Clean Python and Ruby flags when macsdk is set
[MacVim.git] / src / syntax.c
blob0e0992be98f2c5f883f7c8c87bcc188481673c8e
1 /* vi:set ts=8 sts=4 sw=4:
3 * VIM - Vi IMproved by Bram Moolenaar
5 * Do ":help uganda" in Vim to read copying and usage conditions.
6 * Do ":help credits" in Vim to see a list of people who contributed.
7 * See README.txt for an overview of the Vim source code.
8 */
11 * syntax.c: code for syntax highlighting
14 #include "vim.h"
17 * Structure that stores information about a highlight group.
18 * The ID of a highlight group is also called group ID. It is the index in
19 * the highlight_ga array PLUS ONE.
21 struct hl_group
23 char_u *sg_name; /* highlight group name */
24 char_u *sg_name_u; /* uppercase of sg_name */
25 /* for normal terminals */
26 int sg_term; /* "term=" highlighting attributes */
27 char_u *sg_start; /* terminal string for start highl */
28 char_u *sg_stop; /* terminal string for stop highl */
29 int sg_term_attr; /* Screen attr for term mode */
30 /* for color terminals */
31 int sg_cterm; /* "cterm=" highlighting attr */
32 int sg_cterm_bold; /* bold attr was set for light color */
33 int sg_cterm_fg; /* terminal fg color number + 1 */
34 int sg_cterm_bg; /* terminal bg color number + 1 */
35 int sg_cterm_attr; /* Screen attr for color term mode */
36 #ifdef FEAT_GUI
37 /* for when using the GUI */
38 int sg_gui; /* "gui=" highlighting attributes */
39 guicolor_T sg_gui_fg; /* GUI foreground color handle */
40 char_u *sg_gui_fg_name;/* GUI foreground color name */
41 guicolor_T sg_gui_bg; /* GUI background color handle */
42 char_u *sg_gui_bg_name;/* GUI background color name */
43 guicolor_T sg_gui_sp; /* GUI special color handle */
44 char_u *sg_gui_sp_name;/* GUI special color name */
45 GuiFont sg_font; /* GUI font handle */
46 #ifdef FEAT_XFONTSET
47 GuiFontset sg_fontset; /* GUI fontset handle */
48 #endif
49 char_u *sg_font_name; /* GUI font or fontset name */
50 int sg_gui_attr; /* Screen attr for GUI mode */
51 #endif
52 int sg_link; /* link to this highlight group ID */
53 int sg_set; /* combination of SG_* flags */
54 #ifdef FEAT_EVAL
55 scid_T sg_scriptID; /* script in which the group was last set */
56 #endif
59 #define SG_TERM 1 /* term has been set */
60 #define SG_CTERM 2 /* cterm has been set */
61 #define SG_GUI 4 /* gui has been set */
62 #define SG_LINK 8 /* link has been set */
64 static garray_T highlight_ga; /* highlight groups for 'highlight' option */
66 #define HL_TABLE() ((struct hl_group *)((highlight_ga.ga_data)))
68 #ifdef FEAT_CMDL_COMPL
69 /* Flags to indicate an additional string for highlight name completion. */
70 static int include_none = 0; /* when 1 include "None" */
71 static int include_default = 0; /* when 1 include "default" */
72 static int include_link = 0; /* when 2 include "link" and "clear" */
73 #endif
76 * The "term", "cterm" and "gui" arguments can be any combination of the
77 * following names, separated by commas (but no spaces!).
79 static char *(hl_name_table[]) =
80 {"bold", "standout", "underline", "undercurl",
81 "italic", "reverse", "inverse", "NONE"};
82 static int hl_attr_table[] =
83 {HL_BOLD, HL_STANDOUT, HL_UNDERLINE, HL_UNDERCURL, HL_ITALIC, HL_INVERSE, HL_INVERSE, 0};
85 static int get_attr_entry __ARGS((garray_T *table, attrentry_T *aep));
86 static void syn_unadd_group __ARGS((void));
87 static void set_hl_attr __ARGS((int idx));
88 static void highlight_list_one __ARGS((int id));
89 static int highlight_list_arg __ARGS((int id, int didh, int type, int iarg, char_u *sarg, char *name));
90 static int syn_add_group __ARGS((char_u *name));
91 static int syn_list_header __ARGS((int did_header, int outlen, int id));
92 static int hl_has_settings __ARGS((int idx, int check_link));
93 static void highlight_clear __ARGS((int idx));
95 #ifdef FEAT_GUI
96 static void gui_do_one_color __ARGS((int idx, int do_menu, int do_tooltip));
97 static int set_group_colors __ARGS((char_u *name, guicolor_T *fgp, guicolor_T *bgp, int do_menu, int use_norm, int do_tooltip));
98 static guicolor_T color_name2handle __ARGS((char_u *name));
99 static GuiFont font_name2handle __ARGS((char_u *name));
100 # ifdef FEAT_XFONTSET
101 static GuiFontset fontset_name2handle __ARGS((char_u *name, int fixed_width));
102 # endif
103 static void hl_do_font __ARGS((int idx, char_u *arg, int do_normal, int do_menu, int do_tooltip));
104 #endif
107 * An attribute number is the index in attr_table plus ATTR_OFF.
109 #define ATTR_OFF (HL_ALL + 1)
111 #if defined(FEAT_SYN_HL) || defined(PROTO)
113 #define SYN_NAMELEN 50 /* maximum length of a syntax name */
115 /* different types of offsets that are possible */
116 #define SPO_MS_OFF 0 /* match start offset */
117 #define SPO_ME_OFF 1 /* match end offset */
118 #define SPO_HS_OFF 2 /* highl. start offset */
119 #define SPO_HE_OFF 3 /* highl. end offset */
120 #define SPO_RS_OFF 4 /* region start offset */
121 #define SPO_RE_OFF 5 /* region end offset */
122 #define SPO_LC_OFF 6 /* leading context offset */
123 #define SPO_COUNT 7
125 static char *(spo_name_tab[SPO_COUNT]) =
126 {"ms=", "me=", "hs=", "he=", "rs=", "re=", "lc="};
129 * The patterns that are being searched for are stored in a syn_pattern.
130 * A match item consists of one pattern.
131 * A start/end item consists of n start patterns and m end patterns.
132 * A start/skip/end item consists of n start patterns, one skip pattern and m
133 * end patterns.
134 * For the latter two, the patterns are always consecutive: start-skip-end.
136 * A character offset can be given for the matched text (_m_start and _m_end)
137 * and for the actually highlighted text (_h_start and _h_end).
139 typedef struct syn_pattern
141 char sp_type; /* see SPTYPE_ defines below */
142 char sp_syncing; /* this item used for syncing */
143 short sp_flags; /* see HL_ defines below */
144 struct sp_syn sp_syn; /* struct passed to in_id_list() */
145 short sp_syn_match_id; /* highlight group ID of pattern */
146 char_u *sp_pattern; /* regexp to match, pattern */
147 regprog_T *sp_prog; /* regexp to match, program */
148 int sp_ic; /* ignore-case flag for sp_prog */
149 short sp_off_flags; /* see below */
150 int sp_offsets[SPO_COUNT]; /* offsets */
151 short *sp_cont_list; /* cont. group IDs, if non-zero */
152 short *sp_next_list; /* next group IDs, if non-zero */
153 int sp_sync_idx; /* sync item index (syncing only) */
154 int sp_line_id; /* ID of last line where tried */
155 int sp_startcol; /* next match in sp_line_id line */
156 } synpat_T;
158 /* The sp_off_flags are computed like this:
159 * offset from the start of the matched text: (1 << SPO_XX_OFF)
160 * offset from the end of the matched text: (1 << (SPO_XX_OFF + SPO_COUNT))
161 * When both are present, only one is used.
164 #define SPTYPE_MATCH 1 /* match keyword with this group ID */
165 #define SPTYPE_START 2 /* match a regexp, start of item */
166 #define SPTYPE_END 3 /* match a regexp, end of item */
167 #define SPTYPE_SKIP 4 /* match a regexp, skip within item */
169 #define HL_CONTAINED 0x01 /* not used on toplevel */
170 #define HL_TRANSP 0x02 /* has no highlighting */
171 #define HL_ONELINE 0x04 /* match within one line only */
172 #define HL_HAS_EOL 0x08 /* end pattern that matches with $ */
173 #define HL_SYNC_HERE 0x10 /* sync point after this item (syncing only) */
174 #define HL_SYNC_THERE 0x20 /* sync point at current line (syncing only) */
175 #define HL_MATCH 0x40 /* use match ID instead of item ID */
176 #define HL_SKIPNL 0x80 /* nextgroup can skip newlines */
177 #define HL_SKIPWHITE 0x100 /* nextgroup can skip white space */
178 #define HL_SKIPEMPTY 0x200 /* nextgroup can skip empty lines */
179 #define HL_KEEPEND 0x400 /* end match always kept */
180 #define HL_EXCLUDENL 0x800 /* exclude NL from match */
181 #define HL_DISPLAY 0x1000 /* only used for displaying, not syncing */
182 #define HL_FOLD 0x2000 /* define fold */
183 #define HL_EXTEND 0x4000 /* ignore a keepend */
184 /* These don't fit in a short, thus can't be used for syntax items, only for
185 * si_flags and bs_flags. */
186 #define HL_MATCHCONT 0x8000 /* match continued from previous line */
187 #define HL_TRANS_CONT 0x10000L /* transparent item without contains arg */
189 #define SYN_ITEMS(buf) ((synpat_T *)((buf)->b_syn_patterns.ga_data))
191 #define NONE_IDX -2 /* value of sp_sync_idx for "NONE" */
194 * Flags for b_syn_sync_flags:
196 #define SF_CCOMMENT 0x01 /* sync on a C-style comment */
197 #define SF_MATCH 0x02 /* sync by matching a pattern */
199 #define SYN_STATE_P(ssp) ((bufstate_T *)((ssp)->ga_data))
201 #define MAXKEYWLEN 80 /* maximum length of a keyword */
204 * The attributes of the syntax item that has been recognized.
206 static int current_attr = 0; /* attr of current syntax word */
207 #ifdef FEAT_EVAL
208 static int current_id = 0; /* ID of current char for syn_get_id() */
209 static int current_trans_id = 0; /* idem, transparancy removed */
210 #endif
212 typedef struct syn_cluster_S
214 char_u *scl_name; /* syntax cluster name */
215 char_u *scl_name_u; /* uppercase of scl_name */
216 short *scl_list; /* IDs in this syntax cluster */
217 } syn_cluster_T;
220 * Methods of combining two clusters
222 #define CLUSTER_REPLACE 1 /* replace first list with second */
223 #define CLUSTER_ADD 2 /* add second list to first */
224 #define CLUSTER_SUBTRACT 3 /* subtract second list from first */
226 #define SYN_CLSTR(buf) ((syn_cluster_T *)((buf)->b_syn_clusters.ga_data))
229 * Syntax group IDs have different types:
230 * 0 - 9999 normal syntax groups
231 * 10000 - 14999 ALLBUT indicator (current_syn_inc_tag added)
232 * 15000 - 19999 TOP indicator (current_syn_inc_tag added)
233 * 20000 - 24999 CONTAINED indicator (current_syn_inc_tag added)
234 * >= 25000 cluster IDs (subtract SYNID_CLUSTER for the cluster ID)
236 #define SYNID_ALLBUT 10000 /* syntax group ID for contains=ALLBUT */
237 #define SYNID_TOP 15000 /* syntax group ID for contains=TOP */
238 #define SYNID_CONTAINED 20000 /* syntax group ID for contains=CONTAINED */
239 #define SYNID_CLUSTER 25000 /* first syntax group ID for clusters */
242 * Annoying Hack(TM): ":syn include" needs this pointer to pass to
243 * expand_filename(). Most of the other syntax commands don't need it, so
244 * instead of passing it to them, we stow it here.
246 static char_u **syn_cmdlinep;
249 * Another Annoying Hack(TM): To prevent rules from other ":syn include"'d
250 * files from from leaking into ALLBUT lists, we assign a unique ID to the
251 * rules in each ":syn include"'d file.
253 static int current_syn_inc_tag = 0;
254 static int running_syn_inc_tag = 0;
257 * In a hashtable item "hi_key" points to "keyword" in a keyentry.
258 * This avoids adding a pointer to the hashtable item.
259 * KE2HIKEY() converts a var pointer to a hashitem key pointer.
260 * HIKEY2KE() converts a hashitem key pointer to a var pointer.
261 * HI2KE() converts a hashitem pointer to a var pointer.
263 static keyentry_T dumkey;
264 #define KE2HIKEY(kp) ((kp)->keyword)
265 #define HIKEY2KE(p) ((keyentry_T *)((p) - (dumkey.keyword - (char_u *)&dumkey)))
266 #define HI2KE(hi) HIKEY2KE((hi)->hi_key)
269 * To reduce the time spent in keepend(), remember at which level in the state
270 * stack the first item with "keepend" is present. When "-1", there is no
271 * "keepend" on the stack.
273 static int keepend_level = -1;
276 * For the current state we need to remember more than just the idx.
277 * When si_m_endpos.lnum is 0, the items other than si_idx are unknown.
278 * (The end positions have the column number of the next char)
280 typedef struct state_item
282 int si_idx; /* index of syntax pattern or
283 KEYWORD_IDX */
284 int si_id; /* highlight group ID for keywords */
285 int si_trans_id; /* idem, transparancy removed */
286 int si_m_lnum; /* lnum of the match */
287 int si_m_startcol; /* starting column of the match */
288 lpos_T si_m_endpos; /* just after end posn of the match */
289 lpos_T si_h_startpos; /* start position of the highlighting */
290 lpos_T si_h_endpos; /* end position of the highlighting */
291 lpos_T si_eoe_pos; /* end position of end pattern */
292 int si_end_idx; /* group ID for end pattern or zero */
293 int si_ends; /* if match ends before si_m_endpos */
294 int si_attr; /* attributes in this state */
295 long si_flags; /* HL_HAS_EOL flag in this state, and
296 * HL_SKIP* for si_next_list */
297 short *si_cont_list; /* list of contained groups */
298 short *si_next_list; /* nextgroup IDs after this item ends */
299 reg_extmatch_T *si_extmatch; /* \z(...\) matches from start
300 * pattern */
301 } stateitem_T;
303 #define KEYWORD_IDX -1 /* value of si_idx for keywords */
304 #define ID_LIST_ALL (short *)-1 /* valid of si_cont_list for containing all
305 but contained groups */
308 * Struct to reduce the number of arguments to get_syn_options(), it's used
309 * very often.
311 typedef struct
313 int flags; /* flags for contained and transparent */
314 int keyword; /* TRUE for ":syn keyword" */
315 int *sync_idx; /* syntax item for "grouphere" argument, NULL
316 if not allowed */
317 char has_cont_list; /* TRUE if "cont_list" can be used */
318 short *cont_list; /* group IDs for "contains" argument */
319 short *cont_in_list; /* group IDs for "containedin" argument */
320 short *next_list; /* group IDs for "nextgroup" argument */
321 } syn_opt_arg_T;
324 * The next possible match in the current line for any pattern is remembered,
325 * to avoid having to try for a match in each column.
326 * If next_match_idx == -1, not tried (in this line) yet.
327 * If next_match_col == MAXCOL, no match found in this line.
328 * (All end positions have the column of the char after the end)
330 static int next_match_col; /* column for start of next match */
331 static lpos_T next_match_m_endpos; /* position for end of next match */
332 static lpos_T next_match_h_startpos; /* pos. for highl. start of next match */
333 static lpos_T next_match_h_endpos; /* pos. for highl. end of next match */
334 static int next_match_idx; /* index of matched item */
335 static long next_match_flags; /* flags for next match */
336 static lpos_T next_match_eos_pos; /* end of start pattn (start region) */
337 static lpos_T next_match_eoe_pos; /* pos. for end of end pattern */
338 static int next_match_end_idx; /* ID of group for end pattn or zero */
339 static reg_extmatch_T *next_match_extmatch = NULL;
342 * A state stack is an array of integers or stateitem_T, stored in a
343 * garray_T. A state stack is invalid if it's itemsize entry is zero.
345 #define INVALID_STATE(ssp) ((ssp)->ga_itemsize == 0)
346 #define VALID_STATE(ssp) ((ssp)->ga_itemsize != 0)
349 * The current state (within the line) of the recognition engine.
350 * When current_state.ga_itemsize is 0 the current state is invalid.
352 static win_T *syn_win; /* current window for highlighting */
353 static buf_T *syn_buf; /* current buffer for highlighting */
354 static linenr_T current_lnum = 0; /* lnum of current state */
355 static colnr_T current_col = 0; /* column of current state */
356 static int current_state_stored = 0; /* TRUE if stored current state
357 * after setting current_finished */
358 static int current_finished = 0; /* current line has been finished */
359 static garray_T current_state /* current stack of state_items */
360 = {0, 0, 0, 0, NULL};
361 static short *current_next_list = NULL; /* when non-zero, nextgroup list */
362 static int current_next_flags = 0; /* flags for current_next_list */
363 static int current_line_id = 0; /* unique number for current line */
365 #define CUR_STATE(idx) ((stateitem_T *)(current_state.ga_data))[idx]
367 static void syn_sync __ARGS((win_T *wp, linenr_T lnum, synstate_T *last_valid));
368 static int syn_match_linecont __ARGS((linenr_T lnum));
369 static void syn_start_line __ARGS((void));
370 static void syn_update_ends __ARGS((int startofline));
371 static void syn_stack_alloc __ARGS((void));
372 static int syn_stack_cleanup __ARGS((void));
373 static void syn_stack_free_entry __ARGS((buf_T *buf, synstate_T *p));
374 static synstate_T *syn_stack_find_entry __ARGS((linenr_T lnum));
375 static synstate_T *store_current_state __ARGS((void));
376 static void load_current_state __ARGS((synstate_T *from));
377 static void invalidate_current_state __ARGS((void));
378 static int syn_stack_equal __ARGS((synstate_T *sp));
379 static void validate_current_state __ARGS((void));
380 static int syn_finish_line __ARGS((int syncing));
381 static int syn_current_attr __ARGS((int syncing, int displaying, int *can_spell, int keep_state));
382 static int did_match_already __ARGS((int idx, garray_T *gap));
383 static stateitem_T *push_next_match __ARGS((stateitem_T *cur_si));
384 static void check_state_ends __ARGS((void));
385 static void update_si_attr __ARGS((int idx));
386 static void check_keepend __ARGS((void));
387 static void update_si_end __ARGS((stateitem_T *sip, int startcol, int force));
388 static short *copy_id_list __ARGS((short *list));
389 static int in_id_list __ARGS((stateitem_T *item, short *cont_list, struct sp_syn *ssp, int contained));
390 static int push_current_state __ARGS((int idx));
391 static void pop_current_state __ARGS((void));
393 static void find_endpos __ARGS((int idx, lpos_T *startpos, lpos_T *m_endpos, lpos_T *hl_endpos, long *flagsp, lpos_T *end_endpos, int *end_idx, reg_extmatch_T *start_ext));
394 static void clear_syn_state __ARGS((synstate_T *p));
395 static void clear_current_state __ARGS((void));
397 static void limit_pos __ARGS((lpos_T *pos, lpos_T *limit));
398 static void limit_pos_zero __ARGS((lpos_T *pos, lpos_T *limit));
399 static void syn_add_end_off __ARGS((lpos_T *result, regmmatch_T *regmatch, synpat_T *spp, int idx, int extra));
400 static void syn_add_start_off __ARGS((lpos_T *result, regmmatch_T *regmatch, synpat_T *spp, int idx, int extra));
401 static char_u *syn_getcurline __ARGS((void));
402 static int syn_regexec __ARGS((regmmatch_T *rmp, linenr_T lnum, colnr_T col));
403 static int check_keyword_id __ARGS((char_u *line, int startcol, int *endcol, long *flags, short **next_list, stateitem_T *cur_si));
404 static void syn_cmd_case __ARGS((exarg_T *eap, int syncing));
405 static void syn_cmd_spell __ARGS((exarg_T *eap, int syncing));
406 static void syntax_sync_clear __ARGS((void));
407 static void syn_remove_pattern __ARGS((buf_T *buf, int idx));
408 static void syn_clear_pattern __ARGS((buf_T *buf, int i));
409 static void syn_clear_cluster __ARGS((buf_T *buf, int i));
410 static void syn_cmd_clear __ARGS((exarg_T *eap, int syncing));
411 static void syn_clear_one __ARGS((int id, int syncing));
412 static void syn_cmd_on __ARGS((exarg_T *eap, int syncing));
413 static void syn_cmd_enable __ARGS((exarg_T *eap, int syncing));
414 static void syn_cmd_reset __ARGS((exarg_T *eap, int syncing));
415 static void syn_cmd_manual __ARGS((exarg_T *eap, int syncing));
416 static void syn_cmd_off __ARGS((exarg_T *eap, int syncing));
417 static void syn_cmd_onoff __ARGS((exarg_T *eap, char *name));
418 static void syn_cmd_list __ARGS((exarg_T *eap, int syncing));
419 static void syn_lines_msg __ARGS((void));
420 static void syn_match_msg __ARGS((void));
421 static void syn_list_one __ARGS((int id, int syncing, int link_only));
422 static void syn_list_cluster __ARGS((int id));
423 static void put_id_list __ARGS((char_u *name, short *list, int attr));
424 static void put_pattern __ARGS((char *s, int c, synpat_T *spp, int attr));
425 static int syn_list_keywords __ARGS((int id, hashtab_T *ht, int did_header, int attr));
426 static void syn_clear_keyword __ARGS((int id, hashtab_T *ht));
427 static void clear_keywtab __ARGS((hashtab_T *ht));
428 static void add_keyword __ARGS((char_u *name, int id, int flags, short *cont_in_list, short *next_list));
429 static char_u *get_group_name __ARGS((char_u *arg, char_u **name_end));
430 static char_u *get_syn_options __ARGS((char_u *arg, syn_opt_arg_T *opt));
431 static void syn_cmd_include __ARGS((exarg_T *eap, int syncing));
432 static void syn_cmd_keyword __ARGS((exarg_T *eap, int syncing));
433 static void syn_cmd_match __ARGS((exarg_T *eap, int syncing));
434 static void syn_cmd_region __ARGS((exarg_T *eap, int syncing));
435 #ifdef __BORLANDC__
436 static int _RTLENTRYF syn_compare_stub __ARGS((const void *v1, const void *v2));
437 #else
438 static int syn_compare_stub __ARGS((const void *v1, const void *v2));
439 #endif
440 static void syn_cmd_cluster __ARGS((exarg_T *eap, int syncing));
441 static int syn_scl_name2id __ARGS((char_u *name));
442 static int syn_scl_namen2id __ARGS((char_u *linep, int len));
443 static int syn_check_cluster __ARGS((char_u *pp, int len));
444 static int syn_add_cluster __ARGS((char_u *name));
445 static void init_syn_patterns __ARGS((void));
446 static char_u *get_syn_pattern __ARGS((char_u *arg, synpat_T *ci));
447 static void syn_cmd_sync __ARGS((exarg_T *eap, int syncing));
448 static int get_id_list __ARGS((char_u **arg, int keylen, short **list));
449 static void syn_combine_list __ARGS((short **clstr1, short **clstr2, int list_op));
450 static void syn_incl_toplevel __ARGS((int id, int *flagsp));
453 * Start the syntax recognition for a line. This function is normally called
454 * from the screen updating, once for each displayed line.
455 * The buffer is remembered in syn_buf, because get_syntax_attr() doesn't get
456 * it. Careful: curbuf and curwin are likely to point to another buffer and
457 * window.
459 void
460 syntax_start(wp, lnum)
461 win_T *wp;
462 linenr_T lnum;
464 synstate_T *p;
465 synstate_T *last_valid = NULL;
466 synstate_T *last_min_valid = NULL;
467 synstate_T *sp, *prev = NULL;
468 linenr_T parsed_lnum;
469 linenr_T first_stored;
470 int dist;
471 static int changedtick = 0; /* remember the last change ID */
474 * After switching buffers, invalidate current_state.
475 * Also do this when a change was made, the current state may be invalid
476 * then.
478 if (syn_buf != wp->w_buffer || changedtick != syn_buf->b_changedtick)
480 invalidate_current_state();
481 syn_buf = wp->w_buffer;
483 changedtick = syn_buf->b_changedtick;
484 syn_win = wp;
487 * Allocate syntax stack when needed.
489 syn_stack_alloc();
490 if (syn_buf->b_sst_array == NULL)
491 return; /* out of memory */
492 syn_buf->b_sst_lasttick = display_tick;
495 * If the state of the end of the previous line is useful, store it.
497 if (VALID_STATE(&current_state)
498 && current_lnum < lnum
499 && current_lnum < syn_buf->b_ml.ml_line_count)
501 (void)syn_finish_line(FALSE);
502 if (!current_state_stored)
504 ++current_lnum;
505 (void)store_current_state();
509 * If the current_lnum is now the same as "lnum", keep the current
510 * state (this happens very often!). Otherwise invalidate
511 * current_state and figure it out below.
513 if (current_lnum != lnum)
514 invalidate_current_state();
516 else
517 invalidate_current_state();
520 * Try to synchronize from a saved state in b_sst_array[].
521 * Only do this if lnum is not before and not to far beyond a saved state.
523 if (INVALID_STATE(&current_state) && syn_buf->b_sst_array != NULL)
525 /* Find last valid saved state before start_lnum. */
526 for (p = syn_buf->b_sst_first; p != NULL; p = p->sst_next)
528 if (p->sst_lnum > lnum)
529 break;
530 if (p->sst_lnum <= lnum && p->sst_change_lnum == 0)
532 last_valid = p;
533 if (p->sst_lnum >= lnum - syn_buf->b_syn_sync_minlines)
534 last_min_valid = p;
537 if (last_min_valid != NULL)
538 load_current_state(last_min_valid);
542 * If "lnum" is before or far beyond a line with a saved state, need to
543 * re-synchronize.
545 if (INVALID_STATE(&current_state))
547 syn_sync(wp, lnum, last_valid);
548 first_stored = current_lnum + syn_buf->b_syn_sync_minlines;
550 else
551 first_stored = current_lnum;
554 * Advance from the sync point or saved state until the current line.
555 * Save some entries for syncing with later on.
557 if (syn_buf->b_sst_len <= Rows)
558 dist = 999999;
559 else
560 dist = syn_buf->b_ml.ml_line_count / (syn_buf->b_sst_len - Rows) + 1;
561 while (current_lnum < lnum)
563 syn_start_line();
564 (void)syn_finish_line(FALSE);
565 ++current_lnum;
567 /* If we parsed at least "minlines" lines or started at a valid
568 * state, the current state is considered valid. */
569 if (current_lnum >= first_stored)
571 /* Check if the saved state entry is for the current line and is
572 * equal to the current state. If so, then validate all saved
573 * states that depended on a change before the parsed line. */
574 if (prev == NULL)
575 prev = syn_stack_find_entry(current_lnum - 1);
576 if (prev == NULL)
577 sp = syn_buf->b_sst_first;
578 else
579 sp = prev;
580 while (sp != NULL && sp->sst_lnum < current_lnum)
581 sp = sp->sst_next;
582 if (sp != NULL
583 && sp->sst_lnum == current_lnum
584 && syn_stack_equal(sp))
586 parsed_lnum = current_lnum;
587 prev = sp;
588 while (sp != NULL && sp->sst_change_lnum <= parsed_lnum)
590 if (sp->sst_lnum <= lnum)
591 /* valid state before desired line, use this one */
592 prev = sp;
593 else if (sp->sst_change_lnum == 0)
594 /* past saved states depending on change, break here. */
595 break;
596 sp->sst_change_lnum = 0;
597 sp = sp->sst_next;
599 load_current_state(prev);
601 /* Store the state at this line when it's the first one, the line
602 * where we start parsing, or some distance from the previously
603 * saved state. But only when parsed at least 'minlines'. */
604 else if (prev == NULL
605 || current_lnum == lnum
606 || current_lnum >= prev->sst_lnum + dist)
607 prev = store_current_state();
610 /* This can take a long time: break when CTRL-C pressed. The current
611 * state will be wrong then. */
612 line_breakcheck();
613 if (got_int)
615 current_lnum = lnum;
616 break;
620 syn_start_line();
624 * We cannot simply discard growarrays full of state_items or buf_states; we
625 * have to manually release their extmatch pointers first.
627 static void
628 clear_syn_state(p)
629 synstate_T *p;
631 int i;
632 garray_T *gap;
634 if (p->sst_stacksize > SST_FIX_STATES)
636 gap = &(p->sst_union.sst_ga);
637 for (i = 0; i < gap->ga_len; i++)
638 unref_extmatch(SYN_STATE_P(gap)[i].bs_extmatch);
639 ga_clear(gap);
641 else
643 for (i = 0; i < p->sst_stacksize; i++)
644 unref_extmatch(p->sst_union.sst_stack[i].bs_extmatch);
649 * Cleanup the current_state stack.
651 static void
652 clear_current_state()
654 int i;
655 stateitem_T *sip;
657 sip = (stateitem_T *)(current_state.ga_data);
658 for (i = 0; i < current_state.ga_len; i++)
659 unref_extmatch(sip[i].si_extmatch);
660 ga_clear(&current_state);
664 * Try to find a synchronisation point for line "lnum".
666 * This sets current_lnum and the current state. One of three methods is
667 * used:
668 * 1. Search backwards for the end of a C-comment.
669 * 2. Search backwards for given sync patterns.
670 * 3. Simply start on a given number of lines above "lnum".
672 static void
673 syn_sync(wp, start_lnum, last_valid)
674 win_T *wp;
675 linenr_T start_lnum;
676 synstate_T *last_valid;
678 buf_T *curbuf_save;
679 win_T *curwin_save;
680 pos_T cursor_save;
681 int idx;
682 linenr_T lnum;
683 linenr_T end_lnum;
684 linenr_T break_lnum;
685 int had_sync_point;
686 stateitem_T *cur_si;
687 synpat_T *spp;
688 char_u *line;
689 int found_flags = 0;
690 int found_match_idx = 0;
691 linenr_T found_current_lnum = 0;
692 int found_current_col= 0;
693 lpos_T found_m_endpos;
694 colnr_T prev_current_col;
697 * Clear any current state that might be hanging around.
699 invalidate_current_state();
702 * Start at least "minlines" back. Default starting point for parsing is
703 * there.
704 * Start further back, to avoid that scrolling backwards will result in
705 * resyncing for every line. Now it resyncs only one out of N lines,
706 * where N is minlines * 1.5, or minlines * 2 if minlines is small.
707 * Watch out for overflow when minlines is MAXLNUM.
709 if (syn_buf->b_syn_sync_minlines > start_lnum)
710 start_lnum = 1;
711 else
713 if (syn_buf->b_syn_sync_minlines == 1)
714 lnum = 1;
715 else if (syn_buf->b_syn_sync_minlines < 10)
716 lnum = syn_buf->b_syn_sync_minlines * 2;
717 else
718 lnum = syn_buf->b_syn_sync_minlines * 3 / 2;
719 if (syn_buf->b_syn_sync_maxlines != 0
720 && lnum > syn_buf->b_syn_sync_maxlines)
721 lnum = syn_buf->b_syn_sync_maxlines;
722 if (lnum >= start_lnum)
723 start_lnum = 1;
724 else
725 start_lnum -= lnum;
727 current_lnum = start_lnum;
730 * 1. Search backwards for the end of a C-style comment.
732 if (syn_buf->b_syn_sync_flags & SF_CCOMMENT)
734 /* Need to make syn_buf the current buffer for a moment, to be able to
735 * use find_start_comment(). */
736 curwin_save = curwin;
737 curwin = wp;
738 curbuf_save = curbuf;
739 curbuf = syn_buf;
742 * Skip lines that end in a backslash.
744 for ( ; start_lnum > 1; --start_lnum)
746 line = ml_get(start_lnum - 1);
747 if (*line == NUL || *(line + STRLEN(line) - 1) != '\\')
748 break;
750 current_lnum = start_lnum;
752 /* set cursor to start of search */
753 cursor_save = wp->w_cursor;
754 wp->w_cursor.lnum = start_lnum;
755 wp->w_cursor.col = 0;
758 * If the line is inside a comment, need to find the syntax item that
759 * defines the comment.
760 * Restrict the search for the end of a comment to b_syn_sync_maxlines.
762 if (find_start_comment((int)syn_buf->b_syn_sync_maxlines) != NULL)
764 for (idx = syn_buf->b_syn_patterns.ga_len; --idx >= 0; )
765 if (SYN_ITEMS(syn_buf)[idx].sp_syn.id == syn_buf->b_syn_sync_id
766 && SYN_ITEMS(syn_buf)[idx].sp_type == SPTYPE_START)
768 validate_current_state();
769 if (push_current_state(idx) == OK)
770 update_si_attr(current_state.ga_len - 1);
771 break;
775 /* restore cursor and buffer */
776 wp->w_cursor = cursor_save;
777 curwin = curwin_save;
778 curbuf = curbuf_save;
782 * 2. Search backwards for given sync patterns.
784 else if (syn_buf->b_syn_sync_flags & SF_MATCH)
786 if (syn_buf->b_syn_sync_maxlines != 0
787 && start_lnum > syn_buf->b_syn_sync_maxlines)
788 break_lnum = start_lnum - syn_buf->b_syn_sync_maxlines;
789 else
790 break_lnum = 0;
792 found_m_endpos.lnum = 0;
793 found_m_endpos.col = 0;
794 end_lnum = start_lnum;
795 lnum = start_lnum;
796 while (--lnum > break_lnum)
798 /* This can take a long time: break when CTRL-C pressed. */
799 line_breakcheck();
800 if (got_int)
802 invalidate_current_state();
803 current_lnum = start_lnum;
804 break;
807 /* Check if we have run into a valid saved state stack now. */
808 if (last_valid != NULL && lnum == last_valid->sst_lnum)
810 load_current_state(last_valid);
811 break;
815 * Check if the previous line has the line-continuation pattern.
817 if (lnum > 1 && syn_match_linecont(lnum - 1))
818 continue;
821 * Start with nothing on the state stack
823 validate_current_state();
825 for (current_lnum = lnum; current_lnum < end_lnum; ++current_lnum)
827 syn_start_line();
828 for (;;)
830 had_sync_point = syn_finish_line(TRUE);
832 * When a sync point has been found, remember where, and
833 * continue to look for another one, further on in the line.
835 if (had_sync_point && current_state.ga_len)
837 cur_si = &CUR_STATE(current_state.ga_len - 1);
838 if (cur_si->si_m_endpos.lnum > start_lnum)
840 /* ignore match that goes to after where started */
841 current_lnum = end_lnum;
842 break;
844 if (cur_si->si_idx < 0)
846 /* Cannot happen? */
847 found_flags = 0;
848 found_match_idx = KEYWORD_IDX;
850 else
852 spp = &(SYN_ITEMS(syn_buf)[cur_si->si_idx]);
853 found_flags = spp->sp_flags;
854 found_match_idx = spp->sp_sync_idx;
856 found_current_lnum = current_lnum;
857 found_current_col = current_col;
858 found_m_endpos = cur_si->si_m_endpos;
860 * Continue after the match (be aware of a zero-length
861 * match).
863 if (found_m_endpos.lnum > current_lnum)
865 current_lnum = found_m_endpos.lnum;
866 current_col = found_m_endpos.col;
867 if (current_lnum >= end_lnum)
868 break;
870 else if (found_m_endpos.col > current_col)
871 current_col = found_m_endpos.col;
872 else
873 ++current_col;
875 /* syn_current_attr() will have skipped the check for
876 * an item that ends here, need to do that now. Be
877 * careful not to go past the NUL. */
878 prev_current_col = current_col;
879 if (syn_getcurline()[current_col] != NUL)
880 ++current_col;
881 check_state_ends();
882 current_col = prev_current_col;
884 else
885 break;
890 * If a sync point was encountered, break here.
892 if (found_flags)
895 * Put the item that was specified by the sync point on the
896 * state stack. If there was no item specified, make the
897 * state stack empty.
899 clear_current_state();
900 if (found_match_idx >= 0
901 && push_current_state(found_match_idx) == OK)
902 update_si_attr(current_state.ga_len - 1);
905 * When using "grouphere", continue from the sync point
906 * match, until the end of the line. Parsing starts at
907 * the next line.
908 * For "groupthere" the parsing starts at start_lnum.
910 if (found_flags & HL_SYNC_HERE)
912 if (current_state.ga_len)
914 cur_si = &CUR_STATE(current_state.ga_len - 1);
915 cur_si->si_h_startpos.lnum = found_current_lnum;
916 cur_si->si_h_startpos.col = found_current_col;
917 update_si_end(cur_si, (int)current_col, TRUE);
918 check_keepend();
920 current_col = found_m_endpos.col;
921 current_lnum = found_m_endpos.lnum;
922 (void)syn_finish_line(FALSE);
923 ++current_lnum;
925 else
926 current_lnum = start_lnum;
928 break;
931 end_lnum = lnum;
932 invalidate_current_state();
935 /* Ran into start of the file or exceeded maximum number of lines */
936 if (lnum <= break_lnum)
938 invalidate_current_state();
939 current_lnum = break_lnum + 1;
943 validate_current_state();
947 * Return TRUE if the line-continuation pattern matches in line "lnum".
949 static int
950 syn_match_linecont(lnum)
951 linenr_T lnum;
953 regmmatch_T regmatch;
955 if (syn_buf->b_syn_linecont_prog != NULL)
957 regmatch.rmm_ic = syn_buf->b_syn_linecont_ic;
958 regmatch.regprog = syn_buf->b_syn_linecont_prog;
959 return syn_regexec(&regmatch, lnum, (colnr_T)0);
961 return FALSE;
965 * Prepare the current state for the start of a line.
967 static void
968 syn_start_line()
970 current_finished = FALSE;
971 current_col = 0;
974 * Need to update the end of a start/skip/end that continues from the
975 * previous line and regions that have "keepend".
977 if (current_state.ga_len > 0)
978 syn_update_ends(TRUE);
980 next_match_idx = -1;
981 ++current_line_id;
985 * Check for items in the stack that need their end updated.
986 * When "startofline" is TRUE the last item is always updated.
987 * When "startofline" is FALSE the item with "keepend" is forcefully updated.
989 static void
990 syn_update_ends(startofline)
991 int startofline;
993 stateitem_T *cur_si;
994 int i;
995 int seen_keepend;
997 if (startofline)
999 /* Check for a match carried over from a previous line with a
1000 * contained region. The match ends as soon as the region ends. */
1001 for (i = 0; i < current_state.ga_len; ++i)
1003 cur_si = &CUR_STATE(i);
1004 if (cur_si->si_idx >= 0
1005 && (SYN_ITEMS(syn_buf)[cur_si->si_idx]).sp_type
1006 == SPTYPE_MATCH
1007 && cur_si->si_m_endpos.lnum < current_lnum)
1009 cur_si->si_flags |= HL_MATCHCONT;
1010 cur_si->si_m_endpos.lnum = 0;
1011 cur_si->si_m_endpos.col = 0;
1012 cur_si->si_h_endpos = cur_si->si_m_endpos;
1013 cur_si->si_ends = TRUE;
1019 * Need to update the end of a start/skip/end that continues from the
1020 * previous line. And regions that have "keepend", because they may
1021 * influence contained items. If we've just removed "extend"
1022 * (startofline == 0) then we should update ends of normal regions
1023 * contained inside "keepend" because "extend" could have extended
1024 * these "keepend" regions as well as contained normal regions.
1025 * Then check for items ending in column 0.
1027 i = current_state.ga_len - 1;
1028 if (keepend_level >= 0)
1029 for ( ; i > keepend_level; --i)
1030 if (CUR_STATE(i).si_flags & HL_EXTEND)
1031 break;
1033 seen_keepend = FALSE;
1034 for ( ; i < current_state.ga_len; ++i)
1036 cur_si = &CUR_STATE(i);
1037 if ((cur_si->si_flags & HL_KEEPEND)
1038 || (seen_keepend && !startofline)
1039 || (i == current_state.ga_len - 1 && startofline))
1041 cur_si->si_h_startpos.col = 0; /* start highl. in col 0 */
1042 cur_si->si_h_startpos.lnum = current_lnum;
1044 if (!(cur_si->si_flags & HL_MATCHCONT))
1045 update_si_end(cur_si, (int)current_col, !startofline);
1047 if (!startofline && (cur_si->si_flags & HL_KEEPEND))
1048 seen_keepend = TRUE;
1051 check_keepend();
1052 check_state_ends();
1055 /****************************************
1056 * Handling of the state stack cache.
1060 * EXPLANATION OF THE SYNTAX STATE STACK CACHE
1062 * To speed up syntax highlighting, the state stack for the start of some
1063 * lines is cached. These entries can be used to start parsing at that point.
1065 * The stack is kept in b_sst_array[] for each buffer. There is a list of
1066 * valid entries. b_sst_first points to the first one, then follow sst_next.
1067 * The entries are sorted on line number. The first entry is often for line 2
1068 * (line 1 always starts with an empty stack).
1069 * There is also a list for free entries. This construction is used to avoid
1070 * having to allocate and free memory blocks too often.
1072 * When making changes to the buffer, this is logged in b_mod_*. When calling
1073 * update_screen() to update the display, it will call
1074 * syn_stack_apply_changes() for each displayed buffer to adjust the cached
1075 * entries. The entries which are inside the changed area are removed,
1076 * because they must be recomputed. Entries below the changed have their line
1077 * number adjusted for deleted/inserted lines, and have their sst_change_lnum
1078 * set to indicate that a check must be made if the changed lines would change
1079 * the cached entry.
1081 * When later displaying lines, an entry is stored for each line. Displayed
1082 * lines are likely to be displayed again, in which case the state at the
1083 * start of the line is needed.
1084 * For not displayed lines, an entry is stored for every so many lines. These
1085 * entries will be used e.g., when scrolling backwards. The distance between
1086 * entries depends on the number of lines in the buffer. For small buffers
1087 * the distance is fixed at SST_DIST, for large buffers there is a fixed
1088 * number of entries SST_MAX_ENTRIES, and the distance is computed.
1092 * Free b_sst_array[] for buffer "buf".
1093 * Used when syntax items changed to force resyncing everywhere.
1095 void
1096 syn_stack_free_all(buf)
1097 buf_T *buf;
1099 synstate_T *p;
1100 win_T *wp;
1102 if (buf->b_sst_array != NULL)
1104 for (p = buf->b_sst_first; p != NULL; p = p->sst_next)
1105 clear_syn_state(p);
1106 vim_free(buf->b_sst_array);
1107 buf->b_sst_array = NULL;
1108 buf->b_sst_len = 0;
1110 #ifdef FEAT_FOLDING
1111 /* When using "syntax" fold method, must update all folds. */
1112 FOR_ALL_WINDOWS(wp)
1114 if (wp->w_buffer == buf && foldmethodIsSyntax(wp))
1115 foldUpdateAll(wp);
1117 #endif
1121 * Allocate the syntax state stack for syn_buf when needed.
1122 * If the number of entries in b_sst_array[] is much too big or a bit too
1123 * small, reallocate it.
1124 * Also used to allocate b_sst_array[] for the first time.
1126 static void
1127 syn_stack_alloc()
1129 long len;
1130 synstate_T *to, *from;
1131 synstate_T *sstp;
1133 len = syn_buf->b_ml.ml_line_count / SST_DIST + Rows * 2;
1134 if (len < SST_MIN_ENTRIES)
1135 len = SST_MIN_ENTRIES;
1136 else if (len > SST_MAX_ENTRIES)
1137 len = SST_MAX_ENTRIES;
1138 if (syn_buf->b_sst_len > len * 2 || syn_buf->b_sst_len < len)
1140 /* Allocate 50% too much, to avoid reallocating too often. */
1141 len = syn_buf->b_ml.ml_line_count;
1142 len = (len + len / 2) / SST_DIST + Rows * 2;
1143 if (len < SST_MIN_ENTRIES)
1144 len = SST_MIN_ENTRIES;
1145 else if (len > SST_MAX_ENTRIES)
1146 len = SST_MAX_ENTRIES;
1148 if (syn_buf->b_sst_array != NULL)
1150 /* When shrinking the array, cleanup the existing stack.
1151 * Make sure that all valid entries fit in the new array. */
1152 while (syn_buf->b_sst_len - syn_buf->b_sst_freecount + 2 > len
1153 && syn_stack_cleanup())
1155 if (len < syn_buf->b_sst_len - syn_buf->b_sst_freecount + 2)
1156 len = syn_buf->b_sst_len - syn_buf->b_sst_freecount + 2;
1159 sstp = (synstate_T *)alloc_clear((unsigned)(len * sizeof(synstate_T)));
1160 if (sstp == NULL) /* out of memory! */
1161 return;
1163 to = sstp - 1;
1164 if (syn_buf->b_sst_array != NULL)
1166 /* Move the states from the old array to the new one. */
1167 for (from = syn_buf->b_sst_first; from != NULL;
1168 from = from->sst_next)
1170 ++to;
1171 *to = *from;
1172 to->sst_next = to + 1;
1175 if (to != sstp - 1)
1177 to->sst_next = NULL;
1178 syn_buf->b_sst_first = sstp;
1179 syn_buf->b_sst_freecount = len - (int)(to - sstp) - 1;
1181 else
1183 syn_buf->b_sst_first = NULL;
1184 syn_buf->b_sst_freecount = len;
1187 /* Create the list of free entries. */
1188 syn_buf->b_sst_firstfree = to + 1;
1189 while (++to < sstp + len)
1190 to->sst_next = to + 1;
1191 (sstp + len - 1)->sst_next = NULL;
1193 vim_free(syn_buf->b_sst_array);
1194 syn_buf->b_sst_array = sstp;
1195 syn_buf->b_sst_len = len;
1200 * Check for changes in a buffer to affect stored syntax states. Uses the
1201 * b_mod_* fields.
1202 * Called from update_screen(), before screen is being updated, once for each
1203 * displayed buffer.
1205 void
1206 syn_stack_apply_changes(buf)
1207 buf_T *buf;
1209 synstate_T *p, *prev, *np;
1210 linenr_T n;
1212 if (buf->b_sst_array == NULL) /* nothing to do */
1213 return;
1215 prev = NULL;
1216 for (p = buf->b_sst_first; p != NULL; )
1218 if (p->sst_lnum + buf->b_syn_sync_linebreaks > buf->b_mod_top)
1220 n = p->sst_lnum + buf->b_mod_xlines;
1221 if (n <= buf->b_mod_bot)
1223 /* this state is inside the changed area, remove it */
1224 np = p->sst_next;
1225 if (prev == NULL)
1226 buf->b_sst_first = np;
1227 else
1228 prev->sst_next = np;
1229 syn_stack_free_entry(buf, p);
1230 p = np;
1231 continue;
1233 /* This state is below the changed area. Remember the line
1234 * that needs to be parsed before this entry can be made valid
1235 * again. */
1236 if (p->sst_change_lnum != 0 && p->sst_change_lnum > buf->b_mod_top)
1238 if (p->sst_change_lnum + buf->b_mod_xlines > buf->b_mod_top)
1239 p->sst_change_lnum += buf->b_mod_xlines;
1240 else
1241 p->sst_change_lnum = buf->b_mod_top;
1243 if (p->sst_change_lnum == 0
1244 || p->sst_change_lnum < buf->b_mod_bot)
1245 p->sst_change_lnum = buf->b_mod_bot;
1247 p->sst_lnum = n;
1249 prev = p;
1250 p = p->sst_next;
1255 * Reduce the number of entries in the state stack for syn_buf.
1256 * Returns TRUE if at least one entry was freed.
1258 static int
1259 syn_stack_cleanup()
1261 synstate_T *p, *prev;
1262 disptick_T tick;
1263 int above;
1264 int dist;
1265 int retval = FALSE;
1267 if (syn_buf->b_sst_array == NULL || syn_buf->b_sst_first == NULL)
1268 return retval;
1270 /* Compute normal distance between non-displayed entries. */
1271 if (syn_buf->b_sst_len <= Rows)
1272 dist = 999999;
1273 else
1274 dist = syn_buf->b_ml.ml_line_count / (syn_buf->b_sst_len - Rows) + 1;
1277 * Go throught the list to find the "tick" for the oldest entry that can
1278 * be removed. Set "above" when the "tick" for the oldest entry is above
1279 * "b_sst_lasttick" (the display tick wraps around).
1281 tick = syn_buf->b_sst_lasttick;
1282 above = FALSE;
1283 prev = syn_buf->b_sst_first;
1284 for (p = prev->sst_next; p != NULL; prev = p, p = p->sst_next)
1286 if (prev->sst_lnum + dist > p->sst_lnum)
1288 if (p->sst_tick > syn_buf->b_sst_lasttick)
1290 if (!above || p->sst_tick < tick)
1291 tick = p->sst_tick;
1292 above = TRUE;
1294 else if (!above && p->sst_tick < tick)
1295 tick = p->sst_tick;
1300 * Go through the list to make the entries for the oldest tick at an
1301 * interval of several lines.
1303 prev = syn_buf->b_sst_first;
1304 for (p = prev->sst_next; p != NULL; prev = p, p = p->sst_next)
1306 if (p->sst_tick == tick && prev->sst_lnum + dist > p->sst_lnum)
1308 /* Move this entry from used list to free list */
1309 prev->sst_next = p->sst_next;
1310 syn_stack_free_entry(syn_buf, p);
1311 p = prev;
1312 retval = TRUE;
1315 return retval;
1319 * Free the allocated memory for a syn_state item.
1320 * Move the entry into the free list.
1322 static void
1323 syn_stack_free_entry(buf, p)
1324 buf_T *buf;
1325 synstate_T *p;
1327 clear_syn_state(p);
1328 p->sst_next = buf->b_sst_firstfree;
1329 buf->b_sst_firstfree = p;
1330 ++buf->b_sst_freecount;
1334 * Find an entry in the list of state stacks at or before "lnum".
1335 * Returns NULL when there is no entry or the first entry is after "lnum".
1337 static synstate_T *
1338 syn_stack_find_entry(lnum)
1339 linenr_T lnum;
1341 synstate_T *p, *prev;
1343 prev = NULL;
1344 for (p = syn_buf->b_sst_first; p != NULL; prev = p, p = p->sst_next)
1346 if (p->sst_lnum == lnum)
1347 return p;
1348 if (p->sst_lnum > lnum)
1349 break;
1351 return prev;
1355 * Try saving the current state in b_sst_array[].
1356 * The current state must be valid for the start of the current_lnum line!
1358 static synstate_T *
1359 store_current_state()
1361 int i;
1362 synstate_T *p;
1363 bufstate_T *bp;
1364 stateitem_T *cur_si;
1365 synstate_T *sp = syn_stack_find_entry(current_lnum);
1368 * If the current state contains a start or end pattern that continues
1369 * from the previous line, we can't use it. Don't store it then.
1371 for (i = current_state.ga_len - 1; i >= 0; --i)
1373 cur_si = &CUR_STATE(i);
1374 if (cur_si->si_h_startpos.lnum >= current_lnum
1375 || cur_si->si_m_endpos.lnum >= current_lnum
1376 || cur_si->si_h_endpos.lnum >= current_lnum
1377 || (cur_si->si_end_idx
1378 && cur_si->si_eoe_pos.lnum >= current_lnum))
1379 break;
1381 if (i >= 0)
1383 if (sp != NULL)
1385 /* find "sp" in the list and remove it */
1386 if (syn_buf->b_sst_first == sp)
1387 /* it's the first entry */
1388 syn_buf->b_sst_first = sp->sst_next;
1389 else
1391 /* find the entry just before this one to adjust sst_next */
1392 for (p = syn_buf->b_sst_first; p != NULL; p = p->sst_next)
1393 if (p->sst_next == sp)
1394 break;
1395 if (p != NULL) /* just in case */
1396 p->sst_next = sp->sst_next;
1398 syn_stack_free_entry(syn_buf, sp);
1399 sp = NULL;
1402 else if (sp == NULL || sp->sst_lnum != current_lnum)
1405 * Add a new entry
1407 /* If no free items, cleanup the array first. */
1408 if (syn_buf->b_sst_freecount == 0)
1410 (void)syn_stack_cleanup();
1411 /* "sp" may have been moved to the freelist now */
1412 sp = syn_stack_find_entry(current_lnum);
1414 /* Still no free items? Must be a strange problem... */
1415 if (syn_buf->b_sst_freecount == 0)
1416 sp = NULL;
1417 else
1419 /* Take the first item from the free list and put it in the used
1420 * list, after *sp */
1421 p = syn_buf->b_sst_firstfree;
1422 syn_buf->b_sst_firstfree = p->sst_next;
1423 --syn_buf->b_sst_freecount;
1424 if (sp == NULL)
1426 /* Insert in front of the list */
1427 p->sst_next = syn_buf->b_sst_first;
1428 syn_buf->b_sst_first = p;
1430 else
1432 /* insert in list after *sp */
1433 p->sst_next = sp->sst_next;
1434 sp->sst_next = p;
1436 sp = p;
1437 sp->sst_stacksize = 0;
1438 sp->sst_lnum = current_lnum;
1441 if (sp != NULL)
1443 /* When overwriting an existing state stack, clear it first */
1444 clear_syn_state(sp);
1445 sp->sst_stacksize = current_state.ga_len;
1446 if (current_state.ga_len > SST_FIX_STATES)
1448 /* Need to clear it, might be something remaining from when the
1449 * length was less than SST_FIX_STATES. */
1450 ga_init2(&sp->sst_union.sst_ga, (int)sizeof(bufstate_T), 1);
1451 if (ga_grow(&sp->sst_union.sst_ga, current_state.ga_len) == FAIL)
1452 sp->sst_stacksize = 0;
1453 else
1454 sp->sst_union.sst_ga.ga_len = current_state.ga_len;
1455 bp = SYN_STATE_P(&(sp->sst_union.sst_ga));
1457 else
1458 bp = sp->sst_union.sst_stack;
1459 for (i = 0; i < sp->sst_stacksize; ++i)
1461 bp[i].bs_idx = CUR_STATE(i).si_idx;
1462 bp[i].bs_flags = CUR_STATE(i).si_flags;
1463 bp[i].bs_extmatch = ref_extmatch(CUR_STATE(i).si_extmatch);
1465 sp->sst_next_flags = current_next_flags;
1466 sp->sst_next_list = current_next_list;
1467 sp->sst_tick = display_tick;
1468 sp->sst_change_lnum = 0;
1470 current_state_stored = TRUE;
1471 return sp;
1475 * Copy a state stack from "from" in b_sst_array[] to current_state;
1477 static void
1478 load_current_state(from)
1479 synstate_T *from;
1481 int i;
1482 bufstate_T *bp;
1484 clear_current_state();
1485 validate_current_state();
1486 keepend_level = -1;
1487 if (from->sst_stacksize
1488 && ga_grow(&current_state, from->sst_stacksize) != FAIL)
1490 if (from->sst_stacksize > SST_FIX_STATES)
1491 bp = SYN_STATE_P(&(from->sst_union.sst_ga));
1492 else
1493 bp = from->sst_union.sst_stack;
1494 for (i = 0; i < from->sst_stacksize; ++i)
1496 CUR_STATE(i).si_idx = bp[i].bs_idx;
1497 CUR_STATE(i).si_flags = bp[i].bs_flags;
1498 CUR_STATE(i).si_extmatch = ref_extmatch(bp[i].bs_extmatch);
1499 if (keepend_level < 0 && (CUR_STATE(i).si_flags & HL_KEEPEND))
1500 keepend_level = i;
1501 CUR_STATE(i).si_ends = FALSE;
1502 CUR_STATE(i).si_m_lnum = 0;
1503 if (CUR_STATE(i).si_idx >= 0)
1504 CUR_STATE(i).si_next_list =
1505 (SYN_ITEMS(syn_buf)[CUR_STATE(i).si_idx]).sp_next_list;
1506 else
1507 CUR_STATE(i).si_next_list = NULL;
1508 update_si_attr(i);
1510 current_state.ga_len = from->sst_stacksize;
1512 current_next_list = from->sst_next_list;
1513 current_next_flags = from->sst_next_flags;
1514 current_lnum = from->sst_lnum;
1518 * Compare saved state stack "*sp" with the current state.
1519 * Return TRUE when they are equal.
1521 static int
1522 syn_stack_equal(sp)
1523 synstate_T *sp;
1525 int i, j;
1526 bufstate_T *bp;
1527 reg_extmatch_T *six, *bsx;
1529 /* First a quick check if the stacks have the same size end nextlist. */
1530 if (sp->sst_stacksize == current_state.ga_len
1531 && sp->sst_next_list == current_next_list)
1533 /* Need to compare all states on both stacks. */
1534 if (sp->sst_stacksize > SST_FIX_STATES)
1535 bp = SYN_STATE_P(&(sp->sst_union.sst_ga));
1536 else
1537 bp = sp->sst_union.sst_stack;
1539 for (i = current_state.ga_len; --i >= 0; )
1541 /* If the item has another index the state is different. */
1542 if (bp[i].bs_idx != CUR_STATE(i).si_idx)
1543 break;
1544 if (bp[i].bs_extmatch != CUR_STATE(i).si_extmatch)
1546 /* When the extmatch pointers are different, the strings in
1547 * them can still be the same. Check if the extmatch
1548 * references are equal. */
1549 bsx = bp[i].bs_extmatch;
1550 six = CUR_STATE(i).si_extmatch;
1551 /* If one of the extmatch pointers is NULL the states are
1552 * different. */
1553 if (bsx == NULL || six == NULL)
1554 break;
1555 for (j = 0; j < NSUBEXP; ++j)
1557 /* Check each referenced match string. They must all be
1558 * equal. */
1559 if (bsx->matches[j] != six->matches[j])
1561 /* If the pointer is different it can still be the
1562 * same text. Compare the strings, ignore case when
1563 * the start item has the sp_ic flag set. */
1564 if (bsx->matches[j] == NULL
1565 || six->matches[j] == NULL)
1566 break;
1567 if ((SYN_ITEMS(syn_buf)[CUR_STATE(i).si_idx]).sp_ic
1568 ? MB_STRICMP(bsx->matches[j],
1569 six->matches[j]) != 0
1570 : STRCMP(bsx->matches[j], six->matches[j]) != 0)
1571 break;
1574 if (j != NSUBEXP)
1575 break;
1578 if (i < 0)
1579 return TRUE;
1581 return FALSE;
1585 * We stop parsing syntax above line "lnum". If the stored state at or below
1586 * this line depended on a change before it, it now depends on the line below
1587 * the last parsed line.
1588 * The window looks like this:
1589 * line which changed
1590 * displayed line
1591 * displayed line
1592 * lnum -> line below window
1594 void
1595 syntax_end_parsing(lnum)
1596 linenr_T lnum;
1598 synstate_T *sp;
1600 sp = syn_stack_find_entry(lnum);
1601 if (sp != NULL && sp->sst_lnum < lnum)
1602 sp = sp->sst_next;
1604 if (sp != NULL && sp->sst_change_lnum != 0)
1605 sp->sst_change_lnum = lnum;
1609 * End of handling of the state stack.
1610 ****************************************/
1612 static void
1613 invalidate_current_state()
1615 clear_current_state();
1616 current_state.ga_itemsize = 0; /* mark current_state invalid */
1617 current_next_list = NULL;
1618 keepend_level = -1;
1621 static void
1622 validate_current_state()
1624 current_state.ga_itemsize = sizeof(stateitem_T);
1625 current_state.ga_growsize = 3;
1629 * Return TRUE if the syntax at start of lnum changed since last time.
1630 * This will only be called just after get_syntax_attr() for the previous
1631 * line, to check if the next line needs to be redrawn too.
1634 syntax_check_changed(lnum)
1635 linenr_T lnum;
1637 int retval = TRUE;
1638 synstate_T *sp;
1641 * Check the state stack when:
1642 * - lnum is just below the previously syntaxed line.
1643 * - lnum is not before the lines with saved states.
1644 * - lnum is not past the lines with saved states.
1645 * - lnum is at or before the last changed line.
1647 if (VALID_STATE(&current_state) && lnum == current_lnum + 1)
1649 sp = syn_stack_find_entry(lnum);
1650 if (sp != NULL && sp->sst_lnum == lnum)
1653 * finish the previous line (needed when not all of the line was
1654 * drawn)
1656 (void)syn_finish_line(FALSE);
1659 * Compare the current state with the previously saved state of
1660 * the line.
1662 if (syn_stack_equal(sp))
1663 retval = FALSE;
1666 * Store the current state in b_sst_array[] for later use.
1668 ++current_lnum;
1669 (void)store_current_state();
1673 return retval;
1677 * Finish the current line.
1678 * This doesn't return any attributes, it only gets the state at the end of
1679 * the line. It can start anywhere in the line, as long as the current state
1680 * is valid.
1682 static int
1683 syn_finish_line(syncing)
1684 int syncing; /* called for syncing */
1686 stateitem_T *cur_si;
1687 colnr_T prev_current_col;
1689 if (!current_finished)
1691 while (!current_finished)
1693 (void)syn_current_attr(syncing, FALSE, NULL, FALSE);
1695 * When syncing, and found some item, need to check the item.
1697 if (syncing && current_state.ga_len)
1700 * Check for match with sync item.
1702 cur_si = &CUR_STATE(current_state.ga_len - 1);
1703 if (cur_si->si_idx >= 0
1704 && (SYN_ITEMS(syn_buf)[cur_si->si_idx].sp_flags
1705 & (HL_SYNC_HERE|HL_SYNC_THERE)))
1706 return TRUE;
1708 /* syn_current_attr() will have skipped the check for an item
1709 * that ends here, need to do that now. Be careful not to go
1710 * past the NUL. */
1711 prev_current_col = current_col;
1712 if (syn_getcurline()[current_col] != NUL)
1713 ++current_col;
1714 check_state_ends();
1715 current_col = prev_current_col;
1717 ++current_col;
1720 return FALSE;
1724 * Return highlight attributes for next character.
1725 * Must first call syntax_start() once for the line.
1726 * "col" is normally 0 for the first use in a line, and increments by one each
1727 * time. It's allowed to skip characters and to stop before the end of the
1728 * line. But only a "col" after a previously used column is allowed.
1729 * When "can_spell" is not NULL set it to TRUE when spell-checking should be
1730 * done.
1733 get_syntax_attr(col, can_spell, keep_state)
1734 colnr_T col;
1735 int *can_spell;
1736 int keep_state; /* keep state of char at "col" */
1738 int attr = 0;
1740 if (can_spell != NULL)
1741 /* Default: Only do spelling when there is no @Spell cluster or when
1742 * ":syn spell toplevel" was used. */
1743 *can_spell = syn_buf->b_syn_spell == SYNSPL_DEFAULT
1744 ? (syn_buf->b_spell_cluster_id == 0)
1745 : (syn_buf->b_syn_spell == SYNSPL_TOP);
1747 /* check for out of memory situation */
1748 if (syn_buf->b_sst_array == NULL)
1749 return 0;
1751 /* After 'synmaxcol' the attribute is always zero. */
1752 if (syn_buf->b_p_smc > 0 && col >= (colnr_T)syn_buf->b_p_smc)
1754 clear_current_state();
1755 #ifdef FEAT_EVAL
1756 current_id = 0;
1757 current_trans_id = 0;
1758 #endif
1759 return 0;
1762 /* Make sure current_state is valid */
1763 if (INVALID_STATE(&current_state))
1764 validate_current_state();
1767 * Skip from the current column to "col", get the attributes for "col".
1769 while (current_col <= col)
1771 attr = syn_current_attr(FALSE, TRUE, can_spell,
1772 current_col == col ? keep_state : FALSE);
1773 ++current_col;
1776 return attr;
1780 * Get syntax attributes for current_lnum, current_col.
1782 static int
1783 syn_current_attr(syncing, displaying, can_spell, keep_state)
1784 int syncing; /* When 1: called for syncing */
1785 int displaying; /* result will be displayed */
1786 int *can_spell; /* return: do spell checking */
1787 int keep_state; /* keep syntax stack afterwards */
1789 int syn_id;
1790 lpos_T endpos; /* was: char_u *endp; */
1791 lpos_T hl_startpos; /* was: int hl_startcol; */
1792 lpos_T hl_endpos;
1793 lpos_T eos_pos; /* end-of-start match (start region) */
1794 lpos_T eoe_pos; /* end-of-end pattern */
1795 int end_idx; /* group ID for end pattern */
1796 int idx;
1797 synpat_T *spp;
1798 stateitem_T *cur_si, *sip = NULL;
1799 int startcol;
1800 int endcol;
1801 long flags;
1802 short *next_list;
1803 int found_match; /* found usable match */
1804 static int try_next_column = FALSE; /* must try in next col */
1805 int do_keywords;
1806 regmmatch_T regmatch;
1807 lpos_T pos;
1808 int lc_col;
1809 reg_extmatch_T *cur_extmatch = NULL;
1810 char_u *line; /* current line. NOTE: becomes invalid after
1811 looking for a pattern match! */
1813 /* variables for zero-width matches that have a "nextgroup" argument */
1814 int keep_next_list;
1815 int zero_width_next_list = FALSE;
1816 garray_T zero_width_next_ga;
1819 * No character, no attributes! Past end of line?
1820 * Do try matching with an empty line (could be the start of a region).
1822 line = syn_getcurline();
1823 if (line[current_col] == NUL && current_col != 0)
1826 * If we found a match after the last column, use it.
1828 if (next_match_idx >= 0 && next_match_col >= (int)current_col
1829 && next_match_col != MAXCOL)
1830 (void)push_next_match(NULL);
1832 current_finished = TRUE;
1833 current_state_stored = FALSE;
1834 return 0;
1837 /* if the current or next character is NUL, we will finish the line now */
1838 if (line[current_col] == NUL || line[current_col + 1] == NUL)
1840 current_finished = TRUE;
1841 current_state_stored = FALSE;
1845 * When in the previous column there was a match but it could not be used
1846 * (empty match or already matched in this column) need to try again in
1847 * the next column.
1849 if (try_next_column)
1851 next_match_idx = -1;
1852 try_next_column = FALSE;
1855 /* Only check for keywords when not syncing and there are some. */
1856 do_keywords = !syncing
1857 && (syn_buf->b_keywtab.ht_used > 0
1858 || syn_buf->b_keywtab_ic.ht_used > 0);
1860 /* Init the list of zero-width matches with a nextlist. This is used to
1861 * avoid matching the same item in the same position twice. */
1862 ga_init2(&zero_width_next_ga, (int)sizeof(int), 10);
1865 * Repeat matching keywords and patterns, to find contained items at the
1866 * same column. This stops when there are no extra matches at the current
1867 * column.
1871 found_match = FALSE;
1872 keep_next_list = FALSE;
1873 syn_id = 0;
1876 * 1. Check for a current state.
1877 * Only when there is no current state, or if the current state may
1878 * contain other things, we need to check for keywords and patterns.
1879 * Always need to check for contained items if some item has the
1880 * "containedin" argument (takes extra time!).
1882 if (current_state.ga_len)
1883 cur_si = &CUR_STATE(current_state.ga_len - 1);
1884 else
1885 cur_si = NULL;
1887 if (syn_buf->b_syn_containedin || cur_si == NULL
1888 || cur_si->si_cont_list != NULL)
1891 * 2. Check for keywords, if on a keyword char after a non-keyword
1892 * char. Don't do this when syncing.
1894 if (do_keywords)
1896 line = syn_getcurline();
1897 if (vim_iswordc_buf(line + current_col, syn_buf)
1898 && (current_col == 0
1899 || !vim_iswordc_buf(line + current_col - 1
1900 #ifdef FEAT_MBYTE
1901 - (has_mbyte
1902 ? (*mb_head_off)(line, line + current_col - 1)
1903 : 0)
1904 #endif
1905 , syn_buf)))
1907 syn_id = check_keyword_id(line, (int)current_col,
1908 &endcol, &flags, &next_list, cur_si);
1909 if (syn_id != 0)
1911 if (push_current_state(KEYWORD_IDX) == OK)
1913 cur_si = &CUR_STATE(current_state.ga_len - 1);
1914 cur_si->si_m_startcol = current_col;
1915 cur_si->si_h_startpos.lnum = current_lnum;
1916 cur_si->si_h_startpos.col = 0; /* starts right away */
1917 cur_si->si_m_endpos.lnum = current_lnum;
1918 cur_si->si_m_endpos.col = endcol;
1919 cur_si->si_h_endpos.lnum = current_lnum;
1920 cur_si->si_h_endpos.col = endcol;
1921 cur_si->si_ends = TRUE;
1922 cur_si->si_end_idx = 0;
1923 cur_si->si_flags = flags;
1924 cur_si->si_id = syn_id;
1925 cur_si->si_trans_id = syn_id;
1926 if (flags & HL_TRANSP)
1928 if (current_state.ga_len < 2)
1930 cur_si->si_attr = 0;
1931 cur_si->si_trans_id = 0;
1933 else
1935 cur_si->si_attr = CUR_STATE(
1936 current_state.ga_len - 2).si_attr;
1937 cur_si->si_trans_id = CUR_STATE(
1938 current_state.ga_len - 2).si_trans_id;
1941 else
1942 cur_si->si_attr = syn_id2attr(syn_id);
1943 cur_si->si_cont_list = NULL;
1944 cur_si->si_next_list = next_list;
1945 check_keepend();
1947 else
1948 vim_free(next_list);
1954 * 3. Check for patterns (only if no keyword found).
1956 if (syn_id == 0 && syn_buf->b_syn_patterns.ga_len)
1959 * If we didn't check for a match yet, or we are past it, check
1960 * for any match with a pattern.
1962 if (next_match_idx < 0 || next_match_col < (int)current_col)
1965 * Check all relevant patterns for a match at this
1966 * position. This is complicated, because matching with a
1967 * pattern takes quite a bit of time, thus we want to
1968 * avoid doing it when it's not needed.
1970 next_match_idx = 0; /* no match in this line yet */
1971 next_match_col = MAXCOL;
1972 for (idx = syn_buf->b_syn_patterns.ga_len; --idx >= 0; )
1974 spp = &(SYN_ITEMS(syn_buf)[idx]);
1975 if ( spp->sp_syncing == syncing
1976 && (displaying || !(spp->sp_flags & HL_DISPLAY))
1977 && (spp->sp_type == SPTYPE_MATCH
1978 || spp->sp_type == SPTYPE_START)
1979 && (current_next_list != NULL
1980 ? in_id_list(NULL, current_next_list,
1981 &spp->sp_syn, 0)
1982 : (cur_si == NULL
1983 ? !(spp->sp_flags & HL_CONTAINED)
1984 : in_id_list(cur_si,
1985 cur_si->si_cont_list, &spp->sp_syn,
1986 spp->sp_flags & HL_CONTAINED))))
1988 /* If we already tried matching in this line, and
1989 * there isn't a match before next_match_col, skip
1990 * this item. */
1991 if (spp->sp_line_id == current_line_id
1992 && spp->sp_startcol >= next_match_col)
1993 continue;
1994 spp->sp_line_id = current_line_id;
1996 lc_col = current_col - spp->sp_offsets[SPO_LC_OFF];
1997 if (lc_col < 0)
1998 lc_col = 0;
2000 regmatch.rmm_ic = spp->sp_ic;
2001 regmatch.regprog = spp->sp_prog;
2002 if (!syn_regexec(&regmatch, current_lnum,
2003 (colnr_T)lc_col))
2005 /* no match in this line, try another one */
2006 spp->sp_startcol = MAXCOL;
2007 continue;
2011 * Compute the first column of the match.
2013 syn_add_start_off(&pos, &regmatch,
2014 spp, SPO_MS_OFF, -1);
2015 if (pos.lnum > current_lnum)
2017 /* must have used end of match in a next line,
2018 * we can't handle that */
2019 spp->sp_startcol = MAXCOL;
2020 continue;
2022 startcol = pos.col;
2024 /* remember the next column where this pattern
2025 * matches in the current line */
2026 spp->sp_startcol = startcol;
2029 * If a previously found match starts at a lower
2030 * column number, don't use this one.
2032 if (startcol >= next_match_col)
2033 continue;
2036 * If we matched this pattern at this position
2037 * before, skip it. Must retry in the next
2038 * column, because it may match from there.
2040 if (did_match_already(idx, &zero_width_next_ga))
2042 try_next_column = TRUE;
2043 continue;
2046 endpos.lnum = regmatch.endpos[0].lnum;
2047 endpos.col = regmatch.endpos[0].col;
2049 /* Compute the highlight start. */
2050 syn_add_start_off(&hl_startpos, &regmatch,
2051 spp, SPO_HS_OFF, -1);
2053 /* Compute the region start. */
2054 /* Default is to use the end of the match. */
2055 syn_add_end_off(&eos_pos, &regmatch,
2056 spp, SPO_RS_OFF, 0);
2059 * Grab the external submatches before they get
2060 * overwritten. Reference count doesn't change.
2062 unref_extmatch(cur_extmatch);
2063 cur_extmatch = re_extmatch_out;
2064 re_extmatch_out = NULL;
2066 flags = 0;
2067 eoe_pos.lnum = 0; /* avoid warning */
2068 eoe_pos.col = 0;
2069 end_idx = 0;
2070 hl_endpos.lnum = 0;
2073 * For a "oneline" the end must be found in the
2074 * same line too. Search for it after the end of
2075 * the match with the start pattern. Set the
2076 * resulting end positions at the same time.
2078 if (spp->sp_type == SPTYPE_START
2079 && (spp->sp_flags & HL_ONELINE))
2081 lpos_T startpos;
2083 startpos = endpos;
2084 find_endpos(idx, &startpos, &endpos, &hl_endpos,
2085 &flags, &eoe_pos, &end_idx, cur_extmatch);
2086 if (endpos.lnum == 0)
2087 continue; /* not found */
2091 * For a "match" the size must be > 0 after the
2092 * end offset needs has been added. Except when
2093 * syncing.
2095 else if (spp->sp_type == SPTYPE_MATCH)
2097 syn_add_end_off(&hl_endpos, &regmatch, spp,
2098 SPO_HE_OFF, 0);
2099 syn_add_end_off(&endpos, &regmatch, spp,
2100 SPO_ME_OFF, 0);
2101 if (endpos.lnum == current_lnum
2102 && (int)endpos.col + syncing < startcol)
2105 * If an empty string is matched, may need
2106 * to try matching again at next column.
2108 if (regmatch.startpos[0].col
2109 == regmatch.endpos[0].col)
2110 try_next_column = TRUE;
2111 continue;
2116 * keep the best match so far in next_match_*
2118 /* Highlighting must start after startpos and end
2119 * before endpos. */
2120 if (hl_startpos.lnum == current_lnum
2121 && (int)hl_startpos.col < startcol)
2122 hl_startpos.col = startcol;
2123 limit_pos_zero(&hl_endpos, &endpos);
2125 next_match_idx = idx;
2126 next_match_col = startcol;
2127 next_match_m_endpos = endpos;
2128 next_match_h_endpos = hl_endpos;
2129 next_match_h_startpos = hl_startpos;
2130 next_match_flags = flags;
2131 next_match_eos_pos = eos_pos;
2132 next_match_eoe_pos = eoe_pos;
2133 next_match_end_idx = end_idx;
2134 unref_extmatch(next_match_extmatch);
2135 next_match_extmatch = cur_extmatch;
2136 cur_extmatch = NULL;
2142 * If we found a match at the current column, use it.
2144 if (next_match_idx >= 0 && next_match_col == (int)current_col)
2146 synpat_T *lspp;
2148 /* When a zero-width item matched which has a nextgroup,
2149 * don't push the item but set nextgroup. */
2150 lspp = &(SYN_ITEMS(syn_buf)[next_match_idx]);
2151 if (next_match_m_endpos.lnum == current_lnum
2152 && next_match_m_endpos.col == current_col
2153 && lspp->sp_next_list != NULL)
2155 current_next_list = lspp->sp_next_list;
2156 current_next_flags = lspp->sp_flags;
2157 keep_next_list = TRUE;
2158 zero_width_next_list = TRUE;
2160 /* Add the index to a list, so that we can check
2161 * later that we don't match it again (and cause an
2162 * endless loop). */
2163 if (ga_grow(&zero_width_next_ga, 1) == OK)
2165 ((int *)(zero_width_next_ga.ga_data))
2166 [zero_width_next_ga.ga_len++] = next_match_idx;
2168 next_match_idx = -1;
2170 else
2171 cur_si = push_next_match(cur_si);
2172 found_match = TRUE;
2178 * Handle searching for nextgroup match.
2180 if (current_next_list != NULL && !keep_next_list)
2183 * If a nextgroup was not found, continue looking for one if:
2184 * - this is an empty line and the "skipempty" option was given
2185 * - we are on white space and the "skipwhite" option was given
2187 if (!found_match)
2189 line = syn_getcurline();
2190 if (((current_next_flags & HL_SKIPWHITE)
2191 && vim_iswhite(line[current_col]))
2192 || ((current_next_flags & HL_SKIPEMPTY)
2193 && *line == NUL))
2194 break;
2198 * If a nextgroup was found: Use it, and continue looking for
2199 * contained matches.
2200 * If a nextgroup was not found: Continue looking for a normal
2201 * match.
2202 * When did set current_next_list for a zero-width item and no
2203 * match was found don't loop (would get stuck).
2205 current_next_list = NULL;
2206 next_match_idx = -1;
2207 if (!zero_width_next_list)
2208 found_match = TRUE;
2211 } while (found_match);
2214 * Use attributes from the current state, if within its highlighting.
2215 * If not, use attributes from the current-but-one state, etc.
2217 current_attr = 0;
2218 #ifdef FEAT_EVAL
2219 current_id = 0;
2220 current_trans_id = 0;
2221 #endif
2222 if (cur_si != NULL)
2224 #ifndef FEAT_EVAL
2225 int current_trans_id = 0;
2226 #endif
2227 for (idx = current_state.ga_len - 1; idx >= 0; --idx)
2229 sip = &CUR_STATE(idx);
2230 if ((current_lnum > sip->si_h_startpos.lnum
2231 || (current_lnum == sip->si_h_startpos.lnum
2232 && current_col >= sip->si_h_startpos.col))
2233 && (sip->si_h_endpos.lnum == 0
2234 || current_lnum < sip->si_h_endpos.lnum
2235 || (current_lnum == sip->si_h_endpos.lnum
2236 && current_col < sip->si_h_endpos.col)))
2238 current_attr = sip->si_attr;
2239 #ifdef FEAT_EVAL
2240 current_id = sip->si_id;
2241 #endif
2242 current_trans_id = sip->si_trans_id;
2243 break;
2247 if (can_spell != NULL)
2249 struct sp_syn sps;
2252 * set "can_spell" to TRUE if spell checking is supposed to be
2253 * done in the current item.
2255 if (syn_buf->b_spell_cluster_id == 0)
2257 /* There is no @Spell cluster: Do spelling for items without
2258 * @NoSpell cluster. */
2259 if (syn_buf->b_nospell_cluster_id == 0 || current_trans_id == 0)
2260 *can_spell = (syn_buf->b_syn_spell != SYNSPL_NOTOP);
2261 else
2263 sps.inc_tag = 0;
2264 sps.id = syn_buf->b_nospell_cluster_id;
2265 sps.cont_in_list = NULL;
2266 *can_spell = !in_id_list(sip, sip->si_cont_list, &sps, 0);
2269 else
2271 /* The @Spell cluster is defined: Do spelling in items with
2272 * the @Spell cluster. But not when @NoSpell is also there.
2273 * At the toplevel only spell check when ":syn spell toplevel"
2274 * was used. */
2275 if (current_trans_id == 0)
2276 *can_spell = (syn_buf->b_syn_spell == SYNSPL_TOP);
2277 else
2279 sps.inc_tag = 0;
2280 sps.id = syn_buf->b_spell_cluster_id;
2281 sps.cont_in_list = NULL;
2282 *can_spell = in_id_list(sip, sip->si_cont_list, &sps, 0);
2284 if (syn_buf->b_nospell_cluster_id != 0)
2286 sps.id = syn_buf->b_nospell_cluster_id;
2287 if (in_id_list(sip, sip->si_cont_list, &sps, 0))
2288 *can_spell = FALSE;
2296 * Check for end of current state (and the states before it) at the
2297 * next column. Don't do this for syncing, because we would miss a
2298 * single character match.
2299 * First check if the current state ends at the current column. It
2300 * may be for an empty match and a containing item might end in the
2301 * current column.
2303 if (!syncing && !keep_state)
2305 check_state_ends();
2306 if (current_state.ga_len > 0
2307 && syn_getcurline()[current_col] != NUL)
2309 ++current_col;
2310 check_state_ends();
2311 --current_col;
2315 else if (can_spell != NULL)
2316 /* Default: Only do spelling when there is no @Spell cluster or when
2317 * ":syn spell toplevel" was used. */
2318 *can_spell = syn_buf->b_syn_spell == SYNSPL_DEFAULT
2319 ? (syn_buf->b_spell_cluster_id == 0)
2320 : (syn_buf->b_syn_spell == SYNSPL_TOP);
2322 /* nextgroup ends at end of line, unless "skipnl" or "skipemtpy" present */
2323 if (current_next_list != NULL
2324 && syn_getcurline()[current_col + 1] == NUL
2325 && !(current_next_flags & (HL_SKIPNL | HL_SKIPEMPTY)))
2326 current_next_list = NULL;
2328 if (zero_width_next_ga.ga_len > 0)
2329 ga_clear(&zero_width_next_ga);
2331 /* No longer need external matches. But keep next_match_extmatch. */
2332 unref_extmatch(re_extmatch_out);
2333 re_extmatch_out = NULL;
2334 unref_extmatch(cur_extmatch);
2336 return current_attr;
2341 * Check if we already matched pattern "idx" at the current column.
2343 static int
2344 did_match_already(idx, gap)
2345 int idx;
2346 garray_T *gap;
2348 int i;
2350 for (i = current_state.ga_len; --i >= 0; )
2351 if (CUR_STATE(i).si_m_startcol == (int)current_col
2352 && CUR_STATE(i).si_m_lnum == (int)current_lnum
2353 && CUR_STATE(i).si_idx == idx)
2354 return TRUE;
2356 /* Zero-width matches with a nextgroup argument are not put on the syntax
2357 * stack, and can only be matched once anyway. */
2358 for (i = gap->ga_len; --i >= 0; )
2359 if (((int *)(gap->ga_data))[i] == idx)
2360 return TRUE;
2362 return FALSE;
2366 * Push the next match onto the stack.
2368 static stateitem_T *
2369 push_next_match(cur_si)
2370 stateitem_T *cur_si;
2372 synpat_T *spp;
2374 spp = &(SYN_ITEMS(syn_buf)[next_match_idx]);
2377 * Push the item in current_state stack;
2379 if (push_current_state(next_match_idx) == OK)
2382 * If it's a start-skip-end type that crosses lines, figure out how
2383 * much it continues in this line. Otherwise just fill in the length.
2385 cur_si = &CUR_STATE(current_state.ga_len - 1);
2386 cur_si->si_h_startpos = next_match_h_startpos;
2387 cur_si->si_m_startcol = current_col;
2388 cur_si->si_m_lnum = current_lnum;
2389 cur_si->si_flags = spp->sp_flags;
2390 cur_si->si_next_list = spp->sp_next_list;
2391 cur_si->si_extmatch = ref_extmatch(next_match_extmatch);
2392 if (spp->sp_type == SPTYPE_START && !(spp->sp_flags & HL_ONELINE))
2394 /* Try to find the end pattern in the current line */
2395 update_si_end(cur_si, (int)(next_match_m_endpos.col), TRUE);
2396 check_keepend();
2398 else
2400 cur_si->si_m_endpos = next_match_m_endpos;
2401 cur_si->si_h_endpos = next_match_h_endpos;
2402 cur_si->si_ends = TRUE;
2403 cur_si->si_flags |= next_match_flags;
2404 cur_si->si_eoe_pos = next_match_eoe_pos;
2405 cur_si->si_end_idx = next_match_end_idx;
2407 if (keepend_level < 0 && (cur_si->si_flags & HL_KEEPEND))
2408 keepend_level = current_state.ga_len - 1;
2409 check_keepend();
2410 update_si_attr(current_state.ga_len - 1);
2413 * If the start pattern has another highlight group, push another item
2414 * on the stack for the start pattern.
2416 if ( spp->sp_type == SPTYPE_START
2417 && spp->sp_syn_match_id != 0
2418 && push_current_state(next_match_idx) == OK)
2420 cur_si = &CUR_STATE(current_state.ga_len - 1);
2421 cur_si->si_h_startpos = next_match_h_startpos;
2422 cur_si->si_m_startcol = current_col;
2423 cur_si->si_m_lnum = current_lnum;
2424 cur_si->si_m_endpos = next_match_eos_pos;
2425 cur_si->si_h_endpos = next_match_eos_pos;
2426 cur_si->si_ends = TRUE;
2427 cur_si->si_end_idx = 0;
2428 cur_si->si_flags = HL_MATCH;
2429 cur_si->si_next_list = NULL;
2430 check_keepend();
2431 update_si_attr(current_state.ga_len - 1);
2435 next_match_idx = -1; /* try other match next time */
2437 return cur_si;
2441 * Check for end of current state (and the states before it).
2443 static void
2444 check_state_ends()
2446 stateitem_T *cur_si;
2447 int had_extend = FALSE;
2449 cur_si = &CUR_STATE(current_state.ga_len - 1);
2450 for (;;)
2452 if (cur_si->si_ends
2453 && (cur_si->si_m_endpos.lnum < current_lnum
2454 || (cur_si->si_m_endpos.lnum == current_lnum
2455 && cur_si->si_m_endpos.col <= current_col)))
2458 * If there is an end pattern group ID, highlight the end pattern
2459 * now. No need to pop the current item from the stack.
2460 * Only do this if the end pattern continues beyond the current
2461 * position.
2463 if (cur_si->si_end_idx
2464 && (cur_si->si_eoe_pos.lnum > current_lnum
2465 || (cur_si->si_eoe_pos.lnum == current_lnum
2466 && cur_si->si_eoe_pos.col > current_col)))
2468 cur_si->si_idx = cur_si->si_end_idx;
2469 cur_si->si_end_idx = 0;
2470 cur_si->si_m_endpos = cur_si->si_eoe_pos;
2471 cur_si->si_h_endpos = cur_si->si_eoe_pos;
2472 cur_si->si_flags |= HL_MATCH;
2473 update_si_attr(current_state.ga_len - 1);
2475 /* what matches next may be different now, clear it */
2476 next_match_idx = 0;
2477 next_match_col = MAXCOL;
2478 break;
2480 else
2482 /* handle next_list, unless at end of line and no "skipnl" or
2483 * "skipempty" */
2484 current_next_list = cur_si->si_next_list;
2485 current_next_flags = cur_si->si_flags;
2486 if (!(current_next_flags & (HL_SKIPNL | HL_SKIPEMPTY))
2487 && syn_getcurline()[current_col] == NUL)
2488 current_next_list = NULL;
2490 /* When the ended item has "extend", another item with
2491 * "keepend" now needs to check for its end. */
2492 if (cur_si->si_flags & HL_EXTEND)
2493 had_extend = TRUE;
2495 pop_current_state();
2497 if (current_state.ga_len == 0)
2498 break;
2500 if (had_extend && keepend_level >= 0)
2502 syn_update_ends(FALSE);
2503 if (current_state.ga_len == 0)
2504 break;
2507 cur_si = &CUR_STATE(current_state.ga_len - 1);
2510 * Only for a region the search for the end continues after
2511 * the end of the contained item. If the contained match
2512 * included the end-of-line, break here, the region continues.
2513 * Don't do this when:
2514 * - "keepend" is used for the contained item
2515 * - not at the end of the line (could be end="x$"me=e-1).
2516 * - "excludenl" is used (HL_HAS_EOL won't be set)
2518 if (cur_si->si_idx >= 0
2519 && SYN_ITEMS(syn_buf)[cur_si->si_idx].sp_type
2520 == SPTYPE_START
2521 && !(cur_si->si_flags & (HL_MATCH | HL_KEEPEND)))
2523 update_si_end(cur_si, (int)current_col, TRUE);
2524 check_keepend();
2525 if ((current_next_flags & HL_HAS_EOL)
2526 && keepend_level < 0
2527 && syn_getcurline()[current_col] == NUL)
2528 break;
2532 else
2533 break;
2538 * Update an entry in the current_state stack for a match or region. This
2539 * fills in si_attr, si_next_list and si_cont_list.
2541 static void
2542 update_si_attr(idx)
2543 int idx;
2545 stateitem_T *sip = &CUR_STATE(idx);
2546 synpat_T *spp;
2548 /* This should not happen... */
2549 if (sip->si_idx < 0)
2550 return;
2552 spp = &(SYN_ITEMS(syn_buf)[sip->si_idx]);
2553 if (sip->si_flags & HL_MATCH)
2554 sip->si_id = spp->sp_syn_match_id;
2555 else
2556 sip->si_id = spp->sp_syn.id;
2557 sip->si_attr = syn_id2attr(sip->si_id);
2558 sip->si_trans_id = sip->si_id;
2559 if (sip->si_flags & HL_MATCH)
2560 sip->si_cont_list = NULL;
2561 else
2562 sip->si_cont_list = spp->sp_cont_list;
2565 * For transparent items, take attr from outer item.
2566 * Also take cont_list, if there is none.
2567 * Don't do this for the matchgroup of a start or end pattern.
2569 if ((spp->sp_flags & HL_TRANSP) && !(sip->si_flags & HL_MATCH))
2571 if (idx == 0)
2573 sip->si_attr = 0;
2574 sip->si_trans_id = 0;
2575 if (sip->si_cont_list == NULL)
2576 sip->si_cont_list = ID_LIST_ALL;
2578 else
2580 sip->si_attr = CUR_STATE(idx - 1).si_attr;
2581 sip->si_trans_id = CUR_STATE(idx - 1).si_trans_id;
2582 sip->si_h_startpos = CUR_STATE(idx - 1).si_h_startpos;
2583 sip->si_h_endpos = CUR_STATE(idx - 1).si_h_endpos;
2584 if (sip->si_cont_list == NULL)
2586 sip->si_flags |= HL_TRANS_CONT;
2587 sip->si_cont_list = CUR_STATE(idx - 1).si_cont_list;
2594 * Check the current stack for patterns with "keepend" flag.
2595 * Propagate the match-end to contained items, until a "skipend" item is found.
2597 static void
2598 check_keepend()
2600 int i;
2601 lpos_T maxpos;
2602 lpos_T maxpos_h;
2603 stateitem_T *sip;
2606 * This check can consume a lot of time; only do it from the level where
2607 * there really is a keepend.
2609 if (keepend_level < 0)
2610 return;
2613 * Find the last index of an "extend" item. "keepend" items before that
2614 * won't do anything. If there is no "extend" item "i" will be
2615 * "keepend_level" and all "keepend" items will work normally.
2617 for (i = current_state.ga_len - 1; i > keepend_level; --i)
2618 if (CUR_STATE(i).si_flags & HL_EXTEND)
2619 break;
2621 maxpos.lnum = 0;
2622 maxpos.col = 0;
2623 maxpos_h.lnum = 0;
2624 maxpos_h.col = 0;
2625 for ( ; i < current_state.ga_len; ++i)
2627 sip = &CUR_STATE(i);
2628 if (maxpos.lnum != 0)
2630 limit_pos_zero(&sip->si_m_endpos, &maxpos);
2631 limit_pos_zero(&sip->si_h_endpos, &maxpos_h);
2632 limit_pos_zero(&sip->si_eoe_pos, &maxpos);
2633 sip->si_ends = TRUE;
2635 if (sip->si_ends && (sip->si_flags & HL_KEEPEND))
2637 if (maxpos.lnum == 0
2638 || maxpos.lnum > sip->si_m_endpos.lnum
2639 || (maxpos.lnum == sip->si_m_endpos.lnum
2640 && maxpos.col > sip->si_m_endpos.col))
2641 maxpos = sip->si_m_endpos;
2642 if (maxpos_h.lnum == 0
2643 || maxpos_h.lnum > sip->si_h_endpos.lnum
2644 || (maxpos_h.lnum == sip->si_h_endpos.lnum
2645 && maxpos_h.col > sip->si_h_endpos.col))
2646 maxpos_h = sip->si_h_endpos;
2652 * Update an entry in the current_state stack for a start-skip-end pattern.
2653 * This finds the end of the current item, if it's in the current line.
2655 * Return the flags for the matched END.
2657 static void
2658 update_si_end(sip, startcol, force)
2659 stateitem_T *sip;
2660 int startcol; /* where to start searching for the end */
2661 int force; /* when TRUE overrule a previous end */
2663 lpos_T startpos;
2664 lpos_T endpos;
2665 lpos_T hl_endpos;
2666 lpos_T end_endpos;
2667 int end_idx;
2669 /* return quickly for a keyword */
2670 if (sip->si_idx < 0)
2671 return;
2673 /* Don't update when it's already done. Can be a match of an end pattern
2674 * that started in a previous line. Watch out: can also be a "keepend"
2675 * from a containing item. */
2676 if (!force && sip->si_m_endpos.lnum >= current_lnum)
2677 return;
2680 * We need to find the end of the region. It may continue in the next
2681 * line.
2683 end_idx = 0;
2684 startpos.lnum = current_lnum;
2685 startpos.col = startcol;
2686 find_endpos(sip->si_idx, &startpos, &endpos, &hl_endpos,
2687 &(sip->si_flags), &end_endpos, &end_idx, sip->si_extmatch);
2689 if (endpos.lnum == 0)
2691 /* No end pattern matched. */
2692 if (SYN_ITEMS(syn_buf)[sip->si_idx].sp_flags & HL_ONELINE)
2694 /* a "oneline" never continues in the next line */
2695 sip->si_ends = TRUE;
2696 sip->si_m_endpos.lnum = current_lnum;
2697 sip->si_m_endpos.col = (colnr_T)STRLEN(syn_getcurline());
2699 else
2701 /* continues in the next line */
2702 sip->si_ends = FALSE;
2703 sip->si_m_endpos.lnum = 0;
2705 sip->si_h_endpos = sip->si_m_endpos;
2707 else
2709 /* match within this line */
2710 sip->si_m_endpos = endpos;
2711 sip->si_h_endpos = hl_endpos;
2712 sip->si_eoe_pos = end_endpos;
2713 sip->si_ends = TRUE;
2714 sip->si_end_idx = end_idx;
2719 * Add a new state to the current state stack.
2720 * It is cleared and the index set to "idx".
2721 * Return FAIL if it's not possible (out of memory).
2723 static int
2724 push_current_state(idx)
2725 int idx;
2727 if (ga_grow(&current_state, 1) == FAIL)
2728 return FAIL;
2729 vim_memset(&CUR_STATE(current_state.ga_len), 0, sizeof(stateitem_T));
2730 CUR_STATE(current_state.ga_len).si_idx = idx;
2731 ++current_state.ga_len;
2732 return OK;
2736 * Remove a state from the current_state stack.
2738 static void
2739 pop_current_state()
2741 if (current_state.ga_len)
2743 unref_extmatch(CUR_STATE(current_state.ga_len - 1).si_extmatch);
2744 --current_state.ga_len;
2746 /* after the end of a pattern, try matching a keyword or pattern */
2747 next_match_idx = -1;
2749 /* if first state with "keepend" is popped, reset keepend_level */
2750 if (keepend_level >= current_state.ga_len)
2751 keepend_level = -1;
2755 * Find the end of a start/skip/end syntax region after "startpos".
2756 * Only checks one line.
2757 * Also handles a match item that continued from a previous line.
2758 * If not found, the syntax item continues in the next line. m_endpos->lnum
2759 * will be 0.
2760 * If found, the end of the region and the end of the highlighting is
2761 * computed.
2763 static void
2764 find_endpos(idx, startpos, m_endpos, hl_endpos, flagsp, end_endpos,
2765 end_idx, start_ext)
2766 int idx; /* index of the pattern */
2767 lpos_T *startpos; /* where to start looking for an END match */
2768 lpos_T *m_endpos; /* return: end of match */
2769 lpos_T *hl_endpos; /* return: end of highlighting */
2770 long *flagsp; /* return: flags of matching END */
2771 lpos_T *end_endpos; /* return: end of end pattern match */
2772 int *end_idx; /* return: group ID for end pat. match, or 0 */
2773 reg_extmatch_T *start_ext; /* submatches from the start pattern */
2775 colnr_T matchcol;
2776 synpat_T *spp, *spp_skip;
2777 int start_idx;
2778 int best_idx;
2779 regmmatch_T regmatch;
2780 regmmatch_T best_regmatch; /* startpos/endpos of best match */
2781 lpos_T pos;
2782 char_u *line;
2783 int had_match = FALSE;
2785 /* just in case we are invoked for a keyword */
2786 if (idx < 0)
2787 return;
2790 * Check for being called with a START pattern.
2791 * Can happen with a match that continues to the next line, because it
2792 * contained a region.
2794 spp = &(SYN_ITEMS(syn_buf)[idx]);
2795 if (spp->sp_type != SPTYPE_START)
2797 *hl_endpos = *startpos;
2798 return;
2802 * Find the SKIP or first END pattern after the last START pattern.
2804 for (;;)
2806 spp = &(SYN_ITEMS(syn_buf)[idx]);
2807 if (spp->sp_type != SPTYPE_START)
2808 break;
2809 ++idx;
2813 * Lookup the SKIP pattern (if present)
2815 if (spp->sp_type == SPTYPE_SKIP)
2817 spp_skip = spp;
2818 ++idx;
2820 else
2821 spp_skip = NULL;
2823 /* Setup external matches for syn_regexec(). */
2824 unref_extmatch(re_extmatch_in);
2825 re_extmatch_in = ref_extmatch(start_ext);
2827 matchcol = startpos->col; /* start looking for a match at sstart */
2828 start_idx = idx; /* remember the first END pattern. */
2829 best_regmatch.startpos[0].col = 0; /* avoid compiler warning */
2830 for (;;)
2833 * Find end pattern that matches first after "matchcol".
2835 best_idx = -1;
2836 for (idx = start_idx; idx < syn_buf->b_syn_patterns.ga_len; ++idx)
2838 int lc_col = matchcol;
2840 spp = &(SYN_ITEMS(syn_buf)[idx]);
2841 if (spp->sp_type != SPTYPE_END) /* past last END pattern */
2842 break;
2843 lc_col -= spp->sp_offsets[SPO_LC_OFF];
2844 if (lc_col < 0)
2845 lc_col = 0;
2847 regmatch.rmm_ic = spp->sp_ic;
2848 regmatch.regprog = spp->sp_prog;
2849 if (syn_regexec(&regmatch, startpos->lnum, lc_col))
2851 if (best_idx == -1 || regmatch.startpos[0].col
2852 < best_regmatch.startpos[0].col)
2854 best_idx = idx;
2855 best_regmatch.startpos[0] = regmatch.startpos[0];
2856 best_regmatch.endpos[0] = regmatch.endpos[0];
2862 * If all end patterns have been tried, and there is no match, the
2863 * item continues until end-of-line.
2865 if (best_idx == -1)
2866 break;
2869 * If the skip pattern matches before the end pattern,
2870 * continue searching after the skip pattern.
2872 if (spp_skip != NULL)
2874 int lc_col = matchcol - spp_skip->sp_offsets[SPO_LC_OFF];
2876 if (lc_col < 0)
2877 lc_col = 0;
2878 regmatch.rmm_ic = spp_skip->sp_ic;
2879 regmatch.regprog = spp_skip->sp_prog;
2880 if (syn_regexec(&regmatch, startpos->lnum, lc_col)
2881 && regmatch.startpos[0].col
2882 <= best_regmatch.startpos[0].col)
2884 /* Add offset to skip pattern match */
2885 syn_add_end_off(&pos, &regmatch, spp_skip, SPO_ME_OFF, 1);
2887 /* If the skip pattern goes on to the next line, there is no
2888 * match with an end pattern in this line. */
2889 if (pos.lnum > startpos->lnum)
2890 break;
2892 line = ml_get_buf(syn_buf, startpos->lnum, FALSE);
2894 /* take care of an empty match or negative offset */
2895 if (pos.col <= matchcol)
2896 ++matchcol;
2897 else if (pos.col <= regmatch.endpos[0].col)
2898 matchcol = pos.col;
2899 else
2900 /* Be careful not to jump over the NUL at the end-of-line */
2901 for (matchcol = regmatch.endpos[0].col;
2902 line[matchcol] != NUL && matchcol < pos.col;
2903 ++matchcol)
2906 /* if the skip pattern includes end-of-line, break here */
2907 if (line[matchcol] == NUL)
2908 break;
2910 continue; /* start with first end pattern again */
2915 * Match from start pattern to end pattern.
2916 * Correct for match and highlight offset of end pattern.
2918 spp = &(SYN_ITEMS(syn_buf)[best_idx]);
2919 syn_add_end_off(m_endpos, &best_regmatch, spp, SPO_ME_OFF, 1);
2920 /* can't end before the start */
2921 if (m_endpos->lnum == startpos->lnum && m_endpos->col < startpos->col)
2922 m_endpos->col = startpos->col;
2924 syn_add_end_off(end_endpos, &best_regmatch, spp, SPO_HE_OFF, 1);
2925 /* can't end before the start */
2926 if (end_endpos->lnum == startpos->lnum
2927 && end_endpos->col < startpos->col)
2928 end_endpos->col = startpos->col;
2929 /* can't end after the match */
2930 limit_pos(end_endpos, m_endpos);
2933 * If the end group is highlighted differently, adjust the pointers.
2935 if (spp->sp_syn_match_id != spp->sp_syn.id && spp->sp_syn_match_id != 0)
2937 *end_idx = best_idx;
2938 if (spp->sp_off_flags & (1 << (SPO_RE_OFF + SPO_COUNT)))
2940 hl_endpos->lnum = best_regmatch.endpos[0].lnum;
2941 hl_endpos->col = best_regmatch.endpos[0].col;
2943 else
2945 hl_endpos->lnum = best_regmatch.startpos[0].lnum;
2946 hl_endpos->col = best_regmatch.startpos[0].col;
2948 hl_endpos->col += spp->sp_offsets[SPO_RE_OFF];
2950 /* can't end before the start */
2951 if (hl_endpos->lnum == startpos->lnum
2952 && hl_endpos->col < startpos->col)
2953 hl_endpos->col = startpos->col;
2954 limit_pos(hl_endpos, m_endpos);
2956 /* now the match ends where the highlighting ends, it is turned
2957 * into the matchgroup for the end */
2958 *m_endpos = *hl_endpos;
2960 else
2962 *end_idx = 0;
2963 *hl_endpos = *end_endpos;
2966 *flagsp = spp->sp_flags;
2968 had_match = TRUE;
2969 break;
2972 /* no match for an END pattern in this line */
2973 if (!had_match)
2974 m_endpos->lnum = 0;
2976 /* Remove external matches. */
2977 unref_extmatch(re_extmatch_in);
2978 re_extmatch_in = NULL;
2982 * Limit "pos" not to be after "limit".
2984 static void
2985 limit_pos(pos, limit)
2986 lpos_T *pos;
2987 lpos_T *limit;
2989 if (pos->lnum > limit->lnum)
2990 *pos = *limit;
2991 else if (pos->lnum == limit->lnum && pos->col > limit->col)
2992 pos->col = limit->col;
2996 * Limit "pos" not to be after "limit", unless pos->lnum is zero.
2998 static void
2999 limit_pos_zero(pos, limit)
3000 lpos_T *pos;
3001 lpos_T *limit;
3003 if (pos->lnum == 0)
3004 *pos = *limit;
3005 else
3006 limit_pos(pos, limit);
3010 * Add offset to matched text for end of match or highlight.
3012 static void
3013 syn_add_end_off(result, regmatch, spp, idx, extra)
3014 lpos_T *result; /* returned position */
3015 regmmatch_T *regmatch; /* start/end of match */
3016 synpat_T *spp; /* matched pattern */
3017 int idx; /* index of offset */
3018 int extra; /* extra chars for offset to start */
3020 int col;
3021 int off;
3022 char_u *base;
3023 char_u *p;
3025 if (spp->sp_off_flags & (1 << idx))
3027 result->lnum = regmatch->startpos[0].lnum;
3028 col = regmatch->startpos[0].col;
3029 off = spp->sp_offsets[idx] + extra;
3031 else
3033 result->lnum = regmatch->endpos[0].lnum;
3034 col = regmatch->endpos[0].col;
3035 off = spp->sp_offsets[idx];
3037 /* Don't go past the end of the line. Matters for "rs=e+2" when there
3038 * is a matchgroup. Watch out for match with last NL in the buffer. */
3039 if (result->lnum > syn_buf->b_ml.ml_line_count)
3040 col = 0;
3041 else if (off != 0)
3043 base = ml_get_buf(syn_buf, result->lnum, FALSE);
3044 p = base + col;
3045 if (off > 0)
3047 while (off-- > 0 && *p != NUL)
3048 mb_ptr_adv(p);
3050 else if (off < 0)
3052 while (off++ < 0 && base < p)
3053 mb_ptr_back(base, p);
3055 col = (int)(p - base);
3057 result->col = col;
3061 * Add offset to matched text for start of match or highlight.
3062 * Avoid resulting column to become negative.
3064 static void
3065 syn_add_start_off(result, regmatch, spp, idx, extra)
3066 lpos_T *result; /* returned position */
3067 regmmatch_T *regmatch; /* start/end of match */
3068 synpat_T *spp;
3069 int idx;
3070 int extra; /* extra chars for offset to end */
3072 int col;
3073 int off;
3074 char_u *base;
3075 char_u *p;
3077 if (spp->sp_off_flags & (1 << (idx + SPO_COUNT)))
3079 result->lnum = regmatch->endpos[0].lnum;
3080 col = regmatch->endpos[0].col;
3081 off = spp->sp_offsets[idx] + extra;
3083 else
3085 result->lnum = regmatch->startpos[0].lnum;
3086 col = regmatch->startpos[0].col;
3087 off = spp->sp_offsets[idx];
3089 if (off != 0)
3091 base = ml_get_buf(syn_buf, result->lnum, FALSE);
3092 p = base + col;
3093 if (off > 0)
3095 while (off-- && *p != NUL)
3096 mb_ptr_adv(p);
3098 else if (off < 0)
3100 while (off++ && base < p)
3101 mb_ptr_back(base, p);
3103 col = (int)(p - base);
3105 result->col = col;
3109 * Get current line in syntax buffer.
3111 static char_u *
3112 syn_getcurline()
3114 return ml_get_buf(syn_buf, current_lnum, FALSE);
3118 * Call vim_regexec() to find a match with "rmp" in "syn_buf".
3119 * Returns TRUE when there is a match.
3121 static int
3122 syn_regexec(rmp, lnum, col)
3123 regmmatch_T *rmp;
3124 linenr_T lnum;
3125 colnr_T col;
3127 rmp->rmm_maxcol = syn_buf->b_p_smc;
3128 if (vim_regexec_multi(rmp, syn_win, syn_buf, lnum, col, NULL) > 0)
3130 rmp->startpos[0].lnum += lnum;
3131 rmp->endpos[0].lnum += lnum;
3132 return TRUE;
3134 return FALSE;
3138 * Check one position in a line for a matching keyword.
3139 * The caller must check if a keyword can start at startcol.
3140 * Return it's ID if found, 0 otherwise.
3142 static int
3143 check_keyword_id(line, startcol, endcolp, flagsp, next_listp, cur_si)
3144 char_u *line;
3145 int startcol; /* position in line to check for keyword */
3146 int *endcolp; /* return: character after found keyword */
3147 long *flagsp; /* return: flags of matching keyword */
3148 short **next_listp; /* return: next_list of matching keyword */
3149 stateitem_T *cur_si; /* item at the top of the stack */
3151 keyentry_T *kp;
3152 char_u *kwp;
3153 int round;
3154 int kwlen;
3155 char_u keyword[MAXKEYWLEN + 1]; /* assume max. keyword len is 80 */
3156 hashtab_T *ht;
3157 hashitem_T *hi;
3159 /* Find first character after the keyword. First character was already
3160 * checked. */
3161 kwp = line + startcol;
3162 kwlen = 0;
3165 #ifdef FEAT_MBYTE
3166 if (has_mbyte)
3167 kwlen += (*mb_ptr2len)(kwp + kwlen);
3168 else
3169 #endif
3170 ++kwlen;
3172 while (vim_iswordc_buf(kwp + kwlen, syn_buf));
3174 if (kwlen > MAXKEYWLEN)
3175 return 0;
3178 * Must make a copy of the keyword, so we can add a NUL and make it
3179 * lowercase.
3181 vim_strncpy(keyword, kwp, kwlen);
3184 * Try twice:
3185 * 1. matching case
3186 * 2. ignoring case
3188 for (round = 1; round <= 2; ++round)
3190 ht = round == 1 ? &syn_buf->b_keywtab : &syn_buf->b_keywtab_ic;
3191 if (ht->ht_used == 0)
3192 continue;
3193 if (round == 2) /* ignore case */
3194 (void)str_foldcase(kwp, kwlen, keyword, MAXKEYWLEN + 1);
3197 * Find keywords that match. There can be several with different
3198 * attributes.
3199 * When current_next_list is non-zero accept only that group, otherwise:
3200 * Accept a not-contained keyword at toplevel.
3201 * Accept a keyword at other levels only if it is in the contains list.
3203 hi = hash_find(ht, keyword);
3204 if (!HASHITEM_EMPTY(hi))
3205 for (kp = HI2KE(hi); kp != NULL; kp = kp->ke_next)
3207 if (current_next_list != 0
3208 ? in_id_list(NULL, current_next_list, &kp->k_syn, 0)
3209 : (cur_si == NULL
3210 ? !(kp->flags & HL_CONTAINED)
3211 : in_id_list(cur_si, cur_si->si_cont_list,
3212 &kp->k_syn, kp->flags & HL_CONTAINED)))
3214 *endcolp = startcol + kwlen;
3215 *flagsp = kp->flags;
3216 *next_listp = kp->next_list;
3217 return kp->k_syn.id;
3221 return 0;
3225 * Handle ":syntax case" command.
3227 static void
3228 syn_cmd_case(eap, syncing)
3229 exarg_T *eap;
3230 int syncing UNUSED;
3232 char_u *arg = eap->arg;
3233 char_u *next;
3235 eap->nextcmd = find_nextcmd(arg);
3236 if (eap->skip)
3237 return;
3239 next = skiptowhite(arg);
3240 if (STRNICMP(arg, "match", 5) == 0 && next - arg == 5)
3241 curbuf->b_syn_ic = FALSE;
3242 else if (STRNICMP(arg, "ignore", 6) == 0 && next - arg == 6)
3243 curbuf->b_syn_ic = TRUE;
3244 else
3245 EMSG2(_("E390: Illegal argument: %s"), arg);
3249 * Handle ":syntax spell" command.
3251 static void
3252 syn_cmd_spell(eap, syncing)
3253 exarg_T *eap;
3254 int syncing UNUSED;
3256 char_u *arg = eap->arg;
3257 char_u *next;
3259 eap->nextcmd = find_nextcmd(arg);
3260 if (eap->skip)
3261 return;
3263 next = skiptowhite(arg);
3264 if (STRNICMP(arg, "toplevel", 8) == 0 && next - arg == 8)
3265 curbuf->b_syn_spell = SYNSPL_TOP;
3266 else if (STRNICMP(arg, "notoplevel", 10) == 0 && next - arg == 10)
3267 curbuf->b_syn_spell = SYNSPL_NOTOP;
3268 else if (STRNICMP(arg, "default", 7) == 0 && next - arg == 7)
3269 curbuf->b_syn_spell = SYNSPL_DEFAULT;
3270 else
3271 EMSG2(_("E390: Illegal argument: %s"), arg);
3275 * Clear all syntax info for one buffer.
3277 void
3278 syntax_clear(buf)
3279 buf_T *buf;
3281 int i;
3283 buf->b_syn_error = FALSE; /* clear previous error */
3284 buf->b_syn_ic = FALSE; /* Use case, by default */
3285 buf->b_syn_spell = SYNSPL_DEFAULT; /* default spell checking */
3286 buf->b_syn_containedin = FALSE;
3288 /* free the keywords */
3289 clear_keywtab(&buf->b_keywtab);
3290 clear_keywtab(&buf->b_keywtab_ic);
3292 /* free the syntax patterns */
3293 for (i = buf->b_syn_patterns.ga_len; --i >= 0; )
3294 syn_clear_pattern(buf, i);
3295 ga_clear(&buf->b_syn_patterns);
3297 /* free the syntax clusters */
3298 for (i = buf->b_syn_clusters.ga_len; --i >= 0; )
3299 syn_clear_cluster(buf, i);
3300 ga_clear(&buf->b_syn_clusters);
3301 buf->b_spell_cluster_id = 0;
3302 buf->b_nospell_cluster_id = 0;
3304 buf->b_syn_sync_flags = 0;
3305 buf->b_syn_sync_minlines = 0;
3306 buf->b_syn_sync_maxlines = 0;
3307 buf->b_syn_sync_linebreaks = 0;
3309 vim_free(buf->b_syn_linecont_prog);
3310 buf->b_syn_linecont_prog = NULL;
3311 vim_free(buf->b_syn_linecont_pat);
3312 buf->b_syn_linecont_pat = NULL;
3313 #ifdef FEAT_FOLDING
3314 buf->b_syn_folditems = 0;
3315 #endif
3317 /* free the stored states */
3318 syn_stack_free_all(buf);
3319 invalidate_current_state();
3323 * Clear syncing info for one buffer.
3325 static void
3326 syntax_sync_clear()
3328 int i;
3330 /* free the syntax patterns */
3331 for (i = curbuf->b_syn_patterns.ga_len; --i >= 0; )
3332 if (SYN_ITEMS(curbuf)[i].sp_syncing)
3333 syn_remove_pattern(curbuf, i);
3335 curbuf->b_syn_sync_flags = 0;
3336 curbuf->b_syn_sync_minlines = 0;
3337 curbuf->b_syn_sync_maxlines = 0;
3338 curbuf->b_syn_sync_linebreaks = 0;
3340 vim_free(curbuf->b_syn_linecont_prog);
3341 curbuf->b_syn_linecont_prog = NULL;
3342 vim_free(curbuf->b_syn_linecont_pat);
3343 curbuf->b_syn_linecont_pat = NULL;
3345 syn_stack_free_all(curbuf); /* Need to recompute all syntax. */
3349 * Remove one pattern from the buffer's pattern list.
3351 static void
3352 syn_remove_pattern(buf, idx)
3353 buf_T *buf;
3354 int idx;
3356 synpat_T *spp;
3358 spp = &(SYN_ITEMS(buf)[idx]);
3359 #ifdef FEAT_FOLDING
3360 if (spp->sp_flags & HL_FOLD)
3361 --buf->b_syn_folditems;
3362 #endif
3363 syn_clear_pattern(buf, idx);
3364 mch_memmove(spp, spp + 1,
3365 sizeof(synpat_T) * (buf->b_syn_patterns.ga_len - idx - 1));
3366 --buf->b_syn_patterns.ga_len;
3370 * Clear and free one syntax pattern. When clearing all, must be called from
3371 * last to first!
3373 static void
3374 syn_clear_pattern(buf, i)
3375 buf_T *buf;
3376 int i;
3378 vim_free(SYN_ITEMS(buf)[i].sp_pattern);
3379 vim_free(SYN_ITEMS(buf)[i].sp_prog);
3380 /* Only free sp_cont_list and sp_next_list of first start pattern */
3381 if (i == 0 || SYN_ITEMS(buf)[i - 1].sp_type != SPTYPE_START)
3383 vim_free(SYN_ITEMS(buf)[i].sp_cont_list);
3384 vim_free(SYN_ITEMS(buf)[i].sp_next_list);
3385 vim_free(SYN_ITEMS(buf)[i].sp_syn.cont_in_list);
3390 * Clear and free one syntax cluster.
3392 static void
3393 syn_clear_cluster(buf, i)
3394 buf_T *buf;
3395 int i;
3397 vim_free(SYN_CLSTR(buf)[i].scl_name);
3398 vim_free(SYN_CLSTR(buf)[i].scl_name_u);
3399 vim_free(SYN_CLSTR(buf)[i].scl_list);
3403 * Handle ":syntax clear" command.
3405 static void
3406 syn_cmd_clear(eap, syncing)
3407 exarg_T *eap;
3408 int syncing;
3410 char_u *arg = eap->arg;
3411 char_u *arg_end;
3412 int id;
3414 eap->nextcmd = find_nextcmd(arg);
3415 if (eap->skip)
3416 return;
3419 * We have to disable this within ":syn include @group filename",
3420 * because otherwise @group would get deleted.
3421 * Only required for Vim 5.x syntax files, 6.0 ones don't contain ":syn
3422 * clear".
3424 if (curbuf->b_syn_topgrp != 0)
3425 return;
3427 if (ends_excmd(*arg))
3430 * No argument: Clear all syntax items.
3432 if (syncing)
3433 syntax_sync_clear();
3434 else
3436 syntax_clear(curbuf);
3437 do_unlet((char_u *)"b:current_syntax", TRUE);
3440 else
3443 * Clear the group IDs that are in the argument.
3445 while (!ends_excmd(*arg))
3447 arg_end = skiptowhite(arg);
3448 if (*arg == '@')
3450 id = syn_scl_namen2id(arg + 1, (int)(arg_end - arg - 1));
3451 if (id == 0)
3453 EMSG2(_("E391: No such syntax cluster: %s"), arg);
3454 break;
3456 else
3459 * We can't physically delete a cluster without changing
3460 * the IDs of other clusters, so we do the next best thing
3461 * and make it empty.
3463 short scl_id = id - SYNID_CLUSTER;
3465 vim_free(SYN_CLSTR(curbuf)[scl_id].scl_list);
3466 SYN_CLSTR(curbuf)[scl_id].scl_list = NULL;
3469 else
3471 id = syn_namen2id(arg, (int)(arg_end - arg));
3472 if (id == 0)
3474 EMSG2(_(e_nogroup), arg);
3475 break;
3477 else
3478 syn_clear_one(id, syncing);
3480 arg = skipwhite(arg_end);
3483 redraw_curbuf_later(SOME_VALID);
3484 syn_stack_free_all(curbuf); /* Need to recompute all syntax. */
3488 * Clear one syntax group for the current buffer.
3490 static void
3491 syn_clear_one(id, syncing)
3492 int id;
3493 int syncing;
3495 synpat_T *spp;
3496 int idx;
3498 /* Clear keywords only when not ":syn sync clear group-name" */
3499 if (!syncing)
3501 (void)syn_clear_keyword(id, &curbuf->b_keywtab);
3502 (void)syn_clear_keyword(id, &curbuf->b_keywtab_ic);
3505 /* clear the patterns for "id" */
3506 for (idx = curbuf->b_syn_patterns.ga_len; --idx >= 0; )
3508 spp = &(SYN_ITEMS(curbuf)[idx]);
3509 if (spp->sp_syn.id != id || spp->sp_syncing != syncing)
3510 continue;
3511 syn_remove_pattern(curbuf, idx);
3516 * Handle ":syntax on" command.
3518 static void
3519 syn_cmd_on(eap, syncing)
3520 exarg_T *eap;
3521 int syncing UNUSED;
3523 syn_cmd_onoff(eap, "syntax");
3527 * Handle ":syntax enable" command.
3529 static void
3530 syn_cmd_enable(eap, syncing)
3531 exarg_T *eap;
3532 int syncing UNUSED;
3534 set_internal_string_var((char_u *)"syntax_cmd", (char_u *)"enable");
3535 syn_cmd_onoff(eap, "syntax");
3536 do_unlet((char_u *)"g:syntax_cmd", TRUE);
3540 * Handle ":syntax reset" command.
3542 static void
3543 syn_cmd_reset(eap, syncing)
3544 exarg_T *eap;
3545 int syncing UNUSED;
3547 eap->nextcmd = check_nextcmd(eap->arg);
3548 if (!eap->skip)
3550 set_internal_string_var((char_u *)"syntax_cmd", (char_u *)"reset");
3551 do_cmdline_cmd((char_u *)"runtime! syntax/syncolor.vim");
3552 do_unlet((char_u *)"g:syntax_cmd", TRUE);
3557 * Handle ":syntax manual" command.
3559 static void
3560 syn_cmd_manual(eap, syncing)
3561 exarg_T *eap;
3562 int syncing UNUSED;
3564 syn_cmd_onoff(eap, "manual");
3568 * Handle ":syntax off" command.
3570 static void
3571 syn_cmd_off(eap, syncing)
3572 exarg_T *eap;
3573 int syncing UNUSED;
3575 syn_cmd_onoff(eap, "nosyntax");
3578 static void
3579 syn_cmd_onoff(eap, name)
3580 exarg_T *eap;
3581 char *name;
3583 char_u buf[100];
3585 eap->nextcmd = check_nextcmd(eap->arg);
3586 if (!eap->skip)
3588 STRCPY(buf, "so ");
3589 vim_snprintf((char *)buf + 3, sizeof(buf) - 3, SYNTAX_FNAME, name);
3590 do_cmdline_cmd(buf);
3595 * Handle ":syntax [list]" command: list current syntax words.
3597 static void
3598 syn_cmd_list(eap, syncing)
3599 exarg_T *eap;
3600 int syncing; /* when TRUE: list syncing items */
3602 char_u *arg = eap->arg;
3603 int id;
3604 char_u *arg_end;
3606 eap->nextcmd = find_nextcmd(arg);
3607 if (eap->skip)
3608 return;
3610 if (!syntax_present(curbuf))
3612 MSG(_("No Syntax items defined for this buffer"));
3613 return;
3616 if (syncing)
3618 if (curbuf->b_syn_sync_flags & SF_CCOMMENT)
3620 MSG_PUTS(_("syncing on C-style comments"));
3621 syn_lines_msg();
3622 syn_match_msg();
3623 return;
3625 else if (!(curbuf->b_syn_sync_flags & SF_MATCH))
3627 if (curbuf->b_syn_sync_minlines == 0)
3628 MSG_PUTS(_("no syncing"));
3629 else
3631 MSG_PUTS(_("syncing starts "));
3632 msg_outnum(curbuf->b_syn_sync_minlines);
3633 MSG_PUTS(_(" lines before top line"));
3634 syn_match_msg();
3636 return;
3638 MSG_PUTS_TITLE(_("\n--- Syntax sync items ---"));
3639 if (curbuf->b_syn_sync_minlines > 0
3640 || curbuf->b_syn_sync_maxlines > 0
3641 || curbuf->b_syn_sync_linebreaks > 0)
3643 MSG_PUTS(_("\nsyncing on items"));
3644 syn_lines_msg();
3645 syn_match_msg();
3648 else
3649 MSG_PUTS_TITLE(_("\n--- Syntax items ---"));
3650 if (ends_excmd(*arg))
3653 * No argument: List all group IDs and all syntax clusters.
3655 for (id = 1; id <= highlight_ga.ga_len && !got_int; ++id)
3656 syn_list_one(id, syncing, FALSE);
3657 for (id = 0; id < curbuf->b_syn_clusters.ga_len && !got_int; ++id)
3658 syn_list_cluster(id);
3660 else
3663 * List the group IDs and syntax clusters that are in the argument.
3665 while (!ends_excmd(*arg) && !got_int)
3667 arg_end = skiptowhite(arg);
3668 if (*arg == '@')
3670 id = syn_scl_namen2id(arg + 1, (int)(arg_end - arg - 1));
3671 if (id == 0)
3672 EMSG2(_("E392: No such syntax cluster: %s"), arg);
3673 else
3674 syn_list_cluster(id - SYNID_CLUSTER);
3676 else
3678 id = syn_namen2id(arg, (int)(arg_end - arg));
3679 if (id == 0)
3680 EMSG2(_(e_nogroup), arg);
3681 else
3682 syn_list_one(id, syncing, TRUE);
3684 arg = skipwhite(arg_end);
3687 eap->nextcmd = check_nextcmd(arg);
3690 static void
3691 syn_lines_msg()
3693 if (curbuf->b_syn_sync_maxlines > 0 || curbuf->b_syn_sync_minlines > 0)
3695 MSG_PUTS("; ");
3696 if (curbuf->b_syn_sync_minlines > 0)
3698 MSG_PUTS(_("minimal "));
3699 msg_outnum(curbuf->b_syn_sync_minlines);
3700 if (curbuf->b_syn_sync_maxlines)
3701 MSG_PUTS(", ");
3703 if (curbuf->b_syn_sync_maxlines > 0)
3705 MSG_PUTS(_("maximal "));
3706 msg_outnum(curbuf->b_syn_sync_maxlines);
3708 MSG_PUTS(_(" lines before top line"));
3712 static void
3713 syn_match_msg()
3715 if (curbuf->b_syn_sync_linebreaks > 0)
3717 MSG_PUTS(_("; match "));
3718 msg_outnum(curbuf->b_syn_sync_linebreaks);
3719 MSG_PUTS(_(" line breaks"));
3723 static int last_matchgroup;
3725 struct name_list
3727 int flag;
3728 char *name;
3731 static void syn_list_flags __ARGS((struct name_list *nl, int flags, int attr));
3734 * List one syntax item, for ":syntax" or "syntax list syntax_name".
3736 static void
3737 syn_list_one(id, syncing, link_only)
3738 int id;
3739 int syncing; /* when TRUE: list syncing items */
3740 int link_only; /* when TRUE; list link-only too */
3742 int attr;
3743 int idx;
3744 int did_header = FALSE;
3745 synpat_T *spp;
3746 static struct name_list namelist1[] =
3748 {HL_DISPLAY, "display"},
3749 {HL_CONTAINED, "contained"},
3750 {HL_ONELINE, "oneline"},
3751 {HL_KEEPEND, "keepend"},
3752 {HL_EXTEND, "extend"},
3753 {HL_EXCLUDENL, "excludenl"},
3754 {HL_TRANSP, "transparent"},
3755 {HL_FOLD, "fold"},
3756 {0, NULL}
3758 static struct name_list namelist2[] =
3760 {HL_SKIPWHITE, "skipwhite"},
3761 {HL_SKIPNL, "skipnl"},
3762 {HL_SKIPEMPTY, "skipempty"},
3763 {0, NULL}
3766 attr = hl_attr(HLF_D); /* highlight like directories */
3768 /* list the keywords for "id" */
3769 if (!syncing)
3771 did_header = syn_list_keywords(id, &curbuf->b_keywtab, FALSE, attr);
3772 did_header = syn_list_keywords(id, &curbuf->b_keywtab_ic,
3773 did_header, attr);
3776 /* list the patterns for "id" */
3777 for (idx = 0; idx < curbuf->b_syn_patterns.ga_len && !got_int; ++idx)
3779 spp = &(SYN_ITEMS(curbuf)[idx]);
3780 if (spp->sp_syn.id != id || spp->sp_syncing != syncing)
3781 continue;
3783 (void)syn_list_header(did_header, 999, id);
3784 did_header = TRUE;
3785 last_matchgroup = 0;
3786 if (spp->sp_type == SPTYPE_MATCH)
3788 put_pattern("match", ' ', spp, attr);
3789 msg_putchar(' ');
3791 else if (spp->sp_type == SPTYPE_START)
3793 while (SYN_ITEMS(curbuf)[idx].sp_type == SPTYPE_START)
3794 put_pattern("start", '=', &SYN_ITEMS(curbuf)[idx++], attr);
3795 if (SYN_ITEMS(curbuf)[idx].sp_type == SPTYPE_SKIP)
3796 put_pattern("skip", '=', &SYN_ITEMS(curbuf)[idx++], attr);
3797 while (idx < curbuf->b_syn_patterns.ga_len
3798 && SYN_ITEMS(curbuf)[idx].sp_type == SPTYPE_END)
3799 put_pattern("end", '=', &SYN_ITEMS(curbuf)[idx++], attr);
3800 --idx;
3801 msg_putchar(' ');
3803 syn_list_flags(namelist1, spp->sp_flags, attr);
3805 if (spp->sp_cont_list != NULL)
3806 put_id_list((char_u *)"contains", spp->sp_cont_list, attr);
3808 if (spp->sp_syn.cont_in_list != NULL)
3809 put_id_list((char_u *)"containedin",
3810 spp->sp_syn.cont_in_list, attr);
3812 if (spp->sp_next_list != NULL)
3814 put_id_list((char_u *)"nextgroup", spp->sp_next_list, attr);
3815 syn_list_flags(namelist2, spp->sp_flags, attr);
3817 if (spp->sp_flags & (HL_SYNC_HERE|HL_SYNC_THERE))
3819 if (spp->sp_flags & HL_SYNC_HERE)
3820 msg_puts_attr((char_u *)"grouphere", attr);
3821 else
3822 msg_puts_attr((char_u *)"groupthere", attr);
3823 msg_putchar(' ');
3824 if (spp->sp_sync_idx >= 0)
3825 msg_outtrans(HL_TABLE()[SYN_ITEMS(curbuf)
3826 [spp->sp_sync_idx].sp_syn.id - 1].sg_name);
3827 else
3828 MSG_PUTS("NONE");
3829 msg_putchar(' ');
3833 /* list the link, if there is one */
3834 if (HL_TABLE()[id - 1].sg_link && (did_header || link_only) && !got_int)
3836 (void)syn_list_header(did_header, 999, id);
3837 msg_puts_attr((char_u *)"links to", attr);
3838 msg_putchar(' ');
3839 msg_outtrans(HL_TABLE()[HL_TABLE()[id - 1].sg_link - 1].sg_name);
3843 static void
3844 syn_list_flags(nl, flags, attr)
3845 struct name_list *nl;
3846 int flags;
3847 int attr;
3849 int i;
3851 for (i = 0; nl[i].flag != 0; ++i)
3852 if (flags & nl[i].flag)
3854 msg_puts_attr((char_u *)nl[i].name, attr);
3855 msg_putchar(' ');
3860 * List one syntax cluster, for ":syntax" or "syntax list syntax_name".
3862 static void
3863 syn_list_cluster(id)
3864 int id;
3866 int endcol = 15;
3868 /* slight hack: roughly duplicate the guts of syn_list_header() */
3869 msg_putchar('\n');
3870 msg_outtrans(SYN_CLSTR(curbuf)[id].scl_name);
3872 if (msg_col >= endcol) /* output at least one space */
3873 endcol = msg_col + 1;
3874 if (Columns <= endcol) /* avoid hang for tiny window */
3875 endcol = Columns - 1;
3877 msg_advance(endcol);
3878 if (SYN_CLSTR(curbuf)[id].scl_list != NULL)
3880 put_id_list((char_u *)"cluster", SYN_CLSTR(curbuf)[id].scl_list,
3881 hl_attr(HLF_D));
3883 else
3885 msg_puts_attr((char_u *)"cluster", hl_attr(HLF_D));
3886 msg_puts((char_u *)"=NONE");
3890 static void
3891 put_id_list(name, list, attr)
3892 char_u *name;
3893 short *list;
3894 int attr;
3896 short *p;
3898 msg_puts_attr(name, attr);
3899 msg_putchar('=');
3900 for (p = list; *p; ++p)
3902 if (*p >= SYNID_ALLBUT && *p < SYNID_TOP)
3904 if (p[1])
3905 MSG_PUTS("ALLBUT");
3906 else
3907 MSG_PUTS("ALL");
3909 else if (*p >= SYNID_TOP && *p < SYNID_CONTAINED)
3911 MSG_PUTS("TOP");
3913 else if (*p >= SYNID_CONTAINED && *p < SYNID_CLUSTER)
3915 MSG_PUTS("CONTAINED");
3917 else if (*p >= SYNID_CLUSTER)
3919 short scl_id = *p - SYNID_CLUSTER;
3921 msg_putchar('@');
3922 msg_outtrans(SYN_CLSTR(curbuf)[scl_id].scl_name);
3924 else
3925 msg_outtrans(HL_TABLE()[*p - 1].sg_name);
3926 if (p[1])
3927 msg_putchar(',');
3929 msg_putchar(' ');
3932 static void
3933 put_pattern(s, c, spp, attr)
3934 char *s;
3935 int c;
3936 synpat_T *spp;
3937 int attr;
3939 long n;
3940 int mask;
3941 int first;
3942 static char *sepchars = "/+=-#@\"|'^&";
3943 int i;
3945 /* May have to write "matchgroup=group" */
3946 if (last_matchgroup != spp->sp_syn_match_id)
3948 last_matchgroup = spp->sp_syn_match_id;
3949 msg_puts_attr((char_u *)"matchgroup", attr);
3950 msg_putchar('=');
3951 if (last_matchgroup == 0)
3952 msg_outtrans((char_u *)"NONE");
3953 else
3954 msg_outtrans(HL_TABLE()[last_matchgroup - 1].sg_name);
3955 msg_putchar(' ');
3958 /* output the name of the pattern and an '=' or ' ' */
3959 msg_puts_attr((char_u *)s, attr);
3960 msg_putchar(c);
3962 /* output the pattern, in between a char that is not in the pattern */
3963 for (i = 0; vim_strchr(spp->sp_pattern, sepchars[i]) != NULL; )
3964 if (sepchars[++i] == NUL)
3966 i = 0; /* no good char found, just use the first one */
3967 break;
3969 msg_putchar(sepchars[i]);
3970 msg_outtrans(spp->sp_pattern);
3971 msg_putchar(sepchars[i]);
3973 /* output any pattern options */
3974 first = TRUE;
3975 for (i = 0; i < SPO_COUNT; ++i)
3977 mask = (1 << i);
3978 if (spp->sp_off_flags & (mask + (mask << SPO_COUNT)))
3980 if (!first)
3981 msg_putchar(','); /* separate with commas */
3982 msg_puts((char_u *)spo_name_tab[i]);
3983 n = spp->sp_offsets[i];
3984 if (i != SPO_LC_OFF)
3986 if (spp->sp_off_flags & mask)
3987 msg_putchar('s');
3988 else
3989 msg_putchar('e');
3990 if (n > 0)
3991 msg_putchar('+');
3993 if (n || i == SPO_LC_OFF)
3994 msg_outnum(n);
3995 first = FALSE;
3998 msg_putchar(' ');
4002 * List or clear the keywords for one syntax group.
4003 * Return TRUE if the header has been printed.
4005 static int
4006 syn_list_keywords(id, ht, did_header, attr)
4007 int id;
4008 hashtab_T *ht;
4009 int did_header; /* header has already been printed */
4010 int attr;
4012 int outlen;
4013 hashitem_T *hi;
4014 keyentry_T *kp;
4015 int todo;
4016 int prev_contained = 0;
4017 short *prev_next_list = NULL;
4018 short *prev_cont_in_list = NULL;
4019 int prev_skipnl = 0;
4020 int prev_skipwhite = 0;
4021 int prev_skipempty = 0;
4024 * Unfortunately, this list of keywords is not sorted on alphabet but on
4025 * hash value...
4027 todo = (int)ht->ht_used;
4028 for (hi = ht->ht_array; todo > 0 && !got_int; ++hi)
4030 if (!HASHITEM_EMPTY(hi))
4032 --todo;
4033 for (kp = HI2KE(hi); kp != NULL && !got_int; kp = kp->ke_next)
4035 if (kp->k_syn.id == id)
4037 if (prev_contained != (kp->flags & HL_CONTAINED)
4038 || prev_skipnl != (kp->flags & HL_SKIPNL)
4039 || prev_skipwhite != (kp->flags & HL_SKIPWHITE)
4040 || prev_skipempty != (kp->flags & HL_SKIPEMPTY)
4041 || prev_cont_in_list != kp->k_syn.cont_in_list
4042 || prev_next_list != kp->next_list)
4043 outlen = 9999;
4044 else
4045 outlen = (int)STRLEN(kp->keyword);
4046 /* output "contained" and "nextgroup" on each line */
4047 if (syn_list_header(did_header, outlen, id))
4049 prev_contained = 0;
4050 prev_next_list = NULL;
4051 prev_cont_in_list = NULL;
4052 prev_skipnl = 0;
4053 prev_skipwhite = 0;
4054 prev_skipempty = 0;
4056 did_header = TRUE;
4057 if (prev_contained != (kp->flags & HL_CONTAINED))
4059 msg_puts_attr((char_u *)"contained", attr);
4060 msg_putchar(' ');
4061 prev_contained = (kp->flags & HL_CONTAINED);
4063 if (kp->k_syn.cont_in_list != prev_cont_in_list)
4065 put_id_list((char_u *)"containedin",
4066 kp->k_syn.cont_in_list, attr);
4067 msg_putchar(' ');
4068 prev_cont_in_list = kp->k_syn.cont_in_list;
4070 if (kp->next_list != prev_next_list)
4072 put_id_list((char_u *)"nextgroup", kp->next_list, attr);
4073 msg_putchar(' ');
4074 prev_next_list = kp->next_list;
4075 if (kp->flags & HL_SKIPNL)
4077 msg_puts_attr((char_u *)"skipnl", attr);
4078 msg_putchar(' ');
4079 prev_skipnl = (kp->flags & HL_SKIPNL);
4081 if (kp->flags & HL_SKIPWHITE)
4083 msg_puts_attr((char_u *)"skipwhite", attr);
4084 msg_putchar(' ');
4085 prev_skipwhite = (kp->flags & HL_SKIPWHITE);
4087 if (kp->flags & HL_SKIPEMPTY)
4089 msg_puts_attr((char_u *)"skipempty", attr);
4090 msg_putchar(' ');
4091 prev_skipempty = (kp->flags & HL_SKIPEMPTY);
4094 msg_outtrans(kp->keyword);
4100 return did_header;
4103 static void
4104 syn_clear_keyword(id, ht)
4105 int id;
4106 hashtab_T *ht;
4108 hashitem_T *hi;
4109 keyentry_T *kp;
4110 keyentry_T *kp_prev;
4111 keyentry_T *kp_next;
4112 int todo;
4114 hash_lock(ht);
4115 todo = (int)ht->ht_used;
4116 for (hi = ht->ht_array; todo > 0; ++hi)
4118 if (!HASHITEM_EMPTY(hi))
4120 --todo;
4121 kp_prev = NULL;
4122 for (kp = HI2KE(hi); kp != NULL; )
4124 if (kp->k_syn.id == id)
4126 kp_next = kp->ke_next;
4127 if (kp_prev == NULL)
4129 if (kp_next == NULL)
4130 hash_remove(ht, hi);
4131 else
4132 hi->hi_key = KE2HIKEY(kp_next);
4134 else
4135 kp_prev->ke_next = kp_next;
4136 vim_free(kp->next_list);
4137 vim_free(kp->k_syn.cont_in_list);
4138 vim_free(kp);
4139 kp = kp_next;
4141 else
4143 kp_prev = kp;
4144 kp = kp->ke_next;
4149 hash_unlock(ht);
4153 * Clear a whole keyword table.
4155 static void
4156 clear_keywtab(ht)
4157 hashtab_T *ht;
4159 hashitem_T *hi;
4160 int todo;
4161 keyentry_T *kp;
4162 keyentry_T *kp_next;
4164 todo = (int)ht->ht_used;
4165 for (hi = ht->ht_array; todo > 0; ++hi)
4167 if (!HASHITEM_EMPTY(hi))
4169 --todo;
4170 kp = HI2KE(hi);
4171 for (kp = HI2KE(hi); kp != NULL; kp = kp_next)
4173 kp_next = kp->ke_next;
4174 vim_free(kp->next_list);
4175 vim_free(kp->k_syn.cont_in_list);
4176 vim_free(kp);
4180 hash_clear(ht);
4181 hash_init(ht);
4185 * Add a keyword to the list of keywords.
4187 static void
4188 add_keyword(name, id, flags, cont_in_list, next_list)
4189 char_u *name; /* name of keyword */
4190 int id; /* group ID for this keyword */
4191 int flags; /* flags for this keyword */
4192 short *cont_in_list; /* containedin for this keyword */
4193 short *next_list; /* nextgroup for this keyword */
4195 keyentry_T *kp;
4196 hashtab_T *ht;
4197 hashitem_T *hi;
4198 char_u *name_ic;
4199 long_u hash;
4200 char_u name_folded[MAXKEYWLEN + 1];
4202 if (curbuf->b_syn_ic)
4203 name_ic = str_foldcase(name, (int)STRLEN(name),
4204 name_folded, MAXKEYWLEN + 1);
4205 else
4206 name_ic = name;
4207 kp = (keyentry_T *)alloc((int)(sizeof(keyentry_T) + STRLEN(name_ic)));
4208 if (kp == NULL)
4209 return;
4210 STRCPY(kp->keyword, name_ic);
4211 kp->k_syn.id = id;
4212 kp->k_syn.inc_tag = current_syn_inc_tag;
4213 kp->flags = flags;
4214 kp->k_syn.cont_in_list = copy_id_list(cont_in_list);
4215 if (cont_in_list != NULL)
4216 curbuf->b_syn_containedin = TRUE;
4217 kp->next_list = copy_id_list(next_list);
4219 if (curbuf->b_syn_ic)
4220 ht = &curbuf->b_keywtab_ic;
4221 else
4222 ht = &curbuf->b_keywtab;
4224 hash = hash_hash(kp->keyword);
4225 hi = hash_lookup(ht, kp->keyword, hash);
4226 if (HASHITEM_EMPTY(hi))
4228 /* new keyword, add to hashtable */
4229 kp->ke_next = NULL;
4230 hash_add_item(ht, hi, kp->keyword, hash);
4232 else
4234 /* keyword already exists, prepend to list */
4235 kp->ke_next = HI2KE(hi);
4236 hi->hi_key = KE2HIKEY(kp);
4241 * Get the start and end of the group name argument.
4242 * Return a pointer to the first argument.
4243 * Return NULL if the end of the command was found instead of further args.
4245 static char_u *
4246 get_group_name(arg, name_end)
4247 char_u *arg; /* start of the argument */
4248 char_u **name_end; /* pointer to end of the name */
4250 char_u *rest;
4252 *name_end = skiptowhite(arg);
4253 rest = skipwhite(*name_end);
4256 * Check if there are enough arguments. The first argument may be a
4257 * pattern, where '|' is allowed, so only check for NUL.
4259 if (ends_excmd(*arg) || *rest == NUL)
4260 return NULL;
4261 return rest;
4265 * Check for syntax command option arguments.
4266 * This can be called at any place in the list of arguments, and just picks
4267 * out the arguments that are known. Can be called several times in a row to
4268 * collect all options in between other arguments.
4269 * Return a pointer to the next argument (which isn't an option).
4270 * Return NULL for any error;
4272 static char_u *
4273 get_syn_options(arg, opt)
4274 char_u *arg; /* next argument to be checked */
4275 syn_opt_arg_T *opt; /* various things */
4277 char_u *gname_start, *gname;
4278 int syn_id;
4279 int len;
4280 char *p;
4281 int i;
4282 int fidx;
4283 static struct flag
4285 char *name;
4286 int argtype;
4287 int flags;
4288 } flagtab[] = { {"cCoOnNtTaAiInNeEdD", 0, HL_CONTAINED},
4289 {"oOnNeElLiInNeE", 0, HL_ONELINE},
4290 {"kKeEeEpPeEnNdD", 0, HL_KEEPEND},
4291 {"eExXtTeEnNdD", 0, HL_EXTEND},
4292 {"eExXcClLuUdDeEnNlL", 0, HL_EXCLUDENL},
4293 {"tTrRaAnNsSpPaArReEnNtT", 0, HL_TRANSP},
4294 {"sSkKiIpPnNlL", 0, HL_SKIPNL},
4295 {"sSkKiIpPwWhHiItTeE", 0, HL_SKIPWHITE},
4296 {"sSkKiIpPeEmMpPtTyY", 0, HL_SKIPEMPTY},
4297 {"gGrRoOuUpPhHeErReE", 0, HL_SYNC_HERE},
4298 {"gGrRoOuUpPtThHeErReE", 0, HL_SYNC_THERE},
4299 {"dDiIsSpPlLaAyY", 0, HL_DISPLAY},
4300 {"fFoOlLdD", 0, HL_FOLD},
4301 {"cCoOnNtTaAiInNsS", 1, 0},
4302 {"cCoOnNtTaAiInNeEdDiInN", 2, 0},
4303 {"nNeExXtTgGrRoOuUpP", 3, 0},
4305 static char *first_letters = "cCoOkKeEtTsSgGdDfFnN";
4307 if (arg == NULL) /* already detected error */
4308 return NULL;
4310 for (;;)
4313 * This is used very often when a large number of keywords is defined.
4314 * Need to skip quickly when no option name is found.
4315 * Also avoid tolower(), it's slow.
4317 if (strchr(first_letters, *arg) == NULL)
4318 break;
4320 for (fidx = sizeof(flagtab) / sizeof(struct flag); --fidx >= 0; )
4322 p = flagtab[fidx].name;
4323 for (i = 0, len = 0; p[i] != NUL; i += 2, ++len)
4324 if (arg[len] != p[i] && arg[len] != p[i + 1])
4325 break;
4326 if (p[i] == NUL && (vim_iswhite(arg[len])
4327 || (flagtab[fidx].argtype > 0
4328 ? arg[len] == '='
4329 : ends_excmd(arg[len]))))
4331 if (opt->keyword
4332 && (flagtab[fidx].flags == HL_DISPLAY
4333 || flagtab[fidx].flags == HL_FOLD
4334 || flagtab[fidx].flags == HL_EXTEND))
4335 /* treat "display", "fold" and "extend" as a keyword */
4336 fidx = -1;
4337 break;
4340 if (fidx < 0) /* no match found */
4341 break;
4343 if (flagtab[fidx].argtype == 1)
4345 if (!opt->has_cont_list)
4347 EMSG(_("E395: contains argument not accepted here"));
4348 return NULL;
4350 if (get_id_list(&arg, 8, &opt->cont_list) == FAIL)
4351 return NULL;
4353 else if (flagtab[fidx].argtype == 2)
4355 #if 0 /* cannot happen */
4356 if (opt->cont_in_list == NULL)
4358 EMSG(_("E396: containedin argument not accepted here"));
4359 return NULL;
4361 #endif
4362 if (get_id_list(&arg, 11, &opt->cont_in_list) == FAIL)
4363 return NULL;
4365 else if (flagtab[fidx].argtype == 3)
4367 if (get_id_list(&arg, 9, &opt->next_list) == FAIL)
4368 return NULL;
4370 else
4372 opt->flags |= flagtab[fidx].flags;
4373 arg = skipwhite(arg + len);
4375 if (flagtab[fidx].flags == HL_SYNC_HERE
4376 || flagtab[fidx].flags == HL_SYNC_THERE)
4378 if (opt->sync_idx == NULL)
4380 EMSG(_("E393: group[t]here not accepted here"));
4381 return NULL;
4383 gname_start = arg;
4384 arg = skiptowhite(arg);
4385 if (gname_start == arg)
4386 return NULL;
4387 gname = vim_strnsave(gname_start, (int)(arg - gname_start));
4388 if (gname == NULL)
4389 return NULL;
4390 if (STRCMP(gname, "NONE") == 0)
4391 *opt->sync_idx = NONE_IDX;
4392 else
4394 syn_id = syn_name2id(gname);
4395 for (i = curbuf->b_syn_patterns.ga_len; --i >= 0; )
4396 if (SYN_ITEMS(curbuf)[i].sp_syn.id == syn_id
4397 && SYN_ITEMS(curbuf)[i].sp_type == SPTYPE_START)
4399 *opt->sync_idx = i;
4400 break;
4402 if (i < 0)
4404 EMSG2(_("E394: Didn't find region item for %s"), gname);
4405 vim_free(gname);
4406 return NULL;
4410 vim_free(gname);
4411 arg = skipwhite(arg);
4413 #ifdef FEAT_FOLDING
4414 else if (flagtab[fidx].flags == HL_FOLD
4415 && foldmethodIsSyntax(curwin))
4416 /* Need to update folds later. */
4417 foldUpdateAll(curwin);
4418 #endif
4422 return arg;
4426 * Adjustments to syntax item when declared in a ":syn include"'d file.
4427 * Set the contained flag, and if the item is not already contained, add it
4428 * to the specified top-level group, if any.
4430 static void
4431 syn_incl_toplevel(id, flagsp)
4432 int id;
4433 int *flagsp;
4435 if ((*flagsp & HL_CONTAINED) || curbuf->b_syn_topgrp == 0)
4436 return;
4437 *flagsp |= HL_CONTAINED;
4438 if (curbuf->b_syn_topgrp >= SYNID_CLUSTER)
4440 /* We have to alloc this, because syn_combine_list() will free it. */
4441 short *grp_list = (short *)alloc((unsigned)(2 * sizeof(short)));
4442 int tlg_id = curbuf->b_syn_topgrp - SYNID_CLUSTER;
4444 if (grp_list != NULL)
4446 grp_list[0] = id;
4447 grp_list[1] = 0;
4448 syn_combine_list(&SYN_CLSTR(curbuf)[tlg_id].scl_list, &grp_list,
4449 CLUSTER_ADD);
4455 * Handle ":syntax include [@{group-name}] filename" command.
4457 static void
4458 syn_cmd_include(eap, syncing)
4459 exarg_T *eap;
4460 int syncing UNUSED;
4462 char_u *arg = eap->arg;
4463 int sgl_id = 1;
4464 char_u *group_name_end;
4465 char_u *rest;
4466 char_u *errormsg = NULL;
4467 int prev_toplvl_grp;
4468 int prev_syn_inc_tag;
4469 int source = FALSE;
4471 eap->nextcmd = find_nextcmd(arg);
4472 if (eap->skip)
4473 return;
4475 if (arg[0] == '@')
4477 ++arg;
4478 rest = get_group_name(arg, &group_name_end);
4479 if (rest == NULL)
4481 EMSG((char_u *)_("E397: Filename required"));
4482 return;
4484 sgl_id = syn_check_cluster(arg, (int)(group_name_end - arg));
4485 /* separate_nextcmd() and expand_filename() depend on this */
4486 eap->arg = rest;
4490 * Everything that's left, up to the next command, should be the
4491 * filename to include.
4493 eap->argt |= (XFILE | NOSPC);
4494 separate_nextcmd(eap);
4495 if (*eap->arg == '<' || *eap->arg == '$' || mch_isFullName(eap->arg))
4497 /* For an absolute path, "$VIM/..." or "<sfile>.." we ":source" the
4498 * file. Need to expand the file name first. In other cases
4499 * ":runtime!" is used. */
4500 source = TRUE;
4501 if (expand_filename(eap, syn_cmdlinep, &errormsg) == FAIL)
4503 if (errormsg != NULL)
4504 EMSG(errormsg);
4505 return;
4510 * Save and restore the existing top-level grouplist id and ":syn
4511 * include" tag around the actual inclusion.
4513 prev_syn_inc_tag = current_syn_inc_tag;
4514 current_syn_inc_tag = ++running_syn_inc_tag;
4515 prev_toplvl_grp = curbuf->b_syn_topgrp;
4516 curbuf->b_syn_topgrp = sgl_id;
4517 if (source ? do_source(eap->arg, FALSE, DOSO_NONE) == FAIL
4518 : source_runtime(eap->arg, TRUE) == FAIL)
4519 EMSG2(_(e_notopen), eap->arg);
4520 curbuf->b_syn_topgrp = prev_toplvl_grp;
4521 current_syn_inc_tag = prev_syn_inc_tag;
4525 * Handle ":syntax keyword {group-name} [{option}] keyword .." command.
4527 static void
4528 syn_cmd_keyword(eap, syncing)
4529 exarg_T *eap;
4530 int syncing UNUSED;
4532 char_u *arg = eap->arg;
4533 char_u *group_name_end;
4534 int syn_id;
4535 char_u *rest;
4536 char_u *keyword_copy;
4537 char_u *p;
4538 char_u *kw;
4539 syn_opt_arg_T syn_opt_arg;
4540 int cnt;
4542 rest = get_group_name(arg, &group_name_end);
4544 if (rest != NULL)
4546 syn_id = syn_check_group(arg, (int)(group_name_end - arg));
4548 /* allocate a buffer, for removing the backslashes in the keyword */
4549 keyword_copy = alloc((unsigned)STRLEN(rest) + 1);
4550 if (keyword_copy != NULL)
4552 syn_opt_arg.flags = 0;
4553 syn_opt_arg.keyword = TRUE;
4554 syn_opt_arg.sync_idx = NULL;
4555 syn_opt_arg.has_cont_list = FALSE;
4556 syn_opt_arg.cont_in_list = NULL;
4557 syn_opt_arg.next_list = NULL;
4560 * The options given apply to ALL keywords, so all options must be
4561 * found before keywords can be created.
4562 * 1: collect the options and copy the keywords to keyword_copy.
4564 cnt = 0;
4565 p = keyword_copy;
4566 for ( ; rest != NULL && !ends_excmd(*rest); rest = skipwhite(rest))
4568 rest = get_syn_options(rest, &syn_opt_arg);
4569 if (rest == NULL || ends_excmd(*rest))
4570 break;
4571 /* Copy the keyword, removing backslashes, and add a NUL. */
4572 while (*rest != NUL && !vim_iswhite(*rest))
4574 if (*rest == '\\' && rest[1] != NUL)
4575 ++rest;
4576 *p++ = *rest++;
4578 *p++ = NUL;
4579 ++cnt;
4582 if (!eap->skip)
4584 /* Adjust flags for use of ":syn include". */
4585 syn_incl_toplevel(syn_id, &syn_opt_arg.flags);
4588 * 2: Add an entry for each keyword.
4590 for (kw = keyword_copy; --cnt >= 0; kw += STRLEN(kw) + 1)
4592 for (p = vim_strchr(kw, '['); ; )
4594 if (p != NULL)
4595 *p = NUL;
4596 add_keyword(kw, syn_id, syn_opt_arg.flags,
4597 syn_opt_arg.cont_in_list,
4598 syn_opt_arg.next_list);
4599 if (p == NULL)
4600 break;
4601 if (p[1] == NUL)
4603 EMSG2(_("E789: Missing ']': %s"), kw);
4604 kw = p + 2; /* skip over the NUL */
4605 break;
4607 if (p[1] == ']')
4609 kw = p + 1; /* skip over the "]" */
4610 break;
4612 #ifdef FEAT_MBYTE
4613 if (has_mbyte)
4615 int l = (*mb_ptr2len)(p + 1);
4617 mch_memmove(p, p + 1, l);
4618 p += l;
4620 else
4621 #endif
4623 p[0] = p[1];
4624 ++p;
4630 vim_free(keyword_copy);
4631 vim_free(syn_opt_arg.cont_in_list);
4632 vim_free(syn_opt_arg.next_list);
4636 if (rest != NULL)
4637 eap->nextcmd = check_nextcmd(rest);
4638 else
4639 EMSG2(_(e_invarg2), arg);
4641 redraw_curbuf_later(SOME_VALID);
4642 syn_stack_free_all(curbuf); /* Need to recompute all syntax. */
4646 * Handle ":syntax match {name} [{options}] {pattern} [{options}]".
4648 * Also ":syntax sync match {name} [[grouphere | groupthere] {group-name}] .."
4650 static void
4651 syn_cmd_match(eap, syncing)
4652 exarg_T *eap;
4653 int syncing; /* TRUE for ":syntax sync match .. " */
4655 char_u *arg = eap->arg;
4656 char_u *group_name_end;
4657 char_u *rest;
4658 synpat_T item; /* the item found in the line */
4659 int syn_id;
4660 int idx;
4661 syn_opt_arg_T syn_opt_arg;
4662 int sync_idx = 0;
4664 /* Isolate the group name, check for validity */
4665 rest = get_group_name(arg, &group_name_end);
4667 /* Get options before the pattern */
4668 syn_opt_arg.flags = 0;
4669 syn_opt_arg.keyword = FALSE;
4670 syn_opt_arg.sync_idx = syncing ? &sync_idx : NULL;
4671 syn_opt_arg.has_cont_list = TRUE;
4672 syn_opt_arg.cont_list = NULL;
4673 syn_opt_arg.cont_in_list = NULL;
4674 syn_opt_arg.next_list = NULL;
4675 rest = get_syn_options(rest, &syn_opt_arg);
4677 /* get the pattern. */
4678 init_syn_patterns();
4679 vim_memset(&item, 0, sizeof(item));
4680 rest = get_syn_pattern(rest, &item);
4681 if (vim_regcomp_had_eol() && !(syn_opt_arg.flags & HL_EXCLUDENL))
4682 syn_opt_arg.flags |= HL_HAS_EOL;
4684 /* Get options after the pattern */
4685 rest = get_syn_options(rest, &syn_opt_arg);
4687 if (rest != NULL) /* all arguments are valid */
4690 * Check for trailing command and illegal trailing arguments.
4692 eap->nextcmd = check_nextcmd(rest);
4693 if (!ends_excmd(*rest) || eap->skip)
4694 rest = NULL;
4695 else if (ga_grow(&curbuf->b_syn_patterns, 1) != FAIL
4696 && (syn_id = syn_check_group(arg,
4697 (int)(group_name_end - arg))) != 0)
4699 syn_incl_toplevel(syn_id, &syn_opt_arg.flags);
4701 * Store the pattern in the syn_items list
4703 idx = curbuf->b_syn_patterns.ga_len;
4704 SYN_ITEMS(curbuf)[idx] = item;
4705 SYN_ITEMS(curbuf)[idx].sp_syncing = syncing;
4706 SYN_ITEMS(curbuf)[idx].sp_type = SPTYPE_MATCH;
4707 SYN_ITEMS(curbuf)[idx].sp_syn.id = syn_id;
4708 SYN_ITEMS(curbuf)[idx].sp_syn.inc_tag = current_syn_inc_tag;
4709 SYN_ITEMS(curbuf)[idx].sp_flags = syn_opt_arg.flags;
4710 SYN_ITEMS(curbuf)[idx].sp_sync_idx = sync_idx;
4711 SYN_ITEMS(curbuf)[idx].sp_cont_list = syn_opt_arg.cont_list;
4712 SYN_ITEMS(curbuf)[idx].sp_syn.cont_in_list =
4713 syn_opt_arg.cont_in_list;
4714 if (syn_opt_arg.cont_in_list != NULL)
4715 curbuf->b_syn_containedin = TRUE;
4716 SYN_ITEMS(curbuf)[idx].sp_next_list = syn_opt_arg.next_list;
4717 ++curbuf->b_syn_patterns.ga_len;
4719 /* remember that we found a match for syncing on */
4720 if (syn_opt_arg.flags & (HL_SYNC_HERE|HL_SYNC_THERE))
4721 curbuf->b_syn_sync_flags |= SF_MATCH;
4722 #ifdef FEAT_FOLDING
4723 if (syn_opt_arg.flags & HL_FOLD)
4724 ++curbuf->b_syn_folditems;
4725 #endif
4727 redraw_curbuf_later(SOME_VALID);
4728 syn_stack_free_all(curbuf); /* Need to recompute all syntax. */
4729 return; /* don't free the progs and patterns now */
4734 * Something failed, free the allocated memory.
4736 vim_free(item.sp_prog);
4737 vim_free(item.sp_pattern);
4738 vim_free(syn_opt_arg.cont_list);
4739 vim_free(syn_opt_arg.cont_in_list);
4740 vim_free(syn_opt_arg.next_list);
4742 if (rest == NULL)
4743 EMSG2(_(e_invarg2), arg);
4747 * Handle ":syntax region {group-name} [matchgroup={group-name}]
4748 * start {start} .. [skip {skip}] end {end} .. [{options}]".
4750 static void
4751 syn_cmd_region(eap, syncing)
4752 exarg_T *eap;
4753 int syncing; /* TRUE for ":syntax sync region .." */
4755 char_u *arg = eap->arg;
4756 char_u *group_name_end;
4757 char_u *rest; /* next arg, NULL on error */
4758 char_u *key_end;
4759 char_u *key = NULL;
4760 char_u *p;
4761 int item;
4762 #define ITEM_START 0
4763 #define ITEM_SKIP 1
4764 #define ITEM_END 2
4765 #define ITEM_MATCHGROUP 3
4766 struct pat_ptr
4768 synpat_T *pp_synp; /* pointer to syn_pattern */
4769 int pp_matchgroup_id; /* matchgroup ID */
4770 struct pat_ptr *pp_next; /* pointer to next pat_ptr */
4771 } *(pat_ptrs[3]);
4772 /* patterns found in the line */
4773 struct pat_ptr *ppp;
4774 struct pat_ptr *ppp_next;
4775 int pat_count = 0; /* nr of syn_patterns found */
4776 int syn_id;
4777 int matchgroup_id = 0;
4778 int not_enough = FALSE; /* not enough arguments */
4779 int illegal = FALSE; /* illegal arguments */
4780 int success = FALSE;
4781 int idx;
4782 syn_opt_arg_T syn_opt_arg;
4784 /* Isolate the group name, check for validity */
4785 rest = get_group_name(arg, &group_name_end);
4787 pat_ptrs[0] = NULL;
4788 pat_ptrs[1] = NULL;
4789 pat_ptrs[2] = NULL;
4791 init_syn_patterns();
4793 syn_opt_arg.flags = 0;
4794 syn_opt_arg.keyword = FALSE;
4795 syn_opt_arg.sync_idx = NULL;
4796 syn_opt_arg.has_cont_list = TRUE;
4797 syn_opt_arg.cont_list = NULL;
4798 syn_opt_arg.cont_in_list = NULL;
4799 syn_opt_arg.next_list = NULL;
4802 * get the options, patterns and matchgroup.
4804 while (rest != NULL && !ends_excmd(*rest))
4806 /* Check for option arguments */
4807 rest = get_syn_options(rest, &syn_opt_arg);
4808 if (rest == NULL || ends_excmd(*rest))
4809 break;
4811 /* must be a pattern or matchgroup then */
4812 key_end = rest;
4813 while (*key_end && !vim_iswhite(*key_end) && *key_end != '=')
4814 ++key_end;
4815 vim_free(key);
4816 key = vim_strnsave_up(rest, (int)(key_end - rest));
4817 if (key == NULL) /* out of memory */
4819 rest = NULL;
4820 break;
4822 if (STRCMP(key, "MATCHGROUP") == 0)
4823 item = ITEM_MATCHGROUP;
4824 else if (STRCMP(key, "START") == 0)
4825 item = ITEM_START;
4826 else if (STRCMP(key, "END") == 0)
4827 item = ITEM_END;
4828 else if (STRCMP(key, "SKIP") == 0)
4830 if (pat_ptrs[ITEM_SKIP] != NULL) /* one skip pattern allowed */
4832 illegal = TRUE;
4833 break;
4835 item = ITEM_SKIP;
4837 else
4838 break;
4839 rest = skipwhite(key_end);
4840 if (*rest != '=')
4842 rest = NULL;
4843 EMSG2(_("E398: Missing '=': %s"), arg);
4844 break;
4846 rest = skipwhite(rest + 1);
4847 if (*rest == NUL)
4849 not_enough = TRUE;
4850 break;
4853 if (item == ITEM_MATCHGROUP)
4855 p = skiptowhite(rest);
4856 if ((p - rest == 4 && STRNCMP(rest, "NONE", 4) == 0) || eap->skip)
4857 matchgroup_id = 0;
4858 else
4860 matchgroup_id = syn_check_group(rest, (int)(p - rest));
4861 if (matchgroup_id == 0)
4863 illegal = TRUE;
4864 break;
4867 rest = skipwhite(p);
4869 else
4872 * Allocate room for a syn_pattern, and link it in the list of
4873 * syn_patterns for this item, at the start (because the list is
4874 * used from end to start).
4876 ppp = (struct pat_ptr *)alloc((unsigned)sizeof(struct pat_ptr));
4877 if (ppp == NULL)
4879 rest = NULL;
4880 break;
4882 ppp->pp_next = pat_ptrs[item];
4883 pat_ptrs[item] = ppp;
4884 ppp->pp_synp = (synpat_T *)alloc_clear((unsigned)sizeof(synpat_T));
4885 if (ppp->pp_synp == NULL)
4887 rest = NULL;
4888 break;
4892 * Get the syntax pattern and the following offset(s).
4894 /* Enable the appropriate \z specials. */
4895 if (item == ITEM_START)
4896 reg_do_extmatch = REX_SET;
4897 else if (item == ITEM_SKIP || item == ITEM_END)
4898 reg_do_extmatch = REX_USE;
4899 rest = get_syn_pattern(rest, ppp->pp_synp);
4900 reg_do_extmatch = 0;
4901 if (item == ITEM_END && vim_regcomp_had_eol()
4902 && !(syn_opt_arg.flags & HL_EXCLUDENL))
4903 ppp->pp_synp->sp_flags |= HL_HAS_EOL;
4904 ppp->pp_matchgroup_id = matchgroup_id;
4905 ++pat_count;
4908 vim_free(key);
4909 if (illegal || not_enough)
4910 rest = NULL;
4913 * Must have a "start" and "end" pattern.
4915 if (rest != NULL && (pat_ptrs[ITEM_START] == NULL ||
4916 pat_ptrs[ITEM_END] == NULL))
4918 not_enough = TRUE;
4919 rest = NULL;
4922 if (rest != NULL)
4925 * Check for trailing garbage or command.
4926 * If OK, add the item.
4928 eap->nextcmd = check_nextcmd(rest);
4929 if (!ends_excmd(*rest) || eap->skip)
4930 rest = NULL;
4931 else if (ga_grow(&(curbuf->b_syn_patterns), pat_count) != FAIL
4932 && (syn_id = syn_check_group(arg,
4933 (int)(group_name_end - arg))) != 0)
4935 syn_incl_toplevel(syn_id, &syn_opt_arg.flags);
4937 * Store the start/skip/end in the syn_items list
4939 idx = curbuf->b_syn_patterns.ga_len;
4940 for (item = ITEM_START; item <= ITEM_END; ++item)
4942 for (ppp = pat_ptrs[item]; ppp != NULL; ppp = ppp->pp_next)
4944 SYN_ITEMS(curbuf)[idx] = *(ppp->pp_synp);
4945 SYN_ITEMS(curbuf)[idx].sp_syncing = syncing;
4946 SYN_ITEMS(curbuf)[idx].sp_type =
4947 (item == ITEM_START) ? SPTYPE_START :
4948 (item == ITEM_SKIP) ? SPTYPE_SKIP : SPTYPE_END;
4949 SYN_ITEMS(curbuf)[idx].sp_flags |= syn_opt_arg.flags;
4950 SYN_ITEMS(curbuf)[idx].sp_syn.id = syn_id;
4951 SYN_ITEMS(curbuf)[idx].sp_syn.inc_tag = current_syn_inc_tag;
4952 SYN_ITEMS(curbuf)[idx].sp_syn_match_id =
4953 ppp->pp_matchgroup_id;
4954 if (item == ITEM_START)
4956 SYN_ITEMS(curbuf)[idx].sp_cont_list =
4957 syn_opt_arg.cont_list;
4958 SYN_ITEMS(curbuf)[idx].sp_syn.cont_in_list =
4959 syn_opt_arg.cont_in_list;
4960 if (syn_opt_arg.cont_in_list != NULL)
4961 curbuf->b_syn_containedin = TRUE;
4962 SYN_ITEMS(curbuf)[idx].sp_next_list =
4963 syn_opt_arg.next_list;
4965 ++curbuf->b_syn_patterns.ga_len;
4966 ++idx;
4967 #ifdef FEAT_FOLDING
4968 if (syn_opt_arg.flags & HL_FOLD)
4969 ++curbuf->b_syn_folditems;
4970 #endif
4974 redraw_curbuf_later(SOME_VALID);
4975 syn_stack_free_all(curbuf); /* Need to recompute all syntax. */
4976 success = TRUE; /* don't free the progs and patterns now */
4981 * Free the allocated memory.
4983 for (item = ITEM_START; item <= ITEM_END; ++item)
4984 for (ppp = pat_ptrs[item]; ppp != NULL; ppp = ppp_next)
4986 if (!success)
4988 vim_free(ppp->pp_synp->sp_prog);
4989 vim_free(ppp->pp_synp->sp_pattern);
4991 vim_free(ppp->pp_synp);
4992 ppp_next = ppp->pp_next;
4993 vim_free(ppp);
4996 if (!success)
4998 vim_free(syn_opt_arg.cont_list);
4999 vim_free(syn_opt_arg.cont_in_list);
5000 vim_free(syn_opt_arg.next_list);
5001 if (not_enough)
5002 EMSG2(_("E399: Not enough arguments: syntax region %s"), arg);
5003 else if (illegal || rest == NULL)
5004 EMSG2(_(e_invarg2), arg);
5009 * A simple syntax group ID comparison function suitable for use in qsort()
5011 static int
5012 #ifdef __BORLANDC__
5013 _RTLENTRYF
5014 #endif
5015 syn_compare_stub(v1, v2)
5016 const void *v1;
5017 const void *v2;
5019 const short *s1 = v1;
5020 const short *s2 = v2;
5022 return (*s1 > *s2 ? 1 : *s1 < *s2 ? -1 : 0);
5026 * Combines lists of syntax clusters.
5027 * *clstr1 and *clstr2 must both be allocated memory; they will be consumed.
5029 static void
5030 syn_combine_list(clstr1, clstr2, list_op)
5031 short **clstr1;
5032 short **clstr2;
5033 int list_op;
5035 int count1 = 0;
5036 int count2 = 0;
5037 short *g1;
5038 short *g2;
5039 short *clstr = NULL;
5040 int count;
5041 int round;
5044 * Handle degenerate cases.
5046 if (*clstr2 == NULL)
5047 return;
5048 if (*clstr1 == NULL || list_op == CLUSTER_REPLACE)
5050 if (list_op == CLUSTER_REPLACE)
5051 vim_free(*clstr1);
5052 if (list_op == CLUSTER_REPLACE || list_op == CLUSTER_ADD)
5053 *clstr1 = *clstr2;
5054 else
5055 vim_free(*clstr2);
5056 return;
5059 for (g1 = *clstr1; *g1; g1++)
5060 ++count1;
5061 for (g2 = *clstr2; *g2; g2++)
5062 ++count2;
5065 * For speed purposes, sort both lists.
5067 qsort(*clstr1, (size_t)count1, sizeof(short), syn_compare_stub);
5068 qsort(*clstr2, (size_t)count2, sizeof(short), syn_compare_stub);
5071 * We proceed in two passes; in round 1, we count the elements to place
5072 * in the new list, and in round 2, we allocate and populate the new
5073 * list. For speed, we use a mergesort-like method, adding the smaller
5074 * of the current elements in each list to the new list.
5076 for (round = 1; round <= 2; round++)
5078 g1 = *clstr1;
5079 g2 = *clstr2;
5080 count = 0;
5083 * First, loop through the lists until one of them is empty.
5085 while (*g1 && *g2)
5088 * We always want to add from the first list.
5090 if (*g1 < *g2)
5092 if (round == 2)
5093 clstr[count] = *g1;
5094 count++;
5095 g1++;
5096 continue;
5099 * We only want to add from the second list if we're adding the
5100 * lists.
5102 if (list_op == CLUSTER_ADD)
5104 if (round == 2)
5105 clstr[count] = *g2;
5106 count++;
5108 if (*g1 == *g2)
5109 g1++;
5110 g2++;
5114 * Now add the leftovers from whichever list didn't get finished
5115 * first. As before, we only want to add from the second list if
5116 * we're adding the lists.
5118 for (; *g1; g1++, count++)
5119 if (round == 2)
5120 clstr[count] = *g1;
5121 if (list_op == CLUSTER_ADD)
5122 for (; *g2; g2++, count++)
5123 if (round == 2)
5124 clstr[count] = *g2;
5126 if (round == 1)
5129 * If the group ended up empty, we don't need to allocate any
5130 * space for it.
5132 if (count == 0)
5134 clstr = NULL;
5135 break;
5137 clstr = (short *)alloc((unsigned)((count + 1) * sizeof(short)));
5138 if (clstr == NULL)
5139 break;
5140 clstr[count] = 0;
5145 * Finally, put the new list in place.
5147 vim_free(*clstr1);
5148 vim_free(*clstr2);
5149 *clstr1 = clstr;
5153 * Lookup a syntax cluster name and return it's ID.
5154 * If it is not found, 0 is returned.
5156 static int
5157 syn_scl_name2id(name)
5158 char_u *name;
5160 int i;
5161 char_u *name_u;
5163 /* Avoid using stricmp() too much, it's slow on some systems */
5164 name_u = vim_strsave_up(name);
5165 if (name_u == NULL)
5166 return 0;
5167 for (i = curbuf->b_syn_clusters.ga_len; --i >= 0; )
5168 if (SYN_CLSTR(curbuf)[i].scl_name_u != NULL
5169 && STRCMP(name_u, SYN_CLSTR(curbuf)[i].scl_name_u) == 0)
5170 break;
5171 vim_free(name_u);
5172 return (i < 0 ? 0 : i + SYNID_CLUSTER);
5176 * Like syn_scl_name2id(), but take a pointer + length argument.
5178 static int
5179 syn_scl_namen2id(linep, len)
5180 char_u *linep;
5181 int len;
5183 char_u *name;
5184 int id = 0;
5186 name = vim_strnsave(linep, len);
5187 if (name != NULL)
5189 id = syn_scl_name2id(name);
5190 vim_free(name);
5192 return id;
5196 * Find syntax cluster name in the table and return it's ID.
5197 * The argument is a pointer to the name and the length of the name.
5198 * If it doesn't exist yet, a new entry is created.
5199 * Return 0 for failure.
5201 static int
5202 syn_check_cluster(pp, len)
5203 char_u *pp;
5204 int len;
5206 int id;
5207 char_u *name;
5209 name = vim_strnsave(pp, len);
5210 if (name == NULL)
5211 return 0;
5213 id = syn_scl_name2id(name);
5214 if (id == 0) /* doesn't exist yet */
5215 id = syn_add_cluster(name);
5216 else
5217 vim_free(name);
5218 return id;
5222 * Add new syntax cluster and return it's ID.
5223 * "name" must be an allocated string, it will be consumed.
5224 * Return 0 for failure.
5226 static int
5227 syn_add_cluster(name)
5228 char_u *name;
5230 int len;
5233 * First call for this growarray: init growing array.
5235 if (curbuf->b_syn_clusters.ga_data == NULL)
5237 curbuf->b_syn_clusters.ga_itemsize = sizeof(syn_cluster_T);
5238 curbuf->b_syn_clusters.ga_growsize = 10;
5242 * Make room for at least one other cluster entry.
5244 if (ga_grow(&curbuf->b_syn_clusters, 1) == FAIL)
5246 vim_free(name);
5247 return 0;
5249 len = curbuf->b_syn_clusters.ga_len;
5251 vim_memset(&(SYN_CLSTR(curbuf)[len]), 0, sizeof(syn_cluster_T));
5252 SYN_CLSTR(curbuf)[len].scl_name = name;
5253 SYN_CLSTR(curbuf)[len].scl_name_u = vim_strsave_up(name);
5254 SYN_CLSTR(curbuf)[len].scl_list = NULL;
5255 ++curbuf->b_syn_clusters.ga_len;
5257 if (STRICMP(name, "Spell") == 0)
5258 curbuf->b_spell_cluster_id = len + SYNID_CLUSTER;
5259 if (STRICMP(name, "NoSpell") == 0)
5260 curbuf->b_nospell_cluster_id = len + SYNID_CLUSTER;
5262 return len + SYNID_CLUSTER;
5266 * Handle ":syntax cluster {cluster-name} [contains={groupname},..]
5267 * [add={groupname},..] [remove={groupname},..]".
5269 static void
5270 syn_cmd_cluster(eap, syncing)
5271 exarg_T *eap;
5272 int syncing UNUSED;
5274 char_u *arg = eap->arg;
5275 char_u *group_name_end;
5276 char_u *rest;
5277 int scl_id;
5278 short *clstr_list;
5279 int got_clstr = FALSE;
5280 int opt_len;
5281 int list_op;
5283 eap->nextcmd = find_nextcmd(arg);
5284 if (eap->skip)
5285 return;
5287 rest = get_group_name(arg, &group_name_end);
5289 if (rest != NULL)
5291 scl_id = syn_check_cluster(arg, (int)(group_name_end - arg))
5292 - SYNID_CLUSTER;
5294 for (;;)
5296 if (STRNICMP(rest, "add", 3) == 0
5297 && (vim_iswhite(rest[3]) || rest[3] == '='))
5299 opt_len = 3;
5300 list_op = CLUSTER_ADD;
5302 else if (STRNICMP(rest, "remove", 6) == 0
5303 && (vim_iswhite(rest[6]) || rest[6] == '='))
5305 opt_len = 6;
5306 list_op = CLUSTER_SUBTRACT;
5308 else if (STRNICMP(rest, "contains", 8) == 0
5309 && (vim_iswhite(rest[8]) || rest[8] == '='))
5311 opt_len = 8;
5312 list_op = CLUSTER_REPLACE;
5314 else
5315 break;
5317 clstr_list = NULL;
5318 if (get_id_list(&rest, opt_len, &clstr_list) == FAIL)
5320 EMSG2(_(e_invarg2), rest);
5321 break;
5323 syn_combine_list(&SYN_CLSTR(curbuf)[scl_id].scl_list,
5324 &clstr_list, list_op);
5325 got_clstr = TRUE;
5328 if (got_clstr)
5330 redraw_curbuf_later(SOME_VALID);
5331 syn_stack_free_all(curbuf); /* Need to recompute all syntax. */
5335 if (!got_clstr)
5336 EMSG(_("E400: No cluster specified"));
5337 if (rest == NULL || !ends_excmd(*rest))
5338 EMSG2(_(e_invarg2), arg);
5342 * On first call for current buffer: Init growing array.
5344 static void
5345 init_syn_patterns()
5347 curbuf->b_syn_patterns.ga_itemsize = sizeof(synpat_T);
5348 curbuf->b_syn_patterns.ga_growsize = 10;
5352 * Get one pattern for a ":syntax match" or ":syntax region" command.
5353 * Stores the pattern and program in a synpat_T.
5354 * Returns a pointer to the next argument, or NULL in case of an error.
5356 static char_u *
5357 get_syn_pattern(arg, ci)
5358 char_u *arg;
5359 synpat_T *ci;
5361 char_u *end;
5362 int *p;
5363 int idx;
5364 char_u *cpo_save;
5366 /* need at least three chars */
5367 if (arg == NULL || arg[1] == NUL || arg[2] == NUL)
5368 return NULL;
5370 end = skip_regexp(arg + 1, *arg, TRUE, NULL);
5371 if (*end != *arg) /* end delimiter not found */
5373 EMSG2(_("E401: Pattern delimiter not found: %s"), arg);
5374 return NULL;
5376 /* store the pattern and compiled regexp program */
5377 if ((ci->sp_pattern = vim_strnsave(arg + 1, (int)(end - arg - 1))) == NULL)
5378 return NULL;
5380 /* Make 'cpoptions' empty, to avoid the 'l' flag */
5381 cpo_save = p_cpo;
5382 p_cpo = (char_u *)"";
5383 ci->sp_prog = vim_regcomp(ci->sp_pattern, RE_MAGIC);
5384 p_cpo = cpo_save;
5386 if (ci->sp_prog == NULL)
5387 return NULL;
5388 ci->sp_ic = curbuf->b_syn_ic;
5391 * Check for a match, highlight or region offset.
5393 ++end;
5396 for (idx = SPO_COUNT; --idx >= 0; )
5397 if (STRNCMP(end, spo_name_tab[idx], 3) == 0)
5398 break;
5399 if (idx >= 0)
5401 p = &(ci->sp_offsets[idx]);
5402 if (idx != SPO_LC_OFF)
5403 switch (end[3])
5405 case 's': break;
5406 case 'b': break;
5407 case 'e': idx += SPO_COUNT; break;
5408 default: idx = -1; break;
5410 if (idx >= 0)
5412 ci->sp_off_flags |= (1 << idx);
5413 if (idx == SPO_LC_OFF) /* lc=99 */
5415 end += 3;
5416 *p = getdigits(&end);
5418 /* "lc=" offset automatically sets "ms=" offset */
5419 if (!(ci->sp_off_flags & (1 << SPO_MS_OFF)))
5421 ci->sp_off_flags |= (1 << SPO_MS_OFF);
5422 ci->sp_offsets[SPO_MS_OFF] = *p;
5425 else /* yy=x+99 */
5427 end += 4;
5428 if (*end == '+')
5430 ++end;
5431 *p = getdigits(&end); /* positive offset */
5433 else if (*end == '-')
5435 ++end;
5436 *p = -getdigits(&end); /* negative offset */
5439 if (*end != ',')
5440 break;
5441 ++end;
5444 } while (idx >= 0);
5446 if (!ends_excmd(*end) && !vim_iswhite(*end))
5448 EMSG2(_("E402: Garbage after pattern: %s"), arg);
5449 return NULL;
5451 return skipwhite(end);
5455 * Handle ":syntax sync .." command.
5457 static void
5458 syn_cmd_sync(eap, syncing)
5459 exarg_T *eap;
5460 int syncing UNUSED;
5462 char_u *arg_start = eap->arg;
5463 char_u *arg_end;
5464 char_u *key = NULL;
5465 char_u *next_arg;
5466 int illegal = FALSE;
5467 int finished = FALSE;
5468 long n;
5469 char_u *cpo_save;
5471 if (ends_excmd(*arg_start))
5473 syn_cmd_list(eap, TRUE);
5474 return;
5477 while (!ends_excmd(*arg_start))
5479 arg_end = skiptowhite(arg_start);
5480 next_arg = skipwhite(arg_end);
5481 vim_free(key);
5482 key = vim_strnsave_up(arg_start, (int)(arg_end - arg_start));
5483 if (STRCMP(key, "CCOMMENT") == 0)
5485 if (!eap->skip)
5486 curbuf->b_syn_sync_flags |= SF_CCOMMENT;
5487 if (!ends_excmd(*next_arg))
5489 arg_end = skiptowhite(next_arg);
5490 if (!eap->skip)
5491 curbuf->b_syn_sync_id = syn_check_group(next_arg,
5492 (int)(arg_end - next_arg));
5493 next_arg = skipwhite(arg_end);
5495 else if (!eap->skip)
5496 curbuf->b_syn_sync_id = syn_name2id((char_u *)"Comment");
5498 else if ( STRNCMP(key, "LINES", 5) == 0
5499 || STRNCMP(key, "MINLINES", 8) == 0
5500 || STRNCMP(key, "MAXLINES", 8) == 0
5501 || STRNCMP(key, "LINEBREAKS", 10) == 0)
5503 if (key[4] == 'S')
5504 arg_end = key + 6;
5505 else if (key[0] == 'L')
5506 arg_end = key + 11;
5507 else
5508 arg_end = key + 9;
5509 if (arg_end[-1] != '=' || !VIM_ISDIGIT(*arg_end))
5511 illegal = TRUE;
5512 break;
5514 n = getdigits(&arg_end);
5515 if (!eap->skip)
5517 if (key[4] == 'B')
5518 curbuf->b_syn_sync_linebreaks = n;
5519 else if (key[1] == 'A')
5520 curbuf->b_syn_sync_maxlines = n;
5521 else
5522 curbuf->b_syn_sync_minlines = n;
5525 else if (STRCMP(key, "FROMSTART") == 0)
5527 if (!eap->skip)
5529 curbuf->b_syn_sync_minlines = MAXLNUM;
5530 curbuf->b_syn_sync_maxlines = 0;
5533 else if (STRCMP(key, "LINECONT") == 0)
5535 if (curbuf->b_syn_linecont_pat != NULL)
5537 EMSG(_("E403: syntax sync: line continuations pattern specified twice"));
5538 finished = TRUE;
5539 break;
5541 arg_end = skip_regexp(next_arg + 1, *next_arg, TRUE, NULL);
5542 if (*arg_end != *next_arg) /* end delimiter not found */
5544 illegal = TRUE;
5545 break;
5548 if (!eap->skip)
5550 /* store the pattern and compiled regexp program */
5551 if ((curbuf->b_syn_linecont_pat = vim_strnsave(next_arg + 1,
5552 (int)(arg_end - next_arg - 1))) == NULL)
5554 finished = TRUE;
5555 break;
5557 curbuf->b_syn_linecont_ic = curbuf->b_syn_ic;
5559 /* Make 'cpoptions' empty, to avoid the 'l' flag */
5560 cpo_save = p_cpo;
5561 p_cpo = (char_u *)"";
5562 curbuf->b_syn_linecont_prog =
5563 vim_regcomp(curbuf->b_syn_linecont_pat, RE_MAGIC);
5564 p_cpo = cpo_save;
5566 if (curbuf->b_syn_linecont_prog == NULL)
5568 vim_free(curbuf->b_syn_linecont_pat);
5569 curbuf->b_syn_linecont_pat = NULL;
5570 finished = TRUE;
5571 break;
5574 next_arg = skipwhite(arg_end + 1);
5576 else
5578 eap->arg = next_arg;
5579 if (STRCMP(key, "MATCH") == 0)
5580 syn_cmd_match(eap, TRUE);
5581 else if (STRCMP(key, "REGION") == 0)
5582 syn_cmd_region(eap, TRUE);
5583 else if (STRCMP(key, "CLEAR") == 0)
5584 syn_cmd_clear(eap, TRUE);
5585 else
5586 illegal = TRUE;
5587 finished = TRUE;
5588 break;
5590 arg_start = next_arg;
5592 vim_free(key);
5593 if (illegal)
5594 EMSG2(_("E404: Illegal arguments: %s"), arg_start);
5595 else if (!finished)
5597 eap->nextcmd = check_nextcmd(arg_start);
5598 redraw_curbuf_later(SOME_VALID);
5599 syn_stack_free_all(curbuf); /* Need to recompute all syntax. */
5604 * Convert a line of highlight group names into a list of group ID numbers.
5605 * "arg" should point to the "contains" or "nextgroup" keyword.
5606 * "arg" is advanced to after the last group name.
5607 * Careful: the argument is modified (NULs added).
5608 * returns FAIL for some error, OK for success.
5610 static int
5611 get_id_list(arg, keylen, list)
5612 char_u **arg;
5613 int keylen; /* length of keyword */
5614 short **list; /* where to store the resulting list, if not
5615 NULL, the list is silently skipped! */
5617 char_u *p = NULL;
5618 char_u *end;
5619 int round;
5620 int count;
5621 int total_count = 0;
5622 short *retval = NULL;
5623 char_u *name;
5624 regmatch_T regmatch;
5625 int id;
5626 int i;
5627 int failed = FALSE;
5630 * We parse the list twice:
5631 * round == 1: count the number of items, allocate the array.
5632 * round == 2: fill the array with the items.
5633 * In round 1 new groups may be added, causing the number of items to
5634 * grow when a regexp is used. In that case round 1 is done once again.
5636 for (round = 1; round <= 2; ++round)
5639 * skip "contains"
5641 p = skipwhite(*arg + keylen);
5642 if (*p != '=')
5644 EMSG2(_("E405: Missing equal sign: %s"), *arg);
5645 break;
5647 p = skipwhite(p + 1);
5648 if (ends_excmd(*p))
5650 EMSG2(_("E406: Empty argument: %s"), *arg);
5651 break;
5655 * parse the arguments after "contains"
5657 count = 0;
5658 while (!ends_excmd(*p))
5660 for (end = p; *end && !vim_iswhite(*end) && *end != ','; ++end)
5662 name = alloc((int)(end - p + 3)); /* leave room for "^$" */
5663 if (name == NULL)
5665 failed = TRUE;
5666 break;
5668 vim_strncpy(name + 1, p, end - p);
5669 if ( STRCMP(name + 1, "ALLBUT") == 0
5670 || STRCMP(name + 1, "ALL") == 0
5671 || STRCMP(name + 1, "TOP") == 0
5672 || STRCMP(name + 1, "CONTAINED") == 0)
5674 if (TOUPPER_ASC(**arg) != 'C')
5676 EMSG2(_("E407: %s not allowed here"), name + 1);
5677 failed = TRUE;
5678 vim_free(name);
5679 break;
5681 if (count != 0)
5683 EMSG2(_("E408: %s must be first in contains list"), name + 1);
5684 failed = TRUE;
5685 vim_free(name);
5686 break;
5688 if (name[1] == 'A')
5689 id = SYNID_ALLBUT;
5690 else if (name[1] == 'T')
5691 id = SYNID_TOP;
5692 else
5693 id = SYNID_CONTAINED;
5694 id += current_syn_inc_tag;
5696 else if (name[1] == '@')
5698 id = syn_check_cluster(name + 2, (int)(end - p - 1));
5700 else
5703 * Handle full group name.
5705 if (vim_strpbrk(name + 1, (char_u *)"\\.*^$~[") == NULL)
5706 id = syn_check_group(name + 1, (int)(end - p));
5707 else
5710 * Handle match of regexp with group names.
5712 *name = '^';
5713 STRCAT(name, "$");
5714 regmatch.regprog = vim_regcomp(name, RE_MAGIC);
5715 if (regmatch.regprog == NULL)
5717 failed = TRUE;
5718 vim_free(name);
5719 break;
5722 regmatch.rm_ic = TRUE;
5723 id = 0;
5724 for (i = highlight_ga.ga_len; --i >= 0; )
5726 if (vim_regexec(&regmatch, HL_TABLE()[i].sg_name,
5727 (colnr_T)0))
5729 if (round == 2)
5731 /* Got more items than expected; can happen
5732 * when adding items that match:
5733 * "contains=a.*b,axb".
5734 * Go back to first round */
5735 if (count >= total_count)
5737 vim_free(retval);
5738 round = 1;
5740 else
5741 retval[count] = i + 1;
5743 ++count;
5744 id = -1; /* remember that we found one */
5747 vim_free(regmatch.regprog);
5750 vim_free(name);
5751 if (id == 0)
5753 EMSG2(_("E409: Unknown group name: %s"), p);
5754 failed = TRUE;
5755 break;
5757 if (id > 0)
5759 if (round == 2)
5761 /* Got more items than expected, go back to first round */
5762 if (count >= total_count)
5764 vim_free(retval);
5765 round = 1;
5767 else
5768 retval[count] = id;
5770 ++count;
5772 p = skipwhite(end);
5773 if (*p != ',')
5774 break;
5775 p = skipwhite(p + 1); /* skip comma in between arguments */
5777 if (failed)
5778 break;
5779 if (round == 1)
5781 retval = (short *)alloc((unsigned)((count + 1) * sizeof(short)));
5782 if (retval == NULL)
5783 break;
5784 retval[count] = 0; /* zero means end of the list */
5785 total_count = count;
5789 *arg = p;
5790 if (failed || retval == NULL)
5792 vim_free(retval);
5793 return FAIL;
5796 if (*list == NULL)
5797 *list = retval;
5798 else
5799 vim_free(retval); /* list already found, don't overwrite it */
5801 return OK;
5805 * Make a copy of an ID list.
5807 static short *
5808 copy_id_list(list)
5809 short *list;
5811 int len;
5812 int count;
5813 short *retval;
5815 if (list == NULL)
5816 return NULL;
5818 for (count = 0; list[count]; ++count)
5820 len = (count + 1) * sizeof(short);
5821 retval = (short *)alloc((unsigned)len);
5822 if (retval != NULL)
5823 mch_memmove(retval, list, (size_t)len);
5825 return retval;
5829 * Check if syntax group "ssp" is in the ID list "list" of "cur_si".
5830 * "cur_si" can be NULL if not checking the "containedin" list.
5831 * Used to check if a syntax item is in the "contains" or "nextgroup" list of
5832 * the current item.
5833 * This function is called very often, keep it fast!!
5835 static int
5836 in_id_list(cur_si, list, ssp, contained)
5837 stateitem_T *cur_si; /* current item or NULL */
5838 short *list; /* id list */
5839 struct sp_syn *ssp; /* group id and ":syn include" tag of group */
5840 int contained; /* group id is contained */
5842 int retval;
5843 short *scl_list;
5844 short item;
5845 short id = ssp->id;
5846 static int depth = 0;
5847 int r;
5849 /* If spp has a "containedin" list and "cur_si" is in it, return TRUE. */
5850 if (cur_si != NULL && ssp->cont_in_list != NULL
5851 && !(cur_si->si_flags & HL_MATCH))
5853 /* Ignore transparent items without a contains argument. Double check
5854 * that we don't go back past the first one. */
5855 while ((cur_si->si_flags & HL_TRANS_CONT)
5856 && cur_si > (stateitem_T *)(current_state.ga_data))
5857 --cur_si;
5858 /* cur_si->si_idx is -1 for keywords, these never contain anything. */
5859 if (cur_si->si_idx >= 0 && in_id_list(NULL, ssp->cont_in_list,
5860 &(SYN_ITEMS(syn_buf)[cur_si->si_idx].sp_syn),
5861 SYN_ITEMS(syn_buf)[cur_si->si_idx].sp_flags & HL_CONTAINED))
5862 return TRUE;
5865 if (list == NULL)
5866 return FALSE;
5869 * If list is ID_LIST_ALL, we are in a transparent item that isn't
5870 * inside anything. Only allow not-contained groups.
5872 if (list == ID_LIST_ALL)
5873 return !contained;
5876 * If the first item is "ALLBUT", return TRUE if "id" is NOT in the
5877 * contains list. We also require that "id" is at the same ":syn include"
5878 * level as the list.
5880 item = *list;
5881 if (item >= SYNID_ALLBUT && item < SYNID_CLUSTER)
5883 if (item < SYNID_TOP)
5885 /* ALL or ALLBUT: accept all groups in the same file */
5886 if (item - SYNID_ALLBUT != ssp->inc_tag)
5887 return FALSE;
5889 else if (item < SYNID_CONTAINED)
5891 /* TOP: accept all not-contained groups in the same file */
5892 if (item - SYNID_TOP != ssp->inc_tag || contained)
5893 return FALSE;
5895 else
5897 /* CONTAINED: accept all contained groups in the same file */
5898 if (item - SYNID_CONTAINED != ssp->inc_tag || !contained)
5899 return FALSE;
5901 item = *++list;
5902 retval = FALSE;
5904 else
5905 retval = TRUE;
5908 * Return "retval" if id is in the contains list.
5910 while (item != 0)
5912 if (item == id)
5913 return retval;
5914 if (item >= SYNID_CLUSTER)
5916 scl_list = SYN_CLSTR(syn_buf)[item - SYNID_CLUSTER].scl_list;
5917 /* restrict recursiveness to 30 to avoid an endless loop for a
5918 * cluster that includes itself (indirectly) */
5919 if (scl_list != NULL && depth < 30)
5921 ++depth;
5922 r = in_id_list(NULL, scl_list, ssp, contained);
5923 --depth;
5924 if (r)
5925 return retval;
5928 item = *++list;
5930 return !retval;
5933 struct subcommand
5935 char *name; /* subcommand name */
5936 void (*func)__ARGS((exarg_T *, int)); /* function to call */
5939 static struct subcommand subcommands[] =
5941 {"case", syn_cmd_case},
5942 {"clear", syn_cmd_clear},
5943 {"cluster", syn_cmd_cluster},
5944 {"enable", syn_cmd_enable},
5945 {"include", syn_cmd_include},
5946 {"keyword", syn_cmd_keyword},
5947 {"list", syn_cmd_list},
5948 {"manual", syn_cmd_manual},
5949 {"match", syn_cmd_match},
5950 {"on", syn_cmd_on},
5951 {"off", syn_cmd_off},
5952 {"region", syn_cmd_region},
5953 {"reset", syn_cmd_reset},
5954 {"spell", syn_cmd_spell},
5955 {"sync", syn_cmd_sync},
5956 {"", syn_cmd_list},
5957 {NULL, NULL}
5961 * ":syntax".
5962 * This searches the subcommands[] table for the subcommand name, and calls a
5963 * syntax_subcommand() function to do the rest.
5965 void
5966 ex_syntax(eap)
5967 exarg_T *eap;
5969 char_u *arg = eap->arg;
5970 char_u *subcmd_end;
5971 char_u *subcmd_name;
5972 int i;
5974 syn_cmdlinep = eap->cmdlinep;
5976 /* isolate subcommand name */
5977 for (subcmd_end = arg; ASCII_ISALPHA(*subcmd_end); ++subcmd_end)
5979 subcmd_name = vim_strnsave(arg, (int)(subcmd_end - arg));
5980 if (subcmd_name != NULL)
5982 if (eap->skip) /* skip error messages for all subcommands */
5983 ++emsg_skip;
5984 for (i = 0; ; ++i)
5986 if (subcommands[i].name == NULL)
5988 EMSG2(_("E410: Invalid :syntax subcommand: %s"), subcmd_name);
5989 break;
5991 if (STRCMP(subcmd_name, (char_u *)subcommands[i].name) == 0)
5993 eap->arg = skipwhite(subcmd_end);
5994 (subcommands[i].func)(eap, FALSE);
5995 break;
5998 vim_free(subcmd_name);
5999 if (eap->skip)
6000 --emsg_skip;
6005 syntax_present(buf)
6006 buf_T *buf;
6008 return (buf->b_syn_patterns.ga_len != 0
6009 || buf->b_syn_clusters.ga_len != 0
6010 || buf->b_keywtab.ht_used > 0
6011 || buf->b_keywtab_ic.ht_used > 0);
6014 #if defined(FEAT_CMDL_COMPL) || defined(PROTO)
6016 static enum
6018 EXP_SUBCMD, /* expand ":syn" sub-commands */
6019 EXP_CASE /* expand ":syn case" arguments */
6020 } expand_what;
6023 * Reset include_link, include_default, include_none to 0.
6024 * Called when we are done expanding.
6026 void
6027 reset_expand_highlight()
6029 include_link = include_default = include_none = 0;
6033 * Handle command line completion for :match and :echohl command: Add "None"
6034 * as highlight group.
6036 void
6037 set_context_in_echohl_cmd(xp, arg)
6038 expand_T *xp;
6039 char_u *arg;
6041 xp->xp_context = EXPAND_HIGHLIGHT;
6042 xp->xp_pattern = arg;
6043 include_none = 1;
6047 * Handle command line completion for :syntax command.
6049 void
6050 set_context_in_syntax_cmd(xp, arg)
6051 expand_T *xp;
6052 char_u *arg;
6054 char_u *p;
6056 /* Default: expand subcommands */
6057 xp->xp_context = EXPAND_SYNTAX;
6058 expand_what = EXP_SUBCMD;
6059 xp->xp_pattern = arg;
6060 include_link = 0;
6061 include_default = 0;
6063 /* (part of) subcommand already typed */
6064 if (*arg != NUL)
6066 p = skiptowhite(arg);
6067 if (*p != NUL) /* past first word */
6069 xp->xp_pattern = skipwhite(p);
6070 if (*skiptowhite(xp->xp_pattern) != NUL)
6071 xp->xp_context = EXPAND_NOTHING;
6072 else if (STRNICMP(arg, "case", p - arg) == 0)
6073 expand_what = EXP_CASE;
6074 else if ( STRNICMP(arg, "keyword", p - arg) == 0
6075 || STRNICMP(arg, "region", p - arg) == 0
6076 || STRNICMP(arg, "match", p - arg) == 0
6077 || STRNICMP(arg, "list", p - arg) == 0)
6078 xp->xp_context = EXPAND_HIGHLIGHT;
6079 else
6080 xp->xp_context = EXPAND_NOTHING;
6085 static char *(case_args[]) = {"match", "ignore", NULL};
6088 * Function given to ExpandGeneric() to obtain the list syntax names for
6089 * expansion.
6091 char_u *
6092 get_syntax_name(xp, idx)
6093 expand_T *xp UNUSED;
6094 int idx;
6096 if (expand_what == EXP_SUBCMD)
6097 return (char_u *)subcommands[idx].name;
6098 return (char_u *)case_args[idx];
6101 #endif /* FEAT_CMDL_COMPL */
6104 * Function called for expression evaluation: get syntax ID at file position.
6107 syn_get_id(wp, lnum, col, trans, spellp, keep_state)
6108 win_T *wp;
6109 long lnum;
6110 colnr_T col;
6111 int trans; /* remove transparancy */
6112 int *spellp; /* return: can do spell checking */
6113 int keep_state; /* keep state of char at "col" */
6115 /* When the position is not after the current position and in the same
6116 * line of the same buffer, need to restart parsing. */
6117 if (wp->w_buffer != syn_buf
6118 || lnum != current_lnum
6119 || col < current_col)
6120 syntax_start(wp, lnum);
6122 (void)get_syntax_attr(col, spellp, keep_state);
6124 return (trans ? current_trans_id : current_id);
6127 #if defined(FEAT_EVAL) || defined(PROTO)
6129 * Return the syntax ID at position "i" in the current stack.
6130 * The caller must have called syn_get_id() before to fill the stack.
6131 * Returns -1 when "i" is out of range.
6134 syn_get_stack_item(i)
6135 int i;
6137 if (i >= current_state.ga_len)
6139 /* Need to invalidate the state, because we didn't properly finish it
6140 * for the last character, "keep_state" was TRUE. */
6141 invalidate_current_state();
6142 current_col = MAXCOL;
6143 return -1;
6145 return CUR_STATE(i).si_id;
6147 #endif
6149 #if defined(FEAT_FOLDING) || defined(PROTO)
6151 * Function called to get folding level for line "lnum" in window "wp".
6154 syn_get_foldlevel(wp, lnum)
6155 win_T *wp;
6156 long lnum;
6158 int level = 0;
6159 int i;
6161 /* Return quickly when there are no fold items at all. */
6162 if (wp->w_buffer->b_syn_folditems != 0)
6164 syntax_start(wp, lnum);
6166 for (i = 0; i < current_state.ga_len; ++i)
6167 if (CUR_STATE(i).si_flags & HL_FOLD)
6168 ++level;
6170 if (level > wp->w_p_fdn)
6172 level = wp->w_p_fdn;
6173 if (level < 0)
6174 level = 0;
6176 return level;
6178 #endif
6180 #endif /* FEAT_SYN_HL */
6183 /**************************************
6184 * Highlighting stuff *
6185 **************************************/
6188 * The default highlight groups. These are compiled-in for fast startup and
6189 * they still work when the runtime files can't be found.
6190 * When making changes here, also change runtime/colors/default.vim!
6191 * The #ifdefs are needed to reduce the amount of static data. Helps to make
6192 * the 16 bit DOS (museum) version compile.
6194 #ifdef FEAT_GUI
6195 # define CENT(a, b) b
6196 #else
6197 # define CENT(a, b) a
6198 #endif
6199 static char *(highlight_init_both[]) =
6201 CENT("ErrorMsg term=standout ctermbg=DarkRed ctermfg=White",
6202 "ErrorMsg term=standout ctermbg=DarkRed ctermfg=White guibg=Red guifg=White"),
6203 #ifdef FEAT_SEARCH_EXTRA
6204 CENT("IncSearch term=reverse cterm=reverse",
6205 "IncSearch term=reverse cterm=reverse gui=reverse"),
6206 #endif
6207 CENT("ModeMsg term=bold cterm=bold",
6208 "ModeMsg term=bold cterm=bold gui=bold"),
6209 CENT("NonText term=bold ctermfg=Blue",
6210 "NonText term=bold ctermfg=Blue gui=bold guifg=Blue"),
6211 CENT("StatusLine term=reverse,bold cterm=reverse,bold",
6212 "StatusLine term=reverse,bold cterm=reverse,bold gui=reverse,bold"),
6213 CENT("StatusLineNC term=reverse cterm=reverse",
6214 "StatusLineNC term=reverse cterm=reverse gui=reverse"),
6215 #ifdef FEAT_VERTSPLIT
6216 CENT("VertSplit term=reverse cterm=reverse",
6217 "VertSplit term=reverse cterm=reverse gui=reverse"),
6218 #endif
6219 #ifdef FEAT_CLIPBOARD
6220 CENT("VisualNOS term=underline,bold cterm=underline,bold",
6221 "VisualNOS term=underline,bold cterm=underline,bold gui=underline,bold"),
6222 #endif
6223 #ifdef FEAT_DIFF
6224 CENT("DiffText term=reverse cterm=bold ctermbg=Red",
6225 "DiffText term=reverse cterm=bold ctermbg=Red gui=bold guibg=Red"),
6226 #endif
6227 #ifdef FEAT_INS_EXPAND
6228 CENT("PmenuThumb cterm=reverse",
6229 "PmenuThumb cterm=reverse gui=reverse"),
6230 CENT("PmenuSbar ctermbg=Grey",
6231 "PmenuSbar ctermbg=Grey guibg=Grey"),
6232 #endif
6233 #ifdef FEAT_WINDOWS
6234 CENT("TabLineSel term=bold cterm=bold",
6235 "TabLineSel term=bold cterm=bold gui=bold"),
6236 CENT("TabLineFill term=reverse cterm=reverse",
6237 "TabLineFill term=reverse cterm=reverse gui=reverse"),
6238 #endif
6239 #ifdef FEAT_GUI
6240 "Cursor guibg=fg guifg=bg",
6241 "lCursor guibg=fg guifg=bg", /* should be different, but what? */
6242 #endif
6243 NULL
6246 static char *(highlight_init_light[]) =
6248 CENT("Directory term=bold ctermfg=DarkBlue",
6249 "Directory term=bold ctermfg=DarkBlue guifg=Blue"),
6250 CENT("LineNr term=underline ctermfg=Brown",
6251 "LineNr term=underline ctermfg=Brown guifg=Brown"),
6252 CENT("MoreMsg term=bold ctermfg=DarkGreen",
6253 "MoreMsg term=bold ctermfg=DarkGreen gui=bold guifg=SeaGreen"),
6254 CENT("Question term=standout ctermfg=DarkGreen",
6255 "Question term=standout ctermfg=DarkGreen gui=bold guifg=SeaGreen"),
6256 CENT("Search term=reverse ctermbg=Yellow ctermfg=NONE",
6257 "Search term=reverse ctermbg=Yellow ctermfg=NONE guibg=Yellow guifg=NONE"),
6258 #ifdef FEAT_SPELL
6259 CENT("SpellBad term=reverse ctermbg=LightRed",
6260 "SpellBad term=reverse ctermbg=LightRed guisp=Red gui=undercurl"),
6261 CENT("SpellCap term=reverse ctermbg=LightBlue",
6262 "SpellCap term=reverse ctermbg=LightBlue guisp=Blue gui=undercurl"),
6263 CENT("SpellRare term=reverse ctermbg=LightMagenta",
6264 "SpellRare term=reverse ctermbg=LightMagenta guisp=Magenta gui=undercurl"),
6265 CENT("SpellLocal term=underline ctermbg=Cyan",
6266 "SpellLocal term=underline ctermbg=Cyan guisp=DarkCyan gui=undercurl"),
6267 #endif
6268 #ifdef FEAT_INS_EXPAND
6269 CENT("Pmenu ctermbg=LightMagenta",
6270 "Pmenu ctermbg=LightMagenta guibg=LightMagenta"),
6271 CENT("PmenuSel ctermbg=LightGrey",
6272 "PmenuSel ctermbg=LightGrey guibg=Grey"),
6273 #endif
6274 CENT("SpecialKey term=bold ctermfg=DarkBlue",
6275 "SpecialKey term=bold ctermfg=DarkBlue guifg=Blue"),
6276 CENT("Title term=bold ctermfg=DarkMagenta",
6277 "Title term=bold ctermfg=DarkMagenta gui=bold guifg=Magenta"),
6278 CENT("WarningMsg term=standout ctermfg=DarkRed",
6279 "WarningMsg term=standout ctermfg=DarkRed guifg=Red"),
6280 #ifdef FEAT_WILDMENU
6281 CENT("WildMenu term=standout ctermbg=Yellow ctermfg=Black",
6282 "WildMenu term=standout ctermbg=Yellow ctermfg=Black guibg=Yellow guifg=Black"),
6283 #endif
6284 #ifdef FEAT_FOLDING
6285 CENT("Folded term=standout ctermbg=Grey ctermfg=DarkBlue",
6286 "Folded term=standout ctermbg=Grey ctermfg=DarkBlue guibg=LightGrey guifg=DarkBlue"),
6287 CENT("FoldColumn term=standout ctermbg=Grey ctermfg=DarkBlue",
6288 "FoldColumn term=standout ctermbg=Grey ctermfg=DarkBlue guibg=Grey guifg=DarkBlue"),
6289 #endif
6290 #ifdef FEAT_SIGNS
6291 CENT("SignColumn term=standout ctermbg=Grey ctermfg=DarkBlue",
6292 "SignColumn term=standout ctermbg=Grey ctermfg=DarkBlue guibg=Grey guifg=DarkBlue"),
6293 #endif
6294 #ifdef FEAT_VISUAL
6295 CENT("Visual term=reverse",
6296 "Visual term=reverse guibg=LightGrey"),
6297 #endif
6298 #ifdef FEAT_DIFF
6299 CENT("DiffAdd term=bold ctermbg=LightBlue",
6300 "DiffAdd term=bold ctermbg=LightBlue guibg=LightBlue"),
6301 CENT("DiffChange term=bold ctermbg=LightMagenta",
6302 "DiffChange term=bold ctermbg=LightMagenta guibg=LightMagenta"),
6303 CENT("DiffDelete term=bold ctermfg=Blue ctermbg=LightCyan",
6304 "DiffDelete term=bold ctermfg=Blue ctermbg=LightCyan gui=bold guifg=Blue guibg=LightCyan"),
6305 #endif
6306 #ifdef FEAT_WINDOWS
6307 CENT("TabLine term=underline cterm=underline ctermfg=black ctermbg=LightGrey",
6308 "TabLine term=underline cterm=underline ctermfg=black ctermbg=LightGrey gui=underline guibg=LightGrey"),
6309 #endif
6310 #ifdef FEAT_SYN_HL
6311 CENT("CursorColumn term=reverse ctermbg=LightGrey",
6312 "CursorColumn term=reverse ctermbg=LightGrey guibg=Grey90"),
6313 CENT("CursorLine term=underline cterm=underline",
6314 "CursorLine term=underline cterm=underline guibg=Grey90"),
6315 #endif
6316 #ifdef FEAT_AUTOCMD
6317 CENT("MatchParen term=reverse ctermbg=Cyan",
6318 "MatchParen term=reverse ctermbg=Cyan guibg=Cyan"),
6319 #endif
6320 #ifdef FEAT_GUI
6321 "Normal gui=NONE",
6322 #endif
6323 NULL
6326 static char *(highlight_init_dark[]) =
6328 CENT("Directory term=bold ctermfg=LightCyan",
6329 "Directory term=bold ctermfg=LightCyan guifg=Cyan"),
6330 CENT("LineNr term=underline ctermfg=Yellow",
6331 "LineNr term=underline ctermfg=Yellow guifg=Yellow"),
6332 CENT("MoreMsg term=bold ctermfg=LightGreen",
6333 "MoreMsg term=bold ctermfg=LightGreen gui=bold guifg=SeaGreen"),
6334 CENT("Question term=standout ctermfg=LightGreen",
6335 "Question term=standout ctermfg=LightGreen gui=bold guifg=Green"),
6336 CENT("Search term=reverse ctermbg=Yellow ctermfg=Black",
6337 "Search term=reverse ctermbg=Yellow ctermfg=Black guibg=Yellow guifg=Black"),
6338 CENT("SpecialKey term=bold ctermfg=LightBlue",
6339 "SpecialKey term=bold ctermfg=LightBlue guifg=Cyan"),
6340 #ifdef FEAT_SPELL
6341 CENT("SpellBad term=reverse ctermbg=Red",
6342 "SpellBad term=reverse ctermbg=Red guisp=Red gui=undercurl"),
6343 CENT("SpellCap term=reverse ctermbg=Blue",
6344 "SpellCap term=reverse ctermbg=Blue guisp=Blue gui=undercurl"),
6345 CENT("SpellRare term=reverse ctermbg=Magenta",
6346 "SpellRare term=reverse ctermbg=Magenta guisp=Magenta gui=undercurl"),
6347 CENT("SpellLocal term=underline ctermbg=Cyan",
6348 "SpellLocal term=underline ctermbg=Cyan guisp=Cyan gui=undercurl"),
6349 #endif
6350 #ifdef FEAT_INS_EXPAND
6351 CENT("Pmenu ctermbg=Magenta",
6352 "Pmenu ctermbg=Magenta guibg=Magenta"),
6353 CENT("PmenuSel ctermbg=DarkGrey",
6354 "PmenuSel ctermbg=DarkGrey guibg=DarkGrey"),
6355 #endif
6356 CENT("Title term=bold ctermfg=LightMagenta",
6357 "Title term=bold ctermfg=LightMagenta gui=bold guifg=Magenta"),
6358 CENT("WarningMsg term=standout ctermfg=LightRed",
6359 "WarningMsg term=standout ctermfg=LightRed guifg=Red"),
6360 #ifdef FEAT_WILDMENU
6361 CENT("WildMenu term=standout ctermbg=Yellow ctermfg=Black",
6362 "WildMenu term=standout ctermbg=Yellow ctermfg=Black guibg=Yellow guifg=Black"),
6363 #endif
6364 #ifdef FEAT_FOLDING
6365 CENT("Folded term=standout ctermbg=DarkGrey ctermfg=Cyan",
6366 "Folded term=standout ctermbg=DarkGrey ctermfg=Cyan guibg=DarkGrey guifg=Cyan"),
6367 CENT("FoldColumn term=standout ctermbg=DarkGrey ctermfg=Cyan",
6368 "FoldColumn term=standout ctermbg=DarkGrey ctermfg=Cyan guibg=Grey guifg=Cyan"),
6369 #endif
6370 #ifdef FEAT_SIGNS
6371 CENT("SignColumn term=standout ctermbg=DarkGrey ctermfg=Cyan",
6372 "SignColumn term=standout ctermbg=DarkGrey ctermfg=Cyan guibg=Grey guifg=Cyan"),
6373 #endif
6374 #ifdef FEAT_VISUAL
6375 CENT("Visual term=reverse",
6376 "Visual term=reverse guibg=DarkGrey"),
6377 #endif
6378 #ifdef FEAT_DIFF
6379 CENT("DiffAdd term=bold ctermbg=DarkBlue",
6380 "DiffAdd term=bold ctermbg=DarkBlue guibg=DarkBlue"),
6381 CENT("DiffChange term=bold ctermbg=DarkMagenta",
6382 "DiffChange term=bold ctermbg=DarkMagenta guibg=DarkMagenta"),
6383 CENT("DiffDelete term=bold ctermfg=Blue ctermbg=DarkCyan",
6384 "DiffDelete term=bold ctermfg=Blue ctermbg=DarkCyan gui=bold guifg=Blue guibg=DarkCyan"),
6385 #endif
6386 #ifdef FEAT_WINDOWS
6387 CENT("TabLine term=underline cterm=underline ctermfg=white ctermbg=DarkGrey",
6388 "TabLine term=underline cterm=underline ctermfg=white ctermbg=DarkGrey gui=underline guibg=DarkGrey"),
6389 #endif
6390 #ifdef FEAT_SYN_HL
6391 CENT("CursorColumn term=reverse ctermbg=DarkGrey",
6392 "CursorColumn term=reverse ctermbg=DarkGrey guibg=Grey40"),
6393 CENT("CursorLine term=underline cterm=underline",
6394 "CursorLine term=underline cterm=underline guibg=Grey40"),
6395 #endif
6396 #ifdef FEAT_AUTOCMD
6397 CENT("MatchParen term=reverse ctermbg=DarkCyan",
6398 "MatchParen term=reverse ctermbg=DarkCyan guibg=DarkCyan"),
6399 #endif
6400 #ifdef FEAT_GUI
6401 "Normal gui=NONE",
6402 #endif
6403 NULL
6406 void
6407 init_highlight(both, reset)
6408 int both; /* include groups where 'bg' doesn't matter */
6409 int reset; /* clear group first */
6411 int i;
6412 char **pp;
6413 static int had_both = FALSE;
6414 #ifdef FEAT_EVAL
6415 char_u *p;
6418 * Try finding the color scheme file. Used when a color file was loaded
6419 * and 'background' or 't_Co' is changed.
6421 p = get_var_value((char_u *)"g:colors_name");
6422 if (p != NULL && load_colors(p) == OK)
6423 return;
6424 #endif
6427 * Didn't use a color file, use the compiled-in colors.
6429 if (both)
6431 had_both = TRUE;
6432 pp = highlight_init_both;
6433 for (i = 0; pp[i] != NULL; ++i)
6434 do_highlight((char_u *)pp[i], reset, TRUE);
6436 else if (!had_both)
6437 /* Don't do anything before the call with both == TRUE from main().
6438 * Not everything has been setup then, and that call will overrule
6439 * everything anyway. */
6440 return;
6442 if (*p_bg == 'l')
6443 pp = highlight_init_light;
6444 else
6445 pp = highlight_init_dark;
6446 for (i = 0; pp[i] != NULL; ++i)
6447 do_highlight((char_u *)pp[i], reset, TRUE);
6449 /* Reverse looks ugly, but grey may not work for 8 colors. Thus let it
6450 * depend on the number of colors available.
6451 * With 8 colors brown is equal to yellow, need to use black for Search fg
6452 * to avoid Statement highlighted text disappears.
6453 * Clear the attributes, needed when changing the t_Co value. */
6454 if (t_colors > 8)
6455 do_highlight((char_u *)(*p_bg == 'l'
6456 ? "Visual cterm=NONE ctermbg=LightGrey"
6457 : "Visual cterm=NONE ctermbg=DarkGrey"), FALSE, TRUE);
6458 else
6460 do_highlight((char_u *)"Visual cterm=reverse ctermbg=NONE",
6461 FALSE, TRUE);
6462 if (*p_bg == 'l')
6463 do_highlight((char_u *)"Search ctermfg=black", FALSE, TRUE);
6466 #ifdef FEAT_SYN_HL
6468 * If syntax highlighting is enabled load the highlighting for it.
6470 if (get_var_value((char_u *)"g:syntax_on") != NULL)
6472 static int recursive = 0;
6474 if (recursive >= 5)
6475 EMSG(_("E679: recursive loop loading syncolor.vim"));
6476 else
6478 ++recursive;
6479 (void)source_runtime((char_u *)"syntax/syncolor.vim", TRUE);
6480 --recursive;
6483 #endif
6487 * Load color file "name".
6488 * Return OK for success, FAIL for failure.
6491 load_colors(name)
6492 char_u *name;
6494 char_u *buf;
6495 int retval = FAIL;
6496 static int recursive = FALSE;
6498 /* When being called recursively, this is probably because setting
6499 * 'background' caused the highlighting to be reloaded. This means it is
6500 * working, thus we should return OK. */
6501 if (recursive)
6502 return OK;
6504 recursive = TRUE;
6505 buf = alloc((unsigned)(STRLEN(name) + 12));
6506 if (buf != NULL)
6508 sprintf((char *)buf, "colors/%s.vim", name);
6509 retval = source_runtime(buf, FALSE);
6510 vim_free(buf);
6511 #ifdef FEAT_AUTOCMD
6512 apply_autocmds(EVENT_COLORSCHEME, NULL, NULL, FALSE, curbuf);
6513 #endif
6515 recursive = FALSE;
6517 return retval;
6521 * Handle the ":highlight .." command.
6522 * When using ":hi clear" this is called recursively for each group with
6523 * "forceit" and "init" both TRUE.
6525 void
6526 do_highlight(line, forceit, init)
6527 char_u *line;
6528 int forceit;
6529 int init; /* TRUE when called for initializing */
6531 char_u *name_end;
6532 char_u *p;
6533 char_u *linep;
6534 char_u *key_start;
6535 char_u *arg_start;
6536 char_u *key = NULL, *arg = NULL;
6537 long i;
6538 int off;
6539 int len;
6540 int attr;
6541 int id;
6542 int idx;
6543 int dodefault = FALSE;
6544 int doclear = FALSE;
6545 int dolink = FALSE;
6546 int error = FALSE;
6547 int color;
6548 int is_normal_group = FALSE; /* "Normal" group */
6549 #ifdef FEAT_GUI_X11
6550 int is_menu_group = FALSE; /* "Menu" group */
6551 int is_scrollbar_group = FALSE; /* "Scrollbar" group */
6552 int is_tooltip_group = FALSE; /* "Tooltip" group */
6553 int do_colors = FALSE; /* need to update colors? */
6554 #else
6555 # define is_menu_group 0
6556 # define is_tooltip_group 0
6557 #endif
6560 * If no argument, list current highlighting.
6562 if (ends_excmd(*line))
6564 for (i = 1; i <= highlight_ga.ga_len && !got_int; ++i)
6565 /* TODO: only call when the group has attributes set */
6566 highlight_list_one((int)i);
6567 return;
6571 * Isolate the name.
6573 name_end = skiptowhite(line);
6574 linep = skipwhite(name_end);
6577 * Check for "default" argument.
6579 if (STRNCMP(line, "default", name_end - line) == 0)
6581 dodefault = TRUE;
6582 line = linep;
6583 name_end = skiptowhite(line);
6584 linep = skipwhite(name_end);
6588 * Check for "clear" or "link" argument.
6590 if (STRNCMP(line, "clear", name_end - line) == 0)
6591 doclear = TRUE;
6592 if (STRNCMP(line, "link", name_end - line) == 0)
6593 dolink = TRUE;
6596 * ":highlight {group-name}": list highlighting for one group.
6598 if (!doclear && !dolink && ends_excmd(*linep))
6600 id = syn_namen2id(line, (int)(name_end - line));
6601 if (id == 0)
6602 EMSG2(_("E411: highlight group not found: %s"), line);
6603 else
6604 highlight_list_one(id);
6605 return;
6609 * Handle ":highlight link {from} {to}" command.
6611 if (dolink)
6613 char_u *from_start = linep;
6614 char_u *from_end;
6615 char_u *to_start;
6616 char_u *to_end;
6617 int from_id;
6618 int to_id;
6620 from_end = skiptowhite(from_start);
6621 to_start = skipwhite(from_end);
6622 to_end = skiptowhite(to_start);
6624 if (ends_excmd(*from_start) || ends_excmd(*to_start))
6626 EMSG2(_("E412: Not enough arguments: \":highlight link %s\""),
6627 from_start);
6628 return;
6631 if (!ends_excmd(*skipwhite(to_end)))
6633 EMSG2(_("E413: Too many arguments: \":highlight link %s\""), from_start);
6634 return;
6637 from_id = syn_check_group(from_start, (int)(from_end - from_start));
6638 if (STRNCMP(to_start, "NONE", 4) == 0)
6639 to_id = 0;
6640 else
6641 to_id = syn_check_group(to_start, (int)(to_end - to_start));
6643 if (from_id > 0 && (!init || HL_TABLE()[from_id - 1].sg_set == 0))
6646 * Don't allow a link when there already is some highlighting
6647 * for the group, unless '!' is used
6649 if (to_id > 0 && !forceit && !init
6650 && hl_has_settings(from_id - 1, dodefault))
6652 if (sourcing_name == NULL && !dodefault)
6653 EMSG(_("E414: group has settings, highlight link ignored"));
6655 else
6657 if (!init)
6658 HL_TABLE()[from_id - 1].sg_set |= SG_LINK;
6659 HL_TABLE()[from_id - 1].sg_link = to_id;
6660 #ifdef FEAT_EVAL
6661 HL_TABLE()[from_id - 1].sg_scriptID = current_SID;
6662 #endif
6663 redraw_all_later(SOME_VALID);
6667 /* Only call highlight_changed() once, after sourcing a syntax file */
6668 need_highlight_changed = TRUE;
6670 return;
6673 if (doclear)
6676 * ":highlight clear [group]" command.
6678 line = linep;
6679 if (ends_excmd(*line))
6681 #ifdef FEAT_GUI
6682 /* First, we do not destroy the old values, but allocate the new
6683 * ones and update the display. THEN we destroy the old values.
6684 * If we destroy the old values first, then the old values
6685 * (such as GuiFont's or GuiFontset's) will still be displayed but
6686 * invalid because they were free'd.
6688 if (gui.in_use)
6690 # ifdef FEAT_BEVAL_TIP
6691 gui_init_tooltip_font();
6692 # endif
6693 # if defined(FEAT_MENU) && (defined(FEAT_GUI_ATHENA) || defined(FEAT_GUI_MOTIF))
6694 gui_init_menu_font();
6695 # endif
6697 # if defined(FEAT_GUI_MSWIN) || defined(FEAT_GUI_X11) \
6698 || defined(FEAT_GUI_MACVIM)
6699 gui_mch_def_colors();
6700 # endif
6701 # ifdef FEAT_GUI_X11
6702 # ifdef FEAT_MENU
6704 /* This only needs to be done when there is no Menu highlight
6705 * group defined by default, which IS currently the case.
6707 gui_mch_new_menu_colors();
6708 # endif
6709 if (gui.in_use)
6711 gui_new_scrollbar_colors();
6712 # ifdef FEAT_BEVAL
6713 gui_mch_new_tooltip_colors();
6714 # endif
6715 # ifdef FEAT_MENU
6716 gui_mch_new_menu_font();
6717 # endif
6719 # endif
6721 /* Ok, we're done allocating the new default graphics items.
6722 * The screen should already be refreshed at this point.
6723 * It is now Ok to clear out the old data.
6725 #endif
6726 #ifdef FEAT_EVAL
6727 do_unlet((char_u *)"colors_name", TRUE);
6728 #endif
6729 restore_cterm_colors();
6732 * Clear all default highlight groups and load the defaults.
6734 for (idx = 0; idx < highlight_ga.ga_len; ++idx)
6735 highlight_clear(idx);
6736 init_highlight(TRUE, TRUE);
6737 #ifdef FEAT_GUI
6738 if (gui.in_use)
6739 highlight_gui_started();
6740 #endif
6741 highlight_changed();
6742 redraw_later_clear();
6743 return;
6745 name_end = skiptowhite(line);
6746 linep = skipwhite(name_end);
6750 * Find the group name in the table. If it does not exist yet, add it.
6752 id = syn_check_group(line, (int)(name_end - line));
6753 if (id == 0) /* failed (out of memory) */
6754 return;
6755 idx = id - 1; /* index is ID minus one */
6757 /* Return if "default" was used and the group already has settings. */
6758 if (dodefault && hl_has_settings(idx, TRUE))
6759 return;
6761 if (STRCMP(HL_TABLE()[idx].sg_name_u, "NORMAL") == 0)
6762 is_normal_group = TRUE;
6763 #ifdef FEAT_GUI_X11
6764 else if (STRCMP(HL_TABLE()[idx].sg_name_u, "MENU") == 0)
6765 is_menu_group = TRUE;
6766 else if (STRCMP(HL_TABLE()[idx].sg_name_u, "SCROLLBAR") == 0)
6767 is_scrollbar_group = TRUE;
6768 else if (STRCMP(HL_TABLE()[idx].sg_name_u, "TOOLTIP") == 0)
6769 is_tooltip_group = TRUE;
6770 #endif
6772 /* Clear the highlighting for ":hi clear {group}" and ":hi clear". */
6773 if (doclear || (forceit && init))
6775 highlight_clear(idx);
6776 if (!doclear)
6777 HL_TABLE()[idx].sg_set = 0;
6780 if (!doclear)
6781 while (!ends_excmd(*linep))
6783 key_start = linep;
6784 if (*linep == '=')
6786 EMSG2(_("E415: unexpected equal sign: %s"), key_start);
6787 error = TRUE;
6788 break;
6792 * Isolate the key ("term", "ctermfg", "ctermbg", "font", "guifg" or
6793 * "guibg").
6795 while (*linep && !vim_iswhite(*linep) && *linep != '=')
6796 ++linep;
6797 vim_free(key);
6798 key = vim_strnsave_up(key_start, (int)(linep - key_start));
6799 if (key == NULL)
6801 error = TRUE;
6802 break;
6804 linep = skipwhite(linep);
6806 if (STRCMP(key, "NONE") == 0)
6808 if (!init || HL_TABLE()[idx].sg_set == 0)
6810 if (!init)
6811 HL_TABLE()[idx].sg_set |= SG_TERM+SG_CTERM+SG_GUI;
6812 highlight_clear(idx);
6814 continue;
6818 * Check for the equal sign.
6820 if (*linep != '=')
6822 EMSG2(_("E416: missing equal sign: %s"), key_start);
6823 error = TRUE;
6824 break;
6826 ++linep;
6829 * Isolate the argument.
6831 linep = skipwhite(linep);
6832 if (*linep == '\'') /* guifg='color name' */
6834 arg_start = ++linep;
6835 linep = vim_strchr(linep, '\'');
6836 if (linep == NULL)
6838 EMSG2(_(e_invarg2), key_start);
6839 error = TRUE;
6840 break;
6843 else
6845 arg_start = linep;
6846 linep = skiptowhite(linep);
6848 if (linep == arg_start)
6850 EMSG2(_("E417: missing argument: %s"), key_start);
6851 error = TRUE;
6852 break;
6854 vim_free(arg);
6855 arg = vim_strnsave(arg_start, (int)(linep - arg_start));
6856 if (arg == NULL)
6858 error = TRUE;
6859 break;
6861 if (*linep == '\'')
6862 ++linep;
6865 * Store the argument.
6867 if ( STRCMP(key, "TERM") == 0
6868 || STRCMP(key, "CTERM") == 0
6869 || STRCMP(key, "GUI") == 0)
6871 attr = 0;
6872 off = 0;
6873 while (arg[off] != NUL)
6875 for (i = sizeof(hl_attr_table) / sizeof(int); --i >= 0; )
6877 len = (int)STRLEN(hl_name_table[i]);
6878 if (STRNICMP(arg + off, hl_name_table[i], len) == 0)
6880 attr |= hl_attr_table[i];
6881 off += len;
6882 break;
6885 if (i < 0)
6887 EMSG2(_("E418: Illegal value: %s"), arg);
6888 error = TRUE;
6889 break;
6891 if (arg[off] == ',') /* another one follows */
6892 ++off;
6894 if (error)
6895 break;
6896 if (*key == 'T')
6898 if (!init || !(HL_TABLE()[idx].sg_set & SG_TERM))
6900 if (!init)
6901 HL_TABLE()[idx].sg_set |= SG_TERM;
6902 HL_TABLE()[idx].sg_term = attr;
6905 else if (*key == 'C')
6907 if (!init || !(HL_TABLE()[idx].sg_set & SG_CTERM))
6909 if (!init)
6910 HL_TABLE()[idx].sg_set |= SG_CTERM;
6911 HL_TABLE()[idx].sg_cterm = attr;
6912 HL_TABLE()[idx].sg_cterm_bold = FALSE;
6915 #ifdef FEAT_GUI
6916 else
6918 if (!init || !(HL_TABLE()[idx].sg_set & SG_GUI))
6920 if (!init)
6921 HL_TABLE()[idx].sg_set |= SG_GUI;
6922 HL_TABLE()[idx].sg_gui = attr;
6925 #endif
6927 else if (STRCMP(key, "FONT") == 0)
6929 /* in non-GUI fonts are simply ignored */
6930 #ifdef FEAT_GUI
6931 if (!gui.shell_created)
6933 /* GUI not started yet, always accept the name. */
6934 vim_free(HL_TABLE()[idx].sg_font_name);
6935 HL_TABLE()[idx].sg_font_name = vim_strsave(arg);
6937 else
6939 GuiFont temp_sg_font = HL_TABLE()[idx].sg_font;
6940 # ifdef FEAT_XFONTSET
6941 GuiFontset temp_sg_fontset = HL_TABLE()[idx].sg_fontset;
6942 # endif
6943 /* First, save the current font/fontset.
6944 * Then try to allocate the font/fontset.
6945 * If the allocation fails, HL_TABLE()[idx].sg_font OR
6946 * sg_fontset will be set to NOFONT or NOFONTSET respectively.
6949 HL_TABLE()[idx].sg_font = NOFONT;
6950 # ifdef FEAT_XFONTSET
6951 HL_TABLE()[idx].sg_fontset = NOFONTSET;
6952 # endif
6953 hl_do_font(idx, arg, is_normal_group, is_menu_group,
6954 is_tooltip_group);
6956 # ifdef FEAT_XFONTSET
6957 if (HL_TABLE()[idx].sg_fontset != NOFONTSET)
6959 /* New fontset was accepted. Free the old one, if there was
6960 * one.
6962 gui_mch_free_fontset(temp_sg_fontset);
6963 vim_free(HL_TABLE()[idx].sg_font_name);
6964 HL_TABLE()[idx].sg_font_name = vim_strsave(arg);
6966 else
6967 HL_TABLE()[idx].sg_fontset = temp_sg_fontset;
6968 # endif
6969 if (HL_TABLE()[idx].sg_font != NOFONT)
6971 /* New font was accepted. Free the old one, if there was
6972 * one.
6974 gui_mch_free_font(temp_sg_font);
6975 vim_free(HL_TABLE()[idx].sg_font_name);
6976 HL_TABLE()[idx].sg_font_name = vim_strsave(arg);
6978 else
6979 HL_TABLE()[idx].sg_font = temp_sg_font;
6981 #endif
6983 else if (STRCMP(key, "CTERMFG") == 0 || STRCMP(key, "CTERMBG") == 0)
6985 if (!init || !(HL_TABLE()[idx].sg_set & SG_CTERM))
6987 if (!init)
6988 HL_TABLE()[idx].sg_set |= SG_CTERM;
6990 /* When setting the foreground color, and previously the "bold"
6991 * flag was set for a light color, reset it now */
6992 if (key[5] == 'F' && HL_TABLE()[idx].sg_cterm_bold)
6994 HL_TABLE()[idx].sg_cterm &= ~HL_BOLD;
6995 HL_TABLE()[idx].sg_cterm_bold = FALSE;
6998 if (VIM_ISDIGIT(*arg))
6999 color = atoi((char *)arg);
7000 else if (STRICMP(arg, "fg") == 0)
7002 if (cterm_normal_fg_color)
7003 color = cterm_normal_fg_color - 1;
7004 else
7006 EMSG(_("E419: FG color unknown"));
7007 error = TRUE;
7008 break;
7011 else if (STRICMP(arg, "bg") == 0)
7013 if (cterm_normal_bg_color > 0)
7014 color = cterm_normal_bg_color - 1;
7015 else
7017 EMSG(_("E420: BG color unknown"));
7018 error = TRUE;
7019 break;
7022 else
7024 static char *(color_names[28]) = {
7025 "Black", "DarkBlue", "DarkGreen", "DarkCyan",
7026 "DarkRed", "DarkMagenta", "Brown", "DarkYellow",
7027 "Gray", "Grey",
7028 "LightGray", "LightGrey", "DarkGray", "DarkGrey",
7029 "Blue", "LightBlue", "Green", "LightGreen",
7030 "Cyan", "LightCyan", "Red", "LightRed", "Magenta",
7031 "LightMagenta", "Yellow", "LightYellow", "White", "NONE"};
7032 static int color_numbers_16[28] = {0, 1, 2, 3,
7033 4, 5, 6, 6,
7034 7, 7,
7035 7, 7, 8, 8,
7036 9, 9, 10, 10,
7037 11, 11, 12, 12, 13,
7038 13, 14, 14, 15, -1};
7039 /* for xterm with 88 colors... */
7040 static int color_numbers_88[28] = {0, 4, 2, 6,
7041 1, 5, 32, 72,
7042 84, 84,
7043 7, 7, 82, 82,
7044 12, 43, 10, 61,
7045 14, 63, 9, 74, 13,
7046 75, 11, 78, 15, -1};
7047 /* for xterm with 256 colors... */
7048 static int color_numbers_256[28] = {0, 4, 2, 6,
7049 1, 5, 130, 130,
7050 248, 248,
7051 7, 7, 242, 242,
7052 12, 81, 10, 121,
7053 14, 159, 9, 224, 13,
7054 225, 11, 229, 15, -1};
7055 /* for terminals with less than 16 colors... */
7056 static int color_numbers_8[28] = {0, 4, 2, 6,
7057 1, 5, 3, 3,
7058 7, 7,
7059 7, 7, 0+8, 0+8,
7060 4+8, 4+8, 2+8, 2+8,
7061 6+8, 6+8, 1+8, 1+8, 5+8,
7062 5+8, 3+8, 3+8, 7+8, -1};
7063 #if defined(__QNXNTO__)
7064 static int *color_numbers_8_qansi = color_numbers_8;
7065 /* On qnx, the 8 & 16 color arrays are the same */
7066 if (STRNCMP(T_NAME, "qansi", 5) == 0)
7067 color_numbers_8_qansi = color_numbers_16;
7068 #endif
7070 /* reduce calls to STRICMP a bit, it can be slow */
7071 off = TOUPPER_ASC(*arg);
7072 for (i = (sizeof(color_names) / sizeof(char *)); --i >= 0; )
7073 if (off == color_names[i][0]
7074 && STRICMP(arg + 1, color_names[i] + 1) == 0)
7075 break;
7076 if (i < 0)
7078 EMSG2(_("E421: Color name or number not recognized: %s"), key_start);
7079 error = TRUE;
7080 break;
7083 /* Use the _16 table to check if its a valid color name. */
7084 color = color_numbers_16[i];
7085 if (color >= 0)
7087 if (t_colors == 8)
7089 /* t_Co is 8: use the 8 colors table */
7090 #if defined(__QNXNTO__)
7091 color = color_numbers_8_qansi[i];
7092 #else
7093 color = color_numbers_8[i];
7094 #endif
7095 if (key[5] == 'F')
7097 /* set/reset bold attribute to get light foreground
7098 * colors (on some terminals, e.g. "linux") */
7099 if (color & 8)
7101 HL_TABLE()[idx].sg_cterm |= HL_BOLD;
7102 HL_TABLE()[idx].sg_cterm_bold = TRUE;
7104 else
7105 HL_TABLE()[idx].sg_cterm &= ~HL_BOLD;
7107 color &= 7; /* truncate to 8 colors */
7109 else if (t_colors == 16 || t_colors == 88
7110 || t_colors == 256)
7113 * Guess: if the termcap entry ends in 'm', it is
7114 * probably an xterm-like terminal. Use the changed
7115 * order for colors.
7117 if (*T_CAF != NUL)
7118 p = T_CAF;
7119 else
7120 p = T_CSF;
7121 if (*p != NUL && *(p + STRLEN(p) - 1) == 'm')
7122 switch (t_colors)
7124 case 16:
7125 color = color_numbers_8[i];
7126 break;
7127 case 88:
7128 color = color_numbers_88[i];
7129 break;
7130 case 256:
7131 color = color_numbers_256[i];
7132 break;
7137 /* Add one to the argument, to avoid zero */
7138 if (key[5] == 'F')
7140 HL_TABLE()[idx].sg_cterm_fg = color + 1;
7141 if (is_normal_group)
7143 cterm_normal_fg_color = color + 1;
7144 cterm_normal_fg_bold = (HL_TABLE()[idx].sg_cterm & HL_BOLD);
7145 #ifdef FEAT_GUI
7146 /* Don't do this if the GUI is used. */
7147 if (!gui.in_use && !gui.starting)
7148 #endif
7150 must_redraw = CLEAR;
7151 if (termcap_active)
7152 term_fg_color(color);
7156 else
7158 HL_TABLE()[idx].sg_cterm_bg = color + 1;
7159 if (is_normal_group)
7161 cterm_normal_bg_color = color + 1;
7162 #ifdef FEAT_GUI
7163 /* Don't mess with 'background' if the GUI is used. */
7164 if (!gui.in_use && !gui.starting)
7165 #endif
7167 must_redraw = CLEAR;
7168 if (termcap_active)
7169 term_bg_color(color);
7170 if (t_colors < 16)
7171 i = (color == 0 || color == 4);
7172 else
7173 i = (color < 7 || color == 8);
7174 /* Set the 'background' option if the value is wrong. */
7175 if (i != (*p_bg == 'd'))
7176 set_option_value((char_u *)"bg", 0L,
7177 i ? (char_u *)"dark" : (char_u *)"light", 0);
7183 else if (STRCMP(key, "GUIFG") == 0)
7185 #ifdef FEAT_GUI /* in non-GUI guifg colors are simply ignored */
7186 if (!init || !(HL_TABLE()[idx].sg_set & SG_GUI))
7188 if (!init)
7189 HL_TABLE()[idx].sg_set |= SG_GUI;
7191 i = color_name2handle(arg);
7192 if (i != INVALCOLOR || STRCMP(arg, "NONE") == 0 || !gui.in_use)
7194 HL_TABLE()[idx].sg_gui_fg = i;
7195 vim_free(HL_TABLE()[idx].sg_gui_fg_name);
7196 if (STRCMP(arg, "NONE"))
7197 HL_TABLE()[idx].sg_gui_fg_name = vim_strsave(arg);
7198 else
7199 HL_TABLE()[idx].sg_gui_fg_name = NULL;
7200 # ifdef FEAT_GUI_X11
7201 if (is_menu_group)
7202 gui.menu_fg_pixel = i;
7203 if (is_scrollbar_group)
7204 gui.scroll_fg_pixel = i;
7205 # ifdef FEAT_BEVAL
7206 if (is_tooltip_group)
7207 gui.tooltip_fg_pixel = i;
7208 # endif
7209 do_colors = TRUE;
7210 # endif
7213 #endif
7215 else if (STRCMP(key, "GUIBG") == 0)
7217 #ifdef FEAT_GUI /* in non-GUI guibg colors are simply ignored */
7218 if (!init || !(HL_TABLE()[idx].sg_set & SG_GUI))
7220 if (!init)
7221 HL_TABLE()[idx].sg_set |= SG_GUI;
7223 i = color_name2handle(arg);
7224 if (i != INVALCOLOR || STRCMP(arg, "NONE") == 0 || !gui.in_use)
7226 HL_TABLE()[idx].sg_gui_bg = i;
7227 vim_free(HL_TABLE()[idx].sg_gui_bg_name);
7228 if (STRCMP(arg, "NONE") != 0)
7229 HL_TABLE()[idx].sg_gui_bg_name = vim_strsave(arg);
7230 else
7231 HL_TABLE()[idx].sg_gui_bg_name = NULL;
7232 # ifdef FEAT_GUI_X11
7233 if (is_menu_group)
7234 gui.menu_bg_pixel = i;
7235 if (is_scrollbar_group)
7236 gui.scroll_bg_pixel = i;
7237 # ifdef FEAT_BEVAL
7238 if (is_tooltip_group)
7239 gui.tooltip_bg_pixel = i;
7240 # endif
7241 do_colors = TRUE;
7242 # endif
7245 #endif
7247 else if (STRCMP(key, "GUISP") == 0)
7249 #ifdef FEAT_GUI /* in non-GUI guisp colors are simply ignored */
7250 if (!init || !(HL_TABLE()[idx].sg_set & SG_GUI))
7252 if (!init)
7253 HL_TABLE()[idx].sg_set |= SG_GUI;
7255 i = color_name2handle(arg);
7256 if (i != INVALCOLOR || STRCMP(arg, "NONE") == 0 || !gui.in_use)
7258 HL_TABLE()[idx].sg_gui_sp = i;
7259 vim_free(HL_TABLE()[idx].sg_gui_sp_name);
7260 if (STRCMP(arg, "NONE") != 0)
7261 HL_TABLE()[idx].sg_gui_sp_name = vim_strsave(arg);
7262 else
7263 HL_TABLE()[idx].sg_gui_sp_name = NULL;
7266 #endif
7268 else if (STRCMP(key, "START") == 0 || STRCMP(key, "STOP") == 0)
7270 char_u buf[100];
7271 char_u *tname;
7273 if (!init)
7274 HL_TABLE()[idx].sg_set |= SG_TERM;
7277 * The "start" and "stop" arguments can be a literal escape
7278 * sequence, or a comma separated list of terminal codes.
7280 if (STRNCMP(arg, "t_", 2) == 0)
7282 off = 0;
7283 buf[0] = 0;
7284 while (arg[off] != NUL)
7286 /* Isolate one termcap name */
7287 for (len = 0; arg[off + len] &&
7288 arg[off + len] != ','; ++len)
7290 tname = vim_strnsave(arg + off, len);
7291 if (tname == NULL) /* out of memory */
7293 error = TRUE;
7294 break;
7296 /* lookup the escape sequence for the item */
7297 p = get_term_code(tname);
7298 vim_free(tname);
7299 if (p == NULL) /* ignore non-existing things */
7300 p = (char_u *)"";
7302 /* Append it to the already found stuff */
7303 if ((int)(STRLEN(buf) + STRLEN(p)) >= 99)
7305 EMSG2(_("E422: terminal code too long: %s"), arg);
7306 error = TRUE;
7307 break;
7309 STRCAT(buf, p);
7311 /* Advance to the next item */
7312 off += len;
7313 if (arg[off] == ',') /* another one follows */
7314 ++off;
7317 else
7320 * Copy characters from arg[] to buf[], translating <> codes.
7322 for (p = arg, off = 0; off < 100 && *p; )
7324 len = trans_special(&p, buf + off, FALSE);
7325 if (len) /* recognized special char */
7326 off += len;
7327 else /* copy as normal char */
7328 buf[off++] = *p++;
7330 buf[off] = NUL;
7332 if (error)
7333 break;
7335 if (STRCMP(buf, "NONE") == 0) /* resetting the value */
7336 p = NULL;
7337 else
7338 p = vim_strsave(buf);
7339 if (key[2] == 'A')
7341 vim_free(HL_TABLE()[idx].sg_start);
7342 HL_TABLE()[idx].sg_start = p;
7344 else
7346 vim_free(HL_TABLE()[idx].sg_stop);
7347 HL_TABLE()[idx].sg_stop = p;
7350 else
7352 EMSG2(_("E423: Illegal argument: %s"), key_start);
7353 error = TRUE;
7354 break;
7358 * When highlighting has been given for a group, don't link it.
7360 if (!init || !(HL_TABLE()[idx].sg_set & SG_LINK))
7361 HL_TABLE()[idx].sg_link = 0;
7364 * Continue with next argument.
7366 linep = skipwhite(linep);
7370 * If there is an error, and it's a new entry, remove it from the table.
7372 if (error && idx == highlight_ga.ga_len)
7373 syn_unadd_group();
7374 else
7376 if (is_normal_group)
7378 HL_TABLE()[idx].sg_term_attr = 0;
7379 HL_TABLE()[idx].sg_cterm_attr = 0;
7380 #ifdef FEAT_GUI
7381 HL_TABLE()[idx].sg_gui_attr = 0;
7383 * Need to update all groups, because they might be using "bg"
7384 * and/or "fg", which have been changed now.
7386 if (gui.in_use)
7387 highlight_gui_started();
7388 #endif
7390 #ifdef FEAT_GUI_X11
7391 # ifdef FEAT_MENU
7392 else if (is_menu_group)
7394 if (gui.in_use && do_colors)
7395 gui_mch_new_menu_colors();
7397 # endif
7398 else if (is_scrollbar_group)
7400 if (gui.in_use && do_colors)
7401 gui_new_scrollbar_colors();
7403 # ifdef FEAT_BEVAL
7404 else if (is_tooltip_group)
7406 if (gui.in_use && do_colors)
7407 gui_mch_new_tooltip_colors();
7409 # endif
7410 #endif
7411 else
7412 set_hl_attr(idx);
7413 #ifdef FEAT_EVAL
7414 HL_TABLE()[idx].sg_scriptID = current_SID;
7415 #endif
7416 redraw_all_later(NOT_VALID);
7418 vim_free(key);
7419 vim_free(arg);
7421 /* Only call highlight_changed() once, after sourcing a syntax file */
7422 need_highlight_changed = TRUE;
7425 #if defined(EXITFREE) || defined(PROTO)
7426 void
7427 free_highlight()
7429 int i;
7431 for (i = 0; i < highlight_ga.ga_len; ++i)
7433 highlight_clear(i);
7434 vim_free(HL_TABLE()[i].sg_name);
7435 vim_free(HL_TABLE()[i].sg_name_u);
7437 ga_clear(&highlight_ga);
7439 #endif
7442 * Reset the cterm colors to what they were before Vim was started, if
7443 * possible. Otherwise reset them to zero.
7445 void
7446 restore_cterm_colors()
7448 #if defined(MSDOS) || (defined(WIN3264) && !defined(FEAT_GUI_W32))
7449 /* Since t_me has been set, this probably means that the user
7450 * wants to use this as default colors. Need to reset default
7451 * background/foreground colors. */
7452 mch_set_normal_colors();
7453 #else
7454 cterm_normal_fg_color = 0;
7455 cterm_normal_fg_bold = 0;
7456 cterm_normal_bg_color = 0;
7457 #endif
7461 * Return TRUE if highlight group "idx" has any settings.
7462 * When "check_link" is TRUE also check for an existing link.
7464 static int
7465 hl_has_settings(idx, check_link)
7466 int idx;
7467 int check_link;
7469 return ( HL_TABLE()[idx].sg_term_attr != 0
7470 || HL_TABLE()[idx].sg_cterm_attr != 0
7471 #ifdef FEAT_GUI
7472 || HL_TABLE()[idx].sg_gui_attr != 0
7473 #endif
7474 || (check_link && (HL_TABLE()[idx].sg_set & SG_LINK)));
7478 * Clear highlighting for one group.
7480 static void
7481 highlight_clear(idx)
7482 int idx;
7484 HL_TABLE()[idx].sg_term = 0;
7485 vim_free(HL_TABLE()[idx].sg_start);
7486 HL_TABLE()[idx].sg_start = NULL;
7487 vim_free(HL_TABLE()[idx].sg_stop);
7488 HL_TABLE()[idx].sg_stop = NULL;
7489 HL_TABLE()[idx].sg_term_attr = 0;
7490 HL_TABLE()[idx].sg_cterm = 0;
7491 HL_TABLE()[idx].sg_cterm_bold = FALSE;
7492 HL_TABLE()[idx].sg_cterm_fg = 0;
7493 HL_TABLE()[idx].sg_cterm_bg = 0;
7494 HL_TABLE()[idx].sg_cterm_attr = 0;
7495 #ifdef FEAT_GUI /* in non-GUI fonts are simply ignored */
7496 HL_TABLE()[idx].sg_gui = 0;
7497 HL_TABLE()[idx].sg_gui_fg = INVALCOLOR;
7498 vim_free(HL_TABLE()[idx].sg_gui_fg_name);
7499 HL_TABLE()[idx].sg_gui_fg_name = NULL;
7500 HL_TABLE()[idx].sg_gui_bg = INVALCOLOR;
7501 vim_free(HL_TABLE()[idx].sg_gui_bg_name);
7502 HL_TABLE()[idx].sg_gui_bg_name = NULL;
7503 HL_TABLE()[idx].sg_gui_sp = INVALCOLOR;
7504 vim_free(HL_TABLE()[idx].sg_gui_sp_name);
7505 HL_TABLE()[idx].sg_gui_sp_name = NULL;
7506 gui_mch_free_font(HL_TABLE()[idx].sg_font);
7507 HL_TABLE()[idx].sg_font = NOFONT;
7508 # ifdef FEAT_XFONTSET
7509 gui_mch_free_fontset(HL_TABLE()[idx].sg_fontset);
7510 HL_TABLE()[idx].sg_fontset = NOFONTSET;
7511 # endif
7512 vim_free(HL_TABLE()[idx].sg_font_name);
7513 HL_TABLE()[idx].sg_font_name = NULL;
7514 HL_TABLE()[idx].sg_gui_attr = 0;
7515 #endif
7516 #ifdef FEAT_EVAL
7517 /* Clear the script ID only when there is no link, since that is not
7518 * cleared. */
7519 if (HL_TABLE()[idx].sg_link == 0)
7520 HL_TABLE()[idx].sg_scriptID = 0;
7521 #endif
7524 #if defined(FEAT_GUI) || defined(PROTO)
7526 * Set the normal foreground and background colors according to the "Normal"
7527 * highlighighting group. For X11 also set "Menu", "Scrollbar", and
7528 * "Tooltip" colors.
7530 void
7531 set_normal_colors()
7533 if (set_group_colors((char_u *)"Normal",
7534 &gui.norm_pixel, &gui.back_pixel,
7535 FALSE, TRUE, FALSE))
7537 gui_mch_new_colors();
7538 must_redraw = CLEAR;
7540 #ifdef FEAT_GUI_X11
7541 if (set_group_colors((char_u *)"Menu",
7542 &gui.menu_fg_pixel, &gui.menu_bg_pixel,
7543 TRUE, FALSE, FALSE))
7545 # ifdef FEAT_MENU
7546 gui_mch_new_menu_colors();
7547 # endif
7548 must_redraw = CLEAR;
7550 # ifdef FEAT_BEVAL
7551 if (set_group_colors((char_u *)"Tooltip",
7552 &gui.tooltip_fg_pixel, &gui.tooltip_bg_pixel,
7553 FALSE, FALSE, TRUE))
7555 # ifdef FEAT_TOOLBAR
7556 gui_mch_new_tooltip_colors();
7557 # endif
7558 must_redraw = CLEAR;
7560 #endif
7561 if (set_group_colors((char_u *)"Scrollbar",
7562 &gui.scroll_fg_pixel, &gui.scroll_bg_pixel,
7563 FALSE, FALSE, FALSE))
7565 gui_new_scrollbar_colors();
7566 must_redraw = CLEAR;
7568 #endif
7572 * Set the colors for "Normal", "Menu", "Tooltip" or "Scrollbar".
7574 static int
7575 set_group_colors(name, fgp, bgp, do_menu, use_norm, do_tooltip)
7576 char_u *name;
7577 guicolor_T *fgp;
7578 guicolor_T *bgp;
7579 int do_menu;
7580 int use_norm;
7581 int do_tooltip;
7583 int idx;
7585 idx = syn_name2id(name) - 1;
7586 if (idx >= 0)
7588 gui_do_one_color(idx, do_menu, do_tooltip);
7590 if (HL_TABLE()[idx].sg_gui_fg != INVALCOLOR)
7591 *fgp = HL_TABLE()[idx].sg_gui_fg;
7592 else if (use_norm)
7593 *fgp = gui.def_norm_pixel;
7594 if (HL_TABLE()[idx].sg_gui_bg != INVALCOLOR)
7595 *bgp = HL_TABLE()[idx].sg_gui_bg;
7596 else if (use_norm)
7597 *bgp = gui.def_back_pixel;
7598 return TRUE;
7600 return FALSE;
7604 * Get the font of the "Normal" group.
7605 * Returns "" when it's not found or not set.
7607 char_u *
7608 hl_get_font_name()
7610 int id;
7611 char_u *s;
7613 id = syn_name2id((char_u *)"Normal");
7614 if (id > 0)
7616 s = HL_TABLE()[id - 1].sg_font_name;
7617 if (s != NULL)
7618 return s;
7620 return (char_u *)"";
7624 * Set font for "Normal" group. Called by gui_mch_init_font() when a font has
7625 * actually chosen to be used.
7627 void
7628 hl_set_font_name(font_name)
7629 char_u *font_name;
7631 int id;
7633 id = syn_name2id((char_u *)"Normal");
7634 if (id > 0)
7636 vim_free(HL_TABLE()[id - 1].sg_font_name);
7637 HL_TABLE()[id - 1].sg_font_name = vim_strsave(font_name);
7642 * Set background color for "Normal" group. Called by gui_set_bg_color()
7643 * when the color is known.
7645 void
7646 hl_set_bg_color_name(name)
7647 char_u *name; /* must have been allocated */
7649 int id;
7651 if (name != NULL)
7653 id = syn_name2id((char_u *)"Normal");
7654 if (id > 0)
7656 vim_free(HL_TABLE()[id - 1].sg_gui_bg_name);
7657 HL_TABLE()[id - 1].sg_gui_bg_name = name;
7663 * Set foreground color for "Normal" group. Called by gui_set_fg_color()
7664 * when the color is known.
7666 void
7667 hl_set_fg_color_name(name)
7668 char_u *name; /* must have been allocated */
7670 int id;
7672 if (name != NULL)
7674 id = syn_name2id((char_u *)"Normal");
7675 if (id > 0)
7677 vim_free(HL_TABLE()[id - 1].sg_gui_fg_name);
7678 HL_TABLE()[id - 1].sg_gui_fg_name = name;
7684 * Return the handle for a color name.
7685 * Returns INVALCOLOR when failed.
7687 static guicolor_T
7688 color_name2handle(name)
7689 char_u *name;
7691 if (STRCMP(name, "NONE") == 0)
7692 return INVALCOLOR;
7694 if (STRICMP(name, "fg") == 0 || STRICMP(name, "foreground") == 0)
7695 return gui.norm_pixel;
7696 if (STRICMP(name, "bg") == 0 || STRICMP(name, "background") == 0)
7697 return gui.back_pixel;
7699 return gui_get_color(name);
7703 * Return the handle for a font name.
7704 * Returns NOFONT when failed.
7706 static GuiFont
7707 font_name2handle(name)
7708 char_u *name;
7710 if (STRCMP(name, "NONE") == 0)
7711 return NOFONT;
7713 return gui_mch_get_font(name, TRUE);
7716 # ifdef FEAT_XFONTSET
7718 * Return the handle for a fontset name.
7719 * Returns NOFONTSET when failed.
7721 static GuiFontset
7722 fontset_name2handle(name, fixed_width)
7723 char_u *name;
7724 int fixed_width;
7726 if (STRCMP(name, "NONE") == 0)
7727 return NOFONTSET;
7729 return gui_mch_get_fontset(name, TRUE, fixed_width);
7731 # endif
7734 * Get the font or fontset for one highlight group.
7736 static void
7737 hl_do_font(idx, arg, do_normal, do_menu, do_tooltip)
7738 int idx;
7739 char_u *arg;
7740 int do_normal; /* set normal font */
7741 int do_menu UNUSED; /* set menu font */
7742 int do_tooltip UNUSED; /* set tooltip font */
7744 # ifdef FEAT_XFONTSET
7745 /* If 'guifontset' is not empty, first try using the name as a
7746 * fontset. If that doesn't work, use it as a font name. */
7747 if (*p_guifontset != NUL
7748 # ifdef FONTSET_ALWAYS
7749 || do_menu
7750 # endif
7751 # ifdef FEAT_BEVAL_TIP
7752 /* In Athena & Motif, the Tooltip highlight group is always a fontset */
7753 || do_tooltip
7754 # endif
7756 HL_TABLE()[idx].sg_fontset = fontset_name2handle(arg, 0
7757 # ifdef FONTSET_ALWAYS
7758 || do_menu
7759 # endif
7760 # ifdef FEAT_BEVAL_TIP
7761 || do_tooltip
7762 # endif
7764 if (HL_TABLE()[idx].sg_fontset != NOFONTSET)
7766 /* If it worked and it's the Normal group, use it as the
7767 * normal fontset. Same for the Menu group. */
7768 if (do_normal)
7769 gui_init_font(arg, TRUE);
7770 # if (defined(FEAT_GUI_MOTIF) || defined(FEAT_GUI_ATHENA)) && defined(FEAT_MENU)
7771 if (do_menu)
7773 # ifdef FONTSET_ALWAYS
7774 gui.menu_fontset = HL_TABLE()[idx].sg_fontset;
7775 # else
7776 /* YIKES! This is a bug waiting to crash the program */
7777 gui.menu_font = HL_TABLE()[idx].sg_fontset;
7778 # endif
7779 gui_mch_new_menu_font();
7781 # ifdef FEAT_BEVAL
7782 if (do_tooltip)
7784 /* The Athena widget set cannot currently handle switching between
7785 * displaying a single font and a fontset.
7786 * If the XtNinternational resource is set to True at widget
7787 * creation, then a fontset is always used, otherwise an
7788 * XFontStruct is used.
7790 gui.tooltip_fontset = (XFontSet)HL_TABLE()[idx].sg_fontset;
7791 gui_mch_new_tooltip_font();
7793 # endif
7794 # endif
7796 else
7797 # endif
7799 HL_TABLE()[idx].sg_font = font_name2handle(arg);
7800 /* If it worked and it's the Normal group, use it as the
7801 * normal font. Same for the Menu group. */
7802 if (HL_TABLE()[idx].sg_font != NOFONT)
7804 if (do_normal)
7805 gui_init_font(arg, FALSE);
7806 #ifndef FONTSET_ALWAYS
7807 # if (defined(FEAT_GUI_MOTIF) || defined(FEAT_GUI_ATHENA)) && defined(FEAT_MENU)
7808 if (do_menu)
7810 gui.menu_font = HL_TABLE()[idx].sg_font;
7811 gui_mch_new_menu_font();
7813 # endif
7814 #endif
7819 #endif /* FEAT_GUI */
7822 * Table with the specifications for an attribute number.
7823 * Note that this table is used by ALL buffers. This is required because the
7824 * GUI can redraw at any time for any buffer.
7826 static garray_T term_attr_table = {0, 0, 0, 0, NULL};
7828 #define TERM_ATTR_ENTRY(idx) ((attrentry_T *)term_attr_table.ga_data)[idx]
7830 static garray_T cterm_attr_table = {0, 0, 0, 0, NULL};
7832 #define CTERM_ATTR_ENTRY(idx) ((attrentry_T *)cterm_attr_table.ga_data)[idx]
7834 #ifdef FEAT_GUI
7835 static garray_T gui_attr_table = {0, 0, 0, 0, NULL};
7837 #define GUI_ATTR_ENTRY(idx) ((attrentry_T *)gui_attr_table.ga_data)[idx]
7838 #endif
7841 * Return the attr number for a set of colors and font.
7842 * Add a new entry to the term_attr_table, cterm_attr_table or gui_attr_table
7843 * if the combination is new.
7844 * Return 0 for error (no more room).
7846 static int
7847 get_attr_entry(table, aep)
7848 garray_T *table;
7849 attrentry_T *aep;
7851 int i;
7852 attrentry_T *taep;
7853 static int recursive = FALSE;
7856 * Init the table, in case it wasn't done yet.
7858 table->ga_itemsize = sizeof(attrentry_T);
7859 table->ga_growsize = 7;
7862 * Try to find an entry with the same specifications.
7864 for (i = 0; i < table->ga_len; ++i)
7866 taep = &(((attrentry_T *)table->ga_data)[i]);
7867 if ( aep->ae_attr == taep->ae_attr
7868 && (
7869 #ifdef FEAT_GUI
7870 (table == &gui_attr_table
7871 && (aep->ae_u.gui.fg_color == taep->ae_u.gui.fg_color
7872 && aep->ae_u.gui.bg_color
7873 == taep->ae_u.gui.bg_color
7874 && aep->ae_u.gui.sp_color
7875 == taep->ae_u.gui.sp_color
7876 && aep->ae_u.gui.font == taep->ae_u.gui.font
7877 # ifdef FEAT_XFONTSET
7878 && aep->ae_u.gui.fontset == taep->ae_u.gui.fontset
7879 # endif
7882 #endif
7883 (table == &term_attr_table
7884 && (aep->ae_u.term.start == NULL)
7885 == (taep->ae_u.term.start == NULL)
7886 && (aep->ae_u.term.start == NULL
7887 || STRCMP(aep->ae_u.term.start,
7888 taep->ae_u.term.start) == 0)
7889 && (aep->ae_u.term.stop == NULL)
7890 == (taep->ae_u.term.stop == NULL)
7891 && (aep->ae_u.term.stop == NULL
7892 || STRCMP(aep->ae_u.term.stop,
7893 taep->ae_u.term.stop) == 0))
7894 || (table == &cterm_attr_table
7895 && aep->ae_u.cterm.fg_color
7896 == taep->ae_u.cterm.fg_color
7897 && aep->ae_u.cterm.bg_color
7898 == taep->ae_u.cterm.bg_color)
7901 return i + ATTR_OFF;
7904 if (table->ga_len + ATTR_OFF > MAX_TYPENR)
7907 * Running out of attribute entries! remove all attributes, and
7908 * compute new ones for all groups.
7909 * When called recursively, we are really out of numbers.
7911 if (recursive)
7913 EMSG(_("E424: Too many different highlighting attributes in use"));
7914 return 0;
7916 recursive = TRUE;
7918 clear_hl_tables();
7920 must_redraw = CLEAR;
7922 for (i = 0; i < highlight_ga.ga_len; ++i)
7923 set_hl_attr(i);
7925 recursive = FALSE;
7929 * This is a new combination of colors and font, add an entry.
7931 if (ga_grow(table, 1) == FAIL)
7932 return 0;
7934 taep = &(((attrentry_T *)table->ga_data)[table->ga_len]);
7935 vim_memset(taep, 0, sizeof(attrentry_T));
7936 taep->ae_attr = aep->ae_attr;
7937 #ifdef FEAT_GUI
7938 if (table == &gui_attr_table)
7940 taep->ae_u.gui.fg_color = aep->ae_u.gui.fg_color;
7941 taep->ae_u.gui.bg_color = aep->ae_u.gui.bg_color;
7942 taep->ae_u.gui.sp_color = aep->ae_u.gui.sp_color;
7943 taep->ae_u.gui.font = aep->ae_u.gui.font;
7944 # ifdef FEAT_XFONTSET
7945 taep->ae_u.gui.fontset = aep->ae_u.gui.fontset;
7946 # endif
7948 #endif
7949 if (table == &term_attr_table)
7951 if (aep->ae_u.term.start == NULL)
7952 taep->ae_u.term.start = NULL;
7953 else
7954 taep->ae_u.term.start = vim_strsave(aep->ae_u.term.start);
7955 if (aep->ae_u.term.stop == NULL)
7956 taep->ae_u.term.stop = NULL;
7957 else
7958 taep->ae_u.term.stop = vim_strsave(aep->ae_u.term.stop);
7960 else if (table == &cterm_attr_table)
7962 taep->ae_u.cterm.fg_color = aep->ae_u.cterm.fg_color;
7963 taep->ae_u.cterm.bg_color = aep->ae_u.cterm.bg_color;
7965 ++table->ga_len;
7966 return (table->ga_len - 1 + ATTR_OFF);
7970 * Clear all highlight tables.
7972 void
7973 clear_hl_tables()
7975 int i;
7976 attrentry_T *taep;
7978 #ifdef FEAT_GUI
7979 ga_clear(&gui_attr_table);
7980 #endif
7981 for (i = 0; i < term_attr_table.ga_len; ++i)
7983 taep = &(((attrentry_T *)term_attr_table.ga_data)[i]);
7984 vim_free(taep->ae_u.term.start);
7985 vim_free(taep->ae_u.term.stop);
7987 ga_clear(&term_attr_table);
7988 ga_clear(&cterm_attr_table);
7991 #if defined(FEAT_SYN_HL) || defined(FEAT_SPELL) || defined(PROTO)
7993 * Combine special attributes (e.g., for spelling) with other attributes
7994 * (e.g., for syntax highlighting).
7995 * "prim_attr" overrules "char_attr".
7996 * This creates a new group when required.
7997 * Since we expect there to be few spelling mistakes we don't cache the
7998 * result.
7999 * Return the resulting attributes.
8002 hl_combine_attr(char_attr, prim_attr)
8003 int char_attr;
8004 int prim_attr;
8006 attrentry_T *char_aep = NULL;
8007 attrentry_T *spell_aep;
8008 attrentry_T new_en;
8010 if (char_attr == 0)
8011 return prim_attr;
8012 if (char_attr <= HL_ALL && prim_attr <= HL_ALL)
8013 return char_attr | prim_attr;
8014 #ifdef FEAT_GUI
8015 if (gui.in_use)
8017 if (char_attr > HL_ALL)
8018 char_aep = syn_gui_attr2entry(char_attr);
8019 if (char_aep != NULL)
8020 new_en = *char_aep;
8021 else
8023 vim_memset(&new_en, 0, sizeof(new_en));
8024 new_en.ae_u.gui.fg_color = INVALCOLOR;
8025 new_en.ae_u.gui.bg_color = INVALCOLOR;
8026 new_en.ae_u.gui.sp_color = INVALCOLOR;
8027 if (char_attr <= HL_ALL)
8028 new_en.ae_attr = char_attr;
8031 if (prim_attr <= HL_ALL)
8032 new_en.ae_attr |= prim_attr;
8033 else
8035 spell_aep = syn_gui_attr2entry(prim_attr);
8036 if (spell_aep != NULL)
8038 new_en.ae_attr |= spell_aep->ae_attr;
8039 if (spell_aep->ae_u.gui.fg_color != INVALCOLOR)
8040 new_en.ae_u.gui.fg_color = spell_aep->ae_u.gui.fg_color;
8041 if (spell_aep->ae_u.gui.bg_color != INVALCOLOR)
8042 new_en.ae_u.gui.bg_color = spell_aep->ae_u.gui.bg_color;
8043 if (spell_aep->ae_u.gui.sp_color != INVALCOLOR)
8044 new_en.ae_u.gui.sp_color = spell_aep->ae_u.gui.sp_color;
8045 if (spell_aep->ae_u.gui.font != NOFONT)
8046 new_en.ae_u.gui.font = spell_aep->ae_u.gui.font;
8047 # ifdef FEAT_XFONTSET
8048 if (spell_aep->ae_u.gui.fontset != NOFONTSET)
8049 new_en.ae_u.gui.fontset = spell_aep->ae_u.gui.fontset;
8050 # endif
8053 return get_attr_entry(&gui_attr_table, &new_en);
8055 #endif
8057 if (t_colors > 1)
8059 if (char_attr > HL_ALL)
8060 char_aep = syn_cterm_attr2entry(char_attr);
8061 if (char_aep != NULL)
8062 new_en = *char_aep;
8063 else
8065 vim_memset(&new_en, 0, sizeof(new_en));
8066 if (char_attr <= HL_ALL)
8067 new_en.ae_attr = char_attr;
8070 if (prim_attr <= HL_ALL)
8071 new_en.ae_attr |= prim_attr;
8072 else
8074 spell_aep = syn_cterm_attr2entry(prim_attr);
8075 if (spell_aep != NULL)
8077 new_en.ae_attr |= spell_aep->ae_attr;
8078 if (spell_aep->ae_u.cterm.fg_color > 0)
8079 new_en.ae_u.cterm.fg_color = spell_aep->ae_u.cterm.fg_color;
8080 if (spell_aep->ae_u.cterm.bg_color > 0)
8081 new_en.ae_u.cterm.bg_color = spell_aep->ae_u.cterm.bg_color;
8084 return get_attr_entry(&cterm_attr_table, &new_en);
8087 if (char_attr > HL_ALL)
8088 char_aep = syn_term_attr2entry(char_attr);
8089 if (char_aep != NULL)
8090 new_en = *char_aep;
8091 else
8093 vim_memset(&new_en, 0, sizeof(new_en));
8094 if (char_attr <= HL_ALL)
8095 new_en.ae_attr = char_attr;
8098 if (prim_attr <= HL_ALL)
8099 new_en.ae_attr |= prim_attr;
8100 else
8102 spell_aep = syn_term_attr2entry(prim_attr);
8103 if (spell_aep != NULL)
8105 new_en.ae_attr |= spell_aep->ae_attr;
8106 if (spell_aep->ae_u.term.start != NULL)
8108 new_en.ae_u.term.start = spell_aep->ae_u.term.start;
8109 new_en.ae_u.term.stop = spell_aep->ae_u.term.stop;
8113 return get_attr_entry(&term_attr_table, &new_en);
8115 #endif
8117 #ifdef FEAT_GUI
8119 attrentry_T *
8120 syn_gui_attr2entry(attr)
8121 int attr;
8123 attr -= ATTR_OFF;
8124 if (attr >= gui_attr_table.ga_len) /* did ":syntax clear" */
8125 return NULL;
8126 return &(GUI_ATTR_ENTRY(attr));
8128 #endif /* FEAT_GUI */
8131 * Get the highlight attributes (HL_BOLD etc.) from an attribute nr.
8132 * Only to be used when "attr" > HL_ALL.
8135 syn_attr2attr(attr)
8136 int attr;
8138 attrentry_T *aep;
8140 #ifdef FEAT_GUI
8141 if (gui.in_use)
8142 aep = syn_gui_attr2entry(attr);
8143 else
8144 #endif
8145 if (t_colors > 1)
8146 aep = syn_cterm_attr2entry(attr);
8147 else
8148 aep = syn_term_attr2entry(attr);
8150 if (aep == NULL) /* highlighting not set */
8151 return 0;
8152 return aep->ae_attr;
8156 attrentry_T *
8157 syn_term_attr2entry(attr)
8158 int attr;
8160 attr -= ATTR_OFF;
8161 if (attr >= term_attr_table.ga_len) /* did ":syntax clear" */
8162 return NULL;
8163 return &(TERM_ATTR_ENTRY(attr));
8166 attrentry_T *
8167 syn_cterm_attr2entry(attr)
8168 int attr;
8170 attr -= ATTR_OFF;
8171 if (attr >= cterm_attr_table.ga_len) /* did ":syntax clear" */
8172 return NULL;
8173 return &(CTERM_ATTR_ENTRY(attr));
8176 #define LIST_ATTR 1
8177 #define LIST_STRING 2
8178 #define LIST_INT 3
8180 static void
8181 highlight_list_one(id)
8182 int id;
8184 struct hl_group *sgp;
8185 int didh = FALSE;
8187 sgp = &HL_TABLE()[id - 1]; /* index is ID minus one */
8189 didh = highlight_list_arg(id, didh, LIST_ATTR,
8190 sgp->sg_term, NULL, "term");
8191 didh = highlight_list_arg(id, didh, LIST_STRING,
8192 0, sgp->sg_start, "start");
8193 didh = highlight_list_arg(id, didh, LIST_STRING,
8194 0, sgp->sg_stop, "stop");
8196 didh = highlight_list_arg(id, didh, LIST_ATTR,
8197 sgp->sg_cterm, NULL, "cterm");
8198 didh = highlight_list_arg(id, didh, LIST_INT,
8199 sgp->sg_cterm_fg, NULL, "ctermfg");
8200 didh = highlight_list_arg(id, didh, LIST_INT,
8201 sgp->sg_cterm_bg, NULL, "ctermbg");
8203 #ifdef FEAT_GUI
8204 didh = highlight_list_arg(id, didh, LIST_ATTR,
8205 sgp->sg_gui, NULL, "gui");
8206 didh = highlight_list_arg(id, didh, LIST_STRING,
8207 0, sgp->sg_gui_fg_name, "guifg");
8208 didh = highlight_list_arg(id, didh, LIST_STRING,
8209 0, sgp->sg_gui_bg_name, "guibg");
8210 didh = highlight_list_arg(id, didh, LIST_STRING,
8211 0, sgp->sg_gui_sp_name, "guisp");
8212 didh = highlight_list_arg(id, didh, LIST_STRING,
8213 0, sgp->sg_font_name, "font");
8214 #endif
8216 if (sgp->sg_link && !got_int)
8218 (void)syn_list_header(didh, 9999, id);
8219 didh = TRUE;
8220 msg_puts_attr((char_u *)"links to", hl_attr(HLF_D));
8221 msg_putchar(' ');
8222 msg_outtrans(HL_TABLE()[HL_TABLE()[id - 1].sg_link - 1].sg_name);
8225 if (!didh)
8226 highlight_list_arg(id, didh, LIST_STRING, 0, (char_u *)"cleared", "");
8227 #ifdef FEAT_EVAL
8228 if (p_verbose > 0)
8229 last_set_msg(sgp->sg_scriptID);
8230 #endif
8233 static int
8234 highlight_list_arg(id, didh, type, iarg, sarg, name)
8235 int id;
8236 int didh;
8237 int type;
8238 int iarg;
8239 char_u *sarg;
8240 char *name;
8242 char_u buf[100];
8243 char_u *ts;
8244 int i;
8246 if (got_int)
8247 return FALSE;
8248 if (type == LIST_STRING ? (sarg != NULL) : (iarg != 0))
8250 ts = buf;
8251 if (type == LIST_INT)
8252 sprintf((char *)buf, "%d", iarg - 1);
8253 else if (type == LIST_STRING)
8254 ts = sarg;
8255 else /* type == LIST_ATTR */
8257 buf[0] = NUL;
8258 for (i = 0; hl_attr_table[i] != 0; ++i)
8260 if (iarg & hl_attr_table[i])
8262 if (buf[0] != NUL)
8263 STRCAT(buf, ",");
8264 STRCAT(buf, hl_name_table[i]);
8265 iarg &= ~hl_attr_table[i]; /* don't want "inverse" */
8270 (void)syn_list_header(didh,
8271 (int)(vim_strsize(ts) + STRLEN(name) + 1), id);
8272 didh = TRUE;
8273 if (!got_int)
8275 if (*name != NUL)
8277 MSG_PUTS_ATTR(name, hl_attr(HLF_D));
8278 MSG_PUTS_ATTR("=", hl_attr(HLF_D));
8280 msg_outtrans(ts);
8283 return didh;
8286 #if (((defined(FEAT_EVAL) || defined(FEAT_PRINTER))) && defined(FEAT_SYN_HL)) || defined(PROTO)
8288 * Return "1" if highlight group "id" has attribute "flag".
8289 * Return NULL otherwise.
8291 char_u *
8292 highlight_has_attr(id, flag, modec)
8293 int id;
8294 int flag;
8295 int modec; /* 'g' for GUI, 'c' for cterm, 't' for term */
8297 int attr;
8299 if (id <= 0 || id > highlight_ga.ga_len)
8300 return NULL;
8302 #ifdef FEAT_GUI
8303 if (modec == 'g')
8304 attr = HL_TABLE()[id - 1].sg_gui;
8305 else
8306 #endif
8307 if (modec == 'c')
8308 attr = HL_TABLE()[id - 1].sg_cterm;
8309 else
8310 attr = HL_TABLE()[id - 1].sg_term;
8312 if (attr & flag)
8313 return (char_u *)"1";
8314 return NULL;
8316 #endif
8318 #if (defined(FEAT_SYN_HL) && defined(FEAT_EVAL)) || defined(PROTO)
8320 * Return color name of highlight group "id".
8322 char_u *
8323 highlight_color(id, what, modec)
8324 int id;
8325 char_u *what; /* "fg", "bg", "sp", "fg#", "bg#" or "sp#" */
8326 int modec; /* 'g' for GUI, 'c' for cterm, 't' for term */
8328 static char_u name[20];
8329 int n;
8330 int fg = FALSE;
8331 # ifdef FEAT_GUI
8332 int sp = FALSE;
8333 # endif
8335 if (id <= 0 || id > highlight_ga.ga_len)
8336 return NULL;
8338 if (TOLOWER_ASC(what[0]) == 'f')
8339 fg = TRUE;
8340 # ifdef FEAT_GUI
8341 else if (TOLOWER_ASC(what[0]) == 's')
8342 sp = TRUE;
8343 if (modec == 'g')
8345 /* return #RRGGBB form (only possible when GUI is running) */
8346 if (gui.in_use && what[1] && what[2] == '#')
8348 guicolor_T color;
8349 long_u rgb;
8350 static char_u buf[10];
8352 if (fg)
8353 color = HL_TABLE()[id - 1].sg_gui_fg;
8354 else if (sp)
8355 color = HL_TABLE()[id - 1].sg_gui_sp;
8356 else
8357 color = HL_TABLE()[id - 1].sg_gui_bg;
8358 if (color == INVALCOLOR)
8359 return NULL;
8360 rgb = gui_mch_get_rgb(color);
8361 sprintf((char *)buf, "#%02x%02x%02x",
8362 (unsigned)(rgb >> 16),
8363 (unsigned)(rgb >> 8) & 255,
8364 (unsigned)rgb & 255);
8365 return buf;
8367 if (fg)
8368 return (HL_TABLE()[id - 1].sg_gui_fg_name);
8369 if (sp)
8370 return (HL_TABLE()[id - 1].sg_gui_sp_name);
8371 return (HL_TABLE()[id - 1].sg_gui_bg_name);
8373 # endif
8374 if (modec == 'c')
8376 if (fg)
8377 n = HL_TABLE()[id - 1].sg_cterm_fg - 1;
8378 else
8379 n = HL_TABLE()[id - 1].sg_cterm_bg - 1;
8380 sprintf((char *)name, "%d", n);
8381 return name;
8383 /* term doesn't have color */
8384 return NULL;
8386 #endif
8388 #if (defined(FEAT_SYN_HL) && defined(FEAT_GUI) && defined(FEAT_PRINTER)) \
8389 || defined(PROTO)
8391 * Return color name of highlight group "id" as RGB value.
8393 long_u
8394 highlight_gui_color_rgb(id, fg)
8395 int id;
8396 int fg; /* TRUE = fg, FALSE = bg */
8398 guicolor_T color;
8400 if (id <= 0 || id > highlight_ga.ga_len)
8401 return 0L;
8403 if (fg)
8404 color = HL_TABLE()[id - 1].sg_gui_fg;
8405 else
8406 color = HL_TABLE()[id - 1].sg_gui_bg;
8408 if (color == INVALCOLOR)
8409 return 0L;
8411 return gui_mch_get_rgb(color);
8413 #endif
8416 * Output the syntax list header.
8417 * Return TRUE when started a new line.
8419 static int
8420 syn_list_header(did_header, outlen, id)
8421 int did_header; /* did header already */
8422 int outlen; /* length of string that comes */
8423 int id; /* highlight group id */
8425 int endcol = 19;
8426 int newline = TRUE;
8428 if (!did_header)
8430 msg_putchar('\n');
8431 if (got_int)
8432 return TRUE;
8433 msg_outtrans(HL_TABLE()[id - 1].sg_name);
8434 endcol = 15;
8436 else if (msg_col + outlen + 1 >= Columns)
8438 msg_putchar('\n');
8439 if (got_int)
8440 return TRUE;
8442 else
8444 if (msg_col >= endcol) /* wrap around is like starting a new line */
8445 newline = FALSE;
8448 if (msg_col >= endcol) /* output at least one space */
8449 endcol = msg_col + 1;
8450 if (Columns <= endcol) /* avoid hang for tiny window */
8451 endcol = Columns - 1;
8453 msg_advance(endcol);
8455 /* Show "xxx" with the attributes. */
8456 if (!did_header)
8458 msg_puts_attr((char_u *)"xxx", syn_id2attr(id));
8459 msg_putchar(' ');
8462 return newline;
8466 * Set the attribute numbers for a highlight group.
8467 * Called after one of the attributes has changed.
8469 static void
8470 set_hl_attr(idx)
8471 int idx; /* index in array */
8473 attrentry_T at_en;
8474 struct hl_group *sgp = HL_TABLE() + idx;
8476 /* The "Normal" group doesn't need an attribute number */
8477 if (sgp->sg_name_u != NULL && STRCMP(sgp->sg_name_u, "NORMAL") == 0)
8478 return;
8480 #ifdef FEAT_GUI
8482 * For the GUI mode: If there are other than "normal" highlighting
8483 * attributes, need to allocate an attr number.
8485 if (sgp->sg_gui_fg == INVALCOLOR
8486 && sgp->sg_gui_bg == INVALCOLOR
8487 && sgp->sg_gui_sp == INVALCOLOR
8488 && sgp->sg_font == NOFONT
8489 # ifdef FEAT_XFONTSET
8490 && sgp->sg_fontset == NOFONTSET
8491 # endif
8494 sgp->sg_gui_attr = sgp->sg_gui;
8496 else
8498 at_en.ae_attr = sgp->sg_gui;
8499 at_en.ae_u.gui.fg_color = sgp->sg_gui_fg;
8500 at_en.ae_u.gui.bg_color = sgp->sg_gui_bg;
8501 at_en.ae_u.gui.sp_color = sgp->sg_gui_sp;
8502 at_en.ae_u.gui.font = sgp->sg_font;
8503 # ifdef FEAT_XFONTSET
8504 at_en.ae_u.gui.fontset = sgp->sg_fontset;
8505 # endif
8506 sgp->sg_gui_attr = get_attr_entry(&gui_attr_table, &at_en);
8508 #endif
8510 * For the term mode: If there are other than "normal" highlighting
8511 * attributes, need to allocate an attr number.
8513 if (sgp->sg_start == NULL && sgp->sg_stop == NULL)
8514 sgp->sg_term_attr = sgp->sg_term;
8515 else
8517 at_en.ae_attr = sgp->sg_term;
8518 at_en.ae_u.term.start = sgp->sg_start;
8519 at_en.ae_u.term.stop = sgp->sg_stop;
8520 sgp->sg_term_attr = get_attr_entry(&term_attr_table, &at_en);
8524 * For the color term mode: If there are other than "normal"
8525 * highlighting attributes, need to allocate an attr number.
8527 if (sgp->sg_cterm_fg == 0 && sgp->sg_cterm_bg == 0)
8528 sgp->sg_cterm_attr = sgp->sg_cterm;
8529 else
8531 at_en.ae_attr = sgp->sg_cterm;
8532 at_en.ae_u.cterm.fg_color = sgp->sg_cterm_fg;
8533 at_en.ae_u.cterm.bg_color = sgp->sg_cterm_bg;
8534 sgp->sg_cterm_attr = get_attr_entry(&cterm_attr_table, &at_en);
8539 * Lookup a highlight group name and return it's ID.
8540 * If it is not found, 0 is returned.
8543 syn_name2id(name)
8544 char_u *name;
8546 int i;
8547 char_u name_u[200];
8549 /* Avoid using stricmp() too much, it's slow on some systems */
8550 /* Avoid alloc()/free(), these are slow too. ID names over 200 chars
8551 * don't deserve to be found! */
8552 vim_strncpy(name_u, name, 199);
8553 vim_strup(name_u);
8554 for (i = highlight_ga.ga_len; --i >= 0; )
8555 if (HL_TABLE()[i].sg_name_u != NULL
8556 && STRCMP(name_u, HL_TABLE()[i].sg_name_u) == 0)
8557 break;
8558 return i + 1;
8561 #if defined(FEAT_EVAL) || defined(PROTO)
8563 * Return TRUE if highlight group "name" exists.
8566 highlight_exists(name)
8567 char_u *name;
8569 return (syn_name2id(name) > 0);
8572 # if defined(FEAT_SEARCH_EXTRA) || defined(PROTO)
8574 * Return the name of highlight group "id".
8575 * When not a valid ID return an empty string.
8577 char_u *
8578 syn_id2name(id)
8579 int id;
8581 if (id <= 0 || id > highlight_ga.ga_len)
8582 return (char_u *)"";
8583 return HL_TABLE()[id - 1].sg_name;
8585 # endif
8586 #endif
8589 * Like syn_name2id(), but take a pointer + length argument.
8592 syn_namen2id(linep, len)
8593 char_u *linep;
8594 int len;
8596 char_u *name;
8597 int id = 0;
8599 name = vim_strnsave(linep, len);
8600 if (name != NULL)
8602 id = syn_name2id(name);
8603 vim_free(name);
8605 return id;
8609 * Find highlight group name in the table and return it's ID.
8610 * The argument is a pointer to the name and the length of the name.
8611 * If it doesn't exist yet, a new entry is created.
8612 * Return 0 for failure.
8615 syn_check_group(pp, len)
8616 char_u *pp;
8617 int len;
8619 int id;
8620 char_u *name;
8622 name = vim_strnsave(pp, len);
8623 if (name == NULL)
8624 return 0;
8626 id = syn_name2id(name);
8627 if (id == 0) /* doesn't exist yet */
8628 id = syn_add_group(name);
8629 else
8630 vim_free(name);
8631 return id;
8635 * Add new highlight group and return it's ID.
8636 * "name" must be an allocated string, it will be consumed.
8637 * Return 0 for failure.
8639 static int
8640 syn_add_group(name)
8641 char_u *name;
8643 char_u *p;
8645 /* Check that the name is ASCII letters, digits and underscore. */
8646 for (p = name; *p != NUL; ++p)
8648 if (!vim_isprintc(*p))
8650 EMSG(_("E669: Unprintable character in group name"));
8651 return 0;
8653 else if (!ASCII_ISALNUM(*p) && *p != '_')
8655 /* This is an error, but since there previously was no check only
8656 * give a warning. */
8657 msg_source(hl_attr(HLF_W));
8658 MSG(_("W18: Invalid character in group name"));
8659 break;
8664 * First call for this growarray: init growing array.
8666 if (highlight_ga.ga_data == NULL)
8668 highlight_ga.ga_itemsize = sizeof(struct hl_group);
8669 highlight_ga.ga_growsize = 10;
8673 * Make room for at least one other syntax_highlight entry.
8675 if (ga_grow(&highlight_ga, 1) == FAIL)
8677 vim_free(name);
8678 return 0;
8681 vim_memset(&(HL_TABLE()[highlight_ga.ga_len]), 0, sizeof(struct hl_group));
8682 HL_TABLE()[highlight_ga.ga_len].sg_name = name;
8683 HL_TABLE()[highlight_ga.ga_len].sg_name_u = vim_strsave_up(name);
8684 #ifdef FEAT_GUI
8685 HL_TABLE()[highlight_ga.ga_len].sg_gui_bg = INVALCOLOR;
8686 HL_TABLE()[highlight_ga.ga_len].sg_gui_fg = INVALCOLOR;
8687 HL_TABLE()[highlight_ga.ga_len].sg_gui_sp = INVALCOLOR;
8688 #endif
8689 ++highlight_ga.ga_len;
8691 return highlight_ga.ga_len; /* ID is index plus one */
8695 * When, just after calling syn_add_group(), an error is discovered, this
8696 * function deletes the new name.
8698 static void
8699 syn_unadd_group()
8701 --highlight_ga.ga_len;
8702 vim_free(HL_TABLE()[highlight_ga.ga_len].sg_name);
8703 vim_free(HL_TABLE()[highlight_ga.ga_len].sg_name_u);
8707 * Translate a group ID to highlight attributes.
8710 syn_id2attr(hl_id)
8711 int hl_id;
8713 int attr;
8714 struct hl_group *sgp;
8716 hl_id = syn_get_final_id(hl_id);
8717 sgp = &HL_TABLE()[hl_id - 1]; /* index is ID minus one */
8719 #ifdef FEAT_GUI
8721 * Only use GUI attr when the GUI is being used.
8723 if (gui.in_use)
8724 attr = sgp->sg_gui_attr;
8725 else
8726 #endif
8727 if (t_colors > 1)
8728 attr = sgp->sg_cterm_attr;
8729 else
8730 attr = sgp->sg_term_attr;
8732 return attr;
8735 #ifdef FEAT_GUI
8737 * Get the GUI colors and attributes for a group ID.
8738 * NOTE: the colors will be INVALCOLOR when not set, the color otherwise.
8741 syn_id2colors(hl_id, fgp, bgp)
8742 int hl_id;
8743 guicolor_T *fgp;
8744 guicolor_T *bgp;
8746 struct hl_group *sgp;
8748 hl_id = syn_get_final_id(hl_id);
8749 sgp = &HL_TABLE()[hl_id - 1]; /* index is ID minus one */
8751 *fgp = sgp->sg_gui_fg;
8752 *bgp = sgp->sg_gui_bg;
8753 return sgp->sg_gui;
8755 #endif
8758 * Translate a group ID to the final group ID (following links).
8761 syn_get_final_id(hl_id)
8762 int hl_id;
8764 int count;
8765 struct hl_group *sgp;
8767 if (hl_id > highlight_ga.ga_len || hl_id < 1)
8768 return 0; /* Can be called from eval!! */
8771 * Follow links until there is no more.
8772 * Look out for loops! Break after 100 links.
8774 for (count = 100; --count >= 0; )
8776 sgp = &HL_TABLE()[hl_id - 1]; /* index is ID minus one */
8777 if (sgp->sg_link == 0 || sgp->sg_link > highlight_ga.ga_len)
8778 break;
8779 hl_id = sgp->sg_link;
8782 return hl_id;
8785 #ifdef FEAT_GUI
8787 * Call this function just after the GUI has started.
8788 * It finds the font and color handles for the highlighting groups.
8790 void
8791 highlight_gui_started()
8793 int idx;
8795 /* First get the colors from the "Normal" and "Menu" group, if set */
8796 set_normal_colors();
8798 for (idx = 0; idx < highlight_ga.ga_len; ++idx)
8799 gui_do_one_color(idx, FALSE, FALSE);
8801 highlight_changed();
8804 static void
8805 gui_do_one_color(idx, do_menu, do_tooltip)
8806 int idx;
8807 int do_menu; /* TRUE: might set the menu font */
8808 int do_tooltip; /* TRUE: might set the tooltip font */
8810 int didit = FALSE;
8812 if (HL_TABLE()[idx].sg_font_name != NULL)
8814 hl_do_font(idx, HL_TABLE()[idx].sg_font_name, FALSE, do_menu,
8815 do_tooltip);
8816 didit = TRUE;
8818 if (HL_TABLE()[idx].sg_gui_fg_name != NULL)
8820 HL_TABLE()[idx].sg_gui_fg =
8821 color_name2handle(HL_TABLE()[idx].sg_gui_fg_name);
8822 didit = TRUE;
8824 if (HL_TABLE()[idx].sg_gui_bg_name != NULL)
8826 HL_TABLE()[idx].sg_gui_bg =
8827 color_name2handle(HL_TABLE()[idx].sg_gui_bg_name);
8828 didit = TRUE;
8830 if (HL_TABLE()[idx].sg_gui_sp_name != NULL)
8832 HL_TABLE()[idx].sg_gui_sp =
8833 color_name2handle(HL_TABLE()[idx].sg_gui_sp_name);
8834 didit = TRUE;
8836 if (didit) /* need to get a new attr number */
8837 set_hl_attr(idx);
8840 #endif
8843 * Translate the 'highlight' option into attributes in highlight_attr[] and
8844 * set up the user highlights User1..9. If FEAT_STL_OPT is in use, a set of
8845 * corresponding highlights to use on top of HLF_SNC is computed.
8846 * Called only when the 'highlight' option has been changed and upon first
8847 * screen redraw after any :highlight command.
8848 * Return FAIL when an invalid flag is found in 'highlight'. OK otherwise.
8851 highlight_changed()
8853 int hlf;
8854 int i;
8855 char_u *p;
8856 int attr;
8857 char_u *end;
8858 int id;
8859 #ifdef USER_HIGHLIGHT
8860 char_u userhl[10];
8861 # ifdef FEAT_STL_OPT
8862 int id_SNC = -1;
8863 int id_S = -1;
8864 int hlcnt;
8865 # endif
8866 #endif
8867 static int hl_flags[HLF_COUNT] = HL_FLAGS;
8869 need_highlight_changed = FALSE;
8872 * Clear all attributes.
8874 for (hlf = 0; hlf < (int)HLF_COUNT; ++hlf)
8875 highlight_attr[hlf] = 0;
8878 * First set all attributes to their default value.
8879 * Then use the attributes from the 'highlight' option.
8881 for (i = 0; i < 2; ++i)
8883 if (i)
8884 p = p_hl;
8885 else
8886 p = get_highlight_default();
8887 if (p == NULL) /* just in case */
8888 continue;
8890 while (*p)
8892 for (hlf = 0; hlf < (int)HLF_COUNT; ++hlf)
8893 if (hl_flags[hlf] == *p)
8894 break;
8895 ++p;
8896 if (hlf == (int)HLF_COUNT || *p == NUL)
8897 return FAIL;
8900 * Allow several hl_flags to be combined, like "bu" for
8901 * bold-underlined.
8903 attr = 0;
8904 for ( ; *p && *p != ','; ++p) /* parse upto comma */
8906 if (vim_iswhite(*p)) /* ignore white space */
8907 continue;
8909 if (attr > HL_ALL) /* Combination with ':' is not allowed. */
8910 return FAIL;
8912 switch (*p)
8914 case 'b': attr |= HL_BOLD;
8915 break;
8916 case 'i': attr |= HL_ITALIC;
8917 break;
8918 case '-':
8919 case 'n': /* no highlighting */
8920 break;
8921 case 'r': attr |= HL_INVERSE;
8922 break;
8923 case 's': attr |= HL_STANDOUT;
8924 break;
8925 case 'u': attr |= HL_UNDERLINE;
8926 break;
8927 case 'c': attr |= HL_UNDERCURL;
8928 break;
8929 case ':': ++p; /* highlight group name */
8930 if (attr || *p == NUL) /* no combinations */
8931 return FAIL;
8932 end = vim_strchr(p, ',');
8933 if (end == NULL)
8934 end = p + STRLEN(p);
8935 id = syn_check_group(p, (int)(end - p));
8936 if (id == 0)
8937 return FAIL;
8938 attr = syn_id2attr(id);
8939 p = end - 1;
8940 #if defined(FEAT_STL_OPT) && defined(USER_HIGHLIGHT)
8941 if (hlf == (int)HLF_SNC)
8942 id_SNC = syn_get_final_id(id);
8943 else if (hlf == (int)HLF_S)
8944 id_S = syn_get_final_id(id);
8945 #endif
8946 break;
8947 default: return FAIL;
8950 highlight_attr[hlf] = attr;
8952 p = skip_to_option_part(p); /* skip comma and spaces */
8956 #ifdef USER_HIGHLIGHT
8957 /* Setup the user highlights
8959 * Temporarily utilize 10 more hl entries. Have to be in there
8960 * simultaneously in case of table overflows in get_attr_entry()
8962 # ifdef FEAT_STL_OPT
8963 if (ga_grow(&highlight_ga, 10) == FAIL)
8964 return FAIL;
8965 hlcnt = highlight_ga.ga_len;
8966 if (id_S == 0)
8967 { /* Make sure id_S is always valid to simplify code below */
8968 memset(&HL_TABLE()[hlcnt + 9], 0, sizeof(struct hl_group));
8969 HL_TABLE()[hlcnt + 9].sg_term = highlight_attr[HLF_S];
8970 id_S = hlcnt + 10;
8972 # endif
8973 for (i = 0; i < 9; i++)
8975 sprintf((char *)userhl, "User%d", i + 1);
8976 id = syn_name2id(userhl);
8977 if (id == 0)
8979 highlight_user[i] = 0;
8980 # ifdef FEAT_STL_OPT
8981 highlight_stlnc[i] = 0;
8982 # endif
8984 else
8986 # ifdef FEAT_STL_OPT
8987 struct hl_group *hlt = HL_TABLE();
8988 # endif
8990 highlight_user[i] = syn_id2attr(id);
8991 # ifdef FEAT_STL_OPT
8992 if (id_SNC == 0)
8994 memset(&hlt[hlcnt + i], 0, sizeof(struct hl_group));
8995 hlt[hlcnt + i].sg_term = highlight_attr[HLF_SNC];
8996 hlt[hlcnt + i].sg_cterm = highlight_attr[HLF_SNC];
8997 # ifdef FEAT_GUI
8998 hlt[hlcnt + i].sg_gui = highlight_attr[HLF_SNC];
8999 # endif
9001 else
9002 mch_memmove(&hlt[hlcnt + i],
9003 &hlt[id_SNC - 1],
9004 sizeof(struct hl_group));
9005 hlt[hlcnt + i].sg_link = 0;
9007 /* Apply difference between UserX and HLF_S to HLF_SNC */
9008 hlt[hlcnt + i].sg_term ^=
9009 hlt[id - 1].sg_term ^ hlt[id_S - 1].sg_term;
9010 if (hlt[id - 1].sg_start != hlt[id_S - 1].sg_start)
9011 hlt[hlcnt + i].sg_start = hlt[id - 1].sg_start;
9012 if (hlt[id - 1].sg_stop != hlt[id_S - 1].sg_stop)
9013 hlt[hlcnt + i].sg_stop = hlt[id - 1].sg_stop;
9014 hlt[hlcnt + i].sg_cterm ^=
9015 hlt[id - 1].sg_cterm ^ hlt[id_S - 1].sg_cterm;
9016 if (hlt[id - 1].sg_cterm_fg != hlt[id_S - 1].sg_cterm_fg)
9017 hlt[hlcnt + i].sg_cterm_fg = hlt[id - 1].sg_cterm_fg;
9018 if (hlt[id - 1].sg_cterm_bg != hlt[id_S - 1].sg_cterm_bg)
9019 hlt[hlcnt + i].sg_cterm_bg = hlt[id - 1].sg_cterm_bg;
9020 # ifdef FEAT_GUI
9021 hlt[hlcnt + i].sg_gui ^=
9022 hlt[id - 1].sg_gui ^ hlt[id_S - 1].sg_gui;
9023 if (hlt[id - 1].sg_gui_fg != hlt[id_S - 1].sg_gui_fg)
9024 hlt[hlcnt + i].sg_gui_fg = hlt[id - 1].sg_gui_fg;
9025 if (hlt[id - 1].sg_gui_bg != hlt[id_S - 1].sg_gui_bg)
9026 hlt[hlcnt + i].sg_gui_bg = hlt[id - 1].sg_gui_bg;
9027 if (hlt[id - 1].sg_gui_sp != hlt[id_S - 1].sg_gui_sp)
9028 hlt[hlcnt + i].sg_gui_sp = hlt[id - 1].sg_gui_sp;
9029 if (hlt[id - 1].sg_font != hlt[id_S - 1].sg_font)
9030 hlt[hlcnt + i].sg_font = hlt[id - 1].sg_font;
9031 # ifdef FEAT_XFONTSET
9032 if (hlt[id - 1].sg_fontset != hlt[id_S - 1].sg_fontset)
9033 hlt[hlcnt + i].sg_fontset = hlt[id - 1].sg_fontset;
9034 # endif
9035 # endif
9036 highlight_ga.ga_len = hlcnt + i + 1;
9037 set_hl_attr(hlcnt + i); /* At long last we can apply */
9038 highlight_stlnc[i] = syn_id2attr(hlcnt + i + 1);
9039 # endif
9042 # ifdef FEAT_STL_OPT
9043 highlight_ga.ga_len = hlcnt;
9044 # endif
9046 #endif /* USER_HIGHLIGHT */
9048 return OK;
9051 #if defined(FEAT_CMDL_COMPL) || defined(PROTO)
9053 static void highlight_list __ARGS((void));
9054 static void highlight_list_two __ARGS((int cnt, int attr));
9057 * Handle command line completion for :highlight command.
9059 void
9060 set_context_in_highlight_cmd(xp, arg)
9061 expand_T *xp;
9062 char_u *arg;
9064 char_u *p;
9066 /* Default: expand group names */
9067 xp->xp_context = EXPAND_HIGHLIGHT;
9068 xp->xp_pattern = arg;
9069 include_link = 2;
9070 include_default = 1;
9072 /* (part of) subcommand already typed */
9073 if (*arg != NUL)
9075 p = skiptowhite(arg);
9076 if (*p != NUL) /* past "default" or group name */
9078 include_default = 0;
9079 if (STRNCMP("default", arg, p - arg) == 0)
9081 arg = skipwhite(p);
9082 xp->xp_pattern = arg;
9083 p = skiptowhite(arg);
9085 if (*p != NUL) /* past group name */
9087 include_link = 0;
9088 if (arg[1] == 'i' && arg[0] == 'N')
9089 highlight_list();
9090 if (STRNCMP("link", arg, p - arg) == 0
9091 || STRNCMP("clear", arg, p - arg) == 0)
9093 xp->xp_pattern = skipwhite(p);
9094 p = skiptowhite(xp->xp_pattern);
9095 if (*p != NUL) /* past first group name */
9097 xp->xp_pattern = skipwhite(p);
9098 p = skiptowhite(xp->xp_pattern);
9101 if (*p != NUL) /* past group name(s) */
9102 xp->xp_context = EXPAND_NOTHING;
9109 * List highlighting matches in a nice way.
9111 static void
9112 highlight_list()
9114 int i;
9116 for (i = 10; --i >= 0; )
9117 highlight_list_two(i, hl_attr(HLF_D));
9118 for (i = 40; --i >= 0; )
9119 highlight_list_two(99, 0);
9122 static void
9123 highlight_list_two(cnt, attr)
9124 int cnt;
9125 int attr;
9127 msg_puts_attr((char_u *)("N \bI \b! \b" + cnt / 11), attr);
9128 msg_clr_eos();
9129 out_flush();
9130 ui_delay(cnt == 99 ? 40L : (long)cnt * 50L, FALSE);
9133 #endif /* FEAT_CMDL_COMPL */
9135 #if defined(FEAT_CMDL_COMPL) || (defined(FEAT_SYN_HL) && defined(FEAT_EVAL)) \
9136 || defined(FEAT_SIGNS) || defined(PROTO)
9138 * Function given to ExpandGeneric() to obtain the list of group names.
9139 * Also used for synIDattr() function.
9141 char_u *
9142 get_highlight_name(xp, idx)
9143 expand_T *xp UNUSED;
9144 int idx;
9146 #ifdef FEAT_CMDL_COMPL
9147 if (idx == highlight_ga.ga_len && include_none != 0)
9148 return (char_u *)"none";
9149 if (idx == highlight_ga.ga_len + include_none && include_default != 0)
9150 return (char_u *)"default";
9151 if (idx == highlight_ga.ga_len + include_none + include_default
9152 && include_link != 0)
9153 return (char_u *)"link";
9154 if (idx == highlight_ga.ga_len + include_none + include_default + 1
9155 && include_link != 0)
9156 return (char_u *)"clear";
9157 #endif
9158 if (idx < 0 || idx >= highlight_ga.ga_len)
9159 return NULL;
9160 return HL_TABLE()[idx].sg_name;
9162 #endif
9164 #if defined(FEAT_GUI) || defined(PROTO)
9166 * Free all the highlight group fonts.
9167 * Used when quitting for systems which need it.
9169 void
9170 free_highlight_fonts()
9172 int idx;
9174 for (idx = 0; idx < highlight_ga.ga_len; ++idx)
9176 gui_mch_free_font(HL_TABLE()[idx].sg_font);
9177 HL_TABLE()[idx].sg_font = NOFONT;
9178 # ifdef FEAT_XFONTSET
9179 gui_mch_free_fontset(HL_TABLE()[idx].sg_fontset);
9180 HL_TABLE()[idx].sg_fontset = NOFONTSET;
9181 # endif
9184 gui_mch_free_font(gui.norm_font);
9185 # ifdef FEAT_XFONTSET
9186 gui_mch_free_fontset(gui.fontset);
9187 # endif
9188 # ifndef HAVE_GTK2
9189 gui_mch_free_font(gui.bold_font);
9190 gui_mch_free_font(gui.ital_font);
9191 gui_mch_free_font(gui.boldital_font);
9192 # endif
9194 #endif
9196 /**************************************
9197 * End of Highlighting stuff *
9198 **************************************/