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git.cameronkatri.com Git - mandoc.git/blob - man_macro.c
1 /* $Id: man_macro.c,v 1.50 2010/07/31 23:52:58 schwarze Exp $ */
3 * Copyright (c) 2008, 2009, 2010 Kristaps Dzonsons <kristaps@bsd.lv>
5 * Permission to use, copy, modify, and distribute this software for any
6 * purpose with or without fee is hereby granted, provided that the above
7 * copyright notice and this permission notice appear in all copies.
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.
35 static int blk_close(MACRO_PROT_ARGS
);
36 static int blk_exp(MACRO_PROT_ARGS
);
37 static int blk_imp(MACRO_PROT_ARGS
);
38 static int in_line_eoln(MACRO_PROT_ARGS
);
40 static int rew_scope(enum man_type
,
41 struct man
*, enum mant
);
42 static enum rew
rew_dohalt(enum mant
, enum man_type
,
43 const struct man_node
*);
44 static enum rew
rew_block(enum mant
, enum man_type
,
45 const struct man_node
*);
46 static int rew_warn(struct man
*,
47 struct man_node
*, enum mandocerr
);
49 const struct man_macro __man_macros
[MAN_MAX
] = {
50 { in_line_eoln
, MAN_NSCOPED
}, /* br */
51 { in_line_eoln
, 0 }, /* TH */
52 { blk_imp
, MAN_SCOPED
}, /* SH */
53 { blk_imp
, MAN_SCOPED
}, /* SS */
54 { blk_imp
, MAN_SCOPED
| MAN_FSCOPED
}, /* TP */
55 { blk_imp
, 0 }, /* LP */
56 { blk_imp
, 0 }, /* PP */
57 { blk_imp
, 0 }, /* P */
58 { blk_imp
, 0 }, /* IP */
59 { blk_imp
, 0 }, /* HP */
60 { in_line_eoln
, MAN_SCOPED
}, /* SM */
61 { in_line_eoln
, MAN_SCOPED
}, /* SB */
62 { in_line_eoln
, 0 }, /* BI */
63 { in_line_eoln
, 0 }, /* IB */
64 { in_line_eoln
, 0 }, /* BR */
65 { in_line_eoln
, 0 }, /* RB */
66 { in_line_eoln
, MAN_SCOPED
}, /* R */
67 { in_line_eoln
, MAN_SCOPED
}, /* B */
68 { in_line_eoln
, MAN_SCOPED
}, /* I */
69 { in_line_eoln
, 0 }, /* IR */
70 { in_line_eoln
, 0 }, /* RI */
71 { in_line_eoln
, MAN_NSCOPED
}, /* na */
72 { in_line_eoln
, 0 }, /* i */
73 { in_line_eoln
, MAN_NSCOPED
}, /* sp */
74 { in_line_eoln
, 0 }, /* nf */
75 { in_line_eoln
, 0 }, /* fi */
76 { in_line_eoln
, 0 }, /* r */
77 { blk_close
, 0 }, /* RE */
78 { blk_exp
, MAN_EXPLICIT
}, /* RS */
79 { in_line_eoln
, 0 }, /* DT */
80 { in_line_eoln
, 0 }, /* UC */
81 { in_line_eoln
, 0 }, /* PD */
82 { in_line_eoln
, MAN_NSCOPED
}, /* Sp */
83 { in_line_eoln
, 0 }, /* Vb */
84 { in_line_eoln
, 0 }, /* Ve */
85 { in_line_eoln
, 0 }, /* AT */
86 { in_line_eoln
, 0 }, /* in */
89 const struct man_macro
* const man_macros
= __man_macros
;
93 * Warn when "n" is an explicit non-roff macro.
96 rew_warn(struct man
*m
, struct man_node
*n
, enum mandocerr er
)
99 if (er
== MANDOCERR_MAX
|| MAN_BLOCK
!= n
->type
)
101 if (MAN_VALID
& n
->flags
)
103 if ( ! (MAN_EXPLICIT
& man_macros
[n
->tok
].flags
))
105 return(man_nmsg(m
, n
, er
));
110 * Rewind scope. If a code "er" != MANDOCERR_MAX has been provided, it
111 * will be used if an explicit block scope is being closed out.
114 man_unscope(struct man
*m
, const struct man_node
*n
,
121 while (m
->last
!= n
) {
122 if ( ! rew_warn(m
, m
->last
, er
))
124 if ( ! man_valid_post(m
))
126 if ( ! man_action_post(m
))
128 m
->last
= m
->last
->parent
;
132 if ( ! rew_warn(m
, m
->last
, er
))
134 if ( ! man_valid_post(m
))
136 if ( ! man_action_post(m
))
139 m
->next
= MAN_ROOT
== m
->last
->type
?
140 MAN_NEXT_CHILD
: MAN_NEXT_SIBLING
;
147 rew_block(enum mant ntok
, enum man_type type
, const struct man_node
*n
)
150 if (MAN_BLOCK
== type
&& ntok
== n
->parent
->tok
&&
151 MAN_BODY
== n
->parent
->type
)
153 return(ntok
== n
->tok
? REW_HALT
: REW_NOHALT
);
158 * There are three scope levels: scoped to the root (all), scoped to the
159 * section (all less sections), and scoped to subsections (all less
160 * sections and subsections).
163 rew_dohalt(enum mant tok
, enum man_type type
, const struct man_node
*n
)
167 /* We cannot progress beyond the root ever. */
168 if (MAN_ROOT
== n
->type
)
173 /* Normal nodes shouldn't go to the level of the root. */
174 if (MAN_ROOT
== n
->parent
->type
)
177 /* Already-validated nodes should be closed out. */
178 if (MAN_VALID
& n
->flags
)
181 /* First: rewind to ourselves. */
182 if (type
== n
->type
&& tok
== n
->tok
)
186 * Next follow the implicit scope-smashings as defined by man.7:
187 * section, sub-section, etc.
194 /* Rewind to a section, if a block. */
195 if (REW_NOHALT
!= (c
= rew_block(MAN_SH
, type
, n
)))
199 /* Rewind to a subsection, if a block. */
200 if (REW_NOHALT
!= (c
= rew_block(MAN_SS
, type
, n
)))
202 /* Rewind to a section, if a block. */
203 if (REW_NOHALT
!= (c
= rew_block(MAN_SH
, type
, n
)))
207 /* Rewind to an offsetter, if a block. */
208 if (REW_NOHALT
!= (c
= rew_block(MAN_RS
, type
, n
)))
210 /* Rewind to a subsection, if a block. */
211 if (REW_NOHALT
!= (c
= rew_block(MAN_SS
, type
, n
)))
213 /* Rewind to a section, if a block. */
214 if (REW_NOHALT
!= (c
= rew_block(MAN_SH
, type
, n
)))
224 * Rewinding entails ascending the parse tree until a coherent point,
225 * for example, the `SH' macro will close out any intervening `SS'
226 * scopes. When a scope is closed, it must be validated and actioned.
229 rew_scope(enum man_type type
, struct man
*m
, enum mant tok
)
235 for (n
= m
->last
; n
; n
= n
->parent
) {
237 * Whether we should stop immediately (REW_HALT), stop
238 * and rewind until this point (REW_REWIND), or keep
239 * rewinding (REW_NOHALT).
241 c
= rew_dohalt(tok
, type
, n
);
249 * Rewind until the current point. Warn if we're a roff
250 * instruction that's mowing over explicit scopes.
254 return(man_unscope(m
, n
, MANDOCERR_MAX
));
259 * Close out a generic explicit macro.
263 blk_close(MACRO_PROT_ARGS
)
266 const struct man_node
*nn
;
277 for (nn
= m
->last
->parent
; nn
; nn
= nn
->parent
)
282 if ( ! man_pmsg(m
, line
, ppos
, MANDOCERR_NOSCOPE
))
285 if ( ! rew_scope(MAN_BODY
, m
, ntok
))
287 if ( ! rew_scope(MAN_BLOCK
, m
, ntok
))
296 blk_exp(MACRO_PROT_ARGS
)
302 * Close out prior scopes. "Regular" explicit macros cannot be
303 * nested, but we allow roff macros to be placed just about
307 if ( ! rew_scope(MAN_BODY
, m
, tok
))
309 if ( ! rew_scope(MAN_BLOCK
, m
, tok
))
312 if ( ! man_block_alloc(m
, line
, ppos
, tok
))
314 if ( ! man_head_alloc(m
, line
, ppos
, tok
))
319 w
= man_args(m
, line
, pos
, buf
, &p
);
326 if ( ! man_word_alloc(m
, line
, la
, p
))
331 assert(tok
!= MAN_MAX
);
333 if ( ! rew_scope(MAN_HEAD
, m
, tok
))
335 return(man_body_alloc(m
, line
, ppos
, tok
));
341 * Parse an implicit-block macro. These contain a MAN_HEAD and a
342 * MAN_BODY contained within a MAN_BLOCK. Rules for closing out other
343 * scopes, such as `SH' closing out an `SS', are defined in the rew
348 blk_imp(MACRO_PROT_ARGS
)
354 /* Close out prior scopes. */
356 if ( ! rew_scope(MAN_BODY
, m
, tok
))
358 if ( ! rew_scope(MAN_BLOCK
, m
, tok
))
361 /* Allocate new block & head scope. */
363 if ( ! man_block_alloc(m
, line
, ppos
, tok
))
365 if ( ! man_head_alloc(m
, line
, ppos
, tok
))
370 /* Add line arguments. */
374 w
= man_args(m
, line
, pos
, buf
, &p
);
381 if ( ! man_word_alloc(m
, line
, la
, p
))
385 /* Close out head and open body (unless MAN_SCOPE). */
387 if (MAN_SCOPED
& man_macros
[tok
].flags
) {
388 /* If we're forcing scope (`TP'), keep it open. */
389 if (MAN_FSCOPED
& man_macros
[tok
].flags
) {
390 m
->flags
|= MAN_BLINE
;
392 } else if (n
== m
->last
) {
393 m
->flags
|= MAN_BLINE
;
398 if ( ! rew_scope(MAN_HEAD
, m
, tok
))
400 return(man_body_alloc(m
, line
, ppos
, tok
));
406 in_line_eoln(MACRO_PROT_ARGS
)
412 if ( ! man_elem_alloc(m
, line
, ppos
, tok
))
419 w
= man_args(m
, line
, pos
, buf
, &p
);
425 if ( ! man_word_alloc(m
, line
, la
, p
))
430 * If no arguments are specified and this is MAN_SCOPED (i.e.,
431 * next-line scoped), then set our mode to indicate that we're
432 * waiting for terms to load into our context.
435 if (n
== m
->last
&& MAN_SCOPED
& man_macros
[tok
].flags
) {
436 assert( ! (MAN_NSCOPED
& man_macros
[tok
].flags
));
437 m
->flags
|= MAN_ELINE
;
441 /* Set ignorable context, if applicable. */
443 if (MAN_NSCOPED
& man_macros
[tok
].flags
) {
444 assert( ! (MAN_SCOPED
& man_macros
[tok
].flags
));
445 m
->flags
|= MAN_ILINE
;
449 * Rewind our element scope. Note that when TH is pruned, we'll
450 * be back at the root, so make sure that we don't clobber as
454 for ( ; m
->last
; m
->last
= m
->last
->parent
) {
457 if (m
->last
->type
== MAN_ROOT
)
459 if ( ! man_valid_post(m
))
461 if ( ! man_action_post(m
))
468 * Same here regarding whether we're back at the root.
471 if (m
->last
->type
!= MAN_ROOT
&& ! man_valid_post(m
))
473 if (m
->last
->type
!= MAN_ROOT
&& ! man_action_post(m
))
476 m
->next
= MAN_ROOT
== m
->last
->type
?
477 MAN_NEXT_CHILD
: MAN_NEXT_SIBLING
;
484 man_macroend(struct man
*m
)
487 return(man_unscope(m
, m
->first
, MANDOCERR_SCOPEEXIT
));