1 /* vi:set ts=8 sts=4 sw=4 noet: 2 * 3 * VIM - Vi IMproved by Bram Moolenaar 4 * 5 * Do ":help uganda" in Vim to read copying and usage conditions. 6 * Do ":help credits" in Vim to see a list of people who contributed. 7 * See README.txt for an overview of the Vim source code. 8 */ 9 10 /* 11 * memfile.c: Contains the functions for handling blocks of memory which can 12 * be stored in a file. This is the implementation of a sort of virtual memory. 13 * 14 * A memfile consists of a sequence of blocks. The blocks numbered from 0 15 * upwards have been assigned a place in the actual file. The block number 16 * is equal to the page number in the file. The 17 * blocks with negative numbers are currently in memory only. They can be 18 * assigned a place in the file when too much memory is being used. At that 19 * moment they get a new, positive, number. A list is used for translation of 20 * negative to positive numbers. 21 * 22 * The size of a block is a multiple of a page size, normally the page size of 23 * the device the file is on. Most blocks are 1 page long. A Block of multiple 24 * pages is used for a line that does not fit in a single page. 25 * 26 * Each block can be in memory and/or in a file. The block stays in memory 27 * as long as it is locked. If it is no longer locked it can be swapped out to 28 * the file. It is only written to the file if it has been changed. 29 * 30 * Under normal operation the file is created when opening the memory file and 31 * deleted when closing the memory file. Only with recovery an existing memory 32 * file is opened. 33 */ 34 35 #include "vim.h" 36 37 /* 38 * Some systems have the page size in statfs.f_bsize, some in stat.st_blksize 39 */ 40 #ifdef HAVE_ST_BLKSIZE 41 # define STATFS stat 42 # define F_BSIZE st_blksize 43 # define fstatfs(fd, buf, len, nul) mch_fstat((fd), (buf)) 44 #else 45 # ifdef HAVE_SYS_STATFS_H 46 # include <sys/statfs.h> 47 # define STATFS statfs 48 # define F_BSIZE f_bsize 49 # ifdef __MINT__ /* do we still need this? */ 50 # define fstatfs(fd, buf, len, nul) mch_fstat((fd), (buf)) 51 # endif 52 # endif 53 #endif 54 55 /* 56 * for Amiga Dos 2.0x we use Flush 57 */ 58 #ifdef AMIGA 59 # ifdef FEAT_ARP 60 extern int dos2; /* this is in os_amiga.c */ 61 # endif 62 # ifdef SASC 63 # include <proto/dos.h> 64 # include <ios1.h> /* for chkufb() */ 65 # endif 66 #endif 67 68 #define MEMFILE_PAGE_SIZE 4096 /* default page size */ 69 70 static long_u total_mem_used = 0; /* total memory used for memfiles */ 71 72 static void mf_ins_hash(memfile_T *, bhdr_T *); 73 static void mf_rem_hash(memfile_T *, bhdr_T *); 74 static bhdr_T *mf_find_hash(memfile_T *, blocknr_T); 75 static void mf_ins_used(memfile_T *, bhdr_T *); 76 static void mf_rem_used(memfile_T *, bhdr_T *); 77 static bhdr_T *mf_release(memfile_T *, int); 78 static bhdr_T *mf_alloc_bhdr(memfile_T *, int); 79 static void mf_free_bhdr(bhdr_T *); 80 static void mf_ins_free(memfile_T *, bhdr_T *); 81 static bhdr_T *mf_rem_free(memfile_T *); 82 static int mf_read(memfile_T *, bhdr_T *); 83 static int mf_write(memfile_T *, bhdr_T *); 84 static int mf_write_block(memfile_T *mfp, bhdr_T *hp, off_T offset, unsigned size); 85 static int mf_trans_add(memfile_T *, bhdr_T *); 86 static void mf_do_open(memfile_T *, char_u *, int); 87 static void mf_hash_init(mf_hashtab_T *); 88 static void mf_hash_free(mf_hashtab_T *); 89 static void mf_hash_free_all(mf_hashtab_T *); 90 static mf_hashitem_T *mf_hash_find(mf_hashtab_T *, blocknr_T); 91 static void mf_hash_add_item(mf_hashtab_T *, mf_hashitem_T *); 92 static void mf_hash_rem_item(mf_hashtab_T *, mf_hashitem_T *); 93 static int mf_hash_grow(mf_hashtab_T *); 94 95 /* 96 * The functions for using a memfile: 97 * 98 * mf_open() open a new or existing memfile 99 * mf_open_file() open a swap file for an existing memfile 100 * mf_close() close (and delete) a memfile 101 * mf_new() create a new block in a memfile and lock it 102 * mf_get() get an existing block and lock it 103 * mf_put() unlock a block, may be marked for writing 104 * mf_free() remove a block 105 * mf_sync() sync changed parts of memfile to disk 106 * mf_release_all() release as much memory as possible 107 * mf_trans_del() may translate negative to positive block number 108 * mf_fullname() make file name full path (use before first :cd) 109 */ 110 111 /* 112 * Open an existing or new memory block file. 113 * 114 * fname: name of file to use (NULL means no file at all) 115 * Note: fname must have been allocated, it is not copied! 116 * If opening the file fails, fname is freed. 117 * flags: flags for open() call 118 * 119 * If fname != NULL and file cannot be opened, fail. 120 * 121 * return value: identifier for this memory block file. 122 */ 123 memfile_T * 124 mf_open(char_u *fname, int flags) 125 { 126 memfile_T *mfp; 127 off_T size; 128 #if defined(STATFS) && defined(UNIX) && !defined(__QNX__) && !defined(__minix) 129 # define USE_FSTATFS 130 struct STATFS stf; 131 #endif 132 133 if ((mfp = (memfile_T *)alloc((unsigned)sizeof(memfile_T))) == NULL) 134 return NULL; 135 136 if (fname == NULL) /* no file for this memfile, use memory only */ 137 { 138 mfp->mf_fname = NULL; 139 mfp->mf_ffname = NULL; 140 mfp->mf_fd = -1; 141 } 142 else 143 { 144 mf_do_open(mfp, fname, flags); /* try to open the file */ 145 146 /* if the file cannot be opened, return here */ 147 if (mfp->mf_fd < 0) 148 { 149 vim_free(mfp); 150 return NULL; 151 } 152 } 153 154 mfp->mf_free_first = NULL; /* free list is empty */ 155 mfp->mf_used_first = NULL; /* used list is empty */ 156 mfp->mf_used_last = NULL; 157 mfp->mf_dirty = FALSE; 158 mfp->mf_used_count = 0; 159 mf_hash_init(&mfp->mf_hash); 160 mf_hash_init(&mfp->mf_trans); 161 mfp->mf_page_size = MEMFILE_PAGE_SIZE; 162 #ifdef FEAT_CRYPT 163 mfp->mf_old_key = NULL; 164 #endif 165 166 #ifdef USE_FSTATFS 167 /* 168 * Try to set the page size equal to the block size of the device. 169 * Speeds up I/O a lot. 170 * When recovering, the actual block size will be retrieved from block 0 171 * in ml_recover(). The size used here may be wrong, therefore 172 * mf_blocknr_max must be rounded up. 173 */ 174 if (mfp->mf_fd >= 0 175 && fstatfs(mfp->mf_fd, &stf, sizeof(struct statfs), 0) == 0 176 && stf.F_BSIZE >= MIN_SWAP_PAGE_SIZE 177 && stf.F_BSIZE <= MAX_SWAP_PAGE_SIZE) 178 mfp->mf_page_size = stf.F_BSIZE; 179 #endif 180 181 if (mfp->mf_fd < 0 || (flags & (O_TRUNC|O_EXCL)) 182 || (size = vim_lseek(mfp->mf_fd, (off_T)0L, SEEK_END)) <= 0) 183 mfp->mf_blocknr_max = 0; /* no file or empty file */ 184 else 185 mfp->mf_blocknr_max = (blocknr_T)((size + mfp->mf_page_size - 1) 186 / mfp->mf_page_size); 187 mfp->mf_blocknr_min = -1; 188 mfp->mf_neg_count = 0; 189 mfp->mf_infile_count = mfp->mf_blocknr_max; 190 191 /* 192 * Compute maximum number of pages ('maxmem' is in Kbyte): 193 * 'mammem' * 1Kbyte / page-size-in-bytes. 194 * Avoid overflow by first reducing page size as much as possible. 195 */ 196 { 197 int shift = 10; 198 unsigned page_size = mfp->mf_page_size; 199 200 while (shift > 0 && (page_size & 1) == 0) 201 { 202 page_size = page_size >> 1; 203 --shift; 204 } 205 mfp->mf_used_count_max = (p_mm << shift) / page_size; 206 if (mfp->mf_used_count_max < 10) 207 mfp->mf_used_count_max = 10; 208 } 209 210 return mfp; 211 } 212 213 /* 214 * Open a file for an existing memfile. Used when updatecount set from 0 to 215 * some value. 216 * If the file already exists, this fails. 217 * "fname" is the name of file to use (NULL means no file at all) 218 * Note: "fname" must have been allocated, it is not copied! If opening the 219 * file fails, "fname" is freed. 220 * 221 * return value: FAIL if file could not be opened, OK otherwise 222 */ 223 int 224 mf_open_file(memfile_T *mfp, char_u *fname) 225 { 226 mf_do_open(mfp, fname, O_RDWR|O_CREAT|O_EXCL); /* try to open the file */ 227 228 if (mfp->mf_fd < 0) 229 return FAIL; 230 231 mfp->mf_dirty = TRUE; 232 return OK; 233 } 234 235 /* 236 * Close a memory file and delete the associated file if 'del_file' is TRUE. 237 */ 238 void 239 mf_close(memfile_T *mfp, int del_file) 240 { 241 bhdr_T *hp, *nextp; 242 243 if (mfp == NULL) /* safety check */ 244 return; 245 if (mfp->mf_fd >= 0) 246 { 247 if (close(mfp->mf_fd) < 0) 248 emsg(_(e_swapclose)); 249 } 250 if (del_file && mfp->mf_fname != NULL) 251 mch_remove(mfp->mf_fname); 252 /* free entries in used list */ 253 for (hp = mfp->mf_used_first; hp != NULL; hp = nextp) 254 { 255 total_mem_used -= hp->bh_page_count * mfp->mf_page_size; 256 nextp = hp->bh_next; 257 mf_free_bhdr(hp); 258 } 259 while (mfp->mf_free_first != NULL) /* free entries in free list */ 260 vim_free(mf_rem_free(mfp)); 261 mf_hash_free(&mfp->mf_hash); 262 mf_hash_free_all(&mfp->mf_trans); /* free hashtable and its items */ 263 vim_free(mfp->mf_fname); 264 vim_free(mfp->mf_ffname); 265 vim_free(mfp); 266 } 267 268 /* 269 * Close the swap file for a memfile. Used when 'swapfile' is reset. 270 */ 271 void 272 mf_close_file( 273 buf_T *buf, 274 int getlines) /* get all lines into memory? */ 275 { 276 memfile_T *mfp; 277 linenr_T lnum; 278 279 mfp = buf->b_ml.ml_mfp; 280 if (mfp == NULL || mfp->mf_fd < 0) /* nothing to close */ 281 return; 282 283 if (getlines) 284 { 285 /* get all blocks in memory by accessing all lines (clumsy!) */ 286 mf_dont_release = TRUE; 287 for (lnum = 1; lnum <= buf->b_ml.ml_line_count; ++lnum) 288 (void)ml_get_buf(buf, lnum, FALSE); 289 mf_dont_release = FALSE; 290 /* TODO: should check if all blocks are really in core */ 291 } 292 293 if (close(mfp->mf_fd) < 0) /* close the file */ 294 emsg(_(e_swapclose)); 295 mfp->mf_fd = -1; 296 297 if (mfp->mf_fname != NULL) 298 { 299 mch_remove(mfp->mf_fname); /* delete the swap file */ 300 VIM_CLEAR(mfp->mf_fname); 301 VIM_CLEAR(mfp->mf_ffname); 302 } 303 } 304 305 /* 306 * Set new size for a memfile. Used when block 0 of a swapfile has been read 307 * and the size it indicates differs from what was guessed. 308 */ 309 void 310 mf_new_page_size(memfile_T *mfp, unsigned new_size) 311 { 312 /* Correct the memory used for block 0 to the new size, because it will be 313 * freed with that size later on. */ 314 total_mem_used += new_size - mfp->mf_page_size; 315 mfp->mf_page_size = new_size; 316 } 317 318 /* 319 * get a new block 320 * 321 * negative: TRUE if negative block number desired (data block) 322 */ 323 bhdr_T * 324 mf_new(memfile_T *mfp, int negative, int page_count) 325 { 326 bhdr_T *hp; /* new bhdr_T */ 327 bhdr_T *freep; /* first block in free list */ 328 char_u *p; 329 330 /* 331 * If we reached the maximum size for the used memory blocks, release one 332 * If a bhdr_T is returned, use it and adjust the page_count if necessary. 333 */ 334 hp = mf_release(mfp, page_count); 335 336 /* 337 * Decide on the number to use: 338 * If there is a free block, use its number. 339 * Otherwise use mf_block_min for a negative number, mf_block_max for 340 * a positive number. 341 */ 342 freep = mfp->mf_free_first; 343 if (!negative && freep != NULL && freep->bh_page_count >= page_count) 344 { 345 /* 346 * If the block in the free list has more pages, take only the number 347 * of pages needed and allocate a new bhdr_T with data 348 * 349 * If the number of pages matches and mf_release() did not return a 350 * bhdr_T, use the bhdr_T from the free list and allocate the data 351 * 352 * If the number of pages matches and mf_release() returned a bhdr_T, 353 * just use the number and free the bhdr_T from the free list 354 */ 355 if (freep->bh_page_count > page_count) 356 { 357 if (hp == NULL && (hp = mf_alloc_bhdr(mfp, page_count)) == NULL) 358 return NULL; 359 hp->bh_bnum = freep->bh_bnum; 360 freep->bh_bnum += page_count; 361 freep->bh_page_count -= page_count; 362 } 363 else if (hp == NULL) /* need to allocate memory for this block */ 364 { 365 if ((p = (char_u *)alloc(mfp->mf_page_size * page_count)) == NULL) 366 return NULL; 367 hp = mf_rem_free(mfp); 368 hp->bh_data = p; 369 } 370 else /* use the number, remove entry from free list */ 371 { 372 freep = mf_rem_free(mfp); 373 hp->bh_bnum = freep->bh_bnum; 374 vim_free(freep); 375 } 376 } 377 else /* get a new number */ 378 { 379 if (hp == NULL && (hp = mf_alloc_bhdr(mfp, page_count)) == NULL) 380 return NULL; 381 if (negative) 382 { 383 hp->bh_bnum = mfp->mf_blocknr_min--; 384 mfp->mf_neg_count++; 385 } 386 else 387 { 388 hp->bh_bnum = mfp->mf_blocknr_max; 389 mfp->mf_blocknr_max += page_count; 390 } 391 } 392 hp->bh_flags = BH_LOCKED | BH_DIRTY; /* new block is always dirty */ 393 mfp->mf_dirty = TRUE; 394 hp->bh_page_count = page_count; 395 mf_ins_used(mfp, hp); 396 mf_ins_hash(mfp, hp); 397 398 /* 399 * Init the data to all zero, to avoid reading uninitialized data. 400 * This also avoids that the passwd file ends up in the swap file! 401 */ 402 (void)vim_memset((char *)(hp->bh_data), 0, 403 (size_t)mfp->mf_page_size * page_count); 404 405 return hp; 406 } 407 408 /* 409 * Get existing block "nr" with "page_count" pages. 410 * 411 * Note: The caller should first check a negative nr with mf_trans_del() 412 */ 413 bhdr_T * 414 mf_get(memfile_T *mfp, blocknr_T nr, int page_count) 415 { 416 bhdr_T *hp; 417 /* doesn't exist */ 418 if (nr >= mfp->mf_blocknr_max || nr <= mfp->mf_blocknr_min) 419 return NULL; 420 421 /* 422 * see if it is in the cache 423 */ 424 hp = mf_find_hash(mfp, nr); 425 if (hp == NULL) /* not in the hash list */ 426 { 427 if (nr < 0 || nr >= mfp->mf_infile_count) /* can't be in the file */ 428 return NULL; 429 430 /* could check here if the block is in the free list */ 431 432 /* 433 * Check if we need to flush an existing block. 434 * If so, use that block. 435 * If not, allocate a new block. 436 */ 437 hp = mf_release(mfp, page_count); 438 if (hp == NULL && (hp = mf_alloc_bhdr(mfp, page_count)) == NULL) 439 return NULL; 440 441 hp->bh_bnum = nr; 442 hp->bh_flags = 0; 443 hp->bh_page_count = page_count; 444 if (mf_read(mfp, hp) == FAIL) /* cannot read the block! */ 445 { 446 mf_free_bhdr(hp); 447 return NULL; 448 } 449 } 450 else 451 { 452 mf_rem_used(mfp, hp); /* remove from list, insert in front below */ 453 mf_rem_hash(mfp, hp); 454 } 455 456 hp->bh_flags |= BH_LOCKED; 457 mf_ins_used(mfp, hp); /* put in front of used list */ 458 mf_ins_hash(mfp, hp); /* put in front of hash list */ 459 460 return hp; 461 } 462 463 /* 464 * release the block *hp 465 * 466 * dirty: Block must be written to file later 467 * infile: Block should be in file (needed for recovery) 468 * 469 * no return value, function cannot fail 470 */ 471 void 472 mf_put( 473 memfile_T *mfp, 474 bhdr_T *hp, 475 int dirty, 476 int infile) 477 { 478 int flags; 479 480 flags = hp->bh_flags; 481 482 if ((flags & BH_LOCKED) == 0) 483 iemsg(_("E293: block was not locked")); 484 flags &= ~BH_LOCKED; 485 if (dirty) 486 { 487 flags |= BH_DIRTY; 488 mfp->mf_dirty = TRUE; 489 } 490 hp->bh_flags = flags; 491 if (infile) 492 mf_trans_add(mfp, hp); /* may translate negative in positive nr */ 493 } 494 495 /* 496 * block *hp is no longer in used, may put it in the free list of memfile *mfp 497 */ 498 void 499 mf_free(memfile_T *mfp, bhdr_T *hp) 500 { 501 vim_free(hp->bh_data); /* free the memory */ 502 mf_rem_hash(mfp, hp); /* get *hp out of the hash list */ 503 mf_rem_used(mfp, hp); /* get *hp out of the used list */ 504 if (hp->bh_bnum < 0) 505 { 506 vim_free(hp); /* don't want negative numbers in free list */ 507 mfp->mf_neg_count--; 508 } 509 else 510 mf_ins_free(mfp, hp); /* put *hp in the free list */ 511 } 512 513 #if defined(__MORPHOS__) && defined(__libnix__) 514 /* function is missing in MorphOS libnix version */ 515 extern unsigned long *__stdfiledes; 516 517 static unsigned long 518 fdtofh(int filedescriptor) 519 { 520 return __stdfiledes[filedescriptor]; 521 } 522 #endif 523 524 /* 525 * Sync the memory file *mfp to disk. 526 * Flags: 527 * MFS_ALL If not given, blocks with negative numbers are not synced, 528 * even when they are dirty! 529 * MFS_STOP Stop syncing when a character becomes available, but sync at 530 * least one block. 531 * MFS_FLUSH Make sure buffers are flushed to disk, so they will survive a 532 * system crash. 533 * MFS_ZERO Only write block 0. 534 * 535 * Return FAIL for failure, OK otherwise 536 */ 537 int 538 mf_sync(memfile_T *mfp, int flags) 539 { 540 int status; 541 bhdr_T *hp; 542 int got_int_save = got_int; 543 544 if (mfp->mf_fd < 0) /* there is no file, nothing to do */ 545 { 546 mfp->mf_dirty = FALSE; 547 return FAIL; 548 } 549 550 /* Only a CTRL-C while writing will break us here, not one typed 551 * previously. */ 552 got_int = FALSE; 553 554 /* 555 * sync from last to first (may reduce the probability of an inconsistent 556 * file) If a write fails, it is very likely caused by a full filesystem. 557 * Then we only try to write blocks within the existing file. If that also 558 * fails then we give up. 559 */ 560 status = OK; 561 for (hp = mfp->mf_used_last; hp != NULL; hp = hp->bh_prev) 562 if (((flags & MFS_ALL) || hp->bh_bnum >= 0) 563 && (hp->bh_flags & BH_DIRTY) 564 && (status == OK || (hp->bh_bnum >= 0 565 && hp->bh_bnum < mfp->mf_infile_count))) 566 { 567 if ((flags & MFS_ZERO) && hp->bh_bnum != 0) 568 continue; 569 if (mf_write(mfp, hp) == FAIL) 570 { 571 if (status == FAIL) /* double error: quit syncing */ 572 break; 573 status = FAIL; 574 } 575 if (flags & MFS_STOP) 576 { 577 /* Stop when char available now. */ 578 if (ui_char_avail()) 579 break; 580 } 581 else 582 ui_breakcheck(); 583 if (got_int) 584 break; 585 } 586 587 /* 588 * If the whole list is flushed, the memfile is not dirty anymore. 589 * In case of an error this flag is also set, to avoid trying all the time. 590 */ 591 if (hp == NULL || status == FAIL) 592 mfp->mf_dirty = FALSE; 593 594 if ((flags & MFS_FLUSH) && *p_sws != NUL) 595 { 596 #if defined(UNIX) 597 # ifdef HAVE_FSYNC 598 /* 599 * most Unixes have the very useful fsync() function, just what we need. 600 */ 601 if (STRCMP(p_sws, "fsync") == 0) 602 { 603 if (vim_fsync(mfp->mf_fd)) 604 status = FAIL; 605 } 606 else 607 # endif 608 /* OpenNT is strictly POSIX (Benzinger) */ 609 /* Tandem/Himalaya NSK-OSS doesn't have sync() */ 610 /* No sync() on Stratus VOS */ 611 # if defined(__OPENNT) || defined(__TANDEM) || defined(__VOS__) 612 fflush(NULL); 613 # else 614 sync(); 615 # endif 616 #endif 617 #ifdef VMS 618 if (STRCMP(p_sws, "fsync") == 0) 619 { 620 if (vim_fsync(mfp->mf_fd)) 621 status = FAIL; 622 } 623 #endif 624 #ifdef MSWIN 625 if (_commit(mfp->mf_fd)) 626 status = FAIL; 627 #endif 628 #ifdef AMIGA 629 # if defined(__AROS__) || defined(__amigaos4__) 630 if (vim_fsync(mfp->mf_fd) != 0) 631 status = FAIL; 632 # else 633 /* 634 * Flush() only exists for AmigaDos 2.0. 635 * For 1.3 it should be done with close() + open(), but then the risk 636 * is that the open() may fail and lose the file.... 637 */ 638 # ifdef FEAT_ARP 639 if (dos2) 640 # endif 641 # ifdef SASC 642 { 643 struct UFB *fp = chkufb(mfp->mf_fd); 644 645 if (fp != NULL) 646 Flush(fp->ufbfh); 647 } 648 # else 649 # if defined(_DCC) || defined(__GNUC__) || defined(__MORPHOS__) 650 { 651 # if defined(__GNUC__) && !defined(__MORPHOS__) && defined(__libnix__) 652 /* Have function (in libnix at least), 653 * but ain't got no prototype anywhere. */ 654 extern unsigned long fdtofh(int filedescriptor); 655 # endif 656 # if !defined(__libnix__) 657 fflush(NULL); 658 # else 659 BPTR fh = (BPTR)fdtofh(mfp->mf_fd); 660 661 if (fh != 0) 662 Flush(fh); 663 # endif 664 } 665 # else /* assume Manx */ 666 Flush(_devtab[mfp->mf_fd].fd); 667 # endif 668 # endif 669 # endif 670 #endif /* AMIGA */ 671 } 672 673 got_int |= got_int_save; 674 675 return status; 676 } 677 678 /* 679 * For all blocks in memory file *mfp that have a positive block number set 680 * the dirty flag. These are blocks that need to be written to a newly 681 * created swapfile. 682 */ 683 void 684 mf_set_dirty(memfile_T *mfp) 685 { 686 bhdr_T *hp; 687 688 for (hp = mfp->mf_used_last; hp != NULL; hp = hp->bh_prev) 689 if (hp->bh_bnum > 0) 690 hp->bh_flags |= BH_DIRTY; 691 mfp->mf_dirty = TRUE; 692 } 693 694 /* 695 * insert block *hp in front of hashlist of memfile *mfp 696 */ 697 static void 698 mf_ins_hash(memfile_T *mfp, bhdr_T *hp) 699 { 700 mf_hash_add_item(&mfp->mf_hash, (mf_hashitem_T *)hp); 701 } 702 703 /* 704 * remove block *hp from hashlist of memfile list *mfp 705 */ 706 static void 707 mf_rem_hash(memfile_T *mfp, bhdr_T *hp) 708 { 709 mf_hash_rem_item(&mfp->mf_hash, (mf_hashitem_T *)hp); 710 } 711 712 /* 713 * look in hash lists of memfile *mfp for block header with number 'nr' 714 */ 715 static bhdr_T * 716 mf_find_hash(memfile_T *mfp, blocknr_T nr) 717 { 718 return (bhdr_T *)mf_hash_find(&mfp->mf_hash, nr); 719 } 720 721 /* 722 * insert block *hp in front of used list of memfile *mfp 723 */ 724 static void 725 mf_ins_used(memfile_T *mfp, bhdr_T *hp) 726 { 727 hp->bh_next = mfp->mf_used_first; 728 mfp->mf_used_first = hp; 729 hp->bh_prev = NULL; 730 if (hp->bh_next == NULL) /* list was empty, adjust last pointer */ 731 mfp->mf_used_last = hp; 732 else 733 hp->bh_next->bh_prev = hp; 734 mfp->mf_used_count += hp->bh_page_count; 735 total_mem_used += hp->bh_page_count * mfp->mf_page_size; 736 } 737 738 /* 739 * remove block *hp from used list of memfile *mfp 740 */ 741 static void 742 mf_rem_used(memfile_T *mfp, bhdr_T *hp) 743 { 744 if (hp->bh_next == NULL) /* last block in used list */ 745 mfp->mf_used_last = hp->bh_prev; 746 else 747 hp->bh_next->bh_prev = hp->bh_prev; 748 if (hp->bh_prev == NULL) /* first block in used list */ 749 mfp->mf_used_first = hp->bh_next; 750 else 751 hp->bh_prev->bh_next = hp->bh_next; 752 mfp->mf_used_count -= hp->bh_page_count; 753 total_mem_used -= hp->bh_page_count * mfp->mf_page_size; 754 } 755 756 /* 757 * Release the least recently used block from the used list if the number 758 * of used memory blocks gets to big. 759 * 760 * Return the block header to the caller, including the memory block, so 761 * it can be re-used. Make sure the page_count is right. 762 * 763 * Returns NULL if no block is released. 764 */ 765 static bhdr_T * 766 mf_release(memfile_T *mfp, int page_count) 767 { 768 bhdr_T *hp; 769 int need_release; 770 buf_T *buf; 771 772 /* don't release while in mf_close_file() */ 773 if (mf_dont_release) 774 return NULL; 775 776 /* 777 * Need to release a block if the number of blocks for this memfile is 778 * higher than the maximum or total memory used is over 'maxmemtot' 779 */ 780 need_release = ((mfp->mf_used_count >= mfp->mf_used_count_max) 781 || (total_mem_used >> 10) >= (long_u)p_mmt); 782 783 /* 784 * Try to create a swap file if the amount of memory used is getting too 785 * high. 786 */ 787 if (mfp->mf_fd < 0 && need_release && p_uc) 788 { 789 /* find for which buffer this memfile is */ 790 FOR_ALL_BUFFERS(buf) 791 if (buf->b_ml.ml_mfp == mfp) 792 break; 793 if (buf != NULL && buf->b_may_swap) 794 ml_open_file(buf); 795 } 796 797 /* 798 * don't release a block if 799 * there is no file for this memfile 800 * or 801 * the number of blocks for this memfile is lower than the maximum 802 * and 803 * total memory used is not up to 'maxmemtot' 804 */ 805 if (mfp->mf_fd < 0 || !need_release) 806 return NULL; 807 808 for (hp = mfp->mf_used_last; hp != NULL; hp = hp->bh_prev) 809 if (!(hp->bh_flags & BH_LOCKED)) 810 break; 811 if (hp == NULL) /* not a single one that can be released */ 812 return NULL; 813 814 /* 815 * If the block is dirty, write it. 816 * If the write fails we don't free it. 817 */ 818 if ((hp->bh_flags & BH_DIRTY) && mf_write(mfp, hp) == FAIL) 819 return NULL; 820 821 mf_rem_used(mfp, hp); 822 mf_rem_hash(mfp, hp); 823 824 /* 825 * If a bhdr_T is returned, make sure that the page_count of bh_data is 826 * right 827 */ 828 if (hp->bh_page_count != page_count) 829 { 830 vim_free(hp->bh_data); 831 if ((hp->bh_data = alloc(mfp->mf_page_size * page_count)) == NULL) 832 { 833 vim_free(hp); 834 return NULL; 835 } 836 hp->bh_page_count = page_count; 837 } 838 return hp; 839 } 840 841 /* 842 * release as many blocks as possible 843 * Used in case of out of memory 844 * 845 * return TRUE if any memory was released 846 */ 847 int 848 mf_release_all(void) 849 { 850 buf_T *buf; 851 memfile_T *mfp; 852 bhdr_T *hp; 853 int retval = FALSE; 854 855 FOR_ALL_BUFFERS(buf) 856 { 857 mfp = buf->b_ml.ml_mfp; 858 if (mfp != NULL) 859 { 860 /* If no swap file yet, may open one */ 861 if (mfp->mf_fd < 0 && buf->b_may_swap) 862 ml_open_file(buf); 863 864 /* only if there is a swapfile */ 865 if (mfp->mf_fd >= 0) 866 { 867 for (hp = mfp->mf_used_last; hp != NULL; ) 868 { 869 if (!(hp->bh_flags & BH_LOCKED) 870 && (!(hp->bh_flags & BH_DIRTY) 871 || mf_write(mfp, hp) != FAIL)) 872 { 873 mf_rem_used(mfp, hp); 874 mf_rem_hash(mfp, hp); 875 mf_free_bhdr(hp); 876 hp = mfp->mf_used_last; /* re-start, list was changed */ 877 retval = TRUE; 878 } 879 else 880 hp = hp->bh_prev; 881 } 882 } 883 } 884 } 885 return retval; 886 } 887 888 /* 889 * Allocate a block header and a block of memory for it 890 */ 891 static bhdr_T * 892 mf_alloc_bhdr(memfile_T *mfp, int page_count) 893 { 894 bhdr_T *hp; 895 896 if ((hp = (bhdr_T *)alloc((unsigned)sizeof(bhdr_T))) != NULL) 897 { 898 if ((hp->bh_data = (char_u *)alloc(mfp->mf_page_size * page_count)) 899 == NULL) 900 { 901 vim_free(hp); /* not enough memory */ 902 return NULL; 903 } 904 hp->bh_page_count = page_count; 905 } 906 return hp; 907 } 908 909 /* 910 * Free a block header and the block of memory for it 911 */ 912 static void 913 mf_free_bhdr(bhdr_T *hp) 914 { 915 vim_free(hp->bh_data); 916 vim_free(hp); 917 } 918 919 /* 920 * insert entry *hp in the free list 921 */ 922 static void 923 mf_ins_free(memfile_T *mfp, bhdr_T *hp) 924 { 925 hp->bh_next = mfp->mf_free_first; 926 mfp->mf_free_first = hp; 927 } 928 929 /* 930 * remove the first entry from the free list and return a pointer to it 931 * Note: caller must check that mfp->mf_free_first is not NULL! 932 */ 933 static bhdr_T * 934 mf_rem_free(memfile_T *mfp) 935 { 936 bhdr_T *hp; 937 938 hp = mfp->mf_free_first; 939 mfp->mf_free_first = hp->bh_next; 940 return hp; 941 } 942 943 /* 944 * read a block from disk 945 * 946 * Return FAIL for failure, OK otherwise 947 */ 948 static int 949 mf_read(memfile_T *mfp, bhdr_T *hp) 950 { 951 off_T offset; 952 unsigned page_size; 953 unsigned size; 954 955 if (mfp->mf_fd < 0) /* there is no file, can't read */ 956 return FAIL; 957 958 page_size = mfp->mf_page_size; 959 offset = (off_T)page_size * hp->bh_bnum; 960 size = page_size * hp->bh_page_count; 961 if (vim_lseek(mfp->mf_fd, offset, SEEK_SET) != offset) 962 { 963 PERROR(_("E294: Seek error in swap file read")); 964 return FAIL; 965 } 966 if ((unsigned)read_eintr(mfp->mf_fd, hp->bh_data, size) != size) 967 { 968 PERROR(_("E295: Read error in swap file")); 969 return FAIL; 970 } 971 972 #ifdef FEAT_CRYPT 973 /* Decrypt if 'key' is set and this is a data block. And when changing the 974 * key. */ 975 if (*mfp->mf_buffer->b_p_key != NUL || mfp->mf_old_key != NULL) 976 ml_decrypt_data(mfp, hp->bh_data, offset, size); 977 #endif 978 979 return OK; 980 } 981 982 /* 983 * write a block to disk 984 * 985 * Return FAIL for failure, OK otherwise 986 */ 987 static int 988 mf_write(memfile_T *mfp, bhdr_T *hp) 989 { 990 off_T offset; /* offset in the file */ 991 blocknr_T nr; /* block nr which is being written */ 992 bhdr_T *hp2; 993 unsigned page_size; /* number of bytes in a page */ 994 unsigned page_count; /* number of pages written */ 995 unsigned size; /* number of bytes written */ 996 997 if (mfp->mf_fd < 0) /* there is no file, can't write */ 998 return FAIL; 999 1000 if (hp->bh_bnum < 0) /* must assign file block number */ 1001 if (mf_trans_add(mfp, hp) == FAIL) 1002 return FAIL; 1003 1004 page_size = mfp->mf_page_size; 1005 1006 /* 1007 * We don't want gaps in the file. Write the blocks in front of *hp 1008 * to extend the file. 1009 * If block 'mf_infile_count' is not in the hash list, it has been 1010 * freed. Fill the space in the file with data from the current block. 1011 */ 1012 for (;;) 1013 { 1014 nr = hp->bh_bnum; 1015 if (nr > mfp->mf_infile_count) /* beyond end of file */ 1016 { 1017 nr = mfp->mf_infile_count; 1018 hp2 = mf_find_hash(mfp, nr); /* NULL caught below */ 1019 } 1020 else 1021 hp2 = hp; 1022 1023 offset = (off_T)page_size * nr; 1024 if (vim_lseek(mfp->mf_fd, offset, SEEK_SET) != offset) 1025 { 1026 PERROR(_("E296: Seek error in swap file write")); 1027 return FAIL; 1028 } 1029 if (hp2 == NULL) /* freed block, fill with dummy data */ 1030 page_count = 1; 1031 else 1032 page_count = hp2->bh_page_count; 1033 size = page_size * page_count; 1034 if (mf_write_block(mfp, hp2 == NULL ? hp : hp2, offset, size) == FAIL) 1035 { 1036 /* 1037 * Avoid repeating the error message, this mostly happens when the 1038 * disk is full. We give the message again only after a successful 1039 * write or when hitting a key. We keep on trying, in case some 1040 * space becomes available. 1041 */ 1042 if (!did_swapwrite_msg) 1043 emsg(_("E297: Write error in swap file")); 1044 did_swapwrite_msg = TRUE; 1045 return FAIL; 1046 } 1047 did_swapwrite_msg = FALSE; 1048 if (hp2 != NULL) /* written a non-dummy block */ 1049 hp2->bh_flags &= ~BH_DIRTY; 1050 /* appended to the file */ 1051 if (nr + (blocknr_T)page_count > mfp->mf_infile_count) 1052 mfp->mf_infile_count = nr + page_count; 1053 if (nr == hp->bh_bnum) /* written the desired block */ 1054 break; 1055 } 1056 return OK; 1057 } 1058 1059 /* 1060 * Write block "hp" with data size "size" to file "mfp->mf_fd". 1061 * Takes care of encryption. 1062 * Return FAIL or OK. 1063 */ 1064 static int 1065 mf_write_block( 1066 memfile_T *mfp, 1067 bhdr_T *hp, 1068 off_T offset UNUSED, 1069 unsigned size) 1070 { 1071 char_u *data = hp->bh_data; 1072 int result = OK; 1073 1074 #ifdef FEAT_CRYPT 1075 /* Encrypt if 'key' is set and this is a data block. */ 1076 if (*mfp->mf_buffer->b_p_key != NUL) 1077 { 1078 data = ml_encrypt_data(mfp, data, offset, size); 1079 if (data == NULL) 1080 return FAIL; 1081 } 1082 #endif 1083 1084 if ((unsigned)write_eintr(mfp->mf_fd, data, size) != size) 1085 result = FAIL; 1086 1087 #ifdef FEAT_CRYPT 1088 if (data != hp->bh_data) 1089 vim_free(data); 1090 #endif 1091 1092 return result; 1093 } 1094 1095 /* 1096 * Make block number for *hp positive and add it to the translation list 1097 * 1098 * Return FAIL for failure, OK otherwise 1099 */ 1100 static int 1101 mf_trans_add(memfile_T *mfp, bhdr_T *hp) 1102 { 1103 bhdr_T *freep; 1104 blocknr_T new_bnum; 1105 NR_TRANS *np; 1106 int page_count; 1107 1108 if (hp->bh_bnum >= 0) /* it's already positive */ 1109 return OK; 1110 1111 if ((np = (NR_TRANS *)alloc((unsigned)sizeof(NR_TRANS))) == NULL) 1112 return FAIL; 1113 1114 /* 1115 * Get a new number for the block. 1116 * If the first item in the free list has sufficient pages, use its number 1117 * Otherwise use mf_blocknr_max. 1118 */ 1119 freep = mfp->mf_free_first; 1120 page_count = hp->bh_page_count; 1121 if (freep != NULL && freep->bh_page_count >= page_count) 1122 { 1123 new_bnum = freep->bh_bnum; 1124 /* 1125 * If the page count of the free block was larger, reduce it. 1126 * If the page count matches, remove the block from the free list 1127 */ 1128 if (freep->bh_page_count > page_count) 1129 { 1130 freep->bh_bnum += page_count; 1131 freep->bh_page_count -= page_count; 1132 } 1133 else 1134 { 1135 freep = mf_rem_free(mfp); 1136 vim_free(freep); 1137 } 1138 } 1139 else 1140 { 1141 new_bnum = mfp->mf_blocknr_max; 1142 mfp->mf_blocknr_max += page_count; 1143 } 1144 1145 np->nt_old_bnum = hp->bh_bnum; /* adjust number */ 1146 np->nt_new_bnum = new_bnum; 1147 1148 mf_rem_hash(mfp, hp); /* remove from old hash list */ 1149 hp->bh_bnum = new_bnum; 1150 mf_ins_hash(mfp, hp); /* insert in new hash list */ 1151 1152 /* Insert "np" into "mf_trans" hashtable with key "np->nt_old_bnum" */ 1153 mf_hash_add_item(&mfp->mf_trans, (mf_hashitem_T *)np); 1154 1155 return OK; 1156 } 1157 1158 /* 1159 * Lookup a translation from the trans lists and delete the entry. 1160 * 1161 * Return the positive new number when found, the old number when not found 1162 */ 1163 blocknr_T 1164 mf_trans_del(memfile_T *mfp, blocknr_T old_nr) 1165 { 1166 NR_TRANS *np; 1167 blocknr_T new_bnum; 1168 1169 np = (NR_TRANS *)mf_hash_find(&mfp->mf_trans, old_nr); 1170 1171 if (np == NULL) /* not found */ 1172 return old_nr; 1173 1174 mfp->mf_neg_count--; 1175 new_bnum = np->nt_new_bnum; 1176 1177 /* remove entry from the trans list */ 1178 mf_hash_rem_item(&mfp->mf_trans, (mf_hashitem_T *)np); 1179 1180 vim_free(np); 1181 1182 return new_bnum; 1183 } 1184 1185 /* 1186 * Set mfp->mf_ffname according to mfp->mf_fname and some other things. 1187 * Only called when creating or renaming the swapfile. Either way it's a new 1188 * name so we must work out the full path name. 1189 */ 1190 void 1191 mf_set_ffname(memfile_T *mfp) 1192 { 1193 mfp->mf_ffname = FullName_save(mfp->mf_fname, FALSE); 1194 } 1195 1196 /* 1197 * Make the name of the file used for the memfile a full path. 1198 * Used before doing a :cd 1199 */ 1200 void 1201 mf_fullname(memfile_T *mfp) 1202 { 1203 if (mfp != NULL && mfp->mf_fname != NULL && mfp->mf_ffname != NULL) 1204 { 1205 vim_free(mfp->mf_fname); 1206 mfp->mf_fname = mfp->mf_ffname; 1207 mfp->mf_ffname = NULL; 1208 } 1209 } 1210 1211 /* 1212 * return TRUE if there are any translations pending for 'mfp' 1213 */ 1214 int 1215 mf_need_trans(memfile_T *mfp) 1216 { 1217 return (mfp->mf_fname != NULL && mfp->mf_neg_count > 0); 1218 } 1219 1220 /* 1221 * Open a swap file for a memfile. 1222 * The "fname" must be in allocated memory, and is consumed (also when an 1223 * error occurs). 1224 */ 1225 static void 1226 mf_do_open( 1227 memfile_T *mfp, 1228 char_u *fname, 1229 int flags) /* flags for open() */ 1230 { 1231 #ifdef HAVE_LSTAT 1232 stat_T sb; 1233 #endif 1234 1235 mfp->mf_fname = fname; 1236 1237 /* 1238 * Get the full path name before the open, because this is 1239 * not possible after the open on the Amiga. 1240 * fname cannot be NameBuff, because it must have been allocated. 1241 */ 1242 mf_set_ffname(mfp); 1243 #if defined(MSWIN) 1244 /* 1245 * A ":!cd e:xxx" may change the directory without us knowing, use the 1246 * full pathname always. Careful: This frees fname! 1247 */ 1248 mf_fullname(mfp); 1249 #endif 1250 1251 #ifdef HAVE_LSTAT 1252 /* 1253 * Extra security check: When creating a swap file it really shouldn't 1254 * exist yet. If there is a symbolic link, this is most likely an attack. 1255 */ 1256 if ((flags & O_CREAT) && mch_lstat((char *)mfp->mf_fname, &sb) >= 0) 1257 { 1258 mfp->mf_fd = -1; 1259 emsg(_("E300: Swap file already exists (symlink attack?)")); 1260 } 1261 else 1262 #endif 1263 { 1264 /* 1265 * try to open the file 1266 */ 1267 flags |= O_EXTRA | O_NOFOLLOW; 1268 #ifdef MSWIN 1269 /* Prevent handle inheritance that cause problems with Cscope 1270 * (swap file may not be deleted if cscope connection was open after 1271 * the file) */ 1272 flags |= O_NOINHERIT; 1273 #endif 1274 mfp->mf_fd = mch_open_rw((char *)mfp->mf_fname, flags); 1275 } 1276 1277 /* 1278 * If the file cannot be opened, use memory only 1279 */ 1280 if (mfp->mf_fd < 0) 1281 { 1282 VIM_CLEAR(mfp->mf_fname); 1283 VIM_CLEAR(mfp->mf_ffname); 1284 } 1285 else 1286 { 1287 #ifdef HAVE_FD_CLOEXEC 1288 int fdflags = fcntl(mfp->mf_fd, F_GETFD); 1289 if (fdflags >= 0 && (fdflags & FD_CLOEXEC) == 0) 1290 (void)fcntl(mfp->mf_fd, F_SETFD, fdflags | FD_CLOEXEC); 1291 #endif 1292 #if defined(HAVE_SELINUX) || defined(HAVE_SMACK) 1293 mch_copy_sec(fname, mfp->mf_fname); 1294 #endif 1295 mch_hide(mfp->mf_fname); /* try setting the 'hidden' flag */ 1296 } 1297 } 1298 1299 /* 1300 * Implementation of mf_hashtab_T follows. 1301 */ 1302 1303 /* 1304 * The number of buckets in the hashtable is increased by a factor of 1305 * MHT_GROWTH_FACTOR when the average number of items per bucket 1306 * exceeds 2 ^ MHT_LOG_LOAD_FACTOR. 1307 */ 1308 #define MHT_LOG_LOAD_FACTOR 6 1309 #define MHT_GROWTH_FACTOR 2 /* must be a power of two */ 1310 1311 /* 1312 * Initialize an empty hash table. 1313 */ 1314 static void 1315 mf_hash_init(mf_hashtab_T *mht) 1316 { 1317 vim_memset(mht, 0, sizeof(mf_hashtab_T)); 1318 mht->mht_buckets = mht->mht_small_buckets; 1319 mht->mht_mask = MHT_INIT_SIZE - 1; 1320 } 1321 1322 /* 1323 * Free the array of a hash table. Does not free the items it contains! 1324 * The hash table must not be used again without another mf_hash_init() call. 1325 */ 1326 static void 1327 mf_hash_free(mf_hashtab_T *mht) 1328 { 1329 if (mht->mht_buckets != mht->mht_small_buckets) 1330 vim_free(mht->mht_buckets); 1331 } 1332 1333 /* 1334 * Free the array of a hash table and all the items it contains. 1335 */ 1336 static void 1337 mf_hash_free_all(mf_hashtab_T *mht) 1338 { 1339 long_u idx; 1340 mf_hashitem_T *mhi; 1341 mf_hashitem_T *next; 1342 1343 for (idx = 0; idx <= mht->mht_mask; idx++) 1344 for (mhi = mht->mht_buckets[idx]; mhi != NULL; mhi = next) 1345 { 1346 next = mhi->mhi_next; 1347 vim_free(mhi); 1348 } 1349 1350 mf_hash_free(mht); 1351 } 1352 1353 /* 1354 * Find "key" in hashtable "mht". 1355 * Returns a pointer to a mf_hashitem_T or NULL if the item was not found. 1356 */ 1357 static mf_hashitem_T * 1358 mf_hash_find(mf_hashtab_T *mht, blocknr_T key) 1359 { 1360 mf_hashitem_T *mhi; 1361 1362 mhi = mht->mht_buckets[key & mht->mht_mask]; 1363 while (mhi != NULL && mhi->mhi_key != key) 1364 mhi = mhi->mhi_next; 1365 1366 return mhi; 1367 } 1368 1369 /* 1370 * Add item "mhi" to hashtable "mht". 1371 * "mhi" must not be NULL. 1372 */ 1373 static void 1374 mf_hash_add_item(mf_hashtab_T *mht, mf_hashitem_T *mhi) 1375 { 1376 long_u idx; 1377 1378 idx = mhi->mhi_key & mht->mht_mask; 1379 mhi->mhi_next = mht->mht_buckets[idx]; 1380 mhi->mhi_prev = NULL; 1381 if (mhi->mhi_next != NULL) 1382 mhi->mhi_next->mhi_prev = mhi; 1383 mht->mht_buckets[idx] = mhi; 1384 1385 mht->mht_count++; 1386 1387 /* 1388 * Grow hashtable when we have more thank 2^MHT_LOG_LOAD_FACTOR 1389 * items per bucket on average 1390 */ 1391 if (mht->mht_fixed == 0 1392 && (mht->mht_count >> MHT_LOG_LOAD_FACTOR) > mht->mht_mask) 1393 { 1394 if (mf_hash_grow(mht) == FAIL) 1395 { 1396 /* stop trying to grow after first failure to allocate memory */ 1397 mht->mht_fixed = 1; 1398 } 1399 } 1400 } 1401 1402 /* 1403 * Remove item "mhi" from hashtable "mht". 1404 * "mhi" must not be NULL and must have been inserted into "mht". 1405 */ 1406 static void 1407 mf_hash_rem_item(mf_hashtab_T *mht, mf_hashitem_T *mhi) 1408 { 1409 if (mhi->mhi_prev == NULL) 1410 mht->mht_buckets[mhi->mhi_key & mht->mht_mask] = mhi->mhi_next; 1411 else 1412 mhi->mhi_prev->mhi_next = mhi->mhi_next; 1413 1414 if (mhi->mhi_next != NULL) 1415 mhi->mhi_next->mhi_prev = mhi->mhi_prev; 1416 1417 mht->mht_count--; 1418 1419 /* We could shrink the table here, but it typically takes little memory, 1420 * so why bother? */ 1421 } 1422 1423 /* 1424 * Increase number of buckets in the hashtable by MHT_GROWTH_FACTOR and 1425 * rehash items. 1426 * Returns FAIL when out of memory. 1427 */ 1428 static int 1429 mf_hash_grow(mf_hashtab_T *mht) 1430 { 1431 long_u i, j; 1432 int shift; 1433 mf_hashitem_T *mhi; 1434 mf_hashitem_T *tails[MHT_GROWTH_FACTOR]; 1435 mf_hashitem_T **buckets; 1436 size_t size; 1437 1438 size = (mht->mht_mask + 1) * MHT_GROWTH_FACTOR * sizeof(void *); 1439 buckets = (mf_hashitem_T **)lalloc_clear(size, FALSE); 1440 if (buckets == NULL) 1441 return FAIL; 1442 1443 shift = 0; 1444 while ((mht->mht_mask >> shift) != 0) 1445 shift++; 1446 1447 for (i = 0; i <= mht->mht_mask; i++) 1448 { 1449 /* 1450 * Traverse the items in the i-th original bucket and move them into 1451 * MHT_GROWTH_FACTOR new buckets, preserving their relative order 1452 * within each new bucket. Preserving the order is important because 1453 * mf_get() tries to keep most recently used items at the front of 1454 * each bucket. 1455 * 1456 * Here we strongly rely on the fact the hashes are computed modulo 1457 * a power of two. 1458 */ 1459 1460 vim_memset(tails, 0, sizeof(tails)); 1461 1462 for (mhi = mht->mht_buckets[i]; mhi != NULL; mhi = mhi->mhi_next) 1463 { 1464 j = (mhi->mhi_key >> shift) & (MHT_GROWTH_FACTOR - 1); 1465 if (tails[j] == NULL) 1466 { 1467 buckets[i + (j << shift)] = mhi; 1468 tails[j] = mhi; 1469 mhi->mhi_prev = NULL; 1470 } 1471 else 1472 { 1473 tails[j]->mhi_next = mhi; 1474 mhi->mhi_prev = tails[j]; 1475 tails[j] = mhi; 1476 } 1477 } 1478 1479 for (j = 0; j < MHT_GROWTH_FACTOR; j++) 1480 if (tails[j] != NULL) 1481 tails[j]->mhi_next = NULL; 1482 } 1483 1484 if (mht->mht_buckets != mht->mht_small_buckets) 1485 vim_free(mht->mht_buckets); 1486 1487 mht->mht_buckets = buckets; 1488 mht->mht_mask = (mht->mht_mask + 1) * MHT_GROWTH_FACTOR - 1; 1489 1490 return OK; 1491 } 1492