Constify a static variable
[profile/ivi/libxkbcommon.git] / src / xkbcomp / symbols.c
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26
27 #include "xkbcomp-priv.h"
28 #include "parseutils.h"
29 #include "action.h"
30 #include "alias.h"
31 #include "keycodes.h"
32 #include "vmod.h"
33
34 /***====================================================================***/
35
36 #define RepeatYes       1
37 #define RepeatNo        0
38 #define RepeatUndefined ~((unsigned)0)
39
40 #define _Key_Syms       (1<<0)
41 #define _Key_Acts       (1<<1)
42 #define _Key_Repeat     (1<<2)
43 #define _Key_Behavior   (1<<3)
44 #define _Key_Type_Dflt  (1<<4)
45 #define _Key_Types      (1<<5)
46 #define _Key_GroupInfo  (1<<6)
47 #define _Key_VModMap    (1<<7)
48
49 typedef struct _KeyInfo
50 {
51     CommonInfo defs;
52     unsigned long name; /* the 4 chars of the key name, as long */
53     unsigned char groupInfo;
54     unsigned char typesDefined;
55     unsigned char symsDefined;
56     unsigned char actsDefined;
57     unsigned int numLevels[XkbNumKbdGroups];
58
59     /* syms[group] -> Single array for all the keysyms in the group. */
60     xkb_keysym_t *syms[XkbNumKbdGroups];
61     /* sizeSyms[group] -> The size of the syms[group] array. */
62     int sizeSyms[XkbNumKbdGroups];
63     /*
64      * symsMapIndex[group][level] -> The index from which the syms for
65      * the level begin in the syms[group] array. Remember each keycode
66      * can have multiple keysyms in each level (that is, each key press
67      * can result in multiple keysyms).
68      */
69     int *symsMapIndex[XkbNumKbdGroups];
70     /*
71      * symsMapNumEntries[group][level] -> How many syms are in
72      * syms[group][symsMapIndex[group][level]].
73      */
74     unsigned int *symsMapNumEntries[XkbNumKbdGroups];
75
76     union xkb_action *acts[XkbNumKbdGroups];
77     xkb_atom_t types[XkbNumKbdGroups];
78     unsigned repeat;
79     struct xkb_behavior behavior;
80     unsigned short vmodmap;
81     xkb_atom_t dfltType;
82 } KeyInfo;
83
84 /**
85  * Init the given key info to sane values.
86  */
87 static void
88 InitKeyInfo(KeyInfo * info)
89 {
90     int i;
91     static const char dflt[4] = "*";
92
93     info->defs.defined = 0;
94     info->defs.fileID = 0;
95     info->defs.merge = MergeOverride;
96     info->defs.next = NULL;
97     info->name = KeyNameToLong(dflt);
98     info->groupInfo = 0;
99     info->typesDefined = info->symsDefined = info->actsDefined = 0;
100     for (i = 0; i < XkbNumKbdGroups; i++)
101     {
102         info->numLevels[i] = 0;
103         info->types[i] = XKB_ATOM_NONE;
104         info->syms[i] = NULL;
105         info->sizeSyms[i] = 0;
106         info->symsMapIndex[i] = NULL;
107         info->symsMapNumEntries[i] = NULL;
108         info->acts[i] = NULL;
109     }
110     info->dfltType = XKB_ATOM_NONE;
111     info->behavior.type = XkbKB_Default;
112     info->behavior.data = 0;
113     info->vmodmap = 0;
114     info->repeat = RepeatUndefined;
115 }
116
117 /**
118  * Free memory associated with this key info and reset to sane values.
119  */
120 static void
121 FreeKeyInfo(KeyInfo * info)
122 {
123     int i;
124
125     info->defs.defined = 0;
126     info->defs.fileID = 0;
127     info->defs.merge = MergeOverride;
128     info->defs.next = NULL;
129     info->groupInfo = 0;
130     info->typesDefined = info->symsDefined = info->actsDefined = 0;
131     for (i = 0; i < XkbNumKbdGroups; i++)
132     {
133         info->numLevels[i] = 0;
134         info->types[i] = XKB_ATOM_NONE;
135         free(info->syms[i]);
136         info->syms[i] = NULL;
137         info->sizeSyms[i] = 0;
138         free(info->symsMapIndex[i]);
139         info->symsMapIndex[i] = NULL;
140         free(info->symsMapNumEntries[i]);
141         info->symsMapNumEntries[i] = NULL;
142         free(info->acts[i]);
143         info->acts[i] = NULL;
144     }
145     info->dfltType = XKB_ATOM_NONE;
146     info->behavior.type = XkbKB_Default;
147     info->behavior.data = 0;
148     info->vmodmap = 0;
149     info->repeat = RepeatUndefined;
150 }
151
152 /**
153  * Copy old into new, optionally reset old to 0.
154  * If old is reset, new simply re-uses old's memory. Otherwise, the memory is
155  * newly allocated and new points to the new memory areas.
156  */
157 static bool
158 CopyKeyInfo(KeyInfo * old, KeyInfo * new, bool clearOld)
159 {
160     int i;
161
162     *new = *old;
163     new->defs.next = NULL;
164     if (clearOld)
165     {
166         for (i = 0; i < XkbNumKbdGroups; i++)
167         {
168             old->numLevels[i] = 0;
169             old->symsMapIndex[i] = NULL;
170             old->symsMapNumEntries[i] = NULL;
171             old->syms[i] = NULL;
172             old->sizeSyms[i] = 0;
173             old->acts[i] = NULL;
174         }
175     }
176     else
177     {
178         unsigned int width;
179         for (i = 0; i < XkbNumKbdGroups; i++)
180         {
181             width = new->numLevels[i];
182             if (old->syms[i] != NULL)
183             {
184                 new->syms[i] = uTypedCalloc(new->sizeSyms[i], xkb_keysym_t);
185                 if (!new->syms[i])
186                 {
187                     new->syms[i] = NULL;
188                     new->sizeSyms[i] = 0;
189                     new->numLevels[i] = 0;
190                     new->acts[i] = NULL;
191                     return false;
192                 }
193                 memcpy(new->syms[i], old->syms[i],
194                        new->sizeSyms[i] * sizeof(xkb_keysym_t));
195                 new->symsMapIndex[i] = uTypedCalloc(width, int);
196                 if (!new->symsMapIndex[i])
197                 {
198                     free(new->syms[i]);
199                     new->syms[i] = NULL;
200                     new->sizeSyms[i] = 0;
201                     new->numLevels[i] = 0;
202                     new->acts[i] = NULL;
203                     return false;
204                 }
205                 memcpy(new->symsMapIndex[i], old->symsMapIndex[i],
206                        width * sizeof(int));
207                 new->symsMapNumEntries[i] = uTypedCalloc(width, unsigned int);
208                 if (!new->symsMapNumEntries[i])
209                 {
210                     free(new->syms[i]);
211                     new->syms[i] = NULL;
212                     new->sizeSyms[i] = 0;
213                     free(new->symsMapIndex[i]);
214                     new->symsMapIndex[i] = NULL;
215                     new->numLevels[i] = 0;
216                     new->acts[i] = NULL;
217                     return false;
218                 }
219                 memcpy(new->symsMapNumEntries[i], old->symsMapNumEntries[i],
220                        width * sizeof(unsigned int));
221             }
222             if (old->acts[i] != NULL)
223             {
224                 new->acts[i] = uTypedCalloc(width, union xkb_action);
225                 if (!new->acts[i])
226                 {
227                     free(new->syms[i]);
228                     new->syms[i] = NULL;
229                     new->sizeSyms[i] = 0;
230                     free(new->symsMapIndex[i]);
231                     new->symsMapIndex[i] = NULL;
232                     free(new->symsMapNumEntries[i]);
233                     new->symsMapNumEntries[i] = NULL;
234                     new->numLevels[i] = 0;
235                     return false;
236                 }
237                 memcpy(new->acts[i], old->acts[i],
238                        width * sizeof(union xkb_action));
239             }
240         }
241     }
242     return true;
243 }
244
245 /***====================================================================***/
246
247 typedef struct _ModMapEntry
248 {
249     CommonInfo defs;
250     bool haveSymbol;
251     int modifier;
252     union
253     {
254         unsigned long keyName;
255         xkb_keysym_t keySym;
256     } u;
257 } ModMapEntry;
258
259 #define SYMBOLS_INIT_SIZE       110
260 #define SYMBOLS_CHUNK           20
261 typedef struct _SymbolsInfo
262 {
263     char *name;         /* e.g. pc+us+inet(evdev) */
264     int errorCount;
265     unsigned fileID;
266     unsigned merge;
267     unsigned explicit_group;
268     unsigned groupInfo;
269     unsigned szKeys;
270     unsigned nKeys;
271     KeyInfo *keys;
272     KeyInfo dflt;
273     VModInfo vmods;
274     ActionInfo *action;
275     xkb_atom_t groupNames[XkbNumKbdGroups];
276
277     ModMapEntry *modMap;
278     AliasInfo *aliases;
279 } SymbolsInfo;
280
281 static void
282 InitSymbolsInfo(SymbolsInfo * info, struct xkb_keymap *keymap)
283 {
284     int i;
285
286     info->name = NULL;
287     info->explicit_group = 0;
288     info->errorCount = 0;
289     info->fileID = 0;
290     info->merge = MergeOverride;
291     info->groupInfo = 0;
292     info->szKeys = SYMBOLS_INIT_SIZE;
293     info->nKeys = 0;
294     info->keys = uTypedCalloc(SYMBOLS_INIT_SIZE, KeyInfo);
295     info->modMap = NULL;
296     for (i = 0; i < XkbNumKbdGroups; i++)
297         info->groupNames[i] = XKB_ATOM_NONE;
298     InitKeyInfo(&info->dflt);
299     InitVModInfo(&info->vmods, keymap);
300     info->action = NULL;
301     info->aliases = NULL;
302 }
303
304 static void
305 FreeSymbolsInfo(SymbolsInfo * info)
306 {
307     unsigned int i;
308
309     free(info->name);
310     if (info->keys)
311     {
312         for (i = 0; i < info->nKeys; i++)
313             FreeKeyInfo(&info->keys[i]);
314         free(info->keys);
315     }
316     if (info->modMap)
317         ClearCommonInfo(&info->modMap->defs);
318     if (info->aliases)
319         ClearAliases(&info->aliases);
320     memset(info, 0, sizeof(SymbolsInfo));
321 }
322
323 static bool
324 ResizeKeyGroup(KeyInfo * key, unsigned int group, unsigned int numLevels,
325                unsigned sizeSyms, bool forceActions)
326 {
327     int i;
328
329     if (key->syms[group] == NULL || key->sizeSyms[group] < sizeSyms)
330     {
331         key->syms[group] = uTypedRecalloc(key->syms[group],
332                                           key->sizeSyms[group],
333                                           sizeSyms,
334                                           xkb_keysym_t);
335         if (!key->syms[group]) {
336             key->sizeSyms[group] = 0;
337             return false;
338         }
339         key->sizeSyms[group] = sizeSyms;
340     }
341     if (!key->symsMapIndex[group] || key->numLevels[group] < numLevels)
342     {
343         key->symsMapIndex[group] = uTypedRealloc(key->symsMapIndex[group],
344                                                  numLevels,
345                                                  int);
346         if (!key->symsMapIndex[group])
347             return false;
348         for (i = key->numLevels[group]; i < numLevels; i++)
349             key->symsMapIndex[group][i] = -1;
350     }
351     if (!key->symsMapNumEntries[group] || key->numLevels[group] < numLevels)
352     {
353         key->symsMapNumEntries[group] =
354             uTypedRecalloc(key->symsMapNumEntries[group],
355                            key->numLevels[group],
356                            numLevels,
357                            unsigned int);
358         if (!key->symsMapNumEntries[group])
359             return false;
360     }
361     if ((forceActions &&
362          (key->numLevels[group] < numLevels || (key->acts[group] == NULL))) ||
363         (key->numLevels[group] < numLevels && (key->acts[group] != NULL)))
364     {
365         key->acts[group] = uTypedRecalloc(key->acts[group],
366                                           key->numLevels[group],
367                                           numLevels,
368                                           union xkb_action);
369         if (!key->acts[group])
370             return false;
371     }
372     if (key->numLevels[group] < numLevels)
373         key->numLevels[group] = numLevels;
374     return true;
375 }
376
377 static bool
378 MergeKeyGroups(SymbolsInfo * info,
379                KeyInfo * into, KeyInfo * from, unsigned group)
380 {
381     xkb_keysym_t *resultSyms = NULL;
382     union xkb_action *resultActs;
383     unsigned int resultWidth;
384     unsigned int resultSize = 0;
385     int cur_idx = 0;
386     int i;
387     bool report, clobber;
388
389     clobber = (from->defs.merge != MergeAugment);
390     report = (warningLevel > 9) ||
391         ((into->defs.fileID == from->defs.fileID) && (warningLevel > 0));
392     if (into->numLevels[group] >= from->numLevels[group])
393     {
394         resultActs = into->acts[group];
395         resultWidth = into->numLevels[group];
396     }
397     else
398     {
399         resultActs = from->acts[group];
400         resultWidth = from->numLevels[group];
401         into->symsMapIndex[group] = uTypedRealloc(into->symsMapIndex[group],
402                                                   from->numLevels[group],
403                                                   int);
404         into->symsMapNumEntries[group] =
405             uTypedRecalloc(into->symsMapNumEntries[group],
406                            into->numLevels[group],
407                            from->numLevels[group],
408                            unsigned int);
409         if (!into->symsMapIndex[group] || !into->symsMapNumEntries[group])
410         {
411             WSGO("Could not allocate level indices for key info merge\n");
412             ACTION("Group %d of key %s not merged\n", group,
413                    longText(into->name));
414
415             return false;
416         }
417         for (i = into->numLevels[group]; i < from->numLevels[group]; i++)
418             into->symsMapIndex[group][i] = -1;
419     }
420
421     if ((resultActs == NULL) && (into->acts[group] || from->acts[group]))
422     {
423         resultActs = uTypedCalloc(resultWidth, union xkb_action);
424         if (!resultActs)
425         {
426             WSGO("Could not allocate actions for group merge\n");
427             ACTION("Group %d of key %s not merged\n", group,
428                     longText(into->name));
429             return false;
430         }
431         for (i = 0; i < resultWidth; i++)
432         {
433             union xkb_action *fromAct, *toAct;
434             fromAct = (from->acts[group] ? &from->acts[group][i] : NULL);
435             toAct = (into->acts[group] ? &into->acts[group][i] : NULL);
436             if (((fromAct == NULL) || (fromAct->type == XkbSA_NoAction))
437                 && (toAct != NULL))
438             {
439                 resultActs[i] = *toAct;
440             }
441             else if (((toAct == NULL) || (toAct->type == XkbSA_NoAction))
442                      && (fromAct != NULL))
443             {
444                 resultActs[i] = *fromAct;
445             }
446             else
447             {
448                 union xkb_action *use, *ignore;
449                 if (clobber)
450                 {
451                     use = fromAct;
452                     ignore = toAct;
453                 }
454                 else
455                 {
456                     use = toAct;
457                     ignore = fromAct;
458                 }
459                 if (report)
460                 {
461                     WARN
462                         ("Multiple actions for level %d/group %d on key %s\n",
463                          i + 1, group + 1, longText(into->name));
464                     ACTION("Using %s, ignoring %s\n",
465                             XkbcActionTypeText(use->type),
466                             XkbcActionTypeText(ignore->type));
467                 }
468                 if (use)
469                     resultActs[i] = *use;
470             }
471         }
472     }
473
474     for (i = 0; i < resultWidth; i++)
475     {
476         unsigned int fromSize = 0;
477         unsigned toSize = 0;
478
479         if (from->symsMapNumEntries[group] && (i < from->numLevels[group]))
480             fromSize = from->symsMapNumEntries[group][i];
481         if (into->symsMapNumEntries[group] && (i < into->numLevels[group]))
482             toSize = into->symsMapNumEntries[group][i];
483
484         if (fromSize == 0 || fromSize == toSize || clobber)
485         {
486             fromSize += toSize;
487         }
488         else if (toSize == 0)
489         {
490             resultSize += fromSize;
491         }
492     }
493
494     if (resultSize == 0)
495         goto out;
496
497     resultSyms = uTypedCalloc(resultSize, xkb_keysym_t);
498     if (!resultSyms)
499     {
500         WSGO("Could not allocate symbols for group merge\n");
501         ACTION("Group %d of key %s not merged\n", group, longText(into->name));
502         return false;
503     }
504
505     for (i = 0; i < resultWidth; i++)
506     {
507         enum { NONE, FROM, TO } use;
508         unsigned int fromSize = 0;
509         unsigned int toSize = 0;
510
511         if (from->symsMapNumEntries[group] && (i < from->numLevels[group]))
512             fromSize = from->symsMapNumEntries[group][i];
513         if (into->symsMapNumEntries[group] && (i < into->numLevels[group]))
514             toSize = into->symsMapNumEntries[group][i];
515
516         if (!fromSize && !toSize)
517         {
518             into->symsMapIndex[group][i] = -1;
519             into->symsMapNumEntries[group][i] = 0;
520             continue;
521         }
522
523         if ((fromSize && !toSize) || clobber)
524             use = FROM;
525         else
526             use = TO;
527
528         if (toSize && fromSize && report)
529         {
530             INFO("Multiple symbols for group %d, level %d on key %s\n",
531                  group + 1, i + 1, longText(into->name));
532             ACTION("Using %s, ignoring %s\n",
533                    (use == FROM ? "from" : "to"),
534                    (use == FROM ? "to" : "from"));
535         }
536
537         if (use == FROM)
538         {
539             memcpy(&resultSyms[cur_idx],
540                    &from->syms[group][from->symsMapIndex[group][i]],
541                    from->symsMapNumEntries[group][i] * sizeof(xkb_keysym_t));
542             into->symsMapIndex[group][i] = cur_idx;
543             into->symsMapNumEntries[group][i] =
544                 from->symsMapNumEntries[group][i];
545         }
546         else
547         {
548             memcpy(&resultSyms[cur_idx],
549                    &into->syms[group][from->symsMapIndex[group][i]],
550                    into->symsMapNumEntries[group][i] * sizeof(xkb_keysym_t));
551             into->symsMapIndex[group][i] = cur_idx;
552         }
553         cur_idx += into->symsMapNumEntries[group][i];
554     }
555
556 out:
557     if (resultActs != into->acts[group])
558         free(into->acts[group]);
559     if (resultActs != from->acts[group])
560         free(from->acts[group]);
561     into->numLevels[group] = resultWidth;
562     free(into->syms[group]);
563     into->syms[group] = resultSyms;
564     free(from->syms[group]);
565     from->syms[group] = NULL;
566     from->sizeSyms[group] = 0;
567     into->sizeSyms[group] = resultSize;
568     free(from->symsMapIndex[group]);
569     from->symsMapIndex[group] = NULL;
570     free(from->symsMapNumEntries[group]);
571     from->symsMapNumEntries[group] = NULL;
572     into->acts[group] = resultActs;
573     from->acts[group] = NULL;
574     into->symsDefined |= (1 << group);
575     from->symsDefined &= ~(1 << group);
576     into->actsDefined |= (1 << group);
577     from->actsDefined &= ~(1 << group);
578
579     return true;
580 }
581
582 static bool
583 MergeKeys(SymbolsInfo *info, struct xkb_keymap *keymap,
584           KeyInfo *into, KeyInfo *from)
585 {
586     int i;
587     unsigned collide = 0;
588     bool report;
589
590     if (from->defs.merge == MergeReplace)
591     {
592         for (i = 0; i < XkbNumKbdGroups; i++)
593         {
594             if (into->numLevels[i] != 0)
595             {
596                 free(into->syms[i]);
597                 free(into->acts[i]);
598             }
599         }
600         *into = *from;
601         memset(from, 0, sizeof(KeyInfo));
602         return true;
603     }
604     report = ((warningLevel > 9) ||
605               ((into->defs.fileID == from->defs.fileID)
606                && (warningLevel > 0)));
607     for (i = 0; i < XkbNumKbdGroups; i++)
608     {
609         if (from->numLevels[i] > 0)
610         {
611             if (into->numLevels[i] == 0)
612             {
613                 into->numLevels[i] = from->numLevels[i];
614                 into->syms[i] = from->syms[i];
615                 into->sizeSyms[i] = from->sizeSyms[i];
616                 into->symsMapIndex[i] = from->symsMapIndex[i];
617                 into->symsMapNumEntries[i] = from->symsMapNumEntries[i];
618                 into->acts[i] = from->acts[i];
619                 into->symsDefined |= (1 << i);
620                 from->syms[i] = NULL;
621                 from->sizeSyms[i] = 0;
622                 from->symsMapIndex[i] = NULL;
623                 from->symsMapNumEntries[i] = NULL;
624                 from->acts[i] = NULL;
625                 from->numLevels[i] = 0;
626                 from->symsDefined &= ~(1 << i);
627                 if (into->syms[i])
628                     into->defs.defined |= _Key_Syms;
629                 if (into->acts[i])
630                     into->defs.defined |= _Key_Acts;
631             }
632             else
633             {
634                 if (report)
635                 {
636                     if (into->syms[i])
637                         collide |= _Key_Syms;
638                     if (into->acts[i])
639                         collide |= _Key_Acts;
640                 }
641                 MergeKeyGroups(info, into, from, (unsigned) i);
642             }
643         }
644         if (from->types[i] != XKB_ATOM_NONE)
645         {
646             if ((into->types[i] != XKB_ATOM_NONE) && report &&
647                 (into->types[i] != from->types[i]))
648             {
649                 xkb_atom_t use, ignore;
650                 collide |= _Key_Types;
651                 if (from->defs.merge != MergeAugment)
652                 {
653                     use = from->types[i];
654                     ignore = into->types[i];
655                 }
656                 else
657                 {
658                     use = into->types[i];
659                     ignore = from->types[i];
660                 }
661                 WARN
662                     ("Multiple definitions for group %d type of key %s\n",
663                      i, longText(into->name));
664                 ACTION("Using %s, ignoring %s\n",
665                         xkb_atom_text(keymap->ctx, use),
666                         xkb_atom_text(keymap->ctx, ignore));
667             }
668             if ((from->defs.merge != MergeAugment)
669                 || (into->types[i] == XKB_ATOM_NONE))
670             {
671                 into->types[i] = from->types[i];
672             }
673         }
674     }
675     if (UseNewField(_Key_Behavior, &into->defs, &from->defs, &collide))
676     {
677         into->behavior = from->behavior;
678         into->defs.defined |= _Key_Behavior;
679     }
680     if (UseNewField(_Key_VModMap, &into->defs, &from->defs, &collide))
681     {
682         into->vmodmap = from->vmodmap;
683         into->defs.defined |= _Key_VModMap;
684     }
685     if (UseNewField(_Key_Repeat, &into->defs, &from->defs, &collide))
686     {
687         into->repeat = from->repeat;
688         into->defs.defined |= _Key_Repeat;
689     }
690     if (UseNewField(_Key_Type_Dflt, &into->defs, &from->defs, &collide))
691     {
692         into->dfltType = from->dfltType;
693         into->defs.defined |= _Key_Type_Dflt;
694     }
695     if (UseNewField(_Key_GroupInfo, &into->defs, &from->defs, &collide))
696     {
697         into->groupInfo = from->groupInfo;
698         into->defs.defined |= _Key_GroupInfo;
699     }
700     if (collide)
701     {
702         WARN("Symbol map for key %s redefined\n",
703               longText(into->name));
704         ACTION("Using %s definition for conflicting fields\n",
705                 (from->defs.merge == MergeAugment ? "first" : "last"));
706     }
707     return true;
708 }
709
710 static bool
711 AddKeySymbols(SymbolsInfo *info, KeyInfo *key, struct xkb_keymap *keymap)
712 {
713     unsigned int i;
714     unsigned long real_name;
715
716     for (i = 0; i < info->nKeys; i++)
717     {
718         if (info->keys[i].name == key->name)
719             return MergeKeys(info, keymap, &info->keys[i], key);
720     }
721     if (FindKeyNameForAlias(keymap, key->name, &real_name))
722     {
723         for (i = 0; i < info->nKeys; i++)
724         {
725             if (info->keys[i].name == real_name)
726                 return MergeKeys(info, keymap, &info->keys[i], key);
727         }
728     }
729     if (info->nKeys >= info->szKeys)
730     {
731         info->szKeys += SYMBOLS_CHUNK;
732         info->keys =
733             uTypedRecalloc(info->keys, info->nKeys, info->szKeys, KeyInfo);
734         if (!info->keys)
735         {
736             WSGO("Could not allocate key symbols descriptions\n");
737             ACTION("Some key symbols definitions may be lost\n");
738             return false;
739         }
740     }
741     return CopyKeyInfo(key, &info->keys[info->nKeys++], true);
742 }
743
744 static bool
745 AddModMapEntry(SymbolsInfo * info, ModMapEntry * new)
746 {
747     ModMapEntry *mm;
748     bool clobber;
749
750     clobber = (new->defs.merge != MergeAugment);
751     for (mm = info->modMap; mm != NULL; mm = (ModMapEntry *) mm->defs.next)
752     {
753         if (new->haveSymbol && mm->haveSymbol
754             && (new->u.keySym == mm->u.keySym))
755         {
756             unsigned use, ignore;
757             if (mm->modifier != new->modifier)
758             {
759                 if (clobber)
760                 {
761                     use = new->modifier;
762                     ignore = mm->modifier;
763                 }
764                 else
765                 {
766                     use = mm->modifier;
767                     ignore = new->modifier;
768                 }
769                 ERROR
770                     ("%s added to symbol map for multiple modifiers\n",
771                      XkbcKeysymText(new->u.keySym));
772                 ACTION("Using %s, ignoring %s.\n",
773                         XkbcModIndexText(use),
774                         XkbcModIndexText(ignore));
775                 mm->modifier = use;
776             }
777             return true;
778         }
779         if ((!new->haveSymbol) && (!mm->haveSymbol) &&
780             (new->u.keyName == mm->u.keyName))
781         {
782             unsigned use, ignore;
783             if (mm->modifier != new->modifier)
784             {
785                 if (clobber)
786                 {
787                     use = new->modifier;
788                     ignore = mm->modifier;
789                 }
790                 else
791                 {
792                     use = mm->modifier;
793                     ignore = new->modifier;
794                 }
795                 ERROR("Key %s added to map for multiple modifiers\n",
796                        longText(new->u.keyName));
797                 ACTION("Using %s, ignoring %s.\n",
798                         XkbcModIndexText(use),
799                         XkbcModIndexText(ignore));
800                 mm->modifier = use;
801             }
802             return true;
803         }
804     }
805     mm = uTypedAlloc(ModMapEntry);
806     if (mm == NULL)
807     {
808         WSGO("Could not allocate modifier map entry\n");
809         ACTION("Modifier map for %s will be incomplete\n",
810                 XkbcModIndexText(new->modifier));
811         return false;
812     }
813     *mm = *new;
814     mm->defs.next = &info->modMap->defs;
815     info->modMap = mm;
816     return true;
817 }
818
819 /***====================================================================***/
820
821 static void
822 MergeIncludedSymbols(SymbolsInfo *into, SymbolsInfo *from,
823                      unsigned merge, struct xkb_keymap *keymap)
824 {
825     unsigned int i;
826     KeyInfo *key;
827
828     if (from->errorCount > 0)
829     {
830         into->errorCount += from->errorCount;
831         return;
832     }
833     if (into->name == NULL)
834     {
835         into->name = from->name;
836         from->name = NULL;
837     }
838     for (i = 0; i < XkbNumKbdGroups; i++)
839     {
840         if (from->groupNames[i] != XKB_ATOM_NONE)
841         {
842             if ((merge != MergeAugment) ||
843                 (into->groupNames[i] == XKB_ATOM_NONE))
844                 into->groupNames[i] = from->groupNames[i];
845         }
846     }
847     for (i = 0, key = from->keys; i < from->nKeys; i++, key++)
848     {
849         if (merge != MergeDefault)
850             key->defs.merge = merge;
851         if (!AddKeySymbols(into, key, keymap))
852             into->errorCount++;
853     }
854     if (from->modMap != NULL)
855     {
856         ModMapEntry *mm, *next;
857         for (mm = from->modMap; mm != NULL; mm = next)
858         {
859             if (merge != MergeDefault)
860                 mm->defs.merge = merge;
861             if (!AddModMapEntry(into, mm))
862                 into->errorCount++;
863             next = (ModMapEntry *) mm->defs.next;
864             free(mm);
865         }
866         from->modMap = NULL;
867     }
868     if (!MergeAliases(&into->aliases, &from->aliases, merge))
869         into->errorCount++;
870 }
871
872 static void
873 HandleSymbolsFile(XkbFile *file, struct xkb_keymap *keymap,
874                   unsigned merge, SymbolsInfo *info);
875
876 static bool
877 HandleIncludeSymbols(IncludeStmt *stmt, struct xkb_keymap *keymap,
878                      SymbolsInfo *info)
879 {
880     unsigned newMerge;
881     XkbFile *rtrn;
882     SymbolsInfo included;
883     bool haveSelf;
884
885     haveSelf = false;
886     if ((stmt->file == NULL) && (stmt->map == NULL))
887     {
888         haveSelf = true;
889         included = *info;
890         memset(info, 0, sizeof(SymbolsInfo));
891     }
892     else if (ProcessIncludeFile(keymap->ctx, stmt, XkmSymbolsIndex, &rtrn,
893                                 &newMerge))
894     {
895         InitSymbolsInfo(&included, keymap);
896         included.fileID = included.dflt.defs.fileID = rtrn->id;
897         included.merge = included.dflt.defs.merge = MergeOverride;
898         if (stmt->modifier)
899         {
900             included.explicit_group = atoi(stmt->modifier) - 1;
901         }
902         else
903         {
904             included.explicit_group = info->explicit_group;
905         }
906         HandleSymbolsFile(rtrn, keymap, MergeOverride, &included);
907         if (stmt->stmt != NULL)
908         {
909             free(included.name);
910             included.name = stmt->stmt;
911             stmt->stmt = NULL;
912         }
913         FreeXKBFile(rtrn);
914     }
915     else
916     {
917         info->errorCount += 10;
918         return false;
919     }
920     if ((stmt->next != NULL) && (included.errorCount < 1))
921     {
922         IncludeStmt *next;
923         unsigned op;
924         SymbolsInfo next_incl;
925
926         for (next = stmt->next; next != NULL; next = next->next)
927         {
928             if ((next->file == NULL) && (next->map == NULL))
929             {
930                 haveSelf = true;
931                 MergeIncludedSymbols(&included, info, next->merge, keymap);
932                 FreeSymbolsInfo(info);
933             }
934             else if (ProcessIncludeFile(keymap->ctx, next, XkmSymbolsIndex,
935                                         &rtrn, &op))
936             {
937                 InitSymbolsInfo(&next_incl, keymap);
938                 next_incl.fileID = next_incl.dflt.defs.fileID = rtrn->id;
939                 next_incl.merge = next_incl.dflt.defs.merge = MergeOverride;
940                 if (next->modifier)
941                 {
942                     next_incl.explicit_group = atoi(next->modifier) - 1;
943                 }
944                 else
945                 {
946                     next_incl.explicit_group = info->explicit_group;
947                 }
948                 HandleSymbolsFile(rtrn, keymap, MergeOverride, &next_incl);
949                 MergeIncludedSymbols(&included, &next_incl, op, keymap);
950                 FreeSymbolsInfo(&next_incl);
951                 FreeXKBFile(rtrn);
952             }
953             else
954             {
955                 info->errorCount += 10;
956                 FreeSymbolsInfo(&included);
957                 return false;
958             }
959         }
960     }
961     else if (stmt->next)
962     {
963         info->errorCount += included.errorCount;
964     }
965     if (haveSelf)
966         *info = included;
967     else
968     {
969         MergeIncludedSymbols(info, &included, newMerge, keymap);
970         FreeSymbolsInfo(&included);
971     }
972     return (info->errorCount == 0);
973 }
974
975 #define SYMBOLS 1
976 #define ACTIONS 2
977
978 static bool
979 GetGroupIndex(KeyInfo *key, struct xkb_keymap *keymap,
980               ExprDef * arrayNdx, unsigned what, unsigned *ndx_rtrn)
981 {
982     const char *name;
983     ExprResult tmp;
984
985     if (what == SYMBOLS)
986         name = "symbols";
987     else
988         name = "actions";
989
990     if (arrayNdx == NULL)
991     {
992         int i;
993         unsigned defined;
994         if (what == SYMBOLS)
995             defined = key->symsDefined;
996         else
997             defined = key->actsDefined;
998
999         for (i = 0; i < XkbNumKbdGroups; i++)
1000         {
1001             if ((defined & (1 << i)) == 0)
1002             {
1003                 *ndx_rtrn = i;
1004                 return true;
1005             }
1006         }
1007         ERROR("Too many groups of %s for key %s (max %d)\n", name,
1008                longText(key->name), XkbNumKbdGroups + 1);
1009         ACTION("Ignoring %s defined for extra groups\n", name);
1010         return false;
1011     }
1012     if (!ExprResolveGroup(keymap->ctx, arrayNdx, &tmp))
1013     {
1014         ERROR("Illegal group index for %s of key %s\n", name,
1015                longText(key->name));
1016         ACTION("Definition with non-integer array index ignored\n");
1017         return false;
1018     }
1019     *ndx_rtrn = tmp.uval - 1;
1020     return true;
1021 }
1022
1023 static bool
1024 AddSymbolsToKey(KeyInfo *key, struct xkb_keymap *keymap,
1025                 ExprDef *arrayNdx, ExprDef *value, SymbolsInfo *info)
1026 {
1027     unsigned ndx, nSyms, nLevels;
1028     unsigned int i;
1029     long j;
1030
1031     if (!GetGroupIndex(key, keymap, arrayNdx, SYMBOLS, &ndx))
1032         return false;
1033     if (value == NULL)
1034     {
1035         key->symsDefined |= (1 << ndx);
1036         return true;
1037     }
1038     if (value->op != ExprKeysymList)
1039     {
1040         ERROR("Expected a list of symbols, found %s\n", exprOpText(value->op));
1041         ACTION("Ignoring symbols for group %d of %s\n", ndx + 1,
1042                 longText(key->name));
1043         return false;
1044     }
1045     if (key->sizeSyms[ndx] != 0)
1046     {
1047         ERROR("Symbols for key %s, group %d already defined\n",
1048                longText(key->name), ndx + 1);
1049         ACTION("Ignoring duplicate definition\n");
1050         return false;
1051     }
1052     nSyms = value->value.list.nSyms;
1053     nLevels = value->value.list.nLevels;
1054     if (((key->numLevels[ndx] < nSyms) || (key->syms[ndx] == NULL)) &&
1055         (!ResizeKeyGroup(key, ndx, nLevels, nSyms, false)))
1056     {
1057         WSGO("Could not resize group %d of key %s to contain %d levels\n",
1058              ndx + 1, longText(key->name), nSyms);
1059         ACTION("Symbols lost\n");
1060         return false;
1061     }
1062     key->symsDefined |= (1 << ndx);
1063     for (i = 0; i < nLevels; i++) {
1064         key->symsMapIndex[ndx][i] = value->value.list.symsMapIndex[i];
1065         key->symsMapNumEntries[ndx][i] = value->value.list.symsNumEntries[i];
1066         for (j = 0; j < key->symsMapNumEntries[ndx][i]; j++) {
1067             if (key->symsMapIndex[ndx][i] + j >= nSyms)
1068                 abort();
1069             if (!LookupKeysym(value->value.list.syms[value->value.list.symsMapIndex[i] + j],
1070                               &key->syms[ndx][key->symsMapIndex[ndx][i] + j])) {
1071                 WARN("Could not resolve keysym %s for key %s, group %d (%s), level %d\n",
1072                      value->value.list.syms[i], longText(key->name), ndx + 1,
1073                      xkb_atom_text(keymap->ctx, info->groupNames[ndx]), nSyms);
1074                 while (--j >= 0)
1075                     key->syms[ndx][key->symsMapIndex[ndx][i] + j] = XKB_KEY_NoSymbol;
1076                 key->symsMapIndex[ndx][i] = -1;
1077                 key->symsMapNumEntries[ndx][i] = 0;
1078                 break;
1079             }
1080         }
1081     }
1082     for (j = key->numLevels[ndx] - 1;
1083          j >= 0 && key->symsMapNumEntries[ndx][j] == 0; j--)
1084         key->numLevels[ndx]--;
1085     return true;
1086 }
1087
1088 static bool
1089 AddActionsToKey(KeyInfo *key, struct xkb_keymap *keymap, ExprDef *arrayNdx,
1090                 ExprDef *value, SymbolsInfo *info)
1091 {
1092     unsigned int i;
1093     unsigned ndx, nActs;
1094     ExprDef *act;
1095     struct xkb_any_action *toAct;
1096
1097     if (!GetGroupIndex(key, keymap, arrayNdx, ACTIONS, &ndx))
1098         return false;
1099
1100     if (value == NULL)
1101     {
1102         key->actsDefined |= (1 << ndx);
1103         return true;
1104     }
1105     if (value->op != ExprActionList)
1106     {
1107         WSGO("Bad expression type (%d) for action list value\n", value->op);
1108         ACTION("Ignoring actions for group %d of %s\n", ndx,
1109                 longText(key->name));
1110         return false;
1111     }
1112     if (key->acts[ndx] != NULL)
1113     {
1114         WSGO("Actions for key %s, group %d already defined\n",
1115               longText(key->name), ndx);
1116         return false;
1117     }
1118     for (nActs = 0, act = value->value.child; act != NULL; nActs++)
1119     {
1120         act = (ExprDef *) act->common.next;
1121     }
1122     if (nActs < 1)
1123     {
1124         WSGO("Action list but not actions in AddActionsToKey\n");
1125         return false;
1126     }
1127     if (((key->numLevels[ndx] < nActs) || (key->acts[ndx] == NULL)) &&
1128         (!ResizeKeyGroup(key, ndx, nActs, nActs, true)))
1129     {
1130         WSGO("Could not resize group %d of key %s\n", ndx,
1131               longText(key->name));
1132         ACTION("Actions lost\n");
1133         return false;
1134     }
1135     key->actsDefined |= (1 << ndx);
1136
1137     toAct = (struct xkb_any_action *) key->acts[ndx];
1138     act = value->value.child;
1139     for (i = 0; i < nActs; i++, toAct++)
1140     {
1141         if (!HandleActionDef(act, keymap, toAct, info->action))
1142         {
1143             ERROR("Illegal action definition for %s\n",
1144                    longText(key->name));
1145             ACTION("Action for group %d/level %d ignored\n", ndx + 1, i + 1);
1146         }
1147         act = (ExprDef *) act->common.next;
1148     }
1149     return true;
1150 }
1151
1152 static const LookupEntry lockingEntries[] = {
1153     {"true", XkbKB_Lock},
1154     {"yes", XkbKB_Lock},
1155     {"on", XkbKB_Lock},
1156     {"false", XkbKB_Default},
1157     {"no", XkbKB_Default},
1158     {"off", XkbKB_Default},
1159     {"permanent", XkbKB_Lock | XkbKB_Permanent},
1160     {NULL, 0}
1161 };
1162
1163 static const LookupEntry repeatEntries[] = {
1164     {"true", RepeatYes},
1165     {"yes", RepeatYes},
1166     {"on", RepeatYes},
1167     {"false", RepeatNo},
1168     {"no", RepeatNo},
1169     {"off", RepeatNo},
1170     {"default", RepeatUndefined},
1171     {NULL, 0}
1172 };
1173
1174 static bool
1175 SetSymbolsField(KeyInfo *key, struct xkb_keymap *keymap, char *field,
1176                 ExprDef *arrayNdx, ExprDef *value, SymbolsInfo *info)
1177 {
1178     bool ok = true;
1179     ExprResult tmp;
1180
1181     if (strcasecmp(field, "type") == 0)
1182     {
1183         ExprResult ndx;
1184         if ((!ExprResolveString(keymap->ctx, value, &tmp))
1185             && (warningLevel > 0))
1186         {
1187             WARN("The type field of a key symbol map must be a string\n");
1188             ACTION("Ignoring illegal type definition\n");
1189         }
1190         if (arrayNdx == NULL)
1191         {
1192             key->dfltType = xkb_atom_intern(keymap->ctx, tmp.str);
1193             key->defs.defined |= _Key_Type_Dflt;
1194         }
1195         else if (!ExprResolveGroup(keymap->ctx, arrayNdx, &ndx))
1196         {
1197             ERROR("Illegal group index for type of key %s\n",
1198                    longText(key->name));
1199             ACTION("Definition with non-integer array index ignored\n");
1200             free(tmp.str);
1201             return false;
1202         }
1203         else
1204         {
1205             key->types[ndx.uval - 1] = xkb_atom_intern(keymap->ctx, tmp.str);
1206             key->typesDefined |= (1 << (ndx.uval - 1));
1207         }
1208         free(tmp.str);
1209     }
1210     else if (strcasecmp(field, "symbols") == 0)
1211         return AddSymbolsToKey(key, keymap, arrayNdx, value, info);
1212     else if (strcasecmp(field, "actions") == 0)
1213         return AddActionsToKey(key, keymap, arrayNdx, value, info);
1214     else if ((strcasecmp(field, "vmods") == 0) ||
1215              (strcasecmp(field, "virtualmods") == 0) ||
1216              (strcasecmp(field, "virtualmodifiers") == 0))
1217     {
1218         ok = ExprResolveVModMask(value, &tmp, keymap);
1219         if (ok)
1220         {
1221             key->vmodmap = (tmp.uval >> 8);
1222             key->defs.defined |= _Key_VModMap;
1223         }
1224         else
1225         {
1226             ERROR("Expected a virtual modifier mask, found %s\n",
1227                    exprOpText(value->op));
1228             ACTION("Ignoring virtual modifiers definition for key %s\n",
1229                     longText(key->name));
1230         }
1231     }
1232     else if ((strcasecmp(field, "locking") == 0) ||
1233              (strcasecmp(field, "lock") == 0) ||
1234              (strcasecmp(field, "locks") == 0))
1235     {
1236         ok = ExprResolveEnum(keymap->ctx, value, &tmp, lockingEntries);
1237         if (ok)
1238             key->behavior.type = tmp.uval;
1239         key->defs.defined |= _Key_Behavior;
1240     }
1241     else if ((strcasecmp(field, "radiogroup") == 0) ||
1242              (strcasecmp(field, "permanentradiogroup") == 0) ||
1243              (strcasecmp(field, "allownone") == 0))
1244     {
1245         ERROR("Radio groups not supported\n");
1246         ACTION("Ignoring radio group specification for key %s\n", longText(key->name));
1247         return false;
1248     }
1249     else if (uStrCasePrefix("overlay", field) ||
1250              uStrCasePrefix("permanentoverlay", field))
1251     {
1252         ERROR("Overlays not supported\n");
1253         ACTION("Ignoring overlay specification for key %s\n", longText(key->name));
1254     }
1255     else if ((strcasecmp(field, "repeating") == 0) ||
1256              (strcasecmp(field, "repeats") == 0) ||
1257              (strcasecmp(field, "repeat") == 0))
1258     {
1259         ok = ExprResolveEnum(keymap->ctx, value, &tmp, repeatEntries);
1260         if (!ok)
1261         {
1262             ERROR("Illegal repeat setting for %s\n",
1263                    longText(key->name));
1264             ACTION("Non-boolean repeat setting ignored\n");
1265             return false;
1266         }
1267         key->repeat = tmp.uval;
1268         key->defs.defined |= _Key_Repeat;
1269     }
1270     else if ((strcasecmp(field, "groupswrap") == 0) ||
1271              (strcasecmp(field, "wrapgroups") == 0))
1272     {
1273         ok = ExprResolveBoolean(keymap->ctx, value, &tmp);
1274         if (!ok)
1275         {
1276             ERROR("Illegal groupsWrap setting for %s\n",
1277                    longText(key->name));
1278             ACTION("Non-boolean value ignored\n");
1279             return false;
1280         }
1281         if (tmp.uval)
1282             key->groupInfo = XkbWrapIntoRange;
1283         else
1284             key->groupInfo = XkbClampIntoRange;
1285         key->defs.defined |= _Key_GroupInfo;
1286     }
1287     else if ((strcasecmp(field, "groupsclamp") == 0) ||
1288              (strcasecmp(field, "clampgroups") == 0))
1289     {
1290         ok = ExprResolveBoolean(keymap->ctx, value, &tmp);
1291         if (!ok)
1292         {
1293             ERROR("Illegal groupsClamp setting for %s\n",
1294                    longText(key->name));
1295             ACTION("Non-boolean value ignored\n");
1296             return false;
1297         }
1298         if (tmp.uval)
1299             key->groupInfo = XkbClampIntoRange;
1300         else
1301             key->groupInfo = XkbWrapIntoRange;
1302         key->defs.defined |= _Key_GroupInfo;
1303     }
1304     else if ((strcasecmp(field, "groupsredirect") == 0) ||
1305              (strcasecmp(field, "redirectgroups") == 0))
1306     {
1307         if (!ExprResolveGroup(keymap->ctx, value, &tmp))
1308         {
1309             ERROR("Illegal group index for redirect of key %s\n",
1310                    longText(key->name));
1311             ACTION("Definition with non-integer group ignored\n");
1312             return false;
1313         }
1314         key->groupInfo =
1315             XkbSetGroupInfo(0, XkbRedirectIntoRange, tmp.uval - 1);
1316         key->defs.defined |= _Key_GroupInfo;
1317     }
1318     else
1319     {
1320         ERROR("Unknown field %s in a symbol interpretation\n", field);
1321         ACTION("Definition ignored\n");
1322         ok = false;
1323     }
1324     return ok;
1325 }
1326
1327 static int
1328 SetGroupName(SymbolsInfo *info, struct xkb_keymap *keymap, ExprDef *arrayNdx,
1329              ExprDef *value)
1330 {
1331     ExprResult tmp, name;
1332
1333     if ((arrayNdx == NULL) && (warningLevel > 0))
1334     {
1335         WARN("You must specify an index when specifying a group name\n");
1336         ACTION("Group name definition without array subscript ignored\n");
1337         return false;
1338     }
1339     if (!ExprResolveGroup(keymap->ctx, arrayNdx, &tmp))
1340     {
1341         ERROR("Illegal index in group name definition\n");
1342         ACTION("Definition with non-integer array index ignored\n");
1343         return false;
1344     }
1345     if (!ExprResolveString(keymap->ctx, value, &name))
1346     {
1347         ERROR("Group name must be a string\n");
1348         ACTION("Illegal name for group %d ignored\n", tmp.uval);
1349         return false;
1350     }
1351     info->groupNames[tmp.uval - 1 + info->explicit_group] =
1352         xkb_atom_intern(keymap->ctx, name.str);
1353     free(name.str);
1354
1355     return true;
1356 }
1357
1358 static int
1359 HandleSymbolsVar(VarDef *stmt, struct xkb_keymap *keymap, SymbolsInfo *info)
1360 {
1361     ExprResult elem, field, tmp;
1362     ExprDef *arrayNdx;
1363     bool ret;
1364
1365     if (ExprResolveLhs(keymap, stmt->name, &elem, &field, &arrayNdx) == 0)
1366         return 0;               /* internal error, already reported */
1367     if (elem.str && (strcasecmp(elem.str, "key") == 0))
1368     {
1369         ret = SetSymbolsField(&info->dflt, keymap, field.str, arrayNdx,
1370                               stmt->value, info);
1371     }
1372     else if ((elem.str == NULL) && ((strcasecmp(field.str, "name") == 0) ||
1373                                     (strcasecmp(field.str, "groupname") ==
1374                                      0)))
1375     {
1376         ret = SetGroupName(info, keymap, arrayNdx, stmt->value);
1377     }
1378     else if ((elem.str == NULL)
1379              && ((strcasecmp(field.str, "groupswrap") == 0) ||
1380                  (strcasecmp(field.str, "wrapgroups") == 0)))
1381     {
1382         if (!ExprResolveBoolean(keymap->ctx, stmt->value, &tmp))
1383         {
1384             ERROR("Illegal setting for global groupsWrap\n");
1385             ACTION("Non-boolean value ignored\n");
1386             ret = false;
1387         }
1388         else {
1389             if (tmp.uval)
1390                 info->groupInfo = XkbWrapIntoRange;
1391             else
1392                 info->groupInfo = XkbClampIntoRange;
1393             ret = true;
1394         }
1395     }
1396     else if ((elem.str == NULL)
1397              && ((strcasecmp(field.str, "groupsclamp") == 0) ||
1398                  (strcasecmp(field.str, "clampgroups") == 0)))
1399     {
1400         if (!ExprResolveBoolean(keymap->ctx, stmt->value, &tmp))
1401         {
1402             ERROR("Illegal setting for global groupsClamp\n");
1403             ACTION("Non-boolean value ignored\n");
1404             return false;
1405         }
1406         else {
1407             if (tmp.uval)
1408                 info->groupInfo = XkbClampIntoRange;
1409             else
1410                 info->groupInfo = XkbWrapIntoRange;
1411             ret = true;
1412         }
1413     }
1414     else if ((elem.str == NULL)
1415              && ((strcasecmp(field.str, "groupsredirect") == 0) ||
1416                  (strcasecmp(field.str, "redirectgroups") == 0)))
1417     {
1418         if (!ExprResolveGroup(keymap->ctx, stmt->value, &tmp))
1419         {
1420             ERROR("Illegal group index for global groupsRedirect\n");
1421             ACTION("Definition with non-integer group ignored\n");
1422             ret = false;
1423         }
1424         else {
1425             info->groupInfo = XkbSetGroupInfo(0, XkbRedirectIntoRange,
1426                                               tmp.uval);
1427             ret = true;
1428         }
1429     }
1430     else if ((elem.str == NULL) && (strcasecmp(field.str, "allownone") == 0))
1431     {
1432         ERROR("Radio groups not supported\n");
1433         ACTION("Ignoring \"allow none\" specification\n");
1434         ret = false;
1435     }
1436     else {
1437         ret = SetActionField(keymap, elem.str, field.str, arrayNdx,
1438                              stmt->value, &info->action);
1439     }
1440
1441     free(elem.str);
1442     free(field.str);
1443     return ret;
1444 }
1445
1446 static bool
1447 HandleSymbolsBody(VarDef *def, struct xkb_keymap *keymap, KeyInfo *key,
1448                   SymbolsInfo *info)
1449 {
1450     bool ok = true;
1451     ExprResult tmp, field;
1452     ExprDef *arrayNdx;
1453
1454     for (; def != NULL; def = (VarDef *) def->common.next)
1455     {
1456         if ((def->name) && (def->name->type == ExprFieldRef))
1457         {
1458             ok = HandleSymbolsVar(def, keymap, info);
1459             continue;
1460         }
1461         else
1462         {
1463             if (def->name == NULL)
1464             {
1465                 if ((def->value == NULL)
1466                     || (def->value->op == ExprKeysymList))
1467                     field.str = strdup("symbols");
1468                 else
1469                     field.str = strdup("actions");
1470                 arrayNdx = NULL;
1471             }
1472             else
1473             {
1474                 ok = ExprResolveLhs(keymap, def->name, &tmp, &field,
1475                                     &arrayNdx);
1476             }
1477             if (ok)
1478                 ok = SetSymbolsField(key, keymap, field.str, arrayNdx,
1479                                      def->value, info);
1480             free(field.str);
1481         }
1482     }
1483     return ok;
1484 }
1485
1486 static bool
1487 SetExplicitGroup(SymbolsInfo *info, KeyInfo *key)
1488 {
1489     unsigned group = info->explicit_group;
1490
1491     if (group == 0)
1492         return true;
1493
1494     if ((key->typesDefined | key->symsDefined | key->actsDefined) & ~1)
1495     {
1496         int i;
1497         WARN("For the map %s an explicit group specified\n", info->name);
1498         WARN("but key %s has more than one group defined\n",
1499               longText(key->name));
1500         ACTION("All groups except first one will be ignored\n");
1501         for (i = 1; i < XkbNumKbdGroups; i++)
1502         {
1503             key->numLevels[i] = 0;
1504             free(key->syms[i]);
1505             key->syms[i] = NULL;
1506             free(key->acts[i]);
1507             key->acts[i] = NULL;
1508             key->types[i] = 0;
1509         }
1510     }
1511     key->typesDefined = key->symsDefined = key->actsDefined = 1 << group;
1512
1513     key->numLevels[group] = key->numLevels[0];
1514     key->numLevels[0] = 0;
1515     key->syms[group] = key->syms[0];
1516     key->syms[0] = NULL;
1517     key->sizeSyms[group] = key->sizeSyms[0];
1518     key->sizeSyms[0] = 0;
1519     key->symsMapIndex[group] = key->symsMapIndex[0];
1520     key->symsMapIndex[0] = NULL;
1521     key->symsMapNumEntries[group] = key->symsMapNumEntries[0];
1522     key->symsMapNumEntries[0] = NULL;
1523     key->acts[group] = key->acts[0];
1524     key->acts[0] = NULL;
1525     key->types[group] = key->types[0];
1526     key->types[0] = 0;
1527     return true;
1528 }
1529
1530 static int
1531 HandleSymbolsDef(SymbolsDef *stmt, struct xkb_keymap *keymap,
1532                  SymbolsInfo *info)
1533 {
1534     KeyInfo key;
1535
1536     InitKeyInfo(&key);
1537     CopyKeyInfo(&info->dflt, &key, false);
1538     key.defs.merge = stmt->merge;
1539     key.name = KeyNameToLong(stmt->keyName);
1540     if (!HandleSymbolsBody((VarDef *) stmt->symbols, keymap, &key, info))
1541     {
1542         info->errorCount++;
1543         return false;
1544     }
1545
1546     if (!SetExplicitGroup(info, &key))
1547     {
1548         info->errorCount++;
1549         return false;
1550     }
1551
1552     if (!AddKeySymbols(info, &key, keymap))
1553     {
1554         info->errorCount++;
1555         return false;
1556     }
1557     return true;
1558 }
1559
1560 static bool
1561 HandleModMapDef(ModMapDef *def, struct xkb_keymap *keymap, SymbolsInfo *info)
1562 {
1563     ExprDef *key;
1564     ModMapEntry tmp;
1565     ExprResult rtrn;
1566     bool ok;
1567
1568     if (!LookupModIndex(keymap->ctx, NULL, def->modifier, TypeInt, &rtrn))
1569     {
1570         ERROR("Illegal modifier map definition\n");
1571         ACTION("Ignoring map for non-modifier \"%s\"\n",
1572                 xkb_atom_text(keymap->ctx, def->modifier));
1573         return false;
1574     }
1575     ok = true;
1576     tmp.modifier = rtrn.uval;
1577     for (key = def->keys; key != NULL; key = (ExprDef *) key->common.next)
1578     {
1579         if ((key->op == ExprValue) && (key->type == TypeKeyName))
1580         {
1581             tmp.haveSymbol = false;
1582             tmp.u.keyName = KeyNameToLong(key->value.keyName);
1583         }
1584         else if (ExprResolveKeySym(keymap->ctx, key, &rtrn))
1585         {
1586             tmp.haveSymbol = true;
1587             tmp.u.keySym = rtrn.uval;
1588         }
1589         else
1590         {
1591             ERROR("Modmap entries may contain only key names or keysyms\n");
1592             ACTION("Illegal definition for %s modifier ignored\n",
1593                     XkbcModIndexText(tmp.modifier));
1594             continue;
1595         }
1596
1597         ok = AddModMapEntry(info, &tmp) && ok;
1598     }
1599     return ok;
1600 }
1601
1602 static void
1603 HandleSymbolsFile(XkbFile *file, struct xkb_keymap *keymap,
1604                   unsigned merge, SymbolsInfo *info)
1605 {
1606     ParseCommon *stmt;
1607
1608     free(info->name);
1609     info->name = uDupString(file->name);
1610     stmt = file->defs;
1611     while (stmt)
1612     {
1613         switch (stmt->stmtType)
1614         {
1615         case StmtInclude:
1616             if (!HandleIncludeSymbols((IncludeStmt *) stmt, keymap, info))
1617                 info->errorCount++;
1618             break;
1619         case StmtSymbolsDef:
1620             if (!HandleSymbolsDef((SymbolsDef *) stmt, keymap, info))
1621                 info->errorCount++;
1622             break;
1623         case StmtVarDef:
1624             if (!HandleSymbolsVar((VarDef *) stmt, keymap, info))
1625                 info->errorCount++;
1626             break;
1627         case StmtVModDef:
1628             if (!HandleVModDef((VModDef *) stmt, keymap, merge, &info->vmods))
1629                 info->errorCount++;
1630             break;
1631         case StmtInterpDef:
1632             ERROR("Interpretation files may not include other types\n");
1633             ACTION("Ignoring definition of symbol interpretation\n");
1634             info->errorCount++;
1635             break;
1636         case StmtKeycodeDef:
1637             ERROR("Interpretation files may not include other types\n");
1638             ACTION("Ignoring definition of key name\n");
1639             info->errorCount++;
1640             break;
1641         case StmtModMapDef:
1642             if (!HandleModMapDef((ModMapDef *) stmt, keymap, info))
1643                 info->errorCount++;
1644             break;
1645         default:
1646             WSGO("Unexpected statement type %d in HandleSymbolsFile\n",
1647                   stmt->stmtType);
1648             break;
1649         }
1650         stmt = stmt->next;
1651         if (info->errorCount > 10)
1652         {
1653 #ifdef NOISY
1654             ERROR("Too many errors\n");
1655 #endif
1656             ACTION("Abandoning symbols file \"%s\"\n", file->topName);
1657             break;
1658         }
1659     }
1660 }
1661
1662 static bool
1663 FindKeyForSymbol(struct xkb_keymap *keymap, xkb_keysym_t sym,
1664                  xkb_keycode_t *kc_rtrn)
1665 {
1666     xkb_keycode_t key;
1667     unsigned int group, level;
1668
1669     for (key = keymap->min_key_code; key <= keymap->max_key_code; key++)
1670     {
1671         for (group = 0; group < XkbKeyNumGroups(keymap, key); group++)
1672         {
1673             for (level = 0; level < XkbKeyGroupWidth(keymap, key, group);
1674                  level++)
1675             {
1676                 if (XkbKeyNumSyms(keymap, key, group, level) != 1 ||
1677                     (XkbKeySymEntry(keymap, key, group, level))[0] != sym)
1678                     continue;
1679                 *kc_rtrn = key;
1680                 return true;
1681             }
1682         }
1683     }
1684
1685     return false;
1686 }
1687
1688 /**
1689  * Find the given name in the keymap->map->types and return its index.
1690  *
1691  * @param atom The atom to search for.
1692  * @param type_rtrn Set to the index of the name if found.
1693  *
1694  * @return true if found, false otherwise.
1695  */
1696 static bool
1697 FindNamedType(struct xkb_keymap *keymap, xkb_atom_t atom, unsigned *type_rtrn)
1698 {
1699     unsigned n;
1700     const char *name = xkb_atom_text(keymap->ctx, atom);
1701
1702     if (keymap && keymap->map && keymap->map->types)
1703     {
1704         for (n = 0; n < keymap->map->num_types; n++)
1705         {
1706             if (strcmp(keymap->map->types[n].name, name) == 0)
1707             {
1708                 *type_rtrn = n;
1709                 return true;
1710             }
1711         }
1712     }
1713     return false;
1714 }
1715
1716 /**
1717  * Assign a type to the given sym and return the Atom for the type assigned.
1718  *
1719  * Simple recipe:
1720  * - ONE_LEVEL for width 0/1
1721  * - ALPHABETIC for 2 shift levels, with lower/upercase
1722  * - KEYPAD for keypad keys.
1723  * - TWO_LEVEL for other 2 shift level keys.
1724  * and the same for four level keys.
1725  *
1726  * @param width Number of sysms in syms.
1727  * @param syms The keysyms for the given key (must be size width).
1728  * @param typeNameRtrn Set to the Atom of the type name.
1729  *
1730  * @returns true if a type could be found, false otherwise.
1731  */
1732 static bool
1733 FindAutomaticType(struct xkb_keymap *keymap, int width, xkb_keysym_t *syms,
1734                   xkb_atom_t *typeNameRtrn, bool *autoType)
1735 {
1736     *autoType = false;
1737     if ((width == 1) || (width == 0))
1738     {
1739         *typeNameRtrn = xkb_atom_intern(keymap->ctx, "ONE_LEVEL");
1740         *autoType = true;
1741     }
1742     else if (width == 2)
1743     {
1744         if (syms && XkbcKSIsLower(syms[0]) && XkbcKSIsUpper(syms[1]))
1745         {
1746             *typeNameRtrn = xkb_atom_intern(keymap->ctx, "ALPHABETIC");
1747         }
1748         else if (syms && (XkbKSIsKeypad(syms[0]) || XkbKSIsKeypad(syms[1])))
1749         {
1750             *typeNameRtrn = xkb_atom_intern(keymap->ctx, "KEYPAD");
1751             *autoType = true;
1752         }
1753         else
1754         {
1755             *typeNameRtrn = xkb_atom_intern(keymap->ctx, "TWO_LEVEL");
1756             *autoType = true;
1757         }
1758     }
1759     else if (width <= 4)
1760     {
1761         if (syms && XkbcKSIsLower(syms[0]) && XkbcKSIsUpper(syms[1]))
1762             if (XkbcKSIsLower(syms[2]) && XkbcKSIsUpper(syms[3]))
1763                 *typeNameRtrn =
1764                     xkb_atom_intern(keymap->ctx, "FOUR_LEVEL_ALPHABETIC");
1765             else
1766                 *typeNameRtrn = xkb_atom_intern(keymap->ctx,
1767                                                 "FOUR_LEVEL_SEMIALPHABETIC");
1768
1769         else if (syms && (XkbKSIsKeypad(syms[0]) || XkbKSIsKeypad(syms[1])))
1770             *typeNameRtrn = xkb_atom_intern(keymap->ctx, "FOUR_LEVEL_KEYPAD");
1771         else
1772             *typeNameRtrn = xkb_atom_intern(keymap->ctx, "FOUR_LEVEL");
1773         /* XXX: why not set autoType here? */
1774     }
1775     return ((width >= 0) && (width <= 4));
1776 }
1777
1778 /**
1779  * Ensure the given KeyInfo is in a coherent state, i.e. no gaps between the
1780  * groups, and reduce to one group if all groups are identical anyway.
1781  */
1782 static void
1783 PrepareKeyDef(KeyInfo * key)
1784 {
1785     int i, j, width, defined, lastGroup;
1786     bool identical;
1787
1788     defined = key->symsDefined | key->actsDefined | key->typesDefined;
1789     /* get highest group number */
1790     for (i = XkbNumKbdGroups - 1; i >= 0; i--)
1791     {
1792         if (defined & (1 << i))
1793             break;
1794     }
1795     lastGroup = i;
1796
1797     if (lastGroup == 0)
1798         return;
1799
1800     /* If there are empty groups between non-empty ones fill them with data */
1801     /* from the first group. */
1802     /* We can make a wrong assumption here. But leaving gaps is worse. */
1803     for (i = lastGroup; i > 0; i--)
1804     {
1805         if (defined & (1 << i))
1806             continue;
1807         width = key->numLevels[0];
1808         if (key->typesDefined & 1)
1809         {
1810             for (j = 0; j < width; j++)
1811             {
1812                 key->types[i] = key->types[0];
1813             }
1814             key->typesDefined |= 1 << i;
1815         }
1816         if ((key->actsDefined & 1) && key->acts[0])
1817         {
1818             key->acts[i] = uTypedCalloc(width, union xkb_action);
1819             if (key->acts[i] == NULL)
1820                 continue;
1821             memcpy(key->acts[i], key->acts[0],
1822                    width * sizeof(union xkb_action));
1823             key->actsDefined |= 1 << i;
1824         }
1825         if ((key->symsDefined & 1) && key->sizeSyms[0])
1826         {
1827             key->syms[i] = uTypedCalloc(key->sizeSyms[0], xkb_keysym_t);
1828             if (key->syms[i] == NULL)
1829                 continue;
1830             memcpy(key->syms[i], key->syms[0],
1831                    key->sizeSyms[0] * sizeof(xkb_keysym_t));
1832             key->symsMapIndex[i] = uTypedCalloc(width, int);
1833             if (!key->symsMapIndex[i])
1834             {
1835                 free(key->syms[i]);
1836                 key->syms[i] = NULL;
1837                 continue;
1838             }
1839             memcpy(key->symsMapIndex[i], key->symsMapIndex[0],
1840                    width * sizeof(int));
1841             key->symsMapNumEntries[i] = uTypedCalloc(width, unsigned int);
1842             if (!key->symsMapNumEntries[i])
1843             {
1844                 free(key->syms[i]);
1845                 key->syms[i] = NULL;
1846                 free(key->symsMapIndex[i]);
1847                 key->symsMapIndex[i] = NULL;
1848                 continue;
1849             }
1850             memcpy(key->symsMapNumEntries[i], key->symsMapNumEntries[0],
1851                    width * sizeof(int));
1852             key->sizeSyms[i] = key->sizeSyms[0];
1853             key->symsDefined |= 1 << i;
1854         }
1855         if (defined & 1)
1856         {
1857             key->numLevels[i] = key->numLevels[0];
1858         }
1859     }
1860     /* If all groups are completely identical remove them all */
1861     /* exept the first one. */
1862     identical = true;
1863     for (i = lastGroup; i > 0; i--)
1864     {
1865         if ((key->numLevels[i] != key->numLevels[0]) ||
1866             (key->types[i] != key->types[0]))
1867         {
1868             identical = false;
1869             break;
1870         }
1871         if ((key->syms[i] != key->syms[0]) &&
1872             (key->syms[i] == NULL || key->syms[0] == NULL ||
1873              key->sizeSyms[i] != key->sizeSyms[0] ||
1874              memcmp(key->syms[i], key->syms[0],
1875                     sizeof(xkb_keysym_t) * key->sizeSyms[0])))
1876         {
1877             identical = false;
1878             break;
1879         }
1880         if ((key->symsMapIndex[i] != key->symsMapIndex[i]) &&
1881             (key->symsMapIndex[i] == NULL || key->symsMapIndex[0] == NULL ||
1882              memcmp(key->symsMapIndex[i], key->symsMapIndex[0],
1883                     key->numLevels[0] * sizeof(int))))
1884         {
1885             identical = false;
1886             continue;
1887         }
1888         if ((key->symsMapNumEntries[i] != key->symsMapNumEntries[i]) &&
1889             (key->symsMapNumEntries[i] == NULL ||
1890              key->symsMapNumEntries[0] == NULL ||
1891              memcmp(key->symsMapNumEntries[i], key->symsMapNumEntries[0],
1892                     key->numLevels[0] * sizeof(int))))
1893         {
1894             identical = false;
1895             continue;
1896         }
1897         if ((key->acts[i] != key->acts[0]) &&
1898             (key->acts[i] == NULL || key->acts[0] == NULL ||
1899              memcmp(key->acts[i], key->acts[0],
1900                     sizeof(union xkb_action) * key->numLevels[0])))
1901         {
1902             identical = false;
1903             break;
1904         }
1905     }
1906     if (identical)
1907     {
1908         for (i = lastGroup; i > 0; i--)
1909         {
1910             key->numLevels[i] = 0;
1911             free(key->syms[i]);
1912             key->syms[i] = NULL;
1913             key->sizeSyms[i] = 0;
1914             free(key->symsMapIndex[i]);
1915             key->symsMapIndex[i] = NULL;
1916             free(key->symsMapNumEntries[i]);
1917             key->symsMapNumEntries[i] = NULL;
1918             free(key->acts[i]);
1919             key->acts[i] = NULL;
1920             key->types[i] = 0;
1921         }
1922         key->symsDefined &= 1;
1923         key->actsDefined &= 1;
1924         key->typesDefined &= 1;
1925     }
1926 }
1927
1928 /**
1929  * Copy the KeyInfo into the keyboard description.
1930  *
1931  * This function recurses.
1932  */
1933 static bool
1934 CopySymbolsDef(struct xkb_keymap *keymap, KeyInfo *key, int start_from)
1935 {
1936     unsigned int i;
1937     xkb_keycode_t kc;
1938     unsigned int sizeSyms = 0;
1939     unsigned width, tmp, nGroups;
1940     struct xkb_key_type * type;
1941     bool haveActions, autoType, useAlias;
1942     unsigned types[XkbNumKbdGroups];
1943     union xkb_action *outActs;
1944     unsigned int symIndex = 0;
1945
1946     useAlias = (start_from == 0);
1947
1948     /* get the keycode for the key. */
1949     if (!FindNamedKey(keymap, key->name, &kc, useAlias,
1950                       CreateKeyNames(keymap), start_from))
1951     {
1952         if ((start_from == 0) && (warningLevel >= 5))
1953         {
1954             WARN("Key %s not found in keycodes\n", longText(key->name));
1955             ACTION("Symbols ignored\n");
1956         }
1957         return false;
1958     }
1959
1960     haveActions = false;
1961     for (i = width = nGroups = 0; i < XkbNumKbdGroups; i++)
1962     {
1963         if (((i + 1) > nGroups)
1964             && (((key->symsDefined | key->actsDefined) & (1 << i))
1965                 || (key->typesDefined) & (1 << i)))
1966             nGroups = i + 1;
1967         if (key->acts[i])
1968             haveActions = true;
1969         autoType = false;
1970         /* Assign the type to the key, if it is missing. */
1971         if (key->types[i] == XKB_ATOM_NONE)
1972         {
1973             if (key->dfltType != XKB_ATOM_NONE)
1974                 key->types[i] = key->dfltType;
1975             else if (FindAutomaticType(keymap, key->numLevels[i], key->syms[i],
1976                                        &key->types[i], &autoType))
1977             {
1978             }
1979             else
1980             {
1981                 if (warningLevel >= 5)
1982                 {
1983                     WARN("No automatic type for %d symbols\n",
1984                           (unsigned int) key->numLevels[i]);
1985                     ACTION("Using %s for the %s key (keycode %d)\n",
1986                             xkb_atom_text(keymap->ctx, key->types[i]),
1987                             longText(key->name), kc);
1988                 }
1989             }
1990         }
1991         if (FindNamedType(keymap, key->types[i], &types[i]))
1992         {
1993             if (!autoType || key->numLevels[i] > 2)
1994                 keymap->server->explicit[kc] |= (1 << i);
1995         }
1996         else
1997         {
1998             if (warningLevel >= 3)
1999             {
2000                 WARN("Type \"%s\" is not defined\n",
2001                       xkb_atom_text(keymap->ctx, key->types[i]));
2002                 ACTION("Using TWO_LEVEL for the %s key (keycode %d)\n",
2003                         longText(key->name), kc);
2004             }
2005             types[i] = XkbTwoLevelIndex;
2006         }
2007         /* if the type specifies fewer levels than the key has, shrink the key */
2008         type = &keymap->map->types[types[i]];
2009         if (type->num_levels < key->numLevels[i])
2010         {
2011             if (warningLevel > 0)
2012             {
2013                 WARN("Type \"%s\" has %d levels, but %s has %d symbols\n",
2014                      type->name, type->num_levels,
2015                      xkb_atom_text(keymap->ctx, key->name), key->numLevels[i]);
2016                 ACTION("Ignoring extra symbols\n");
2017             }
2018             key->numLevels[i] = type->num_levels;
2019         }
2020         if (key->numLevels[i] > width)
2021             width = key->numLevels[i];
2022         if (type->num_levels > width)
2023             width = type->num_levels;
2024         sizeSyms += key->sizeSyms[i];
2025     }
2026
2027     if (!XkbcResizeKeySyms(keymap, kc, sizeSyms))
2028     {
2029         WSGO("Could not enlarge symbols for %s (keycode %d)\n",
2030               longText(key->name), kc);
2031         return false;
2032     }
2033     if (haveActions)
2034     {
2035         outActs = XkbcResizeKeyActions(keymap, kc, width * nGroups);
2036         if (outActs == NULL)
2037         {
2038             WSGO("Could not enlarge actions for %s (key %d)\n",
2039                   longText(key->name), kc);
2040             return false;
2041         }
2042         keymap->server->explicit[kc] |= XkbExplicitInterpretMask;
2043     }
2044     else
2045         outActs = NULL;
2046     if (key->defs.defined & _Key_GroupInfo)
2047         i = key->groupInfo;
2048     else
2049         i = keymap->map->key_sym_map[kc].group_info;
2050
2051     keymap->map->key_sym_map[kc].group_info = XkbSetNumGroups(i, nGroups);
2052     keymap->map->key_sym_map[kc].width = width;
2053     keymap->map->key_sym_map[kc].sym_index = uTypedCalloc(nGroups * width,
2054                                                           int);
2055     keymap->map->key_sym_map[kc].num_syms = uTypedCalloc(nGroups * width,
2056                                                          unsigned int);
2057     for (i = 0; i < nGroups; i++)
2058     {
2059         /* assign kt_index[i] to the index of the type in map->types.
2060          * kt_index[i] may have been set by a previous run (if we have two
2061          * layouts specified). Let's not overwrite it with the ONE_LEVEL
2062          * default group if we dont even have keys for this group anyway.
2063          *
2064          * FIXME: There should be a better fix for this.
2065          */
2066         if (key->numLevels[i])
2067             keymap->map->key_sym_map[kc].kt_index[i] = types[i];
2068         if (key->sizeSyms[i] != 0)
2069         {
2070             /* fill key to "width" symbols*/
2071             for (tmp = 0; tmp < width; tmp++)
2072             {
2073                 if (tmp < key->numLevels[i] && key->symsMapNumEntries[i][tmp])
2074                 {
2075                     memcpy(&keymap->map->key_sym_map[kc].syms[symIndex],
2076                            &key->syms[i][key->symsMapIndex[i][tmp]],
2077                            key->symsMapNumEntries[i][tmp] *
2078                             sizeof(xkb_keysym_t));
2079                     keymap->map->key_sym_map[kc].sym_index[(i * width) + tmp] =
2080                         symIndex;
2081                     keymap->map->key_sym_map[kc].num_syms[(i * width) + tmp] =
2082                         key->symsMapNumEntries[i][tmp];
2083                     symIndex +=
2084                         keymap->map->key_sym_map[kc].num_syms[(i * width) + tmp];
2085                 }
2086                 else
2087                 {
2088                     keymap->map->key_sym_map[kc].sym_index[(i * width) + tmp] = -1;
2089                     keymap->map->key_sym_map[kc].num_syms[(i * width) + tmp] = 0;
2090                 }
2091                 if ((outActs != NULL) && (key->acts[i] != NULL))
2092                 {
2093                     if (tmp < key->numLevels[i])
2094                         outActs[tmp] = key->acts[i][tmp];
2095                     else
2096                         outActs[tmp].type = XkbSA_NoAction;
2097                 }
2098             }
2099         }
2100     }
2101     switch (key->behavior.type & XkbKB_OpMask)
2102     {
2103     case XkbKB_Default:
2104         break;
2105     default:
2106         keymap->server->behaviors[kc] = key->behavior;
2107         keymap->server->explicit[kc] |= XkbExplicitBehaviorMask;
2108         break;
2109     }
2110     if (key->defs.defined & _Key_VModMap)
2111     {
2112         keymap->server->vmodmap[kc] = key->vmodmap;
2113         keymap->server->explicit[kc] |= XkbExplicitVModMapMask;
2114     }
2115     if (key->repeat != RepeatUndefined)
2116     {
2117         if (key->repeat == RepeatYes)
2118             keymap->ctrls->per_key_repeat[kc / 8] |= (1 << (kc % 8));
2119         else
2120             keymap->ctrls->per_key_repeat[kc / 8] &= ~(1 << (kc % 8));
2121         keymap->server->explicit[kc] |= XkbExplicitAutoRepeatMask;
2122     }
2123
2124     if (nGroups > keymap->ctrls->num_groups)
2125         keymap->ctrls->num_groups = nGroups;
2126
2127     /* do the same thing for the next key */
2128     CopySymbolsDef(keymap, key, kc + 1);
2129     return true;
2130 }
2131
2132 static bool
2133 CopyModMapDef(struct xkb_keymap *keymap, ModMapEntry *entry)
2134 {
2135     xkb_keycode_t kc;
2136
2137     if (!entry->haveSymbol &&
2138         !FindNamedKey(keymap, entry->u.keyName, &kc, true,
2139                       CreateKeyNames(keymap), 0))
2140     {
2141         if (warningLevel >= 5)
2142         {
2143             WARN("Key %s not found in keycodes\n",
2144                   longText(entry->u.keyName));
2145             ACTION("Modifier map entry for %s not updated\n",
2146                     XkbcModIndexText(entry->modifier));
2147         }
2148         return false;
2149     }
2150     else if (entry->haveSymbol &&
2151              !FindKeyForSymbol(keymap, entry->u.keySym, &kc))
2152     {
2153         if (warningLevel > 5)
2154         {
2155             WARN("Key \"%s\" not found in symbol map\n",
2156                   XkbcKeysymText(entry->u.keySym));
2157             ACTION("Modifier map entry for %s not updated\n",
2158                     XkbcModIndexText(entry->modifier));
2159         }
2160         return false;
2161     }
2162     keymap->map->modmap[kc] |= (1 << entry->modifier);
2163     return true;
2164 }
2165
2166 /**
2167  * Handle the xkb_symbols section of an xkb file.
2168  *
2169  * @param file The parsed xkb_symbols section of the xkb file.
2170  * @param keymap Handle to the keyboard description to store the symbols in.
2171  * @param merge Merge strategy (e.g. MergeOverride).
2172  */
2173 bool
2174 CompileSymbols(XkbFile *file, struct xkb_keymap *keymap, unsigned merge)
2175 {
2176     unsigned int i;
2177     SymbolsInfo info;
2178     KeyInfo *key;
2179
2180     InitSymbolsInfo(&info, keymap);
2181     info.dflt.defs.fileID = file->id;
2182     info.dflt.defs.merge = merge;
2183
2184     HandleSymbolsFile(file, keymap, merge, &info);
2185
2186     if (info.nKeys == 0)
2187         goto err_info;
2188
2189     if (info.errorCount != 0)
2190         goto err_info;
2191
2192     /* alloc memory in the xkb struct */
2193     if (XkbcAllocNames(keymap, XkbGroupNamesMask, 0) != Success) {
2194         WSGO("Can not allocate names in CompileSymbols\n");
2195         ACTION("Symbols not added\n");
2196         goto err_info;
2197     }
2198
2199     if (XkbcAllocClientMap(keymap, XkbKeySymsMask | XkbModifierMapMask, 0)
2200         != Success) {
2201         WSGO("Could not allocate client map in CompileSymbols\n");
2202         ACTION("Symbols not added\n");
2203         goto err_info;
2204     }
2205
2206     if (XkbcAllocServerMap(keymap, XkbAllServerInfoMask, 32) != Success) {
2207         WSGO("Could not allocate server map in CompileSymbols\n");
2208         ACTION("Symbols not added\n");
2209         goto err_info;
2210     }
2211
2212     if (XkbcAllocControls(keymap) != Success) {
2213         WSGO("Could not allocate controls in CompileSymbols\n");
2214         ACTION("Symbols not added\n");
2215         goto err_info;
2216     }
2217
2218     /* now copy info into xkb. */
2219     ApplyAliases(keymap, &info.aliases);
2220
2221     for (i = 0; i < XkbNumKbdGroups; i++) {
2222         if (info.groupNames[i] != XKB_ATOM_NONE) {
2223             free(UNCONSTIFY(keymap->names->groups[i]));
2224             keymap->names->groups[i] = xkb_atom_strdup(keymap->ctx,
2225                                                        info.groupNames[i]);
2226         }
2227     }
2228
2229     /* sanitize keys */
2230     for (key = info.keys, i = 0; i < info.nKeys; i++, key++)
2231         PrepareKeyDef(key);
2232
2233     /* copy! */
2234     for (key = info.keys, i = 0; i < info.nKeys; i++, key++)
2235         if (!CopySymbolsDef(keymap, key, 0))
2236             info.errorCount++;
2237
2238     if (warningLevel > 3) {
2239         for (i = keymap->min_key_code; i <= keymap->max_key_code; i++) {
2240             if (keymap->names->keys[i].name[0] == '\0')
2241                 continue;
2242
2243             if (XkbKeyNumGroups(keymap, i) < 1) {
2244                 char buf[5];
2245                 memcpy(buf, keymap->names->keys[i].name, 4);
2246                 buf[4] = '\0';
2247                 WARN("No symbols defined for <%s> (keycode %d)\n", buf, i);
2248             }
2249         }
2250     }
2251
2252     if (info.modMap) {
2253         ModMapEntry *mm, *next;
2254         for (mm = info.modMap; mm != NULL; mm = next) {
2255             if (!CopyModMapDef(keymap, mm))
2256                 info.errorCount++;
2257             next = (ModMapEntry *) mm->defs.next;
2258         }
2259     }
2260
2261     FreeSymbolsInfo(&info);
2262     return true;
2263
2264 err_info:
2265     FreeSymbolsInfo(&info);
2266     return false;
2267 }