Mercurial > hg > xemacs-beta
annotate src/search.c @ 5676:dede3f658f8e
Sanity check package roots in configure.
| author | Stephen J. Turnbull <stephen@xemacs.org> |
|---|---|
| date | Sat, 04 Aug 2012 23:26:26 +0900 |
| parents | 6e5a7278f9bf |
| children |
| rev | line source |
|---|---|
| 428 | 1 /* String search routines for XEmacs. |
| 2 Copyright (C) 1985, 1986, 1987, 1992-1995 Free Software Foundation, Inc. | |
| 3 Copyright (C) 1995 Sun Microsystems, Inc. | |
| 5041 | 4 Copyright (C) 2001, 2002, 2010 Ben Wing. |
| 428 | 5 |
| 6 This file is part of XEmacs. | |
| 7 | |
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8 XEmacs is free software: you can redistribute it and/or modify it |
| 428 | 9 under the terms of the GNU General Public License as published by the |
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10 Free Software Foundation, either version 3 of the License, or (at your |
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11 option) any later version. |
| 428 | 12 |
| 13 XEmacs is distributed in the hope that it will be useful, but WITHOUT | |
| 14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
| 15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
| 16 for more details. | |
| 17 | |
| 18 You should have received a copy of the GNU General Public License | |
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19 along with XEmacs. If not, see <http://www.gnu.org/licenses/>. */ |
| 428 | 20 |
| 21 /* Synched up with: FSF 19.29, except for region-cache stuff. */ | |
| 22 | |
| 23 /* Hacked on for Mule by Ben Wing, December 1994 and August 1995. */ | |
| 24 | |
| 826 | 25 /* This file has been Mule-ized. */ |
| 428 | 26 |
| 27 #include <config.h> | |
| 28 #include "lisp.h" | |
| 29 | |
| 30 #include "buffer.h" | |
| 31 #include "insdel.h" | |
| 32 #include "opaque.h" | |
| 33 #ifdef REGION_CACHE_NEEDS_WORK | |
| 34 #include "region-cache.h" | |
| 35 #endif | |
| 36 #include "syntax.h" | |
| 37 | |
| 38 #include <sys/types.h> | |
| 39 #include "regex.h" | |
| 446 | 40 #include "casetab.h" |
| 41 #include "chartab.h" | |
| 42 | |
| 43 #define TRANSLATE(table, pos) \ | |
| 867 | 44 (!NILP (table) ? TRT_TABLE_OF (table, (Ichar) pos) : pos) |
| 428 | 45 |
| 46 #define REGEXP_CACHE_SIZE 20 | |
| 47 | |
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48 #ifdef DEBUG_XEMACS |
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49 |
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50 /* Used in tests/automated/case-tests.el if available. */ |
| 5041 | 51 Fixnum debug_searches; |
| 52 | |
| 53 /* Declare as int rather than Bitflags because it's used by regex.c, which | |
| 54 may be used outside of XEmacs (e.g. etags.c). */ | |
| 55 int debug_regexps; | |
| 56 Lisp_Object Vdebug_regexps; | |
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57 |
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58 Lisp_Object Qsearch_algorithm_used, Qboyer_moore, Qsimple_search; |
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59 |
| 5041 | 60 Lisp_Object Qcompilation, Qfailure_point, Qmatching; |
| 61 | |
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62 #endif |
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63 |
| 428 | 64 /* If the regexp is non-nil, then the buffer contains the compiled form |
| 65 of that regexp, suitable for searching. */ | |
| 446 | 66 struct regexp_cache |
| 67 { | |
| 428 | 68 struct regexp_cache *next; |
| 69 Lisp_Object regexp; | |
| 70 struct re_pattern_buffer buf; | |
| 71 char fastmap[0400]; | |
| 72 /* Nonzero means regexp was compiled to do full POSIX backtracking. */ | |
| 73 char posix; | |
| 74 }; | |
| 75 | |
| 76 /* The instances of that struct. */ | |
| 77 static struct regexp_cache searchbufs[REGEXP_CACHE_SIZE]; | |
| 78 | |
| 79 /* The head of the linked list; points to the most recently used buffer. */ | |
| 80 static struct regexp_cache *searchbuf_head; | |
| 81 | |
| 82 | |
| 83 /* Every call to re_match, etc., must pass &search_regs as the regs | |
| 84 argument unless you can show it is unnecessary (i.e., if re_match | |
| 85 is certainly going to be called again before region-around-match | |
| 86 can be called). | |
| 87 | |
| 88 Since the registers are now dynamically allocated, we need to make | |
| 89 sure not to refer to the Nth register before checking that it has | |
| 90 been allocated by checking search_regs.num_regs. | |
| 91 | |
| 92 The regex code keeps track of whether it has allocated the search | |
| 93 buffer using bits in the re_pattern_buffer. This means that whenever | |
| 94 you compile a new pattern, it completely forgets whether it has | |
| 95 allocated any registers, and will allocate new registers the next | |
| 96 time you call a searching or matching function. Therefore, we need | |
| 97 to call re_set_registers after compiling a new pattern or after | |
| 98 setting the match registers, so that the regex functions will be | |
| 99 able to free or re-allocate it properly. */ | |
| 100 | |
| 101 /* Note: things get trickier under Mule because the values returned from | |
| 826 | 102 the regexp routines are in Bytebpos's but we need them to be in Charbpos's. |
| 428 | 103 We take the easy way out for the moment and just convert them immediately. |
| 104 We could be more clever by not converting them until necessary, but | |
| 105 that gets real ugly real fast since the buffer might have changed and | |
| 106 the positions might be out of sync or out of range. | |
| 107 */ | |
| 108 static struct re_registers search_regs; | |
| 109 | |
| 1468 | 110 /* Every function that sets the match data _must_ clear unused search |
| 111 registers on success. An unsuccessful search or match _must_ preserve | |
| 112 the search registers. The traditional documentation implied that | |
| 113 any match operation might trash the registers, but in fact failures | |
| 114 have always preserved the match data (in GNU Emacs as well). Some | |
| 115 plausible code depends on this behavior (cf. `w3-configuration-data' | |
| 116 in library "w3-cfg"). | |
| 117 | |
| 118 Ordinary string searchs use set_search_regs to set the whole-string | |
| 119 match. That function takes care of clearing the unused subexpression | |
| 1425 | 120 registers. |
| 121 */ | |
| 122 static void set_search_regs (struct buffer *buf, Charbpos beg, Charcount len); | |
| 1468 | 123 static void clear_search_regs (void); |
| 1425 | 124 |
| 428 | 125 /* The buffer in which the last search was performed, or |
| 126 Qt if the last search was done in a string; | |
| 127 Qnil if no searching has been done yet. */ | |
| 128 static Lisp_Object last_thing_searched; | |
| 129 | |
| 130 /* error condition signalled when regexp compile_pattern fails */ | |
| 131 | |
| 132 Lisp_Object Qinvalid_regexp; | |
| 133 | |
| 134 /* Regular expressions used in forward/backward-word */ | |
| 135 Lisp_Object Vforward_word_regexp, Vbackward_word_regexp; | |
| 136 | |
| 507 | 137 Fixnum warn_about_possibly_incompatible_back_references; |
| 502 | 138 |
| 428 | 139 /* range table for use with skip_chars. Only needed for Mule. */ |
| 140 Lisp_Object Vskip_chars_range_table; | |
| 141 | |
| 867 | 142 static Charbpos simple_search (struct buffer *buf, Ibyte *base_pat, |
| 826 | 143 Bytecount len, Bytebpos pos, Bytebpos lim, |
| 144 EMACS_INT n, Lisp_Object trt); | |
| 867 | 145 static Charbpos boyer_moore (struct buffer *buf, Ibyte *base_pat, |
| 826 | 146 Bytecount len, Bytebpos pos, Bytebpos lim, |
| 147 EMACS_INT n, Lisp_Object trt, | |
| 148 Lisp_Object inverse_trt, int charset_base); | |
| 665 | 149 static Charbpos search_buffer (struct buffer *buf, Lisp_Object str, |
| 826 | 150 Charbpos charbpos, Charbpos buflim, EMACS_INT n, |
| 151 int RE, Lisp_Object trt, | |
| 152 Lisp_Object inverse_trt, int posix); | |
| 771 | 153 |
| 2268 | 154 static DECLARE_DOESNT_RETURN (matcher_overflow (void)); |
| 155 | |
| 156 static DOESNT_RETURN | |
| 157 matcher_overflow () | |
| 428 | 158 { |
| 563 | 159 stack_overflow ("Stack overflow in regexp matcher", Qunbound); |
| 428 | 160 } |
| 161 | |
| 162 /* Compile a regexp and signal a Lisp error if anything goes wrong. | |
| 163 PATTERN is the pattern to compile. | |
| 164 CP is the place to put the result. | |
| 826 | 165 TRANSLATE is a translation table for ignoring case, or Qnil for none. |
| 428 | 166 REGP is the structure that says where to store the "register" |
| 167 values that will result from matching this pattern. | |
| 168 If it is 0, we should compile the pattern not to record any | |
| 169 subexpression bounds. | |
| 170 POSIX is nonzero if we want full backtracking (POSIX style) | |
| 171 for this pattern. 0 means backtrack only enough to get a valid match. */ | |
| 172 | |
| 173 static int | |
| 174 compile_pattern_1 (struct regexp_cache *cp, Lisp_Object pattern, | |
| 2286 | 175 struct re_registers *UNUSED (regp), Lisp_Object translate, |
| 826 | 176 int posix, Error_Behavior errb) |
| 428 | 177 { |
| 442 | 178 const char *val; |
| 428 | 179 reg_syntax_t old; |
| 180 | |
| 181 cp->regexp = Qnil; | |
| 182 cp->buf.translate = translate; | |
| 183 cp->posix = posix; | |
| 184 old = re_set_syntax (RE_SYNTAX_EMACS | |
| 185 | (posix ? 0 : RE_NO_POSIX_BACKTRACKING)); | |
| 442 | 186 val = (const char *) |
| 428 | 187 re_compile_pattern ((char *) XSTRING_DATA (pattern), |
| 188 XSTRING_LENGTH (pattern), &cp->buf); | |
| 189 re_set_syntax (old); | |
| 190 if (val) | |
| 191 { | |
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192 maybe_signal_error (Qinvalid_regexp, 0, build_cistring (val), |
| 428 | 193 Qsearch, errb); |
| 194 return 0; | |
| 195 } | |
| 196 | |
| 197 cp->regexp = Fcopy_sequence (pattern); | |
| 198 return 1; | |
| 199 } | |
| 200 | |
| 201 /* Compile a regexp if necessary, but first check to see if there's one in | |
| 202 the cache. | |
| 203 PATTERN is the pattern to compile. | |
| 826 | 204 TRANSLATE is a translation table for ignoring case, or Qnil for none. |
| 428 | 205 REGP is the structure that says where to store the "register" |
| 206 values that will result from matching this pattern. | |
| 207 If it is 0, we should compile the pattern not to record any | |
| 208 subexpression bounds. | |
| 209 POSIX is nonzero if we want full backtracking (POSIX style) | |
| 210 for this pattern. 0 means backtrack only enough to get a valid match. */ | |
| 211 | |
| 212 struct re_pattern_buffer * | |
| 213 compile_pattern (Lisp_Object pattern, struct re_registers *regp, | |
| 2286 | 214 Lisp_Object translate, Lisp_Object UNUSED (searchobj), |
| 215 struct buffer *UNUSED (searchbuf), int posix, | |
| 216 Error_Behavior errb) | |
| 428 | 217 { |
| 218 struct regexp_cache *cp, **cpp; | |
| 219 | |
| 220 for (cpp = &searchbuf_head; ; cpp = &cp->next) | |
| 221 { | |
| 222 cp = *cpp; | |
| 826 | 223 /* &&#### once we fix up the fastmap code in regex.c for 8-bit-fixed, |
| 224 we need to record and compare the buffer and format, since the | |
| 225 fastmap will reflect the state of the buffer -- and things get | |
| 226 more complicated if the buffer has changed formats or (esp.) has | |
| 227 kept the format but changed its interpretation! may need to have | |
| 228 the code that changes the interpretation go through and invalidate | |
| 229 cache entries for that buffer. */ | |
| 428 | 230 if (!NILP (Fstring_equal (cp->regexp, pattern)) |
| 446 | 231 && EQ (cp->buf.translate, translate) |
| 428 | 232 && cp->posix == posix) |
| 233 break; | |
| 234 | |
| 235 /* If we're at the end of the cache, compile into the last cell. */ | |
| 236 if (cp->next == 0) | |
| 237 { | |
| 826 | 238 if (!compile_pattern_1 (cp, pattern, regp, translate, |
| 239 posix, errb)) | |
| 428 | 240 return 0; |
| 241 break; | |
| 242 } | |
| 243 } | |
| 244 | |
| 245 /* When we get here, cp (aka *cpp) contains the compiled pattern, | |
| 246 either because we found it in the cache or because we just compiled it. | |
| 247 Move it to the front of the queue to mark it as most recently used. */ | |
| 248 *cpp = cp->next; | |
| 249 cp->next = searchbuf_head; | |
| 250 searchbuf_head = cp; | |
| 251 | |
| 252 /* Advise the searching functions about the space we have allocated | |
| 253 for register data. */ | |
| 254 if (regp) | |
| 255 re_set_registers (&cp->buf, regp, regp->num_regs, regp->start, regp->end); | |
| 256 | |
| 257 return &cp->buf; | |
| 258 } | |
| 259 | |
| 260 /* Error condition used for failing searches */ | |
| 261 Lisp_Object Qsearch_failed; | |
| 262 | |
| 2268 | 263 static DECLARE_DOESNT_RETURN (signal_failure (Lisp_Object)); |
| 264 | |
| 265 static DOESNT_RETURN | |
| 428 | 266 signal_failure (Lisp_Object arg) |
| 267 { | |
| 446 | 268 for (;;) |
| 269 Fsignal (Qsearch_failed, list1 (arg)); | |
| 428 | 270 } |
| 271 | |
| 826 | 272 /* Convert the search registers from Bytebpos's to Charbpos's. Needs to be |
| 428 | 273 done after each regexp match that uses the search regs. |
| 274 | |
| 275 We could get a potential speedup by not converting the search registers | |
| 276 until it's really necessary, e.g. when match-data or replace-match is | |
| 277 called. However, this complexifies the code a lot (e.g. the buffer | |
| 826 | 278 could have changed and the Bytebpos's stored might be invalid) and is |
| 428 | 279 probably not a great time-saver. */ |
| 280 | |
| 281 static void | |
| 282 fixup_search_regs_for_buffer (struct buffer *buf) | |
| 283 { | |
| 284 int i; | |
| 285 int num_regs = search_regs.num_regs; | |
| 286 | |
| 287 for (i = 0; i < num_regs; i++) | |
| 288 { | |
| 289 if (search_regs.start[i] >= 0) | |
| 826 | 290 search_regs.start[i] = bytebpos_to_charbpos (buf, |
| 291 search_regs.start[i]); | |
| 428 | 292 if (search_regs.end[i] >= 0) |
| 665 | 293 search_regs.end[i] = bytebpos_to_charbpos (buf, search_regs.end[i]); |
| 428 | 294 } |
| 295 } | |
| 296 | |
| 297 /* Similar but for strings. */ | |
| 298 static void | |
| 299 fixup_search_regs_for_string (Lisp_Object string) | |
| 300 { | |
| 301 int i; | |
| 302 int num_regs = search_regs.num_regs; | |
| 303 | |
| 304 /* #### bytecount_to_charcount() is not that efficient. This function | |
| 867 | 305 could be faster if it did its own conversion (using INC_IBYTEPTR() |
| 428 | 306 and such), because the register ends are likely to be somewhat ordered. |
| 307 (Even if not, you could sort them.) | |
| 308 | |
| 309 Think about this if this function is a time hog, which it's probably | |
| 310 not. */ | |
| 311 for (i = 0; i < num_regs; i++) | |
| 312 { | |
| 313 if (search_regs.start[i] > 0) | |
| 314 { | |
| 315 search_regs.start[i] = | |
| 793 | 316 string_index_byte_to_char (string, search_regs.start[i]); |
| 428 | 317 } |
| 318 if (search_regs.end[i] > 0) | |
| 319 { | |
| 320 search_regs.end[i] = | |
| 793 | 321 string_index_byte_to_char (string, search_regs.end[i]); |
| 428 | 322 } |
| 323 } | |
| 324 } | |
| 325 | |
| 326 | |
| 327 static Lisp_Object | |
| 328 looking_at_1 (Lisp_Object string, struct buffer *buf, int posix) | |
| 329 { | |
| 330 Lisp_Object val; | |
| 665 | 331 Bytebpos p1, p2; |
| 428 | 332 Bytecount s1, s2; |
| 333 REGISTER int i; | |
| 334 struct re_pattern_buffer *bufp; | |
| 826 | 335 struct syntax_cache scache_struct; |
| 336 struct syntax_cache *scache = &scache_struct; | |
| 337 | |
| 428 | 338 CHECK_STRING (string); |
| 339 bufp = compile_pattern (string, &search_regs, | |
| 340 (!NILP (buf->case_fold_search) | |
| 446 | 341 ? XCASE_TABLE_DOWNCASE (buf->case_table) : Qnil), |
| 826 | 342 wrap_buffer (buf), buf, posix, ERROR_ME); |
| 428 | 343 |
| 344 QUIT; | |
| 345 | |
| 346 /* Get pointers and sizes of the two strings | |
| 347 that make up the visible portion of the buffer. */ | |
| 348 | |
| 826 | 349 p1 = BYTE_BUF_BEGV (buf); |
| 350 p2 = BYTE_BUF_CEILING_OF (buf, p1); | |
| 428 | 351 s1 = p2 - p1; |
| 826 | 352 s2 = BYTE_BUF_ZV (buf) - p2; |
| 353 | |
| 354 /* By making the regex object, regex buffer, and syntax cache arguments | |
| 355 to re_{search,match}{,_2}, we've removed the need to do nasty things | |
| 356 to deal with regex reentrancy. (See stack trace in signal.c for proof | |
| 357 that this can happen.) | |
| 358 | |
| 359 #### there is still a potential problem with the regex cache -- | |
| 360 the compiled regex could be overwritten. we'd need 20-fold | |
| 361 reentrancy, though. Fix this. */ | |
| 362 | |
| 363 i = re_match_2 (bufp, (char *) BYTE_BUF_BYTE_ADDRESS (buf, p1), | |
| 364 s1, (char *) BYTE_BUF_BYTE_ADDRESS (buf, p2), s2, | |
| 365 BYTE_BUF_PT (buf) - BYTE_BUF_BEGV (buf), &search_regs, | |
| 366 BYTE_BUF_ZV (buf) - BYTE_BUF_BEGV (buf), wrap_buffer (buf), | |
| 367 buf, scache); | |
| 428 | 368 |
| 369 if (i == -2) | |
| 370 matcher_overflow (); | |
| 371 | |
| 372 val = (0 <= i ? Qt : Qnil); | |
| 373 if (NILP (val)) | |
| 826 | 374 return Qnil; |
| 428 | 375 { |
| 376 int num_regs = search_regs.num_regs; | |
| 377 for (i = 0; i < num_regs; i++) | |
| 378 if (search_regs.start[i] >= 0) | |
| 379 { | |
| 826 | 380 search_regs.start[i] += BYTE_BUF_BEGV (buf); |
| 381 search_regs.end[i] += BYTE_BUF_BEGV (buf); | |
| 428 | 382 } |
| 383 } | |
| 793 | 384 last_thing_searched = wrap_buffer (buf); |
| 428 | 385 fixup_search_regs_for_buffer (buf); |
| 826 | 386 return val; |
| 428 | 387 } |
| 388 | |
| 389 DEFUN ("looking-at", Flooking_at, 1, 2, 0, /* | |
| 390 Return t if text after point matches regular expression REGEXP. | |
| 1468 | 391 When the match is successful, this function modifies the match data |
| 392 that `match-beginning', `match-end' and `match-data' access; save the | |
| 393 match data with `match-data' and restore it with `store-match-data' if | |
| 394 you want to preserve them. If the match fails, the match data from the | |
| 395 previous success match is preserved. | |
| 428 | 396 |
| 397 Optional argument BUFFER defaults to the current buffer. | |
| 398 */ | |
| 399 (regexp, buffer)) | |
| 400 { | |
| 401 return looking_at_1 (regexp, decode_buffer (buffer, 0), 0); | |
| 402 } | |
| 403 | |
| 404 DEFUN ("posix-looking-at", Fposix_looking_at, 1, 2, 0, /* | |
| 405 Return t if text after point matches regular expression REGEXP. | |
| 406 Find the longest match, in accord with Posix regular expression rules. | |
| 1468 | 407 When the match is successful, this function modifies the match data |
| 408 that `match-beginning', `match-end' and `match-data' access; save the | |
| 409 match data with `match-data' and restore it with `store-match-data' if | |
| 410 you want to preserve them. If the match fails, the match data from the | |
| 411 previous success match is preserved. | |
| 428 | 412 |
| 413 Optional argument BUFFER defaults to the current buffer. | |
| 414 */ | |
| 415 (regexp, buffer)) | |
| 416 { | |
| 826 | 417 return looking_at_1 (regexp, decode_buffer (buffer, 0), 1); |
| 428 | 418 } |
| 419 | |
| 420 static Lisp_Object | |
| 421 string_match_1 (Lisp_Object regexp, Lisp_Object string, Lisp_Object start, | |
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422 struct buffer *buf, int posix) |
| 428 | 423 { |
| 424 Bytecount val; | |
| 425 Charcount s; | |
| 426 struct re_pattern_buffer *bufp; | |
| 427 | |
| 853 | 428 /* Some FSF junk with running_asynch_code, to preserve the match |
| 429 data. Not necessary because we don't call process filters | |
| 430 asynchronously (i.e. from within QUIT). */ | |
| 428 | 431 |
| 432 CHECK_STRING (regexp); | |
| 433 CHECK_STRING (string); | |
| 434 | |
| 435 if (NILP (start)) | |
| 436 s = 0; | |
| 437 else | |
| 438 { | |
| 826 | 439 Charcount len = string_char_length (string); |
| 428 | 440 |
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441 CHECK_FIXNUM (start); |
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442 s = XFIXNUM (start); |
| 428 | 443 if (s < 0 && -s <= len) |
| 444 s = len + s; | |
| 445 else if (0 > s || s > len) | |
| 446 args_out_of_range (string, start); | |
| 447 } | |
| 448 | |
| 449 | |
| 450 bufp = compile_pattern (regexp, &search_regs, | |
| 451 (!NILP (buf->case_fold_search) | |
| 446 | 452 ? XCASE_TABLE_DOWNCASE (buf->case_table) : Qnil), |
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453 string, buf, posix, ERROR_ME); |
| 428 | 454 QUIT; |
| 455 { | |
| 793 | 456 Bytecount bis = string_index_char_to_byte (string, s); |
| 826 | 457 struct syntax_cache scache_struct; |
| 458 struct syntax_cache *scache = &scache_struct; | |
| 459 | |
| 460 /* By making the regex object, regex buffer, and syntax cache arguments | |
| 461 to re_{search,match}{,_2}, we've removed the need to do nasty things | |
| 462 to deal with regex reentrancy. (See stack trace in signal.c for proof | |
| 463 that this can happen.) | |
| 464 | |
| 465 #### there is still a potential problem with the regex cache -- | |
| 466 the compiled regex could be overwritten. we'd need 20-fold | |
| 467 reentrancy, though. Fix this. */ | |
| 468 | |
| 428 | 469 val = re_search (bufp, (char *) XSTRING_DATA (string), |
| 470 XSTRING_LENGTH (string), bis, | |
| 471 XSTRING_LENGTH (string) - bis, | |
| 826 | 472 &search_regs, string, buf, scache); |
| 428 | 473 } |
| 474 if (val == -2) | |
| 475 matcher_overflow (); | |
| 826 | 476 if (val < 0) return Qnil; |
| 428 | 477 last_thing_searched = Qt; |
| 478 fixup_search_regs_for_string (string); | |
|
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diff
changeset
|
479 return make_fixnum (string_index_byte_to_char (string, val)); |
| 428 | 480 } |
| 481 | |
| 482 DEFUN ("string-match", Fstring_match, 2, 4, 0, /* | |
| 483 Return index of start of first match for REGEXP in STRING, or nil. | |
| 484 If third arg START is non-nil, start search at that index in STRING. | |
| 485 For index of first char beyond the match, do (match-end 0). | |
| 486 `match-end' and `match-beginning' also give indices of substrings | |
| 487 matched by parenthesis constructs in the pattern. | |
| 488 | |
| 826 | 489 Optional arg BUFFER controls how case folding and syntax and category |
| 490 lookup is done (according to the value of `case-fold-search' in that buffer | |
| 491 and that buffer's case tables, syntax tables, and category table). If nil | |
| 492 or unspecified, it defaults *NOT* to the current buffer but instead: | |
| 493 | |
| 494 -- the value of `case-fold-search' in the current buffer is still respected | |
| 495 because of idioms like | |
| 496 | |
| 497 (let ((case-fold-search nil)) | |
| 498 (string-match "^foo.*bar" string)) | |
| 499 | |
| 500 but the case, syntax, and category tables come from the standard tables, | |
| 1468 | 501 which are accessed through functions `default-{case,syntax,category}-table' |
| 502 and serve as the parents of the tables in particular buffer. | |
| 503 | |
| 504 When the match is successful, this function modifies the match data | |
| 505 that `match-beginning', `match-end' and `match-data' access; save the | |
| 506 match data with `match-data' and restore it with `store-match-data' if | |
| 507 you want to preserve them. If the match fails, the match data from the | |
| 508 previous success match is preserved. | |
| 428 | 509 */ |
| 510 (regexp, string, start, buffer)) | |
| 511 { | |
| 826 | 512 /* &&#### implement new interp for buffer arg; check code to see if it |
| 513 makes more sense than prev */ | |
| 428 | 514 return string_match_1 (regexp, string, start, decode_buffer (buffer, 0), 0); |
| 515 } | |
| 516 | |
| 517 DEFUN ("posix-string-match", Fposix_string_match, 2, 4, 0, /* | |
| 518 Return index of start of first match for REGEXP in STRING, or nil. | |
| 519 Find the longest match, in accord with Posix regular expression rules. | |
| 520 If third arg START is non-nil, start search at that index in STRING. | |
| 521 For index of first char beyond the match, do (match-end 0). | |
| 522 `match-end' and `match-beginning' also give indices of substrings | |
| 523 matched by parenthesis constructs in the pattern. | |
| 524 | |
| 525 Optional arg BUFFER controls how case folding is done (according to | |
| 526 the value of `case-fold-search' in that buffer and that buffer's case | |
| 527 tables) and defaults to the current buffer. | |
| 1468 | 528 |
| 529 When the match is successful, this function modifies the match data | |
| 530 that `match-beginning', `match-end' and `match-data' access; save the | |
| 531 match data with `match-data' and restore it with `store-match-data' if | |
| 532 you want to preserve them. If the match fails, the match data from the | |
| 533 previous success match is preserved. | |
| 428 | 534 */ |
| 535 (regexp, string, start, buffer)) | |
| 536 { | |
| 537 return string_match_1 (regexp, string, start, decode_buffer (buffer, 0), 1); | |
| 538 } | |
| 539 | |
| 540 /* Match REGEXP against STRING, searching all of STRING, | |
| 541 and return the index of the match, or negative on failure. | |
| 542 This does not clobber the match data. */ | |
| 543 | |
| 544 Bytecount | |
| 1347 | 545 fast_string_match (Lisp_Object regexp, const Ibyte *nonreloc, |
| 428 | 546 Lisp_Object reloc, Bytecount offset, |
| 547 Bytecount length, int case_fold_search, | |
| 578 | 548 Error_Behavior errb, int no_quit) |
| 428 | 549 { |
| 550 Bytecount val; | |
| 867 | 551 Ibyte *newnonreloc = (Ibyte *) nonreloc; |
| 428 | 552 struct re_pattern_buffer *bufp; |
| 826 | 553 struct syntax_cache scache_struct; |
| 554 struct syntax_cache *scache = &scache_struct; | |
| 428 | 555 |
| 556 bufp = compile_pattern (regexp, 0, | |
| 557 (case_fold_search | |
| 771 | 558 ? XCASE_TABLE_DOWNCASE (Vstandard_case_table) |
| 446 | 559 : Qnil), |
| 826 | 560 reloc, 0, 0, errb); |
| 428 | 561 if (!bufp) |
| 562 return -1; /* will only do this when errb != ERROR_ME */ | |
| 563 if (!no_quit) | |
| 564 QUIT; | |
| 565 else | |
| 566 no_quit_in_re_search = 1; | |
| 567 | |
| 568 fixup_internal_substring (nonreloc, reloc, offset, &length); | |
| 569 | |
| 771 | 570 /* Don't need to protect against GC inside of re_search() due to QUIT; |
| 571 QUIT is GC-inhibited. */ | |
| 428 | 572 if (!NILP (reloc)) |
| 771 | 573 newnonreloc = XSTRING_DATA (reloc); |
| 574 | |
| 826 | 575 /* By making the regex object, regex buffer, and syntax cache arguments |
| 576 to re_{search,match}{,_2}, we've removed the need to do nasty things | |
| 577 to deal with regex reentrancy. (See stack trace in signal.c for proof | |
| 578 that this can happen.) | |
| 579 | |
| 580 #### there is still a potential problem with the regex cache -- | |
| 581 the compiled regex could be overwritten. we'd need 20-fold | |
| 582 reentrancy, though. Fix this. */ | |
| 583 | |
| 428 | 584 val = re_search (bufp, (char *) newnonreloc + offset, length, 0, |
| 826 | 585 length, 0, reloc, 0, scache); |
| 428 | 586 |
| 587 no_quit_in_re_search = 0; | |
| 588 return val; | |
| 589 } | |
| 590 | |
| 591 Bytecount | |
| 592 fast_lisp_string_match (Lisp_Object regex, Lisp_Object string) | |
| 593 { | |
| 594 return fast_string_match (regex, 0, string, 0, -1, 0, ERROR_ME, 0); | |
| 595 } | |
| 596 | |
| 597 | |
| 598 #ifdef REGION_CACHE_NEEDS_WORK | |
| 599 /* The newline cache: remembering which sections of text have no newlines. */ | |
| 600 | |
| 601 /* If the user has requested newline caching, make sure it's on. | |
| 602 Otherwise, make sure it's off. | |
| 603 This is our cheezy way of associating an action with the change of | |
| 604 state of a buffer-local variable. */ | |
| 605 static void | |
| 606 newline_cache_on_off (struct buffer *buf) | |
| 607 { | |
| 608 if (NILP (buf->cache_long_line_scans)) | |
| 609 { | |
| 610 /* It should be off. */ | |
| 611 if (buf->newline_cache) | |
| 612 { | |
| 613 free_region_cache (buf->newline_cache); | |
| 614 buf->newline_cache = 0; | |
| 615 } | |
| 616 } | |
| 617 else | |
| 618 { | |
| 619 /* It should be on. */ | |
| 620 if (buf->newline_cache == 0) | |
| 621 buf->newline_cache = new_region_cache (); | |
| 622 } | |
| 623 } | |
| 624 #endif | |
| 625 | |
| 626 /* Search in BUF for COUNT instances of the character TARGET between | |
| 627 START and END. | |
| 628 | |
| 629 If COUNT is positive, search forwards; END must be >= START. | |
| 630 If COUNT is negative, search backwards for the -COUNTth instance; | |
| 631 END must be <= START. | |
| 632 If COUNT is zero, do anything you please; run rogue, for all I care. | |
| 633 | |
| 634 If END is zero, use BEGV or ZV instead, as appropriate for the | |
| 635 direction indicated by COUNT. | |
| 636 | |
| 637 If we find COUNT instances, set *SHORTAGE to zero, and return the | |
| 638 position after the COUNTth match. Note that for reverse motion | |
| 639 this is not the same as the usual convention for Emacs motion commands. | |
| 640 | |
| 641 If we don't find COUNT instances before reaching END, set *SHORTAGE | |
| 642 to the number of TARGETs left unfound, and return END. | |
| 643 | |
| 644 If ALLOW_QUIT is non-zero, call QUIT periodically. */ | |
| 645 | |
| 665 | 646 static Bytebpos |
| 867 | 647 byte_scan_buffer (struct buffer *buf, Ichar target, Bytebpos st, Bytebpos en, |
| 872 | 648 EMACS_INT count, EMACS_INT *shortage, int allow_quit) |
| 428 | 649 { |
| 665 | 650 Bytebpos lim = en > 0 ? en : |
| 826 | 651 ((count > 0) ? BYTE_BUF_ZV (buf) : BYTE_BUF_BEGV (buf)); |
| 428 | 652 |
| 653 /* #### newline cache stuff in this function not yet ported */ | |
| 654 assert (count != 0); | |
| 655 | |
| 656 if (shortage) | |
| 657 *shortage = 0; | |
| 658 | |
| 659 if (count > 0) | |
| 660 { | |
| 661 #ifdef MULE | |
| 826 | 662 Internal_Format fmt = buf->text->format; |
| 663 /* Check for char that's unrepresentable in the buffer -- it | |
| 664 certainly can't be there. */ | |
| 867 | 665 if (!ichar_fits_in_format (target, fmt, wrap_buffer (buf))) |
| 428 | 666 { |
| 826 | 667 *shortage = count; |
| 668 return lim; | |
| 669 } | |
| 670 /* Due to the Mule representation of characters in a buffer, we can | |
| 671 simply search for characters in the range 0 - 127 directly; for | |
| 672 8-bit-fixed, we can do this for all characters. In other cases, | |
| 673 we do it the "hard" way. Note that this way works for all | |
| 674 characters and all formats, but the other way is faster. */ | |
| 675 else if (! (fmt == FORMAT_8_BIT_FIXED || | |
| 867 | 676 (fmt == FORMAT_DEFAULT && ichar_ascii_p (target)))) |
| 826 | 677 { |
| 867 | 678 Raw_Ichar raw = ichar_to_raw (target, fmt, wrap_buffer (buf)); |
| 428 | 679 while (st < lim && count > 0) |
| 680 { | |
| 826 | 681 if (BYTE_BUF_FETCH_CHAR_RAW (buf, st) == raw) |
| 428 | 682 count--; |
| 665 | 683 INC_BYTEBPOS (buf, st); |
| 428 | 684 } |
| 685 } | |
| 686 else | |
| 687 #endif | |
| 688 { | |
| 867 | 689 Raw_Ichar raw = ichar_to_raw (target, fmt, wrap_buffer (buf)); |
| 428 | 690 while (st < lim && count > 0) |
| 691 { | |
|
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Suppress "shadowed global" warnings for floor and ceil from <math.h>.
Stephen J. Turnbull <stephen@xemacs.org>
parents:
5402
diff
changeset
|
692 Bytebpos ceiling; |
| 867 | 693 Ibyte *bufptr; |
| 428 | 694 |
|
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diff
changeset
|
695 ceiling = BYTE_BUF_CEILING_OF (buf, st); |
|
4307b8e5998c
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diff
changeset
|
696 ceiling = min (lim, ceiling); |
| 867 | 697 bufptr = (Ibyte *) memchr (BYTE_BUF_BYTE_ADDRESS (buf, st), |
|
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diff
changeset
|
698 raw, ceiling - st); |
| 428 | 699 if (bufptr) |
| 700 { | |
| 701 count--; | |
| 826 | 702 st = BYTE_BUF_PTR_BYTE_POS (buf, bufptr) + 1; |
| 428 | 703 } |
| 704 else | |
|
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Suppress "shadowed global" warnings for floor and ceil from <math.h>.
Stephen J. Turnbull <stephen@xemacs.org>
parents:
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diff
changeset
|
705 st = ceiling; |
| 428 | 706 } |
| 707 } | |
| 708 | |
| 709 if (shortage) | |
| 710 *shortage = count; | |
| 711 if (allow_quit) | |
| 712 QUIT; | |
| 713 return st; | |
| 714 } | |
| 715 else | |
| 716 { | |
| 717 #ifdef MULE | |
| 826 | 718 Internal_Format fmt = buf->text->format; |
| 719 /* Check for char that's unrepresentable in the buffer -- it | |
| 720 certainly can't be there. */ | |
| 867 | 721 if (!ichar_fits_in_format (target, fmt, wrap_buffer (buf))) |
| 428 | 722 { |
| 826 | 723 *shortage = -count; |
| 724 return lim; | |
| 725 } | |
| 726 else if (! (fmt == FORMAT_8_BIT_FIXED || | |
| 867 | 727 (fmt == FORMAT_DEFAULT && ichar_ascii_p (target)))) |
| 826 | 728 { |
| 867 | 729 Raw_Ichar raw = ichar_to_raw (target, fmt, wrap_buffer (buf)); |
| 428 | 730 while (st > lim && count < 0) |
| 731 { | |
| 665 | 732 DEC_BYTEBPOS (buf, st); |
| 826 | 733 if (BYTE_BUF_FETCH_CHAR_RAW (buf, st) == raw) |
| 428 | 734 count++; |
| 735 } | |
| 736 } | |
| 737 else | |
| 738 #endif | |
| 739 { | |
| 867 | 740 Raw_Ichar raw = ichar_to_raw (target, fmt, wrap_buffer (buf)); |
| 428 | 741 while (st > lim && count < 0) |
| 742 { | |
|
5539
4307b8e5998c
Suppress "shadowed global" warnings for floor and ceil from <math.h>.
Stephen J. Turnbull <stephen@xemacs.org>
parents:
5402
diff
changeset
|
743 Bytebpos floorpos; |
| 867 | 744 Ibyte *bufptr; |
| 745 Ibyte *floorptr; | |
| 428 | 746 |
|
5539
4307b8e5998c
Suppress "shadowed global" warnings for floor and ceil from <math.h>.
Stephen J. Turnbull <stephen@xemacs.org>
parents:
5402
diff
changeset
|
747 floorpos = BYTE_BUF_FLOOR_OF (buf, st); |
|
4307b8e5998c
Suppress "shadowed global" warnings for floor and ceil from <math.h>.
Stephen J. Turnbull <stephen@xemacs.org>
parents:
5402
diff
changeset
|
748 floorpos = max (lim, floorpos); |
| 428 | 749 /* No memrchr() ... */ |
| 826 | 750 bufptr = BYTE_BUF_BYTE_ADDRESS_BEFORE (buf, st); |
|
5539
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Suppress "shadowed global" warnings for floor and ceil from <math.h>.
Stephen J. Turnbull <stephen@xemacs.org>
parents:
5402
diff
changeset
|
751 floorptr = BYTE_BUF_BYTE_ADDRESS (buf, floorpos); |
| 428 | 752 while (bufptr >= floorptr) |
| 753 { | |
| 754 st--; | |
| 755 /* At this point, both ST and BUFPTR refer to the same | |
| 756 character. When the loop terminates, ST will | |
| 757 always point to the last character we tried. */ | |
| 867 | 758 if (*bufptr == (Ibyte) raw) |
| 428 | 759 { |
| 760 count++; | |
| 761 break; | |
| 762 } | |
| 763 bufptr--; | |
| 764 } | |
| 765 } | |
| 766 } | |
| 767 | |
| 768 if (shortage) | |
| 769 *shortage = -count; | |
| 770 if (allow_quit) | |
| 771 QUIT; | |
| 772 if (count) | |
| 773 return st; | |
| 774 else | |
| 775 { | |
| 776 /* We found the character we were looking for; we have to return | |
| 777 the position *after* it due to the strange way that the return | |
| 778 value is defined. */ | |
| 665 | 779 INC_BYTEBPOS (buf, st); |
| 428 | 780 return st; |
| 781 } | |
| 782 } | |
| 783 } | |
| 784 | |
| 665 | 785 Charbpos |
| 867 | 786 scan_buffer (struct buffer *buf, Ichar target, Charbpos start, Charbpos end, |
| 428 | 787 EMACS_INT count, EMACS_INT *shortage, int allow_quit) |
| 788 { | |
| 826 | 789 Bytebpos byte_retval; |
| 790 Bytebpos byte_start, byte_end; | |
| 791 | |
| 792 byte_start = charbpos_to_bytebpos (buf, start); | |
| 428 | 793 if (end) |
| 826 | 794 byte_end = charbpos_to_bytebpos (buf, end); |
| 428 | 795 else |
| 826 | 796 byte_end = 0; |
| 797 byte_retval = byte_scan_buffer (buf, target, byte_start, byte_end, count, | |
| 428 | 798 shortage, allow_quit); |
| 826 | 799 return bytebpos_to_charbpos (buf, byte_retval); |
| 428 | 800 } |
| 801 | |
| 665 | 802 Bytebpos |
| 826 | 803 byte_find_next_newline_no_quit (struct buffer *buf, Bytebpos from, int count) |
| 428 | 804 { |
| 826 | 805 return byte_scan_buffer (buf, '\n', from, 0, count, 0, 0); |
| 428 | 806 } |
| 807 | |
| 665 | 808 Charbpos |
| 809 find_next_newline_no_quit (struct buffer *buf, Charbpos from, int count) | |
| 428 | 810 { |
| 811 return scan_buffer (buf, '\n', from, 0, count, 0, 0); | |
| 812 } | |
| 813 | |
| 665 | 814 Charbpos |
| 815 find_next_newline (struct buffer *buf, Charbpos from, int count) | |
| 428 | 816 { |
| 817 return scan_buffer (buf, '\n', from, 0, count, 0, 1); | |
| 818 } | |
| 819 | |
| 826 | 820 Bytecount |
| 867 | 821 byte_find_next_ichar_in_string (Lisp_Object str, Ichar target, Bytecount st, |
| 428 | 822 EMACS_INT count) |
| 823 { | |
| 793 | 824 Bytebpos lim = XSTRING_LENGTH (str) -1; |
| 867 | 825 Ibyte *s = XSTRING_DATA (str); |
| 428 | 826 |
| 827 assert (count >= 0); | |
| 828 | |
| 829 #ifdef MULE | |
| 830 /* Due to the Mule representation of characters in a buffer, | |
| 831 we can simply search for characters in the range 0 - 127 | |
| 832 directly. For other characters, we do it the "hard" way. | |
| 833 Note that this way works for all characters but the other | |
| 834 way is faster. */ | |
| 835 if (target >= 0200) | |
| 836 { | |
| 837 while (st < lim && count > 0) | |
| 838 { | |
| 867 | 839 if (string_ichar (str, st) == target) |
| 428 | 840 count--; |
| 826 | 841 INC_BYTECOUNT (s, st); |
| 428 | 842 } |
| 843 } | |
| 844 else | |
| 845 #endif | |
| 846 { | |
| 847 while (st < lim && count > 0) | |
| 848 { | |
| 867 | 849 Ibyte *bufptr = (Ibyte *) memchr (itext_n_addr (s, st), |
| 428 | 850 (int) target, lim - st); |
| 851 if (bufptr) | |
| 852 { | |
| 853 count--; | |
| 826 | 854 st = (Bytebpos) (bufptr - s) + 1; |
| 428 | 855 } |
| 856 else | |
| 857 st = lim; | |
| 858 } | |
| 859 } | |
| 860 return st; | |
| 861 } | |
| 862 | |
| 863 /* Like find_next_newline, but returns position before the newline, | |
| 864 not after, and only search up to TO. This isn't just | |
| 865 find_next_newline (...)-1, because you might hit TO. */ | |
| 665 | 866 Charbpos |
| 826 | 867 find_before_next_newline (struct buffer *buf, Charbpos from, Charbpos to, |
| 868 int count) | |
| 428 | 869 { |
| 870 EMACS_INT shortage; | |
| 665 | 871 Charbpos pos = scan_buffer (buf, '\n', from, to, count, &shortage, 1); |
| 428 | 872 |
| 873 if (shortage == 0) | |
| 874 pos--; | |
| 875 | |
| 876 return pos; | |
| 877 } | |
| 878 | |
| 872 | 879 /* This function synched with FSF 21.1 */ |
| 428 | 880 static Lisp_Object |
| 881 skip_chars (struct buffer *buf, int forwardp, int syntaxp, | |
| 882 Lisp_Object string, Lisp_Object lim) | |
| 883 { | |
| 867 | 884 REGISTER Ibyte *p, *pend; |
| 885 REGISTER Ichar c; | |
| 428 | 886 /* We store the first 256 chars in an array here and the rest in |
| 887 a range table. */ | |
| 888 unsigned char fastmap[0400]; | |
| 889 int negate = 0; | |
| 665 | 890 Charbpos limit; |
| 826 | 891 struct syntax_cache *scache; |
|
5653
3df910176b6a
Support predefined character classes in #'skip-chars-{forward,backward}, too
Aidan Kehoe <kehoea@parhasard.net>
parents:
5649
diff
changeset
|
892 Bitbyte class_bits = 0; |
| 826 | 893 |
| 428 | 894 if (NILP (lim)) |
| 895 limit = forwardp ? BUF_ZV (buf) : BUF_BEGV (buf); | |
| 896 else | |
| 897 { | |
|
5581
56144c8593a8
Mechanically change INT to FIXNUM in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5542
diff
changeset
|
898 CHECK_FIXNUM_COERCE_MARKER (lim); |
|
56144c8593a8
Mechanically change INT to FIXNUM in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5542
diff
changeset
|
899 limit = XFIXNUM (lim); |
| 428 | 900 |
| 901 /* In any case, don't allow scan outside bounds of buffer. */ | |
| 902 if (limit > BUF_ZV (buf)) limit = BUF_ZV (buf); | |
| 903 if (limit < BUF_BEGV (buf)) limit = BUF_BEGV (buf); | |
| 904 } | |
| 905 | |
| 906 CHECK_STRING (string); | |
| 907 p = XSTRING_DATA (string); | |
| 908 pend = p + XSTRING_LENGTH (string); | |
| 909 memset (fastmap, 0, sizeof (fastmap)); | |
| 910 | |
| 911 Fclear_range_table (Vskip_chars_range_table); | |
| 912 | |
| 913 if (p != pend && *p == '^') | |
| 914 { | |
| 915 negate = 1; | |
| 916 p++; | |
| 917 } | |
| 918 | |
| 919 /* Find the characters specified and set their elements of fastmap. | |
| 920 If syntaxp, each character counts as itself. | |
| 921 Otherwise, handle backslashes and ranges specially */ | |
| 922 | |
| 923 while (p != pend) | |
| 924 { | |
| 867 | 925 c = itext_ichar (p); |
| 926 INC_IBYTEPTR (p); | |
| 428 | 927 if (syntaxp) |
| 928 { | |
|
5542
dab422055bab
Correct array bound for syntax_code_spec.
Stephen J. Turnbull <stephen@xemacs.org>
parents:
5539
diff
changeset
|
929 if (c < 0200 && syntax_spec_code[c] < (unsigned char) Smax) |
| 428 | 930 fastmap[c] = 1; |
| 931 else | |
| 831 | 932 invalid_argument ("Invalid syntax designator", make_char (c)); |
| 428 | 933 } |
| 934 else | |
| 935 { | |
| 936 if (c == '\\') | |
| 937 { | |
| 938 if (p == pend) break; | |
| 867 | 939 c = itext_ichar (p); |
| 940 INC_IBYTEPTR (p); | |
| 428 | 941 } |
| 942 if (p != pend && *p == '-') | |
| 943 { | |
| 867 | 944 Ichar cend; |
| 428 | 945 |
| 872 | 946 /* Skip over the dash. */ |
| 428 | 947 p++; |
| 948 if (p == pend) break; | |
| 867 | 949 cend = itext_ichar (p); |
| 428 | 950 while (c <= cend && c < 0400) |
| 951 { | |
| 952 fastmap[c] = 1; | |
| 953 c++; | |
| 954 } | |
| 955 if (c <= cend) | |
|
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|
956 Fput_range_table (make_fixnum (c), make_fixnum (cend), Qt, |
| 428 | 957 Vskip_chars_range_table); |
| 867 | 958 INC_IBYTEPTR (p); |
| 428 | 959 } |
|
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|
960 else if ('[' == c && p != pend && *p == ':') |
|
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|
961 { |
|
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|
962 Ibyte *colonp; |
|
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|
963 Extbyte *classname; |
|
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964 int ch = 0; |
|
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|
965 re_wctype_t cc; |
|
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|
966 |
|
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967 INC_IBYTEPTR (p); |
|
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968 |
|
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969 if (p == pend) |
|
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|
970 { |
|
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|
971 fastmap ['['] = fastmap[':'] = 1; |
|
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|
972 break; |
|
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|
973 } |
|
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974 |
|
5661
6e5a7278f9bf
Add cast to Ibyte *, search.c, thank you Jeff Sparkes.
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|
975 colonp = (Ibyte *) memchr (p, ':', pend - p); |
|
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976 if (NULL == colonp || (colonp + 1) == pend || colonp[1] != ']') |
|
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|
977 { |
|
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Support predefined character classes in #'skip-chars-{forward,backward}, too
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978 fastmap ['['] = fastmap[':'] = 1; |
|
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|
979 continue; |
|
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Aidan Kehoe <kehoea@parhasard.net>
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|
980 } |
|
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|
981 |
|
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Support predefined character classes in #'skip-chars-{forward,backward}, too
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diff
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|
982 classname = alloca_extbytes (colonp - p + 1); |
|
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|
983 memmove (classname, p, colonp - p); |
|
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984 classname[colonp - p] = '\0'; |
|
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|
985 cc = re_wctype (classname); |
|
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|
986 |
|
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|
987 if (cc == RECC_ERROR) |
|
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988 { |
|
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|
989 invalid_argument ("Invalid character class", |
|
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990 build_extstring (classname, Qbinary)); |
|
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|
991 } |
|
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diff
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|
992 |
|
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diff
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|
993 for (ch = 0; ch < countof (fastmap); ++ch) |
|
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diff
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|
994 { |
|
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|
995 if (re_iswctype (ch, cc, buf)) |
|
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|
996 { |
|
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|
997 fastmap[ch] = 1; |
|
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|
998 } |
|
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|
999 } |
|
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|
1000 |
|
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1001 compile_char_class (cc, Vskip_chars_range_table, &class_bits); |
|
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|
1002 |
|
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|
1003 p = colonp + 2; |
|
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|
1004 } |
| 428 | 1005 else |
| 1006 { | |
| 1007 if (c < 0400) | |
| 1008 fastmap[c] = 1; | |
| 1009 else | |
|
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|
1010 Fput_range_table (make_fixnum (c), make_fixnum (c), Qt, |
| 428 | 1011 Vskip_chars_range_table); |
| 1012 } | |
| 1013 } | |
| 1014 } | |
| 1015 | |
| 872 | 1016 /* #### Not in FSF 21.1 */ |
| 428 | 1017 if (syntaxp && fastmap['-'] != 0) |
| 1018 fastmap[' '] = 1; | |
| 1019 | |
| 1020 { | |
| 665 | 1021 Charbpos start_point = BUF_PT (buf); |
| 872 | 1022 Charbpos pos = start_point; |
| 1023 Charbpos pos_byte = BYTE_BUF_PT (buf); | |
| 428 | 1024 |
| 1025 if (syntaxp) | |
| 1026 { | |
| 872 | 1027 scache = setup_buffer_syntax_cache (buf, pos, forwardp ? 1 : -1); |
| 428 | 1028 /* All syntax designators are normal chars so nothing strange |
| 1029 to worry about */ | |
| 1030 if (forwardp) | |
| 1031 { | |
| 872 | 1032 if (pos < limit) |
| 1033 while (fastmap[(unsigned char) | |
| 1034 syntax_code_spec | |
| 1035 [(int) SYNTAX_FROM_CACHE | |
|
5653
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|
1036 (scache, BYTE_BUF_FETCH_CHAR (buf, pos_byte))]] |
|
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changeset
|
1037 != negate) |
| 872 | 1038 { |
| 1039 pos++; | |
| 1040 INC_BYTEBPOS (buf, pos_byte); | |
| 879 | 1041 if (pos >= limit) |
| 872 | 1042 break; |
| 1043 UPDATE_SYNTAX_CACHE_FORWARD (scache, pos); | |
| 1044 } | |
| 428 | 1045 } |
| 1046 else | |
| 1047 { | |
| 872 | 1048 while (pos > limit) |
| 460 | 1049 { |
| 872 | 1050 Charbpos savepos = pos_byte; |
| 1051 pos--; | |
| 1052 DEC_BYTEBPOS (buf, pos_byte); | |
| 1053 UPDATE_SYNTAX_CACHE_BACKWARD (scache, pos); | |
|
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|
1054 if (fastmap[(unsigned char) |
|
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|
1055 syntax_code_spec |
|
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|
1056 [(int) SYNTAX_FROM_CACHE |
|
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|
1057 (scache, BYTE_BUF_FETCH_CHAR (buf, pos_byte))]] |
|
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|
1058 == negate) |
| 872 | 1059 { |
| 1060 pos++; | |
| 1061 pos_byte = savepos; | |
| 1062 break; | |
| 1063 } | |
| 460 | 1064 } |
| 428 | 1065 } |
| 1066 } | |
| 1067 else | |
| 1068 { | |
|
5653
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changeset
|
1069 struct buffer *lispbuf = buf; |
|
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|
1070 |
|
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|
1071 #define CLASS_BIT_CHECK(c) \ |
|
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|
1072 (class_bits && ((class_bits & BIT_ALPHA && ISALPHA (c)) \ |
|
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|
1073 || (class_bits & BIT_SPACE && ISSPACE (c)) \ |
|
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|
1074 || (class_bits & BIT_PUNCT && ISPUNCT (c)) \ |
|
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|
1075 || (class_bits & BIT_WORD && ISWORD (c)) \ |
|
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|
1076 || (NILP (buf->case_fold_search) ? \ |
|
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|
1077 ((class_bits & BIT_UPPER && ISUPPER (c)) \ |
|
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|
1078 || (class_bits & BIT_LOWER && ISLOWER (c))) \ |
|
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|
1079 : (class_bits & (BIT_UPPER | BIT_LOWER) \ |
|
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diff
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|
1080 && !NOCASEP (buf, c))))) |
| 428 | 1081 if (forwardp) |
| 1082 { | |
| 872 | 1083 while (pos < limit) |
| 428 | 1084 { |
| 872 | 1085 Ichar ch = BYTE_BUF_FETCH_CHAR (buf, pos_byte); |
|
5653
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changeset
|
1086 |
|
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Support predefined character classes in #'skip-chars-{forward,backward}, too
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|
1087 if ((ch < countof (fastmap) ? fastmap[ch] |
|
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|
1088 : (CLASS_BIT_CHECK (ch) || |
|
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diff
changeset
|
1089 (EQ (Qt, Fget_range_table (make_fixnum (ch), |
|
3df910176b6a
Support predefined character classes in #'skip-chars-{forward,backward}, too
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diff
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|
1090 Vskip_chars_range_table, |
|
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|
1091 Qnil))))) |
|
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|
1092 != negate) |
| 872 | 1093 { |
| 1094 pos++; | |
| 1095 INC_BYTEBPOS (buf, pos_byte); | |
| 1096 } | |
| 428 | 1097 else |
| 1098 break; | |
| 1099 } | |
| 1100 } | |
| 1101 else | |
| 1102 { | |
| 872 | 1103 while (pos > limit) |
| 428 | 1104 { |
| 872 | 1105 Charbpos prev_pos_byte = pos_byte; |
| 1106 Ichar ch; | |
| 1107 | |
| 1108 DEC_BYTEBPOS (buf, prev_pos_byte); | |
| 1109 ch = BYTE_BUF_FETCH_CHAR (buf, prev_pos_byte); | |
|
5653
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|
1110 if ((ch < countof (fastmap) ? fastmap[ch] |
|
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|
1111 : (CLASS_BIT_CHECK (ch) || |
|
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|
1112 (EQ (Qt, Fget_range_table (make_fixnum (ch), |
|
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|
1113 Vskip_chars_range_table, |
|
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|
1114 Qnil))))) |
|
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|
1115 != negate) |
| 872 | 1116 { |
| 1117 pos--; | |
| 1118 pos_byte = prev_pos_byte; | |
| 1119 } | |
| 428 | 1120 else |
| 1121 break; | |
| 1122 } | |
| 1123 } | |
| 1124 } | |
| 1125 QUIT; | |
| 872 | 1126 BOTH_BUF_SET_PT (buf, pos, pos_byte); |
|
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|
1127 return make_fixnum (BUF_PT (buf) - start_point); |
| 428 | 1128 } |
| 1129 } | |
| 1130 | |
| 1131 DEFUN ("skip-chars-forward", Fskip_chars_forward, 1, 3, 0, /* | |
| 444 | 1132 Move point forward, stopping before a char not in STRING, or at pos LIMIT. |
| 428 | 1133 STRING is like the inside of a `[...]' in a regular expression |
| 1134 except that `]' is never special and `\\' quotes `^', `-' or `\\'. | |
| 1135 Thus, with arg "a-zA-Z", this skips letters stopping before first nonletter. | |
| 1136 With arg "^a-zA-Z", skips nonletters stopping before first letter. | |
| 1137 Returns the distance traveled, either zero or positive. | |
| 1138 | |
| 1139 Optional argument BUFFER defaults to the current buffer. | |
| 1140 */ | |
| 444 | 1141 (string, limit, buffer)) |
| 428 | 1142 { |
| 444 | 1143 return skip_chars (decode_buffer (buffer, 0), 1, 0, string, limit); |
| 428 | 1144 } |
| 1145 | |
| 1146 DEFUN ("skip-chars-backward", Fskip_chars_backward, 1, 3, 0, /* | |
| 444 | 1147 Move point backward, stopping after a char not in STRING, or at pos LIMIT. |
| 428 | 1148 See `skip-chars-forward' for details. |
| 1149 Returns the distance traveled, either zero or negative. | |
| 1150 | |
| 1151 Optional argument BUFFER defaults to the current buffer. | |
| 1152 */ | |
| 444 | 1153 (string, limit, buffer)) |
| 428 | 1154 { |
| 444 | 1155 return skip_chars (decode_buffer (buffer, 0), 0, 0, string, limit); |
| 428 | 1156 } |
| 1157 | |
| 1158 | |
| 1159 DEFUN ("skip-syntax-forward", Fskip_syntax_forward, 1, 3, 0, /* | |
| 1160 Move point forward across chars in specified syntax classes. | |
| 1161 SYNTAX is a string of syntax code characters. | |
| 444 | 1162 Stop before a char whose syntax is not in SYNTAX, or at position LIMIT. |
| 428 | 1163 If SYNTAX starts with ^, skip characters whose syntax is NOT in SYNTAX. |
| 1164 This function returns the distance traveled, either zero or positive. | |
| 1165 | |
| 1166 Optional argument BUFFER defaults to the current buffer. | |
| 1167 */ | |
| 444 | 1168 (syntax, limit, buffer)) |
| 428 | 1169 { |
| 444 | 1170 return skip_chars (decode_buffer (buffer, 0), 1, 1, syntax, limit); |
| 428 | 1171 } |
| 1172 | |
| 1173 DEFUN ("skip-syntax-backward", Fskip_syntax_backward, 1, 3, 0, /* | |
| 1174 Move point backward across chars in specified syntax classes. | |
| 1175 SYNTAX is a string of syntax code characters. | |
| 444 | 1176 Stop on reaching a char whose syntax is not in SYNTAX, or at position LIMIT. |
| 428 | 1177 If SYNTAX starts with ^, skip characters whose syntax is NOT in SYNTAX. |
| 1178 This function returns the distance traveled, either zero or negative. | |
| 1179 | |
| 1180 Optional argument BUFFER defaults to the current buffer. | |
| 1181 */ | |
| 444 | 1182 (syntax, limit, buffer)) |
| 428 | 1183 { |
| 444 | 1184 return skip_chars (decode_buffer (buffer, 0), 0, 1, syntax, limit); |
| 428 | 1185 } |
| 1186 | |
| 1187 | |
| 1188 /* Subroutines of Lisp buffer search functions. */ | |
| 1189 | |
| 1190 static Lisp_Object | |
| 444 | 1191 search_command (Lisp_Object string, Lisp_Object limit, Lisp_Object noerror, |
| 428 | 1192 Lisp_Object count, Lisp_Object buffer, int direction, |
| 1193 int RE, int posix) | |
| 1194 { | |
| 665 | 1195 REGISTER Charbpos np; |
| 1196 Charbpos lim; | |
| 428 | 1197 EMACS_INT n = direction; |
| 1198 struct buffer *buf; | |
| 1199 | |
| 1200 if (!NILP (count)) | |
| 1201 { | |
|
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|
1202 CHECK_FIXNUM (count); |
|
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1203 n *= XFIXNUM (count); |
| 428 | 1204 } |
| 1205 | |
| 1206 buf = decode_buffer (buffer, 0); | |
| 1207 CHECK_STRING (string); | |
| 444 | 1208 if (NILP (limit)) |
| 428 | 1209 lim = n > 0 ? BUF_ZV (buf) : BUF_BEGV (buf); |
| 1210 else | |
| 1211 { | |
|
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1212 CHECK_FIXNUM_COERCE_MARKER (limit); |
|
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1213 lim = XFIXNUM (limit); |
| 428 | 1214 if (n > 0 ? lim < BUF_PT (buf) : lim > BUF_PT (buf)) |
| 563 | 1215 invalid_argument ("Invalid search limit (wrong side of point)", |
| 1216 Qunbound); | |
| 428 | 1217 if (lim > BUF_ZV (buf)) |
| 1218 lim = BUF_ZV (buf); | |
| 1219 if (lim < BUF_BEGV (buf)) | |
| 1220 lim = BUF_BEGV (buf); | |
| 1221 } | |
| 1222 | |
| 1223 np = search_buffer (buf, string, BUF_PT (buf), lim, n, RE, | |
| 1224 (!NILP (buf->case_fold_search) | |
| 446 | 1225 ? XCASE_TABLE_CANON (buf->case_table) |
| 1226 : Qnil), | |
| 428 | 1227 (!NILP (buf->case_fold_search) |
| 446 | 1228 ? XCASE_TABLE_EQV (buf->case_table) |
| 1229 : Qnil), posix); | |
| 428 | 1230 |
| 1231 if (np <= 0) | |
| 1232 { | |
| 444 | 1233 if (NILP (noerror)) |
| 2268 | 1234 { |
| 1235 signal_failure (string); | |
| 1236 RETURN_NOT_REACHED (Qnil); | |
| 1237 } | |
| 444 | 1238 if (!EQ (noerror, Qt)) |
| 428 | 1239 { |
| 1240 if (lim < BUF_BEGV (buf) || lim > BUF_ZV (buf)) | |
| 2500 | 1241 ABORT (); |
| 428 | 1242 BUF_SET_PT (buf, lim); |
| 1243 return Qnil; | |
| 1244 #if 0 /* This would be clean, but maybe programs depend on | |
| 1245 a value of nil here. */ | |
| 1246 np = lim; | |
| 1247 #endif | |
| 1248 } | |
| 1249 else | |
| 1250 return Qnil; | |
| 1251 } | |
| 1252 | |
| 1253 if (np < BUF_BEGV (buf) || np > BUF_ZV (buf)) | |
| 2500 | 1254 ABORT (); |
| 428 | 1255 |
| 1256 BUF_SET_PT (buf, np); | |
| 1257 | |
|
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1258 return make_fixnum (np); |
| 428 | 1259 } |
| 1260 | |
| 1261 static int | |
| 1262 trivial_regexp_p (Lisp_Object regexp) | |
| 1263 { | |
| 1264 Bytecount len = XSTRING_LENGTH (regexp); | |
| 867 | 1265 Ibyte *s = XSTRING_DATA (regexp); |
| 428 | 1266 while (--len >= 0) |
| 1267 { | |
| 1268 switch (*s++) | |
| 1269 { | |
| 1724 | 1270 /* #### howcum ']' doesn't appear here, but ... */ |
| 428 | 1271 case '.': case '*': case '+': case '?': case '[': case '^': case '$': |
| 1272 return 0; | |
| 1273 case '\\': | |
| 1274 if (--len < 0) | |
| 1275 return 0; | |
| 1276 switch (*s++) | |
| 1277 { | |
| 1724 | 1278 /* ... ')' does appear here? ('<' and '>' can appear singly.) */ |
| 1279 /* #### are there other constructs to check? */ | |
| 428 | 1280 case '|': case '(': case ')': case '`': case '\'': case 'b': |
| 1281 case 'B': case '<': case '>': case 'w': case 'W': case 's': | |
| 1724 | 1282 case 'S': case '=': case '{': case '}': |
| 428 | 1283 #ifdef MULE |
| 1284 /* 97/2/25 jhod Added for category matches */ | |
| 1285 case 'c': case 'C': | |
| 1286 #endif /* MULE */ | |
| 1287 case '1': case '2': case '3': case '4': case '5': | |
| 1288 case '6': case '7': case '8': case '9': | |
| 1289 return 0; | |
| 1290 } | |
| 1291 } | |
| 1292 } | |
| 1293 return 1; | |
| 1294 } | |
| 1295 | |
| 1296 /* Search for the n'th occurrence of STRING in BUF, | |
| 665 | 1297 starting at position CHARBPOS and stopping at position BUFLIM, |
| 428 | 1298 treating PAT as a literal string if RE is false or as |
| 1299 a regular expression if RE is true. | |
| 1300 | |
| 1301 If N is positive, searching is forward and BUFLIM must be greater | |
| 665 | 1302 than CHARBPOS. |
| 428 | 1303 If N is negative, searching is backward and BUFLIM must be less |
| 665 | 1304 than CHARBPOS. |
| 428 | 1305 |
| 1306 Returns -x if only N-x occurrences found (x > 0), | |
| 1307 or else the position at the beginning of the Nth occurrence | |
| 1308 (if searching backward) or the end (if searching forward). | |
| 1309 | |
| 1310 POSIX is nonzero if we want full backtracking (POSIX style) | |
| 1311 for this pattern. 0 means backtrack only enough to get a valid match. */ | |
| 665 | 1312 static Charbpos |
| 1313 search_buffer (struct buffer *buf, Lisp_Object string, Charbpos charbpos, | |
| 1314 Charbpos buflim, EMACS_INT n, int RE, Lisp_Object trt, | |
| 446 | 1315 Lisp_Object inverse_trt, int posix) |
| 428 | 1316 { |
| 1317 Bytecount len = XSTRING_LENGTH (string); | |
| 867 | 1318 Ibyte *base_pat = XSTRING_DATA (string); |
| 428 | 1319 REGISTER EMACS_INT i, j; |
| 665 | 1320 Bytebpos p1, p2; |
| 428 | 1321 Bytecount s1, s2; |
| 665 | 1322 Bytebpos pos, lim; |
| 428 | 1323 |
| 853 | 1324 /* Some FSF junk with running_asynch_code, to preserve the match |
| 1325 data. Not necessary because we don't call process filters | |
| 1326 asynchronously (i.e. from within QUIT). */ | |
| 428 | 1327 |
| 1425 | 1328 /* Searching 0 times means noop---don't move, don't touch registers. */ |
| 1329 if (n == 0) | |
| 1330 return charbpos; | |
| 1331 | |
| 428 | 1332 /* Null string is found at starting position. */ |
| 1333 if (len == 0) | |
| 1334 { | |
| 665 | 1335 set_search_regs (buf, charbpos, 0); |
| 1336 return charbpos; | |
| 428 | 1337 } |
| 1338 | |
| 665 | 1339 pos = charbpos_to_bytebpos (buf, charbpos); |
| 1340 lim = charbpos_to_bytebpos (buf, buflim); | |
| 428 | 1341 if (RE && !trivial_regexp_p (string)) |
| 1342 { | |
| 1343 struct re_pattern_buffer *bufp; | |
| 826 | 1344 |
| 1345 bufp = compile_pattern (string, &search_regs, trt, | |
| 1346 wrap_buffer (buf), buf, posix, ERROR_ME); | |
| 428 | 1347 |
| 1348 /* Get pointers and sizes of the two strings | |
| 1349 that make up the visible portion of the buffer. */ | |
| 1350 | |
| 826 | 1351 p1 = BYTE_BUF_BEGV (buf); |
| 1352 p2 = BYTE_BUF_CEILING_OF (buf, p1); | |
| 428 | 1353 s1 = p2 - p1; |
| 826 | 1354 s2 = BYTE_BUF_ZV (buf) - p2; |
| 1355 | |
| 1356 while (n != 0) | |
| 428 | 1357 { |
| 1358 Bytecount val; | |
| 826 | 1359 struct syntax_cache scache_struct; |
| 1360 struct syntax_cache *scache = &scache_struct; | |
| 1361 | |
| 428 | 1362 QUIT; |
| 826 | 1363 /* By making the regex object, regex buffer, and syntax cache |
| 1364 arguments to re_{search,match}{,_2}, we've removed the need to | |
| 1365 do nasty things to deal with regex reentrancy. (See stack | |
| 1366 trace in signal.c for proof that this can happen.) | |
| 1367 | |
| 1368 #### there is still a potential problem with the regex cache -- | |
| 1369 the compiled regex could be overwritten. we'd need 20-fold | |
| 1370 reentrancy, though. Fix this. */ | |
| 1371 | |
| 428 | 1372 val = re_search_2 (bufp, |
| 826 | 1373 (char *) BYTE_BUF_BYTE_ADDRESS (buf, p1), s1, |
| 1374 (char *) BYTE_BUF_BYTE_ADDRESS (buf, p2), s2, | |
| 1375 pos - BYTE_BUF_BEGV (buf), lim - pos, &search_regs, | |
| 1376 n > 0 ? lim - BYTE_BUF_BEGV (buf) : | |
| 1377 pos - BYTE_BUF_BEGV (buf), wrap_buffer (buf), | |
| 1378 buf, scache); | |
| 428 | 1379 |
| 1380 if (val == -2) | |
| 1381 { | |
| 1382 matcher_overflow (); | |
| 1383 } | |
| 1384 if (val >= 0) | |
| 1385 { | |
| 1386 int num_regs = search_regs.num_regs; | |
| 826 | 1387 j = BYTE_BUF_BEGV (buf); |
| 428 | 1388 for (i = 0; i < num_regs; i++) |
| 1389 if (search_regs.start[i] >= 0) | |
| 1390 { | |
| 1391 search_regs.start[i] += j; | |
| 1392 search_regs.end[i] += j; | |
| 1393 } | |
| 793 | 1394 last_thing_searched = wrap_buffer (buf); |
| 428 | 1395 /* Set pos to the new position. */ |
| 826 | 1396 pos = n > 0 ? search_regs.end[0] : search_regs.start[0]; |
| 428 | 1397 fixup_search_regs_for_buffer (buf); |
| 665 | 1398 /* And charbpos too. */ |
| 826 | 1399 charbpos = n > 0 ? search_regs.end[0] : search_regs.start[0]; |
| 428 | 1400 } |
| 1401 else | |
| 826 | 1402 return (n > 0 ? 0 - n : n); |
| 1403 if (n > 0) n--; else n++; | |
| 428 | 1404 } |
| 665 | 1405 return charbpos; |
| 428 | 1406 } |
| 1407 else /* non-RE case */ | |
| 1408 { | |
| 446 | 1409 int charset_base = -1; |
| 1410 int boyer_moore_ok = 1; | |
| 2367 | 1411 Ibyte *patbuf = alloca_ibytes (len * MAX_ICHAR_LEN); |
|
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|
1412 Ibyte *pat = patbuf; |
|
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|
1413 |
| 446 | 1414 #ifdef MULE |
|
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|
1415 int entirely_one_byte_p = buf->text->entirely_one_byte_p; |
|
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|
1416 int nothing_greater_than_0xff = |
|
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Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
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|
1417 buf->text->num_8_bit_fixed_chars == BUF_Z(buf) - BUF_BEG (buf); |
|
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|
1418 |
| 446 | 1419 while (len > 0) |
| 1420 { | |
| 867 | 1421 Ibyte tmp_str[MAX_ICHAR_LEN]; |
| 1422 Ichar c, translated, inverse; | |
| 446 | 1423 Bytecount orig_bytelen, new_bytelen, inv_bytelen; |
| 1424 | |
| 1425 /* If we got here and the RE flag is set, it's because | |
| 1426 we're dealing with a regexp known to be trivial, so the | |
| 1427 backslash just quotes the next character. */ | |
| 1428 if (RE && *base_pat == '\\') | |
| 1429 { | |
| 1430 len--; | |
| 1431 base_pat++; | |
| 1432 } | |
| 867 | 1433 c = itext_ichar (base_pat); |
| 446 | 1434 translated = TRANSLATE (trt, c); |
| 1435 inverse = TRANSLATE (inverse_trt, c); | |
| 1436 | |
| 867 | 1437 orig_bytelen = itext_ichar_len (base_pat); |
| 1438 inv_bytelen = set_itext_ichar (tmp_str, inverse); | |
| 1439 new_bytelen = set_itext_ichar (tmp_str, translated); | |
| 446 | 1440 |
|
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|
1441 if (boyer_moore_ok |
|
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|
1442 /* Only do the Boyer-Moore check for characters needing |
|
df576f30c1d8
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|
1443 translation. */ |
|
df576f30c1d8
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Aidan Kehoe <kehoea@parhasard.net>
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4407
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|
1444 && (translated != c || inverse != c)) |
|
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|
1445 { |
|
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|
1446 Ichar starting_c = c; |
|
4421
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Aidan Kehoe <kehoea@parhasard.net>
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4414
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|
1447 int charset_base_code, checked = 0; |
|
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|
1448 |
|
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|
1449 do |
|
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|
1450 { |
|
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|
1451 c = TRANSLATE (inverse_trt, c); |
|
4ee73bbe4f8e
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|
1452 |
|
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|
1453 /* If a character cannot occur in the buffer, ignore |
|
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Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
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|
1454 it. */ |
|
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Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
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|
1455 if (c > 0x7F && entirely_one_byte_p) |
|
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|
1456 continue; |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
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|
1457 |
|
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|
1458 if (c > 0xFF && nothing_greater_than_0xff) |
|
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|
1459 continue; |
|
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|
1460 |
|
4421
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|
1461 checked = 1; |
|
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|
1462 |
|
4414
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|
1463 if (-1 == charset_base) /* No charset yet specified. */ |
|
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|
1464 { |
|
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|
1465 /* Keep track of which charset and character set row |
|
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|
1466 contains the characters that need translation. |
|
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|
1467 |
|
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|
1468 Zero out the bits corresponding to the last |
|
df576f30c1d8
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|
1469 byte. */ |
|
df576f30c1d8
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|
1470 charset_base = c & ~ICHAR_FIELD3_MASK; |
|
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|
1471 } |
|
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|
1472 else |
|
4407
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1473 { |
|
4414
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1474 charset_base_code = c & ~ICHAR_FIELD3_MASK; |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1475 |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1476 if (charset_base_code != charset_base) |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1477 { |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1478 /* If two different rows, or two different |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1479 charsets, appear, needing non-ASCII |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1480 translation, then we cannot use boyer_moore |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1481 search. See the comment at the head of |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1482 boyer_moore(). */ |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1483 boyer_moore_ok = 0; |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1484 break; |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1485 } |
|
4407
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1486 } |
|
4901
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1487 |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1488 if (ichar_len (c) > 2) |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1489 { |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1490 /* Case-equivalence plus repeated octets throws off |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1491 the construction of the stride table; avoid this. |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1492 |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1493 It should be possible to correct boyer_moore to |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1494 behave correctly even in this case--it doesn't have |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1495 problems with repeated octets when case conversion |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1496 is not involved--but this is not a critical |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1497 issue. */ |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1498 Ibyte encoded[MAX_ICHAR_LEN]; |
|
5016
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
4962
diff
changeset
|
1499 Bytecount clen = set_itext_ichar (encoded, c); |
|
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
4962
diff
changeset
|
1500 int a, b; |
|
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
4962
diff
changeset
|
1501 for (a = 0; a < clen && boyer_moore_ok; ++a) |
|
4901
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1502 { |
|
5016
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
4962
diff
changeset
|
1503 for (b = a + 1; b < clen && boyer_moore_ok; ++b) |
|
4901
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1504 { |
|
5016
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
4962
diff
changeset
|
1505 if (encoded[a] == encoded[b]) |
|
4901
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1506 { |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1507 boyer_moore_ok = 0; |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1508 } |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1509 } |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1510 } |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1511 |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1512 if (0 == boyer_moore_ok) |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1513 { |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1514 break; |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1515 } |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1516 } |
|
7504864a986c
Don't use Boyer-Moore if repeated octets & case-insensitive search.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4897
diff
changeset
|
1517 |
|
4407
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1518 } while (c != starting_c); |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1519 |
|
4421
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1520 if (!checked) |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1521 { |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1522 #ifdef DEBUG_XEMACS |
| 5041 | 1523 if (debug_searches) |
|
4421
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1524 { |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1525 Lisp_Symbol *sym = XSYMBOL (Qsearch_algorithm_used); |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1526 sym->value = Qnil; |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1527 } |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1528 #endif |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1529 /* The "continue" clauses were used above, for every |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1530 translation of the character. As such, this character |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1531 is not to be found in the buffer and neither is the |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1532 string as a whole. Return immediately; also avoid |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1533 triggering the assertion a few lines down. */ |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1534 return n > 0 ? -n : n; |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1535 } |
|
69b803c646cd
Fail searches immediately if searching for non-representable characters.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4414
diff
changeset
|
1536 |
|
4414
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1537 if (boyer_moore_ok && charset_base != -1 && |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1538 charset_base != (translated & ~ICHAR_FIELD3_MASK)) |
|
4407
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1539 { |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1540 /* In the rare event that the CANON entry for this |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1541 character is not in the desired set, choose one |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1542 that is, from the equivalence set. It doesn't much |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1543 matter which. */ |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1544 Ichar starting_ch = translated; |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1545 do |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1546 { |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1547 translated = TRANSLATE (inverse_trt, translated); |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1548 |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1549 if (charset_base == (translated & ~ICHAR_FIELD3_MASK)) |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1550 break; |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1551 |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1552 } while (starting_ch != translated); |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1553 |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1554 assert (starting_ch != translated); |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1555 |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1556 new_bytelen = set_itext_ichar (tmp_str, translated); |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1557 } |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1558 } |
|
4ee73bbe4f8e
Always use boyer_moore in ASCII or Latin-1 buffers with ASCII search strings.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4322
diff
changeset
|
1559 |
| 446 | 1560 memcpy (pat, tmp_str, new_bytelen); |
| 1561 pat += new_bytelen; | |
| 1562 base_pat += orig_bytelen; | |
| 1563 len -= orig_bytelen; | |
| 1564 } | |
|
4414
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1565 |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1566 if (-1 == charset_base) |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1567 { |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1568 charset_base = 'a' & ~ICHAR_FIELD3_MASK; /* Default to ASCII. */ |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1569 } |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1570 |
| 446 | 1571 #else /* not MULE */ |
| 1572 while (--len >= 0) | |
| 1573 { | |
| 1574 /* If we got here and the RE flag is set, it's because | |
| 1575 we're dealing with a regexp known to be trivial, so the | |
| 1576 backslash just quotes the next character. */ | |
| 1577 if (RE && *base_pat == '\\') | |
| 1578 { | |
| 1579 len--; | |
| 1580 base_pat++; | |
| 1581 } | |
| 1582 *pat++ = TRANSLATE (trt, *base_pat++); | |
| 1583 } | |
| 1584 #endif /* MULE */ | |
| 1585 len = pat - patbuf; | |
| 1586 pat = base_pat = patbuf; | |
|
4414
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1587 |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1588 #ifdef DEBUG_XEMACS |
| 5041 | 1589 if (debug_searches) |
|
4414
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1590 { |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1591 Lisp_Symbol *sym = XSYMBOL (Qsearch_algorithm_used); |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1592 sym->value = boyer_moore_ok ? Qboyer_moore : Qsimple_search; |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1593 } |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
1594 #endif |
|
df576f30c1d8
Correct case-insensitive search for non-case, non-ASCII chars. Add tests.
Aidan Kehoe <kehoea@parhasard.net>
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4407
diff
changeset
|
1595 |
| 446 | 1596 if (boyer_moore_ok) |
| 1597 return boyer_moore (buf, base_pat, len, pos, lim, n, | |
| 1598 trt, inverse_trt, charset_base); | |
| 1599 else | |
| 1600 return simple_search (buf, base_pat, len, pos, lim, n, trt); | |
| 1601 } | |
| 1602 } | |
| 1603 | |
| 826 | 1604 /* Do a simple string search N times for the string PAT, whose length is |
| 1605 LEN/LEN_BYTE, from buffer position POS until LIM. TRT is the | |
| 1606 translation table. | |
| 446 | 1607 |
| 1608 Return the character position where the match is found. | |
| 1609 Otherwise, if M matches remained to be found, return -M. | |
| 1610 | |
| 1611 This kind of search works regardless of what is in PAT and | |
| 1612 regardless of what is in TRT. It is used in cases where | |
| 1613 boyer_moore cannot work. */ | |
| 1614 | |
| 665 | 1615 static Charbpos |
| 867 | 1616 simple_search (struct buffer *buf, Ibyte *base_pat, Bytecount len, |
| 826 | 1617 Bytebpos pos, Bytebpos lim, EMACS_INT n, Lisp_Object trt) |
| 446 | 1618 { |
| 1619 int forward = n > 0; | |
| 1620 Bytecount buf_len = 0; /* Shut up compiler. */ | |
| 1621 | |
| 826 | 1622 if (lim > pos) |
| 446 | 1623 while (n > 0) |
| 428 | 1624 { |
| 446 | 1625 while (1) |
| 428 | 1626 { |
| 826 | 1627 Bytecount this_len = len; |
| 1628 Bytebpos this_pos = pos; | |
| 867 | 1629 Ibyte *p = base_pat; |
| 826 | 1630 if (pos >= lim) |
| 446 | 1631 goto stop; |
| 1632 | |
| 1633 while (this_len > 0) | |
| 1634 { | |
| 867 | 1635 Ichar pat_ch, buf_ch; |
| 446 | 1636 Bytecount pat_len; |
| 1637 | |
| 867 | 1638 pat_ch = itext_ichar (p); |
| 826 | 1639 buf_ch = BYTE_BUF_FETCH_CHAR (buf, this_pos); |
| 446 | 1640 |
| 1641 buf_ch = TRANSLATE (trt, buf_ch); | |
| 1642 | |
| 1643 if (buf_ch != pat_ch) | |
| 1644 break; | |
| 1645 | |
| 867 | 1646 pat_len = itext_ichar_len (p); |
| 446 | 1647 p += pat_len; |
| 1648 this_len -= pat_len; | |
| 826 | 1649 INC_BYTEBPOS (buf, this_pos); |
| 446 | 1650 } |
| 1651 if (this_len == 0) | |
| 428 | 1652 { |
| 826 | 1653 buf_len = this_pos - pos; |
| 1654 pos = this_pos; | |
| 446 | 1655 break; |
| 428 | 1656 } |
| 826 | 1657 INC_BYTEBPOS (buf, pos); |
| 428 | 1658 } |
| 446 | 1659 n--; |
| 1660 } | |
| 1661 else | |
|
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|
1662 { |
|
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|
1663 /* If lim < len, then there are too few buffer positions to hold the |
|
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|
1664 pattern between the beginning of the buffer and lim. Adjust to |
|
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|
1665 ensure pattern fits. If we don't do this, we can assert in the |
|
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|
1666 DEC_BYTEBPOS below. */ |
|
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|
1667 if (lim < len) |
|
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1668 lim = len; |
|
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1669 while (n < 0) |
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1670 { |
|
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1671 while (1) |
|
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1672 { |
|
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1673 Bytecount this_len = len; |
|
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1674 Bytebpos this_pos = pos; |
|
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1675 Ibyte *p; |
|
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1676 if (pos <= lim) |
|
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1677 goto stop; |
|
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1678 p = base_pat + len; |
|
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1679 |
|
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1680 while (this_len > 0) |
|
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1681 { |
|
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|
1682 Ichar pat_ch, buf_ch; |
|
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1683 |
|
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|
1684 DEC_IBYTEPTR (p); |
|
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|
1685 DEC_BYTEBPOS (buf, this_pos); |
|
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1686 pat_ch = itext_ichar (p); |
|
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1687 buf_ch = BYTE_BUF_FETCH_CHAR (buf, this_pos); |
|
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1688 |
|
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1689 buf_ch = TRANSLATE (trt, buf_ch); |
|
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1690 |
|
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1691 if (buf_ch != pat_ch) |
|
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1692 break; |
|
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1693 |
|
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1694 this_len -= itext_ichar_len (p); |
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1695 } |
|
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1696 if (this_len == 0) |
|
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1697 { |
|
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1698 buf_len = pos - this_pos; |
|
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1699 pos = this_pos; |
| 446 | 1700 break; |
|
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1701 } |
|
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1702 DEC_BYTEBPOS (buf, pos); |
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1703 } |
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1704 n++; |
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1705 } |
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|
1706 } |
| 446 | 1707 stop: |
| 1708 if (n == 0) | |
| 1709 { | |
| 665 | 1710 Charbpos beg, end, retval; |
| 446 | 1711 if (forward) |
| 1712 { | |
| 826 | 1713 beg = bytebpos_to_charbpos (buf, pos - buf_len); |
| 1714 retval = end = bytebpos_to_charbpos (buf, pos); | |
| 446 | 1715 } |
| 1716 else | |
| 428 | 1717 { |
| 826 | 1718 retval = beg = bytebpos_to_charbpos (buf, pos); |
| 1719 end = bytebpos_to_charbpos (buf, pos + buf_len); | |
| 428 | 1720 } |
| 446 | 1721 set_search_regs (buf, beg, end - beg); |
| 1722 | |
| 1723 return retval; | |
| 1724 } | |
| 1725 else if (n > 0) | |
| 1726 return -n; | |
| 1727 else | |
| 1728 return n; | |
| 1729 } | |
| 1730 | |
| 1731 /* Do Boyer-Moore search N times for the string PAT, | |
| 1732 whose length is LEN/LEN_BYTE, | |
| 1733 from buffer position POS/POS_BYTE until LIM/LIM_BYTE. | |
| 1734 DIRECTION says which direction we search in. | |
| 1735 TRT and INVERSE_TRT are translation tables. | |
| 1736 | |
| 1737 This kind of search works if all the characters in PAT that have | |
|
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|
1738 (non-ASCII) translation are the same aside from the last byte. This |
|
df576f30c1d8
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|
1739 makes it possible to translate just the last byte of a character, and do |
|
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parents:
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|
1740 so after just a simple test of the context. |
| 446 | 1741 |
|
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1742 If that criterion is not satisfied, do not call this function. You will |
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1743 get an assertion failure. */ |
| 446 | 1744 |
| 665 | 1745 static Charbpos |
| 867 | 1746 boyer_moore (struct buffer *buf, Ibyte *base_pat, Bytecount len, |
| 665 | 1747 Bytebpos pos, Bytebpos lim, EMACS_INT n, Lisp_Object trt, |
| 2333 | 1748 Lisp_Object inverse_trt, int USED_IF_MULE (charset_base)) |
| 446 | 1749 { |
| 1750 /* #### Someone really really really needs to comment the workings | |
| 1751 of this junk somewhat better. | |
| 1752 | |
| 1753 BTW "BM" stands for Boyer-Moore, which is one of the standard | |
| 1754 string-searching algorithms. It's the best string-searching | |
| 1755 algorithm out there, provided that: | |
| 1756 | |
| 1757 a) You're not fazed by algorithm complexity. (Rabin-Karp, which | |
| 1758 uses hashing, is much much easier to code but not as fast.) | |
| 1759 b) You can freely move backwards in the string that you're | |
| 1760 searching through. | |
| 1761 | |
| 1762 As the comment below tries to explain (but garbles in typical | |
| 1763 programmer-ese), the idea is that you don't have to do a | |
| 1764 string match at every successive position in the text. For | |
| 1765 example, let's say the pattern is "a very long string". We | |
| 1766 compare the last character in the string (`g') with the | |
| 1767 corresponding character in the text. If it mismatches, and | |
| 1768 it is, say, `z', then we can skip forward by the entire | |
| 1769 length of the pattern because `z' does not occur anywhere | |
| 1770 in the pattern. If the mismatching character does occur | |
| 1771 in the pattern, we can usually still skip forward by more | |
| 1772 than one: e.g. if it is `l', then we can skip forward | |
| 1773 by the length of the substring "ong string" -- i.e. the | |
| 1774 largest end section of the pattern that does not contain | |
| 1775 the mismatched character. So what we do is compute, for | |
| 1776 each possible character, the distance we can skip forward | |
| 1777 (the "stride") and use it in the string matching. This | |
| 1778 is what the BM_tab holds. */ | |
| 1779 REGISTER EMACS_INT *BM_tab; | |
| 1780 EMACS_INT *BM_tab_base; | |
| 1781 REGISTER Bytecount dirlen; | |
| 1782 EMACS_INT infinity; | |
| 665 | 1783 Bytebpos limit; |
| 446 | 1784 Bytecount stride_for_teases = 0; |
| 1785 REGISTER EMACS_INT i, j; | |
| 867 | 1786 Ibyte *pat, *pat_end; |
| 1787 REGISTER Ibyte *cursor, *p_limit, *ptr2; | |
| 1788 Ibyte simple_translate[0400]; | |
| 446 | 1789 REGISTER int direction = ((n > 0) ? 1 : -1); |
| 1790 #ifdef MULE | |
| 867 | 1791 Ibyte translate_prev_byte = 0; |
| 1792 Ibyte translate_anteprev_byte = 0; | |
|
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1793 /* These need to be rethought in the event that the internal format |
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1794 changes, or in the event that num_8_bit_fixed_chars disappears |
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1795 (entirely_one_byte_p can be trivially worked out by checking is the |
|
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1796 byte count equal to the char count.) */ |
|
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1797 int buffer_entirely_one_byte_p = buf->text->entirely_one_byte_p; |
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1798 int buffer_nothing_greater_than_0xff = |
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1799 buf->text->num_8_bit_fixed_chars == BUF_Z(buf) - BUF_BEG (buf); |
| 446 | 1800 #endif |
| 1801 #ifdef C_ALLOCA | |
| 1802 EMACS_INT BM_tab_space[0400]; | |
| 1803 BM_tab = &BM_tab_space[0]; | |
| 1804 #else | |
| 1805 BM_tab = alloca_array (EMACS_INT, 256); | |
| 1806 #endif | |
| 1807 | |
| 1808 /* The general approach is that we are going to maintain that we | |
| 1809 know the first (closest to the present position, in whatever | |
| 1810 direction we're searching) character that could possibly be | |
| 1811 the last (furthest from present position) character of a | |
| 1812 valid match. We advance the state of our knowledge by | |
| 1813 looking at that character and seeing whether it indeed | |
| 1814 matches the last character of the pattern. If it does, we | |
| 1815 take a closer look. If it does not, we move our pointer (to | |
| 1816 putative last characters) as far as is logically possible. | |
| 1817 This amount of movement, which I call a stride, will be the | |
| 1818 length of the pattern if the actual character appears nowhere | |
| 1819 in the pattern, otherwise it will be the distance from the | |
| 1820 last occurrence of that character to the end of the pattern. | |
| 1821 As a coding trick, an enormous stride is coded into the table | |
| 1822 for characters that match the last character. This allows | |
| 1823 use of only a single test, a test for having gone past the | |
| 1824 end of the permissible match region, to test for both | |
| 1825 possible matches (when the stride goes past the end | |
| 1826 immediately) and failure to match (where you get nudged past | |
| 1827 the end one stride at a time). | |
| 1828 | |
| 1829 Here we make a "mickey mouse" BM table. The stride of the | |
| 1830 search is determined only by the last character of the | |
| 1831 putative match. If that character does not match, we will | |
| 1832 stride the proper distance to propose a match that | |
| 1833 superimposes it on the last instance of a character that | |
| 1834 matches it (per trt), or misses it entirely if there is | |
| 1835 none. */ | |
| 1836 | |
| 1837 dirlen = len * direction; | |
| 1838 infinity = dirlen - (lim + pos + len + len) * direction; | |
| 1839 /* Record position after the end of the pattern. */ | |
| 1840 pat_end = base_pat + len; | |
| 1841 if (direction < 0) | |
| 1842 base_pat = pat_end - 1; | |
| 1843 BM_tab_base = BM_tab; | |
| 1844 BM_tab += 0400; | |
| 1845 j = dirlen; /* to get it in a register */ | |
| 1846 /* A character that does not appear in the pattern induces a | |
| 1847 stride equal to the pattern length. */ | |
| 1848 while (BM_tab_base != BM_tab) | |
| 1849 { | |
| 1850 *--BM_tab = j; | |
| 1851 *--BM_tab = j; | |
| 1852 *--BM_tab = j; | |
| 1853 *--BM_tab = j; | |
| 1854 } | |
| 1855 /* We use this for translation, instead of TRT itself. We | |
| 1856 fill this in to handle the characters that actually occur | |
| 1857 in the pattern. Others don't matter anyway! */ | |
| 1858 xzero (simple_translate); | |
| 1859 for (i = 0; i < 0400; i++) | |
| 867 | 1860 simple_translate[i] = (Ibyte) i; |
| 446 | 1861 i = 0; |
| 1425 | 1862 |
| 446 | 1863 while (i != infinity) |
| 1864 { | |
| 867 | 1865 Ibyte *ptr = base_pat + i; |
| 446 | 1866 i += direction; |
| 1867 if (i == dirlen) | |
| 1868 i = infinity; | |
| 1869 if (!NILP (trt)) | |
| 428 | 1870 { |
| 446 | 1871 #ifdef MULE |
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1872 Ichar ch = -1, untranslated; |
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1873 Ibyte byte; |
| 446 | 1874 int this_translated = 1; |
| 1875 | |
| 1876 /* Is *PTR the last byte of a character? */ | |
| 867 | 1877 if (pat_end - ptr == 1 || ibyte_first_byte_p (ptr[1])) |
| 428 | 1878 { |
| 867 | 1879 Ibyte *charstart = ptr; |
| 1880 while (!ibyte_first_byte_p (*charstart)) | |
| 446 | 1881 charstart--; |
| 867 | 1882 untranslated = itext_ichar (charstart); |
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1883 |
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1884 ch = TRANSLATE (trt, untranslated); |
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1885 if (!ibyte_first_byte_p (*ptr)) |
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1886 { |
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1887 translate_prev_byte = ptr[-1]; |
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1888 if (!ibyte_first_byte_p (translate_prev_byte)) |
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1889 translate_anteprev_byte = ptr[-2]; |
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1890 } |
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1891 |
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1892 if (ch != untranslated && /* Was translation done? */ |
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1893 charset_base != (ch & ~ICHAR_FIELD3_MASK)) |
|
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1894 { |
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1895 /* In the very rare event that the CANON entry for this |
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1896 character is not in the desired set, choose one that |
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1897 is, from the equivalence set. It doesn't much matter |
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1898 which, since we're building our own cheesy equivalence |
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1899 table instead of using that belonging to the case |
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1900 table directly. |
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1901 |
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1902 We can get here if search_buffer has worked out that |
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1903 the buffer is entirely single width. */ |
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1904 Ichar starting_ch = ch; |
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1905 int count = 0; |
|
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1906 do |
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1907 { |
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1908 ch = TRANSLATE (inverse_trt, ch); |
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1909 if (charset_base == (ch & ~ICHAR_FIELD3_MASK)) |
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1910 break; |
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1911 ++count; |
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1912 } while (starting_ch != ch); |
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1913 |
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1914 /* If starting_ch is equal to ch (and count is not one, |
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1915 which means no translation is necessary), the case |
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1916 table is corrupt. (Any mapping in the canon table |
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1917 should be reflected in the equivalence table, and we |
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1918 know from the canon table that untranslated maps to |
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1919 starting_ch and that untranslated has the correct value |
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1920 for charset_base.) */ |
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1921 assert (1 == count || starting_ch != ch); |
| 446 | 1922 } |
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1923 { |
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1924 Ibyte tmp[MAX_ICHAR_LEN]; |
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1925 Bytecount chlen; |
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1926 |
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1927 chlen = set_itext_ichar (tmp, ch); |
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1928 byte = tmp[chlen - 1]; |
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1929 } |
| 428 | 1930 } |
| 1931 else | |
| 1932 { | |
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1933 byte = *ptr; |
| 446 | 1934 this_translated = 0; |
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1935 ch = -1; |
| 446 | 1936 } |
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1937 |
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1938 /* BYTE = last byte of character CH when represented as text */ |
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1939 j = byte; |
| 446 | 1940 |
| 1941 if (i == infinity) | |
| 1942 stride_for_teases = BM_tab[j]; | |
| 1943 BM_tab[j] = dirlen - i; | |
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1944 /* A translation table is accompanied by its inverse -- see |
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1945 comment in casetab.c. */ |
| 446 | 1946 if (this_translated) |
| 1947 { | |
| 867 | 1948 Ichar starting_ch = ch; |
| 446 | 1949 EMACS_INT starting_j = j; |
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1950 |
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1951 text_checking_assert (valid_ichar_p (ch)); |
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1952 do |
| 446 | 1953 { |
| 1954 ch = TRANSLATE (inverse_trt, ch); | |
|
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1955 |
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1956 if (ch > 0x7F && buffer_entirely_one_byte_p) |
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1957 continue; |
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1958 |
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1959 if (ch > 0xFF && buffer_nothing_greater_than_0xff) |
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1960 continue; |
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1961 |
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1962 |
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1963 /* Retrieve last byte of character CH when represented as |
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1964 text */ |
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1965 { |
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1966 Ibyte tmp[MAX_ICHAR_LEN]; |
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1967 Bytecount chlen; |
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1968 |
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1969 chlen = set_itext_ichar (tmp, ch); |
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1970 j = tmp[chlen - 1]; |
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1971 } |
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1972 |
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1973 /* For all the characters that map into CH, set up |
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1974 simple_translate to map the last byte into |
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1975 STARTING_J. */ |
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1976 simple_translate[j] = (Ibyte) starting_j; |
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1977 BM_tab[j] = dirlen - i; |
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1978 |
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1979 } |
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1980 while (ch != starting_ch); |
| 446 | 1981 } |
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1982 #else /* not MULE */ |
| 446 | 1983 EMACS_INT k; |
| 1984 j = *ptr; | |
| 1985 k = (j = TRANSLATE (trt, j)); | |
| 1986 if (i == infinity) | |
| 1987 stride_for_teases = BM_tab[j]; | |
| 1988 BM_tab[j] = dirlen - i; | |
| 1989 /* A translation table is accompanied by its inverse -- | |
| 826 | 1990 see comment in casetab.c. */ |
| 446 | 1991 while ((j = TRANSLATE (inverse_trt, j)) != k) |
| 1992 { | |
| 867 | 1993 simple_translate[j] = (Ibyte) k; |
| 428 | 1994 BM_tab[j] = dirlen - i; |
| 1995 } | |
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1996 #endif /* (not) MULE */ |
| 446 | 1997 } |
| 1998 else | |
| 1999 { | |
| 2000 j = *ptr; | |
| 2001 | |
| 2002 if (i == infinity) | |
| 2003 stride_for_teases = BM_tab[j]; | |
| 2004 BM_tab[j] = dirlen - i; | |
| 428 | 2005 } |
| 446 | 2006 /* stride_for_teases tells how much to stride if we get a |
| 2007 match on the far character but are subsequently | |
| 2008 disappointed, by recording what the stride would have been | |
| 2009 for that character if the last character had been | |
| 2010 different. */ | |
| 2011 } | |
| 2012 infinity = dirlen - infinity; | |
| 2013 pos += dirlen - ((direction > 0) ? direction : 0); | |
| 2014 /* loop invariant - pos points at where last char (first char if | |
| 2015 reverse) of pattern would align in a possible match. */ | |
| 2016 while (n != 0) | |
| 2017 { | |
| 665 | 2018 Bytebpos tail_end; |
| 867 | 2019 Ibyte *tail_end_ptr; |
| 446 | 2020 /* It's been reported that some (broken) compiler thinks |
| 2021 that Boolean expressions in an arithmetic context are | |
| 2022 unsigned. Using an explicit ?1:0 prevents this. */ | |
| 2023 if ((lim - pos - ((direction > 0) ? 1 : 0)) * direction < 0) | |
| 2024 return n * (0 - direction); | |
| 2025 /* First we do the part we can by pointers (maybe | |
| 2026 nothing) */ | |
| 2027 QUIT; | |
| 2028 pat = base_pat; | |
| 2029 limit = pos - dirlen + direction; | |
| 2030 /* XEmacs change: definitions of CEILING_OF and FLOOR_OF | |
| 2031 have changed. See buffer.h. */ | |
| 2032 limit = ((direction > 0) | |
| 826 | 2033 ? BYTE_BUF_CEILING_OF (buf, limit) - 1 |
| 2034 : BYTE_BUF_FLOOR_OF (buf, limit + 1)); | |
| 446 | 2035 /* LIMIT is now the last (not beyond-last!) value POS can |
| 2036 take on without hitting edge of buffer or the gap. */ | |
| 2037 limit = ((direction > 0) | |
| 2038 ? min (lim - 1, min (limit, pos + 20000)) | |
| 2039 : max (lim, max (limit, pos - 20000))); | |
| 826 | 2040 tail_end = BYTE_BUF_CEILING_OF (buf, pos); |
| 2041 tail_end_ptr = BYTE_BUF_BYTE_ADDRESS (buf, tail_end); | |
| 446 | 2042 |
| 2043 if ((limit - pos) * direction > 20) | |
| 428 | 2044 { |
| 826 | 2045 /* We have to be careful because the code can generate addresses |
| 2046 that don't point to the beginning of characters. */ | |
| 2047 p_limit = BYTE_BUF_BYTE_ADDRESS_NO_VERIFY (buf, limit); | |
| 2048 ptr2 = (cursor = BYTE_BUF_BYTE_ADDRESS_NO_VERIFY (buf, pos)); | |
| 446 | 2049 /* In this loop, pos + cursor - ptr2 is the surrogate |
| 2050 for pos */ | |
| 2051 while (1) /* use one cursor setting as long as i can */ | |
| 2052 { | |
| 2053 if (direction > 0) /* worth duplicating */ | |
| 2054 { | |
| 2055 /* Use signed comparison if appropriate to make | |
| 2056 cursor+infinity sure to be > p_limit. | |
| 2057 Assuming that the buffer lies in a range of | |
| 2058 addresses that are all "positive" (as ints) | |
| 2059 or all "negative", either kind of comparison | |
| 2060 will work as long as we don't step by | |
| 2061 infinity. So pick the kind that works when | |
| 2062 we do step by infinity. */ | |
| 2063 if ((EMACS_INT) (p_limit + infinity) > | |
| 2064 (EMACS_INT) p_limit) | |
| 2065 while ((EMACS_INT) cursor <= | |
| 2066 (EMACS_INT) p_limit) | |
| 2067 cursor += BM_tab[*cursor]; | |
| 2068 else | |
| 2069 while ((EMACS_UINT) cursor <= | |
| 2070 (EMACS_UINT) p_limit) | |
| 2071 cursor += BM_tab[*cursor]; | |
| 2072 } | |
| 2073 else | |
| 2074 { | |
| 2075 if ((EMACS_INT) (p_limit + infinity) < | |
| 2076 (EMACS_INT) p_limit) | |
| 2077 while ((EMACS_INT) cursor >= | |
| 2078 (EMACS_INT) p_limit) | |
| 2079 cursor += BM_tab[*cursor]; | |
| 2080 else | |
| 2081 while ((EMACS_UINT) cursor >= | |
| 2082 (EMACS_UINT) p_limit) | |
| 2083 cursor += BM_tab[*cursor]; | |
| 2084 } | |
| 2085 /* If you are here, cursor is beyond the end of the | |
| 2086 searched region. This can happen if you match on | |
| 2087 the far character of the pattern, because the | |
| 2088 "stride" of that character is infinity, a number | |
| 2089 able to throw you well beyond the end of the | |
| 2090 search. It can also happen if you fail to match | |
| 2091 within the permitted region and would otherwise | |
| 2092 try a character beyond that region */ | |
| 2093 if ((cursor - p_limit) * direction <= len) | |
| 2094 break; /* a small overrun is genuine */ | |
| 2095 cursor -= infinity; /* large overrun = hit */ | |
| 2096 i = dirlen - direction; | |
| 2097 if (!NILP (trt)) | |
| 2098 { | |
| 2099 while ((i -= direction) + direction != 0) | |
| 2100 { | |
| 2101 #ifdef MULE | |
| 867 | 2102 Ichar ch; |
| 446 | 2103 cursor -= direction; |
| 2104 /* Translate only the last byte of a character. */ | |
| 2105 if ((cursor == tail_end_ptr | |
| 867 | 2106 || ibyte_first_byte_p (cursor[1])) |
| 2107 && (ibyte_first_byte_p (cursor[0]) | |
| 446 | 2108 || (translate_prev_byte == cursor[-1] |
| 867 | 2109 && (ibyte_first_byte_p (translate_prev_byte) |
| 446 | 2110 || translate_anteprev_byte == cursor[-2])))) |
| 2111 ch = simple_translate[*cursor]; | |
| 2112 else | |
| 2113 ch = *cursor; | |
| 2114 if (pat[i] != ch) | |
| 2115 break; | |
| 2116 #else | |
| 2117 if (pat[i] != TRANSLATE (trt, *(cursor -= direction))) | |
| 2118 break; | |
| 2119 #endif | |
| 2120 } | |
| 2121 } | |
| 2122 else | |
| 2123 { | |
| 2124 while ((i -= direction) + direction != 0) | |
| 2125 if (pat[i] != *(cursor -= direction)) | |
| 2126 break; | |
| 2127 } | |
| 2128 cursor += dirlen - i - direction; /* fix cursor */ | |
| 2129 if (i + direction == 0) | |
| 2130 { | |
| 2131 cursor -= direction; | |
| 2132 | |
| 2133 { | |
| 665 | 2134 Bytebpos bytstart = (pos + cursor - ptr2 + |
| 446 | 2135 ((direction > 0) |
| 2136 ? 1 - len : 0)); | |
| 665 | 2137 Charbpos bufstart = bytebpos_to_charbpos (buf, bytstart); |
| 2138 Charbpos bufend = bytebpos_to_charbpos (buf, bytstart + len); | |
| 446 | 2139 |
| 2140 set_search_regs (buf, bufstart, bufend - bufstart); | |
| 2141 } | |
| 2142 | |
| 2143 if ((n -= direction) != 0) | |
| 2144 cursor += dirlen; /* to resume search */ | |
| 2145 else | |
| 2146 return ((direction > 0) | |
| 2147 ? search_regs.end[0] : search_regs.start[0]); | |
| 2148 } | |
| 2149 else | |
| 2150 cursor += stride_for_teases; /* <sigh> we lose - */ | |
| 2151 } | |
| 2152 pos += cursor - ptr2; | |
| 2153 } | |
| 2154 else | |
| 2155 /* Now we'll pick up a clump that has to be done the hard | |
| 2156 way because it covers a discontinuity */ | |
| 2157 { | |
| 428 | 2158 /* XEmacs change: definitions of CEILING_OF and FLOOR_OF |
| 2159 have changed. See buffer.h. */ | |
| 2160 limit = ((direction > 0) | |
| 826 | 2161 ? BYTE_BUF_CEILING_OF (buf, pos - dirlen + 1) - 1 |
| 2162 : BYTE_BUF_FLOOR_OF (buf, pos - dirlen)); | |
| 428 | 2163 limit = ((direction > 0) |
| 446 | 2164 ? min (limit + len, lim - 1) |
| 2165 : max (limit - len, lim)); | |
| 2166 /* LIMIT is now the last value POS can have | |
| 2167 and still be valid for a possible match. */ | |
| 2168 while (1) | |
| 428 | 2169 { |
| 446 | 2170 /* This loop can be coded for space rather than |
| 2171 speed because it will usually run only once. | |
| 2172 (the reach is at most len + 21, and typically | |
| 2173 does not exceed len) */ | |
| 2174 while ((limit - pos) * direction >= 0) | |
| 826 | 2175 /* *not* BYTE_BUF_FETCH_CHAR. We are working here |
| 446 | 2176 with bytes, not characters. */ |
| 826 | 2177 pos += BM_tab[*BYTE_BUF_BYTE_ADDRESS_NO_VERIFY (buf, pos)]; |
| 446 | 2178 /* now run the same tests to distinguish going off |
| 2179 the end, a match or a phony match. */ | |
| 2180 if ((pos - limit) * direction <= len) | |
| 2181 break; /* ran off the end */ | |
| 2182 /* Found what might be a match. | |
| 2183 Set POS back to last (first if reverse) char pos. */ | |
| 2184 pos -= infinity; | |
| 2185 i = dirlen - direction; | |
| 2186 while ((i -= direction) + direction != 0) | |
| 428 | 2187 { |
| 446 | 2188 #ifdef MULE |
| 867 | 2189 Ichar ch; |
| 2190 Ibyte *ptr; | |
| 446 | 2191 #endif |
| 2192 pos -= direction; | |
| 2193 #ifdef MULE | |
| 826 | 2194 ptr = BYTE_BUF_BYTE_ADDRESS_NO_VERIFY (buf, pos); |
| 446 | 2195 if ((ptr == tail_end_ptr |
| 867 | 2196 || ibyte_first_byte_p (ptr[1])) |
| 2197 && (ibyte_first_byte_p (ptr[0]) | |
| 446 | 2198 || (translate_prev_byte == ptr[-1] |
| 867 | 2199 && (ibyte_first_byte_p (translate_prev_byte) |
| 446 | 2200 || translate_anteprev_byte == ptr[-2])))) |
| 2201 ch = simple_translate[*ptr]; | |
| 428 | 2202 else |
| 446 | 2203 ch = *ptr; |
| 2204 if (pat[i] != ch) | |
| 2205 break; | |
| 2206 | |
| 2207 #else | |
| 826 | 2208 if (pat[i] != |
| 2209 TRANSLATE (trt, | |
| 2210 *BYTE_BUF_BYTE_ADDRESS_NO_VERIFY (buf, pos))) | |
| 446 | 2211 break; |
| 2212 #endif | |
| 428 | 2213 } |
| 446 | 2214 /* Above loop has moved POS part or all the way back |
| 2215 to the first char pos (last char pos if reverse). | |
| 2216 Set it once again at the last (first if reverse) | |
| 2217 char. */ | |
| 2218 pos += dirlen - i- direction; | |
| 2219 if (i + direction == 0) | |
| 428 | 2220 { |
| 446 | 2221 pos -= direction; |
| 2222 | |
| 2223 { | |
| 665 | 2224 Bytebpos bytstart = (pos + |
| 446 | 2225 ((direction > 0) |
| 2226 ? 1 - len : 0)); | |
| 665 | 2227 Charbpos bufstart = bytebpos_to_charbpos (buf, bytstart); |
| 2228 Charbpos bufend = bytebpos_to_charbpos (buf, bytstart + len); | |
| 446 | 2229 |
| 2230 set_search_regs (buf, bufstart, bufend - bufstart); | |
| 2231 } | |
| 2232 | |
| 2233 if ((n -= direction) != 0) | |
| 2234 pos += dirlen; /* to resume search */ | |
| 428 | 2235 else |
| 446 | 2236 return ((direction > 0) |
| 2237 ? search_regs.end[0] : search_regs.start[0]); | |
| 428 | 2238 } |
| 446 | 2239 else |
| 2240 pos += stride_for_teases; | |
| 2241 } | |
| 428 | 2242 } |
| 446 | 2243 /* We have done one clump. Can we continue? */ |
| 2244 if ((lim - pos) * direction < 0) | |
| 2245 return (0 - n) * direction; | |
| 428 | 2246 } |
| 665 | 2247 return bytebpos_to_charbpos (buf, pos); |
| 428 | 2248 } |
| 2249 | |
| 1024 | 2250 /* Record the whole-match data (beginning BEG and end BEG + LEN) and the |
| 2251 buffer for a match just found. */ | |
| 428 | 2252 |
| 2253 static void | |
| 665 | 2254 set_search_regs (struct buffer *buf, Charbpos beg, Charcount len) |
| 428 | 2255 { |
| 2256 /* Make sure we have registers in which to store | |
| 2257 the match position. */ | |
| 2258 if (search_regs.num_regs == 0) | |
| 2259 { | |
| 2260 search_regs.start = xnew (regoff_t); | |
| 2261 search_regs.end = xnew (regoff_t); | |
| 2262 search_regs.num_regs = 1; | |
| 2263 } | |
| 2264 | |
| 1468 | 2265 clear_search_regs (); |
| 428 | 2266 search_regs.start[0] = beg; |
| 2267 search_regs.end[0] = beg + len; | |
| 793 | 2268 last_thing_searched = wrap_buffer (buf); |
| 428 | 2269 } |
| 2270 | |
| 1468 | 2271 /* Clear search registers so match data will be null. */ |
| 1024 | 2272 |
| 2273 static void | |
| 1468 | 2274 clear_search_regs (void) |
| 1024 | 2275 { |
| 2276 /* This function has been Mule-ized. */ | |
| 2277 int i; | |
| 2278 | |
| 1468 | 2279 for (i = 0; i < search_regs.num_regs; i++) |
| 2280 search_regs.start[i] = search_regs.end[i] = -1; | |
| 1024 | 2281 } |
| 2282 | |
| 428 | 2283 |
| 2284 /* Given a string of words separated by word delimiters, | |
| 442 | 2285 compute a regexp that matches those exact words |
| 2286 separated by arbitrary punctuation. */ | |
| 428 | 2287 |
| 2288 static Lisp_Object | |
| 2289 wordify (Lisp_Object buffer, Lisp_Object string) | |
| 2290 { | |
| 2291 Charcount i, len; | |
| 2292 EMACS_INT punct_count = 0, word_count = 0; | |
| 2293 struct buffer *buf = decode_buffer (buffer, 0); | |
| 826 | 2294 Lisp_Object syntax_table = buf->mirror_syntax_table; |
| 428 | 2295 |
| 2296 CHECK_STRING (string); | |
| 826 | 2297 len = string_char_length (string); |
| 428 | 2298 |
| 2299 for (i = 0; i < len; i++) | |
| 867 | 2300 if (!WORD_SYNTAX_P (syntax_table, string_ichar (string, i))) |
| 428 | 2301 { |
| 2302 punct_count++; | |
| 2303 if (i > 0 && WORD_SYNTAX_P (syntax_table, | |
| 867 | 2304 string_ichar (string, i - 1))) |
| 428 | 2305 word_count++; |
| 2306 } | |
| 867 | 2307 if (WORD_SYNTAX_P (syntax_table, string_ichar (string, len - 1))) |
| 428 | 2308 word_count++; |
|
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4421
diff
changeset
|
2309 if (!word_count) return build_ascstring (""); |
| 428 | 2310 |
| 2311 { | |
| 2312 /* The following value is an upper bound on the amount of storage we | |
| 2313 need. In non-Mule, it is exact. */ | |
| 867 | 2314 Ibyte *storage = |
| 2367 | 2315 alloca_ibytes (XSTRING_LENGTH (string) - punct_count + |
| 428 | 2316 5 * (word_count - 1) + 4); |
| 867 | 2317 Ibyte *o = storage; |
| 428 | 2318 |
| 2319 *o++ = '\\'; | |
| 2320 *o++ = 'b'; | |
| 2321 | |
| 2322 for (i = 0; i < len; i++) | |
| 2323 { | |
| 867 | 2324 Ichar ch = string_ichar (string, i); |
| 428 | 2325 |
| 2326 if (WORD_SYNTAX_P (syntax_table, ch)) | |
| 867 | 2327 o += set_itext_ichar (o, ch); |
| 428 | 2328 else if (i > 0 |
| 2329 && WORD_SYNTAX_P (syntax_table, | |
| 867 | 2330 string_ichar (string, i - 1)) |
| 428 | 2331 && --word_count) |
| 2332 { | |
| 2333 *o++ = '\\'; | |
| 2334 *o++ = 'W'; | |
| 2335 *o++ = '\\'; | |
| 2336 *o++ = 'W'; | |
| 2337 *o++ = '*'; | |
| 2338 } | |
| 2339 } | |
| 2340 | |
| 2341 *o++ = '\\'; | |
| 2342 *o++ = 'b'; | |
| 2343 | |
| 2344 return make_string (storage, o - storage); | |
| 2345 } | |
| 2346 } | |
| 2347 | |
| 2348 DEFUN ("search-backward", Fsearch_backward, 1, 5, "sSearch backward: ", /* | |
| 2349 Search backward from point for STRING. | |
| 2350 Set point to the beginning of the occurrence found, and return point. | |
| 444 | 2351 |
| 2352 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2353 position. The match found must not extend before that position. | |
| 2354 The value nil is equivalent to (point-min). | |
| 2355 | |
| 2356 Optional third argument NOERROR, if t, means just return nil (no | |
| 2357 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2358 and return nil. | |
| 2359 | |
| 2360 Optional fourth argument COUNT is a repeat count--search for | |
| 2361 successive occurrences. | |
| 2362 | |
| 428 | 2363 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2364 defaults to the current buffer. |
| 2365 | |
| 1468 | 2366 When the match is successful, this function modifies the match data |
| 2367 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2368 match data with `match-data' and restore it with `store-match-data' if | |
| 2369 you want to preserve them. If the match fails, the match data from the | |
| 2370 previous success match is preserved. | |
| 2371 | |
| 2372 See also the function `replace-match'. | |
| 428 | 2373 */ |
| 444 | 2374 (string, limit, noerror, count, buffer)) |
| 428 | 2375 { |
| 444 | 2376 return search_command (string, limit, noerror, count, buffer, -1, 0, 0); |
| 428 | 2377 } |
| 2378 | |
| 2379 DEFUN ("search-forward", Fsearch_forward, 1, 5, "sSearch: ", /* | |
| 2380 Search forward from point for STRING. | |
| 2381 Set point to the end of the occurrence found, and return point. | |
| 444 | 2382 |
| 2383 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2384 position. The match found must not extend after that position. The | |
| 2385 value nil is equivalent to (point-max). | |
| 2386 | |
| 2387 Optional third argument NOERROR, if t, means just return nil (no | |
| 2388 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2389 and return nil. | |
| 2390 | |
| 2391 Optional fourth argument COUNT is a repeat count--search for | |
| 2392 successive occurrences. | |
| 2393 | |
| 428 | 2394 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2395 defaults to the current buffer. |
| 2396 | |
| 1468 | 2397 When the match is successful, this function modifies the match data |
| 2398 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2399 match data with `match-data' and restore it with `store-match-data' if | |
| 2400 you want to preserve them. If the match fails, the match data from the | |
| 2401 previous success match is preserved. | |
| 2402 | |
| 2403 See also the function `replace-match'. | |
| 428 | 2404 */ |
| 444 | 2405 (string, limit, noerror, count, buffer)) |
| 428 | 2406 { |
| 444 | 2407 return search_command (string, limit, noerror, count, buffer, 1, 0, 0); |
| 428 | 2408 } |
| 2409 | |
| 2410 DEFUN ("word-search-backward", Fword_search_backward, 1, 5, | |
| 2411 "sWord search backward: ", /* | |
| 2412 Search backward from point for STRING, ignoring differences in punctuation. | |
| 2413 Set point to the beginning of the occurrence found, and return point. | |
| 444 | 2414 |
| 2415 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2416 position. The match found must not extend before that position. | |
| 2417 The value nil is equivalent to (point-min). | |
| 2418 | |
| 2419 Optional third argument NOERROR, if t, means just return nil (no | |
| 2420 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2421 and return nil. | |
| 2422 | |
| 2423 Optional fourth argument COUNT is a repeat count--search for | |
| 2424 successive occurrences. | |
| 2425 | |
| 428 | 2426 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2427 defaults to the current buffer. |
| 2428 | |
| 1468 | 2429 When the match is successful, this function modifies the match data |
| 2430 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2431 match data with `match-data' and restore it with `store-match-data' if | |
| 2432 you want to preserve them. If the match fails, the match data from the | |
| 2433 previous success match is preserved. | |
| 2434 | |
| 2435 See also the function `replace-match'. | |
| 428 | 2436 */ |
| 444 | 2437 (string, limit, noerror, count, buffer)) |
| 428 | 2438 { |
| 444 | 2439 return search_command (wordify (buffer, string), limit, noerror, count, |
| 428 | 2440 buffer, -1, 1, 0); |
| 2441 } | |
| 2442 | |
| 2443 DEFUN ("word-search-forward", Fword_search_forward, 1, 5, "sWord search: ", /* | |
| 2444 Search forward from point for STRING, ignoring differences in punctuation. | |
| 2445 Set point to the end of the occurrence found, and return point. | |
| 444 | 2446 |
| 2447 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2448 position. The match found must not extend after that position. The | |
| 2449 value nil is equivalent to (point-max). | |
| 2450 | |
| 2451 Optional third argument NOERROR, if t, means just return nil (no | |
| 2452 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2453 and return nil. | |
| 2454 | |
| 2455 Optional fourth argument COUNT is a repeat count--search for | |
| 2456 successive occurrences. | |
| 2457 | |
| 428 | 2458 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2459 defaults to the current buffer. |
| 2460 | |
| 1468 | 2461 When the match is successful, this function modifies the match data |
| 2462 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2463 match data with `match-data' and restore it with `store-match-data' if | |
| 2464 you want to preserve them. If the match fails, the match data from the | |
| 2465 previous success match is preserved. | |
| 2466 | |
| 2467 See also the function `replace-match'. | |
| 428 | 2468 */ |
| 444 | 2469 (string, limit, noerror, count, buffer)) |
| 428 | 2470 { |
| 444 | 2471 return search_command (wordify (buffer, string), limit, noerror, count, |
| 428 | 2472 buffer, 1, 1, 0); |
| 2473 } | |
| 2474 | |
| 2475 DEFUN ("re-search-backward", Fre_search_backward, 1, 5, | |
| 2476 "sRE search backward: ", /* | |
| 2477 Search backward from point for match for regular expression REGEXP. | |
| 2478 Set point to the beginning of the match, and return point. | |
| 2479 The match found is the one starting last in the buffer | |
| 2480 and yet ending before the origin of the search. | |
| 444 | 2481 |
| 2482 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2483 position. The match found must not extend before that position. | |
| 2484 The value nil is equivalent to (point-min). | |
| 2485 | |
| 2486 Optional third argument NOERROR, if t, means just return nil (no | |
| 2487 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2488 and return nil. | |
| 2489 | |
| 2490 Optional fourth argument COUNT is a repeat count--search for | |
| 2491 successive occurrences. | |
| 2492 | |
| 428 | 2493 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2494 defaults to the current buffer. |
| 2495 | |
| 1468 | 2496 When the match is successful, this function modifies the match data |
| 2497 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2498 match data with `match-data' and restore it with `store-match-data' if | |
| 2499 you want to preserve them. If the match fails, the match data from the | |
| 2500 previous success match is preserved. | |
| 2501 | |
| 2502 See also the function `replace-match'. | |
| 428 | 2503 */ |
| 444 | 2504 (regexp, limit, noerror, count, buffer)) |
| 428 | 2505 { |
| 444 | 2506 return search_command (regexp, limit, noerror, count, buffer, -1, 1, 0); |
| 428 | 2507 } |
| 2508 | |
| 2509 DEFUN ("re-search-forward", Fre_search_forward, 1, 5, "sRE search: ", /* | |
| 2510 Search forward from point for regular expression REGEXP. | |
| 2511 Set point to the end of the occurrence found, and return point. | |
| 444 | 2512 |
| 2513 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2514 position. The match found must not extend after that position. The | |
| 2515 value nil is equivalent to (point-max). | |
| 2516 | |
| 2517 Optional third argument NOERROR, if t, means just return nil (no | |
| 2518 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2519 and return nil. | |
| 2520 | |
| 2521 Optional fourth argument COUNT is a repeat count--search for | |
| 2522 successive occurrences. | |
| 2523 | |
| 428 | 2524 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2525 defaults to the current buffer. |
| 2526 | |
| 1468 | 2527 When the match is successful, this function modifies the match data |
| 2528 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2529 match data with `match-data' and restore it with `store-match-data' if | |
| 2530 you want to preserve them. If the match fails, the match data from the | |
| 2531 previous success match is preserved. | |
| 2532 | |
| 2533 See also the function `replace-match'. | |
| 428 | 2534 */ |
| 444 | 2535 (regexp, limit, noerror, count, buffer)) |
| 428 | 2536 { |
| 444 | 2537 return search_command (regexp, limit, noerror, count, buffer, 1, 1, 0); |
| 428 | 2538 } |
| 2539 | |
| 2540 DEFUN ("posix-search-backward", Fposix_search_backward, 1, 5, | |
| 2541 "sPosix search backward: ", /* | |
| 2542 Search backward from point for match for regular expression REGEXP. | |
| 2543 Find the longest match in accord with Posix regular expression rules. | |
| 2544 Set point to the beginning of the match, and return point. | |
| 2545 The match found is the one starting last in the buffer | |
| 2546 and yet ending before the origin of the search. | |
| 444 | 2547 |
| 2548 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2549 position. The match found must not extend before that position. | |
| 2550 The value nil is equivalent to (point-min). | |
| 2551 | |
| 2552 Optional third argument NOERROR, if t, means just return nil (no | |
| 2553 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2554 and return nil. | |
| 2555 | |
| 2556 Optional fourth argument COUNT is a repeat count--search for | |
| 2557 successive occurrences. | |
| 2558 | |
| 428 | 2559 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2560 defaults to the current buffer. |
| 2561 | |
| 1468 | 2562 When the match is successful, this function modifies the match data |
| 2563 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2564 match data with `match-data' and restore it with `store-match-data' if | |
| 2565 you want to preserve them. If the match fails, the match data from the | |
| 2566 previous success match is preserved. | |
| 2567 | |
| 2568 See also the function `replace-match'. | |
| 428 | 2569 */ |
| 444 | 2570 (regexp, limit, noerror, count, buffer)) |
| 428 | 2571 { |
| 444 | 2572 return search_command (regexp, limit, noerror, count, buffer, -1, 1, 1); |
| 428 | 2573 } |
| 2574 | |
| 2575 DEFUN ("posix-search-forward", Fposix_search_forward, 1, 5, "sPosix search: ", /* | |
| 2576 Search forward from point for regular expression REGEXP. | |
| 2577 Find the longest match in accord with Posix regular expression rules. | |
| 2578 Set point to the end of the occurrence found, and return point. | |
| 444 | 2579 |
| 2580 Optional second argument LIMIT bounds the search; it is a buffer | |
| 2581 position. The match found must not extend after that position. The | |
| 2582 value nil is equivalent to (point-max). | |
| 2583 | |
| 2584 Optional third argument NOERROR, if t, means just return nil (no | |
| 2585 error) if the search fails. If neither nil nor t, set point to LIMIT | |
| 2586 and return nil. | |
| 2587 | |
| 2588 Optional fourth argument COUNT is a repeat count--search for | |
| 2589 successive occurrences. | |
| 2590 | |
| 428 | 2591 Optional fifth argument BUFFER specifies the buffer to search in and |
| 444 | 2592 defaults to the current buffer. |
| 2593 | |
| 1468 | 2594 When the match is successful, this function modifies the match data |
| 2595 that `match-beginning', `match-end' and `match-data' access; save the | |
| 2596 match data with `match-data' and restore it with `store-match-data' if | |
| 2597 you want to preserve them. If the match fails, the match data from the | |
| 2598 previous success match is preserved. | |
| 2599 | |
| 2600 See also the function `replace-match'. | |
| 428 | 2601 */ |
| 444 | 2602 (regexp, limit, noerror, count, buffer)) |
| 428 | 2603 { |
| 444 | 2604 return search_command (regexp, limit, noerror, count, buffer, 1, 1, 1); |
| 428 | 2605 } |
| 2606 | |
| 2607 | |
| 2608 static Lisp_Object | |
| 2609 free_created_dynarrs (Lisp_Object cons) | |
| 2610 { | |
| 2611 Dynarr_free (get_opaque_ptr (XCAR (cons))); | |
| 2612 Dynarr_free (get_opaque_ptr (XCDR (cons))); | |
| 2613 free_opaque_ptr (XCAR (cons)); | |
| 2614 free_opaque_ptr (XCDR (cons)); | |
| 853 | 2615 free_cons (cons); |
| 428 | 2616 return Qnil; |
| 2617 } | |
| 2618 | |
| 2619 DEFUN ("replace-match", Freplace_match, 1, 5, 0, /* | |
| 444 | 2620 Replace text matched by last search with REPLACEMENT. |
| 4199 | 2621 Leaves point at end of replacement text. |
| 2622 Optional boolean FIXEDCASE inhibits matching case of REPLACEMENT to source. | |
| 2623 Optional boolean LITERAL inhibits interpretation of escape sequences. | |
| 2624 Optional STRING provides the source text to replace. | |
| 2625 Optional STRBUFFER may be a buffer, providing match context, or an integer | |
| 2626 specifying the subexpression to replace. | |
| 2627 | |
| 2628 If FIXEDCASE is non-nil, do not alter case of replacement text. | |
| 428 | 2629 Otherwise maybe capitalize the whole text, or maybe just word initials, |
| 2630 based on the replaced text. | |
| 4199 | 2631 If the replaced text has only capital letters and has at least one |
| 2632 multiletter word, convert REPLACEMENT to all caps. | |
| 428 | 2633 If the replaced text has at least one word starting with a capital letter, |
| 444 | 2634 then capitalize each word in REPLACEMENT. |
| 428 | 2635 |
| 4199 | 2636 If LITERAL is non-nil, insert REPLACEMENT literally. |
| 428 | 2637 Otherwise treat `\\' as special: |
| 444 | 2638 `\\&' in REPLACEMENT means substitute original matched text. |
| 428 | 2639 `\\N' means substitute what matched the Nth `\\(...\\)'. |
| 2640 If Nth parens didn't match, substitute nothing. | |
| 2641 `\\\\' means insert one `\\'. | |
| 2642 `\\u' means upcase the next character. | |
| 2643 `\\l' means downcase the next character. | |
| 2644 `\\U' means begin upcasing all following characters. | |
| 2645 `\\L' means begin downcasing all following characters. | |
| 2646 `\\E' means terminate the effect of any `\\U' or `\\L'. | |
| 2647 Case changes made with `\\u', `\\l', `\\U', and `\\L' override | |
| 2648 all other case changes that may be made in the replaced text. | |
| 4199 | 2649 |
| 2650 If non-nil, STRING is the source string, and a new string with the specified | |
| 2651 replacements is created and returned. Otherwise the current buffer is the | |
| 2652 source text. | |
| 2653 | |
| 2654 If non-nil, STRBUFFER may be an integer, interpreted as the index of the | |
| 2655 subexpression to replace in the source text, or a buffer to provide the | |
| 2656 syntax table and case table. If nil, then the \"subexpression\" is 0, i.e., | |
| 2657 the whole match, and the current buffer provides the syntax and case tables. | |
| 2658 If STRING is nil, STRBUFFER must be nil or an integer. | |
| 2659 | |
| 2660 Specifying a subexpression is only useful after a regular expression match, | |
| 2661 since a fixed string search has no non-trivial subexpressions. | |
| 2662 | |
| 2663 It is not possible to specify both a buffer and a subexpression. If that is | |
| 2664 desired, the idiom `(with-current-buffer BUFFER (replace-match ... INTEGER))' | |
| 2665 may be appropriate. | |
| 2666 | |
| 2667 If STRING is nil but the last thing matched (or searched) was a string, or | |
| 2668 STRING is a string but the last thing matched was a buffer, an | |
| 2669 `invalid-argument' error will be signaled. (XEmacs does not check that the | |
| 2670 last thing searched is the source string, but it is not useful to use a | |
| 2671 different string as source.) | |
| 2672 | |
| 2673 If no match (including searches) has been successful or the requested | |
| 1468 | 2674 subexpression was not matched, an `args-out-of-range' error will be |
| 2675 signaled. (If no match has ever been conducted in this instance of | |
| 2676 XEmacs, an `invalid-operation' error will be signaled. This is very | |
| 2677 rare.) | |
| 428 | 2678 */ |
| 444 | 2679 (replacement, fixedcase, literal, string, strbuffer)) |
| 428 | 2680 { |
| 2681 /* This function can GC */ | |
| 2682 enum { nochange, all_caps, cap_initial } case_action; | |
| 665 | 2683 Charbpos pos, last; |
| 428 | 2684 int some_multiletter_word; |
| 2685 int some_lowercase; | |
| 2686 int some_uppercase; | |
| 2687 int some_nonuppercase_initial; | |
| 867 | 2688 Ichar c, prevc; |
| 428 | 2689 Charcount inslen; |
| 2690 struct buffer *buf; | |
| 826 | 2691 Lisp_Object syntax_table; |
| 428 | 2692 int mc_count; |
| 2693 Lisp_Object buffer; | |
| 2694 int_dynarr *ul_action_dynarr = 0; | |
| 2695 int_dynarr *ul_pos_dynarr = 0; | |
| 502 | 2696 int sub = 0; |
| 428 | 2697 int speccount; |
| 2698 | |
| 444 | 2699 CHECK_STRING (replacement); |
| 428 | 2700 |
| 4199 | 2701 /* Because GNU decided to be incompatible here, we support the following |
| 2702 baroque and bogus API for the STRING and STRBUFFER arguments: | |
| 2703 types interpretations | |
| 2704 STRING STRBUFFER STRING STRBUFFER | |
| 2705 nil nil none 0 = index of subexpression to replace | |
| 2706 nil integer none index of subexpression to replace | |
| 2707 nil other ***** error ***** | |
| 2708 string nil source current buffer provides syntax table | |
| 2709 subexpression = 0 (whole match) | |
| 2710 string buffer source buffer providing syntax table | |
| 2711 subexpression = 0 (whole match) | |
| 2712 string integer source current buffer provides syntax table | |
| 2713 subexpression = STRBUFFER | |
| 2714 string other ***** error ***** | |
| 2715 */ | |
| 2716 | |
| 2717 /* Do STRBUFFER first; if STRING is nil, we'll overwrite BUF and BUFFER. */ | |
| 2718 | |
| 2719 /* If the match data were abstracted into a special "match data" type | |
| 2720 instead of the typical half-assed "let the implementation be visible" | |
| 2721 form it's in, we could extend it to include the last string matched | |
| 2722 and the buffer used for that matching. But of course we can't change | |
| 2723 it as it is. | |
| 2724 */ | |
| 2725 if (NILP (strbuffer) || BUFFERP (strbuffer)) | |
| 2726 { | |
| 2727 buf = decode_buffer (strbuffer, 0); | |
| 2728 } | |
| 2729 else if (!NILP (strbuffer)) | |
| 2730 { | |
|
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diff
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|
2731 CHECK_FIXNUM (strbuffer); |
|
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Mechanically change INT to FIXNUM in our sources.
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diff
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|
2732 sub = XFIXNUM (strbuffer); |
| 4199 | 2733 if (sub < 0 || sub >= (int) search_regs.num_regs) |
| 2734 invalid_argument ("match data register invalid", strbuffer); | |
| 2735 if (search_regs.start[sub] < 0) | |
| 2736 invalid_argument ("match data register not set", strbuffer); | |
| 2737 buf = current_buffer; | |
| 2738 } | |
| 2739 else | |
| 2740 invalid_argument ("STRBUFFER must be nil, a buffer, or an integer", | |
| 2741 strbuffer); | |
| 2742 buffer = wrap_buffer (buf); | |
| 2743 | |
| 428 | 2744 if (! NILP (string)) |
| 2745 { | |
| 2746 CHECK_STRING (string); | |
| 2747 if (!EQ (last_thing_searched, Qt)) | |
| 4199 | 2748 invalid_argument ("last thing matched was not a string", Qunbound); |
| 428 | 2749 } |
| 2750 else | |
| 2751 { | |
| 2752 if (!BUFFERP (last_thing_searched)) | |
| 4199 | 2753 invalid_argument ("last thing matched was not a buffer", Qunbound); |
| 428 | 2754 buffer = last_thing_searched; |
| 2755 buf = XBUFFER (buffer); | |
| 2756 } | |
| 2757 | |
| 826 | 2758 syntax_table = buf->mirror_syntax_table; |
| 428 | 2759 |
| 2760 case_action = nochange; /* We tried an initialization */ | |
| 2761 /* but some C compilers blew it */ | |
| 2762 | |
| 2763 if (search_regs.num_regs == 0) | |
| 826 | 2764 signal_error (Qinvalid_operation, |
| 2765 "replace-match called before any match found", Qunbound); | |
| 428 | 2766 |
| 2767 if (NILP (string)) | |
| 2768 { | |
| 469 | 2769 if (search_regs.start[sub] < BUF_BEGV (buf) |
| 2770 || search_regs.start[sub] > search_regs.end[sub] | |
| 2771 || search_regs.end[sub] > BUF_ZV (buf)) | |
|
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Mechanically change INT to FIXNUM in our sources.
Aidan Kehoe <kehoea@parhasard.net>
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5542
diff
changeset
|
2772 args_out_of_range (make_fixnum (search_regs.start[sub]), |
|
56144c8593a8
Mechanically change INT to FIXNUM in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5542
diff
changeset
|
2773 make_fixnum (search_regs.end[sub])); |
| 428 | 2774 } |
| 2775 else | |
| 2776 { | |
| 2777 if (search_regs.start[0] < 0 | |
| 2778 || search_regs.start[0] > search_regs.end[0] | |
| 826 | 2779 || search_regs.end[0] > string_char_length (string)) |
|
5581
56144c8593a8
Mechanically change INT to FIXNUM in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5542
diff
changeset
|
2780 args_out_of_range (make_fixnum (search_regs.start[0]), |
|
56144c8593a8
Mechanically change INT to FIXNUM in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5542
diff
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|
2781 make_fixnum (search_regs.end[0])); |
| 428 | 2782 } |
| 2783 | |
| 2784 if (NILP (fixedcase)) | |
| 2785 { | |
| 2786 /* Decide how to casify by examining the matched text. */ | |
| 2787 | |
| 707 | 2788 last = search_regs.end[sub]; |
| 428 | 2789 prevc = '\n'; |
| 2790 case_action = all_caps; | |
| 2791 | |
| 2792 /* some_multiletter_word is set nonzero if any original word | |
| 2793 is more than one letter long. */ | |
| 2794 some_multiletter_word = 0; | |
| 2795 some_lowercase = 0; | |
| 2796 some_nonuppercase_initial = 0; | |
| 2797 some_uppercase = 0; | |
| 2798 | |
| 707 | 2799 for (pos = search_regs.start[sub]; pos < last; pos++) |
| 428 | 2800 { |
| 2801 if (NILP (string)) | |
| 2802 c = BUF_FETCH_CHAR (buf, pos); | |
| 2803 else | |
| 867 | 2804 c = string_ichar (string, pos); |
| 428 | 2805 |
| 2806 if (LOWERCASEP (buf, c)) | |
| 2807 { | |
| 2808 /* Cannot be all caps if any original char is lower case */ | |
| 2809 | |
| 2810 some_lowercase = 1; | |
| 2811 if (!WORD_SYNTAX_P (syntax_table, prevc)) | |
| 2812 some_nonuppercase_initial = 1; | |
| 2813 else | |
| 2814 some_multiletter_word = 1; | |
| 2815 } | |
| 2816 else if (!NOCASEP (buf, c)) | |
| 2817 { | |
| 2818 some_uppercase = 1; | |
| 2819 if (!WORD_SYNTAX_P (syntax_table, prevc)) | |
| 2820 ; | |
| 2821 else | |
| 2822 some_multiletter_word = 1; | |
| 2823 } | |
| 2824 else | |
| 2825 { | |
| 2826 /* If the initial is a caseless word constituent, | |
| 2827 treat that like a lowercase initial. */ | |
| 2828 if (!WORD_SYNTAX_P (syntax_table, prevc)) | |
| 2829 some_nonuppercase_initial = 1; | |
| 2830 } | |
| 2831 | |
| 2832 prevc = c; | |
| 2833 } | |
| 2834 | |
| 2835 /* Convert to all caps if the old text is all caps | |
| 2836 and has at least one multiletter word. */ | |
| 2837 if (! some_lowercase && some_multiletter_word) | |
| 2838 case_action = all_caps; | |
| 2839 /* Capitalize each word, if the old text has all capitalized words. */ | |
| 2840 else if (!some_nonuppercase_initial && some_multiletter_word) | |
| 2841 case_action = cap_initial; | |
| 2842 else if (!some_nonuppercase_initial && some_uppercase) | |
| 2843 /* Should x -> yz, operating on X, give Yz or YZ? | |
| 2844 We'll assume the latter. */ | |
| 2845 case_action = all_caps; | |
| 2846 else | |
| 2847 case_action = nochange; | |
| 2848 } | |
| 2849 | |
| 2850 /* Do replacement in a string. */ | |
| 2851 if (!NILP (string)) | |
| 2852 { | |
| 2853 Lisp_Object before, after; | |
| 2854 | |
| 2855 speccount = specpdl_depth (); | |
|
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|
2856 before = Fsubseq (string, Qzero, make_fixnum (search_regs.start[sub])); |
|
56144c8593a8
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parents:
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diff
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|
2857 after = Fsubseq (string, make_fixnum (search_regs.end[sub]), Qnil); |
| 428 | 2858 |
| 444 | 2859 /* Do case substitution into REPLACEMENT if desired. */ |
| 428 | 2860 if (NILP (literal)) |
| 2861 { | |
| 826 | 2862 Charcount stlen = string_char_length (replacement); |
| 428 | 2863 Charcount strpos; |
| 2864 /* XEmacs change: rewrote this loop somewhat to make it | |
| 2865 cleaner. Also added \U, \E, etc. */ | |
| 2866 Charcount literal_start = 0; | |
| 2867 /* We build up the substituted string in ACCUM. */ | |
| 2868 Lisp_Object accum; | |
| 2869 | |
| 2870 accum = Qnil; | |
| 2871 | |
| 2872 /* OK, the basic idea here is that we scan through the | |
| 2873 replacement string until we find a backslash, which | |
| 2874 represents a substring of the original string to be | |
| 2875 substituted. We then append onto ACCUM the literal | |
| 2876 text before the backslash (LASTPOS marks the | |
| 2877 beginning of this) followed by the substring of the | |
| 2878 original string that needs to be inserted. */ | |
| 2879 for (strpos = 0; strpos < stlen; strpos++) | |
| 2880 { | |
| 2881 /* If LITERAL_END is set, we've encountered a backslash | |
| 2882 (the end of literal text to be inserted). */ | |
| 2883 Charcount literal_end = -1; | |
| 2884 /* If SUBSTART is set, we need to also insert the | |
| 2885 text from SUBSTART to SUBEND in the original string. */ | |
| 2886 Charcount substart = -1; | |
| 2887 Charcount subend = -1; | |
| 2888 | |
| 867 | 2889 c = string_ichar (replacement, strpos); |
| 428 | 2890 if (c == '\\' && strpos < stlen - 1) |
| 2891 { | |
| 867 | 2892 c = string_ichar (replacement, ++strpos); |
| 428 | 2893 if (c == '&') |
| 2894 { | |
| 2895 literal_end = strpos - 1; | |
| 2896 substart = search_regs.start[0]; | |
| 2897 subend = search_regs.end[0]; | |
| 2898 } | |
| 4199 | 2899 /* #### This logic is totally broken, |
| 2900 since we can have backrefs like "\99", right? */ | |
| 428 | 2901 else if (c >= '1' && c <= '9' && |
| 2902 c <= search_regs.num_regs + '0') | |
| 2903 { | |
| 2904 if (search_regs.start[c - '0'] >= 0) | |
| 2905 { | |
| 2906 literal_end = strpos - 1; | |
| 2907 substart = search_regs.start[c - '0']; | |
| 2908 subend = search_regs.end[c - '0']; | |
| 2909 } | |
| 2910 } | |
| 2911 else if (c == 'U' || c == 'u' || c == 'L' || c == 'l' || | |
| 2912 c == 'E') | |
| 2913 { | |
| 2914 /* Keep track of all case changes requested, but don't | |
| 2915 make them now. Do them later so we override | |
| 2916 everything else. */ | |
| 2917 if (!ul_pos_dynarr) | |
| 2918 { | |
| 2919 ul_pos_dynarr = Dynarr_new (int); | |
| 2920 ul_action_dynarr = Dynarr_new (int); | |
| 2921 record_unwind_protect | |
| 2922 (free_created_dynarrs, | |
| 2923 noseeum_cons | |
| 2924 (make_opaque_ptr (ul_pos_dynarr), | |
| 2925 make_opaque_ptr (ul_action_dynarr))); | |
| 2926 } | |
| 2927 literal_end = strpos - 1; | |
| 2928 Dynarr_add (ul_pos_dynarr, | |
| 2929 (!NILP (accum) | |
| 826 | 2930 ? string_char_length (accum) |
| 428 | 2931 : 0) + (literal_end - literal_start)); |
| 2932 Dynarr_add (ul_action_dynarr, c); | |
| 2933 } | |
| 2934 else if (c == '\\') | |
| 2935 /* So we get just one backslash. */ | |
| 2936 literal_end = strpos; | |
| 2937 } | |
| 2938 if (literal_end >= 0) | |
| 2939 { | |
| 2940 Lisp_Object literal_text = Qnil; | |
| 2941 Lisp_Object substring = Qnil; | |
| 2942 if (literal_end != literal_start) | |
|
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5041
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|
2943 literal_text = Fsubseq (replacement, |
|
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|
2944 make_fixnum (literal_start), |
|
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|
2945 make_fixnum (literal_end)); |
| 428 | 2946 if (substart >= 0 && subend != substart) |
|
5581
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parents:
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|
2947 substring = Fsubseq (string, make_fixnum (substart), |
|
56144c8593a8
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5542
diff
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|
2948 make_fixnum (subend)); |
| 428 | 2949 if (!NILP (literal_text) || !NILP (substring)) |
| 2950 accum = concat3 (accum, literal_text, substring); | |
| 2951 literal_start = strpos + 1; | |
| 2952 } | |
| 2953 } | |
| 2954 | |
| 2955 if (strpos != literal_start) | |
| 2956 /* some literal text at end to be inserted */ | |
|
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5041
diff
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|
2957 replacement = concat2 (accum, Fsubseq (replacement, |
|
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|
2958 make_fixnum (literal_start), |
|
56144c8593a8
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|
2959 make_fixnum (strpos))); |
| 428 | 2960 else |
| 444 | 2961 replacement = accum; |
| 428 | 2962 } |
| 2963 | |
| 444 | 2964 /* replacement can be nil. */ |
| 2965 if (NILP (replacement)) | |
|
4952
19a72041c5ed
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Ben Wing <ben@xemacs.org>
parents:
4421
diff
changeset
|
2966 replacement = build_ascstring (""); |
| 444 | 2967 |
| 428 | 2968 if (case_action == all_caps) |
| 444 | 2969 replacement = Fupcase (replacement, buffer); |
| 428 | 2970 else if (case_action == cap_initial) |
| 444 | 2971 replacement = Fupcase_initials (replacement, buffer); |
| 428 | 2972 |
| 2973 /* Now finally, we need to process the \U's, \E's, etc. */ | |
| 2974 if (ul_pos_dynarr) | |
| 2975 { | |
| 2976 int i = 0; | |
| 2977 int cur_action = 'E'; | |
| 826 | 2978 Charcount stlen = string_char_length (replacement); |
| 428 | 2979 Charcount strpos; |
| 2980 | |
| 2981 for (strpos = 0; strpos < stlen; strpos++) | |
| 2982 { | |
| 867 | 2983 Ichar curchar = string_ichar (replacement, strpos); |
| 2984 Ichar newchar = -1; | |
| 428 | 2985 if (i < Dynarr_length (ul_pos_dynarr) && |
| 2986 strpos == Dynarr_at (ul_pos_dynarr, i)) | |
| 2987 { | |
| 2988 int new_action = Dynarr_at (ul_action_dynarr, i); | |
| 2989 i++; | |
| 2990 if (new_action == 'u') | |
| 2991 newchar = UPCASE (buf, curchar); | |
| 2992 else if (new_action == 'l') | |
| 2993 newchar = DOWNCASE (buf, curchar); | |
| 2994 else | |
| 2995 cur_action = new_action; | |
| 2996 } | |
| 2997 if (newchar == -1) | |
| 2998 { | |
| 2999 if (cur_action == 'U') | |
| 3000 newchar = UPCASE (buf, curchar); | |
| 3001 else if (cur_action == 'L') | |
| 3002 newchar = DOWNCASE (buf, curchar); | |
| 3003 else | |
| 3004 newchar = curchar; | |
| 3005 } | |
| 3006 if (newchar != curchar) | |
| 793 | 3007 set_string_char (replacement, strpos, newchar); |
| 428 | 3008 } |
| 3009 } | |
| 3010 | |
| 3011 /* frees the Dynarrs if necessary. */ | |
| 771 | 3012 unbind_to (speccount); |
| 444 | 3013 return concat3 (before, replacement, after); |
| 428 | 3014 } |
| 3015 | |
| 707 | 3016 mc_count = begin_multiple_change (buf, search_regs.start[sub], |
| 3017 search_regs.end[sub]); | |
| 428 | 3018 |
| 3019 /* begin_multiple_change() records an unwind-protect, so we need to | |
| 3020 record this value now. */ | |
| 3021 speccount = specpdl_depth (); | |
| 3022 | |
| 3023 /* We insert the replacement text before the old text, and then | |
| 3024 delete the original text. This means that markers at the | |
| 3025 beginning or end of the original will float to the corresponding | |
| 3026 position in the replacement. */ | |
| 707 | 3027 BUF_SET_PT (buf, search_regs.start[sub]); |
| 428 | 3028 if (!NILP (literal)) |
| 444 | 3029 Finsert (1, &replacement); |
| 428 | 3030 else |
| 3031 { | |
| 826 | 3032 Charcount stlen = string_char_length (replacement); |
| 428 | 3033 Charcount strpos; |
| 3034 struct gcpro gcpro1; | |
| 444 | 3035 GCPRO1 (replacement); |
| 428 | 3036 for (strpos = 0; strpos < stlen; strpos++) |
| 3037 { | |
| 707 | 3038 /* on the first iteration assert(offset==0), |
| 3039 exactly complementing BUF_SET_PT() above. | |
| 3040 During the loop, it keeps track of the amount inserted. | |
| 3041 */ | |
| 3042 Charcount offset = BUF_PT (buf) - search_regs.start[sub]; | |
| 428 | 3043 |
| 867 | 3044 c = string_ichar (replacement, strpos); |
| 428 | 3045 if (c == '\\' && strpos < stlen - 1) |
| 3046 { | |
| 707 | 3047 /* XXX FIXME: replacing just a substring non-literally |
| 3048 using backslash refs to the match looks dangerous. But | |
| 3049 <15366.18513.698042.156573@ns.caldera.de> from Torsten Duwe | |
| 3050 <duwe@caldera.de> claims Finsert_buffer_substring already | |
| 3051 handles this correctly. | |
| 3052 */ | |
| 867 | 3053 c = string_ichar (replacement, ++strpos); |
| 428 | 3054 if (c == '&') |
| 3055 Finsert_buffer_substring | |
| 3056 (buffer, | |
|
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|
3057 make_fixnum (search_regs.start[0] + offset), |
|
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|
3058 make_fixnum (search_regs.end[0] + offset)); |
| 4199 | 3059 /* #### This logic is totally broken, |
| 3060 since we can have backrefs like "\99", right? */ | |
| 428 | 3061 else if (c >= '1' && c <= '9' && |
| 3062 c <= search_regs.num_regs + '0') | |
| 3063 { | |
| 3064 if (search_regs.start[c - '0'] >= 1) | |
| 3065 Finsert_buffer_substring | |
| 3066 (buffer, | |
|
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|
3067 make_fixnum (search_regs.start[c - '0'] + offset), |
|
56144c8593a8
Mechanically change INT to FIXNUM in our sources.
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|
3068 make_fixnum (search_regs.end[c - '0'] + offset)); |
| 428 | 3069 } |
| 3070 else if (c == 'U' || c == 'u' || c == 'L' || c == 'l' || | |
| 3071 c == 'E') | |
| 3072 { | |
| 3073 /* Keep track of all case changes requested, but don't | |
| 3074 make them now. Do them later so we override | |
| 3075 everything else. */ | |
| 3076 if (!ul_pos_dynarr) | |
| 3077 { | |
| 3078 ul_pos_dynarr = Dynarr_new (int); | |
| 3079 ul_action_dynarr = Dynarr_new (int); | |
| 3080 record_unwind_protect | |
| 3081 (free_created_dynarrs, | |
| 3082 Fcons (make_opaque_ptr (ul_pos_dynarr), | |
| 3083 make_opaque_ptr (ul_action_dynarr))); | |
| 3084 } | |
| 3085 Dynarr_add (ul_pos_dynarr, BUF_PT (buf)); | |
| 3086 Dynarr_add (ul_action_dynarr, c); | |
| 3087 } | |
| 3088 else | |
| 3089 buffer_insert_emacs_char (buf, c); | |
| 3090 } | |
| 3091 else | |
| 3092 buffer_insert_emacs_char (buf, c); | |
| 3093 } | |
| 3094 UNGCPRO; | |
| 3095 } | |
| 3096 | |
| 707 | 3097 inslen = BUF_PT (buf) - (search_regs.start[sub]); |
| 3098 buffer_delete_range (buf, search_regs.start[sub] + inslen, | |
| 3099 search_regs.end[sub] + inslen, 0); | |
| 428 | 3100 |
| 3101 if (case_action == all_caps) | |
|
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|
3102 Fupcase_region (make_fixnum (BUF_PT (buf) - inslen), |
|
56144c8593a8
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|
3103 make_fixnum (BUF_PT (buf)), buffer); |
| 428 | 3104 else if (case_action == cap_initial) |
|
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|
3105 Fupcase_initials_region (make_fixnum (BUF_PT (buf) - inslen), |
|
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|
3106 make_fixnum (BUF_PT (buf)), buffer); |
| 428 | 3107 |
| 3108 /* Now go through and make all the case changes that were requested | |
| 3109 in the replacement string. */ | |
| 3110 if (ul_pos_dynarr) | |
| 3111 { | |
| 665 | 3112 Charbpos eend = BUF_PT (buf); |
| 428 | 3113 int i = 0; |
| 3114 int cur_action = 'E'; | |
| 3115 | |
| 3116 for (pos = BUF_PT (buf) - inslen; pos < eend; pos++) | |
| 3117 { | |
| 867 | 3118 Ichar curchar = BUF_FETCH_CHAR (buf, pos); |
| 3119 Ichar newchar = -1; | |
| 428 | 3120 if (i < Dynarr_length (ul_pos_dynarr) && |
| 3121 pos == Dynarr_at (ul_pos_dynarr, i)) | |
| 3122 { | |
| 3123 int new_action = Dynarr_at (ul_action_dynarr, i); | |
| 3124 i++; | |
| 3125 if (new_action == 'u') | |
| 3126 newchar = UPCASE (buf, curchar); | |
| 3127 else if (new_action == 'l') | |
| 3128 newchar = DOWNCASE (buf, curchar); | |
| 3129 else | |
| 3130 cur_action = new_action; | |
| 3131 } | |
| 3132 if (newchar == -1) | |
| 3133 { | |
| 3134 if (cur_action == 'U') | |
| 3135 newchar = UPCASE (buf, curchar); | |
| 3136 else if (cur_action == 'L') | |
| 3137 newchar = DOWNCASE (buf, curchar); | |
| 3138 else | |
| 3139 newchar = curchar; | |
| 3140 } | |
| 3141 if (newchar != curchar) | |
| 3142 buffer_replace_char (buf, pos, newchar, 0, 0); | |
| 3143 } | |
| 3144 } | |
| 3145 | |
| 3146 /* frees the Dynarrs if necessary. */ | |
| 771 | 3147 unbind_to (speccount); |
| 428 | 3148 end_multiple_change (buf, mc_count); |
| 3149 | |
| 3150 return Qnil; | |
| 3151 } | |
| 3152 | |
| 3153 static Lisp_Object | |
| 3154 match_limit (Lisp_Object num, int beginningp) | |
| 3155 { | |
| 3156 int n; | |
| 3157 | |
|
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|
3158 CHECK_FIXNUM (num); |
|
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|
3159 n = XFIXNUM (num); |
| 428 | 3160 if (n < 0 || n >= search_regs.num_regs) |
|
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|
3161 args_out_of_range (num, make_fixnum (search_regs.num_regs)); |
| 428 | 3162 if (search_regs.num_regs == 0 || |
| 3163 search_regs.start[n] < 0) | |
| 3164 return Qnil; | |
|
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|
3165 return make_fixnum (beginningp ? search_regs.start[n] : search_regs.end[n]); |
| 428 | 3166 } |
| 3167 | |
| 3168 DEFUN ("match-beginning", Fmatch_beginning, 1, 1, 0, /* | |
| 3169 Return position of start of text matched by last regexp search. | |
| 3170 NUM, specifies which parenthesized expression in the last regexp. | |
| 3171 Value is nil if NUMth pair didn't match, or there were less than NUM pairs. | |
| 3172 Zero means the entire text matched by the whole regexp or whole string. | |
| 3173 */ | |
| 3174 (num)) | |
| 3175 { | |
| 3176 return match_limit (num, 1); | |
| 3177 } | |
| 3178 | |
| 3179 DEFUN ("match-end", Fmatch_end, 1, 1, 0, /* | |
| 3180 Return position of end of text matched by last regexp search. | |
| 3181 NUM specifies which parenthesized expression in the last regexp. | |
| 3182 Value is nil if NUMth pair didn't match, or there were less than NUM pairs. | |
| 3183 Zero means the entire text matched by the whole regexp or whole string. | |
| 3184 */ | |
| 3185 (num)) | |
| 3186 { | |
| 3187 return match_limit (num, 0); | |
| 3188 } | |
| 3189 | |
| 3190 DEFUN ("match-data", Fmatch_data, 0, 2, 0, /* | |
| 3191 Return a list containing all info on what the last regexp search matched. | |
| 3192 Element 2N is `(match-beginning N)'; element 2N + 1 is `(match-end N)'. | |
| 3193 All the elements are markers or nil (nil if the Nth pair didn't match) | |
| 3194 if the last match was on a buffer; integers or nil if a string was matched. | |
| 3195 Use `store-match-data' to reinstate the data in this list. | |
| 3196 | |
| 3197 If INTEGERS (the optional first argument) is non-nil, always use integers | |
| 3198 \(rather than markers) to represent buffer positions. | |
| 3199 If REUSE is a list, reuse it as part of the value. If REUSE is long enough | |
| 3200 to hold all the values, and if INTEGERS is non-nil, no consing is done. | |
| 3201 */ | |
| 3202 (integers, reuse)) | |
| 3203 { | |
| 3204 Lisp_Object tail, prev; | |
| 3205 Lisp_Object *data; | |
| 3206 int i; | |
| 3207 Charcount len; | |
| 3208 | |
| 3209 if (NILP (last_thing_searched)) | |
| 563 | 3210 /*error ("match-data called before any match found", Qunbound);*/ |
| 428 | 3211 return Qnil; |
| 3212 | |
| 3213 data = alloca_array (Lisp_Object, 2 * search_regs.num_regs); | |
| 3214 | |
| 3215 len = -1; | |
| 3216 for (i = 0; i < search_regs.num_regs; i++) | |
| 3217 { | |
| 665 | 3218 Charbpos start = search_regs.start[i]; |
| 428 | 3219 if (start >= 0) |
| 3220 { | |
| 3221 if (EQ (last_thing_searched, Qt) | |
| 3222 || !NILP (integers)) | |
| 3223 { | |
|
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|
3224 data[2 * i] = make_fixnum (start); |
|
56144c8593a8
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|
3225 data[2 * i + 1] = make_fixnum (search_regs.end[i]); |
| 428 | 3226 } |
| 3227 else if (BUFFERP (last_thing_searched)) | |
| 3228 { | |
| 3229 data[2 * i] = Fmake_marker (); | |
| 3230 Fset_marker (data[2 * i], | |
|
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|
3231 make_fixnum (start), |
| 428 | 3232 last_thing_searched); |
| 3233 data[2 * i + 1] = Fmake_marker (); | |
| 3234 Fset_marker (data[2 * i + 1], | |
|
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|
3235 make_fixnum (search_regs.end[i]), |
| 428 | 3236 last_thing_searched); |
| 3237 } | |
| 3238 else | |
| 3239 /* last_thing_searched must always be Qt, a buffer, or Qnil. */ | |
| 2500 | 3240 ABORT (); |
| 428 | 3241 |
| 3242 len = i; | |
| 3243 } | |
| 3244 else | |
| 3245 data[2 * i] = data [2 * i + 1] = Qnil; | |
| 3246 } | |
| 3247 if (!CONSP (reuse)) | |
| 3248 return Flist (2 * len + 2, data); | |
| 3249 | |
| 3250 /* If REUSE is a list, store as many value elements as will fit | |
| 3251 into the elements of REUSE. */ | |
| 3252 for (prev = Qnil, i = 0, tail = reuse; CONSP (tail); i++, tail = XCDR (tail)) | |
| 3253 { | |
| 3254 if (i < 2 * len + 2) | |
| 3255 XCAR (tail) = data[i]; | |
| 3256 else | |
| 3257 XCAR (tail) = Qnil; | |
| 3258 prev = tail; | |
| 3259 } | |
| 3260 | |
| 3261 /* If we couldn't fit all value elements into REUSE, | |
| 3262 cons up the rest of them and add them to the end of REUSE. */ | |
| 3263 if (i < 2 * len + 2) | |
| 3264 XCDR (prev) = Flist (2 * len + 2 - i, data + i); | |
| 3265 | |
| 3266 return reuse; | |
| 3267 } | |
| 3268 | |
| 3269 | |
| 3270 DEFUN ("store-match-data", Fstore_match_data, 1, 1, 0, /* | |
| 3271 Set internal data on last search match from elements of LIST. | |
| 1468 | 3272 LIST should have been created by calling `match-data' previously, |
| 3273 or be nil, to clear the internal match data. | |
| 428 | 3274 */ |
| 3275 (list)) | |
| 3276 { | |
| 3277 REGISTER int i; | |
| 3278 REGISTER Lisp_Object marker; | |
| 3279 int num_regs; | |
| 3280 int length; | |
| 3281 | |
| 853 | 3282 /* Some FSF junk with running_asynch_code, to preserve the match |
| 3283 data. Not necessary because we don't call process filters | |
| 3284 asynchronously (i.e. from within QUIT). */ | |
| 428 | 3285 |
| 3286 CONCHECK_LIST (list); | |
| 3287 | |
| 3288 /* Unless we find a marker with a buffer in LIST, assume that this | |
| 3289 match data came from a string. */ | |
| 3290 last_thing_searched = Qt; | |
| 3291 | |
| 3292 /* Allocate registers if they don't already exist. */ | |
|
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|
3293 length = XFIXNUM (Flength (list)) / 2; |
| 428 | 3294 num_regs = search_regs.num_regs; |
| 3295 | |
| 3296 if (length > num_regs) | |
| 3297 { | |
| 3298 if (search_regs.num_regs == 0) | |
| 3299 { | |
| 3300 search_regs.start = xnew_array (regoff_t, length); | |
| 3301 search_regs.end = xnew_array (regoff_t, length); | |
| 3302 } | |
| 3303 else | |
| 3304 { | |
| 3305 XREALLOC_ARRAY (search_regs.start, regoff_t, length); | |
| 3306 XREALLOC_ARRAY (search_regs.end, regoff_t, length); | |
| 3307 } | |
| 3308 | |
| 3309 search_regs.num_regs = length; | |
| 3310 } | |
| 3311 | |
| 3312 for (i = 0; i < num_regs; i++) | |
| 3313 { | |
| 3314 marker = Fcar (list); | |
| 3315 if (NILP (marker)) | |
| 3316 { | |
| 3317 search_regs.start[i] = -1; | |
| 3318 list = Fcdr (list); | |
| 3319 } | |
| 3320 else | |
| 3321 { | |
| 3322 if (MARKERP (marker)) | |
| 3323 { | |
| 3324 if (XMARKER (marker)->buffer == 0) | |
| 3325 marker = Qzero; | |
| 3326 else | |
| 793 | 3327 last_thing_searched = wrap_buffer (XMARKER (marker)->buffer); |
| 428 | 3328 } |
| 3329 | |
|
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|
3330 CHECK_FIXNUM_COERCE_MARKER (marker); |
|
56144c8593a8
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diff
changeset
|
3331 search_regs.start[i] = XFIXNUM (marker); |
| 428 | 3332 list = Fcdr (list); |
| 3333 | |
| 3334 marker = Fcar (list); | |
| 3335 if (MARKERP (marker) && XMARKER (marker)->buffer == 0) | |
| 3336 marker = Qzero; | |
| 3337 | |
|
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|
3338 CHECK_FIXNUM_COERCE_MARKER (marker); |
|
56144c8593a8
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|
3339 search_regs.end[i] = XFIXNUM (marker); |
| 428 | 3340 } |
| 3341 list = Fcdr (list); | |
| 3342 } | |
| 3343 | |
| 3344 return Qnil; | |
| 3345 } | |
| 3346 | |
| 3347 /* Quote a string to inactivate reg-expr chars */ | |
| 3348 | |
| 3349 DEFUN ("regexp-quote", Fregexp_quote, 1, 1, 0, /* | |
| 3350 Return a regexp string which matches exactly STRING and nothing else. | |
| 3351 */ | |
| 444 | 3352 (string)) |
| 428 | 3353 { |
| 867 | 3354 REGISTER Ibyte *in, *out, *end; |
| 3355 REGISTER Ibyte *temp; | |
| 428 | 3356 |
| 444 | 3357 CHECK_STRING (string); |
| 428 | 3358 |
| 2367 | 3359 temp = alloca_ibytes (XSTRING_LENGTH (string) * 2); |
| 428 | 3360 |
| 3361 /* Now copy the data into the new string, inserting escapes. */ | |
| 3362 | |
| 444 | 3363 in = XSTRING_DATA (string); |
| 3364 end = in + XSTRING_LENGTH (string); | |
| 428 | 3365 out = temp; |
| 3366 | |
| 3367 while (in < end) | |
| 3368 { | |
| 867 | 3369 Ichar c = itext_ichar (in); |
| 428 | 3370 |
| 3371 if (c == '[' || c == ']' | |
| 3372 || c == '*' || c == '.' || c == '\\' | |
| 3373 || c == '?' || c == '+' | |
| 3374 || c == '^' || c == '$') | |
| 3375 *out++ = '\\'; | |
| 867 | 3376 out += set_itext_ichar (out, c); |
| 3377 INC_IBYTEPTR (in); | |
| 428 | 3378 } |
| 3379 | |
| 3380 return make_string (temp, out - temp); | |
| 3381 } | |
| 3382 | |
| 3383 DEFUN ("set-word-regexp", Fset_word_regexp, 1, 1, 0, /* | |
| 3384 Set the regexp to be used to match a word in regular-expression searching. | |
| 3385 #### Not yet implemented. Currently does nothing. | |
| 3386 #### Do not use this yet. Its calling interface is likely to change. | |
| 3387 */ | |
| 2286 | 3388 (UNUSED (regexp))) |
| 428 | 3389 { |
| 3390 return Qnil; | |
| 3391 } | |
| 3392 | |
| 3393 | |
| 5041 | 3394 #ifdef DEBUG_XEMACS |
| 3395 | |
| 3396 static int | |
| 3397 debug_regexps_changed (Lisp_Object UNUSED (sym), Lisp_Object *val, | |
| 3398 Lisp_Object UNUSED (in_object), | |
| 3399 int UNUSED (flags)) | |
| 3400 { | |
| 3401 int newval = 0; | |
| 3402 | |
| 3403 EXTERNAL_LIST_LOOP_2 (elt, *val) | |
| 3404 { | |
| 3405 CHECK_SYMBOL (elt); | |
| 3406 if (EQ (elt, Qcompilation)) | |
| 3407 newval |= RE_DEBUG_COMPILATION; | |
| 3408 else if (EQ (elt, Qfailure_point)) | |
| 3409 newval |= RE_DEBUG_FAILURE_POINT; | |
| 3410 else if (EQ (elt, Qmatching)) | |
| 3411 newval |= RE_DEBUG_MATCHING; | |
| 3412 else | |
| 3413 invalid_argument | |
| 3414 ("Expected `compilation', `failure-point' or `matching'", elt); | |
| 3415 } | |
| 3416 debug_regexps = newval; | |
| 3417 return 0; | |
| 3418 } | |
| 3419 | |
| 3420 #endif /* DEBUG_XEMACS */ | |
| 3421 | |
| 3422 | |
| 428 | 3423 /************************************************************************/ |
| 3424 /* initialization */ | |
| 3425 /************************************************************************/ | |
| 3426 | |
| 3427 void | |
| 3428 syms_of_search (void) | |
| 3429 { | |
| 3430 | |
| 442 | 3431 DEFERROR_STANDARD (Qsearch_failed, Qinvalid_operation); |
| 3432 DEFERROR_STANDARD (Qinvalid_regexp, Qsyntax_error); | |
| 563 | 3433 Fput (Qinvalid_regexp, Qerror_lacks_explanatory_string, Qt); |
| 428 | 3434 |
| 3435 DEFSUBR (Flooking_at); | |
| 3436 DEFSUBR (Fposix_looking_at); | |
| 3437 DEFSUBR (Fstring_match); | |
| 3438 DEFSUBR (Fposix_string_match); | |
| 3439 DEFSUBR (Fskip_chars_forward); | |
| 3440 DEFSUBR (Fskip_chars_backward); | |
| 3441 DEFSUBR (Fskip_syntax_forward); | |
| 3442 DEFSUBR (Fskip_syntax_backward); | |
| 3443 DEFSUBR (Fsearch_forward); | |
| 3444 DEFSUBR (Fsearch_backward); | |
| 3445 DEFSUBR (Fword_search_forward); | |
| 3446 DEFSUBR (Fword_search_backward); | |
| 3447 DEFSUBR (Fre_search_forward); | |
| 3448 DEFSUBR (Fre_search_backward); | |
| 3449 DEFSUBR (Fposix_search_forward); | |
| 3450 DEFSUBR (Fposix_search_backward); | |
| 3451 DEFSUBR (Freplace_match); | |
| 3452 DEFSUBR (Fmatch_beginning); | |
| 3453 DEFSUBR (Fmatch_end); | |
| 3454 DEFSUBR (Fmatch_data); | |
| 3455 DEFSUBR (Fstore_match_data); | |
| 3456 DEFSUBR (Fregexp_quote); | |
| 3457 DEFSUBR (Fset_word_regexp); | |
| 3458 } | |
| 3459 | |
| 3460 void | |
| 3461 reinit_vars_of_search (void) | |
| 3462 { | |
| 3463 int i; | |
| 3464 | |
| 3465 last_thing_searched = Qnil; | |
| 3466 staticpro_nodump (&last_thing_searched); | |
| 3467 | |
| 3468 for (i = 0; i < REGEXP_CACHE_SIZE; ++i) | |
| 3469 { | |
| 3470 searchbufs[i].buf.allocated = 100; | |
| 3471 searchbufs[i].buf.buffer = (unsigned char *) xmalloc (100); | |
| 3472 searchbufs[i].buf.fastmap = searchbufs[i].fastmap; | |
| 3473 searchbufs[i].regexp = Qnil; | |
| 3474 staticpro_nodump (&searchbufs[i].regexp); | |
| 3475 searchbufs[i].next = (i == REGEXP_CACHE_SIZE-1 ? 0 : &searchbufs[i+1]); | |
| 3476 } | |
| 3477 searchbuf_head = &searchbufs[0]; | |
| 3478 } | |
| 3479 | |
| 3480 void | |
| 3481 vars_of_search (void) | |
| 3482 { | |
| 3483 DEFVAR_LISP ("forward-word-regexp", &Vforward_word_regexp /* | |
| 3484 *Regular expression to be used in `forward-word'. | |
| 3485 #### Not yet implemented. | |
| 3486 */ ); | |
| 3487 Vforward_word_regexp = Qnil; | |
| 3488 | |
| 3489 DEFVAR_LISP ("backward-word-regexp", &Vbackward_word_regexp /* | |
| 3490 *Regular expression to be used in `backward-word'. | |
| 3491 #### Not yet implemented. | |
| 3492 */ ); | |
| 3493 Vbackward_word_regexp = Qnil; | |
| 502 | 3494 |
| 3495 DEFVAR_INT ("warn-about-possibly-incompatible-back-references", | |
| 3496 &warn_about_possibly_incompatible_back_references /* | |
| 3497 If true, issue warnings when new-semantics back references occur. | |
| 3498 This is to catch places where old code might inadvertently have changed | |
| 3499 semantics. This will occur in old code only where more than nine groups | |
| 3500 occur and a back reference to one of them is directly followed by a digit. | |
| 3501 */ ); | |
| 3502 warn_about_possibly_incompatible_back_references = 1; | |
| 814 | 3503 |
| 2421 | 3504 Vskip_chars_range_table = Fmake_range_table (Qstart_closed_end_closed); |
| 428 | 3505 staticpro (&Vskip_chars_range_table); |
|
4414
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parents:
4407
diff
changeset
|
3506 #ifdef DEBUG_XEMACS |
|
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
3507 DEFSYMBOL (Qsearch_algorithm_used); |
|
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
3508 DEFSYMBOL (Qboyer_moore); |
|
df576f30c1d8
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
3509 DEFSYMBOL (Qsimple_search); |
|
df576f30c1d8
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
3510 |
| 5041 | 3511 DEFSYMBOL (Qcompilation); |
| 3512 DEFSYMBOL (Qfailure_point); | |
| 3513 DEFSYMBOL (Qmatching); | |
| 3514 | |
| 3515 DEFVAR_INT ("debug-searches", &debug_searches /* | |
|
4414
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
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|
3516 If non-zero, bind `search-algorithm-used' to `boyer-moore' or `simple-search', |
|
df576f30c1d8
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
3517 depending on the algorithm used for each search. Used for testing. |
|
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4407
diff
changeset
|
3518 */ ); |
| 5041 | 3519 debug_searches = 0; |
| 3520 | |
| 3521 DEFVAR_LISP_MAGIC ("debug-regexps", &Vdebug_regexps, /* | |
| 3522 List of areas to display debug info about during regexp operation. | |
| 3523 The following areas are recognized: | |
| 3524 | |
| 3525 `compilation' Display the result of compiling a regexp. | |
| 3526 `failure-point' Display info about failure points reached. | |
| 3527 `matching' Display info about the process of matching a regex against | |
| 3528 text. | |
| 3529 */ debug_regexps_changed); | |
| 3530 Vdebug_regexps = Qnil; | |
| 3531 debug_regexps = 0; | |
| 3532 #endif /* DEBUG_XEMACS */ | |
| 428 | 3533 } |
