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[bpt/emacs.git] / src / bidi.c
CommitLineData
cbb09f04 1/* Low-level bidirectional buffer/string-scanning functions for GNU Emacs.
73b0cd50 2 Copyright (C) 2000-2001, 2004-2005, 2009-2011
b118e65f 3 Free Software Foundation, Inc.
b7b65b15
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4
5This file is part of GNU Emacs.
6
a8d11bd3 7GNU Emacs is free software: you can redistribute it and/or modify
b7b65b15 8it under the terms of the GNU General Public License as published by
a8d11bd3
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9the Free Software Foundation, either version 3 of the License, or
10(at your option) any later version.
b7b65b15
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11
12GNU Emacs is distributed in the hope that it will be useful,
13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
b7b65b15 17You should have received a copy of the GNU General Public License
a8d11bd3 18along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
b7b65b15 19
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20/* Written by Eli Zaretskii <eliz@gnu.org>.
21
22 A sequential implementation of the Unicode Bidirectional algorithm,
cbb09f04 23 (UBA) as per UAX#9, a part of the Unicode Standard.
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24
25 Unlike the reference and most other implementations, this one is
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26 designed to be called once for every character in the buffer or
27 string.
b7b65b15 28
4b292a22 29 The main entry point is bidi_move_to_visually_next. Each time it
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30 is called, it finds the next character in the visual order, and
31 returns its information in a special structure. The caller is then
32 expected to process this character for display or any other
4b292a22
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33 purposes, and call bidi_move_to_visually_next for the next
34 character. See the comments in bidi_move_to_visually_next for more
35 details about its algorithm that finds the next visual-order
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36 character by resolving their levels on the fly.
37
95e1afc6 38 Two other entry points are bidi_paragraph_init and
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39 bidi_mirror_char. The first determines the base direction of a
40 paragraph, while the second returns the mirrored version of its
41 argument character.
42
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43 A few auxiliary entry points are used to initialize the bidi
44 iterator for iterating an object (buffer or string), push and pop
45 the bidi iterator state, and save and restore the state of the bidi
46 cache.
47
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48 If you want to understand the code, you will have to read it
49 together with the relevant portions of UAX#9. The comments include
50 references to UAX#9 rules, for that very reason.
51
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52 A note about references to UAX#9 rules: if the reference says
53 something like "X9/Retaining", it means that you need to refer to
54 rule X9 and to its modifications decribed in the "Implementation
55 Notes" section of UAX#9, under "Retaining Format Codes". */
56
b7b65b15 57#include <config.h>
b7b65b15 58#include <stdio.h>
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59#include <setjmp.h>
60
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61#include "lisp.h"
62#include "buffer.h"
63#include "character.h"
64#include "dispextern.h"
65
66static int bidi_initialized = 0;
67
cbc4fd20 68static Lisp_Object bidi_type_table, bidi_mirror_table;
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69
70#define LRM_CHAR 0x200E
71#define RLM_CHAR 0x200F
b7b65b15 72#define BIDI_EOB -1
b7b65b15 73
b7b65b15
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74/* Data type for describing the bidirectional character categories. */
75typedef enum {
76 UNKNOWN_BC,
77 NEUTRAL,
78 WEAK,
79 STRONG
80} bidi_category_t;
81
32413314
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82/* UAX#9 says to search only for L, AL, or R types of characters, and
83 ignore RLE, RLO, LRE, and LRO, when determining the base paragraph
84 level. Yudit indeed ignores them. This variable is therefore set
85 by default to ignore them, but setting it to zero will take them
86 into account. */
e78aecca 87extern int bidi_ignore_explicit_marks_for_paragraph_level EXTERNALLY_VISIBLE;
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88int bidi_ignore_explicit_marks_for_paragraph_level = 1;
89
372b7a95 90static Lisp_Object paragraph_start_re, paragraph_separate_re;
6bff6497 91static Lisp_Object Qparagraph_start, Qparagraph_separate;
b7b65b15 92
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93\f
94/***********************************************************************
95 Utilities
96 ***********************************************************************/
b7b65b15 97
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98/* Return the bidi type of a character CH, subject to the current
99 directional OVERRIDE. */
55d4c1b2 100static inline bidi_type_t
6bff6497 101bidi_get_type (int ch, bidi_dir_t override)
b7b65b15 102{
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103 bidi_type_t default_type;
104
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105 if (ch == BIDI_EOB)
106 return NEUTRAL_B;
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107 if (ch < 0 || ch > MAX_CHAR)
108 abort ();
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109
110 default_type = (bidi_type_t) XINT (CHAR_TABLE_REF (bidi_type_table, ch));
bca633fb
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111 /* Every valid character code, even those that are unassigned by the
112 UCD, have some bidi-class property, according to
113 DerivedBidiClass.txt file. Therefore, if we ever get UNKNOWN_BT
114 (= zero) code from CHAR_TABLE_REF, that's a bug. */
115 if (default_type == UNKNOWN_BT)
116 abort ();
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117
118 if (override == NEUTRAL_DIR)
119 return default_type;
120
121 switch (default_type)
122 {
123 /* Although UAX#9 does not tell, it doesn't make sense to
124 override NEUTRAL_B and LRM/RLM characters. */
125 case NEUTRAL_B:
126 case LRE:
127 case LRO:
128 case RLE:
129 case RLO:
130 case PDF:
131 return default_type;
132 default:
133 switch (ch)
134 {
135 case LRM_CHAR:
136 case RLM_CHAR:
137 return default_type;
138 default:
139 if (override == L2R) /* X6 */
140 return STRONG_L;
141 else if (override == R2L)
142 return STRONG_R;
143 else
144 abort (); /* can't happen: handled above */
145 }
146 }
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147}
148
f67cdd7f 149static inline void
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150bidi_check_type (bidi_type_t type)
151{
f67cdd7f 152 xassert (UNKNOWN_BT <= type && type <= NEUTRAL_ON);
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153}
154
b7b65b15 155/* Given a bidi TYPE of a character, return its category. */
55d4c1b2 156static inline bidi_category_t
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157bidi_get_category (bidi_type_t type)
158{
159 switch (type)
160 {
161 case UNKNOWN_BT:
162 return UNKNOWN_BC;
163 case STRONG_L:
164 case STRONG_R:
165 case STRONG_AL:
166 case LRE:
167 case LRO:
168 case RLE:
169 case RLO:
170 return STRONG;
171 case PDF: /* ??? really?? */
172 case WEAK_EN:
173 case WEAK_ES:
174 case WEAK_ET:
175 case WEAK_AN:
176 case WEAK_CS:
177 case WEAK_NSM:
178 case WEAK_BN:
179 return WEAK;
180 case NEUTRAL_B:
181 case NEUTRAL_S:
182 case NEUTRAL_WS:
183 case NEUTRAL_ON:
184 return NEUTRAL;
185 default:
186 abort ();
187 }
188}
189
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190/* Return the mirrored character of C, if it has one. If C has no
191 mirrored counterpart, return C.
192 Note: The conditions in UAX#9 clause L4 regarding the surrounding
193 context must be tested by the caller. */
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194int
195bidi_mirror_char (int c)
196{
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197 Lisp_Object val;
198
199 if (c == BIDI_EOB)
200 return c;
201 if (c < 0 || c > MAX_CHAR)
202 abort ();
b7b65b15 203
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204 val = CHAR_TABLE_REF (bidi_mirror_table, c);
205 if (INTEGERP (val))
b7b65b15 206 {
cbc4fd20 207 int v = XINT (val);
b7b65b15 208
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209 if (v < 0 || v > MAX_CHAR)
210 abort ();
211
212 return v;
b7b65b15 213 }
cbc4fd20 214
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215 return c;
216}
217
cbb09f04
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218/* Determine the start-of-run (sor) directional type given the two
219 embedding levels on either side of the run boundary. Also, update
220 the saved info about previously seen characters, since that info is
221 generally valid for a single level run. */
58b9f433 222static inline void
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223bidi_set_sor_type (struct bidi_it *bidi_it, int level_before, int level_after)
224{
512a289d 225 int higher_level = (level_before > level_after ? level_before : level_after);
cbb09f04
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226
227 /* The prev_was_pdf gork is required for when we have several PDFs
228 in a row. In that case, we want to compute the sor type for the
229 next level run only once: when we see the first PDF. That's
230 because the sor type depends only on the higher of the two levels
231 that we find on the two sides of the level boundary (see UAX#9,
232 clause X10), and so we don't need to know the final embedding
233 level to which we descend after processing all the PDFs. */
234 if (!bidi_it->prev_was_pdf || level_before < level_after)
235 /* FIXME: should the default sor direction be user selectable? */
512a289d 236 bidi_it->sor = ((higher_level & 1) != 0 ? R2L : L2R);
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237 if (level_before > level_after)
238 bidi_it->prev_was_pdf = 1;
239
240 bidi_it->prev.type = UNKNOWN_BT;
512a289d
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241 bidi_it->last_strong.type = bidi_it->last_strong.type_after_w1
242 = bidi_it->last_strong.orig_type = UNKNOWN_BT;
243 bidi_it->prev_for_neutral.type = (bidi_it->sor == R2L ? STRONG_R : STRONG_L);
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244 bidi_it->prev_for_neutral.charpos = bidi_it->charpos;
245 bidi_it->prev_for_neutral.bytepos = bidi_it->bytepos;
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246 bidi_it->next_for_neutral.type = bidi_it->next_for_neutral.type_after_w1
247 = bidi_it->next_for_neutral.orig_type = UNKNOWN_BT;
cbb09f04
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248 bidi_it->ignore_bn_limit = -1; /* meaning it's unknown */
249}
250
251/* Push the current embedding level and override status; reset the
252 current level to LEVEL and the current override status to OVERRIDE. */
58b9f433 253static inline void
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254bidi_push_embedding_level (struct bidi_it *bidi_it,
255 int level, bidi_dir_t override)
256{
257 bidi_it->stack_idx++;
7e2ad32c 258 xassert (bidi_it->stack_idx < BIDI_MAXLEVEL);
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259 bidi_it->level_stack[bidi_it->stack_idx].level = level;
260 bidi_it->level_stack[bidi_it->stack_idx].override = override;
261}
262
263/* Pop the embedding level and directional override status from the
264 stack, and return the new level. */
58b9f433 265static inline int
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266bidi_pop_embedding_level (struct bidi_it *bidi_it)
267{
268 /* UAX#9 says to ignore invalid PDFs. */
269 if (bidi_it->stack_idx > 0)
270 bidi_it->stack_idx--;
271 return bidi_it->level_stack[bidi_it->stack_idx].level;
272}
273
274/* Record in SAVED_INFO the information about the current character. */
58b9f433 275static inline void
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276bidi_remember_char (struct bidi_saved_info *saved_info,
277 struct bidi_it *bidi_it)
278{
279 saved_info->charpos = bidi_it->charpos;
280 saved_info->bytepos = bidi_it->bytepos;
281 saved_info->type = bidi_it->type;
282 bidi_check_type (bidi_it->type);
283 saved_info->type_after_w1 = bidi_it->type_after_w1;
284 bidi_check_type (bidi_it->type_after_w1);
285 saved_info->orig_type = bidi_it->orig_type;
286 bidi_check_type (bidi_it->orig_type);
287}
288
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289/* Copy the bidi iterator from FROM to TO. To save cycles, this only
290 copies the part of the level stack that is actually in use. */
55d4c1b2 291static inline void
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292bidi_copy_it (struct bidi_it *to, struct bidi_it *from)
293{
294 int i;
295
e69a9370 296 /* Copy everything except the level stack and beyond. */
182ce2d2 297 memcpy (to, from, offsetof (struct bidi_it, level_stack[0]));
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298
299 /* Copy the active part of the level stack. */
300 to->level_stack[0] = from->level_stack[0]; /* level zero is always in use */
301 for (i = 1; i <= from->stack_idx; i++)
302 to->level_stack[i] = from->level_stack[i];
303}
304
cbb09f04
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305\f
306/***********************************************************************
307 Caching the bidi iterator states
308 ***********************************************************************/
b7b65b15 309
2fe72643
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310#define BIDI_CACHE_CHUNK 200
311static struct bidi_it *bidi_cache;
39e378da 312static ptrdiff_t bidi_cache_size = 0;
ad6042bb 313enum { elsz = sizeof (struct bidi_it) };
39e378da
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314static ptrdiff_t bidi_cache_idx; /* next unused cache slot */
315static ptrdiff_t bidi_cache_last_idx; /* slot of last cache hit */
316static ptrdiff_t bidi_cache_start = 0; /* start of cache for this
87e67904
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317 "stack" level */
318
bc18e09d
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319/* 5-slot stack for saving the start of the previous level of the
320 cache. xdisp.c maintains a 5-slot stack for its iterator state,
321 and we need the same size of our stack. */
322static ptrdiff_t bidi_cache_start_stack[IT_STACK_SIZE];
323static int bidi_cache_sp;
324
325/* Size of header used by bidi_shelve_cache. */
326enum
327 {
512a289d
RS
328 bidi_shelve_header_size
329 = (sizeof (bidi_cache_idx) + sizeof (bidi_cache_start_stack)
330 + sizeof (bidi_cache_sp) + sizeof (bidi_cache_start)
331 + sizeof (bidi_cache_last_idx))
bc18e09d
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332 };
333
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334/* Reset the cache state to the empty state. We only reset the part
335 of the cache relevant to iteration of the current object. Previous
336 objects, which are pushed on the display iterator's stack, are left
337 intact. This is called when the cached information is no more
338 useful for the current iteration, e.g. when we were reseated to a
339 new position on the same object. */
55d4c1b2 340static inline void
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341bidi_cache_reset (void)
342{
87e67904 343 bidi_cache_idx = bidi_cache_start;
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344 bidi_cache_last_idx = -1;
345}
346
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347/* Shrink the cache to its minimal size. Called when we init the bidi
348 iterator for reordering a buffer or a string that does not come
349 from display properties, because that means all the previously
350 cached info is of no further use. */
55d4c1b2 351static inline void
2fe72643
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352bidi_cache_shrink (void)
353{
354 if (bidi_cache_size > BIDI_CACHE_CHUNK)
355 {
512a289d
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356 bidi_cache
357 = (struct bidi_it *) xrealloc (bidi_cache, BIDI_CACHE_CHUNK * elsz);
51f30bc5 358 bidi_cache_size = BIDI_CACHE_CHUNK;
2fe72643
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359 }
360 bidi_cache_reset ();
361}
362
55d4c1b2 363static inline void
39e378da 364bidi_cache_fetch_state (ptrdiff_t idx, struct bidi_it *bidi_it)
b7b65b15
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365{
366 int current_scan_dir = bidi_it->scan_dir;
367
87e67904 368 if (idx < bidi_cache_start || idx >= bidi_cache_idx)
b7b65b15
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369 abort ();
370
371 bidi_copy_it (bidi_it, &bidi_cache[idx]);
372 bidi_it->scan_dir = current_scan_dir;
373 bidi_cache_last_idx = idx;
374}
375
376/* Find a cached state with a given CHARPOS and resolved embedding
377 level less or equal to LEVEL. if LEVEL is -1, disregard the
378 resolved levels in cached states. DIR, if non-zero, means search
379 in that direction from the last cache hit. */
39e378da 380static inline ptrdiff_t
61bfec98 381bidi_cache_search (EMACS_INT charpos, int level, int dir)
b7b65b15 382{
39e378da 383 ptrdiff_t i, i_start;
b7b65b15 384
6eec7596 385 if (bidi_cache_idx > bidi_cache_start)
b7b65b15 386 {
6eec7596
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387 if (bidi_cache_last_idx == -1)
388 bidi_cache_last_idx = bidi_cache_idx - 1;
b7b65b15 389 if (charpos < bidi_cache[bidi_cache_last_idx].charpos)
182ce2d2
EZ
390 {
391 dir = -1;
392 i_start = bidi_cache_last_idx - 1;
393 }
394 else if (charpos > (bidi_cache[bidi_cache_last_idx].charpos
395 + bidi_cache[bidi_cache_last_idx].nchars - 1))
396 {
397 dir = 1;
398 i_start = bidi_cache_last_idx + 1;
399 }
400 else if (dir)
b7b65b15
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401 i_start = bidi_cache_last_idx;
402 else
403 {
404 dir = -1;
405 i_start = bidi_cache_idx - 1;
406 }
407
408 if (dir < 0)
409 {
410 /* Linear search for now; FIXME! */
87e67904 411 for (i = i_start; i >= bidi_cache_start; i--)
182ce2d2
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412 if (bidi_cache[i].charpos <= charpos
413 && charpos < bidi_cache[i].charpos + bidi_cache[i].nchars
b7b65b15
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414 && (level == -1 || bidi_cache[i].resolved_level <= level))
415 return i;
416 }
417 else
418 {
419 for (i = i_start; i < bidi_cache_idx; i++)
182ce2d2
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420 if (bidi_cache[i].charpos <= charpos
421 && charpos < bidi_cache[i].charpos + bidi_cache[i].nchars
b7b65b15
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422 && (level == -1 || bidi_cache[i].resolved_level <= level))
423 return i;
424 }
425 }
426
427 return -1;
428}
429
430/* Find a cached state where the resolved level changes to a value
431 that is lower than LEVEL, and return its cache slot index. DIR is
432 the direction to search, starting with the last used cache slot.
87e67904
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433 If DIR is zero, we search backwards from the last occupied cache
434 slot. BEFORE, if non-zero, means return the index of the slot that
435 is ``before'' the level change in the search direction. That is,
b7b65b15
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436 given the cached levels like this:
437
438 1122333442211
439 AB C
440
441 and assuming we are at the position cached at the slot marked with
442 C, searching backwards (DIR = -1) for LEVEL = 2 will return the
443 index of slot B or A, depending whether BEFORE is, respectively,
444 non-zero or zero. */
39e378da 445static ptrdiff_t
b7b65b15
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446bidi_cache_find_level_change (int level, int dir, int before)
447{
448 if (bidi_cache_idx)
449 {
39e378da 450 ptrdiff_t i = dir ? bidi_cache_last_idx : bidi_cache_idx - 1;
b7b65b15
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451 int incr = before ? 1 : 0;
452
6eec7596
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453 xassert (!dir || bidi_cache_last_idx >= 0);
454
b7b65b15
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455 if (!dir)
456 dir = -1;
457 else if (!incr)
458 i += dir;
459
460 if (dir < 0)
461 {
87e67904 462 while (i >= bidi_cache_start + incr)
b7b65b15
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463 {
464 if (bidi_cache[i - incr].resolved_level >= 0
465 && bidi_cache[i - incr].resolved_level < level)
466 return i;
467 i--;
468 }
469 }
470 else
471 {
472 while (i < bidi_cache_idx - incr)
473 {
474 if (bidi_cache[i + incr].resolved_level >= 0
475 && bidi_cache[i + incr].resolved_level < level)
476 return i;
477 i++;
478 }
479 }
480 }
481
482 return -1;
483}
484
58b9f433 485static inline void
39e378da 486bidi_cache_ensure_space (ptrdiff_t idx)
58b9f433
EZ
487{
488 /* Enlarge the cache as needed. */
489 if (idx >= bidi_cache_size)
490 {
f0eb61e9
PE
491 /* The bidi cache cannot be larger than the largest Lisp string
492 or buffer. */
512a289d
RS
493 ptrdiff_t string_or_buffer_bound
494 = max (BUF_BYTES_MAX, STRING_BYTES_BOUND);
f0eb61e9
PE
495
496 /* Also, it cannot be larger than what C can represent. */
512a289d
RS
497 ptrdiff_t c_bound
498 = (min (PTRDIFF_MAX, SIZE_MAX) - bidi_shelve_header_size) / elsz;
f0eb61e9 499
512a289d
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500 bidi_cache
501 = xpalloc (bidi_cache, &bidi_cache_size,
502 max (BIDI_CACHE_CHUNK, idx - bidi_cache_size + 1),
503 min (string_or_buffer_bound, c_bound), elsz);
58b9f433
EZ
504 }
505}
506
55d4c1b2 507static inline void
b7b65b15
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508bidi_cache_iterator_state (struct bidi_it *bidi_it, int resolved)
509{
39e378da 510 ptrdiff_t idx;
b7b65b15
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511
512 /* We should never cache on backward scans. */
513 if (bidi_it->scan_dir == -1)
514 abort ();
515 idx = bidi_cache_search (bidi_it->charpos, -1, 1);
516
517 if (idx < 0)
518 {
519 idx = bidi_cache_idx;
58b9f433 520 bidi_cache_ensure_space (idx);
bd924a5d
EZ
521 /* Character positions should correspond to cache positions 1:1.
522 If we are outside the range of cached positions, the cache is
523 useless and must be reset. */
87e67904 524 if (idx > bidi_cache_start &&
182ce2d2
EZ
525 (bidi_it->charpos > (bidi_cache[idx - 1].charpos
526 + bidi_cache[idx - 1].nchars)
a1344e7d 527 || bidi_it->charpos < bidi_cache[bidi_cache_start].charpos))
bd924a5d
EZ
528 {
529 bidi_cache_reset ();
87e67904 530 idx = bidi_cache_start;
bd924a5d 531 }
102ebb00
EZ
532 if (bidi_it->nchars <= 0)
533 abort ();
b7b65b15
EZ
534 bidi_copy_it (&bidi_cache[idx], bidi_it);
535 if (!resolved)
536 bidi_cache[idx].resolved_level = -1;
537 }
538 else
539 {
540 /* Copy only the members which could have changed, to avoid
541 costly copying of the entire struct. */
542 bidi_cache[idx].type = bidi_it->type;
2d6e4628 543 bidi_check_type (bidi_it->type);
89d3374a
EZ
544 bidi_cache[idx].type_after_w1 = bidi_it->type_after_w1;
545 bidi_check_type (bidi_it->type_after_w1);
b7b65b15
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546 if (resolved)
547 bidi_cache[idx].resolved_level = bidi_it->resolved_level;
548 else
549 bidi_cache[idx].resolved_level = -1;
550 bidi_cache[idx].invalid_levels = bidi_it->invalid_levels;
551 bidi_cache[idx].invalid_rl_levels = bidi_it->invalid_rl_levels;
552 bidi_cache[idx].next_for_neutral = bidi_it->next_for_neutral;
553 bidi_cache[idx].next_for_ws = bidi_it->next_for_ws;
554 bidi_cache[idx].ignore_bn_limit = bidi_it->ignore_bn_limit;
f67cdd7f 555 bidi_cache[idx].disp_pos = bidi_it->disp_pos;
0c95fcf7 556 bidi_cache[idx].disp_prop = bidi_it->disp_prop;
b7b65b15
EZ
557 }
558
559 bidi_cache_last_idx = idx;
560 if (idx >= bidi_cache_idx)
561 bidi_cache_idx = idx + 1;
562}
563
55d4c1b2 564static inline bidi_type_t
61bfec98 565bidi_cache_find (EMACS_INT charpos, int level, struct bidi_it *bidi_it)
b7b65b15 566{
39e378da 567 ptrdiff_t i = bidi_cache_search (charpos, level, bidi_it->scan_dir);
b7b65b15 568
87e67904 569 if (i >= bidi_cache_start)
b7b65b15
EZ
570 {
571 bidi_dir_t current_scan_dir = bidi_it->scan_dir;
572
5009f85e 573 bidi_copy_it (bidi_it, &bidi_cache[i]);
b7b65b15
EZ
574 bidi_cache_last_idx = i;
575 /* Don't let scan direction from from the cached state override
576 the current scan direction. */
577 bidi_it->scan_dir = current_scan_dir;
578 return bidi_it->type;
579 }
580
581 return UNKNOWN_BT;
582}
583
55d4c1b2 584static inline int
b7b65b15
EZ
585bidi_peek_at_next_level (struct bidi_it *bidi_it)
586{
87e67904 587 if (bidi_cache_idx == bidi_cache_start || bidi_cache_last_idx == -1)
b7b65b15
EZ
588 abort ();
589 return bidi_cache[bidi_cache_last_idx + bidi_it->scan_dir].resolved_level;
590}
591
cbb09f04 592\f
58b9f433
EZ
593/***********************************************************************
594 Pushing and popping the bidi iterator state
595 ***********************************************************************/
58b9f433
EZ
596
597/* Push the bidi iterator state in preparation for reordering a
598 different object, e.g. display string found at certain buffer
7e2ad32c
EZ
599 position. Pushing the bidi iterator boils down to saving its
600 entire state on the cache and starting a new cache "stacked" on top
601 of the current cache. */
58b9f433
EZ
602void
603bidi_push_it (struct bidi_it *bidi_it)
b7b65b15 604{
58b9f433
EZ
605 /* Save the current iterator state in its entirety after the last
606 used cache slot. */
607 bidi_cache_ensure_space (bidi_cache_idx);
608 memcpy (&bidi_cache[bidi_cache_idx++], bidi_it, sizeof (struct bidi_it));
be39f003 609
58b9f433 610 /* Push the current cache start onto the stack. */
7e2ad32c 611 xassert (bidi_cache_sp < IT_STACK_SIZE);
58b9f433 612 bidi_cache_start_stack[bidi_cache_sp++] = bidi_cache_start;
be39f003 613
58b9f433
EZ
614 /* Start a new level of cache, and make it empty. */
615 bidi_cache_start = bidi_cache_idx;
616 bidi_cache_last_idx = -1;
617}
618
619/* Restore the iterator state saved by bidi_push_it and return the
620 cache to the corresponding state. */
621void
622bidi_pop_it (struct bidi_it *bidi_it)
623{
624 if (bidi_cache_start <= 0)
625 abort ();
626
627 /* Reset the next free cache slot index to what it was before the
628 call to bidi_push_it. */
629 bidi_cache_idx = bidi_cache_start - 1;
630
631 /* Restore the bidi iterator state saved in the cache. */
632 memcpy (bidi_it, &bidi_cache[bidi_cache_idx], sizeof (struct bidi_it));
633
634 /* Pop the previous cache start from the stack. */
635 if (bidi_cache_sp <= 0)
636 abort ();
637 bidi_cache_start = bidi_cache_start_stack[--bidi_cache_sp];
638
639 /* Invalidate the last-used cache slot data. */
640 bidi_cache_last_idx = -1;
641}
642
ec7cc85b 643static ptrdiff_t bidi_cache_total_alloc;
35928349 644
ed94e6d7
EZ
645/* Stash away a copy of the cache and its control variables. */
646void *
647bidi_shelve_cache (void)
648{
649 unsigned char *databuf;
458bfed3 650 ptrdiff_t alloc;
ed94e6d7 651
35928349 652 /* Empty cache. */
ed94e6d7
EZ
653 if (bidi_cache_idx == 0)
654 return NULL;
655
458bfed3
PE
656 alloc = (bidi_shelve_header_size
657 + bidi_cache_idx * sizeof (struct bidi_it));
658 databuf = xmalloc (alloc);
659 bidi_cache_total_alloc += alloc;
35928349 660
ed94e6d7
EZ
661 memcpy (databuf, &bidi_cache_idx, sizeof (bidi_cache_idx));
662 memcpy (databuf + sizeof (bidi_cache_idx),
663 bidi_cache, bidi_cache_idx * sizeof (struct bidi_it));
664 memcpy (databuf + sizeof (bidi_cache_idx)
665 + bidi_cache_idx * sizeof (struct bidi_it),
666 bidi_cache_start_stack, sizeof (bidi_cache_start_stack));
667 memcpy (databuf + sizeof (bidi_cache_idx)
668 + bidi_cache_idx * sizeof (struct bidi_it)
669 + sizeof (bidi_cache_start_stack),
670 &bidi_cache_sp, sizeof (bidi_cache_sp));
671 memcpy (databuf + sizeof (bidi_cache_idx)
672 + bidi_cache_idx * sizeof (struct bidi_it)
673 + sizeof (bidi_cache_start_stack) + sizeof (bidi_cache_sp),
674 &bidi_cache_start, sizeof (bidi_cache_start));
675 memcpy (databuf + sizeof (bidi_cache_idx)
676 + bidi_cache_idx * sizeof (struct bidi_it)
677 + sizeof (bidi_cache_start_stack) + sizeof (bidi_cache_sp)
678 + sizeof (bidi_cache_start),
679 &bidi_cache_last_idx, sizeof (bidi_cache_last_idx));
680
681 return databuf;
682}
683
d1410150
EZ
684/* Restore the cache state from a copy stashed away by
685 bidi_shelve_cache, and free the buffer used to stash that copy.
686 JUST_FREE non-zero means free the buffer, but don't restore the
687 cache; used when the corresponding iterator is discarded instead of
688 being restored. */
ed94e6d7 689void
35928349 690bidi_unshelve_cache (void *databuf, int just_free)
ed94e6d7
EZ
691{
692 unsigned char *p = databuf;
693
694 if (!p)
be39f003 695 {
d1410150
EZ
696 if (!just_free)
697 {
698 /* A NULL pointer means an empty cache. */
699 bidi_cache_start = 0;
700 bidi_cache_sp = 0;
701 bidi_cache_reset ();
702 }
be39f003 703 }
ed94e6d7
EZ
704 else
705 {
35928349
EZ
706 if (just_free)
707 {
708 ptrdiff_t idx;
709
710 memcpy (&idx, p, sizeof (bidi_cache_idx));
512a289d
RS
711 bidi_cache_total_alloc
712 -= bidi_shelve_header_size + idx * sizeof (struct bidi_it);
35928349
EZ
713 }
714 else
715 {
716 memcpy (&bidi_cache_idx, p, sizeof (bidi_cache_idx));
717 bidi_cache_ensure_space (bidi_cache_idx);
718 memcpy (bidi_cache, p + sizeof (bidi_cache_idx),
719 bidi_cache_idx * sizeof (struct bidi_it));
720 memcpy (bidi_cache_start_stack,
721 p + sizeof (bidi_cache_idx)
722 + bidi_cache_idx * sizeof (struct bidi_it),
723 sizeof (bidi_cache_start_stack));
724 memcpy (&bidi_cache_sp,
725 p + sizeof (bidi_cache_idx)
726 + bidi_cache_idx * sizeof (struct bidi_it)
727 + sizeof (bidi_cache_start_stack),
728 sizeof (bidi_cache_sp));
729 memcpy (&bidi_cache_start,
730 p + sizeof (bidi_cache_idx)
731 + bidi_cache_idx * sizeof (struct bidi_it)
732 + sizeof (bidi_cache_start_stack) + sizeof (bidi_cache_sp),
733 sizeof (bidi_cache_start));
734 memcpy (&bidi_cache_last_idx,
735 p + sizeof (bidi_cache_idx)
736 + bidi_cache_idx * sizeof (struct bidi_it)
737 + sizeof (bidi_cache_start_stack) + sizeof (bidi_cache_sp)
738 + sizeof (bidi_cache_start),
739 sizeof (bidi_cache_last_idx));
512a289d
RS
740 bidi_cache_total_alloc
741 -= (bidi_shelve_header_size
742 + bidi_cache_idx * sizeof (struct bidi_it));
35928349 743 }
ed94e6d7
EZ
744
745 xfree (p);
746 }
747}
b7b65b15 748
58b9f433 749\f
cbb09f04
EZ
750/***********************************************************************
751 Initialization
752 ***********************************************************************/
753static void
754bidi_initialize (void)
b7b65b15 755{
474a8465
EZ
756 bidi_type_table = uniprop_table (intern ("bidi-class"));
757 if (NILP (bidi_type_table))
758 abort ();
cbb09f04
EZ
759 staticpro (&bidi_type_table);
760
474a8465
EZ
761 bidi_mirror_table = uniprop_table (intern ("mirroring"));
762 if (NILP (bidi_mirror_table))
763 abort ();
cbb09f04
EZ
764 staticpro (&bidi_mirror_table);
765
cbb09f04
EZ
766 Qparagraph_start = intern ("paragraph-start");
767 staticpro (&Qparagraph_start);
768 paragraph_start_re = Fsymbol_value (Qparagraph_start);
769 if (!STRINGP (paragraph_start_re))
770 paragraph_start_re = build_string ("\f\\|[ \t]*$");
771 staticpro (&paragraph_start_re);
772 Qparagraph_separate = intern ("paragraph-separate");
773 staticpro (&Qparagraph_separate);
774 paragraph_separate_re = Fsymbol_value (Qparagraph_separate);
775 if (!STRINGP (paragraph_separate_re))
776 paragraph_separate_re = build_string ("[ \t\f]*$");
777 staticpro (&paragraph_separate_re);
58b9f433
EZ
778
779 bidi_cache_sp = 0;
ec7cc85b 780 bidi_cache_total_alloc = 0;
58b9f433 781
cbb09f04 782 bidi_initialized = 1;
b7b65b15
EZ
783}
784
cbb09f04
EZ
785/* Do whatever UAX#9 clause X8 says should be done at paragraph's
786 end. */
55d4c1b2 787static inline void
cbb09f04 788bidi_set_paragraph_end (struct bidi_it *bidi_it)
b7b65b15 789{
cbb09f04
EZ
790 bidi_it->invalid_levels = 0;
791 bidi_it->invalid_rl_levels = -1;
792 bidi_it->stack_idx = 0;
793 bidi_it->resolved_level = bidi_it->level_stack[0].level;
794}
b7b65b15 795
cbb09f04
EZ
796/* Initialize the bidi iterator from buffer/string position CHARPOS. */
797void
798bidi_init_it (EMACS_INT charpos, EMACS_INT bytepos, int frame_window_p,
799 struct bidi_it *bidi_it)
800{
801 if (! bidi_initialized)
802 bidi_initialize ();
803 if (charpos >= 0)
804 bidi_it->charpos = charpos;
805 if (bytepos >= 0)
806 bidi_it->bytepos = bytepos;
807 bidi_it->frame_window_p = frame_window_p;
808 bidi_it->nchars = -1; /* to be computed in bidi_resolve_explicit_1 */
809 bidi_it->first_elt = 1;
810 bidi_set_paragraph_end (bidi_it);
811 bidi_it->new_paragraph = 1;
812 bidi_it->separator_limit = -1;
813 bidi_it->type = NEUTRAL_B;
814 bidi_it->type_after_w1 = NEUTRAL_B;
815 bidi_it->orig_type = NEUTRAL_B;
816 bidi_it->prev_was_pdf = 0;
512a289d
RS
817 bidi_it->prev.type = bidi_it->prev.type_after_w1
818 = bidi_it->prev.orig_type = UNKNOWN_BT;
819 bidi_it->last_strong.type = bidi_it->last_strong.type_after_w1
820 = bidi_it->last_strong.orig_type = UNKNOWN_BT;
cbb09f04 821 bidi_it->next_for_neutral.charpos = -1;
512a289d
RS
822 bidi_it->next_for_neutral.type
823 = bidi_it->next_for_neutral.type_after_w1
824 = bidi_it->next_for_neutral.orig_type = UNKNOWN_BT;
cbb09f04 825 bidi_it->prev_for_neutral.charpos = -1;
512a289d
RS
826 bidi_it->prev_for_neutral.type
827 = bidi_it->prev_for_neutral.type_after_w1
828 = bidi_it->prev_for_neutral.orig_type = UNKNOWN_BT;
cbb09f04
EZ
829 bidi_it->sor = L2R; /* FIXME: should it be user-selectable? */
830 bidi_it->disp_pos = -1; /* invalid/unknown */
0c95fcf7 831 bidi_it->disp_prop = 0;
cbb09f04
EZ
832 /* We can only shrink the cache if we are at the bottom level of its
833 "stack". */
834 if (bidi_cache_start == 0)
835 bidi_cache_shrink ();
58b9f433
EZ
836 else
837 bidi_cache_reset ();
b7b65b15
EZ
838}
839
182ce2d2 840/* Perform initializations for reordering a new line of bidi text. */
6bff6497 841static void
be39f003
EZ
842bidi_line_init (struct bidi_it *bidi_it)
843{
844 bidi_it->scan_dir = 1; /* FIXME: do we need to have control on this? */
845 bidi_it->resolved_level = bidi_it->level_stack[0].level;
846 bidi_it->level_stack[0].override = NEUTRAL_DIR; /* X1 */
847 bidi_it->invalid_levels = 0;
848 bidi_it->invalid_rl_levels = -1;
849 bidi_it->next_en_pos = -1;
850 bidi_it->next_for_ws.type = UNKNOWN_BT;
b44d9321 851 bidi_set_sor_type (bidi_it,
512a289d 852 (bidi_it->paragraph_dir == R2L ? 1 : 0),
be39f003
EZ
853 bidi_it->level_stack[0].level); /* X10 */
854
855 bidi_cache_reset ();
856}
857
cbb09f04
EZ
858\f
859/***********************************************************************
860 Fetching characters
861 ***********************************************************************/
862
f3014ef5
EZ
863/* Count bytes in string S between BEG/BEGBYTE and END. BEG and END
864 are zero-based character positions in S, BEGBYTE is byte position
865 corresponding to BEG. UNIBYTE, if non-zero, means S is a unibyte
866 string. */
87e67904
EZ
867static inline EMACS_INT
868bidi_count_bytes (const unsigned char *s, const EMACS_INT beg,
f3014ef5 869 const EMACS_INT begbyte, const EMACS_INT end, int unibyte)
87e67904
EZ
870{
871 EMACS_INT pos = beg;
872 const unsigned char *p = s + begbyte, *start = p;
873
f3014ef5
EZ
874 if (unibyte)
875 p = s + end;
876 else
87e67904 877 {
f3014ef5
EZ
878 if (!CHAR_HEAD_P (*p))
879 abort ();
880
881 while (pos < end)
882 {
883 p += BYTES_BY_CHAR_HEAD (*p);
884 pos++;
885 }
87e67904
EZ
886 }
887
888 return p - start;
889}
890
891/* Fetch and returns the character at byte position BYTEPOS. If S is
892 non-NULL, fetch the character from string S; otherwise fetch the
f3014ef5
EZ
893 character from the current buffer. UNIBYTE non-zero means S is a
894 unibyte string. */
87e67904 895static inline int
f3014ef5 896bidi_char_at_pos (EMACS_INT bytepos, const unsigned char *s, int unibyte)
87e67904
EZ
897{
898 if (s)
f3014ef5
EZ
899 {
900 if (unibyte)
901 return s[bytepos];
902 else
903 return STRING_CHAR (s + bytepos);
904 }
87e67904
EZ
905 else
906 return FETCH_MULTIBYTE_CHAR (bytepos);
907}
908
102ebb00
EZ
909/* Fetch and return the character at BYTEPOS/CHARPOS. If that
910 character is covered by a display string, treat the entire run of
0c95fcf7
EZ
911 covered characters as a single character, either u+2029 or u+FFFC,
912 and return their combined length in CH_LEN and NCHARS. DISP_POS
913 specifies the character position of the next display string, or -1
b75258b3
EZ
914 if not yet computed. When the next character is at or beyond that
915 position, the function updates DISP_POS with the position of the
916 next display string. DISP_PROP non-zero means that there's really
0c95fcf7
EZ
917 a display string at DISP_POS, as opposed to when we searched till
918 DISP_POS without finding one. If DISP_PROP is 2, it means the
919 display spec is of the form `(space ...)', which is replaced with
b75258b3
EZ
920 u+2029 to handle it as a paragraph separator. STRING->s is the C
921 string to iterate, or NULL if iterating over a buffer or a Lisp
922 string; in the latter case, STRING->lstring is the Lisp string. */
fec2107c 923static inline int
102ebb00 924bidi_fetch_char (EMACS_INT bytepos, EMACS_INT charpos, EMACS_INT *disp_pos,
0c95fcf7 925 int *disp_prop, struct bidi_string_data *string,
fc6f18ce 926 int frame_window_p, EMACS_INT *ch_len, EMACS_INT *nchars)
182ce2d2
EZ
927{
928 int ch;
512a289d
RS
929 EMACS_INT endpos
930 = (string->s || STRINGP (string->lstring)) ? string->schars : ZV;
6db161be 931 struct text_pos pos;
182ce2d2 932
182ce2d2 933 /* If we got past the last known position of display string, compute
87e67904
EZ
934 the position of the next one. That position could be at CHARPOS. */
935 if (charpos < endpos && charpos > *disp_pos)
6db161be
EZ
936 {
937 SET_TEXT_POS (pos, charpos, bytepos);
55439c61 938 *disp_pos = compute_display_string_pos (&pos, string, frame_window_p,
0c95fcf7 939 disp_prop);
6db161be 940 }
102ebb00
EZ
941
942 /* Fetch the character at BYTEPOS. */
87e67904 943 if (charpos >= endpos)
182ce2d2
EZ
944 {
945 ch = BIDI_EOB;
946 *ch_len = 1;
947 *nchars = 1;
87e67904 948 *disp_pos = endpos;
0c95fcf7 949 *disp_prop = 0;
182ce2d2 950 }
0c95fcf7 951 else if (charpos >= *disp_pos && *disp_prop)
182ce2d2 952 {
7b600102
EZ
953 EMACS_INT disp_end_pos;
954
955 /* We don't expect to find ourselves in the middle of a display
956 property. Hopefully, it will never be needed. */
957 if (charpos > *disp_pos)
958 abort ();
0c95fcf7
EZ
959 /* Text covered by `display' properties and overlays with
960 display properties or display strings is handled as a single
961 character that represents the entire run of characters
962 covered by the display property. */
963 if (*disp_prop == 2)
964 {
965 /* `(space ...)' display specs are handled as paragraph
966 separators for the purposes of the reordering; see UAX#9
967 section 3 and clause HL1 in section 4.3 there. */
968 ch = 0x2029;
969 }
970 else
971 {
972 /* All other display specs are handled as the Unicode Object
973 Replacement Character. */
974 ch = 0xFFFC;
975 }
87e67904 976 disp_end_pos = compute_display_string_end (*disp_pos, string);
7b600102 977 *nchars = disp_end_pos - *disp_pos;
f3014ef5
EZ
978 if (*nchars <= 0)
979 abort ();
87e67904
EZ
980 if (string->s)
981 *ch_len = bidi_count_bytes (string->s, *disp_pos, bytepos,
f3014ef5 982 disp_end_pos, string->unibyte);
9f257352
EZ
983 else if (STRINGP (string->lstring))
984 *ch_len = bidi_count_bytes (SDATA (string->lstring), *disp_pos,
f3014ef5 985 bytepos, disp_end_pos, string->unibyte);
87e67904
EZ
986 else
987 *ch_len = CHAR_TO_BYTE (disp_end_pos) - bytepos;
182ce2d2 988 }
182ce2d2
EZ
989 else
990 {
87e67904
EZ
991 if (string->s)
992 {
66ff7ddf 993 int len;
87e67904 994
f3014ef5
EZ
995 if (!string->unibyte)
996 {
997 ch = STRING_CHAR_AND_LENGTH (string->s + bytepos, len);
998 *ch_len = len;
999 }
1000 else
1001 {
1002 ch = UNIBYTE_TO_CHAR (string->s[bytepos]);
1003 *ch_len = 1;
1004 }
87e67904 1005 }
9f257352
EZ
1006 else if (STRINGP (string->lstring))
1007 {
66ff7ddf 1008 int len;
9f257352 1009
f3014ef5
EZ
1010 if (!string->unibyte)
1011 {
1012 ch = STRING_CHAR_AND_LENGTH (SDATA (string->lstring) + bytepos,
1013 len);
1014 *ch_len = len;
1015 }
1016 else
1017 {
1018 ch = UNIBYTE_TO_CHAR (SREF (string->lstring, bytepos));
1019 *ch_len = 1;
1020 }
9f257352 1021 }
87e67904
EZ
1022 else
1023 {
1024 ch = FETCH_MULTIBYTE_CHAR (bytepos);
1025 *ch_len = CHAR_BYTES (ch);
1026 }
182ce2d2
EZ
1027 *nchars = 1;
1028 }
1029
1030 /* If we just entered a run of characters covered by a display
1031 string, compute the position of the next display string. */
55439c61 1032 if (charpos + *nchars <= endpos && charpos + *nchars > *disp_pos
0c95fcf7 1033 && *disp_prop)
6db161be
EZ
1034 {
1035 SET_TEXT_POS (pos, charpos + *nchars, bytepos + *ch_len);
55439c61 1036 *disp_pos = compute_display_string_pos (&pos, string, frame_window_p,
0c95fcf7 1037 disp_prop);
6db161be 1038 }
182ce2d2
EZ
1039
1040 return ch;
1041}
1042
cbb09f04
EZ
1043\f
1044/***********************************************************************
1045 Determining paragraph direction
1046 ***********************************************************************/
1047
1048/* Check if buffer position CHARPOS/BYTEPOS is the end of a paragraph.
1049 Value is the non-negative length of the paragraph separator
1050 following the buffer position, -1 if position is at the beginning
1051 of a new paragraph, or -2 if position is neither at beginning nor
1052 at end of a paragraph. */
1053static EMACS_INT
1054bidi_at_paragraph_end (EMACS_INT charpos, EMACS_INT bytepos)
1055{
1056 Lisp_Object sep_re;
1057 Lisp_Object start_re;
1058 EMACS_INT val;
1059
1060 sep_re = paragraph_separate_re;
1061 start_re = paragraph_start_re;
1062
1063 val = fast_looking_at (sep_re, charpos, bytepos, ZV, ZV_BYTE, Qnil);
1064 if (val < 0)
1065 {
1066 if (fast_looking_at (start_re, charpos, bytepos, ZV, ZV_BYTE, Qnil) >= 0)
1067 val = -1;
1068 else
1069 val = -2;
1070 }
1071
1072 return val;
1073}
1074
1137e8b8
EZ
1075/* On my 2005-vintage machine, searching back for paragraph start
1076 takes ~1 ms per line. And bidi_paragraph_init is called 4 times
1077 when user types C-p. The number below limits each call to
1078 bidi_paragraph_init to about 10 ms. */
1079#define MAX_PARAGRAPH_SEARCH 7500
1080
be39f003 1081/* Find the beginning of this paragraph by looking back in the buffer.
1137e8b8
EZ
1082 Value is the byte position of the paragraph's beginning, or
1083 BEGV_BYTE if paragraph_start_re is still not found after looking
1084 back MAX_PARAGRAPH_SEARCH lines in the buffer. */
be39f003 1085static EMACS_INT
b44d9321 1086bidi_find_paragraph_start (EMACS_INT pos, EMACS_INT pos_byte)
6bff6497 1087{
372b7a95 1088 Lisp_Object re = paragraph_start_re;
6bff6497 1089 EMACS_INT limit = ZV, limit_byte = ZV_BYTE;
1137e8b8 1090 EMACS_INT n = 0;
6bff6497 1091
6bff6497 1092 while (pos_byte > BEGV_BYTE
1137e8b8 1093 && n++ < MAX_PARAGRAPH_SEARCH
6bff6497
EZ
1094 && fast_looking_at (re, pos, pos_byte, limit, limit_byte, Qnil) < 0)
1095 {
182ce2d2
EZ
1096 /* FIXME: What if the paragraph beginning is covered by a
1097 display string? And what if a display string covering some
1098 of the text over which we scan back includes
1099 paragraph_start_re? */
be39f003
EZ
1100 pos = find_next_newline_no_quit (pos - 1, -1);
1101 pos_byte = CHAR_TO_BYTE (pos);
6bff6497 1102 }
1137e8b8
EZ
1103 if (n >= MAX_PARAGRAPH_SEARCH)
1104 pos_byte = BEGV_BYTE;
be39f003 1105 return pos_byte;
6bff6497
EZ
1106}
1107
bea4f10c 1108/* Determine the base direction, a.k.a. base embedding level, of the
b44d9321
EZ
1109 paragraph we are about to iterate through. If DIR is either L2R or
1110 R2L, just use that. Otherwise, determine the paragraph direction
bea4f10c
EZ
1111 from the first strong directional character of the paragraph.
1112
182ce2d2 1113 NO_DEFAULT_P non-zero means don't default to L2R if the paragraph
bea4f10c
EZ
1114 has no strong directional characters and both DIR and
1115 bidi_it->paragraph_dir are NEUTRAL_DIR. In that case, search back
1116 in the buffer until a paragraph is found with a strong character,
1117 or until hitting BEGV. In the latter case, fall back to L2R. This
1118 flag is used in current-bidi-paragraph-direction.
1119
1120 Note that this function gives the paragraph separator the same
1121 direction as the preceding paragraph, even though Emacs generally
1122 views the separartor as not belonging to any paragraph. */
b7b65b15 1123void
bea4f10c 1124bidi_paragraph_init (bidi_dir_t dir, struct bidi_it *bidi_it, int no_default_p)
b7b65b15 1125{
6bff6497 1126 EMACS_INT bytepos = bidi_it->bytepos;
9f257352 1127 int string_p = bidi_it->string.s != NULL || STRINGP (bidi_it->string.lstring);
bea4f10c 1128 EMACS_INT pstartbyte;
87e67904
EZ
1129 /* Note that begbyte is a byte position, while end is a character
1130 position. Yes, this is ugly, but we are trying to avoid costly
1131 calls to BYTE_TO_CHAR and its ilk. */
1132 EMACS_INT begbyte = string_p ? 0 : BEGV_BYTE;
1133 EMACS_INT end = string_p ? bidi_it->string.schars : ZV;
e7402cb2 1134
5e65aec0 1135 /* Special case for an empty buffer. */
87e67904 1136 if (bytepos == begbyte && bidi_it->charpos == end)
5e65aec0 1137 dir = L2R;
9c82e145 1138 /* We should never be called at EOB or before BEGV. */
87e67904 1139 else if (bidi_it->charpos >= end || bytepos < begbyte)
9c82e145
EZ
1140 abort ();
1141
be39f003
EZ
1142 if (dir == L2R)
1143 {
1144 bidi_it->paragraph_dir = L2R;
1145 bidi_it->new_paragraph = 0;
1146 }
1147 else if (dir == R2L)
1148 {
1149 bidi_it->paragraph_dir = R2L;
1150 bidi_it->new_paragraph = 0;
1151 }
b7b65b15
EZ
1152 else if (dir == NEUTRAL_DIR) /* P2 */
1153 {
182ce2d2
EZ
1154 int ch;
1155 EMACS_INT ch_len, nchars;
1156 EMACS_INT pos, disp_pos = -1;
0c95fcf7 1157 int disp_prop = 0;
6bff6497 1158 bidi_type_t type;
9f257352 1159 const unsigned char *s;
be39f003 1160
d20e1419
EZ
1161 if (!bidi_initialized)
1162 bidi_initialize ();
1163
be39f003
EZ
1164 /* If we are inside a paragraph separator, we are just waiting
1165 for the separator to be exhausted; use the previous paragraph
e5a2fec7
EZ
1166 direction. But don't do that if we have been just reseated,
1167 because we need to reinitialize below in that case. */
1168 if (!bidi_it->first_elt
1169 && bidi_it->charpos < bidi_it->separator_limit)
be39f003
EZ
1170 return;
1171
b44d9321 1172 /* If we are on a newline, get past it to where the next
5e65aec0
EZ
1173 paragraph might start. But don't do that at BEGV since then
1174 we are potentially in a new paragraph that doesn't yet
1175 exist. */
c143c213 1176 pos = bidi_it->charpos;
512a289d
RS
1177 s = (STRINGP (bidi_it->string.lstring)
1178 ? SDATA (bidi_it->string.lstring)
1179 : bidi_it->string.s);
f3014ef5
EZ
1180 if (bytepos > begbyte
1181 && bidi_char_at_pos (bytepos, s, bidi_it->string.unibyte) == '\n')
be39f003 1182 {
b44d9321 1183 bytepos++;
c143c213 1184 pos++;
be39f003 1185 }
b44d9321
EZ
1186
1187 /* We are either at the beginning of a paragraph or in the
1188 middle of it. Find where this paragraph starts. */
87e67904
EZ
1189 if (string_p)
1190 {
1191 /* We don't support changes of paragraph direction inside a
1192 string. It is treated as a single paragraph. */
1193 pstartbyte = 0;
1194 }
1195 else
1196 pstartbyte = bidi_find_paragraph_start (pos, bytepos);
be39f003
EZ
1197 bidi_it->separator_limit = -1;
1198 bidi_it->new_paragraph = 0;
bea4f10c
EZ
1199
1200 /* The following loop is run more than once only if NO_DEFAULT_P
87e67904 1201 is non-zero, and only if we are iterating on a buffer. */
bea4f10c
EZ
1202 do {
1203 bytepos = pstartbyte;
87e67904
EZ
1204 if (!string_p)
1205 pos = BYTE_TO_CHAR (bytepos);
0c95fcf7 1206 ch = bidi_fetch_char (bytepos, pos, &disp_pos, &disp_prop,
55439c61 1207 &bidi_it->string,
87e67904 1208 bidi_it->frame_window_p, &ch_len, &nchars);
bea4f10c
EZ
1209 type = bidi_get_type (ch, NEUTRAL_DIR);
1210
182ce2d2 1211 for (pos += nchars, bytepos += ch_len;
bea4f10c
EZ
1212 (bidi_get_category (type) != STRONG)
1213 || (bidi_ignore_explicit_marks_for_paragraph_level
1214 && (type == RLE || type == RLO
1215 || type == LRE || type == LRO));
1216 type = bidi_get_type (ch, NEUTRAL_DIR))
1217 {
87e67904 1218 if (pos >= end)
bea4f10c
EZ
1219 {
1220 /* Pretend there's a paragraph separator at end of
87e67904 1221 buffer/string. */
bea4f10c
EZ
1222 type = NEUTRAL_B;
1223 break;
1224 }
0bb23927
EZ
1225 if (!string_p
1226 && type == NEUTRAL_B
1227 && bidi_at_paragraph_end (pos, bytepos) >= -1)
cf99dcf8 1228 break;
102ebb00 1229 /* Fetch next character and advance to get past it. */
55439c61 1230 ch = bidi_fetch_char (bytepos, pos, &disp_pos,
0c95fcf7 1231 &disp_prop, &bidi_it->string,
fc6f18ce 1232 bidi_it->frame_window_p, &ch_len, &nchars);
182ce2d2
EZ
1233 pos += nchars;
1234 bytepos += ch_len;
bea4f10c 1235 }
32413314
EZ
1236 if ((type == STRONG_R || type == STRONG_AL) /* P3 */
1237 || (!bidi_ignore_explicit_marks_for_paragraph_level
1238 && (type == RLO || type == RLE)))
bea4f10c 1239 bidi_it->paragraph_dir = R2L;
32413314
EZ
1240 else if (type == STRONG_L
1241 || (!bidi_ignore_explicit_marks_for_paragraph_level
1242 && (type == LRO || type == LRE)))
bea4f10c 1243 bidi_it->paragraph_dir = L2R;
87e67904
EZ
1244 if (!string_p
1245 && no_default_p && bidi_it->paragraph_dir == NEUTRAL_DIR)
bea4f10c
EZ
1246 {
1247 /* If this paragraph is at BEGV, default to L2R. */
1248 if (pstartbyte == BEGV_BYTE)
1249 bidi_it->paragraph_dir = L2R; /* P3 and HL1 */
1250 else
1251 {
1252 EMACS_INT prevpbyte = pstartbyte;
1253 EMACS_INT p = BYTE_TO_CHAR (pstartbyte), pbyte = pstartbyte;
1254
1255 /* Find the beginning of the previous paragraph, if any. */
1256 while (pbyte > BEGV_BYTE && prevpbyte >= pstartbyte)
1257 {
182ce2d2
EZ
1258 /* FXIME: What if p is covered by a display
1259 string? See also a FIXME inside
1260 bidi_find_paragraph_start. */
bea4f10c
EZ
1261 p--;
1262 pbyte = CHAR_TO_BYTE (p);
1263 prevpbyte = bidi_find_paragraph_start (p, pbyte);
1264 }
1265 pstartbyte = prevpbyte;
1266 }
1267 }
87e67904
EZ
1268 } while (!string_p
1269 && no_default_p && bidi_it->paragraph_dir == NEUTRAL_DIR);
b7b65b15 1270 }
be39f003
EZ
1271 else
1272 abort ();
b7b65b15 1273
b44d9321
EZ
1274 /* Contrary to UAX#9 clause P3, we only default the paragraph
1275 direction to L2R if we have no previous usable paragraph
bea4f10c 1276 direction. This is allowed by the HL1 clause. */
d20e1419 1277 if (bidi_it->paragraph_dir != L2R && bidi_it->paragraph_dir != R2L)
bea4f10c 1278 bidi_it->paragraph_dir = L2R; /* P3 and HL1 ``higher-level protocols'' */
be39f003 1279 if (bidi_it->paragraph_dir == R2L)
b44d9321 1280 bidi_it->level_stack[0].level = 1;
be39f003 1281 else
b44d9321 1282 bidi_it->level_stack[0].level = 0;
be39f003
EZ
1283
1284 bidi_line_init (bidi_it);
b7b65b15
EZ
1285}
1286
cbb09f04
EZ
1287\f
1288/***********************************************************************
1289 Resolving explicit and implicit levels.
58b9f433 1290 The rest of this file constitutes the core of the UBA implementation.
cbb09f04 1291 ***********************************************************************/
b7b65b15 1292
55d4c1b2 1293static inline int
182ce2d2 1294bidi_explicit_dir_char (int ch)
b7b65b15 1295{
182ce2d2
EZ
1296 bidi_type_t ch_type;
1297
1298 if (!bidi_initialized)
1299 abort ();
1300 ch_type = (bidi_type_t) XINT (CHAR_TABLE_REF (bidi_type_table, ch));
1301 return (ch_type == LRE || ch_type == LRO
1302 || ch_type == RLE || ch_type == RLO
1303 || ch_type == PDF);
b7b65b15
EZ
1304}
1305
1306/* A helper function for bidi_resolve_explicit. It advances to the
1307 next character in logical order and determines the new embedding
1308 level and directional override, but does not take into account
1309 empty embeddings. */
1310static int
1311bidi_resolve_explicit_1 (struct bidi_it *bidi_it)
1312{
1313 int curchar;
1314 bidi_type_t type;
1315 int current_level;
1316 int new_level;
1317 bidi_dir_t override;
9f257352 1318 int string_p = bidi_it->string.s != NULL || STRINGP (bidi_it->string.lstring);
b7b65b15 1319
182ce2d2
EZ
1320 /* If reseat()'ed, don't advance, so as to start iteration from the
1321 position where we were reseated. bidi_it->bytepos can be less
1322 than BEGV_BYTE after reseat to BEGV. */
87e67904 1323 if (bidi_it->bytepos < (string_p ? 0 : BEGV_BYTE)
9c82e145 1324 || bidi_it->first_elt)
e7402cb2 1325 {
9c82e145 1326 bidi_it->first_elt = 0;
87e67904
EZ
1327 if (string_p)
1328 {
512a289d
RS
1329 const unsigned char *p
1330 = (STRINGP (bidi_it->string.lstring)
1331 ? SDATA (bidi_it->string.lstring)
1332 : bidi_it->string.s);
9f257352 1333
87e67904
EZ
1334 if (bidi_it->charpos < 0)
1335 bidi_it->charpos = 0;
f3014ef5
EZ
1336 bidi_it->bytepos = bidi_count_bytes (p, 0, 0, bidi_it->charpos,
1337 bidi_it->string.unibyte);
87e67904
EZ
1338 }
1339 else
1340 {
1341 if (bidi_it->charpos < BEGV)
1342 bidi_it->charpos = BEGV;
1343 bidi_it->bytepos = CHAR_TO_BYTE (bidi_it->charpos);
1344 }
e7402cb2 1345 }
87e67904
EZ
1346 /* Don't move at end of buffer/string. */
1347 else if (bidi_it->charpos < (string_p ? bidi_it->string.schars : ZV))
b7b65b15 1348 {
182ce2d2
EZ
1349 /* Advance to the next character, skipping characters covered by
1350 display strings (nchars > 1). */
102ebb00
EZ
1351 if (bidi_it->nchars <= 0)
1352 abort ();
182ce2d2 1353 bidi_it->charpos += bidi_it->nchars;
e7402cb2
EZ
1354 if (bidi_it->ch_len == 0)
1355 abort ();
b7b65b15
EZ
1356 bidi_it->bytepos += bidi_it->ch_len;
1357 }
1358
1359 current_level = bidi_it->level_stack[bidi_it->stack_idx].level; /* X1 */
1360 override = bidi_it->level_stack[bidi_it->stack_idx].override;
1361 new_level = current_level;
1362
87e67904 1363 if (bidi_it->charpos >= (string_p ? bidi_it->string.schars : ZV))
e7402cb2
EZ
1364 {
1365 curchar = BIDI_EOB;
1366 bidi_it->ch_len = 1;
182ce2d2 1367 bidi_it->nchars = 1;
87e67904 1368 bidi_it->disp_pos = (string_p ? bidi_it->string.schars : ZV);
0c95fcf7 1369 bidi_it->disp_prop = 0;
e7402cb2
EZ
1370 }
1371 else
1372 {
182ce2d2
EZ
1373 /* Fetch the character at BYTEPOS. If it is covered by a
1374 display string, treat the entire run of covered characters as
1375 a single character u+FFFC. */
102ebb00 1376 curchar = bidi_fetch_char (bidi_it->bytepos, bidi_it->charpos,
0c95fcf7 1377 &bidi_it->disp_pos, &bidi_it->disp_prop,
55439c61 1378 &bidi_it->string, bidi_it->frame_window_p,
102ebb00 1379 &bidi_it->ch_len, &bidi_it->nchars);
e7402cb2 1380 }
b7b65b15 1381 bidi_it->ch = curchar;
b7b65b15 1382
6bff6497
EZ
1383 /* Don't apply directional override here, as all the types we handle
1384 below will not be affected by the override anyway, and we need
1385 the original type unaltered. The override will be applied in
1386 bidi_resolve_weak. */
1387 type = bidi_get_type (curchar, NEUTRAL_DIR);
89d3374a
EZ
1388 bidi_it->orig_type = type;
1389 bidi_check_type (bidi_it->orig_type);
b7b65b15
EZ
1390
1391 if (type != PDF)
1392 bidi_it->prev_was_pdf = 0;
1393
89d3374a 1394 bidi_it->type_after_w1 = UNKNOWN_BT;
b7b65b15
EZ
1395
1396 switch (type)
1397 {
1398 case RLE: /* X2 */
1399 case RLO: /* X4 */
89d3374a
EZ
1400 bidi_it->type_after_w1 = type;
1401 bidi_check_type (bidi_it->type_after_w1);
b7b65b15 1402 type = WEAK_BN; /* X9/Retaining */
87e67904 1403 if (bidi_it->ignore_bn_limit <= -1)
b7b65b15
EZ
1404 {
1405 if (current_level <= BIDI_MAXLEVEL - 4)
1406 {
1407 /* Compute the least odd embedding level greater than
1408 the current level. */
1409 new_level = ((current_level + 1) & ~1) + 1;
89d3374a 1410 if (bidi_it->type_after_w1 == RLE)
b7b65b15
EZ
1411 override = NEUTRAL_DIR;
1412 else
1413 override = R2L;
1414 if (current_level == BIDI_MAXLEVEL - 4)
1415 bidi_it->invalid_rl_levels = 0;
1416 bidi_push_embedding_level (bidi_it, new_level, override);
1417 }
1418 else
1419 {
1420 bidi_it->invalid_levels++;
1421 /* See the commentary about invalid_rl_levels below. */
1422 if (bidi_it->invalid_rl_levels < 0)
1423 bidi_it->invalid_rl_levels = 0;
1424 bidi_it->invalid_rl_levels++;
1425 }
1426 }
89d3374a 1427 else if (bidi_it->prev.type_after_w1 == WEAK_EN /* W5/Retaining */
b7b65b15
EZ
1428 || bidi_it->next_en_pos > bidi_it->charpos)
1429 type = WEAK_EN;
1430 break;
1431 case LRE: /* X3 */
1432 case LRO: /* X5 */
89d3374a
EZ
1433 bidi_it->type_after_w1 = type;
1434 bidi_check_type (bidi_it->type_after_w1);
b7b65b15 1435 type = WEAK_BN; /* X9/Retaining */
87e67904 1436 if (bidi_it->ignore_bn_limit <= -1)
b7b65b15
EZ
1437 {
1438 if (current_level <= BIDI_MAXLEVEL - 5)
1439 {
1440 /* Compute the least even embedding level greater than
1441 the current level. */
1442 new_level = ((current_level + 2) & ~1);
89d3374a 1443 if (bidi_it->type_after_w1 == LRE)
b7b65b15
EZ
1444 override = NEUTRAL_DIR;
1445 else
1446 override = L2R;
1447 bidi_push_embedding_level (bidi_it, new_level, override);
1448 }
1449 else
1450 {
1451 bidi_it->invalid_levels++;
1452 /* invalid_rl_levels counts invalid levels encountered
1453 while the embedding level was already too high for
1454 LRE/LRO, but not for RLE/RLO. That is because
1455 there may be exactly one PDF which we should not
1456 ignore even though invalid_levels is non-zero.
1457 invalid_rl_levels helps to know what PDF is
1458 that. */
1459 if (bidi_it->invalid_rl_levels >= 0)
1460 bidi_it->invalid_rl_levels++;
1461 }
1462 }
89d3374a 1463 else if (bidi_it->prev.type_after_w1 == WEAK_EN /* W5/Retaining */
b7b65b15
EZ
1464 || bidi_it->next_en_pos > bidi_it->charpos)
1465 type = WEAK_EN;
1466 break;
1467 case PDF: /* X7 */
89d3374a
EZ
1468 bidi_it->type_after_w1 = type;
1469 bidi_check_type (bidi_it->type_after_w1);
b7b65b15 1470 type = WEAK_BN; /* X9/Retaining */
87e67904 1471 if (bidi_it->ignore_bn_limit <= -1)
b7b65b15
EZ
1472 {
1473 if (!bidi_it->invalid_rl_levels)
1474 {
1475 new_level = bidi_pop_embedding_level (bidi_it);
1476 bidi_it->invalid_rl_levels = -1;
1477 if (bidi_it->invalid_levels)
1478 bidi_it->invalid_levels--;
1479 /* else nothing: UAX#9 says to ignore invalid PDFs */
1480 }
1481 if (!bidi_it->invalid_levels)
1482 new_level = bidi_pop_embedding_level (bidi_it);
1483 else
1484 {
1485 bidi_it->invalid_levels--;
1486 bidi_it->invalid_rl_levels--;
1487 }
1488 }
89d3374a 1489 else if (bidi_it->prev.type_after_w1 == WEAK_EN /* W5/Retaining */
b7b65b15
EZ
1490 || bidi_it->next_en_pos > bidi_it->charpos)
1491 type = WEAK_EN;
1492 break;
1493 default:
1494 /* Nothing. */
1495 break;
1496 }
1497
1498 bidi_it->type = type;
2d6e4628 1499 bidi_check_type (bidi_it->type);
b7b65b15
EZ
1500
1501 return new_level;
1502}
1503
1504/* Given an iterator state in BIDI_IT, advance one character position
182ce2d2
EZ
1505 in the buffer/string to the next character (in the logical order),
1506 resolve any explicit embeddings and directional overrides, and
1507 return the embedding level of the character after resolving
1508 explicit directives and ignoring empty embeddings. */
b7b65b15
EZ
1509static int
1510bidi_resolve_explicit (struct bidi_it *bidi_it)
1511{
1512 int prev_level = bidi_it->level_stack[bidi_it->stack_idx].level;
1513 int new_level = bidi_resolve_explicit_1 (bidi_it);
87e67904 1514 EMACS_INT eob = bidi_it->string.s ? bidi_it->string.schars : ZV;
512a289d
RS
1515 const unsigned char *s
1516 = (STRINGP (bidi_it->string.lstring)
1517 ? SDATA (bidi_it->string.lstring)
1518 : bidi_it->string.s);
b7b65b15
EZ
1519
1520 if (prev_level < new_level
1521 && bidi_it->type == WEAK_BN
87e67904
EZ
1522 && bidi_it->ignore_bn_limit == -1 /* only if not already known */
1523 && bidi_it->charpos < eob /* not already at EOB */
1524 && bidi_explicit_dir_char (bidi_char_at_pos (bidi_it->bytepos
f3014ef5
EZ
1525 + bidi_it->ch_len, s,
1526 bidi_it->string.unibyte)))
b7b65b15
EZ
1527 {
1528 /* Avoid pushing and popping embedding levels if the level run
1529 is empty, as this breaks level runs where it shouldn't.
1530 UAX#9 removes all the explicit embedding and override codes,
1531 so empty embeddings disappear without a trace. We need to
1532 behave as if we did the same. */
1533 struct bidi_it saved_it;
1534 int level = prev_level;
1535
1536 bidi_copy_it (&saved_it, bidi_it);
1537
87e67904 1538 while (bidi_explicit_dir_char (bidi_char_at_pos (bidi_it->bytepos
f3014ef5
EZ
1539 + bidi_it->ch_len, s,
1540 bidi_it->string.unibyte)))
b7b65b15 1541 {
182ce2d2
EZ
1542 /* This advances to the next character, skipping any
1543 characters covered by display strings. */
b7b65b15 1544 level = bidi_resolve_explicit_1 (bidi_it);
9f257352
EZ
1545 /* If string.lstring was relocated inside bidi_resolve_explicit_1,
1546 a pointer to its data is no longer valid. */
1547 if (STRINGP (bidi_it->string.lstring))
1548 s = SDATA (bidi_it->string.lstring);
b7b65b15
EZ
1549 }
1550
102ebb00
EZ
1551 if (bidi_it->nchars <= 0)
1552 abort ();
b7b65b15 1553 if (level == prev_level) /* empty embedding */
182ce2d2 1554 saved_it.ignore_bn_limit = bidi_it->charpos + bidi_it->nchars;
b7b65b15 1555 else /* this embedding is non-empty */
87e67904 1556 saved_it.ignore_bn_limit = -2;
b7b65b15
EZ
1557
1558 bidi_copy_it (bidi_it, &saved_it);
87e67904 1559 if (bidi_it->ignore_bn_limit > -1)
b7b65b15
EZ
1560 {
1561 /* We pushed a level, but we shouldn't have. Undo that. */
1562 if (!bidi_it->invalid_rl_levels)
1563 {
1564 new_level = bidi_pop_embedding_level (bidi_it);
1565 bidi_it->invalid_rl_levels = -1;
1566 if (bidi_it->invalid_levels)
1567 bidi_it->invalid_levels--;
1568 }
1569 if (!bidi_it->invalid_levels)
1570 new_level = bidi_pop_embedding_level (bidi_it);
1571 else
1572 {
1573 bidi_it->invalid_levels--;
1574 bidi_it->invalid_rl_levels--;
1575 }
1576 }
1577 }
1578
b7b65b15
EZ
1579 if (bidi_it->type == NEUTRAL_B) /* X8 */
1580 {
21fce5ab 1581 bidi_set_paragraph_end (bidi_it);
6bff6497
EZ
1582 /* This is needed by bidi_resolve_weak below, and in L1. */
1583 bidi_it->type_after_w1 = bidi_it->type;
89d3374a 1584 bidi_check_type (bidi_it->type_after_w1);
b7b65b15
EZ
1585 }
1586
1587 return new_level;
1588}
1589
182ce2d2
EZ
1590/* Advance in the buffer/string, resolve weak types and return the
1591 type of the next character after weak type resolution. */
fd3998ff 1592static bidi_type_t
b7b65b15
EZ
1593bidi_resolve_weak (struct bidi_it *bidi_it)
1594{
1595 bidi_type_t type;
1596 bidi_dir_t override;
1597 int prev_level = bidi_it->level_stack[bidi_it->stack_idx].level;
1598 int new_level = bidi_resolve_explicit (bidi_it);
1599 int next_char;
1600 bidi_type_t type_of_next;
1601 struct bidi_it saved_it;
512a289d
RS
1602 EMACS_INT eob
1603 = ((STRINGP (bidi_it->string.lstring) || bidi_it->string.s)
1604 ? bidi_it->string.schars : ZV);
b7b65b15
EZ
1605
1606 type = bidi_it->type;
1607 override = bidi_it->level_stack[bidi_it->stack_idx].override;
1608
1609 if (type == UNKNOWN_BT
1610 || type == LRE
1611 || type == LRO
1612 || type == RLE
1613 || type == RLO
1614 || type == PDF)
1615 abort ();
1616
1617 if (new_level != prev_level
1618 || bidi_it->type == NEUTRAL_B)
1619 {
1620 /* We've got a new embedding level run, compute the directional
1621 type of sor and initialize per-run variables (UAX#9, clause
1622 X10). */
1623 bidi_set_sor_type (bidi_it, prev_level, new_level);
1624 }
1625 else if (type == NEUTRAL_S || type == NEUTRAL_WS
1626 || type == WEAK_BN || type == STRONG_AL)
89d3374a
EZ
1627 bidi_it->type_after_w1 = type; /* needed in L1 */
1628 bidi_check_type (bidi_it->type_after_w1);
b7b65b15
EZ
1629
1630 /* Level and directional override status are already recorded in
1631 bidi_it, and do not need any change; see X6. */
1632 if (override == R2L) /* X6 */
1633 type = STRONG_R;
1634 else if (override == L2R)
1635 type = STRONG_L;
bc5a45f3 1636 else
b7b65b15 1637 {
bc5a45f3 1638 if (type == WEAK_NSM) /* W1 */
b7b65b15 1639 {
bc5a45f3 1640 /* Note that we don't need to consider the case where the
5930fe97
EZ
1641 prev character has its type overridden by an RLO or LRO,
1642 because then either the type of this NSM would have been
1643 also overridden, or the previous character is outside the
1644 current level run, and thus not relevant to this NSM.
1645 This is why NSM gets the type_after_w1 of the previous
1646 character. */
ebb5722e
EZ
1647 if (bidi_it->prev.type_after_w1 != UNKNOWN_BT
1648 /* if type_after_w1 is NEUTRAL_B, this NSM is at sor */
1649 && bidi_it->prev.type_after_w1 != NEUTRAL_B)
5930fe97 1650 type = bidi_it->prev.type_after_w1;
bc5a45f3
EZ
1651 else if (bidi_it->sor == R2L)
1652 type = STRONG_R;
1653 else if (bidi_it->sor == L2R)
1654 type = STRONG_L;
1655 else /* shouldn't happen! */
1656 abort ();
b7b65b15 1657 }
bc5a45f3
EZ
1658 if (type == WEAK_EN /* W2 */
1659 && bidi_it->last_strong.type_after_w1 == STRONG_AL)
1660 type = WEAK_AN;
1661 else if (type == STRONG_AL) /* W3 */
1662 type = STRONG_R;
1663 else if ((type == WEAK_ES /* W4 */
1664 && bidi_it->prev.type_after_w1 == WEAK_EN
1665 && bidi_it->prev.orig_type == WEAK_EN)
1666 || (type == WEAK_CS
1667 && ((bidi_it->prev.type_after_w1 == WEAK_EN
1668 && bidi_it->prev.orig_type == WEAK_EN)
1669 || bidi_it->prev.type_after_w1 == WEAK_AN)))
b7b65b15 1670 {
512a289d
RS
1671 const unsigned char *s
1672 = (STRINGP (bidi_it->string.lstring)
1673 ? SDATA (bidi_it->string.lstring)
1674 : bidi_it->string.s);
1675
1676 next_char = (bidi_it->charpos + bidi_it->nchars >= eob
1677 ? BIDI_EOB
1678 : bidi_char_at_pos (bidi_it->bytepos + bidi_it->ch_len,
1679 s, bidi_it->string.unibyte));
6bff6497 1680 type_of_next = bidi_get_type (next_char, override);
b7b65b15 1681
bc5a45f3 1682 if (type_of_next == WEAK_BN
b7b65b15
EZ
1683 || bidi_explicit_dir_char (next_char))
1684 {
1685 bidi_copy_it (&saved_it, bidi_it);
1686 while (bidi_resolve_explicit (bidi_it) == new_level
bc5a45f3 1687 && bidi_it->type == WEAK_BN)
b7b65b15
EZ
1688 ;
1689 type_of_next = bidi_it->type;
b7b65b15
EZ
1690 bidi_copy_it (bidi_it, &saved_it);
1691 }
bc5a45f3
EZ
1692
1693 /* If the next character is EN, but the last strong-type
1694 character is AL, that next EN will be changed to AN when
1695 we process it in W2 above. So in that case, this ES
1696 should not be changed into EN. */
1697 if (type == WEAK_ES
1698 && type_of_next == WEAK_EN
1699 && bidi_it->last_strong.type_after_w1 != STRONG_AL)
1700 type = WEAK_EN;
1701 else if (type == WEAK_CS)
b7b65b15 1702 {
bc5a45f3
EZ
1703 if (bidi_it->prev.type_after_w1 == WEAK_AN
1704 && (type_of_next == WEAK_AN
1705 /* If the next character is EN, but the last
1706 strong-type character is AL, EN will be later
1707 changed to AN when we process it in W2 above.
1708 So in that case, this ES should not be
1709 changed into EN. */
1710 || (type_of_next == WEAK_EN
1711 && bidi_it->last_strong.type_after_w1 == STRONG_AL)))
1712 type = WEAK_AN;
1713 else if (bidi_it->prev.type_after_w1 == WEAK_EN
1714 && type_of_next == WEAK_EN
1715 && bidi_it->last_strong.type_after_w1 != STRONG_AL)
1716 type = WEAK_EN;
1717 }
1718 }
1719 else if (type == WEAK_ET /* W5: ET with EN before or after it */
1720 || type == WEAK_BN) /* W5/Retaining */
1721 {
1722 if (bidi_it->prev.type_after_w1 == WEAK_EN /* ET/BN w/EN before it */
1723 || bidi_it->next_en_pos > bidi_it->charpos)
1724 type = WEAK_EN;
1725 else /* W5: ET/BN with EN after it. */
1726 {
182ce2d2 1727 EMACS_INT en_pos = bidi_it->charpos + bidi_it->nchars;
512a289d
RS
1728 const unsigned char *s = (STRINGP (bidi_it->string.lstring)
1729 ? SDATA (bidi_it->string.lstring)
1730 : bidi_it->string.s);
bc5a45f3 1731
102ebb00
EZ
1732 if (bidi_it->nchars <= 0)
1733 abort ();
512a289d
RS
1734 next_char
1735 = (bidi_it->charpos + bidi_it->nchars >= eob
1736 ? BIDI_EOB
1737 : bidi_char_at_pos (bidi_it->bytepos + bidi_it->ch_len, s,
1738 bidi_it->string.unibyte));
bc5a45f3
EZ
1739 type_of_next = bidi_get_type (next_char, override);
1740
1741 if (type_of_next == WEAK_ET
1742 || type_of_next == WEAK_BN
1743 || bidi_explicit_dir_char (next_char))
1744 {
1745 bidi_copy_it (&saved_it, bidi_it);
1746 while (bidi_resolve_explicit (bidi_it) == new_level
1747 && (bidi_it->type == WEAK_BN
1748 || bidi_it->type == WEAK_ET))
1749 ;
1750 type_of_next = bidi_it->type;
1751 en_pos = bidi_it->charpos;
1752 bidi_copy_it (bidi_it, &saved_it);
1753 }
1754 if (type_of_next == WEAK_EN)
b7b65b15 1755 {
bc5a45f3
EZ
1756 /* If the last strong character is AL, the EN we've
1757 found will become AN when we get to it (W2). */
1758 if (bidi_it->last_strong.type_after_w1 != STRONG_AL)
1759 {
1760 type = WEAK_EN;
1761 /* Remember this EN position, to speed up processing
1762 of the next ETs. */
1763 bidi_it->next_en_pos = en_pos;
1764 }
1765 else if (type == WEAK_BN)
1766 type = NEUTRAL_ON; /* W6/Retaining */
b7b65b15 1767 }
b7b65b15
EZ
1768 }
1769 }
1770 }
1771
1772 if (type == WEAK_ES || type == WEAK_ET || type == WEAK_CS /* W6 */
89d3374a
EZ
1773 || (type == WEAK_BN
1774 && (bidi_it->prev.type_after_w1 == WEAK_CS /* W6/Retaining */
1775 || bidi_it->prev.type_after_w1 == WEAK_ES
1776 || bidi_it->prev.type_after_w1 == WEAK_ET)))
b7b65b15
EZ
1777 type = NEUTRAL_ON;
1778
1779 /* Store the type we've got so far, before we clobber it with strong
1780 types in W7 and while resolving neutral types. But leave alone
1781 the original types that were recorded above, because we will need
1782 them for the L1 clause. */
89d3374a
EZ
1783 if (bidi_it->type_after_w1 == UNKNOWN_BT)
1784 bidi_it->type_after_w1 = type;
1785 bidi_check_type (bidi_it->type_after_w1);
b7b65b15
EZ
1786
1787 if (type == WEAK_EN) /* W7 */
1788 {
89d3374a 1789 if ((bidi_it->last_strong.type_after_w1 == STRONG_L)
b7b65b15
EZ
1790 || (bidi_it->last_strong.type == UNKNOWN_BT && bidi_it->sor == L2R))
1791 type = STRONG_L;
1792 }
1793
1794 bidi_it->type = type;
2d6e4628 1795 bidi_check_type (bidi_it->type);
b7b65b15
EZ
1796 return type;
1797}
1798
cbb09f04
EZ
1799/* Resolve the type of a neutral character according to the type of
1800 surrounding strong text and the current embedding level. */
58b9f433 1801static inline bidi_type_t
cbb09f04
EZ
1802bidi_resolve_neutral_1 (bidi_type_t prev_type, bidi_type_t next_type, int lev)
1803{
1804 /* N1: European and Arabic numbers are treated as though they were R. */
1805 if (next_type == WEAK_EN || next_type == WEAK_AN)
1806 next_type = STRONG_R;
1807 if (prev_type == WEAK_EN || prev_type == WEAK_AN)
1808 prev_type = STRONG_R;
1809
1810 if (next_type == prev_type) /* N1 */
1811 return next_type;
1812 else if ((lev & 1) == 0) /* N2 */
1813 return STRONG_L;
1814 else
1815 return STRONG_R;
1816}
1817
fd3998ff 1818static bidi_type_t
b7b65b15
EZ
1819bidi_resolve_neutral (struct bidi_it *bidi_it)
1820{
1821 int prev_level = bidi_it->level_stack[bidi_it->stack_idx].level;
1822 bidi_type_t type = bidi_resolve_weak (bidi_it);
1823 int current_level = bidi_it->level_stack[bidi_it->stack_idx].level;
1824
1825 if (!(type == STRONG_R
1826 || type == STRONG_L
1827 || type == WEAK_BN
1828 || type == WEAK_EN
1829 || type == WEAK_AN
1830 || type == NEUTRAL_B
1831 || type == NEUTRAL_S
1832 || type == NEUTRAL_WS
1833 || type == NEUTRAL_ON))
1834 abort ();
1835
1836 if (bidi_get_category (type) == NEUTRAL
1837 || (type == WEAK_BN && prev_level == current_level))
1838 {
1839 if (bidi_it->next_for_neutral.type != UNKNOWN_BT)
1840 type = bidi_resolve_neutral_1 (bidi_it->prev_for_neutral.type,
1841 bidi_it->next_for_neutral.type,
1842 current_level);
1843 else
1844 {
1845 /* Arrrgh!! The UAX#9 algorithm is too deeply entrenched in
1846 the assumption of batch-style processing; see clauses W4,
1847 W5, and especially N1, which require to look far forward
182ce2d2
EZ
1848 (as well as back) in the buffer/string. May the fleas of
1849 a thousand camels infest the armpits of those who design
b7b65b15
EZ
1850 supposedly general-purpose algorithms by looking at their
1851 own implementations, and fail to consider other possible
1852 implementations! */
1853 struct bidi_it saved_it;
1854 bidi_type_t next_type;
1855
1856 if (bidi_it->scan_dir == -1)
1857 abort ();
1858
1859 bidi_copy_it (&saved_it, bidi_it);
1860 /* Scan the text forward until we find the first non-neutral
1861 character, and then use that to resolve the neutral we
1862 are dealing with now. We also cache the scanned iterator
1863 states, to salvage some of the effort later. */
1864 bidi_cache_iterator_state (bidi_it, 0);
1865 do {
1866 /* Record the info about the previous character, so that
1867 it will be cached below with this state. */
89d3374a 1868 if (bidi_it->type_after_w1 != WEAK_BN /* W1/Retaining */
b7b65b15
EZ
1869 && bidi_it->type != WEAK_BN)
1870 bidi_remember_char (&bidi_it->prev, bidi_it);
1871 type = bidi_resolve_weak (bidi_it);
1872 /* Paragraph separators have their levels fully resolved
1873 at this point, so cache them as resolved. */
1874 bidi_cache_iterator_state (bidi_it, type == NEUTRAL_B);
1875 /* FIXME: implement L1 here, by testing for a newline and
1876 resetting the level for any sequence of whitespace
1877 characters adjacent to it. */
1878 } while (!(type == NEUTRAL_B
1879 || (type != WEAK_BN
1880 && bidi_get_category (type) != NEUTRAL)
1881 /* This is all per level run, so stop when we
1882 reach the end of this level run. */
512a289d
RS
1883 || (bidi_it->level_stack[bidi_it->stack_idx].level
1884 != current_level)));
b7b65b15
EZ
1885
1886 bidi_remember_char (&saved_it.next_for_neutral, bidi_it);
1887
1888 switch (type)
1889 {
1890 case STRONG_L:
1891 case STRONG_R:
1892 case STRONG_AL:
1893 next_type = type;
1894 break;
1895 case WEAK_EN:
1896 case WEAK_AN:
1897 /* N1: ``European and Arabic numbers are treated as
1898 though they were R.'' */
1899 next_type = STRONG_R;
1900 saved_it.next_for_neutral.type = STRONG_R;
1901 break;
1902 case WEAK_BN:
1903 if (!bidi_explicit_dir_char (bidi_it->ch))
1904 abort (); /* can't happen: BNs are skipped */
1905 /* FALLTHROUGH */
1906 case NEUTRAL_B:
1907 /* Marched all the way to the end of this level run.
1908 We need to use the eor type, whose information is
1909 stored by bidi_set_sor_type in the prev_for_neutral
1910 member. */
1911 if (saved_it.type != WEAK_BN
89d3374a 1912 || bidi_get_category (bidi_it->prev.type_after_w1) == NEUTRAL)
b7b65b15
EZ
1913 {
1914 next_type = bidi_it->prev_for_neutral.type;
1915 saved_it.next_for_neutral.type = next_type;
2d6e4628 1916 bidi_check_type (next_type);
b7b65b15
EZ
1917 }
1918 else
1919 {
1920 /* This is a BN which does not adjoin neutrals.
1921 Leave its type alone. */
1922 bidi_copy_it (bidi_it, &saved_it);
1923 return bidi_it->type;
1924 }
1925 break;
1926 default:
1927 abort ();
1928 }
1929 type = bidi_resolve_neutral_1 (saved_it.prev_for_neutral.type,
1930 next_type, current_level);
1931 saved_it.type = type;
2d6e4628 1932 bidi_check_type (type);
b7b65b15
EZ
1933 bidi_copy_it (bidi_it, &saved_it);
1934 }
1935 }
1936 return type;
1937}
1938
1939/* Given an iterator state in BIDI_IT, advance one character position
182ce2d2
EZ
1940 in the buffer/string to the next character (in the logical order),
1941 resolve the bidi type of that next character, and return that
1942 type. */
fd3998ff 1943static bidi_type_t
b7b65b15
EZ
1944bidi_type_of_next_char (struct bidi_it *bidi_it)
1945{
1946 bidi_type_t type;
1947
1948 /* This should always be called during a forward scan. */
1949 if (bidi_it->scan_dir != 1)
1950 abort ();
1951
1952 /* Reset the limit until which to ignore BNs if we step out of the
1953 area where we found only empty levels. */
87e67904 1954 if ((bidi_it->ignore_bn_limit > -1
b7b65b15 1955 && bidi_it->ignore_bn_limit <= bidi_it->charpos)
87e67904 1956 || (bidi_it->ignore_bn_limit == -2
b7b65b15 1957 && !bidi_explicit_dir_char (bidi_it->ch)))
87e67904 1958 bidi_it->ignore_bn_limit = -1;
b7b65b15
EZ
1959
1960 type = bidi_resolve_neutral (bidi_it);
1961
1962 return type;
1963}
1964
1965/* Given an iterator state BIDI_IT, advance one character position in
182ce2d2
EZ
1966 the buffer/string to the next character (in the current scan
1967 direction), resolve the embedding and implicit levels of that next
1968 character, and return the resulting level. */
fd3998ff 1969static int
b7b65b15
EZ
1970bidi_level_of_next_char (struct bidi_it *bidi_it)
1971{
1972 bidi_type_t type;
1973 int level, prev_level = -1;
1974 struct bidi_saved_info next_for_neutral;
578b494e 1975 EMACS_INT next_char_pos = -2;
b7b65b15
EZ
1976
1977 if (bidi_it->scan_dir == 1)
1978 {
512a289d
RS
1979 EMACS_INT eob
1980 = ((bidi_it->string.s || STRINGP (bidi_it->string.lstring))
1981 ? bidi_it->string.schars : ZV);
9f257352 1982
b7b65b15 1983 /* There's no sense in trying to advance if we hit end of text. */
9f257352 1984 if (bidi_it->charpos >= eob)
b7b65b15
EZ
1985 return bidi_it->resolved_level;
1986
1987 /* Record the info about the previous character. */
89d3374a 1988 if (bidi_it->type_after_w1 != WEAK_BN /* W1/Retaining */
b7b65b15
EZ
1989 && bidi_it->type != WEAK_BN)
1990 bidi_remember_char (&bidi_it->prev, bidi_it);
89d3374a
EZ
1991 if (bidi_it->type_after_w1 == STRONG_R
1992 || bidi_it->type_after_w1 == STRONG_L
1993 || bidi_it->type_after_w1 == STRONG_AL)
b7b65b15
EZ
1994 bidi_remember_char (&bidi_it->last_strong, bidi_it);
1995 /* FIXME: it sounds like we don't need both prev and
1996 prev_for_neutral members, but I'm leaving them both for now. */
1997 if (bidi_it->type == STRONG_R || bidi_it->type == STRONG_L
1998 || bidi_it->type == WEAK_EN || bidi_it->type == WEAK_AN)
1999 bidi_remember_char (&bidi_it->prev_for_neutral, bidi_it);
2000
2001 /* If we overstepped the characters used for resolving neutrals
2002 and whitespace, invalidate their info in the iterator. */
2003 if (bidi_it->charpos >= bidi_it->next_for_neutral.charpos)
2004 bidi_it->next_for_neutral.type = UNKNOWN_BT;
2005 if (bidi_it->next_en_pos >= 0
2006 && bidi_it->charpos >= bidi_it->next_en_pos)
2007 bidi_it->next_en_pos = -1;
2008 if (bidi_it->next_for_ws.type != UNKNOWN_BT
2009 && bidi_it->charpos >= bidi_it->next_for_ws.charpos)
2010 bidi_it->next_for_ws.type = UNKNOWN_BT;
2011
2012 /* This must be taken before we fill the iterator with the info
2013 about the next char. If we scan backwards, the iterator
2014 state must be already cached, so there's no need to know the
2015 embedding level of the previous character, since we will be
2016 returning to our caller shortly. */
2017 prev_level = bidi_it->level_stack[bidi_it->stack_idx].level;
2018 }
2019 next_for_neutral = bidi_it->next_for_neutral;
2020
182ce2d2
EZ
2021 /* Perhaps the character we want is already cached. If it is, the
2022 call to bidi_cache_find below will return a type other than
2023 UNKNOWN_BT. */
87e67904 2024 if (bidi_cache_idx > bidi_cache_start && !bidi_it->first_elt)
102ebb00 2025 {
512a289d
RS
2026 int bob = ((bidi_it->string.s || STRINGP (bidi_it->string.lstring))
2027 ? 0 : 1);
102ebb00
EZ
2028 if (bidi_it->scan_dir > 0)
2029 {
2030 if (bidi_it->nchars <= 0)
2031 abort ();
2032 next_char_pos = bidi_it->charpos + bidi_it->nchars;
2033 }
9f257352 2034 else if (bidi_it->charpos >= bob)
bb269206
EZ
2035 /* Implementation note: we allow next_char_pos to be as low as
2036 0 for buffers or -1 for strings, and that is okay because
2037 that's the "position" of the sentinel iterator state we
2038 cached at the beginning of the iteration. */
102ebb00 2039 next_char_pos = bidi_it->charpos - 1;
578b494e 2040 if (next_char_pos >= bob - 1)
87e67904
EZ
2041 type = bidi_cache_find (next_char_pos, -1, bidi_it);
2042 else
2043 type = UNKNOWN_BT;
102ebb00 2044 }
182ce2d2 2045 else
102ebb00 2046 type = UNKNOWN_BT;
b7b65b15
EZ
2047 if (type != UNKNOWN_BT)
2048 {
2049 /* Don't lose the information for resolving neutrals! The
2050 cached states could have been cached before their
2051 next_for_neutral member was computed. If we are on our way
2052 forward, we can simply take the info from the previous
2053 state. */
2054 if (bidi_it->scan_dir == 1
2055 && bidi_it->next_for_neutral.type == UNKNOWN_BT)
2056 bidi_it->next_for_neutral = next_for_neutral;
2057
2058 /* If resolved_level is -1, it means this state was cached
2059 before it was completely resolved, so we cannot return
2060 it. */
2061 if (bidi_it->resolved_level != -1)
2062 return bidi_it->resolved_level;
2063 }
2064 if (bidi_it->scan_dir == -1)
2065 /* If we are going backwards, the iterator state is already cached
2066 from previous scans, and should be fully resolved. */
2067 abort ();
2068
2069 if (type == UNKNOWN_BT)
2070 type = bidi_type_of_next_char (bidi_it);
2071
2072 if (type == NEUTRAL_B)
2073 return bidi_it->resolved_level;
2074
2075 level = bidi_it->level_stack[bidi_it->stack_idx].level;
2076 if ((bidi_get_category (type) == NEUTRAL /* && type != NEUTRAL_B */)
2077 || (type == WEAK_BN && prev_level == level))
2078 {
2079 if (bidi_it->next_for_neutral.type == UNKNOWN_BT)
2080 abort ();
2081
2082 /* If the cached state shows a neutral character, it was not
2083 resolved by bidi_resolve_neutral, so do it now. */
2084 type = bidi_resolve_neutral_1 (bidi_it->prev_for_neutral.type,
2085 bidi_it->next_for_neutral.type,
2086 level);
2087 }
2088
2089 if (!(type == STRONG_R
2090 || type == STRONG_L
2091 || type == WEAK_BN
2092 || type == WEAK_EN
2093 || type == WEAK_AN))
2094 abort ();
2095 bidi_it->type = type;
2d6e4628 2096 bidi_check_type (bidi_it->type);
b7b65b15
EZ
2097
2098 /* For L1 below, we need to know, for each WS character, whether
0d327994 2099 it belongs to a sequence of WS characters preceding a newline
b7b65b15 2100 or a TAB or a paragraph separator. */
89d3374a 2101 if (bidi_it->orig_type == NEUTRAL_WS
b7b65b15
EZ
2102 && bidi_it->next_for_ws.type == UNKNOWN_BT)
2103 {
2104 int ch;
8264569d 2105 EMACS_INT clen = bidi_it->ch_len;
6bff6497
EZ
2106 EMACS_INT bpos = bidi_it->bytepos;
2107 EMACS_INT cpos = bidi_it->charpos;
182ce2d2 2108 EMACS_INT disp_pos = bidi_it->disp_pos;
102ebb00 2109 EMACS_INT nc = bidi_it->nchars;
87e67904 2110 struct bidi_string_data bs = bidi_it->string;
b7b65b15 2111 bidi_type_t chtype;
fc6f18ce 2112 int fwp = bidi_it->frame_window_p;
0c95fcf7 2113 int dpp = bidi_it->disp_prop;
b7b65b15 2114
102ebb00
EZ
2115 if (bidi_it->nchars <= 0)
2116 abort ();
b7b65b15 2117 do {
55439c61
EZ
2118 ch = bidi_fetch_char (bpos += clen, cpos += nc, &disp_pos, &dpp, &bs,
2119 fwp, &clen, &nc);
e7402cb2 2120 if (ch == '\n' || ch == BIDI_EOB /* || ch == LINESEP_CHAR */)
b7b65b15
EZ
2121 chtype = NEUTRAL_B;
2122 else
6bff6497 2123 chtype = bidi_get_type (ch, NEUTRAL_DIR);
b7b65b15
EZ
2124 } while (chtype == NEUTRAL_WS || chtype == WEAK_BN
2125 || bidi_explicit_dir_char (ch)); /* L1/Retaining */
2126 bidi_it->next_for_ws.type = chtype;
2d6e4628 2127 bidi_check_type (bidi_it->next_for_ws.type);
b7b65b15
EZ
2128 bidi_it->next_for_ws.charpos = cpos;
2129 bidi_it->next_for_ws.bytepos = bpos;
2130 }
2131
2132 /* Resolve implicit levels, with a twist: PDFs get the embedding
2133 level of the enbedding they terminate. See below for the
2134 reason. */
89d3374a 2135 if (bidi_it->orig_type == PDF
b7b65b15
EZ
2136 /* Don't do this if this formatting code didn't change the
2137 embedding level due to invalid or empty embeddings. */
2138 && prev_level != level)
2139 {
2140 /* Don't look in UAX#9 for the reason for this: it's our own
2141 private quirk. The reason is that we want the formatting
2142 codes to be delivered so that they bracket the text of their
2143 embedding. For example, given the text
2144
2145 {RLO}teST{PDF}
2146
2147 we want it to be displayed as
2148
0d68907d 2149 {PDF}STet{RLO}
b7b65b15
EZ
2150
2151 not as
2152
2153 STet{RLO}{PDF}
2154
2155 which will result because we bump up the embedding level as
2156 soon as we see the RLO and pop it as soon as we see the PDF,
2157 so RLO itself has the same embedding level as "teST", and
2158 thus would be normally delivered last, just before the PDF.
2159 The switch below fiddles with the level of PDF so that this
2160 ugly side effect does not happen.
2161
2162 (This is, of course, only important if the formatting codes
e7402cb2
EZ
2163 are actually displayed, but Emacs does need to display them
2164 if the user wants to.) */
b7b65b15
EZ
2165 level = prev_level;
2166 }
89d3374a
EZ
2167 else if (bidi_it->orig_type == NEUTRAL_B /* L1 */
2168 || bidi_it->orig_type == NEUTRAL_S
e7402cb2
EZ
2169 || bidi_it->ch == '\n' || bidi_it->ch == BIDI_EOB
2170 /* || bidi_it->ch == LINESEP_CHAR */
89d3374a 2171 || (bidi_it->orig_type == NEUTRAL_WS
b7b65b15
EZ
2172 && (bidi_it->next_for_ws.type == NEUTRAL_B
2173 || bidi_it->next_for_ws.type == NEUTRAL_S)))
2174 level = bidi_it->level_stack[0].level;
2175 else if ((level & 1) == 0) /* I1 */
2176 {
2177 if (type == STRONG_R)
2178 level++;
2179 else if (type == WEAK_EN || type == WEAK_AN)
2180 level += 2;
2181 }
2182 else /* I2 */
2183 {
2184 if (type == STRONG_L || type == WEAK_EN || type == WEAK_AN)
2185 level++;
2186 }
2187
2188 bidi_it->resolved_level = level;
2189 return level;
2190}
2191
2192/* Move to the other edge of a level given by LEVEL. If END_FLAG is
2193 non-zero, we are at the end of a level, and we need to prepare to
2194 resume the scan of the lower level.
2195
2196 If this level's other edge is cached, we simply jump to it, filling
2197 the iterator structure with the iterator state on the other edge.
182ce2d2
EZ
2198 Otherwise, we walk the buffer or string until we come back to the
2199 same level as LEVEL.
b7b65b15
EZ
2200
2201 Note: we are not talking here about a ``level run'' in the UAX#9
2202 sense of the term, but rather about a ``level'' which includes
2203 all the levels higher than it. In other words, given the levels
2204 like this:
2205
2206 11111112222222333333334443343222222111111112223322111
2207 A B C
2208
2209 and assuming we are at point A scanning left to right, this
2210 function moves to point C, whereas the UAX#9 ``level 2 run'' ends
2211 at point B. */
2212static void
2213bidi_find_other_level_edge (struct bidi_it *bidi_it, int level, int end_flag)
2214{
2215 int dir = end_flag ? -bidi_it->scan_dir : bidi_it->scan_dir;
39e378da 2216 ptrdiff_t idx;
b7b65b15
EZ
2217
2218 /* Try the cache first. */
87e67904
EZ
2219 if ((idx = bidi_cache_find_level_change (level, dir, end_flag))
2220 >= bidi_cache_start)
b7b65b15
EZ
2221 bidi_cache_fetch_state (idx, bidi_it);
2222 else
2223 {
2224 int new_level;
2225
2226 if (end_flag)
2227 abort (); /* if we are at end of level, its edges must be cached */
2228
2229 bidi_cache_iterator_state (bidi_it, 1);
2230 do {
2231 new_level = bidi_level_of_next_char (bidi_it);
2232 bidi_cache_iterator_state (bidi_it, 1);
2233 } while (new_level >= level);
2234 }
2235}
2236
2237void
4b292a22 2238bidi_move_to_visually_next (struct bidi_it *bidi_it)
b7b65b15
EZ
2239{
2240 int old_level, new_level, next_level;
9c82e145 2241 struct bidi_it sentinel;
acb28818 2242 struct gcpro gcpro1;
b7b65b15 2243
87e67904
EZ
2244 if (bidi_it->charpos < 0 || bidi_it->bytepos < 0)
2245 abort ();
b7b65b15
EZ
2246
2247 if (bidi_it->scan_dir == 0)
2248 {
2249 bidi_it->scan_dir = 1; /* default to logical order */
2250 }
2251
acb28818 2252 /* The code below can call eval, and thus cause GC. If we are
7e2ad32c 2253 iterating a Lisp string, make sure it won't be GCed. */
acb28818
EZ
2254 if (STRINGP (bidi_it->string.lstring))
2255 GCPRO1 (bidi_it->string.lstring);
2256
be39f003 2257 /* If we just passed a newline, initialize for the next line. */
1137e8b8
EZ
2258 if (!bidi_it->first_elt
2259 && (bidi_it->ch == '\n' || bidi_it->ch == BIDI_EOB))
be39f003
EZ
2260 bidi_line_init (bidi_it);
2261
6dcfd253
EZ
2262 /* Prepare the sentinel iterator state, and cache it. When we bump
2263 into it, scanning backwards, we'll know that the last non-base
2264 level is exhausted. */
87e67904 2265 if (bidi_cache_idx == bidi_cache_start)
9c82e145
EZ
2266 {
2267 bidi_copy_it (&sentinel, bidi_it);
2268 if (bidi_it->first_elt)
2269 {
2270 sentinel.charpos--; /* cached charpos needs to be monotonic */
2271 sentinel.bytepos--;
2272 sentinel.ch = '\n'; /* doesn't matter, but why not? */
2273 sentinel.ch_len = 1;
182ce2d2 2274 sentinel.nchars = 1;
9c82e145 2275 }
6dcfd253 2276 bidi_cache_iterator_state (&sentinel, 1);
9c82e145 2277 }
b7b65b15
EZ
2278
2279 old_level = bidi_it->resolved_level;
2280 new_level = bidi_level_of_next_char (bidi_it);
b7b65b15
EZ
2281
2282 /* Reordering of resolved levels (clause L2) is implemented by
2283 jumping to the other edge of the level and flipping direction of
c0546589 2284 scanning the text whenever we find a level change. */
b7b65b15
EZ
2285 if (new_level != old_level)
2286 {
2287 int ascending = new_level > old_level;
2288 int level_to_search = ascending ? old_level + 1 : old_level;
2289 int incr = ascending ? 1 : -1;
2290 int expected_next_level = old_level + incr;
2291
b7b65b15
EZ
2292 /* Jump (or walk) to the other edge of this level. */
2293 bidi_find_other_level_edge (bidi_it, level_to_search, !ascending);
2294 /* Switch scan direction and peek at the next character in the
2295 new direction. */
2296 bidi_it->scan_dir = -bidi_it->scan_dir;
2297
2298 /* The following loop handles the case where the resolved level
2299 jumps by more than one. This is typical for numbers inside a
2300 run of text with left-to-right embedding direction, but can
2301 also happen in other situations. In those cases the decision
2302 where to continue after a level change, and in what direction,
2303 is tricky. For example, given a text like below:
2304
2305 abcdefgh
2306 11336622
2307
2308 (where the numbers below the text show the resolved levels),
2309 the result of reordering according to UAX#9 should be this:
2310
2311 efdcghba
2312
2313 This is implemented by the loop below which flips direction
2314 and jumps to the other edge of the level each time it finds
2315 the new level not to be the expected one. The expected level
2316 is always one more or one less than the previous one. */
2317 next_level = bidi_peek_at_next_level (bidi_it);
2318 while (next_level != expected_next_level)
2319 {
2320 expected_next_level += incr;
2321 level_to_search += incr;
2322 bidi_find_other_level_edge (bidi_it, level_to_search, !ascending);
2323 bidi_it->scan_dir = -bidi_it->scan_dir;
2324 next_level = bidi_peek_at_next_level (bidi_it);
2325 }
2326
2327 /* Finally, deliver the next character in the new direction. */
2328 next_level = bidi_level_of_next_char (bidi_it);
2329 }
2330
b44d9321
EZ
2331 /* Take note when we have just processed the newline that precedes
2332 the end of the paragraph. The next time we are about to be
2333 called, set_iterator_to_next will automatically reinit the
2334 paragraph direction, if needed. We do this at the newline before
2335 the paragraph separator, because the next character might not be
2336 the first character of the next paragraph, due to the bidi
c0546589
EZ
2337 reordering, whereas we _must_ know the paragraph base direction
2338 _before_ we process the paragraph's text, since the base
2339 direction affects the reordering. */
1137e8b8
EZ
2340 if (bidi_it->scan_dir == 1
2341 && (bidi_it->ch == '\n' || bidi_it->ch == BIDI_EOB))
be39f003 2342 {
87e67904
EZ
2343 /* The paragraph direction of the entire string, once
2344 determined, is in effect for the entire string. Setting the
2345 separator limit to the end of the string prevents
2346 bidi_paragraph_init from being called automatically on this
2347 string. */
9f257352 2348 if (bidi_it->string.s || STRINGP (bidi_it->string.lstring))
87e67904
EZ
2349 bidi_it->separator_limit = bidi_it->string.schars;
2350 else if (bidi_it->bytepos < ZV_BYTE)
be39f003 2351 {
512a289d
RS
2352 EMACS_INT sep_len
2353 = bidi_at_paragraph_end (bidi_it->charpos + bidi_it->nchars,
2354 bidi_it->bytepos + bidi_it->ch_len);
87e67904
EZ
2355 if (bidi_it->nchars <= 0)
2356 abort ();
2357 if (sep_len >= 0)
2358 {
2359 bidi_it->new_paragraph = 1;
2360 /* Record the buffer position of the last character of the
2361 paragraph separator. */
512a289d
RS
2362 bidi_it->separator_limit
2363 = bidi_it->charpos + bidi_it->nchars + sep_len;
87e67904 2364 }
be39f003
EZ
2365 }
2366 }
6bff6497 2367
87e67904 2368 if (bidi_it->scan_dir == 1 && bidi_cache_idx > bidi_cache_start)
b7b65b15
EZ
2369 {
2370 /* If we are at paragraph's base embedding level and beyond the
2371 last cached position, the cache's job is done and we can
2372 discard it. */
2373 if (bidi_it->resolved_level == bidi_it->level_stack[0].level
182ce2d2
EZ
2374 && bidi_it->charpos > (bidi_cache[bidi_cache_idx - 1].charpos
2375 + bidi_cache[bidi_cache_idx - 1].nchars - 1))
b7b65b15
EZ
2376 bidi_cache_reset ();
2377 /* But as long as we are caching during forward scan, we must
2378 cache each state, or else the cache integrity will be
2379 compromised: it assumes cached states correspond to buffer
2380 positions 1:1. */
2381 else
2382 bidi_cache_iterator_state (bidi_it, 1);
2383 }
acb28818
EZ
2384
2385 if (STRINGP (bidi_it->string.lstring))
2386 UNGCPRO;
b7b65b15
EZ
2387}
2388
2389/* This is meant to be called from within the debugger, whenever you
2390 wish to examine the cache contents. */
e78aecca 2391void bidi_dump_cached_states (void) EXTERNALLY_VISIBLE;
b7b65b15
EZ
2392void
2393bidi_dump_cached_states (void)
2394{
39e378da 2395 ptrdiff_t i;
b7b65b15
EZ
2396 int ndigits = 1;
2397
2398 if (bidi_cache_idx == 0)
2399 {
2400 fprintf (stderr, "The cache is empty.\n");
2401 return;
2402 }
df9733bf 2403 fprintf (stderr, "Total of %"pD"d state%s in cache:\n",
b7b65b15
EZ
2404 bidi_cache_idx, bidi_cache_idx == 1 ? "" : "s");
2405
2406 for (i = bidi_cache[bidi_cache_idx - 1].charpos; i > 0; i /= 10)
2407 ndigits++;
2408 fputs ("ch ", stderr);
2409 for (i = 0; i < bidi_cache_idx; i++)
2410 fprintf (stderr, "%*c", ndigits, bidi_cache[i].ch);
2411 fputs ("\n", stderr);
2412 fputs ("lvl ", stderr);
2413 for (i = 0; i < bidi_cache_idx; i++)
2414 fprintf (stderr, "%*d", ndigits, bidi_cache[i].resolved_level);
2415 fputs ("\n", stderr);
2416 fputs ("pos ", stderr);
2417 for (i = 0; i < bidi_cache_idx; i++)
c2982e87 2418 fprintf (stderr, "%*"pI"d", ndigits, bidi_cache[i].charpos);
b7b65b15
EZ
2419 fputs ("\n", stderr);
2420}