. common/include/arch/i386 is not actually an imported sys/arch/i386/include but leftover Minix files; remove and move to include/ . move include/ufs to sys/ufs, where it came from, now that we have a sys/ hierarchy . move mdocml/ to external/bsd/, now we have that . single sys/arch/i386/stand/ import for boot stuff
		
			
				
	
	
		
			409 lines
		
	
	
		
			8.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			409 lines
		
	
	
		
			8.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*	$Vendor-Id: tbl_layout.c,v 1.13 2011/01/09 05:38:23 joerg Exp $ */
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/*
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 * Copyright (c) 2009, 2010 Kristaps Dzonsons <kristaps@bsd.lv>
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 *
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 * Permission to use, copy, modify, and distribute this software for any
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 * purpose with or without fee is hereby granted, provided that the above
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 * copyright notice and this permission notice appear in all copies.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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 */
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#include <assert.h>
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#include <ctype.h>
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#include <stdlib.h>
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#include <string.h>
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#include <time.h>
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#include "mandoc.h"
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#include "libmandoc.h"
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#include "libroff.h"
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struct	tbl_phrase {
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	char		 name;
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	enum tbl_cellt	 key;
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};
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/*
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 * FIXME: we can make this parse a lot nicer by, when an error is
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 * encountered in a layout key, bailing to the next key (i.e. to the
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 * next whitespace then continuing).
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 */
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#define	KEYS_MAX	 11
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static	const struct tbl_phrase keys[KEYS_MAX] = {
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	{ 'c',		 TBL_CELL_CENTRE },
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	{ 'r',		 TBL_CELL_RIGHT },
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	{ 'l',		 TBL_CELL_LEFT },
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	{ 'n',		 TBL_CELL_NUMBER },
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	{ 's',		 TBL_CELL_SPAN },
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	{ 'a',		 TBL_CELL_LONG },
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	{ '^',		 TBL_CELL_DOWN },
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	{ '-',		 TBL_CELL_HORIZ },
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	{ '_',		 TBL_CELL_HORIZ },
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	{ '=',		 TBL_CELL_DHORIZ },
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	{ '|',		 TBL_CELL_VERT }
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};
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static	int		 mods(struct tbl_node *, struct tbl_cell *, 
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				int, const char *, int *);
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static	int		 cell(struct tbl_node *, struct tbl_row *, 
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				int, const char *, int *);
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static	void		 row(struct tbl_node *, int, const char *, int *);
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static	struct tbl_cell *cell_alloc(struct tbl_node *, 
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				struct tbl_row *, enum tbl_cellt);
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static	void		 head_adjust(const struct tbl_cell *, 
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				struct tbl_head *);
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static int
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mods(struct tbl_node *tbl, struct tbl_cell *cp, 
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		int ln, const char *p, int *pos)
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{
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	char		 buf[5];
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	int		 i;
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mod:
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	/* 
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	 * XXX: since, at least for now, modifiers are non-conflicting
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	 * (are separable by value, regardless of position), we let
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	 * modifiers come in any order.  The existing tbl doesn't let
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	 * this happen.
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	 */
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	switch (p[*pos]) {
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	case ('\0'):
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		/* FALLTHROUGH */
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	case (' '):
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		/* FALLTHROUGH */
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	case ('\t'):
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		/* FALLTHROUGH */
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	case (','):
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		/* FALLTHROUGH */
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	case ('.'):
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		return(1);
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	default:
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		break;
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	}
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	/* Throw away parenthesised expression. */
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	if ('(' == p[*pos]) {
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		(*pos)++;
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		while (p[*pos] && ')' != p[*pos])
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			(*pos)++;
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		if (')' == p[*pos]) {
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			(*pos)++;
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			goto mod;
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		}
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		TBL_MSG(tbl, MANDOCERR_TBLLAYOUT, ln, *pos);
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		return(0);
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	}
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	/* Parse numerical spacing from modifier string. */
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	if (isdigit((unsigned char)p[*pos])) {
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		for (i = 0; i < 4; i++) {
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			if ( ! isdigit((unsigned char)p[*pos + i]))
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				break;
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			buf[i] = p[*pos + i];
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		}
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		buf[i] = '\0';
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		/* No greater than 4 digits. */
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		if (4 == i) {
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			TBL_MSG(tbl, MANDOCERR_TBLLAYOUT, ln, *pos);
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			return(0);
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		}
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		*pos += i;
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		cp->spacing = atoi(buf);
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		goto mod;
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		/* NOTREACHED */
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	} 
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	/* TODO: GNU has many more extensions. */
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	switch (tolower((unsigned char)p[(*pos)++])) {
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	case ('z'):
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		cp->flags |= TBL_CELL_WIGN;
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		goto mod;
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	case ('u'):
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		cp->flags |= TBL_CELL_UP;
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		goto mod;
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	case ('e'):
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		cp->flags |= TBL_CELL_EQUAL;
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		goto mod;
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	case ('t'):
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		cp->flags |= TBL_CELL_TALIGN;
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		goto mod;
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	case ('d'):
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		cp->flags |= TBL_CELL_BALIGN;
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		goto mod;
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	case ('w'):  /* XXX for now, ignore minimal column width */
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		goto mod;
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	case ('f'):
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		break;
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	case ('b'):
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		/* FALLTHROUGH */
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	case ('i'):
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		(*pos)--;
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		break;
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	default:
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		TBL_MSG(tbl, MANDOCERR_TBLLAYOUT, ln, *pos - 1);
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		return(0);
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	}
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	switch (tolower((unsigned char)p[(*pos)++])) {
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	case ('b'):
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		cp->flags |= TBL_CELL_BOLD;
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		goto mod;
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	case ('i'):
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		cp->flags |= TBL_CELL_ITALIC;
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		goto mod;
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	default:
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		break;
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	}
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	TBL_MSG(tbl, MANDOCERR_TBLLAYOUT, ln, *pos - 1);
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	return(0);
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}
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static int
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cell(struct tbl_node *tbl, struct tbl_row *rp, 
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		int ln, const char *p, int *pos)
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{
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	int		 i;
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	enum tbl_cellt	 c;
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	/* Parse the column position (`r', `R', `|', ...). */
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	for (i = 0; i < KEYS_MAX; i++)
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		if (tolower((unsigned char)p[*pos]) == keys[i].name)
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			break;
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	if (KEYS_MAX == i) {
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		TBL_MSG(tbl, MANDOCERR_TBLLAYOUT, ln, *pos);
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		return(0);
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	}
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	c = keys[i].key;
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	/*
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	 * If a span cell is found first, raise a warning and abort the
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	 * parse.  FIXME: recover from this somehow?
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	 */
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	if (NULL == rp->first && TBL_CELL_SPAN == c) {
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		TBL_MSG(tbl, MANDOCERR_TBLLAYOUT, ln, *pos);
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		return(0);
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	}
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	(*pos)++;
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	/* Extra check for the double-vertical. */
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	if (TBL_CELL_VERT == c && '|' == p[*pos]) {
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		(*pos)++;
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		c = TBL_CELL_DVERT;
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	} 
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	/* Disallow adjacent spacers. */
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	if (rp->last && (TBL_CELL_VERT == c || TBL_CELL_DVERT == c) &&
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			(TBL_CELL_VERT == rp->last->pos || 
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			 TBL_CELL_DVERT == rp->last->pos)) {
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		TBL_MSG(tbl, MANDOCERR_TBLLAYOUT, ln, *pos - 1);
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		return(0);
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	}
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	/* Allocate cell then parse its modifiers. */
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	return(mods(tbl, cell_alloc(tbl, rp, c), ln, p, pos));
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}
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static void
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row(struct tbl_node *tbl, int ln, const char *p, int *pos)
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{
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	struct tbl_row	*rp;
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row:	/*
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	 * EBNF describing this section:
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	 *
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	 * row		::= row_list [:space:]* [.]?[\n]
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	 * row_list	::= [:space:]* row_elem row_tail
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	 * row_tail	::= [:space:]*[,] row_list |
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	 *                  epsilon
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	 * row_elem	::= [\t\ ]*[:alpha:]+
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	 */
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	rp = mandoc_calloc(1, sizeof(struct tbl_row));
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	if (tbl->last_row) {
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		tbl->last_row->next = rp;
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		tbl->last_row = rp;
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	} else
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		tbl->last_row = tbl->first_row = rp;
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cell:
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	while (isspace((unsigned char)p[*pos]))
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		(*pos)++;
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	/* Safely exit layout context. */
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	if ('.' == p[*pos]) {
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		tbl->part = TBL_PART_DATA;
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		if (NULL == tbl->first_row) 
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			TBL_MSG(tbl, MANDOCERR_TBLNOLAYOUT, ln, *pos);
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		(*pos)++;
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		return;
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	}
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	/* End (and possibly restart) a row. */
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	if (',' == p[*pos]) {
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		(*pos)++;
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		goto row;
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	} else if ('\0' == p[*pos])
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		return;
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	if ( ! cell(tbl, rp, ln, p, pos))
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		return;
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	goto cell;
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	/* NOTREACHED */
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}
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int
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tbl_layout(struct tbl_node *tbl, int ln, const char *p)
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{
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	int		 pos;
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	pos = 0;
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	row(tbl, ln, p, &pos);
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	/* Always succeed. */
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	return(1);
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}
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static struct tbl_cell *
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cell_alloc(struct tbl_node *tbl, struct tbl_row *rp, enum tbl_cellt pos)
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{
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	struct tbl_cell	*p, *pp;
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	struct tbl_head	*h, *hp;
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	p = mandoc_calloc(1, sizeof(struct tbl_cell));
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	if (NULL != (pp = rp->last)) {
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		rp->last->next = p;
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		rp->last = p;
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	} else
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		rp->last = rp->first = p;
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	p->pos = pos;
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	/*
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	 * This is a little bit complicated.  Here we determine the
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	 * header the corresponds to a cell.  We add headers dynamically
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	 * when need be or re-use them, otherwise.  As an example, given
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	 * the following:
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	 *
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	 * 	1  c || l 
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	 * 	2  | c | l
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	 * 	3  l l
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	 * 	3  || c | l |.
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	 *
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	 * We first add the new headers (as there are none) in (1); then
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	 * in (2) we insert the first spanner (as it doesn't match up
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	 * with the header); then we re-use the prior data headers,
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	 * skipping over the spanners; then we re-use everything and add
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	 * a last spanner.  Note that VERT headers are made into DVERT
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	 * ones.
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	 */
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	h = pp ? pp->head->next : tbl->first_head;
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	if (h) {
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		/* Re-use data header. */
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		if (TBL_HEAD_DATA == h->pos && 
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				(TBL_CELL_VERT != p->pos &&
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				 TBL_CELL_DVERT != p->pos)) {
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			p->head = h;
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			return(p);
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		}
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		/* Re-use spanner header. */
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		if (TBL_HEAD_DATA != h->pos && 
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				(TBL_CELL_VERT == p->pos ||
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				 TBL_CELL_DVERT == p->pos)) {
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			head_adjust(p, h);
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			p->head = h;
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			return(p);
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		}
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 | 
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		/* Right-shift headers with a new spanner. */
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		if (TBL_HEAD_DATA == h->pos && 
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				(TBL_CELL_VERT == p->pos ||
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				 TBL_CELL_DVERT == p->pos)) {
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			hp = mandoc_calloc(1, sizeof(struct tbl_head));
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			hp->ident = tbl->opts.cols++;
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			hp->prev = h->prev;
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			if (h->prev)
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				h->prev->next = hp;
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			if (h == tbl->first_head)
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				tbl->first_head = hp;
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			h->prev = hp;
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			hp->next = h;
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			head_adjust(p, hp);
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			p->head = hp;
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			return(p);
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		}
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		if (NULL != (h = h->next)) {
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			head_adjust(p, h);
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			p->head = h;
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			return(p);
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		}
 | 
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 | 
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		/* Fall through to default case... */
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	}
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	hp = mandoc_calloc(1, sizeof(struct tbl_head));
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	hp->ident = tbl->opts.cols++;
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	if (tbl->last_head) {
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		hp->prev = tbl->last_head;
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		tbl->last_head->next = hp;
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		tbl->last_head = hp;
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	} else
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		tbl->last_head = tbl->first_head = hp;
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	head_adjust(p, hp);
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	p->head = hp;
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	return(p);
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}
 | 
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 | 
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static void
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head_adjust(const struct tbl_cell *cell, struct tbl_head *head)
 | 
						|
{
 | 
						|
	if (TBL_CELL_VERT != cell->pos &&
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			TBL_CELL_DVERT != cell->pos) {
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		head->pos = TBL_HEAD_DATA;
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		return;
 | 
						|
	}
 | 
						|
 | 
						|
	if (TBL_CELL_VERT == cell->pos)
 | 
						|
		if (TBL_HEAD_DVERT != head->pos)
 | 
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			head->pos = TBL_HEAD_VERT;
 | 
						|
 | 
						|
	if (TBL_CELL_DVERT == cell->pos)
 | 
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		head->pos = TBL_HEAD_DVERT;
 | 
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}
 | 
						|
 |