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30a4f2a8 1/*
262a0e14 2 * $Id$
30a4f2a8 3 *
b510f3a1 4 * DEBUG: section 06 Disk I/O Routines
30a4f2a8 5 * AUTHOR: Harvest Derived
6 *
2b6662ba 7 * SQUID Web Proxy Cache http://www.squid-cache.org/
e25c139f 8 * ----------------------------------------------------------
30a4f2a8 9 *
2b6662ba 10 * Squid is the result of efforts by numerous individuals from
11 * the Internet community; see the CONTRIBUTORS file for full
12 * details. Many organizations have provided support for Squid's
13 * development; see the SPONSORS file for full details. Squid is
14 * Copyrighted (C) 2001 by the Regents of the University of
15 * California; see the COPYRIGHT file for full details. Squid
16 * incorporates software developed and/or copyrighted by other
17 * sources; see the CREDITS file for full details.
30a4f2a8 18 *
19 * This program is free software; you can redistribute it and/or modify
20 * it under the terms of the GNU General Public License as published by
21 * the Free Software Foundation; either version 2 of the License, or
22 * (at your option) any later version.
26ac0430 23 *
30a4f2a8 24 * This program is distributed in the hope that it will be useful,
25 * but WITHOUT ANY WARRANTY; without even the implied warranty of
26 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
27 * GNU General Public License for more details.
26ac0430 28 *
30a4f2a8 29 * You should have received a copy of the GNU General Public License
30 * along with this program; if not, write to the Free Software
cbdec147 31 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111, USA.
e25c139f 32 *
30a4f2a8 33 */
ed43818f 34
f7f3304a 35#include "squid-old.h"
d841c88d 36#include "comm/Loops.h"
528b2c61 37#include "fde.h"
0eb49b6d 38#include "MemBuf.h"
e4f1fdae 39#include "StatCounters.h"
090089c4 40
95d15928 41static PF diskHandleRead;
42static PF diskHandleWrite;
24382924 43
be266cb2 44#if _SQUID_WINDOWS_ || _SQUID_OS2_
1a94f598 45static int
46diskWriteIsComplete(int fd)
47{
48 return fd_table[fd].disk.write_q ? 0 : 1;
49}
62e76326 50
1a94f598 51#endif
52
04cece06 53void
0673c0ba 54disk_init(void)
090089c4 55{
60df005c 56 (void) 0;
090089c4 57}
58
59a09b98
FC
59/* hack needed on SunStudio to avoid linkage convention mismatch */
60static void cxx_xfree(void *ptr)
61{
f673997d 62 xfree(ptr);
59a09b98
FC
63}
64
1a94f598 65/*
66 * opens a disk file specified by 'path'. This function always
67 * blocks! There is no callback.
68 */
684c2720 69int
1a94f598 70file_open(const char *path, int mode)
090089c4 71{
090089c4 72 int fd;
88bfe092 73 PROF_start(file_open);
62e76326 74
5d1a7121 75 if (FILE_MODE(mode) == O_WRONLY)
62e76326 76 mode |= O_APPEND;
77
b870e0b4 78 errno = 0;
62e76326 79
0a0bf5db 80 fd = open(path, mode, 0644);
62e76326 81
83704487 82 statCounter.syscalls.disk.opens++;
62e76326 83
0a0bf5db 84 if (fd < 0) {
bf8fe701 85 debugs(50, 3, "file_open: error opening file " << path << ": " << xstrerror());
62e76326 86 fd = DISK_ERROR;
2391a162 87 } else {
bf8fe701 88 debugs(6, 5, "file_open: FD " << fd);
62e76326 89 commSetCloseOnExec(fd);
90 fd_open(fd, FD_FILE, path);
090089c4 91 }
62e76326 92
88bfe092 93 PROF_stop(file_open);
2391a162 94 return fd;
0a0bf5db 95}
96
2391a162 97
090089c4 98/* close a disk file. */
95d15928 99void
b8d8561b 100file_close(int fd)
090089c4 101{
76f87348 102 fde *F = &fd_table[fd];
2391a162 103 PF *read_callback;
88bfe092 104 PROF_start(file_close);
25354045 105 assert(fd >= 0);
60c0b5a2 106 assert(F->flags.open);
62e76326 107
2391a162 108 if ((read_callback = F->read_handler)) {
62e76326 109 F->read_handler = NULL;
110 read_callback(-1, F->read_data);
65d548bf 111 }
62e76326 112
0cd30ba5 113 if (F->flags.write_daemon) {
be266cb2 114#if _SQUID_WINDOWS_ || _SQUID_OS2_
62e76326 115 /*
116 * on some operating systems, you can not delete or rename
117 * open files, so we won't allow delayed close.
118 */
62e76326 119 while (!diskWriteIsComplete(fd))
120 diskHandleWrite(fd, NULL);
cd377065 121#else
62e76326 122 F->flags.close_request = 1;
bf8fe701 123 debugs(6, 2, "file_close: FD " << fd << ", delaying close");
62e76326 124 PROF_stop(file_close);
62e76326 125 return;
cd377065 126#endif
62e76326 127
fb247d78 128 }
62e76326 129
65d548bf 130 /*
131 * Assert there is no write callback. Otherwise we might be
132 * leaking write state data by closing the descriptor
133 */
134 assert(F->write_handler == NULL);
62e76326 135
42f99d0d 136#if CALL_FSYNC_BEFORE_CLOSE
62e76326 137
42f99d0d 138 fsync(fd);
62e76326 139
42f99d0d 140#endif
62e76326 141
95d15928 142 close(fd);
62e76326 143
bf8fe701 144 debugs(6, F->flags.close_request ? 2 : 5, "file_close: FD " << fd << " really closing\n");
62e76326 145
6cf028ab 146 fd_close(fd);
62e76326 147
83704487 148 statCounter.syscalls.disk.closes++;
62e76326 149
88bfe092 150 PROF_stop(file_close);
090089c4 151}
152
f02b8498 153/*
154 * This function has the purpose of combining multiple writes. This is
155 * to facilitate the ASYNC_IO option since it can only guarantee 1
156 * write to a file per trip around the comm.c select() loop. That's bad
157 * because more than 1 write can be made to the access.log file per
158 * trip, and so this code is purely designed to help batch multiple
159 * sequential writes to the access.log file. Squid will never issue
160 * multiple writes for any other file type during 1 trip around the
161 * select() loop. --SLF
162 */
582b6456 163static void
f02b8498 164diskCombineWrites(struct _fde_disk *fdd)
090089c4 165{
f02b8498 166 /*
167 * We need to combine multiple write requests on an FD's write
168 * queue But only if we don't need to seek() in between them, ugh!
169 * XXX This currently ignores any seeks (file_offset)
170 */
62e76326 171
26ac0430 172 if (fdd->write_q != NULL && fdd->write_q->next != NULL) {
b115733c 173 int len = 0;
62e76326 174
b115733c 175 for (dwrite_q *q = fdd->write_q; q != NULL; q = q->next)
62e76326 176 len += q->len - q->buf_offset;
177
b115733c 178 dwrite_q *wq = (dwrite_q *)memAllocate(MEM_DWRITE_Q);
62e76326 179
180 wq->buf = (char *)xmalloc(len);
181
182 wq->len = 0;
183
184 wq->buf_offset = 0;
185
186 wq->next = NULL;
187
59a09b98 188 wq->free_func = cxx_xfree;
62e76326 189
b115733c
AJ
190 while (fdd->write_q != NULL) {
191 dwrite_q *q = fdd->write_q;
192
62e76326 193 len = q->len - q->buf_offset;
41d00cd3 194 memcpy(wq->buf + wq->len, q->buf + q->buf_offset, len);
62e76326 195 wq->len += len;
196 fdd->write_q = q->next;
197
198 if (q->free_func)
6ca34f6f 199 q->free_func(q->buf);
62e76326 200
b115733c
AJ
201 memFree(q, MEM_DWRITE_Q);
202 };
62e76326 203
204 fdd->write_q_tail = wq;
205
206 fdd->write_q = wq;
0a0bf5db 207 }
f02b8498 208}
209
210/* write handler */
211static void
212diskHandleWrite(int fd, void *notused)
213{
214 int len = 0;
f02b8498 215 fde *F = &fd_table[fd];
62e76326 216
f02b8498 217 struct _fde_disk *fdd = &F->disk;
2391a162 218 dwrite_q *q = fdd->write_q;
219 int status = DISK_OK;
2391a162 220 int do_close;
62e76326 221
2391a162 222 if (NULL == q)
62e76326 223 return;
224
88bfe092 225 PROF_start(diskHandleWrite);
62e76326 226
bf8fe701 227 debugs(6, 3, "diskHandleWrite: FD " << fd);
62e76326 228
2391a162 229 F->flags.write_daemon = 0;
62e76326 230
8350fe9b 231 assert(fdd->write_q != NULL);
62e76326 232
d377699f 233 assert(fdd->write_q->len > fdd->write_q->buf_offset);
62e76326 234
e2851fe7
AR
235 debugs(6, 3, "diskHandleWrite: FD " << fd << " writing " <<
236 (fdd->write_q->len - fdd->write_q->buf_offset) << " bytes at " <<
237 fdd->write_q->file_offset);
62e76326 238
b870e0b4 239 errno = 0;
62e76326 240
cd748f27 241 if (fdd->write_q->file_offset != -1)
e2851fe7 242 lseek(fd, fdd->write_q->file_offset, SEEK_SET); /* XXX ignore return? */
62e76326 243
1f7c9178 244 len = FD_WRITE_METHOD(fd,
62e76326 245 fdd->write_q->buf + fdd->write_q->buf_offset,
246 fdd->write_q->len - fdd->write_q->buf_offset);
247
bf8fe701 248 debugs(6, 3, "diskHandleWrite: FD " << fd << " len = " << len);
62e76326 249
83704487 250 statCounter.syscalls.disk.writes++;
62e76326 251
6cf028ab 252 fd_bytes(fd, len, FD_WRITE);
62e76326 253
0a0bf5db 254 if (len < 0) {
62e76326 255 if (!ignoreErrno(errno)) {
256 status = errno == ENOSPC ? DISK_NO_SPACE_LEFT : DISK_ERROR;
bf8fe701 257 debugs(50, 1, "diskHandleWrite: FD " << fd << ": disk write error: " << xstrerror());
258
62e76326 259 /*
260 * If there is no write callback, then this file is
261 * most likely something important like a log file, or
262 * an interprocess pipe. Its not a swapfile. We feel
263 * that a write failure on a log file is rather important,
264 * and Squid doesn't otherwise deal with this condition.
265 * So to get the administrators attention, we exit with
266 * a fatal message.
267 */
268
269 if (fdd->wrt_handle == NULL)
270 fatal("Write failure -- check your disk space and cache.log");
271
272 /*
273 * If there is a write failure, then we notify the
274 * upper layer via the callback, at the end of this
275 * function. Meanwhile, flush all pending buffers
276 * here. Let the upper layer decide how to handle the
277 * failure. This will prevent experiencing multiple,
278 * repeated write failures for the same FD because of
279 * the queued data.
280 */
281 do {
282 fdd->write_q = q->next;
283
284 if (q->free_func)
6ca34f6f 285 q->free_func(q->buf);
62e76326 286
287 if (q) {
288 memFree(q, MEM_DWRITE_Q);
289 q = NULL;
290 }
291 } while ((q = fdd->write_q));
292 }
293
294 len = 0;
0a0bf5db 295 }
62e76326 296
8350fe9b 297 if (q != NULL) {
62e76326 298 /* q might become NULL from write failure above */
299 q->buf_offset += len;
300
301 if (q->buf_offset > q->len)
bf8fe701 302 debugs(50, 1, "diskHandleWriteComplete: q->buf_offset > q->len (" <<
303 q << "," << (int) q->buf_offset << ", " << q->len << ", " <<
304 len << " FD " << fd << ")");
305
62e76326 306
307 assert(q->buf_offset <= q->len);
308
309 if (q->buf_offset == q->len) {
310 /* complete write */
311 fdd->write_q = q->next;
312
313 if (q->free_func)
6ca34f6f 314 q->free_func(q->buf);
62e76326 315
316 if (q) {
317 memFree(q, MEM_DWRITE_Q);
318 q = NULL;
319 }
320 }
090089c4 321 }
62e76326 322
de866d20 323 if (fdd->write_q == NULL) {
62e76326 324 /* no more data */
325 fdd->write_q_tail = NULL;
de866d20 326 } else {
62e76326 327 /* another block is queued */
328 diskCombineWrites(fdd);
d841c88d 329 Comm::SetSelect(fd, COMM_SELECT_WRITE, diskHandleWrite, NULL, 0);
62e76326 330 F->flags.write_daemon = 1;
4a86108c 331 }
62e76326 332
0cd30ba5 333 do_close = F->flags.close_request;
62e76326 334
25354045 335 if (fdd->wrt_handle) {
62e76326 336 DWCB *callback = fdd->wrt_handle;
337 void *cbdata;
338 fdd->wrt_handle = NULL;
339
340 if (cbdataReferenceValidDone(fdd->wrt_handle_data, &cbdata)) {
341 callback(fd, status, len, cbdata);
342 /*
343 * NOTE, this callback can close the FD, so we must
344 * not touch 'F', 'fdd', etc. after this.
345 */
346 PROF_stop(diskHandleWrite);
347 return;
348 /* XXX But what about close_request??? */
349 }
25354045 350 }
62e76326 351
68c21f71 352 if (do_close)
62e76326 353 file_close(fd);
354
88bfe092 355 PROF_stop(diskHandleWrite);
090089c4 356}
357
358
090089c4 359/* write block to a file */
360/* write back queue. Only one writer at a time. */
361/* call a handle when writing is complete. */
e3ef2b09 362void
3ebcfaa1 363file_write(int fd,
62e76326 364 off_t file_offset,
365 void const *ptr_to_buf,
366 int len,
367 DWCB * handle,
368 void *handle_data,
369 FREE * free_func)
090089c4 370{
c6ac7aae 371 dwrite_q *wq = NULL;
48cc3fcf 372 fde *F = &fd_table[fd];
88bfe092 373 PROF_start(file_write);
48cc3fcf 374 assert(fd >= 0);
60c0b5a2 375 assert(F->flags.open);
090089c4 376 /* if we got here. Caller is eligible to write. */
e6ccf245 377 wq = (dwrite_q *)memAllocate(MEM_DWRITE_Q);
d377699f 378 wq->file_offset = file_offset;
e6ccf245 379 wq->buf = (char *)ptr_to_buf;
090089c4 380 wq->len = len;
d377699f 381 wq->buf_offset = 0;
090089c4 382 wq->next = NULL;
ed7f0b6a 383 wq->free_func = free_func;
62e76326 384
fa80a8ef 385 if (!F->disk.wrt_handle_data) {
62e76326 386 F->disk.wrt_handle = handle;
387 F->disk.wrt_handle_data = cbdataReference(handle_data);
fa80a8ef 388 } else {
62e76326 389 /* Detect if there is multiple concurrent users of this fd.. we only support one callback */
390 assert(F->disk.wrt_handle_data == handle_data && F->disk.wrt_handle == handle);
fa80a8ef 391 }
62e76326 392
090089c4 393 /* add to queue */
48cc3fcf 394 if (F->disk.write_q == NULL) {
62e76326 395 /* empty queue */
396 F->disk.write_q = F->disk.write_q_tail = wq;
090089c4 397 } else {
62e76326 398 F->disk.write_q_tail->next = wq;
399 F->disk.write_q_tail = wq;
090089c4 400 }
62e76326 401
0cd30ba5 402 if (!F->flags.write_daemon) {
62e76326 403 diskHandleWrite(fd, NULL);
429fdbec 404 }
62e76326 405
88bfe092 406 PROF_stop(file_write);
090089c4 407}
408
23b2b404 409/*
410 * a wrapper around file_write to allow for MemBuf to be file_written
411 * in a snap
412 */
137ee196 413void
414file_write_mbuf(int fd, off_t off, MemBuf mb, DWCB * handler, void *handler_data)
415{
2fe7eff9 416 file_write(fd, off, mb.buf, mb.size, handler, handler_data, mb.freeFunc());
137ee196 417}
090089c4 418
419/* Read from FD */
582b6456 420static void
421diskHandleRead(int fd, void *data)
090089c4 422{
e6ccf245 423 dread_ctrl *ctrl_dat = (dread_ctrl *)data;
edd2eb63 424 fde *F = &fd_table[fd];
090089c4 425 int len;
2391a162 426 int rc = DISK_OK;
65d548bf 427 /*
428 * FD < 0 indicates premature close; we just have to free
429 * the state data.
430 */
62e76326 431
65d548bf 432 if (fd < 0) {
62e76326 433 memFree(ctrl_dat, MEM_DREAD_CTRL);
434 return;
65d548bf 435 }
62e76326 436
88bfe092 437 PROF_start(diskHandleRead);
62e76326 438
034b5ea4 439#if WRITES_MAINTAIN_DISK_OFFSET
711982d8 440 if (F->disk.offset != ctrl_dat->offset) {
034b5ea4
AR
441#else
442 {
443#endif
4a7a3d56 444 debugs(6, 3, "diskHandleRead: FD " << fd << " seeking to offset " << ctrl_dat->offset);
62e76326 445 lseek(fd, ctrl_dat->offset, SEEK_SET); /* XXX ignore return? */
e4f1fdae 446 ++statCounter.syscalls.disk.seeks;
62e76326 447 F->disk.offset = ctrl_dat->offset;
711982d8 448 }
62e76326 449
b870e0b4 450 errno = 0;
1f7c9178 451 len = FD_READ_METHOD(fd, ctrl_dat->buf, ctrl_dat->req_len);
62e76326 452
015b507a 453 if (len > 0)
62e76326 454 F->disk.offset += len;
455
83704487 456 statCounter.syscalls.disk.reads++;
62e76326 457
4f92c80c 458 fd_bytes(fd, len, FD_READ);
62e76326 459
0a0bf5db 460 if (len < 0) {
62e76326 461 if (ignoreErrno(errno)) {
d841c88d 462 Comm::SetSelect(fd, COMM_SELECT_READ, diskHandleRead, ctrl_dat, 0);
62e76326 463 PROF_stop(diskHandleRead);
464 return;
465 }
466
bf8fe701 467 debugs(50, 1, "diskHandleRead: FD " << fd << ": " << xstrerror());
62e76326 468 len = 0;
469 rc = DISK_ERROR;
090089c4 470 } else if (len == 0) {
62e76326 471 rc = DISK_EOF;
090089c4 472 }
62e76326 473
fa80a8ef 474 if (cbdataReferenceValid(ctrl_dat->client_data))
62e76326 475 ctrl_dat->handler(fd, ctrl_dat->buf, len, rc, ctrl_dat->client_data);
476
fa80a8ef 477 cbdataReferenceDone(ctrl_dat->client_data);
62e76326 478
db1cd23c 479 memFree(ctrl_dat, MEM_DREAD_CTRL);
62e76326 480
88bfe092 481 PROF_stop(diskHandleRead);
090089c4 482}
483
484
485/* start read operation */
62e76326 486/* buffer must be allocated from the caller.
26ac0430 487 * It must have at least req_len space in there.
090089c4 488 * call handler when a reading is complete. */
2391a162 489void
d377699f 490file_read(int fd, char *buf, int req_len, off_t offset, DRCB * handler, void *client_data)
090089c4 491{
492 dread_ctrl *ctrl_dat;
88bfe092 493 PROF_start(file_read);
711982d8 494 assert(fd >= 0);
e6ccf245 495 ctrl_dat = (dread_ctrl *)memAllocate(MEM_DREAD_CTRL);
090089c4 496 ctrl_dat->fd = fd;
497 ctrl_dat->offset = offset;
498 ctrl_dat->req_len = req_len;
499 ctrl_dat->buf = buf;
090089c4 500 ctrl_dat->end_of_file = 0;
501 ctrl_dat->handler = handler;
fa80a8ef 502 ctrl_dat->client_data = cbdataReference(client_data);
0a0bf5db 503 diskHandleRead(fd, ctrl_dat);
88bfe092 504 PROF_stop(file_read);
090089c4 505}
c8f4eac4 506
507void
508safeunlink(const char *s, int quiet)
509{
510 statCounter.syscalls.disk.unlinks++;
511
512 if (unlink(s) < 0 && !quiet)
bf8fe701 513 debugs(50, 1, "safeunlink: Couldn't delete " << s << ": " << xstrerror());
c8f4eac4 514}
515
516/*
517 * Same as rename(2) but complains if something goes wrong;
26ac0430 518 * the caller is responsible for handing and explaining the
c8f4eac4 519 * consequences of errors.
520 */
521int
522xrename(const char *from, const char *to)
523{
bf8fe701 524 debugs(21, 2, "xrename: renaming " << from << " to " << to);
be266cb2 525#if _SQUID_OS2_ || _SQUID_WINDOWS_
6ca34f6f 526 remove(to);
c8f4eac4 527#endif
528
529 if (0 == rename(from, to))
530 return 0;
531
bf8fe701 532 debugs(21, errno == ENOENT ? 2 : 1, "xrename: Cannot rename " << from << " to " << to << ": " << xstrerror());
c8f4eac4 533
534 return -1;
535}
536