[BACK]Return to man_macro.c CVS log [TXT][DIR] Up to [local] / src / usr.bin / mandoc

Annotation of src/usr.bin/mandoc/man_macro.c, Revision 1.20

1.20    ! schwarze    1: /*     $Id: man_macro.c,v 1.19 2010/05/23 22:45:00 schwarze Exp $ */
1.1       kristaps    2: /*
1.20    ! schwarze    3:  * Copyright (c) 2008, 2009, 2010 Kristaps Dzonsons <kristaps@bsd.lv>
1.1       kristaps    4:  *
                      5:  * Permission to use, copy, modify, and distribute this software for any
1.2       schwarze    6:  * purpose with or without fee is hereby granted, provided that the above
                      7:  * copyright notice and this permission notice appear in all copies.
1.1       kristaps    8:  *
1.2       schwarze    9:  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
                     10:  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
                     11:  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
                     12:  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
                     13:  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
                     14:  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
                     15:  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
1.1       kristaps   16:  */
                     17: #include <assert.h>
                     18: #include <ctype.h>
                     19: #include <stdlib.h>
                     20: #include <string.h>
                     21:
1.19      schwarze   22: #include "mandoc.h"
1.1       kristaps   23: #include "libman.h"
                     24:
1.12      schwarze   25: enum   rew {
                     26:        REW_REWIND,
                     27:        REW_NOHALT,
1.13      schwarze   28:        REW_HALT
1.12      schwarze   29: };
1.6       schwarze   30:
1.12      schwarze   31: static int              blk_close(MACRO_PROT_ARGS);
                     32: static int              blk_exp(MACRO_PROT_ARGS);
                     33: static int              blk_imp(MACRO_PROT_ARGS);
1.6       schwarze   34: static int              in_line_eoln(MACRO_PROT_ARGS);
                     35:
1.12      schwarze   36: static int              rew_scope(enum man_type,
                     37:                                struct man *, enum mant);
                     38: static enum rew         rew_dohalt(enum mant, enum man_type,
1.6       schwarze   39:                                const struct man_node *);
1.12      schwarze   40: static enum rew         rew_block(enum mant, enum man_type,
1.7       schwarze   41:                                const struct man_node *);
1.13      schwarze   42: static int              rew_warn(struct man *,
1.19      schwarze   43:                                struct man_node *, enum mandocerr);
1.6       schwarze   44:
                     45: const  struct man_macro __man_macros[MAN_MAX] = {
1.11      schwarze   46:        { in_line_eoln, MAN_NSCOPED }, /* br */
1.6       schwarze   47:        { in_line_eoln, 0 }, /* TH */
1.7       schwarze   48:        { blk_imp, MAN_SCOPED }, /* SH */
                     49:        { blk_imp, MAN_SCOPED }, /* SS */
                     50:        { blk_imp, MAN_SCOPED | MAN_FSCOPED }, /* TP */
1.6       schwarze   51:        { blk_imp, 0 }, /* LP */
                     52:        { blk_imp, 0 }, /* PP */
                     53:        { blk_imp, 0 }, /* P */
                     54:        { blk_imp, 0 }, /* IP */
                     55:        { blk_imp, 0 }, /* HP */
                     56:        { in_line_eoln, MAN_SCOPED }, /* SM */
                     57:        { in_line_eoln, MAN_SCOPED }, /* SB */
                     58:        { in_line_eoln, 0 }, /* BI */
                     59:        { in_line_eoln, 0 }, /* IB */
                     60:        { in_line_eoln, 0 }, /* BR */
                     61:        { in_line_eoln, 0 }, /* RB */
                     62:        { in_line_eoln, MAN_SCOPED }, /* R */
                     63:        { in_line_eoln, MAN_SCOPED }, /* B */
                     64:        { in_line_eoln, MAN_SCOPED }, /* I */
                     65:        { in_line_eoln, 0 }, /* IR */
                     66:        { in_line_eoln, 0 }, /* RI */
1.11      schwarze   67:        { in_line_eoln, MAN_NSCOPED }, /* na */
1.6       schwarze   68:        { in_line_eoln, 0 }, /* i */
1.11      schwarze   69:        { in_line_eoln, MAN_NSCOPED }, /* sp */
1.6       schwarze   70:        { in_line_eoln, 0 }, /* nf */
                     71:        { in_line_eoln, 0 }, /* fi */
                     72:        { in_line_eoln, 0 }, /* r */
1.7       schwarze   73:        { blk_close, 0 }, /* RE */
1.12      schwarze   74:        { blk_exp, MAN_EXPLICIT }, /* RS */
1.7       schwarze   75:        { in_line_eoln, 0 }, /* DT */
1.8       schwarze   76:        { in_line_eoln, 0 }, /* UC */
1.9       schwarze   77:        { in_line_eoln, 0 }, /* PD */
1.12      schwarze   78:        { in_line_eoln, MAN_NSCOPED }, /* Sp */
1.10      schwarze   79:        { in_line_eoln, 0 }, /* Vb */
                     80:        { in_line_eoln, 0 }, /* Ve */
1.18      schwarze   81:        { in_line_eoln, 0 }, /* AT */
1.20    ! schwarze   82:        { in_line_eoln, 0 }, /* in */
1.6       schwarze   83: };
1.1       kristaps   84:
1.6       schwarze   85: const  struct man_macro * const man_macros = __man_macros;
1.1       kristaps   86:
                     87:
1.13      schwarze   88: /*
                     89:  * Warn when "n" is an explicit non-roff macro.
                     90:  */
                     91: static int
1.19      schwarze   92: rew_warn(struct man *m, struct man_node *n, enum mandocerr er)
1.13      schwarze   93: {
                     94:
1.19      schwarze   95:        if (er == MANDOCERR_MAX || MAN_BLOCK != n->type)
1.13      schwarze   96:                return(1);
                     97:        if (MAN_VALID & n->flags)
                     98:                return(1);
                     99:        if ( ! (MAN_EXPLICIT & man_macros[n->tok].flags))
                    100:                return(1);
1.19      schwarze  101:        return(man_nmsg(m, n, er));
1.13      schwarze  102: }
                    103:
                    104:
                    105: /*
1.19      schwarze  106:  * Rewind scope.  If a code "er" != MANDOCERR_MAX has been provided, it
                    107:  * will be used if an explicit block scope is being closed out.
1.13      schwarze  108:  */
1.1       kristaps  109: int
1.19      schwarze  110: man_unscope(struct man *m, const struct man_node *n,
                    111:                enum mandocerr er)
1.1       kristaps  112: {
                    113:
1.6       schwarze  114:        assert(n);
                    115:
                    116:        /* LINTED */
                    117:        while (m->last != n) {
1.13      schwarze  118:                if ( ! rew_warn(m, m->last, er))
                    119:                        return(0);
1.6       schwarze  120:                if ( ! man_valid_post(m))
                    121:                        return(0);
                    122:                if ( ! man_action_post(m))
                    123:                        return(0);
                    124:                m->last = m->last->parent;
                    125:                assert(m->last);
                    126:        }
                    127:
1.13      schwarze  128:        if ( ! rew_warn(m, m->last, er))
                    129:                return(0);
1.6       schwarze  130:        if ( ! man_valid_post(m))
1.1       kristaps  131:                return(0);
1.12      schwarze  132:        if ( ! man_action_post(m))
                    133:                return(0);
                    134:
                    135:        m->next = MAN_ROOT == m->last->type ?
                    136:                MAN_NEXT_CHILD : MAN_NEXT_SIBLING;
                    137:
                    138:        return(1);
1.6       schwarze  139: }
1.1       kristaps  140:
                    141:
1.12      schwarze  142: static enum rew
                    143: rew_block(enum mant ntok, enum man_type type, const struct man_node *n)
1.7       schwarze  144: {
                    145:
                    146:        if (MAN_BLOCK == type && ntok == n->parent->tok &&
                    147:                        MAN_BODY == n->parent->type)
                    148:                return(REW_REWIND);
                    149:        return(ntok == n->tok ? REW_HALT : REW_NOHALT);
                    150: }
                    151:
                    152:
1.6       schwarze  153: /*
                    154:  * There are three scope levels: scoped to the root (all), scoped to the
                    155:  * section (all less sections), and scoped to subsections (all less
                    156:  * sections and subsections).
                    157:  */
1.12      schwarze  158: static enum rew
                    159: rew_dohalt(enum mant tok, enum man_type type, const struct man_node *n)
1.6       schwarze  160: {
1.12      schwarze  161:        enum rew         c;
1.1       kristaps  162:
1.13      schwarze  163:        /* We cannot progress beyond the root ever. */
1.6       schwarze  164:        if (MAN_ROOT == n->type)
                    165:                return(REW_HALT);
1.13      schwarze  166:
1.6       schwarze  167:        assert(n->parent);
1.13      schwarze  168:
                    169:        /* Normal nodes shouldn't go to the level of the root. */
1.6       schwarze  170:        if (MAN_ROOT == n->parent->type)
                    171:                return(REW_REWIND);
1.13      schwarze  172:
                    173:        /* Already-validated nodes should be closed out. */
1.6       schwarze  174:        if (MAN_VALID & n->flags)
                    175:                return(REW_NOHALT);
                    176:
1.13      schwarze  177:        /* First: rewind to ourselves. */
1.7       schwarze  178:        if (type == n->type && tok == n->tok)
                    179:                return(REW_REWIND);
                    180:
1.13      schwarze  181:        /*
                    182:         * Next follow the implicit scope-smashings as defined by man.7:
                    183:         * section, sub-section, etc.
                    184:         */
                    185:
1.6       schwarze  186:        switch (tok) {
                    187:        case (MAN_SH):
                    188:                break;
                    189:        case (MAN_SS):
                    190:                /* Rewind to a section, if a block. */
1.7       schwarze  191:                if (REW_NOHALT != (c = rew_block(MAN_SH, type, n)))
                    192:                        return(c);
                    193:                break;
                    194:        case (MAN_RS):
                    195:                /* Rewind to a subsection, if a block. */
                    196:                if (REW_NOHALT != (c = rew_block(MAN_SS, type, n)))
                    197:                        return(c);
                    198:                /* Rewind to a section, if a block. */
                    199:                if (REW_NOHALT != (c = rew_block(MAN_SH, type, n)))
                    200:                        return(c);
1.6       schwarze  201:                break;
                    202:        default:
1.7       schwarze  203:                /* Rewind to an offsetter, if a block. */
                    204:                if (REW_NOHALT != (c = rew_block(MAN_RS, type, n)))
                    205:                        return(c);
1.6       schwarze  206:                /* Rewind to a subsection, if a block. */
1.7       schwarze  207:                if (REW_NOHALT != (c = rew_block(MAN_SS, type, n)))
                    208:                        return(c);
1.6       schwarze  209:                /* Rewind to a section, if a block. */
1.7       schwarze  210:                if (REW_NOHALT != (c = rew_block(MAN_SH, type, n)))
                    211:                        return(c);
1.6       schwarze  212:                break;
1.1       kristaps  213:        }
                    214:
1.6       schwarze  215:        return(REW_NOHALT);
                    216: }
1.1       kristaps  217:
                    218:
1.6       schwarze  219: /*
                    220:  * Rewinding entails ascending the parse tree until a coherent point,
                    221:  * for example, the `SH' macro will close out any intervening `SS'
                    222:  * scopes.  When a scope is closed, it must be validated and actioned.
                    223:  */
                    224: static int
1.12      schwarze  225: rew_scope(enum man_type type, struct man *m, enum mant tok)
1.6       schwarze  226: {
                    227:        struct man_node *n;
1.12      schwarze  228:        enum rew         c;
1.1       kristaps  229:
1.6       schwarze  230:        /* LINTED */
                    231:        for (n = m->last; n; n = n->parent) {
                    232:                /*
                    233:                 * Whether we should stop immediately (REW_HALT), stop
                    234:                 * and rewind until this point (REW_REWIND), or keep
                    235:                 * rewinding (REW_NOHALT).
                    236:                 */
                    237:                c = rew_dohalt(tok, type, n);
                    238:                if (REW_HALT == c)
                    239:                        return(1);
                    240:                if (REW_REWIND == c)
1.1       kristaps  241:                        break;
                    242:        }
                    243:
1.13      schwarze  244:        /*
                    245:         * Rewind until the current point.  Warn if we're a roff
                    246:         * instruction that's mowing over explicit scopes.
                    247:         */
                    248:        assert(n);
1.6       schwarze  249:
1.19      schwarze  250:        return(man_unscope(m, n, MANDOCERR_MAX));
1.6       schwarze  251: }
                    252:
1.1       kristaps  253:
1.12      schwarze  254: /*
                    255:  * Close out a generic explicit macro.
                    256:  */
1.7       schwarze  257: /* ARGSUSED */
                    258: int
                    259: blk_close(MACRO_PROT_ARGS)
                    260: {
1.12      schwarze  261:        enum mant                ntok;
1.7       schwarze  262:        const struct man_node   *nn;
                    263:
                    264:        switch (tok) {
                    265:        case (MAN_RE):
                    266:                ntok = MAN_RS;
                    267:                break;
                    268:        default:
                    269:                abort();
                    270:                /* NOTREACHED */
                    271:        }
                    272:
                    273:        for (nn = m->last->parent; nn; nn = nn->parent)
                    274:                if (ntok == nn->tok)
                    275:                        break;
                    276:
                    277:        if (NULL == nn)
1.19      schwarze  278:                if ( ! man_pmsg(m, line, ppos, MANDOCERR_NOSCOPE))
1.7       schwarze  279:                        return(0);
                    280:
                    281:        if ( ! rew_scope(MAN_BODY, m, ntok))
                    282:                return(0);
                    283:        if ( ! rew_scope(MAN_BLOCK, m, ntok))
                    284:                return(0);
1.12      schwarze  285:
1.7       schwarze  286:        return(1);
                    287: }
                    288:
                    289:
1.20    ! schwarze  290: /* ARGSUSED */
1.12      schwarze  291: int
                    292: blk_exp(MACRO_PROT_ARGS)
                    293: {
                    294:        int              w, la;
                    295:        char            *p;
                    296:
                    297:        /*
                    298:         * Close out prior scopes.  "Regular" explicit macros cannot be
                    299:         * nested, but we allow roff macros to be placed just about
                    300:         * anywhere.
                    301:         */
                    302:
1.16      schwarze  303:        if ( ! rew_scope(MAN_BODY, m, tok))
                    304:                return(0);
                    305:        if ( ! rew_scope(MAN_BLOCK, m, tok))
                    306:                return(0);
1.12      schwarze  307:
                    308:        if ( ! man_block_alloc(m, line, ppos, tok))
                    309:                return(0);
                    310:        if ( ! man_head_alloc(m, line, ppos, tok))
                    311:                return(0);
                    312:
                    313:        for (;;) {
                    314:                la = *pos;
                    315:                w = man_args(m, line, pos, buf, &p);
                    316:
                    317:                if (-1 == w)
                    318:                        return(0);
                    319:                if (0 == w)
                    320:                        break;
                    321:
                    322:                if ( ! man_word_alloc(m, line, la, p))
                    323:                        return(0);
                    324:        }
                    325:
                    326:        assert(m);
                    327:        assert(tok != MAN_MAX);
                    328:
                    329:        if ( ! rew_scope(MAN_HEAD, m, tok))
                    330:                return(0);
                    331:        return(man_body_alloc(m, line, ppos, tok));
                    332: }
                    333:
                    334:
                    335:
1.6       schwarze  336: /*
                    337:  * Parse an implicit-block macro.  These contain a MAN_HEAD and a
                    338:  * MAN_BODY contained within a MAN_BLOCK.  Rules for closing out other
                    339:  * scopes, such as `SH' closing out an `SS', are defined in the rew
                    340:  * routines.
                    341:  */
1.20    ! schwarze  342: /* ARGSUSED */
1.6       schwarze  343: int
                    344: blk_imp(MACRO_PROT_ARGS)
                    345: {
                    346:        int              w, la;
                    347:        char            *p;
1.7       schwarze  348:        struct man_node *n;
1.6       schwarze  349:
                    350:        /* Close out prior scopes. */
1.1       kristaps  351:
1.6       schwarze  352:        if ( ! rew_scope(MAN_BODY, m, tok))
1.1       kristaps  353:                return(0);
1.6       schwarze  354:        if ( ! rew_scope(MAN_BLOCK, m, tok))
1.1       kristaps  355:                return(0);
                    356:
1.6       schwarze  357:        /* Allocate new block & head scope. */
                    358:
                    359:        if ( ! man_block_alloc(m, line, ppos, tok))
                    360:                return(0);
                    361:        if ( ! man_head_alloc(m, line, ppos, tok))
                    362:                return(0);
1.1       kristaps  363:
1.7       schwarze  364:        n = m->last;
                    365:
1.6       schwarze  366:        /* Add line arguments. */
1.1       kristaps  367:
1.6       schwarze  368:        for (;;) {
                    369:                la = *pos;
                    370:                w = man_args(m, line, pos, buf, &p);
1.1       kristaps  371:
1.6       schwarze  372:                if (-1 == w)
1.1       kristaps  373:                        return(0);
1.6       schwarze  374:                if (0 == w)
                    375:                        break;
                    376:
                    377:                if ( ! man_word_alloc(m, line, la, p))
1.1       kristaps  378:                        return(0);
                    379:        }
                    380:
1.6       schwarze  381:        /* Close out head and open body (unless MAN_SCOPE). */
                    382:
                    383:        if (MAN_SCOPED & man_macros[tok].flags) {
1.7       schwarze  384:                /* If we're forcing scope (`TP'), keep it open. */
                    385:                if (MAN_FSCOPED & man_macros[tok].flags) {
                    386:                        m->flags |= MAN_BLINE;
                    387:                        return(1);
                    388:                } else if (n == m->last) {
                    389:                        m->flags |= MAN_BLINE;
                    390:                        return(1);
                    391:                }
                    392:        }
                    393:
                    394:        if ( ! rew_scope(MAN_HEAD, m, tok))
1.1       kristaps  395:                return(0);
1.6       schwarze  396:        return(man_body_alloc(m, line, ppos, tok));
1.1       kristaps  397: }
                    398:
                    399:
1.20    ! schwarze  400: /* ARGSUSED */
1.6       schwarze  401: int
                    402: in_line_eoln(MACRO_PROT_ARGS)
1.1       kristaps  403: {
1.6       schwarze  404:        int              w, la;
                    405:        char            *p;
                    406:        struct man_node *n;
1.1       kristaps  407:
1.6       schwarze  408:        if ( ! man_elem_alloc(m, line, ppos, tok))
1.1       kristaps  409:                return(0);
                    410:
1.6       schwarze  411:        n = m->last;
1.1       kristaps  412:
1.6       schwarze  413:        for (;;) {
                    414:                la = *pos;
                    415:                w = man_args(m, line, pos, buf, &p);
1.1       kristaps  416:
1.6       schwarze  417:                if (-1 == w)
                    418:                        return(0);
                    419:                if (0 == w)
                    420:                        break;
                    421:                if ( ! man_word_alloc(m, line, la, p))
                    422:                        return(0);
                    423:        }
1.1       kristaps  424:
1.11      schwarze  425:        /*
                    426:         * If no arguments are specified and this is MAN_SCOPED (i.e.,
                    427:         * next-line scoped), then set our mode to indicate that we're
                    428:         * waiting for terms to load into our context.
                    429:         */
                    430:
1.7       schwarze  431:        if (n == m->last && MAN_SCOPED & man_macros[tok].flags) {
1.11      schwarze  432:                assert( ! (MAN_NSCOPED & man_macros[tok].flags));
1.6       schwarze  433:                m->flags |= MAN_ELINE;
                    434:                return(1);
                    435:        }
1.1       kristaps  436:
1.11      schwarze  437:        /* Set ignorable context, if applicable. */
                    438:
                    439:        if (MAN_NSCOPED & man_macros[tok].flags) {
                    440:                assert( ! (MAN_SCOPED & man_macros[tok].flags));
                    441:                m->flags |= MAN_ILINE;
                    442:        }
                    443:
1.6       schwarze  444:        /*
1.11      schwarze  445:         * Rewind our element scope.  Note that when TH is pruned, we'll
                    446:         * be back at the root, so make sure that we don't clobber as
                    447:         * its sibling.
1.6       schwarze  448:         */
1.1       kristaps  449:
1.6       schwarze  450:        for ( ; m->last; m->last = m->last->parent) {
                    451:                if (m->last == n)
                    452:                        break;
                    453:                if (m->last->type == MAN_ROOT)
                    454:                        break;
                    455:                if ( ! man_valid_post(m))
                    456:                        return(0);
                    457:                if ( ! man_action_post(m))
                    458:                        return(0);
                    459:        }
1.1       kristaps  460:
1.6       schwarze  461:        assert(m->last);
1.1       kristaps  462:
                    463:        /*
1.6       schwarze  464:         * Same here regarding whether we're back at the root.
1.1       kristaps  465:         */
                    466:
1.6       schwarze  467:        if (m->last->type != MAN_ROOT && ! man_valid_post(m))
                    468:                return(0);
                    469:        if (m->last->type != MAN_ROOT && ! man_action_post(m))
                    470:                return(0);
1.12      schwarze  471:
                    472:        m->next = MAN_ROOT == m->last->type ?
                    473:                MAN_NEXT_CHILD : MAN_NEXT_SIBLING;
1.1       kristaps  474:
1.6       schwarze  475:        return(1);
                    476: }
1.1       kristaps  477:
                    478:
1.6       schwarze  479: int
                    480: man_macroend(struct man *m)
                    481: {
1.1       kristaps  482:
1.19      schwarze  483:        return(man_unscope(m, m->first, MANDOCERR_SCOPEEXIT));
1.6       schwarze  484: }
1.1       kristaps  485: