version 1.61, 2011/04/17 09:08:19 |
version 1.73, 2012/06/03 09:52:07 |
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/* $Id$ */ |
/* $Id$ */ |
/* |
/* |
* Copyright (c) 2008, 2009, 2010 Kristaps Dzonsons <kristaps@bsd.lv> |
* Copyright (c) 2008, 2009, 2010, 2011 Kristaps Dzonsons <kristaps@bsd.lv> |
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* Copyright (c) 2012 Ingo Schwarze <schwarze@openbsd.org> |
* |
* |
* Permission to use, copy, modify, and distribute this software for any |
* Permission to use, copy, modify, and distribute this software for any |
* purpose with or without fee is hereby granted, provided that the above |
* purpose with or without fee is hereby granted, provided that the above |
Line 52 static void rew_warn(struct man *, |
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Line 53 static void rew_warn(struct man *, |
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const struct man_macro __man_macros[MAN_MAX] = { |
const struct man_macro __man_macros[MAN_MAX] = { |
{ in_line_eoln, MAN_NSCOPED }, /* br */ |
{ in_line_eoln, MAN_NSCOPED }, /* br */ |
{ in_line_eoln, 0 }, /* TH */ |
{ in_line_eoln, MAN_BSCOPE }, /* TH */ |
{ blk_imp, MAN_SCOPED }, /* SH */ |
{ blk_imp, MAN_BSCOPE | MAN_SCOPED }, /* SH */ |
{ blk_imp, MAN_SCOPED }, /* SS */ |
{ blk_imp, MAN_BSCOPE | MAN_SCOPED }, /* SS */ |
{ blk_imp, MAN_SCOPED | MAN_FSCOPED }, /* TP */ |
{ blk_imp, MAN_BSCOPE | MAN_SCOPED | MAN_FSCOPED }, /* TP */ |
{ blk_imp, 0 }, /* LP */ |
{ blk_imp, MAN_BSCOPE }, /* LP */ |
{ blk_imp, 0 }, /* PP */ |
{ blk_imp, MAN_BSCOPE }, /* PP */ |
{ blk_imp, 0 }, /* P */ |
{ blk_imp, MAN_BSCOPE }, /* P */ |
{ blk_imp, 0 }, /* IP */ |
{ blk_imp, MAN_BSCOPE }, /* IP */ |
{ blk_imp, 0 }, /* HP */ |
{ blk_imp, MAN_BSCOPE }, /* HP */ |
{ in_line_eoln, MAN_SCOPED }, /* SM */ |
{ in_line_eoln, MAN_SCOPED }, /* SM */ |
{ in_line_eoln, MAN_SCOPED }, /* SB */ |
{ in_line_eoln, MAN_SCOPED }, /* SB */ |
{ in_line_eoln, 0 }, /* BI */ |
{ in_line_eoln, 0 }, /* BI */ |
Line 74 const struct man_macro __man_macros[MAN_MAX] = { |
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Line 75 const struct man_macro __man_macros[MAN_MAX] = { |
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{ in_line_eoln, 0 }, /* RI */ |
{ in_line_eoln, 0 }, /* RI */ |
{ in_line_eoln, MAN_NSCOPED }, /* na */ |
{ in_line_eoln, MAN_NSCOPED }, /* na */ |
{ in_line_eoln, MAN_NSCOPED }, /* sp */ |
{ in_line_eoln, MAN_NSCOPED }, /* sp */ |
{ in_line_eoln, 0 }, /* nf */ |
{ in_line_eoln, MAN_BSCOPE }, /* nf */ |
{ in_line_eoln, 0 }, /* fi */ |
{ in_line_eoln, MAN_BSCOPE }, /* fi */ |
{ blk_close, 0 }, /* RE */ |
{ blk_close, 0 }, /* RE */ |
{ blk_exp, MAN_EXPLICIT }, /* RS */ |
{ blk_exp, MAN_EXPLICIT }, /* RS */ |
{ in_line_eoln, 0 }, /* DT */ |
{ in_line_eoln, 0 }, /* DT */ |
Line 84 const struct man_macro __man_macros[MAN_MAX] = { |
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Line 85 const struct man_macro __man_macros[MAN_MAX] = { |
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{ in_line_eoln, 0 }, /* AT */ |
{ in_line_eoln, 0 }, /* AT */ |
{ in_line_eoln, 0 }, /* in */ |
{ in_line_eoln, 0 }, /* in */ |
{ in_line_eoln, 0 }, /* ft */ |
{ in_line_eoln, 0 }, /* ft */ |
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{ in_line_eoln, 0 }, /* OP */ |
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{ in_line_eoln, MAN_BSCOPE }, /* EX */ |
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{ in_line_eoln, MAN_BSCOPE }, /* EE */ |
}; |
}; |
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const struct man_macro * const man_macros = __man_macros; |
const struct man_macro * const man_macros = __man_macros; |
Line 120 man_unscope(struct man *m, const struct man_node *to, |
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Line 124 man_unscope(struct man *m, const struct man_node *to, |
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assert(to); |
assert(to); |
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m->next = MAN_NEXT_SIBLING; |
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/* LINTED */ |
/* LINTED */ |
while (m->last != to) { |
while (m->last != to) { |
/* |
/* |
Line 140 man_unscope(struct man *m, const struct man_node *to, |
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Line 146 man_unscope(struct man *m, const struct man_node *to, |
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if ( ! man_valid_post(m)) |
if ( ! man_valid_post(m)) |
return(0); |
return(0); |
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m->next = MAN_ROOT == m->last->type ? |
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MAN_NEXT_CHILD : MAN_NEXT_SIBLING; |
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return(1); |
return(1); |
} |
} |
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Line 183 rew_dohalt(enum mant tok, enum man_type type, const st |
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Line 186 rew_dohalt(enum mant tok, enum man_type type, const st |
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return(REW_NOHALT); |
return(REW_NOHALT); |
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/* First: rewind to ourselves. */ |
/* First: rewind to ourselves. */ |
if (type == n->type && tok == n->tok) |
if (type == n->type && tok == n->tok) { |
return(REW_REWIND); |
if (MAN_EXPLICIT & man_macros[n->tok].flags) |
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return(REW_HALT); |
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else |
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return(REW_REWIND); |
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} |
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/* |
/* |
* Next follow the implicit scope-smashings as defined by man.7: |
* Next follow the implicit scope-smashings as defined by man.7: |
Line 200 rew_dohalt(enum mant tok, enum man_type type, const st |
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Line 207 rew_dohalt(enum mant tok, enum man_type type, const st |
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return(c); |
return(c); |
break; |
break; |
case (MAN_RS): |
case (MAN_RS): |
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/* Preserve empty paragraphs before RS. */ |
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if (0 == n->nchild && (MAN_P == n->tok || |
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MAN_PP == n->tok || MAN_LP == n->tok)) |
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return(REW_HALT); |
/* Rewind to a subsection, if a block. */ |
/* Rewind to a subsection, if a block. */ |
if (REW_NOHALT != (c = rew_block(MAN_SS, type, n))) |
if (REW_NOHALT != (c = rew_block(MAN_SS, type, n))) |
return(c); |
return(c); |
Line 279 blk_close(MACRO_PROT_ARGS) |
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Line 290 blk_close(MACRO_PROT_ARGS) |
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} |
} |
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for (nn = m->last->parent; nn; nn = nn->parent) |
for (nn = m->last->parent; nn; nn = nn->parent) |
if (ntok == nn->tok) |
if (ntok == nn->tok && MAN_BLOCK == nn->type) |
break; |
break; |
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if (NULL == nn) |
if (NULL != nn) |
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man_unscope(m, nn, MANDOCERR_MAX); |
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else |
man_pmsg(m, line, ppos, MANDOCERR_NOSCOPE); |
man_pmsg(m, line, ppos, MANDOCERR_NOSCOPE); |
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if ( ! rew_scope(MAN_BODY, m, ntok)) |
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return(0); |
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if ( ! rew_scope(MAN_BLOCK, m, ntok)) |
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return(0); |
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return(1); |
return(1); |
} |
} |
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Line 298 blk_close(MACRO_PROT_ARGS) |
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Line 306 blk_close(MACRO_PROT_ARGS) |
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int |
int |
blk_exp(MACRO_PROT_ARGS) |
blk_exp(MACRO_PROT_ARGS) |
{ |
{ |
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struct man_node *n; |
int la; |
int la; |
char *p; |
char *p; |
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/* |
/* Close out prior implicit scopes. */ |
* Close out prior scopes. "Regular" explicit macros cannot be |
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* nested, but we allow roff macros to be placed just about |
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* anywhere. |
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*/ |
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if ( ! rew_scope(MAN_BODY, m, tok)) |
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return(0); |
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if ( ! rew_scope(MAN_BLOCK, m, tok)) |
if ( ! rew_scope(MAN_BLOCK, m, tok)) |
return(0); |
return(0); |
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Line 328 blk_exp(MACRO_PROT_ARGS) |
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Line 331 blk_exp(MACRO_PROT_ARGS) |
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assert(m); |
assert(m); |
assert(tok != MAN_MAX); |
assert(tok != MAN_MAX); |
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if ( ! rew_scope(MAN_HEAD, m, tok)) |
for (n = m->last; n; n = n->parent) { |
return(0); |
if (n->tok != tok) |
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continue; |
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assert(MAN_HEAD == n->type); |
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man_unscope(m, n, MANDOCERR_MAX); |
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break; |
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} |
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return(man_body_alloc(m, line, ppos, tok)); |
return(man_body_alloc(m, line, ppos, tok)); |
} |
} |
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Line 433 in_line_eoln(MACRO_PROT_ARGS) |
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Line 442 in_line_eoln(MACRO_PROT_ARGS) |
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assert( ! (MAN_SCOPED & man_macros[tok].flags)); |
assert( ! (MAN_SCOPED & man_macros[tok].flags)); |
m->flags |= MAN_ILINE; |
m->flags |= MAN_ILINE; |
} |
} |
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assert(MAN_ROOT != m->last->type); |
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m->next = MAN_NEXT_SIBLING; |
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/* |
/* |
* Rewind our element scope. Note that when TH is pruned, we'll |
* Rewind our element scope. Note that when TH is pruned, we'll |
Line 458 in_line_eoln(MACRO_PROT_ARGS) |
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Line 470 in_line_eoln(MACRO_PROT_ARGS) |
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if (m->last->type != MAN_ROOT && ! man_valid_post(m)) |
if (m->last->type != MAN_ROOT && ! man_valid_post(m)) |
return(0); |
return(0); |
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m->next = MAN_ROOT == m->last->type ? |
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MAN_NEXT_CHILD : MAN_NEXT_SIBLING; |
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return(1); |
return(1); |
} |
} |
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Line 484 man_args(struct man *m, int line, int *pos, char *buf, |
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Line 493 man_args(struct man *m, int line, int *pos, char *buf, |
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if ('\0' == *start) |
if ('\0' == *start) |
return(0); |
return(0); |
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*v = mandoc_getarg(m->parse, v, line, 1, pos); |
*v = mandoc_getarg(m->parse, v, line, pos); |
return(1); |
return(1); |
} |
} |