact Boolean: if true, we do not provide more than 'howmuch'
2213 1.2 christos space in the vectors, even if more space is available.
2214 1.2 christos @return The number of buffers we're using.
2215 1.2 christos */
2216 1.2 christos int
2217 1.4 christos evbuffer_read_setup_vecs_(struct evbuffer *buf, ev_ssize_t howmuch,
2218 1.2 christos struct evbuffer_iovec *vecs, int n_vecs_avail,
2219 1.2 christos struct evbuffer_chain ***chainp, int exact)
2220 1.2 christos {
2221 1.2 christos struct evbuffer_chain *chain;
2222 1.2 christos struct evbuffer_chain **firstchainp;
2223 1.2 christos size_t so_far;
2224 1.2 christos int i;
2225 1.2 christos ASSERT_EVBUFFER_LOCKED(buf);
2226 1.2 christos
2227 1.2 christos if (howmuch < 0)
2228 1.2 christos return -1;
2229 1.2 christos
2230 1.2 christos so_far = 0;
2231 1.2 christos /* Let firstchain be the first chain with any space on it */
2232 1.2 christos firstchainp = buf->last_with_datap;
2233 1.2 christos if (CHAIN_SPACE_LEN(*firstchainp) == 0) {
2234 1.2 christos firstchainp = &(*firstchainp)->next;
2235 1.2 christos }
2236 1.2 christos
2237 1.2 christos chain = *firstchainp;
2238 1.2 christos for (i = 0; i < n_vecs_avail && so_far < (size_t)howmuch; ++i) {
2239 1.2 christos size_t avail = (size_t) CHAIN_SPACE_LEN(chain);
2240 1.2 christos if (avail > (howmuch - so_far) && exact)
2241 1.2 christos avail = howmuch - so_far;
2242 1.4 christos vecs[i].iov_base = (void *)CHAIN_SPACE_PTR(chain);
2243 1.2 christos vecs[i].iov_len = avail;
2244 1.2 christos so_far += avail;
2245 1.2 christos chain = chain->next;
2246 1.2 christos }
2247 1.2 christos
2248 1.2 christos *chainp = firstchainp;
2249 1.2 christos return i;
2250 1.2 christos }
2251 1.2 christos
2252 1.2 christos static int
2253 1.2 christos get_n_bytes_readable_on_socket(evutil_socket_t fd)
2254 1.2 christos {
2255 1.4 christos #if defined(FIONREAD) && defined(_WIN32)
2256 1.2 christos unsigned long lng = EVBUFFER_MAX_READ;
2257 1.2 christos if (ioctlsocket(fd, FIONREAD, &lng) < 0)
2258 1.2 christos return -1;
2259 1.3 spz /* Can overflow, but mostly harmlessly. XXXX */
2260 1.2 christos return (int)lng;
2261 1.2 christos #elif defined(FIONREAD)
2262 1.2 christos int n = EVBUFFER_MAX_READ;
2263 1.2 christos if (ioctl(fd, FIONREAD, &n) < 0)
2264 1.2 christos return -1;
2265 1.2 christos return n;
2266 1.2 christos #else
2267 1.2 christos return EVBUFFER_MAX_READ;
2268 1.2 christos #endif
2269 1.2 christos }
2270 1.2 christos
2271 1.2 christos /* TODO(niels): should this function return ev_ssize_t and take ev_ssize_t
2272 1.2 christos * as howmuch? */
2273 1.2 christos int
2274 1.2 christos evbuffer_read(struct evbuffer *buf, evutil_socket_t fd, int howmuch)
2275 1.2 christos {
2276 1.2 christos struct evbuffer_chain **chainp;
2277 1.2 christos int n;
2278 1.2 christos int result;
2279 1.2 christos
2280 1.2 christos #ifdef USE_IOVEC_IMPL
2281 1.2 christos int nvecs, i, remaining;
2282 1.2 christos #else
2283 1.2 christos struct evbuffer_chain *chain;
2284 1.2 christos unsigned char *p;
2285 1.2 christos #endif
2286 1.2 christos
2287 1.2 christos EVBUFFER_LOCK(buf);
2288 1.2 christos
2289 1.2 christos if (buf->freeze_end) {
2290 1.2 christos result = -1;
2291 1.2 christos goto done;
2292 1.2 christos }
2293 1.2 christos
2294 1.2 christos n = get_n_bytes_readable_on_socket(fd);
2295 1.2 christos if (n <= 0 || n > EVBUFFER_MAX_READ)
2296 1.2 christos n = EVBUFFER_MAX_READ;
2297 1.2 christos if (howmuch < 0 || howmuch > n)
2298 1.2 christos howmuch = n;
2299 1.2 christos
2300 1.2 christos #ifdef USE_IOVEC_IMPL
2301 1.2 christos /* Since we can use iovecs, we're willing to use the last
2302 1.2 christos * NUM_READ_IOVEC chains. */
2303 1.4 christos if (evbuffer_expand_fast_(buf, howmuch, NUM_READ_IOVEC) == -1) {
2304 1.2 christos result = -1;
2305 1.2 christos goto done;
2306 1.2 christos } else {
2307 1.2 christos IOV_TYPE vecs[NUM_READ_IOVEC];
2308 1.4 christos #ifdef EVBUFFER_IOVEC_IS_NATIVE_
2309 1.4 christos nvecs = evbuffer_read_setup_vecs_(buf, howmuch, vecs,
2310 1.2 christos NUM_READ_IOVEC, &chainp, 1);
2311 1.2 christos #else
2312 1.2 christos /* We aren't using the native struct iovec. Therefore,
2313 1.2 christos we are on win32. */
2314 1.2 christos struct evbuffer_iovec ev_vecs[NUM_READ_IOVEC];
2315 1.4 christos nvecs = evbuffer_read_setup_vecs_(buf, howmuch, ev_vecs, 2,
2316 1.2 christos &chainp, 1);
2317 1.2 christos
2318 1.2 christos for (i=0; i < nvecs; ++i)
2319 1.2 christos WSABUF_FROM_EVBUFFER_IOV(&vecs[i], &ev_vecs[i]);
2320 1.2 christos #endif
2321 1.2 christos
2322 1.4 christos #ifdef _WIN32
2323 1.2 christos {
2324 1.2 christos DWORD bytesRead;
2325 1.2 christos DWORD flags=0;
2326 1.2 christos if (WSARecv(fd, vecs, nvecs, &bytesRead, &flags, NULL, NULL)) {
2327 1.2 christos /* The read failed. It might be a close,
2328 1.2 christos * or it might be an error. */
2329 1.2 christos if (WSAGetLastError() == WSAECONNABORTED)
2330 1.2 christos n = 0;
2331 1.2 christos else
2332 1.2 christos n = -1;
2333 1.2 christos } else
2334 1.2 christos n = bytesRead;
2335 1.2 christos }
2336 1.2 christos #else
2337 1.2 christos n = readv(fd, vecs, nvecs);
2338 1.2 christos #endif
2339 1.2 christos }
2340 1.2 christos
2341 1.2 christos #else /*!USE_IOVEC_IMPL*/
2342 1.2 christos /* If we don't have FIONREAD, we might waste some space here */
2343 1.2 christos /* XXX we _will_ waste some space here if there is any space left
2344 1.2 christos * over on buf->last. */
2345 1.2 christos if ((chain = evbuffer_expand_singlechain(buf, howmuch)) == NULL) {
2346 1.2 christos result = -1;
2347 1.2 christos goto done;
2348 1.2 christos }
2349 1.2 christos
2350 1.2 christos /* We can append new data at this point */
2351 1.2 christos p = chain->buffer + chain->misalign + chain->off;
2352 1.2 christos
2353 1.4 christos #ifndef _WIN32
2354 1.2 christos n = read(fd, p, howmuch);
2355 1.2 christos #else
2356 1.2 christos n = recv(fd, p, howmuch, 0);
2357 1.2 christos #endif
2358 1.2 christos #endif /* USE_IOVEC_IMPL */
2359 1.2 christos
2360 1.2 christos if (n == -1) {
2361 1.2 christos result = -1;
2362 1.2 christos goto done;
2363 1.2 christos }
2364 1.2 christos if (n == 0) {
2365 1.2 christos result = 0;
2366 1.2 christos goto done;
2367 1.2 christos }
2368 1.2 christos
2369 1.2 christos #ifdef USE_IOVEC_IMPL
2370 1.2 christos remaining = n;
2371 1.2 christos for (i=0; i < nvecs; ++i) {
2372 1.3 spz /* can't overflow, since only mutable chains have
2373 1.3 spz * huge misaligns. */
2374 1.3 spz size_t space = (size_t) CHAIN_SPACE_LEN(*chainp);
2375 1.3 spz /* XXXX This is a kludge that can waste space in perverse
2376 1.3 spz * situations. */
2377 1.3 spz if (space > EVBUFFER_CHAIN_MAX)
2378 1.3 spz space = EVBUFFER_CHAIN_MAX;
2379 1.3 spz if ((ev_ssize_t)space < remaining) {
2380 1.2 christos (*chainp)->off += space;
2381 1.2 christos remaining -= (int)space;
2382 1.2 christos } else {
2383 1.2 christos (*chainp)->off += remaining;
2384 1.2 christos buf->last_with_datap = chainp;
2385 1.2 christos break;
2386 1.2 christos }
2387 1.2 christos chainp = &(*chainp)->next;
2388 1.2 christos }
2389 1.2 christos #else
2390 1.2 christos chain->off += n;
2391 1.2 christos advance_last_with_data(buf);
2392 1.2 christos #endif
2393 1.2 christos buf->total_len += n;
2394 1.2 christos buf->n_add_for_cb += n;
2395 1.2 christos
2396 1.2 christos /* Tell someone about changes in this buffer */
2397 1.4 christos evbuffer_invoke_callbacks_(buf);
2398 1.2 christos result = n;
2399 1.2 christos done:
2400 1.2 christos EVBUFFER_UNLOCK(buf);
2401 1.2 christos return result;
2402 1.2 christos }
2403 1.2 christos
2404 1.2 christos #ifdef USE_IOVEC_IMPL
2405 1.2 christos static inline int
2406 1.2 christos evbuffer_write_iovec(struct evbuffer *buffer, evutil_socket_t fd,
2407 1.2 christos ev_ssize_t howmuch)
2408 1.2 christos {
2409 1.2 christos IOV_TYPE iov[NUM_WRITE_IOVEC];
2410 1.2 christos struct evbuffer_chain *chain = buffer->first;
2411 1.2 christos int n, i = 0;
2412 1.2 christos
2413 1.2 christos if (howmuch < 0)
2414 1.2 christos return -1;
2415 1.2 christos
2416 1.2 christos ASSERT_EVBUFFER_LOCKED(buffer);
2417 1.2 christos /* XXX make this top out at some maximal data length? if the
2418 1.2 christos * buffer has (say) 1MB in it, split over 128 chains, there's
2419 1.2 christos * no way it all gets written in one go. */
2420 1.2 christos while (chain != NULL && i < NUM_WRITE_IOVEC && howmuch) {
2421 1.2 christos #ifdef USE_SENDFILE
2422 1.2 christos /* we cannot write the file info via writev */
2423 1.2 christos if (chain->flags & EVBUFFER_SENDFILE)
2424 1.2 christos break;
2425 1.2 christos #endif
2426 1.2 christos iov[i].IOV_PTR_FIELD = (void *) (chain->buffer + chain->misalign);
2427 1.2 christos if ((size_t)howmuch >= chain->off) {
2428 1.2 christos /* XXXcould be problematic when windows supports mmap*/
2429 1.2 christos iov[i++].IOV_LEN_FIELD = (IOV_LEN_TYPE)chain->off;
2430 1.2 christos howmuch -= chain->off;
2431 1.2 christos } else {
2432 1.2 christos /* XXXcould be problematic when windows supports mmap*/
2433 1.2 christos iov[i++].IOV_LEN_FIELD = (IOV_LEN_TYPE)howmuch;
2434 1.2 christos break;
2435 1.2 christos }
2436 1.2 christos chain = chain->next;
2437 1.2 christos }
2438 1.2 christos if (! i)
2439 1.2 christos return 0;
2440 1.4 christos
2441 1.4 christos #ifdef _WIN32
2442 1.2 christos {
2443 1.2 christos DWORD bytesSent;
2444 1.2 christos if (WSASend(fd, iov, i, &bytesSent, 0, NULL, NULL))
2445 1.2 christos n = -1;
2446 1.2 christos else
2447 1.2 christos n = bytesSent;
2448 1.2 christos }
2449 1.2 christos #else
2450 1.2 christos n = writev(fd, iov, i);
2451 1.2 christos #endif
2452 1.2 christos return (n);
2453 1.2 christos }
2454 1.2 christos #endif
2455 1.2 christos
2456 1.2 christos #ifdef USE_SENDFILE
2457 1.2 christos static inline int
2458 1.4 christos evbuffer_write_sendfile(struct evbuffer *buffer, evutil_socket_t dest_fd,
2459 1.2 christos ev_ssize_t howmuch)
2460 1.2 christos {
2461 1.2 christos struct evbuffer_chain *chain = buffer->first;
2462 1.4 christos struct evbuffer_chain_file_segment *info =
2463 1.4 christos EVBUFFER_CHAIN_EXTRA(struct evbuffer_chain_file_segment,
2464 1.4 christos chain);
2465 1.4 christos const int source_fd = info->segment->fd;
2466 1.2 christos #if defined(SENDFILE_IS_MACOSX) || defined(SENDFILE_IS_FREEBSD)
2467 1.2 christos int res;
2468 1.4 christos ev_off_t len = chain->off;
2469 1.2 christos #elif defined(SENDFILE_IS_LINUX) || defined(SENDFILE_IS_SOLARIS)
2470 1.2 christos ev_ssize_t res;
2471 1.4 christos ev_off_t offset = chain->misalign;
2472 1.2 christos #endif
2473 1.2 christos
2474 1.2 christos ASSERT_EVBUFFER_LOCKED(buffer);
2475 1.2 christos
2476 1.2 christos #if defined(SENDFILE_IS_MACOSX)
2477 1.4 christos res = sendfile(source_fd, dest_fd, chain->misalign, &len, NULL, 0);
2478 1.2 christos if (res == -1 && !EVUTIL_ERR_RW_RETRIABLE(errno))
2479 1.2 christos return (-1);
2480 1.2 christos
2481 1.2 christos return (len);
2482 1.2 christos #elif defined(SENDFILE_IS_FREEBSD)
2483 1.4 christos res = sendfile(source_fd, dest_fd, chain->misalign, chain->off, NULL, &len, 0);
2484 1.2 christos if (res == -1 && !EVUTIL_ERR_RW_RETRIABLE(errno))
2485 1.2 christos return (-1);
2486 1.2 christos
2487 1.2 christos return (len);
2488 1.2 christos #elif defined(SENDFILE_IS_LINUX)
2489 1.2 christos /* TODO(niels): implement splice */
2490 1.4 christos res = sendfile(dest_fd, source_fd, &offset, chain->off);
2491 1.2 christos if (res == -1 && EVUTIL_ERR_RW_RETRIABLE(errno)) {
2492 1.2 christos /* if this is EAGAIN or EINTR return 0; otherwise, -1 */
2493 1.2 christos return (0);
2494 1.2 christos }
2495 1.2 christos return (res);
2496 1.2 christos #elif defined(SENDFILE_IS_SOLARIS)
2497 1.2 christos {
2498 1.2 christos const off_t offset_orig = offset;
2499 1.4 christos res = sendfile(dest_fd, source_fd, &offset, chain->off);
2500 1.2 christos if (res == -1 && EVUTIL_ERR_RW_RETRIABLE(errno)) {
2501 1.2 christos if (offset - offset_orig)
2502 1.2 christos return offset - offset_orig;
2503 1.2 christos /* if this is EAGAIN or EINTR and no bytes were
2504 1.2 christos * written, return 0 */
2505 1.2 christos return (0);
2506 1.2 christos }
2507 1.2 christos return (res);
2508 1.2 christos }
2509 1.2 christos #endif
2510 1.2 christos }
2511 1.2 christos #endif
2512 1.2 christos
2513 1.2 christos int
2514 1.2 christos evbuffer_write_atmost(struct evbuffer *buffer, evutil_socket_t fd,
2515 1.2 christos ev_ssize_t howmuch)
2516 1.2 christos {
2517 1.2 christos int n = -1;
2518 1.2 christos
2519 1.2 christos EVBUFFER_LOCK(buffer);
2520 1.2 christos
2521 1.2 christos if (buffer->freeze_start) {
2522 1.2 christos goto done;
2523 1.2 christos }
2524 1.2 christos
2525 1.2 christos if (howmuch < 0 || (size_t)howmuch > buffer->total_len)
2526 1.2 christos howmuch = buffer->total_len;
2527 1.2 christos
2528 1.2 christos if (howmuch > 0) {
2529 1.2 christos #ifdef USE_SENDFILE
2530 1.2 christos struct evbuffer_chain *chain = buffer->first;
2531 1.2 christos if (chain != NULL && (chain->flags & EVBUFFER_SENDFILE))
2532 1.2 christos n = evbuffer_write_sendfile(buffer, fd, howmuch);
2533 1.2 christos else {
2534 1.2 christos #endif
2535 1.2 christos #ifdef USE_IOVEC_IMPL
2536 1.2 christos n = evbuffer_write_iovec(buffer, fd, howmuch);
2537 1.4 christos #elif defined(_WIN32)
2538 1.2 christos /* XXX(nickm) Don't disable this code until we know if
2539 1.2 christos * the WSARecv code above works. */
2540 1.2 christos void *p = evbuffer_pullup(buffer, howmuch);
2541 1.3 spz EVUTIL_ASSERT(p || !howmuch);
2542 1.2 christos n = send(fd, p, howmuch, 0);
2543 1.2 christos #else
2544 1.2 christos void *p = evbuffer_pullup(buffer, howmuch);
2545 1.3 spz EVUTIL_ASSERT(p || !howmuch);
2546 1.2 christos n = write(fd, p, howmuch);
2547 1.2 christos #endif
2548 1.2 christos #ifdef USE_SENDFILE
2549 1.2 christos }
2550 1.2 christos #endif
2551 1.2 christos }
2552 1.2 christos
2553 1.2 christos if (n > 0)
2554 1.2 christos evbuffer_drain(buffer, n);
2555 1.2 christos
2556 1.2 christos done:
2557 1.2 christos EVBUFFER_UNLOCK(buffer);
2558 1.2 christos return (n);
2559 1.2 christos }
2560 1.2 christos
2561 1.2 christos int
2562 1.2 christos evbuffer_write(struct evbuffer *buffer, evutil_socket_t fd)
2563 1.2 christos {
2564 1.2 christos return evbuffer_write_atmost(buffer, fd, -1);
2565 1.2 christos }
2566 1.2 christos
2567 1.2 christos unsigned char *
2568 1.2 christos evbuffer_find(struct evbuffer *buffer, const unsigned char *what, size_t len)
2569 1.2 christos {
2570 1.2 christos unsigned char *search;
2571 1.2 christos struct evbuffer_ptr ptr;
2572 1.2 christos
2573 1.2 christos EVBUFFER_LOCK(buffer);
2574 1.2 christos
2575 1.2 christos ptr = evbuffer_search(buffer, (const char *)what, len, NULL);
2576 1.2 christos if (ptr.pos < 0) {
2577 1.2 christos search = NULL;
2578 1.2 christos } else {
2579 1.2 christos search = evbuffer_pullup(buffer, ptr.pos + len);
2580 1.2 christos if (search)
2581 1.2 christos search += ptr.pos;
2582 1.2 christos }
2583 1.2 christos EVBUFFER_UNLOCK(buffer);
2584 1.2 christos return search;
2585 1.2 christos }
2586 1.2 christos
2587 1.4 christos /* Subract <b>howfar</b> from the position of <b>pos</b> within
2588 1.4 christos * <b>buf</b>. Returns 0 on success, -1 on failure.
2589 1.4 christos *
2590 1.4 christos * This isn't exposed yet, because of potential inefficiency issues.
2591 1.4 christos * Maybe it should be. */
2592 1.4 christos static int
2593 1.4 christos evbuffer_ptr_subtract(struct evbuffer *buf, struct evbuffer_ptr *pos,
2594 1.4 christos size_t howfar)
2595 1.4 christos {
2596 1.4 christos if (pos->pos < 0)
2597 1.4 christos return -1;
2598 1.4 christos if (howfar > (size_t)pos->pos)
2599 1.4 christos return -1;
2600 1.4 christos if (pos->internal_.chain && howfar <= pos->internal_.pos_in_chain) {
2601 1.4 christos pos->internal_.pos_in_chain -= howfar;
2602 1.4 christos pos->pos -= howfar;
2603 1.4 christos return 0;
2604 1.4 christos } else {
2605 1.4 christos const size_t newpos = pos->pos - howfar;
2606 1.4 christos /* Here's the inefficient part: it walks over the
2607 1.4 christos * chains until we hit newpos. */
2608 1.4 christos return evbuffer_ptr_set(buf, pos, newpos, EVBUFFER_PTR_SET);
2609 1.4 christos }
2610 1.4 christos }
2611 1.4 christos
2612 1.2 christos int
2613 1.2 christos evbuffer_ptr_set(struct evbuffer *buf, struct evbuffer_ptr *pos,
2614 1.2 christos size_t position, enum evbuffer_ptr_how how)
2615 1.2 christos {
2616 1.2 christos size_t left = position;
2617 1.2 christos struct evbuffer_chain *chain = NULL;
2618 1.4 christos int result = 0;
2619 1.2 christos
2620 1.2 christos EVBUFFER_LOCK(buf);
2621 1.2 christos
2622 1.2 christos switch (how) {
2623 1.2 christos case EVBUFFER_PTR_SET:
2624 1.2 christos chain = buf->first;
2625 1.2 christos pos->pos = position;
2626 1.2 christos position = 0;
2627 1.2 christos break;
2628 1.2 christos case EVBUFFER_PTR_ADD:
2629 1.2 christos /* this avoids iterating over all previous chains if
2630 1.2 christos we just want to advance the position */
2631 1.3 spz if (pos->pos < 0 || EV_SIZE_MAX - position < (size_t)pos->pos) {
2632 1.3 spz EVBUFFER_UNLOCK(buf);
2633 1.3 spz return -1;
2634 1.3 spz }
2635 1.4 christos chain = pos->internal_.chain;
2636 1.2 christos pos->pos += position;
2637 1.4 christos position = pos->internal_.pos_in_chain;
2638 1.2 christos break;
2639 1.2 christos }
2640 1.2 christos
2641 1.3 spz EVUTIL_ASSERT(EV_SIZE_MAX - left >= position);
2642 1.2 christos while (chain && position + left >= chain->off) {
2643 1.2 christos left -= chain->off - position;
2644 1.2 christos chain = chain->next;
2645 1.2 christos position = 0;
2646 1.2 christos }
2647 1.2 christos if (chain) {
2648 1.4 christos pos->internal_.chain = chain;
2649 1.4 christos pos->internal_.pos_in_chain = position + left;
2650 1.4 christos } else if (left == 0) {
2651 1.4 christos /* The first byte in the (nonexistent) chain after the last chain */
2652 1.4 christos pos->internal_.chain = NULL;
2653 1.4 christos pos->internal_.pos_in_chain = 0;
2654 1.2 christos } else {
2655 1.4 christos PTR_NOT_FOUND(pos);
2656 1.4 christos result = -1;
2657 1.2 christos }
2658 1.2 christos
2659 1.2 christos EVBUFFER_UNLOCK(buf);
2660 1.2 christos
2661 1.4 christos return result;
2662 1.2 christos }
2663 1.2 christos
2664 1.2 christos /**
2665 1.2 christos Compare the bytes in buf at position pos to the len bytes in mem. Return
2666 1.2 christos less than 0, 0, or greater than 0 as memcmp.
2667 1.2 christos */
2668 1.2 christos static int
2669 1.2 christos evbuffer_ptr_memcmp(const struct evbuffer *buf, const struct evbuffer_ptr *pos,
2670 1.2 christos const char *mem, size_t len)
2671 1.2 christos {
2672 1.2 christos struct evbuffer_chain *chain;
2673 1.2 christos size_t position;
2674 1.2 christos int r;
2675 1.2 christos
2676 1.2 christos ASSERT_EVBUFFER_LOCKED(buf);
2677 1.2 christos
2678 1.3 spz if (pos->pos < 0 ||
2679 1.3 spz EV_SIZE_MAX - len < (size_t)pos->pos ||
2680 1.3 spz pos->pos + len > buf->total_len)
2681 1.2 christos return -1;
2682 1.2 christos
2683 1.4 christos chain = pos->internal_.chain;
2684 1.4 christos position = pos->internal_.pos_in_chain;
2685 1.2 christos while (len && chain) {
2686 1.2 christos size_t n_comparable;
2687 1.2 christos if (len + position > chain->off)
2688 1.2 christos n_comparable = chain->off - position;
2689 1.2 christos else
2690 1.2 christos n_comparable = len;
2691 1.2 christos r = memcmp(chain->buffer + chain->misalign + position, mem,
2692 1.2 christos n_comparable);
2693 1.2 christos if (r)
2694 1.2 christos return r;
2695 1.2 christos mem += n_comparable;
2696 1.2 christos len -= n_comparable;
2697 1.2 christos position = 0;
2698 1.2 christos chain = chain->next;
2699 1.2 christos }
2700 1.2 christos
2701 1.2 christos return 0;
2702 1.2 christos }
2703 1.2 christos
2704 1.2 christos struct evbuffer_ptr
2705 1.2 christos evbuffer_search(struct evbuffer *buffer, const char *what, size_t len, const struct evbuffer_ptr *start)
2706 1.2 christos {
2707 1.2 christos return evbuffer_search_range(buffer, what, len, start, NULL);
2708 1.2 christos }
2709 1.2 christos
2710 1.2 christos struct evbuffer_ptr
2711 1.2 christos evbuffer_search_range(struct evbuffer *buffer, const char *what, size_t len, const struct evbuffer_ptr *start, const struct evbuffer_ptr *end)
2712 1.2 christos {
2713 1.2 christos struct evbuffer_ptr pos;
2714 1.2 christos struct evbuffer_chain *chain, *last_chain = NULL;
2715 1.2 christos const unsigned char *p;
2716 1.2 christos char first;
2717 1.2 christos
2718 1.2 christos EVBUFFER_LOCK(buffer);
2719 1.2 christos
2720 1.2 christos if (start) {
2721 1.2 christos memcpy(&pos, start, sizeof(pos));
2722 1.4 christos chain = pos.internal_.chain;
2723 1.2 christos } else {
2724 1.2 christos pos.pos = 0;
2725 1.4 christos chain = pos.internal_.chain = buffer->first;
2726 1.4 christos pos.internal_.pos_in_chain = 0;
2727 1.2 christos }
2728 1.2 christos
2729 1.2 christos if (end)
2730 1.4 christos last_chain = end->internal_.chain;
2731 1.2 christos
2732 1.2 christos if (!len || len > EV_SSIZE_MAX)
2733 1.2 christos goto done;
2734 1.2 christos
2735 1.2 christos first = what[0];
2736 1.2 christos
2737 1.2 christos while (chain) {
2738 1.2 christos const unsigned char *start_at =
2739 1.2 christos chain->buffer + chain->misalign +
2740 1.4 christos pos.internal_.pos_in_chain;
2741 1.2 christos p = memchr(start_at, first,
2742 1.4 christos chain->off - pos.internal_.pos_in_chain);
2743 1.2 christos if (p) {
2744 1.2 christos pos.pos += p - start_at;
2745 1.4 christos pos.internal_.pos_in_chain += p - start_at;
2746 1.2 christos if (!evbuffer_ptr_memcmp(buffer, &pos, what, len)) {
2747 1.2 christos if (end && pos.pos + (ev_ssize_t)len > end->pos)
2748 1.2 christos goto not_found;
2749 1.2 christos else
2750 1.2 christos goto done;
2751 1.2 christos }
2752 1.2 christos ++pos.pos;
2753 1.4 christos ++pos.internal_.pos_in_chain;
2754 1.4 christos if (pos.internal_.pos_in_chain == chain->off) {
2755 1.4 christos chain = pos.internal_.chain = chain->next;
2756 1.4 christos pos.internal_.pos_in_chain = 0;
2757 1.2 christos }
2758 1.2 christos } else {
2759 1.2 christos if (chain == last_chain)
2760 1.2 christos goto not_found;
2761 1.4 christos pos.pos += chain->off - pos.internal_.pos_in_chain;
2762 1.4 christos chain = pos.internal_.chain = chain->next;
2763 1.4 christos pos.internal_.pos_in_chain = 0;
2764 1.2 christos }
2765 1.2 christos }
2766 1.2 christos
2767 1.2 christos not_found:
2768 1.4 christos PTR_NOT_FOUND(&pos);
2769 1.2 christos done:
2770 1.2 christos EVBUFFER_UNLOCK(buffer);
2771 1.2 christos return pos;
2772 1.2 christos }
2773 1.2 christos
2774 1.2 christos int
2775 1.2 christos evbuffer_peek(struct evbuffer *buffer, ev_ssize_t len,
2776 1.2 christos struct evbuffer_ptr *start_at,
2777 1.2 christos struct evbuffer_iovec *vec, int n_vec)
2778 1.2 christos {
2779 1.2 christos struct evbuffer_chain *chain;
2780 1.2 christos int idx = 0;
2781 1.2 christos ev_ssize_t len_so_far = 0;
2782 1.2 christos
2783 1.4 christos /* Avoid locking in trivial edge cases */
2784 1.4 christos if (start_at && start_at->internal_.chain == NULL)
2785 1.4 christos return 0;
2786 1.4 christos
2787 1.2 christos EVBUFFER_LOCK(buffer);
2788 1.2 christos
2789 1.2 christos if (start_at) {
2790 1.4 christos chain = start_at->internal_.chain;
2791 1.2 christos len_so_far = chain->off
2792 1.4 christos - start_at->internal_.pos_in_chain;
2793 1.2 christos idx = 1;
2794 1.2 christos if (n_vec > 0) {
2795 1.4 christos vec[0].iov_base = (void *)(chain->buffer + chain->misalign
2796 1.4 christos + start_at->internal_.pos_in_chain);
2797 1.2 christos vec[0].iov_len = len_so_far;
2798 1.2 christos }
2799 1.2 christos chain = chain->next;
2800 1.2 christos } else {
2801 1.2 christos chain = buffer->first;
2802 1.2 christos }
2803 1.2 christos
2804 1.2 christos if (n_vec == 0 && len < 0) {
2805 1.2 christos /* If no vectors are provided and they asked for "everything",
2806 1.2 christos * pretend they asked for the actual available amount. */
2807 1.3 spz len = buffer->total_len;
2808 1.3 spz if (start_at) {
2809 1.3 spz len -= start_at->pos;
2810 1.3 spz }
2811 1.2 christos }
2812 1.2 christos
2813 1.2 christos while (chain) {
2814 1.2 christos if (len >= 0 && len_so_far >= len)
2815 1.2 christos break;
2816 1.2 christos if (idx<n_vec) {
2817 1.4 christos vec[idx].iov_base = (void *)(chain->buffer + chain->misalign);
2818 1.2 christos vec[idx].iov_len = chain->off;
2819 1.2 christos } else if (len<0) {
2820 1.2 christos break;
2821 1.2 christos }
2822 1.2 christos ++idx;
2823 1.2 christos len_so_far += chain->off;
2824 1.2 christos chain = chain->next;
2825 1.2 christos }
2826 1.2 christos
2827 1.2 christos EVBUFFER_UNLOCK(buffer);
2828 1.2 christos
2829 1.2 christos return idx;
2830 1.2 christos }
2831 1.2 christos
2832 1.2 christos
2833 1.2 christos int
2834 1.2 christos evbuffer_add_vprintf(struct evbuffer *buf, const char *fmt, va_list ap)
2835 1.2 christos {
2836 1.2 christos char *buffer;
2837 1.2 christos size_t space;
2838 1.2 christos int sz, result = -1;
2839 1.2 christos va_list aq;
2840 1.2 christos struct evbuffer_chain *chain;
2841 1.2 christos
2842 1.2 christos
2843 1.2 christos EVBUFFER_LOCK(buf);
2844 1.2 christos
2845 1.2 christos if (buf->freeze_end) {
2846 1.2 christos goto done;
2847 1.2 christos }
2848 1.2 christos
2849 1.2 christos /* make sure that at least some space is available */
2850 1.2 christos if ((chain = evbuffer_expand_singlechain(buf, 64)) == NULL)
2851 1.2 christos goto done;
2852 1.2 christos
2853 1.2 christos for (;;) {
2854 1.2 christos #if 0
2855 1.2 christos size_t used = chain->misalign + chain->off;
2856 1.2 christos buffer = (char *)chain->buffer + chain->misalign + chain->off;
2857 1.2 christos EVUTIL_ASSERT(chain->buffer_len >= used);
2858 1.2 christos space = chain->buffer_len - used;
2859 1.2 christos #endif
2860 1.2 christos buffer = (char*) CHAIN_SPACE_PTR(chain);
2861 1.2 christos space = (size_t) CHAIN_SPACE_LEN(chain);
2862 1.2 christos
2863 1.2 christos #ifndef va_copy
2864 1.2 christos #define va_copy(dst, src) memcpy(&(dst), &(src), sizeof(va_list))
2865 1.2 christos #endif
2866 1.2 christos va_copy(aq, ap);
2867 1.2 christos
2868 1.2 christos sz = evutil_vsnprintf(buffer, space, fmt, aq);
2869 1.2 christos
2870 1.2 christos va_end(aq);
2871 1.2 christos
2872 1.2 christos if (sz < 0)
2873 1.2 christos goto done;
2874 1.3 spz if (INT_MAX >= EVBUFFER_CHAIN_MAX &&
2875 1.3 spz (size_t)sz >= EVBUFFER_CHAIN_MAX)
2876 1.3 spz goto done;
2877 1.2 christos if ((size_t)sz < space) {
2878 1.2 christos chain->off += sz;
2879 1.2 christos buf->total_len += sz;
2880 1.2 christos buf->n_add_for_cb += sz;
2881 1.2 christos
2882 1.2 christos advance_last_with_data(buf);
2883 1.4 christos evbuffer_invoke_callbacks_(buf);
2884 1.2 christos result = sz;
2885 1.2 christos goto done;
2886 1.2 christos }
2887 1.2 christos if ((chain = evbuffer_expand_singlechain(buf, sz + 1)) == NULL)
2888 1.2 christos goto done;
2889 1.2 christos }
2890 1.2 christos /* NOTREACHED */
2891 1.2 christos
2892 1.2 christos done:
2893 1.2 christos EVBUFFER_UNLOCK(buf);
2894 1.2 christos return result;
2895 1.2 christos }
2896 1.2 christos
2897 1.2 christos int
2898 1.2 christos evbuffer_add_printf(struct evbuffer *buf, const char *fmt, ...)
2899 1.2 christos {
2900 1.2 christos int res = -1;
2901 1.2 christos va_list ap;
2902 1.2 christos
2903 1.2 christos va_start(ap, fmt);
2904 1.2 christos res = evbuffer_add_vprintf(buf, fmt, ap);
2905 1.2 christos va_end(ap);
2906 1.2 christos
2907 1.2 christos return (res);
2908 1.2 christos }
2909 1.2 christos
2910 1.2 christos int
2911 1.2 christos evbuffer_add_reference(struct evbuffer *outbuf,
2912 1.2 christos const void *data, size_t datlen,
2913 1.2 christos evbuffer_ref_cleanup_cb cleanupfn, void *extra)
2914 1.2 christos {
2915 1.2 christos struct evbuffer_chain *chain;
2916 1.2 christos struct evbuffer_chain_reference *info;
2917 1.2 christos int result = -1;
2918 1.2 christos
2919 1.2 christos chain = evbuffer_chain_new(sizeof(struct evbuffer_chain_reference));
2920 1.2 christos if (!chain)
2921 1.2 christos return (-1);
2922 1.2 christos chain->flags |= EVBUFFER_REFERENCE | EVBUFFER_IMMUTABLE;
2923 1.2 christos chain->buffer = __UNCONST(data);
2924 1.2 christos chain->buffer_len = datlen;
2925 1.2 christos chain->off = datlen;
2926 1.2 christos
2927 1.2 christos info = EVBUFFER_CHAIN_EXTRA(struct evbuffer_chain_reference, chain);
2928 1.2 christos info->cleanupfn = cleanupfn;
2929 1.2 christos info->extra = extra;
2930 1.2 christos
2931 1.2 christos EVBUFFER_LOCK(outbuf);
2932 1.2 christos if (outbuf->freeze_end) {
2933 1.2 christos /* don't call chain_free; we do not want to actually invoke
2934 1.2 christos * the cleanup function */
2935 1.2 christos mm_free(chain);
2936 1.2 christos goto done;
2937 1.2 christos }
2938 1.2 christos evbuffer_chain_insert(outbuf, chain);
2939 1.2 christos outbuf->n_add_for_cb += datlen;
2940 1.2 christos
2941 1.4 christos evbuffer_invoke_callbacks_(outbuf);
2942 1.2 christos
2943 1.2 christos result = 0;
2944 1.2 christos done:
2945 1.2 christos EVBUFFER_UNLOCK(outbuf);
2946 1.2 christos
2947 1.2 christos return result;
2948 1.2 christos }
2949 1.2 christos
2950 1.2 christos /* TODO(niels): we may want to add to automagically convert to mmap, in
2951 1.2 christos * case evbuffer_remove() or evbuffer_pullup() are being used.
2952 1.2 christos */
2953 1.4 christos struct evbuffer_file_segment *
2954 1.4 christos evbuffer_file_segment_new(
2955 1.4 christos int fd, ev_off_t offset, ev_off_t length, unsigned flags)
2956 1.4 christos {
2957 1.4 christos struct evbuffer_file_segment *seg =
2958 1.4 christos mm_calloc(sizeof(struct evbuffer_file_segment), 1);
2959 1.4 christos if (!seg)
2960 1.4 christos return NULL;
2961 1.4 christos seg->refcnt = 1;
2962 1.4 christos seg->fd = fd;
2963 1.4 christos seg->flags = flags;
2964 1.4 christos seg->file_offset = offset;
2965 1.4 christos seg->cleanup_cb = NULL;
2966 1.4 christos seg->cleanup_cb_arg = NULL;
2967 1.4 christos #ifdef _WIN32
2968 1.4 christos #ifndef lseek
2969 1.4 christos #define lseek _lseeki64
2970 1.4 christos #endif
2971 1.4 christos #ifndef fstat
2972 1.4 christos #define fstat _fstat
2973 1.4 christos #endif
2974 1.4 christos #ifndef stat
2975 1.4 christos #define stat _stat
2976 1.2 christos #endif
2977 1.2 christos #endif
2978 1.4 christos if (length == -1) {
2979 1.4 christos struct stat st;
2980 1.4 christos if (fstat(fd, &st) < 0)
2981 1.4 christos goto err;
2982 1.4 christos length = st.st_size;
2983 1.4 christos }
2984 1.4 christos seg->length = length;
2985 1.2 christos
2986 1.3 spz if (offset < 0 || length < 0 ||
2987 1.3 spz ((ev_uint64_t)length > EVBUFFER_CHAIN_MAX) ||
2988 1.3 spz (ev_uint64_t)offset > (ev_uint64_t)(EVBUFFER_CHAIN_MAX - length))
2989 1.4 christos goto err;
2990 1.3 spz
2991 1.2 christos #if defined(USE_SENDFILE)
2992 1.4 christos if (!(flags & EVBUF_FS_DISABLE_SENDFILE)) {
2993 1.4 christos seg->can_sendfile = 1;
2994 1.4 christos goto done;
2995 1.2 christos }
2996 1.4 christos #endif
2997 1.2 christos
2998 1.4 christos if (evbuffer_file_segment_materialize(seg)<0)
2999 1.4 christos goto err;
3000 1.2 christos
3001 1.4 christos #if defined(USE_SENDFILE)
3002 1.4 christos done:
3003 1.4 christos #endif
3004 1.4 christos if (!(flags & EVBUF_FS_DISABLE_LOCKING)) {
3005 1.4 christos EVTHREAD_ALLOC_LOCK(seg->lock, 0);
3006 1.4 christos }
3007 1.4 christos return seg;
3008 1.4 christos err:
3009 1.4 christos mm_free(seg);
3010 1.4 christos return NULL;
3011 1.4 christos }
3012 1.2 christos
3013 1.4 christos #ifdef EVENT__HAVE_MMAP
3014 1.4 christos static long
3015 1.4 christos get_page_size(void)
3016 1.4 christos {
3017 1.4 christos #ifdef SC_PAGE_SIZE
3018 1.4 christos return sysconf(SC_PAGE_SIZE);
3019 1.4 christos #elif defined(_SC_PAGE_SIZE)
3020 1.4 christos return sysconf(_SC_PAGE_SIZE);
3021 1.4 christos #else
3022 1.4 christos return 1;
3023 1.4 christos #endif
3024 1.4 christos }
3025 1.4 christos #endif
3026 1.2 christos
3027 1.4 christos /* DOCDOC */
3028 1.4 christos /* Requires lock */
3029 1.4 christos static int
3030 1.4 christos evbuffer_file_segment_materialize(struct evbuffer_file_segment *seg)
3031 1.4 christos {
3032 1.4 christos const unsigned flags = seg->flags;
3033 1.4 christos const int fd = seg->fd;
3034 1.4 christos const ev_off_t length = seg->length;
3035 1.4 christos const ev_off_t offset = seg->file_offset;
3036 1.4 christos
3037 1.4 christos if (seg->contents)
3038 1.4 christos return 0; /* already materialized */
3039 1.4 christos
3040 1.4 christos #if defined(EVENT__HAVE_MMAP)
3041 1.4 christos if (!(flags & EVBUF_FS_DISABLE_MMAP)) {
3042 1.4 christos off_t offset_rounded = 0, offset_leftover = 0;
3043 1.4 christos void *mapped;
3044 1.4 christos if (offset) {
3045 1.4 christos /* mmap implementations don't generally like us
3046 1.4 christos * to have an offset that isn't a round */
3047 1.4 christos long page_size = get_page_size();
3048 1.4 christos if (page_size == -1)
3049 1.4 christos goto err;
3050 1.4 christos offset_leftover = offset % page_size;
3051 1.4 christos offset_rounded = offset - offset_leftover;
3052 1.2 christos }
3053 1.4 christos mapped = mmap(NULL, length + offset_leftover,
3054 1.4 christos PROT_READ,
3055 1.2 christos #ifdef MAP_NOCACHE
3056 1.4 christos MAP_NOCACHE | /* ??? */
3057 1.2 christos #endif
3058 1.2 christos #ifdef MAP_FILE
3059 1.2 christos MAP_FILE |
3060 1.2 christos #endif
3061 1.2 christos MAP_PRIVATE,
3062 1.4 christos fd, offset_rounded);
3063 1.2 christos if (mapped == MAP_FAILED) {
3064 1.2 christos event_warn("%s: mmap(%d, %d, %zu) failed",
3065 1.2 christos __func__, fd, 0, (size_t)(offset + length));
3066 1.4 christos } else {
3067 1.4 christos seg->mapping = mapped;
3068 1.4 christos seg->contents = (char*)mapped+offset_leftover;
3069 1.4 christos seg->mmap_offset = 0;
3070 1.4 christos seg->is_mapping = 1;
3071 1.4 christos goto done;
3072 1.4 christos }
3073 1.4 christos }
3074 1.4 christos #endif
3075 1.4 christos #ifdef _WIN32
3076 1.4 christos if (!(flags & EVBUF_FS_DISABLE_MMAP)) {
3077 1.4 christos intptr_t h = _get_osfhandle(fd);
3078 1.4 christos HANDLE m;
3079 1.4 christos ev_uint64_t total_size = length+offset;
3080 1.4 christos if ((HANDLE)h == INVALID_HANDLE_VALUE)
3081 1.4 christos goto err;
3082 1.4 christos m = CreateFileMapping((HANDLE)h, NULL, PAGE_READONLY,
3083 1.4 christos (total_size >> 32), total_size & 0xfffffffful,
3084 1.4 christos NULL);
3085 1.4 christos if (m != INVALID_HANDLE_VALUE) { /* Does h leak? */
3086 1.4 christos seg->mapping_handle = m;
3087 1.4 christos seg->mmap_offset = offset;
3088 1.4 christos seg->is_mapping = 1;
3089 1.4 christos goto done;
3090 1.4 christos }
3091 1.4 christos }
3092 1.4 christos #endif
3093 1.4 christos {
3094 1.4 christos ev_off_t start_pos = lseek(fd, 0, SEEK_CUR), pos;
3095 1.4 christos ev_off_t read_so_far = 0;
3096 1.4 christos char *mem;
3097 1.4 christos int e;
3098 1.4 christos ev_ssize_t n = 0;
3099 1.4 christos if (!(mem = mm_malloc(length)))
3100 1.4 christos goto err;
3101 1.4 christos if (start_pos < 0) {
3102 1.4 christos mm_free(mem);
3103 1.4 christos goto err;
3104 1.4 christos }
3105 1.4 christos if (lseek(fd, offset, SEEK_SET) < 0) {
3106 1.4 christos mm_free(mem);
3107 1.4 christos goto err;
3108 1.4 christos }
3109 1.4 christos while (read_so_far < length) {
3110 1.4 christos n = read(fd, mem+read_so_far, length-read_so_far);
3111 1.4 christos if (n <= 0)
3112 1.4 christos break;
3113 1.4 christos read_so_far += n;
3114 1.2 christos }
3115 1.4 christos
3116 1.4 christos e = errno;
3117 1.4 christos pos = lseek(fd, start_pos, SEEK_SET);
3118 1.4 christos if (n < 0 || (n == 0 && length > read_so_far)) {
3119 1.4 christos mm_free(mem);
3120 1.4 christos errno = e;
3121 1.4 christos goto err;
3122 1.4 christos } else if (pos < 0) {
3123 1.4 christos mm_free(mem);
3124 1.4 christos goto err;
3125 1.2 christos }
3126 1.2 christos
3127 1.4 christos seg->contents = mem;
3128 1.4 christos }
3129 1.4 christos
3130 1.4 christos done:
3131 1.4 christos return 0;
3132 1.4 christos err:
3133 1.4 christos return -1;
3134 1.4 christos }
3135 1.4 christos
3136 1.4 christos void evbuffer_file_segment_add_cleanup_cb(struct evbuffer_file_segment *seg,
3137 1.4 christos evbuffer_file_segment_cleanup_cb cb, void* arg)
3138 1.4 christos {
3139 1.4 christos EVUTIL_ASSERT(seg->refcnt > 0);
3140 1.4 christos seg->cleanup_cb = cb;
3141 1.4 christos seg->cleanup_cb_arg = arg;
3142 1.4 christos }
3143 1.2 christos
3144 1.4 christos void
3145 1.4 christos evbuffer_file_segment_free(struct evbuffer_file_segment *seg)
3146 1.4 christos {
3147 1.4 christos int refcnt;
3148 1.4 christos EVLOCK_LOCK(seg->lock, 0);
3149 1.4 christos refcnt = --seg->refcnt;
3150 1.4 christos EVLOCK_UNLOCK(seg->lock, 0);
3151 1.4 christos if (refcnt > 0)
3152 1.4 christos return;
3153 1.4 christos EVUTIL_ASSERT(refcnt == 0);
3154 1.2 christos
3155 1.4 christos if (seg->is_mapping) {
3156 1.4 christos #ifdef _WIN32
3157 1.4 christos CloseHandle(seg->mapping_handle);
3158 1.4 christos #elif defined (EVENT__HAVE_MMAP)
3159 1.4 christos off_t offset_leftover;
3160 1.4 christos offset_leftover = seg->file_offset % get_page_size();
3161 1.4 christos if (munmap(seg->mapping, seg->length + offset_leftover) == -1)
3162 1.4 christos event_warn("%s: munmap failed", __func__);
3163 1.2 christos #endif
3164 1.4 christos } else if (seg->contents) {
3165 1.4 christos mm_free(seg->contents);
3166 1.4 christos }
3167 1.4 christos
3168 1.4 christos if ((seg->flags & EVBUF_FS_CLOSE_ON_FREE) && seg->fd >= 0) {
3169 1.4 christos close(seg->fd);
3170 1.4 christos }
3171 1.4 christos
3172 1.4 christos if (seg->cleanup_cb) {
3173 1.4 christos (*seg->cleanup_cb)((struct evbuffer_file_segment const*)seg,
3174 1.4 christos seg->flags, seg->cleanup_cb_arg);
3175 1.4 christos seg->cleanup_cb = NULL;
3176 1.4 christos seg->cleanup_cb_arg = NULL;
3177 1.4 christos }
3178 1.4 christos
3179 1.4 christos EVTHREAD_FREE_LOCK(seg->lock, 0);
3180 1.4 christos mm_free(seg);
3181 1.4 christos }
3182 1.2 christos
3183 1.4 christos int
3184 1.4 christos evbuffer_add_file_segment(struct evbuffer *buf,
3185 1.4 christos struct evbuffer_file_segment *seg, ev_off_t offset, ev_off_t length)
3186 1.4 christos {
3187 1.4 christos struct evbuffer_chain *chain;
3188 1.4 christos struct evbuffer_chain_file_segment *extra;
3189 1.4 christos int can_use_sendfile = 0;
3190 1.2 christos
3191 1.4 christos EVBUFFER_LOCK(buf);
3192 1.4 christos EVLOCK_LOCK(seg->lock, 0);
3193 1.4 christos if (buf->flags & EVBUFFER_FLAG_DRAINS_TO_FD) {
3194 1.4 christos can_use_sendfile = 1;
3195 1.4 christos } else {
3196 1.4 christos if (!seg->contents) {
3197 1.4 christos if (evbuffer_file_segment_materialize(seg)<0) {
3198 1.4 christos EVLOCK_UNLOCK(seg->lock, 0);
3199 1.4 christos EVBUFFER_UNLOCK(buf);
3200 1.4 christos return -1;
3201 1.4 christos }
3202 1.2 christos }
3203 1.4 christos }
3204 1.4 christos ++seg->refcnt;
3205 1.4 christos EVLOCK_UNLOCK(seg->lock, 0);
3206 1.4 christos
3207 1.4 christos if (buf->freeze_end)
3208 1.4 christos goto err;
3209 1.2 christos
3210 1.4 christos if (length < 0) {
3211 1.4 christos if (offset > seg->length)
3212 1.4 christos goto err;
3213 1.4 christos length = seg->length - offset;
3214 1.4 christos }
3215 1.2 christos
3216 1.4 christos /* Can we actually add this? */
3217 1.4 christos if (offset+length > seg->length)
3218 1.4 christos goto err;
3219 1.2 christos
3220 1.4 christos chain = evbuffer_chain_new(sizeof(struct evbuffer_chain_file_segment));
3221 1.4 christos if (!chain)
3222 1.4 christos goto err;
3223 1.4 christos extra = EVBUFFER_CHAIN_EXTRA(struct evbuffer_chain_file_segment, chain);
3224 1.2 christos
3225 1.4 christos chain->flags |= EVBUFFER_IMMUTABLE|EVBUFFER_FILESEGMENT;
3226 1.4 christos if (can_use_sendfile && seg->can_sendfile) {
3227 1.4 christos chain->flags |= EVBUFFER_SENDFILE;
3228 1.4 christos chain->misalign = seg->file_offset + offset;
3229 1.4 christos chain->off = length;
3230 1.4 christos chain->buffer_len = chain->misalign + length;
3231 1.4 christos } else if (seg->is_mapping) {
3232 1.4 christos #ifdef _WIN32
3233 1.4 christos ev_uint64_t total_offset = seg->mmap_offset+offset;
3234 1.4 christos ev_uint64_t offset_rounded=0, offset_remaining=0;
3235 1.4 christos LPVOID data;
3236 1.4 christos if (total_offset) {
3237 1.4 christos SYSTEM_INFO si;
3238 1.4 christos memset(&si, 0, sizeof(si)); /* cargo cult */
3239 1.4 christos GetSystemInfo(&si);
3240 1.4 christos offset_remaining = total_offset % si.dwAllocationGranularity;
3241 1.4 christos offset_rounded = total_offset - offset_remaining;
3242 1.4 christos }
3243 1.4 christos data = MapViewOfFile(
3244 1.4 christos seg->mapping_handle,
3245 1.4 christos FILE_MAP_READ,
3246 1.4 christos offset_rounded >> 32,
3247 1.4 christos offset_rounded & 0xfffffffful,
3248 1.4 christos length + offset_remaining);
3249 1.4 christos if (data == NULL) {
3250 1.4 christos mm_free(chain);
3251 1.4 christos goto err;
3252 1.4 christos }
3253 1.4 christos chain->buffer = (unsigned char*) data;
3254 1.4 christos chain->buffer_len = length+offset_remaining;
3255 1.4 christos chain->misalign = offset_remaining;
3256 1.4 christos chain->off = length;
3257 1.4 christos #else
3258 1.4 christos chain->buffer = (unsigned char*)(seg->contents + offset);
3259 1.4 christos chain->buffer_len = length;
3260 1.4 christos chain->off = length;
3261 1.2 christos #endif
3262 1.4 christos } else {
3263 1.4 christos chain->buffer = (unsigned char*)(seg->contents + offset);
3264 1.4 christos chain->buffer_len = length;
3265 1.4 christos chain->off = length;
3266 1.2 christos }
3267 1.2 christos
3268 1.4 christos extra->segment = seg;
3269 1.4 christos buf->n_add_for_cb += length;
3270 1.4 christos evbuffer_chain_insert(buf, chain);
3271 1.4 christos
3272 1.4 christos evbuffer_invoke_callbacks_(buf);
3273 1.4 christos
3274 1.4 christos EVBUFFER_UNLOCK(buf);
3275 1.2 christos
3276 1.4 christos return 0;
3277 1.4 christos err:
3278 1.4 christos EVBUFFER_UNLOCK(buf);
3279 1.4 christos evbuffer_file_segment_free(seg); /* Lowers the refcount */
3280 1.4 christos return -1;
3281 1.2 christos }
3282 1.2 christos
3283 1.4 christos int
3284 1.4 christos evbuffer_add_file(struct evbuffer *buf, int fd, ev_off_t offset, ev_off_t length)
3285 1.4 christos {
3286 1.4 christos struct evbuffer_file_segment *seg;
3287 1.4 christos unsigned flags = EVBUF_FS_CLOSE_ON_FREE;
3288 1.4 christos int r;
3289 1.4 christos
3290 1.4 christos seg = evbuffer_file_segment_new(fd, offset, length, flags);
3291 1.4 christos if (!seg)
3292 1.4 christos return -1;
3293 1.4 christos r = evbuffer_add_file_segment(buf, seg, 0, length);
3294 1.4 christos if (r == 0)
3295 1.4 christos evbuffer_file_segment_free(seg);
3296 1.4 christos return r;
3297 1.4 christos }
3298 1.2 christos
3299 1.2 christos void
3300 1.2 christos evbuffer_setcb(struct evbuffer *buffer, evbuffer_cb cb, void *cbarg)
3301 1.2 christos {
3302 1.2 christos EVBUFFER_LOCK(buffer);
3303 1.2 christos
3304 1.4 christos if (!LIST_EMPTY(&buffer->callbacks))
3305 1.2 christos evbuffer_remove_all_callbacks(buffer);
3306 1.2 christos
3307 1.2 christos if (cb) {
3308 1.2 christos struct evbuffer_cb_entry *ent =
3309 1.2 christos evbuffer_add_cb(buffer, NULL, cbarg);
3310 1.2 christos ent->cb.cb_obsolete = cb;
3311 1.2 christos ent->flags |= EVBUFFER_CB_OBSOLETE;
3312 1.2 christos }
3313 1.2 christos EVBUFFER_UNLOCK(buffer);
3314 1.2 christos }
3315 1.2 christos
3316 1.2 christos struct evbuffer_cb_entry *
3317 1.2 christos evbuffer_add_cb(struct evbuffer *buffer, evbuffer_cb_func cb, void *cbarg)
3318 1.2 christos {
3319 1.2 christos struct evbuffer_cb_entry *e;
3320 1.2 christos if (! (e = mm_calloc(1, sizeof(struct evbuffer_cb_entry))))
3321 1.2 christos return NULL;
3322 1.2 christos EVBUFFER_LOCK(buffer);
3323 1.2 christos e->cb.cb_func = cb;
3324 1.2 christos e->cbarg = cbarg;
3325 1.2 christos e->flags = EVBUFFER_CB_ENABLED;
3326 1.4 christos LIST_INSERT_HEAD(&buffer->callbacks, e, next);
3327 1.2 christos EVBUFFER_UNLOCK(buffer);
3328 1.2 christos return e;
3329 1.2 christos }
3330 1.2 christos
3331 1.2 christos int
3332 1.2 christos evbuffer_remove_cb_entry(struct evbuffer *buffer,
3333 1.2 christos struct evbuffer_cb_entry *ent)
3334 1.2 christos {
3335 1.2 christos EVBUFFER_LOCK(buffer);
3336 1.4 christos LIST_REMOVE(ent, next);
3337 1.2 christos EVBUFFER_UNLOCK(buffer);
3338 1.2 christos mm_free(ent);
3339 1.2 christos return 0;
3340 1.2 christos }
3341 1.2 christos
3342 1.2 christos int
3343 1.2 christos evbuffer_remove_cb(struct evbuffer *buffer, evbuffer_cb_func cb, void *cbarg)
3344 1.2 christos {
3345 1.2 christos struct evbuffer_cb_entry *cbent;
3346 1.2 christos int result = -1;
3347 1.2 christos EVBUFFER_LOCK(buffer);
3348 1.4 christos LIST_FOREACH(cbent, &buffer->callbacks, next) {
3349 1.2 christos if (cb == cbent->cb.cb_func && cbarg == cbent->cbarg) {
3350 1.2 christos result = evbuffer_remove_cb_entry(buffer, cbent);
3351 1.2 christos goto done;
3352 1.2 christos }
3353 1.2 christos }
3354 1.2 christos done:
3355 1.2 christos EVBUFFER_UNLOCK(buffer);
3356 1.2 christos return result;
3357 1.2 christos }
3358 1.2 christos
3359 1.2 christos int
3360 1.2 christos evbuffer_cb_set_flags(struct evbuffer *buffer,
3361 1.2 christos struct evbuffer_cb_entry *cb, ev_uint32_t flags)
3362 1.2 christos {
3363 1.2 christos /* the user isn't allowed to mess with these. */
3364 1.2 christos flags &= ~EVBUFFER_CB_INTERNAL_FLAGS;
3365 1.2 christos EVBUFFER_LOCK(buffer);
3366 1.2 christos cb->flags |= flags;
3367 1.2 christos EVBUFFER_UNLOCK(buffer);
3368 1.2 christos return 0;
3369 1.2 christos }
3370 1.2 christos
3371 1.2 christos int
3372 1.2 christos evbuffer_cb_clear_flags(struct evbuffer *buffer,
3373 1.2 christos struct evbuffer_cb_entry *cb, ev_uint32_t flags)
3374 1.2 christos {
3375 1.2 christos /* the user isn't allowed to mess with these. */
3376 1.2 christos flags &= ~EVBUFFER_CB_INTERNAL_FLAGS;
3377 1.2 christos EVBUFFER_LOCK(buffer);
3378 1.2 christos cb->flags &= ~flags;
3379 1.2 christos EVBUFFER_UNLOCK(buffer);
3380 1.2 christos return 0;
3381 1.2 christos }
3382 1.2 christos
3383 1.2 christos int
3384 1.2 christos evbuffer_freeze(struct evbuffer *buffer, int start)
3385 1.2 christos {
3386 1.2 christos EVBUFFER_LOCK(buffer);
3387 1.2 christos if (start)
3388 1.2 christos buffer->freeze_start = 1;
3389 1.2 christos else
3390 1.2 christos buffer->freeze_end = 1;
3391 1.2 christos EVBUFFER_UNLOCK(buffer);
3392 1.2 christos return 0;
3393 1.2 christos }
3394 1.2 christos
3395 1.2 christos int
3396 1.2 christos evbuffer_unfreeze(struct evbuffer *buffer, int start)
3397 1.2 christos {
3398 1.2 christos EVBUFFER_LOCK(buffer);
3399 1.2 christos if (start)
3400 1.2 christos buffer->freeze_start = 0;
3401 1.2 christos else
3402 1.2 christos buffer->freeze_end = 0;
3403 1.2 christos EVBUFFER_UNLOCK(buffer);
3404 1.2 christos return 0;
3405 1.2 christos }
3406 1.2 christos
3407 1.2 christos #if 0
3408 1.2 christos void
3409 1.2 christos evbuffer_cb_suspend(struct evbuffer *buffer, struct evbuffer_cb_entry *cb)
3410 1.2 christos {
3411 1.2 christos if (!(cb->flags & EVBUFFER_CB_SUSPENDED)) {
3412 1.2 christos cb->size_before_suspend = evbuffer_get_length(buffer);
3413 1.2 christos cb->flags |= EVBUFFER_CB_SUSPENDED;
3414 1.2 christos }
3415 1.2 christos }
3416 1.2 christos
3417 1.2 christos void
3418 1.2 christos evbuffer_cb_unsuspend(struct evbuffer *buffer, struct evbuffer_cb_entry *cb)
3419 1.2 christos {
3420 1.2 christos if ((cb->flags & EVBUFFER_CB_SUSPENDED)) {
3421 1.2 christos unsigned call = (cb->flags & EVBUFFER_CB_CALL_ON_UNSUSPEND);
3422 1.2 christos size_t sz = cb->size_before_suspend;
3423 1.2 christos cb->flags &= ~(EVBUFFER_CB_SUSPENDED|
3424 1.2 christos EVBUFFER_CB_CALL_ON_UNSUSPEND);
3425 1.2 christos cb->size_before_suspend = 0;
3426 1.2 christos if (call && (cb->flags & EVBUFFER_CB_ENABLED)) {
3427 1.2 christos cb->cb(buffer, sz, evbuffer_get_length(buffer), cb->cbarg);
3428 1.2 christos }
3429 1.2 christos }
3430 1.2 christos }
3431 1.2 christos #endif
3432 1.2 christos
3433 1.2 christos int
3434 1.4 christos evbuffer_get_callbacks_(struct evbuffer *buffer, struct event_callback **cbs,
3435 1.4 christos int max_cbs)
3436 1.2 christos {
3437 1.4 christos int r = 0;
3438 1.4 christos EVBUFFER_LOCK(buffer);
3439 1.4 christos if (buffer->deferred_cbs) {
3440 1.4 christos if (max_cbs < 1) {
3441 1.4 christos r = -1;
3442 1.4 christos goto done;
3443 1.4 christos }
3444 1.4 christos cbs[0] = &buffer->deferred;
3445 1.4 christos r = 1;
3446 1.4 christos }
3447 1.4 christos done:
3448 1.4 christos EVBUFFER_UNLOCK(buffer);
3449 1.4 christos return r;
3450 1.1 plunky }
3451