version 1.15, 2008/11/28 15:25:49 |
version 1.183, 2013/10/05 22:21:20 |
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/* $Id$ */ |
/* $Id$ */ |
/* |
/* |
* Copyright (c) 2008 Kristaps Dzonsons <kristaps@kth.se> |
* Copyright (c) 2010, 2011, 2012 Kristaps Dzonsons <kristaps@bsd.lv> |
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* Copyright (c) 2010, 2011, 2012, 2013 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 |
* purpose with or without fee is hereby granted, provided that the above |
* above copyright notice and this permission notice appear in all |
* copyright notice and this permission notice appear in all copies. |
* copies. |
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* |
* |
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL |
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHORS DISCLAIM ALL WARRANTIES |
* WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED |
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF |
* WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE |
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR |
* AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL |
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES |
* DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR |
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN |
* PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER |
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF |
* TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR |
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. |
* PERFORMANCE OF THIS SOFTWARE. |
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*/ |
*/ |
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#ifdef HAVE_CONFIG_H |
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#include "config.h" |
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#endif |
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#include <assert.h> |
#include <assert.h> |
#include <ctype.h> |
#include <ctype.h> |
#include <err.h> |
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#include <stdarg.h> |
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#include <stdlib.h> |
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#include <stdio.h> |
#include <stdio.h> |
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#include <stdlib.h> |
#include <string.h> |
#include <string.h> |
#include <time.h> |
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#include "libmdocml.h" |
#include "mandoc.h" |
#include "private.h" |
#include "libroff.h" |
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#include "libmandoc.h" |
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/* FIXME: warn if Pp occurs before/after Sh etc. (see mdoc.samples). */ |
/* Maximum number of nested if-else conditionals. */ |
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#define RSTACK_MAX 128 |
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/* FIXME: warn about "X section only" macros. */ |
/* Maximum number of string expansions per line, to break infinite loops. */ |
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#define EXPAND_LIMIT 1000 |
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/* FIXME: warn about empty lists. */ |
enum rofft { |
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ROFF_ad, |
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ROFF_am, |
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ROFF_ami, |
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ROFF_am1, |
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ROFF_cc, |
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ROFF_de, |
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ROFF_dei, |
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ROFF_de1, |
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ROFF_ds, |
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ROFF_el, |
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ROFF_hy, |
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ROFF_ie, |
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ROFF_if, |
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ROFF_ig, |
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ROFF_it, |
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ROFF_ne, |
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ROFF_nh, |
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ROFF_nr, |
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ROFF_ns, |
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ROFF_ps, |
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ROFF_rm, |
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ROFF_so, |
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ROFF_ta, |
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ROFF_tr, |
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ROFF_Dd, |
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ROFF_TH, |
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ROFF_TS, |
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ROFF_TE, |
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ROFF_T_, |
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ROFF_EQ, |
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ROFF_EN, |
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ROFF_cblock, |
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ROFF_ccond, |
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ROFF_USERDEF, |
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ROFF_MAX |
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}; |
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/* FIXME: ; : } ) (etc.) after text macros? */ |
enum roffrule { |
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ROFFRULE_DENY, |
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ROFFRULE_ALLOW |
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}; |
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/* FIXME: NAME section needs specific elements. */ |
/* |
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* An incredibly-simple string buffer. |
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*/ |
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struct roffstr { |
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char *p; /* nil-terminated buffer */ |
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size_t sz; /* saved strlen(p) */ |
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}; |
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#define ROFF_MAXARG 32 |
/* |
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* A key-value roffstr pair as part of a singly-linked list. |
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*/ |
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struct roffkv { |
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struct roffstr key; |
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struct roffstr val; |
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struct roffkv *next; /* next in list */ |
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}; |
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enum roffd { |
/* |
ROFF_ENTER = 0, |
* A single number register as part of a singly-linked list. |
ROFF_EXIT |
*/ |
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struct roffreg { |
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struct roffstr key; |
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int val; |
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struct roffreg *next; |
}; |
}; |
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enum rofftype { |
struct roff { |
ROFF_COMMENT, |
enum mparset parsetype; /* requested parse type */ |
ROFF_TEXT, |
struct mparse *parse; /* parse point */ |
ROFF_LAYOUT, |
struct roffnode *last; /* leaf of stack */ |
ROFF_SPECIAL |
enum roffrule rstack[RSTACK_MAX]; /* stack of !`ie' rules */ |
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char control; /* control character */ |
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int rstackpos; /* position in rstack */ |
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struct roffreg *regtab; /* number registers */ |
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struct roffkv *strtab; /* user-defined strings & macros */ |
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struct roffkv *xmbtab; /* multi-byte trans table (`tr') */ |
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struct roffstr *xtab; /* single-byte trans table (`tr') */ |
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const char *current_string; /* value of last called user macro */ |
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struct tbl_node *first_tbl; /* first table parsed */ |
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struct tbl_node *last_tbl; /* last table parsed */ |
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struct tbl_node *tbl; /* current table being parsed */ |
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struct eqn_node *last_eqn; /* last equation parsed */ |
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struct eqn_node *first_eqn; /* first equation parsed */ |
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struct eqn_node *eqn; /* current equation being parsed */ |
}; |
}; |
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#define ROFFCALL_ARGS \ |
struct roffnode { |
int tok, struct rofftree *tree, \ |
enum rofft tok; /* type of node */ |
const char *argv[], enum roffd type |
struct roffnode *parent; /* up one in stack */ |
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int line; /* parse line */ |
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int col; /* parse col */ |
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char *name; /* node name, e.g. macro name */ |
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char *end; /* end-rules: custom token */ |
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int endspan; /* end-rules: next-line or infty */ |
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enum roffrule rule; /* current evaluation rule */ |
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}; |
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struct rofftree; |
#define ROFF_ARGS struct roff *r, /* parse ctx */ \ |
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enum rofft tok, /* tok of macro */ \ |
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char **bufp, /* input buffer */ \ |
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size_t *szp, /* size of input buffer */ \ |
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int ln, /* parse line */ \ |
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int ppos, /* original pos in buffer */ \ |
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int pos, /* current pos in buffer */ \ |
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int *offs /* reset offset of buffer data */ |
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struct rofftok { |
typedef enum rofferr (*roffproc)(ROFF_ARGS); |
int (*cb)(ROFFCALL_ARGS); /* Callback. */ |
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const int *args; /* Args (or NULL). */ |
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const int *parents; |
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const int *children; |
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int ctx; |
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enum rofftype type; /* Type of macro. */ |
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int flags; |
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#define ROFF_PARSED (1 << 0) /* "Parsed". */ |
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#define ROFF_CALLABLE (1 << 1) /* "Callable". */ |
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#define ROFF_QUOTES (1 << 2) /* Quoted args. */ |
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#define ROFF_SHALLOW (1 << 3) /* Nesting block. */ |
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}; |
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struct roffarg { |
struct roffmac { |
int flags; |
const char *name; /* macro name */ |
#define ROFF_VALUE (1 << 0) /* Has a value. */ |
roffproc proc; /* process new macro */ |
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roffproc text; /* process as child text of macro */ |
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roffproc sub; /* process as child of macro */ |
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int flags; |
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#define ROFFMAC_STRUCT (1 << 0) /* always interpret */ |
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struct roffmac *next; |
}; |
}; |
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struct roffnode { |
struct predef { |
int tok; /* Token id. */ |
const char *name; /* predefined input name */ |
struct roffnode *parent; /* Parent (or NULL). */ |
const char *str; /* replacement symbol */ |
}; |
}; |
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struct rofftree { |
#define PREDEF(__name, __str) \ |
struct roffnode *last; /* Last parsed node. */ |
{ (__name), (__str) }, |
char *cur; |
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time_t date; /* `Dd' results. */ |
static enum rofft roffhash_find(const char *, size_t); |
char os[64]; /* `Os' results. */ |
static void roffhash_init(void); |
char title[64]; /* `Dt' results. */ |
static void roffnode_cleanscope(struct roff *); |
char section[64]; /* `Dt' results. */ |
static void roffnode_pop(struct roff *); |
char volume[64]; /* `Dt' results. */ |
static void roffnode_push(struct roff *, enum rofft, |
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const char *, int, int); |
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static enum rofferr roff_block(ROFF_ARGS); |
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static enum rofferr roff_block_text(ROFF_ARGS); |
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static enum rofferr roff_block_sub(ROFF_ARGS); |
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static enum rofferr roff_cblock(ROFF_ARGS); |
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static enum rofferr roff_cc(ROFF_ARGS); |
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static enum rofferr roff_ccond(ROFF_ARGS); |
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static enum rofferr roff_cond(ROFF_ARGS); |
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static enum rofferr roff_cond_text(ROFF_ARGS); |
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static enum rofferr roff_cond_sub(ROFF_ARGS); |
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static enum rofferr roff_ds(ROFF_ARGS); |
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static enum roffrule roff_evalcond(const char *, int *); |
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static void roff_free1(struct roff *); |
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static void roff_freereg(struct roffreg *); |
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static void roff_freestr(struct roffkv *); |
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static char *roff_getname(struct roff *, char **, int, int); |
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static int roff_getregn(const struct roff *, |
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const char *, size_t); |
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static const char *roff_getstrn(const struct roff *, |
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const char *, size_t); |
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static enum rofferr roff_it(ROFF_ARGS); |
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static enum rofferr roff_line_ignore(ROFF_ARGS); |
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static enum rofferr roff_nr(ROFF_ARGS); |
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static void roff_openeqn(struct roff *, const char *, |
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int, int, const char *); |
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static enum rofft roff_parse(struct roff *, const char *, int *); |
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static enum rofferr roff_parsetext(char **, size_t *, int, int *); |
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static enum rofferr roff_res(struct roff *, |
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char **, size_t *, int, int); |
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static enum rofferr roff_rm(ROFF_ARGS); |
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static void roff_setstr(struct roff *, |
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const char *, const char *, int); |
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static void roff_setstrn(struct roffkv **, const char *, |
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size_t, const char *, size_t, int); |
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static enum rofferr roff_so(ROFF_ARGS); |
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static enum rofferr roff_tr(ROFF_ARGS); |
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static enum rofferr roff_Dd(ROFF_ARGS); |
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static enum rofferr roff_TH(ROFF_ARGS); |
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static enum rofferr roff_TE(ROFF_ARGS); |
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static enum rofferr roff_TS(ROFF_ARGS); |
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static enum rofferr roff_EQ(ROFF_ARGS); |
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static enum rofferr roff_EN(ROFF_ARGS); |
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static enum rofferr roff_T_(ROFF_ARGS); |
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static enum rofferr roff_userdef(ROFF_ARGS); |
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int state; |
/* See roffhash_find() */ |
#define ROFF_PRELUDE (1 << 1) /* In roff prelude. */ |
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#define ROFF_PRELUDE_Os (1 << 2) /* `Os' is parsed. */ |
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#define ROFF_PRELUDE_Dt (1 << 3) /* `Dt' is parsed. */ |
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#define ROFF_PRELUDE_Dd (1 << 4) /* `Dd' is parsed. */ |
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#define ROFF_BODY (1 << 5) /* In roff body. */ |
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struct roffcb cb; |
#define ASCII_HI 126 |
void *arg; |
#define ASCII_LO 33 |
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#define HASHWIDTH (ASCII_HI - ASCII_LO + 1) |
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static struct roffmac *hash[HASHWIDTH]; |
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static struct roffmac roffs[ROFF_MAX] = { |
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{ "ad", roff_line_ignore, NULL, NULL, 0, NULL }, |
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{ "am", roff_block, roff_block_text, roff_block_sub, 0, NULL }, |
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{ "ami", roff_block, roff_block_text, roff_block_sub, 0, NULL }, |
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{ "am1", roff_block, roff_block_text, roff_block_sub, 0, NULL }, |
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{ "cc", roff_cc, NULL, NULL, 0, NULL }, |
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{ "de", roff_block, roff_block_text, roff_block_sub, 0, NULL }, |
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{ "dei", roff_block, roff_block_text, roff_block_sub, 0, NULL }, |
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{ "de1", roff_block, roff_block_text, roff_block_sub, 0, NULL }, |
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{ "ds", roff_ds, NULL, NULL, 0, NULL }, |
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{ "el", roff_cond, roff_cond_text, roff_cond_sub, ROFFMAC_STRUCT, NULL }, |
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{ "hy", roff_line_ignore, NULL, NULL, 0, NULL }, |
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{ "ie", roff_cond, roff_cond_text, roff_cond_sub, ROFFMAC_STRUCT, NULL }, |
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{ "if", roff_cond, roff_cond_text, roff_cond_sub, ROFFMAC_STRUCT, NULL }, |
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{ "ig", roff_block, roff_block_text, roff_block_sub, 0, NULL }, |
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{ "it", roff_it, NULL, NULL, 0, NULL }, |
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{ "ne", roff_line_ignore, NULL, NULL, 0, NULL }, |
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{ "nh", roff_line_ignore, NULL, NULL, 0, NULL }, |
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{ "nr", roff_nr, NULL, NULL, 0, NULL }, |
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{ "ns", roff_line_ignore, NULL, NULL, 0, NULL }, |
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{ "ps", roff_line_ignore, NULL, NULL, 0, NULL }, |
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{ "rm", roff_rm, NULL, NULL, 0, NULL }, |
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{ "so", roff_so, NULL, NULL, 0, NULL }, |
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{ "ta", roff_line_ignore, NULL, NULL, 0, NULL }, |
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{ "tr", roff_tr, NULL, NULL, 0, NULL }, |
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{ "Dd", roff_Dd, NULL, NULL, 0, NULL }, |
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{ "TH", roff_TH, NULL, NULL, 0, NULL }, |
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{ "TS", roff_TS, NULL, NULL, 0, NULL }, |
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{ "TE", roff_TE, NULL, NULL, 0, NULL }, |
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{ "T&", roff_T_, NULL, NULL, 0, NULL }, |
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{ "EQ", roff_EQ, NULL, NULL, 0, NULL }, |
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{ "EN", roff_EN, NULL, NULL, 0, NULL }, |
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{ ".", roff_cblock, NULL, NULL, 0, NULL }, |
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{ "\\}", roff_ccond, NULL, NULL, 0, NULL }, |
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{ NULL, roff_userdef, NULL, NULL, 0, NULL }, |
}; |
}; |
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static int roff_Dd(ROFFCALL_ARGS); |
const char *const __mdoc_reserved[] = { |
static int roff_Dt(ROFFCALL_ARGS); |
"Ac", "Ad", "An", "Ao", "Ap", "Aq", "Ar", "At", |
static int roff_Os(ROFFCALL_ARGS); |
"Bc", "Bd", "Bf", "Bk", "Bl", "Bo", "Bq", |
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"Brc", "Bro", "Brq", "Bsx", "Bt", "Bx", |
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"Cd", "Cm", "Db", "Dc", "Dd", "Dl", "Do", "Dq", |
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"Ds", "Dt", "Dv", "Dx", "D1", |
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"Ec", "Ed", "Ef", "Ek", "El", "Em", "em", |
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"En", "Eo", "Eq", "Er", "Es", "Ev", "Ex", |
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"Fa", "Fc", "Fd", "Fl", "Fn", "Fo", "Fr", "Ft", "Fx", |
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"Hf", "Ic", "In", "It", "Lb", "Li", "Lk", "Lp", "LP", |
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"Me", "Ms", "Mt", "Nd", "Nm", "No", "Ns", "Nx", |
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"Oc", "Oo", "Op", "Os", "Ot", "Ox", |
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"Pa", "Pc", "Pf", "Po", "Pp", "PP", "pp", "Pq", |
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"Qc", "Ql", "Qo", "Qq", "Or", "Rd", "Re", "Rs", "Rv", |
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"Sc", "Sf", "Sh", "SH", "Sm", "So", "Sq", |
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"Ss", "St", "Sx", "Sy", |
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"Ta", "Tn", "Ud", "Ux", "Va", "Vt", "Xc", "Xo", "Xr", |
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"%A", "%B", "%D", "%I", "%J", "%N", "%O", |
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"%P", "%Q", "%R", "%T", "%U", "%V", |
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NULL |
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}; |
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static int roff_layout(ROFFCALL_ARGS); |
const char *const __man_reserved[] = { |
static int roff_text(ROFFCALL_ARGS); |
"AT", "B", "BI", "BR", "BT", "DE", "DS", "DT", |
static int roff_comment(ROFFCALL_ARGS); |
"EE", "EN", "EQ", "EX", "HF", "HP", "I", "IB", "IP", "IR", |
static int roff_close(ROFFCALL_ARGS); |
"LP", "ME", "MT", "OP", "P", "PD", "PP", "PT", |
static int roff_special(ROFFCALL_ARGS); |
"R", "RB", "RE", "RI", "RS", "SB", "SH", "SM", "SS", "SY", |
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"TE", "TH", "TP", "TQ", "TS", "T&", "UC", "UE", "UR", "YS", |
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NULL |
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}; |
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static struct roffnode *roffnode_new(int, struct rofftree *); |
/* Array of injected predefined strings. */ |
static void roffnode_free(struct rofftree *); |
#define PREDEFS_MAX 38 |
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static const struct predef predefs[PREDEFS_MAX] = { |
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#include "predefs.in" |
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}; |
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static void roff_warn(const struct rofftree *, |
/* See roffhash_find() */ |
const char *, char *, ...); |
#define ROFF_HASH(p) (p[0] - ASCII_LO) |
static void roff_err(const struct rofftree *, |
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const char *, char *, ...); |
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static int roffscan(int, const int *); |
static int roffit_lines; /* number of lines to delay */ |
static int rofffindtok(const char *); |
static char *roffit_macro; /* nil-terminated macro line */ |
static int rofffindarg(const char *); |
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static int rofffindcallable(const char *); |
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static int roffargs(const struct rofftree *, |
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int, char *, char **); |
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static int roffargok(int, int); |
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static int roffnextopt(const struct rofftree *, |
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int, const char ***, char **); |
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static int roffparse(struct rofftree *, char *, size_t); |
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static int textparse(const struct rofftree *, |
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const char *, size_t); |
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static void |
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roffhash_init(void) |
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{ |
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struct roffmac *n; |
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int buc, i; |
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static const int roffarg_An[] = { ROFF_Split, ROFF_Nosplit, |
for (i = 0; i < (int)ROFF_USERDEF; i++) { |
ROFF_ARGMAX }; |
assert(roffs[i].name[0] >= ASCII_LO); |
static const int roffarg_Bd[] = { ROFF_Ragged, ROFF_Unfilled, |
assert(roffs[i].name[0] <= ASCII_HI); |
ROFF_Literal, ROFF_File, ROFF_Offset, ROFF_Filled, |
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ROFF_Compact, ROFF_ARGMAX }; |
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static const int roffarg_Bk[] = { ROFF_Words, ROFF_ARGMAX }; |
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static const int roffarg_Ex[] = { ROFF_Std, ROFF_ARGMAX }; |
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static const int roffarg_Rv[] = { ROFF_Std, ROFF_ARGMAX }; |
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static const int roffarg_Bl[] = { ROFF_Bullet, ROFF_Dash, |
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ROFF_Hyphen, ROFF_Item, ROFF_Enum, ROFF_Tag, ROFF_Diag, |
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ROFF_Hang, ROFF_Ohang, ROFF_Inset, ROFF_Column, ROFF_Offset, |
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ROFF_Width, ROFF_Compact, ROFF_ARGMAX }; |
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static const int roffarg_St[] = { |
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ROFF_p1003_1_88, ROFF_p1003_1_90, ROFF_p1003_1_96, |
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ROFF_p1003_1_2001, ROFF_p1003_1_2004, ROFF_p1003_1, |
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ROFF_p1003_1b, ROFF_p1003_1b_93, ROFF_p1003_1c_95, |
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ROFF_p1003_1g_2000, ROFF_p1003_2_92, ROFF_p1387_2_95, |
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ROFF_p1003_2, ROFF_p1387_2, ROFF_isoC_90, ROFF_isoC_amd1, |
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ROFF_isoC_tcor1, ROFF_isoC_tcor2, ROFF_isoC_99, ROFF_ansiC, |
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ROFF_ansiC_89, ROFF_ansiC_99, ROFF_ieee754, ROFF_iso8802_3, |
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ROFF_xpg3, ROFF_xpg4, ROFF_xpg4_2, ROFF_xpg4_3, ROFF_xbd5, |
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ROFF_xcu5, ROFF_xsh5, ROFF_xns5, ROFF_xns5_2d2_0, |
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ROFF_xcurses4_2, ROFF_susv2, ROFF_susv3, ROFF_svid4, |
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ROFF_ARGMAX }; |
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static const int roffchild_Bl[] = { ROFF_It, ROFF_El, ROFF_MAX }; |
buc = ROFF_HASH(roffs[i].name); |
static const int roffchild_Fo[] = { ROFF_Fa, ROFF_Fc, ROFF_MAX }; |
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static const int roffchild_Oo[] = { ROFF_Op, ROFF_Oc, ROFF_MAX }; |
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static const int roffchild_Rs[] = { ROFF_Re, ROFF__A, ROFF__B, |
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ROFF__D, ROFF__I, ROFF__J, ROFF__N, ROFF__O, ROFF__P, |
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ROFF__R, ROFF__T, ROFF__V, ROFF_MAX }; |
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static const int roffparent_El[] = { ROFF_Bl, ROFF_It, ROFF_MAX }; |
if (NULL != (n = hash[buc])) { |
static const int roffparent_Fc[] = { ROFF_Fo, ROFF_Fa, ROFF_MAX }; |
for ( ; n->next; n = n->next) |
static const int roffparent_Oc[] = { ROFF_Oo, ROFF_Oc, ROFF_MAX }; |
/* Do nothing. */ ; |
static const int roffparent_It[] = { ROFF_Bl, ROFF_It, ROFF_MAX }; |
n->next = &roffs[i]; |
static const int roffparent_Re[] = { ROFF_Rs, ROFF_MAX }; |
} else |
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hash[buc] = &roffs[i]; |
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} |
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} |
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/* Table of all known tokens. */ |
/* |
static const struct rofftok tokens[ROFF_MAX] = { |
* Look up a roff token by its name. Returns ROFF_MAX if no macro by |
{roff_comment, NULL, NULL, NULL, 0, ROFF_COMMENT, 0 }, /* \" */ |
* the nil-terminated string name could be found. |
{ roff_Dd, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Dd */ |
*/ |
{ roff_Dt, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Dt */ |
static enum rofft |
{ roff_Os, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_QUOTES }, /* Os */ |
roffhash_find(const char *p, size_t s) |
{ roff_layout, NULL, NULL, NULL, ROFF_Sh, ROFF_LAYOUT, ROFF_PARSED }, /* Sh */ |
{ |
{ roff_layout, NULL, NULL, NULL, ROFF_Ss, ROFF_LAYOUT, ROFF_PARSED }, /* Ss */ |
int buc; |
{ roff_text, NULL, NULL, NULL, ROFF_Pp, ROFF_TEXT, 0 }, /* Pp */ |
struct roffmac *n; |
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* D1 */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Dl */ |
|
{ roff_layout, roffarg_Bd, NULL, NULL, 0, ROFF_LAYOUT, 0 }, /* Bd */ |
|
{ roff_close, NULL, NULL, NULL, ROFF_Bd, ROFF_LAYOUT, 0 }, /* Ed */ |
|
{ roff_layout, roffarg_Bl, NULL, roffchild_Bl, 0, ROFF_LAYOUT, 0 }, /* Bl */ |
|
{ roff_close, NULL, roffparent_El, NULL, ROFF_Bl, ROFF_LAYOUT, 0 }, /* El */ |
|
{ roff_layout, NULL, roffparent_It, NULL, ROFF_It, ROFF_LAYOUT, ROFF_SHALLOW }, /* It */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ad */ |
|
{ roff_text, roffarg_An, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* An */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ar */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_QUOTES }, /* Cd */ /* XXX man.4 only */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Cm */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Dv */ /* XXX needs arg */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Er */ /* XXX needs arg */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ev */ /* XXX needs arg */ |
|
{ roff_text, roffarg_Ex, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Ex */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Fa */ /* XXX needs arg */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Fd */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Fl */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Fn */ /* XXX needs arg */ /* FIXME */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Ft */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ic */ /* XXX needs arg */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* In */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Li */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_QUOTES }, /* Nd */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Nm */ /* FIXME */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Op */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Ot */ /* XXX deprecated */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Pa */ |
|
{ roff_text, roffarg_Rv, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Rv */ |
|
{ roff_text, roffarg_St, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* St */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Va */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Vt */ /* XXX needs arg */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Xr */ /* XXX needs arg */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* %A */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE}, /* %B */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* %D */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE}, /* %I */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE}, /* %J */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* %N */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* %O */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* %P */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* %R */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* %T */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* %V */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ac */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ao */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Aq */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* At */ /* XXX at most 2 args */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Bc */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Bf */ /* FIXME */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Bo */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Bq */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Bsx */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Bx */ |
|
{roff_special, NULL, NULL, NULL, 0, ROFF_SPECIAL, 0 }, /* Db */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Dc */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Do */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Dq */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ec */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, 0 }, /* Ef */ /* FIXME */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Em */ /* XXX needs arg */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Eo */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Fx */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Ms */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* No */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ns */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Nx */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Ox */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Pc */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Pf */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_LAYOUT, ROFF_PARSED | ROFF_CALLABLE }, /* Po */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Pq */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Qc */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Ql */ |
|
{ roff_layout, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Qo */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Qq */ |
|
{ roff_close, NULL, roffparent_Re, NULL, ROFF_Rs, ROFF_LAYOUT, 0 }, /* Re */ |
|
{ roff_layout, NULL, NULL, roffchild_Rs, 0, ROFF_LAYOUT, 0 }, /* Rs */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Sc */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* So */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Sq */ |
|
{roff_special, NULL, NULL, NULL, 0, ROFF_SPECIAL, 0 }, /* Sm */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Sx */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Sy */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Tn */ |
|
{ roff_text, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED }, /* Ux */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Xc */ |
|
{ NULL, NULL, NULL, NULL, 0, ROFF_TEXT, ROFF_PARSED | ROFF_CALLABLE }, /* Xo */ |
|
{ roff_layout, NULL, NULL, roffchild_Fo, 0, ROFF_LAYOUT, 0 }, /* Fo */ |
|
{ roff_close, NULL, roffparent_Fc, NULL, ROFF_Fo, ROFF_LAYOUT, 0 }, /* Fc */ |
|
{ roff_layout, NULL, NULL, roffchild_Oo, 0, ROFF_LAYOUT, 0 }, /* Oo */ |
|
{ roff_close, NULL, roffparent_Oc, NULL, ROFF_Oo, ROFF_LAYOUT, 0 }, /* Oc */ |
|
{ roff_layout, roffarg_Bk, NULL, NULL, 0, ROFF_LAYOUT, 0 }, /* Bk */ |
|
{ roff_close, NULL, NULL, NULL, ROFF_Bk, ROFF_LAYOUT, 0 }, /* Ek */ |
|
}; |
|
|
|
/* Table of all known token arguments. */ |
/* |
static const int tokenargs[ROFF_ARGMAX] = { |
* libroff has an extremely simple hashtable, for the time |
0, 0, 0, 0, |
* being, which simply keys on the first character, which must |
0, ROFF_VALUE, ROFF_VALUE, 0, |
* be printable, then walks a chain. It works well enough until |
0, 0, 0, 0, |
* optimised. |
0, 0, 0, 0, |
*/ |
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
0, 0, 0, 0, |
|
}; |
|
|
|
const char *const toknamesp[ROFF_MAX] = { |
if (p[0] < ASCII_LO || p[0] > ASCII_HI) |
"\\\"", "Dd", "Dt", "Os", |
return(ROFF_MAX); |
"Sh", "Ss", "Pp", "D1", |
|
"Dl", "Bd", "Ed", "Bl", |
|
"El", "It", "Ad", "An", |
|
"Ar", "Cd", "Cm", "Dv", |
|
"Er", "Ev", "Ex", "Fa", |
|
"Fd", "Fl", "Fn", "Ft", |
|
"Ic", "In", "Li", "Nd", |
|
"Nm", "Op", "Ot", "Pa", |
|
"Rv", "St", "Va", "Vt", |
|
"Xr", "\%A", "\%B", "\%D", |
|
"\%I", "\%J", "\%N", "\%O", |
|
"\%P", "\%R", "\%T", "\%V", |
|
"Ac", "Ao", "Aq", "At", |
|
"Bc", "Bf", "Bo", "Bq", |
|
"Bsx", "Bx", "Db", "Dc", |
|
"Do", "Dq", "Ec", "Ef", |
|
"Em", "Eo", "Fx", "Ms", |
|
"No", "Ns", "Nx", "Ox", |
|
"Pc", "Pf", "Po", "Pq", |
|
"Qc", "Ql", "Qo", "Qq", |
|
"Re", "Rs", "Sc", "So", |
|
"Sq", "Sm", "Sx", "Sy", |
|
"Tn", "Ux", "Xc", "Xo", |
|
"Fo", "Fc", "Oo", "Oc", |
|
"Bk", "Ek", |
|
}; |
|
|
|
const char *const tokargnamesp[ROFF_ARGMAX] = { |
buc = ROFF_HASH(p); |
"split", "nosplit", "ragged", |
|
"unfilled", "literal", "file", |
|
"offset", "bullet", "dash", |
|
"hyphen", "item", "enum", |
|
"tag", "diag", "hang", |
|
"ohang", "inset", "column", |
|
"width", "compact", "std", |
|
"p1003.1-88", "p1003.1-90", "p1003.1-96", |
|
"p1003.1-2001", "p1003.1-2004", "p1003.1", |
|
"p1003.1b", "p1003.1b-93", "p1003.1c-95", |
|
"p1003.1g-2000", "p1003.2-92", "p1387.2-95", |
|
"p1003.2", "p1387.2", "isoC-90", |
|
"isoC-amd1", "isoC-tcor1", "isoC-tcor2", |
|
"isoC-99", "ansiC", "ansiC-89", |
|
"ansiC-99", "ieee754", "iso8802-3", |
|
"xpg3", "xpg4", "xpg4.2", |
|
"xpg4.3", "xbd5", "xcu5", |
|
"xsh5", "xns5", "xns5.2d2.0", |
|
"xcurses4.2", "susv2", "susv3", |
|
"svid4", "filled", "words", |
|
}; |
|
|
|
const char *const *toknames = toknamesp; |
if (NULL == (n = hash[buc])) |
const char *const *tokargnames = tokargnamesp; |
return(ROFF_MAX); |
|
for ( ; n; n = n->next) |
|
if (0 == strncmp(n->name, p, s) && '\0' == n->name[(int)s]) |
|
return((enum rofft)(n - roffs)); |
|
|
|
return(ROFF_MAX); |
|
} |
|
|
int |
|
roff_free(struct rofftree *tree, int flush) |
/* |
|
* Pop the current node off of the stack of roff instructions currently |
|
* pending. |
|
*/ |
|
static void |
|
roffnode_pop(struct roff *r) |
{ |
{ |
int error; |
struct roffnode *p; |
struct roffnode *n; |
|
|
|
error = 0; |
assert(r->last); |
|
p = r->last; |
|
|
for (n = tree->last; n->parent; n = n->parent) |
r->last = r->last->parent; |
if (tokens[n->tok].ctx == 0) { |
free(p->name); |
roff_warn(tree, NULL, "closing explicit scope " |
free(p->end); |
"of `%s'", toknames[n->tok]); |
free(p); |
error = 1; |
} |
} |
|
|
|
if (0 == error && (ROFF_PRELUDE & tree->state)) { |
|
roff_warn(tree, NULL, "prelude never finished"); |
|
error = 1; |
|
} |
|
|
|
while (tree->last) |
/* |
roffnode_free(tree); |
* Push a roff node onto the instruction stack. This must later be |
|
* removed with roffnode_pop(). |
|
*/ |
|
static void |
|
roffnode_push(struct roff *r, enum rofft tok, const char *name, |
|
int line, int col) |
|
{ |
|
struct roffnode *p; |
|
|
free(tree); |
p = mandoc_calloc(1, sizeof(struct roffnode)); |
return(error ? 0 : 1); |
p->tok = tok; |
|
if (name) |
|
p->name = mandoc_strdup(name); |
|
p->parent = r->last; |
|
p->line = line; |
|
p->col = col; |
|
p->rule = p->parent ? p->parent->rule : ROFFRULE_DENY; |
|
|
|
r->last = p; |
} |
} |
|
|
|
|
struct rofftree * |
static void |
roff_alloc(const struct roffcb *cb, void *args) |
roff_free1(struct roff *r) |
{ |
{ |
struct rofftree *tree; |
struct tbl_node *tbl; |
|
struct eqn_node *e; |
|
int i; |
|
|
if (NULL == (tree = calloc(1, sizeof(struct rofftree)))) |
while (NULL != (tbl = r->first_tbl)) { |
err(1, "calloc"); |
r->first_tbl = tbl->next; |
|
tbl_free(tbl); |
|
} |
|
|
tree->state = ROFF_PRELUDE; |
r->first_tbl = r->last_tbl = r->tbl = NULL; |
tree->arg = args; |
|
|
|
(void)memcpy(&tree->cb, cb, sizeof(struct roffcb)); |
while (NULL != (e = r->first_eqn)) { |
|
r->first_eqn = e->next; |
|
eqn_free(e); |
|
} |
|
|
return(tree); |
r->first_eqn = r->last_eqn = r->eqn = NULL; |
} |
|
|
|
|
while (r->last) |
|
roffnode_pop(r); |
|
|
int |
roff_freestr(r->strtab); |
roff_engine(struct rofftree *tree, char *buf, size_t sz) |
roff_freestr(r->xmbtab); |
|
|
|
r->strtab = r->xmbtab = NULL; |
|
|
|
roff_freereg(r->regtab); |
|
|
|
r->regtab = NULL; |
|
|
|
if (r->xtab) |
|
for (i = 0; i < 128; i++) |
|
free(r->xtab[i].p); |
|
|
|
free(r->xtab); |
|
r->xtab = NULL; |
|
} |
|
|
|
void |
|
roff_reset(struct roff *r) |
{ |
{ |
|
int i; |
|
|
tree->cur = NULL; |
roff_free1(r); |
|
|
if (0 == sz) { |
r->control = 0; |
roff_warn(tree, buf, "blank line"); |
|
return(0); |
|
} else if ('.' != *buf) |
|
return(textparse(tree, buf, sz)); |
|
|
|
return(roffparse(tree, buf, sz)); |
for (i = 0; i < PREDEFS_MAX; i++) |
|
roff_setstr(r, predefs[i].name, predefs[i].str, 0); |
} |
} |
|
|
|
|
static int |
void |
textparse(const struct rofftree *tree, const char *buf, size_t sz) |
roff_free(struct roff *r) |
{ |
{ |
|
|
/* Print text. */ |
roff_free1(r); |
return(1); |
free(r); |
} |
} |
|
|
|
|
static int |
struct roff * |
roffargs(const struct rofftree *tree, |
roff_alloc(enum mparset type, struct mparse *parse) |
int tok, char *buf, char **argv) |
|
{ |
{ |
|
struct roff *r; |
int i; |
int i; |
char *p; |
|
|
|
assert(tok >= 0 && tok < ROFF_MAX); |
r = mandoc_calloc(1, sizeof(struct roff)); |
assert('.' == *buf); |
r->parsetype = type; |
|
r->parse = parse; |
|
r->rstackpos = -1; |
|
|
|
roffhash_init(); |
|
|
p = buf; |
for (i = 0; i < PREDEFS_MAX; i++) |
|
roff_setstr(r, predefs[i].name, predefs[i].str, 0); |
|
|
/* LINTED */ |
return(r); |
for (i = 0; *buf && i < ROFF_MAXARG; i++) { |
} |
if ('\"' == *buf) { |
|
argv[i] = ++buf; |
/* |
while (*buf && '\"' != *buf) |
* In the current line, expand user-defined strings ("\*") |
buf++; |
* and references to number registers ("\n"). |
if (0 == *buf) { |
* Also check the syntax of other escape sequences. |
roff_err(tree, argv[i], "unclosed " |
*/ |
"quote in argument " |
static enum rofferr |
"list for `%s'", |
roff_res(struct roff *r, char **bufp, size_t *szp, int ln, int pos) |
toknames[tok]); |
{ |
return(0); |
char ubuf[12]; /* buffer to print the number */ |
} |
const char *stesc; /* start of an escape sequence ('\\') */ |
} else { |
const char *stnam; /* start of the name, after "[(*" */ |
argv[i] = buf++; |
const char *cp; /* end of the name, e.g. before ']' */ |
while (*buf && ! isspace(*buf)) |
const char *res; /* the string to be substituted */ |
buf++; |
char *nbuf; /* new buffer to copy bufp to */ |
if (0 == *buf) |
size_t nsz; /* size of the new buffer */ |
|
size_t maxl; /* expected length of the escape name */ |
|
size_t naml; /* actual length of the escape name */ |
|
int expand_count; /* to avoid infinite loops */ |
|
|
|
expand_count = 0; |
|
|
|
again: |
|
cp = *bufp + pos; |
|
while (NULL != (cp = strchr(cp, '\\'))) { |
|
stesc = cp++; |
|
|
|
/* |
|
* The second character must be an asterisk or an n. |
|
* If it isn't, skip it anyway: It is escaped, |
|
* so it can't start another escape sequence. |
|
*/ |
|
|
|
if ('\0' == *cp) |
|
return(ROFF_CONT); |
|
|
|
switch (*cp) { |
|
case ('*'): |
|
res = NULL; |
|
break; |
|
case ('n'): |
|
res = ubuf; |
|
break; |
|
default: |
|
if (ESCAPE_ERROR != mandoc_escape(&cp, NULL, NULL)) |
continue; |
continue; |
|
mandoc_msg |
|
(MANDOCERR_BADESCAPE, r->parse, |
|
ln, (int)(stesc - *bufp), NULL); |
|
return(ROFF_CONT); |
} |
} |
*buf++ = 0; |
|
while (*buf && isspace(*buf)) |
|
buf++; |
|
} |
|
|
|
assert(i > 0); |
|
if (ROFF_MAXARG == i && *buf) { |
|
roff_err(tree, p, "too many arguments for `%s'", toknames |
|
[tok]); |
|
return(0); |
|
} |
|
|
|
argv[i] = NULL; |
cp++; |
return(1); |
|
} |
|
|
|
|
/* |
|
* The third character decides the length |
|
* of the name of the string or register. |
|
* Save a pointer to the name. |
|
*/ |
|
|
/* XXX */ |
switch (*cp) { |
static int |
case ('\0'): |
roffscan(int tok, const int *tokv) |
return(ROFF_CONT); |
{ |
case ('('): |
|
cp++; |
|
maxl = 2; |
|
break; |
|
case ('['): |
|
cp++; |
|
maxl = 0; |
|
break; |
|
default: |
|
maxl = 1; |
|
break; |
|
} |
|
stnam = cp; |
|
|
if (NULL == tokv) |
/* Advance to the end of the name. */ |
return(1); |
|
|
|
for ( ; ROFF_MAX != *tokv; tokv++) |
for (naml = 0; 0 == maxl || naml < maxl; naml++, cp++) { |
if (tok == *tokv) |
if ('\0' == *cp) { |
return(1); |
mandoc_msg |
|
(MANDOCERR_BADESCAPE, |
|
r->parse, ln, |
|
(int)(stesc - *bufp), NULL); |
|
return(ROFF_CONT); |
|
} |
|
if (0 == maxl && ']' == *cp) |
|
break; |
|
} |
|
|
return(0); |
/* |
} |
* Retrieve the replacement string; if it is |
|
* undefined, resume searching for escapes. |
|
*/ |
|
|
|
if (NULL == res) |
|
res = roff_getstrn(r, stnam, naml); |
|
else |
|
snprintf(ubuf, sizeof(ubuf), "%d", |
|
roff_getregn(r, stnam, naml)); |
|
|
static int |
if (NULL == res) { |
roffparse(struct rofftree *tree, char *buf, size_t sz) |
mandoc_msg |
|
(MANDOCERR_BADESCAPE, r->parse, |
|
ln, (int)(stesc - *bufp), NULL); |
|
res = ""; |
|
} |
|
|
|
/* Replace the escape sequence by the string. */ |
|
|
|
pos = stesc - *bufp; |
|
|
|
nsz = *szp + strlen(res) + 1; |
|
nbuf = mandoc_malloc(nsz); |
|
|
|
strlcpy(nbuf, *bufp, (size_t)(stesc - *bufp + 1)); |
|
strlcat(nbuf, res, nsz); |
|
strlcat(nbuf, cp + (maxl ? 0 : 1), nsz); |
|
|
|
free(*bufp); |
|
|
|
*bufp = nbuf; |
|
*szp = nsz; |
|
|
|
if (EXPAND_LIMIT >= ++expand_count) |
|
goto again; |
|
|
|
/* Just leave the string unexpanded. */ |
|
mandoc_msg(MANDOCERR_ROFFLOOP, r->parse, ln, pos, NULL); |
|
return(ROFF_IGN); |
|
} |
|
return(ROFF_CONT); |
|
} |
|
|
|
/* |
|
* Process text streams: |
|
* Convert all breakable hyphens into ASCII_HYPH. |
|
* Decrement and spring input line trap. |
|
*/ |
|
static enum rofferr |
|
roff_parsetext(char **bufp, size_t *szp, int pos, int *offs) |
{ |
{ |
int tok, t; |
size_t sz; |
struct roffnode *n; |
const char *start; |
char *argv[ROFF_MAXARG]; |
char *p; |
const char **argvp; |
int isz; |
|
enum mandoc_esc esc; |
|
|
assert(sz > 0); |
start = p = *bufp + pos; |
|
|
if (ROFF_MAX == (tok = rofffindtok(buf + 1))) { |
while ('\0' != *p) { |
roff_err(tree, buf + 1, "bogus line macro"); |
sz = strcspn(p, "-\\"); |
return(0); |
p += sz; |
} else if (NULL == tokens[tok].cb) { |
|
roff_err(tree, buf + 1, "unsupported macro `%s'", |
|
toknames[tok]); |
|
return(0); |
|
} else if (ROFF_COMMENT == tokens[tok].type) |
|
return(1); |
|
|
|
if ( ! roffargs(tree, tok, buf, argv)) |
|
return(0); |
|
|
|
argvp = (const char **)argv; |
if ('\0' == *p) |
|
break; |
|
|
/* |
if ('\\' == *p) { |
* Prelude macros break some assumptions, so branch now. |
/* Skip over escapes. */ |
*/ |
p++; |
|
esc = mandoc_escape |
if (ROFF_PRELUDE & tree->state) { |
((const char const **)&p, NULL, NULL); |
assert(NULL == tree->last); |
if (ESCAPE_ERROR == esc) |
return((*tokens[tok].cb)(tok, tree, argvp, ROFF_ENTER)); |
break; |
} else |
continue; |
assert(tree->last); |
} else if (p == start) { |
|
p++; |
|
continue; |
|
} |
|
|
assert(ROFF_BODY & tree->state); |
if (isalpha((unsigned char)p[-1]) && |
|
isalpha((unsigned char)p[1])) |
|
*p = ASCII_HYPH; |
|
p++; |
|
} |
|
|
/* |
/* Spring the input line trap. */ |
* First check that our possible parents and parent's possible |
if (1 == roffit_lines) { |
* children are satisfied. |
isz = asprintf(&p, "%s\n.%s", *bufp, roffit_macro); |
|
if (-1 == isz) { |
|
perror(NULL); |
|
exit((int)MANDOCLEVEL_SYSERR); |
|
} |
|
free(*bufp); |
|
*bufp = p; |
|
*szp = isz + 1; |
|
*offs = 0; |
|
free(roffit_macro); |
|
roffit_lines = 0; |
|
return(ROFF_REPARSE); |
|
} else if (1 < roffit_lines) |
|
--roffit_lines; |
|
return(ROFF_CONT); |
|
} |
|
|
|
enum rofferr |
|
roff_parseln(struct roff *r, int ln, char **bufp, |
|
size_t *szp, int pos, int *offs) |
|
{ |
|
enum rofft t; |
|
enum rofferr e; |
|
int ppos, ctl; |
|
|
|
/* |
|
* Run the reserved-word filter only if we have some reserved |
|
* words to fill in. |
*/ |
*/ |
|
|
if ( ! roffscan(tree->last->tok, tokens[tok].parents)) { |
e = roff_res(r, bufp, szp, ln, pos); |
roff_err(tree, *argvp, "`%s' has invalid parent `%s'", |
if (ROFF_IGN == e) |
toknames[tok], |
return(e); |
toknames[tree->last->tok]); |
assert(ROFF_CONT == e); |
return(0); |
|
} |
|
|
|
if ( ! roffscan(tok, tokens[tree->last->tok].children)) { |
ppos = pos; |
roff_err(tree, *argvp, "`%s' is invalid child `%s'", |
ctl = roff_getcontrol(r, *bufp, &pos); |
toknames[tree->last->tok], |
|
toknames[tok]); |
|
return(0); |
|
} |
|
|
|
/* |
/* |
* Branch if we're not a layout token. |
* First, if a scope is open and we're not a macro, pass the |
|
* text through the macro's filter. If a scope isn't open and |
|
* we're not a macro, just let it through. |
|
* Finally, if there's an equation scope open, divert it into it |
|
* no matter our state. |
*/ |
*/ |
|
|
if (ROFF_LAYOUT != tokens[tok].type) |
if (r->last && ! ctl) { |
return((*tokens[tok].cb)(tok, tree, argvp, ROFF_ENTER)); |
t = r->last->tok; |
|
assert(roffs[t].text); |
|
e = (*roffs[t].text) |
|
(r, t, bufp, szp, ln, pos, pos, offs); |
|
assert(ROFF_IGN == e || ROFF_CONT == e); |
|
if (ROFF_CONT != e) |
|
return(e); |
|
} |
|
if (r->eqn) |
|
return(eqn_read(&r->eqn, ln, *bufp, ppos, offs)); |
|
if ( ! ctl) { |
|
if (r->tbl) |
|
return(tbl_read(r->tbl, ln, *bufp, pos)); |
|
return(roff_parsetext(bufp, szp, pos, offs)); |
|
} |
|
|
/* |
/* |
* Check our scope rules. |
* If a scope is open, go to the child handler for that macro, |
|
* as it may want to preprocess before doing anything with it. |
|
* Don't do so if an equation is open. |
*/ |
*/ |
|
|
if (0 == tokens[tok].ctx) |
if (r->last) { |
return((*tokens[tok].cb)(tok, tree, argvp, ROFF_ENTER)); |
t = r->last->tok; |
|
assert(roffs[t].sub); |
|
return((*roffs[t].sub) |
|
(r, t, bufp, szp, |
|
ln, ppos, pos, offs)); |
|
} |
|
|
/* |
/* |
* First consider implicit-end tags, like as follows: |
* Lastly, as we've no scope open, try to look up and execute |
* .Sh SECTION 1 |
* the new macro. If no macro is found, simply return and let |
* .Sh SECTION 2 |
* the compilers handle it. |
* In this, we want to close the scope of the NAME section. If |
|
* there's an intermediary implicit-end tag, such as |
|
* .Sh SECTION 1 |
|
* .Ss Subsection 1 |
|
* .Sh SECTION 2 |
|
* then it must be closed as well. |
|
*/ |
*/ |
|
|
if (tok == tokens[tok].ctx) { |
if (ROFF_MAX == (t = roff_parse(r, *bufp, &pos))) |
/* |
return(ROFF_CONT); |
* First search up to the point where we must close. |
|
* If one doesn't exist, then we can open a new scope. |
|
*/ |
|
|
|
for (n = tree->last; n; n = n->parent) { |
assert(roffs[t].proc); |
assert(0 == tokens[n->tok].ctx || |
return((*roffs[t].proc) |
n->tok == tokens[n->tok].ctx); |
(r, t, bufp, szp, |
if (n->tok == tok) |
ln, ppos, pos, offs)); |
break; |
} |
if (ROFF_SHALLOW & tokens[tok].flags) { |
|
n = NULL; |
|
break; |
|
} |
|
} |
|
|
|
/* |
|
* Create a new scope, as no previous one exists to |
|
* close out. |
|
*/ |
|
|
|
if (NULL == n) |
void |
return((*tokens[tok].cb)(tok, tree, argvp, ROFF_ENTER)); |
roff_endparse(struct roff *r) |
|
{ |
|
|
/* |
if (r->last) |
* Close out all intermediary scoped blocks, then hang |
mandoc_msg(MANDOCERR_SCOPEEXIT, r->parse, |
* the current scope from our predecessor's parent. |
r->last->line, r->last->col, NULL); |
*/ |
|
|
|
do { |
if (r->eqn) { |
t = tree->last->tok; |
mandoc_msg(MANDOCERR_SCOPEEXIT, r->parse, |
if ( ! (*tokens[t].cb)(t, tree, NULL, ROFF_EXIT)) |
r->eqn->eqn.ln, r->eqn->eqn.pos, NULL); |
return(0); |
eqn_end(&r->eqn); |
} while (t != tok); |
} |
|
|
return((*tokens[tok].cb)(tok, tree, argvp, ROFF_ENTER)); |
if (r->tbl) { |
|
mandoc_msg(MANDOCERR_SCOPEEXIT, r->parse, |
|
r->tbl->line, r->tbl->pos, NULL); |
|
tbl_end(&r->tbl); |
} |
} |
|
} |
|
|
|
/* |
|
* Parse a roff node's type from the input buffer. This must be in the |
|
* form of ".foo xxx" in the usual way. |
|
*/ |
|
static enum rofft |
|
roff_parse(struct roff *r, const char *buf, int *pos) |
|
{ |
|
const char *mac; |
|
size_t maclen; |
|
enum rofft t; |
|
|
|
if ('\0' == buf[*pos] || '"' == buf[*pos] || |
|
'\t' == buf[*pos] || ' ' == buf[*pos]) |
|
return(ROFF_MAX); |
|
|
/* |
/* |
* Now consider explicit-end tags, where we want to close back |
* We stop the macro parse at an escape, tab, space, or nil. |
* to a specific tag. Example: |
* However, `\}' is also a valid macro, so make sure we don't |
* .Bl |
* clobber it by seeing the `\' as the end of token. |
* .It Item. |
|
* .El |
|
* In this, the `El' tag closes out the scope of `Bl'. |
|
*/ |
*/ |
|
|
assert(tree->last); |
mac = buf + *pos; |
assert(tok != tokens[tok].ctx && 0 != tokens[tok].ctx); |
maclen = strcspn(mac + 1, " \\\t\0") + 1; |
|
|
/* LINTED */ |
t = (r->current_string = roff_getstrn(r, mac, maclen)) |
do { |
? ROFF_USERDEF : roffhash_find(mac, maclen); |
t = tree->last->tok; |
|
if ( ! (*tokens[t].cb)(t, tree, NULL, ROFF_EXIT)) |
|
return(0); |
|
} while (t != tokens[tok].ctx); |
|
|
|
assert(tree->last); |
*pos += (int)maclen; |
return(1); |
|
} |
|
|
|
|
while (buf[*pos] && ' ' == buf[*pos]) |
|
(*pos)++; |
|
|
static int |
return(t); |
rofffindarg(const char *name) |
} |
|
|
|
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_cblock(ROFF_ARGS) |
{ |
{ |
size_t i; |
|
|
|
/* FIXME: use a table, this is slow but ok for now. */ |
/* |
|
* A block-close `..' should only be invoked as a child of an |
|
* ignore macro, otherwise raise a warning and just ignore it. |
|
*/ |
|
|
/* LINTED */ |
if (NULL == r->last) { |
for (i = 0; i < ROFF_ARGMAX; i++) |
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
/* LINTED */ |
return(ROFF_IGN); |
if (0 == strcmp(name, tokargnames[i])) |
} |
return((int)i); |
|
|
switch (r->last->tok) { |
return(ROFF_ARGMAX); |
case (ROFF_am): |
|
/* FALLTHROUGH */ |
|
case (ROFF_ami): |
|
/* FALLTHROUGH */ |
|
case (ROFF_am1): |
|
/* FALLTHROUGH */ |
|
case (ROFF_de): |
|
/* ROFF_de1 is remapped to ROFF_de in roff_block(). */ |
|
/* FALLTHROUGH */ |
|
case (ROFF_dei): |
|
/* FALLTHROUGH */ |
|
case (ROFF_ig): |
|
break; |
|
default: |
|
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
|
return(ROFF_IGN); |
|
} |
|
|
|
if ((*bufp)[pos]) |
|
mandoc_msg(MANDOCERR_ARGSLOST, r->parse, ln, pos, NULL); |
|
|
|
roffnode_pop(r); |
|
roffnode_cleanscope(r); |
|
return(ROFF_IGN); |
|
|
} |
} |
|
|
|
|
static int |
static void |
rofffindtok(const char *buf) |
roffnode_cleanscope(struct roff *r) |
{ |
{ |
char token[4]; |
|
size_t i; |
|
|
|
for (i = 0; *buf && ! isspace(*buf) && i < 3; i++, buf++) |
while (r->last) { |
token[i] = *buf; |
if (--r->last->endspan != 0) |
|
break; |
|
roffnode_pop(r); |
|
} |
|
} |
|
|
if (i == 3) |
|
return(ROFF_MAX); |
|
|
|
token[i] = 0; |
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_ccond(ROFF_ARGS) |
|
{ |
|
|
/* FIXME: use a table, this is slow but ok for now. */ |
if (NULL == r->last) { |
|
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
|
return(ROFF_IGN); |
|
} |
|
|
/* LINTED */ |
switch (r->last->tok) { |
for (i = 0; i < ROFF_MAX; i++) |
case (ROFF_el): |
/* LINTED */ |
/* FALLTHROUGH */ |
if (0 == strcmp(toknames[i], token)) |
case (ROFF_ie): |
return((int)i); |
/* FALLTHROUGH */ |
|
case (ROFF_if): |
|
break; |
|
default: |
|
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
|
return(ROFF_IGN); |
|
} |
|
|
return(ROFF_MAX); |
if (r->last->endspan > -1) { |
|
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
|
return(ROFF_IGN); |
|
} |
|
|
|
if ((*bufp)[pos]) |
|
mandoc_msg(MANDOCERR_ARGSLOST, r->parse, ln, pos, NULL); |
|
|
|
roffnode_pop(r); |
|
roffnode_cleanscope(r); |
|
return(ROFF_IGN); |
} |
} |
|
|
|
|
static int |
/* ARGSUSED */ |
rofffindcallable(const char *name) |
static enum rofferr |
|
roff_block(ROFF_ARGS) |
{ |
{ |
int c; |
int sv; |
|
size_t sz; |
|
char *name; |
|
|
if (ROFF_MAX == (c = rofffindtok(name))) |
name = NULL; |
return(ROFF_MAX); |
|
assert(c >= 0 && c < ROFF_MAX); |
|
return(ROFF_CALLABLE & tokens[c].flags ? c : ROFF_MAX); |
|
} |
|
|
|
|
if (ROFF_ig != tok) { |
|
if ('\0' == (*bufp)[pos]) { |
|
mandoc_msg(MANDOCERR_NOARGS, r->parse, ln, ppos, NULL); |
|
return(ROFF_IGN); |
|
} |
|
|
static struct roffnode * |
/* |
roffnode_new(int tokid, struct rofftree *tree) |
* Re-write `de1', since we don't really care about |
{ |
* groff's strange compatibility mode, into `de'. |
struct roffnode *p; |
*/ |
|
|
if (NULL == (p = malloc(sizeof(struct roffnode)))) |
|
err(1, "malloc"); |
|
|
|
p->tok = tokid; |
if (ROFF_de1 == tok) |
p->parent = tree->last; |
tok = ROFF_de; |
tree->last = p; |
if (ROFF_de == tok) |
|
name = *bufp + pos; |
|
else |
|
mandoc_msg(MANDOCERR_REQUEST, r->parse, ln, ppos, |
|
roffs[tok].name); |
|
|
return(p); |
while ((*bufp)[pos] && ! isspace((unsigned char)(*bufp)[pos])) |
|
pos++; |
|
|
|
while (isspace((unsigned char)(*bufp)[pos])) |
|
(*bufp)[pos++] = '\0'; |
|
} |
|
|
|
roffnode_push(r, tok, name, ln, ppos); |
|
|
|
/* |
|
* At the beginning of a `de' macro, clear the existing string |
|
* with the same name, if there is one. New content will be |
|
* added from roff_block_text() in multiline mode. |
|
*/ |
|
|
|
if (ROFF_de == tok) |
|
roff_setstr(r, name, "", 0); |
|
|
|
if ('\0' == (*bufp)[pos]) |
|
return(ROFF_IGN); |
|
|
|
/* If present, process the custom end-of-line marker. */ |
|
|
|
sv = pos; |
|
while ((*bufp)[pos] && ! isspace((unsigned char)(*bufp)[pos])) |
|
pos++; |
|
|
|
/* |
|
* Note: groff does NOT like escape characters in the input. |
|
* Instead of detecting this, we're just going to let it fly and |
|
* to hell with it. |
|
*/ |
|
|
|
assert(pos > sv); |
|
sz = (size_t)(pos - sv); |
|
|
|
if (1 == sz && '.' == (*bufp)[sv]) |
|
return(ROFF_IGN); |
|
|
|
r->last->end = mandoc_malloc(sz + 1); |
|
|
|
memcpy(r->last->end, *bufp + sv, sz); |
|
r->last->end[(int)sz] = '\0'; |
|
|
|
if ((*bufp)[pos]) |
|
mandoc_msg(MANDOCERR_ARGSLOST, r->parse, ln, pos, NULL); |
|
|
|
return(ROFF_IGN); |
} |
} |
|
|
|
|
static int |
/* ARGSUSED */ |
roffargok(int tokid, int argid) |
static enum rofferr |
|
roff_block_sub(ROFF_ARGS) |
{ |
{ |
const int *c; |
enum rofft t; |
|
int i, j; |
|
|
if (NULL == (c = tokens[tokid].args)) |
/* |
return(0); |
* First check whether a custom macro exists at this level. If |
|
* it does, then check against it. This is some of groff's |
|
* stranger behaviours. If we encountered a custom end-scope |
|
* tag and that tag also happens to be a "real" macro, then we |
|
* need to try interpreting it again as a real macro. If it's |
|
* not, then return ignore. Else continue. |
|
*/ |
|
|
for ( ; ROFF_ARGMAX != *c; c++) |
if (r->last->end) { |
if (argid == *c) |
for (i = pos, j = 0; r->last->end[j]; j++, i++) |
return(1); |
if ((*bufp)[i] != r->last->end[j]) |
|
break; |
|
|
return(0); |
if ('\0' == r->last->end[j] && |
|
('\0' == (*bufp)[i] || |
|
' ' == (*bufp)[i] || |
|
'\t' == (*bufp)[i])) { |
|
roffnode_pop(r); |
|
roffnode_cleanscope(r); |
|
|
|
while (' ' == (*bufp)[i] || '\t' == (*bufp)[i]) |
|
i++; |
|
|
|
pos = i; |
|
if (ROFF_MAX != roff_parse(r, *bufp, &pos)) |
|
return(ROFF_RERUN); |
|
return(ROFF_IGN); |
|
} |
|
} |
|
|
|
/* |
|
* If we have no custom end-query or lookup failed, then try |
|
* pulling it out of the hashtable. |
|
*/ |
|
|
|
t = roff_parse(r, *bufp, &pos); |
|
|
|
/* |
|
* Macros other than block-end are only significant |
|
* in `de' blocks; elsewhere, simply throw them away. |
|
*/ |
|
if (ROFF_cblock != t) { |
|
if (ROFF_de == tok) |
|
roff_setstr(r, r->last->name, *bufp + ppos, 1); |
|
return(ROFF_IGN); |
|
} |
|
|
|
assert(roffs[t].proc); |
|
return((*roffs[t].proc)(r, t, bufp, szp, |
|
ln, ppos, pos, offs)); |
} |
} |
|
|
|
|
static void |
/* ARGSUSED */ |
roffnode_free(struct rofftree *tree) |
static enum rofferr |
|
roff_block_text(ROFF_ARGS) |
{ |
{ |
struct roffnode *p; |
|
|
|
assert(tree->last); |
if (ROFF_de == tok) |
|
roff_setstr(r, r->last->name, *bufp + pos, 1); |
|
|
p = tree->last; |
return(ROFF_IGN); |
tree->last = tree->last->parent; |
|
free(p); |
|
} |
} |
|
|
|
|
static int |
/* ARGSUSED */ |
roffnextopt(const struct rofftree *tree, int tok, |
static enum rofferr |
const char ***in, char **val) |
roff_cond_sub(ROFF_ARGS) |
{ |
{ |
const char *arg, **argv; |
enum rofft t; |
int v; |
enum roffrule rr; |
|
char *ep; |
|
|
*val = NULL; |
rr = r->last->rule; |
argv = *in; |
roffnode_cleanscope(r); |
assert(argv); |
t = roff_parse(r, *bufp, &pos); |
|
|
if (NULL == (arg = *argv)) |
/* |
return(-1); |
* Fully handle known macros when they are structurally |
if ('-' != *arg) |
* required or when the conditional evaluated to true. |
return(-1); |
*/ |
|
|
if (ROFF_ARGMAX == (v = rofffindarg(arg + 1))) { |
if ((ROFF_MAX != t) && |
roff_warn(tree, arg, "argument-like parameter `%s' to " |
(ROFF_ccond == t || ROFFRULE_ALLOW == rr || |
"`%s'", &arg[1], toknames[tok]); |
ROFFMAC_STRUCT & roffs[t].flags)) { |
return(-1); |
assert(roffs[t].proc); |
} |
return((*roffs[t].proc)(r, t, bufp, szp, |
|
ln, ppos, pos, offs)); |
if ( ! roffargok(tok, v)) { |
} |
roff_warn(tree, arg, "invalid argument parameter `%s' to " |
|
"`%s'", tokargnames[v], toknames[tok]); |
|
return(-1); |
|
} |
|
|
|
if ( ! (ROFF_VALUE & tokenargs[v])) |
|
return(v); |
|
|
|
*in = ++argv; |
/* Always check for the closing delimiter `\}'. */ |
|
|
if (NULL == *argv) { |
ep = &(*bufp)[pos]; |
roff_err(tree, arg, "empty value of `%s' for `%s'", |
while (NULL != (ep = strchr(ep, '\\'))) { |
tokargnames[v], toknames[tok]); |
if ('}' != *(++ep)) |
return(ROFF_ARGMAX); |
continue; |
|
|
|
/* |
|
* If we're at the end of line, then just chop |
|
* off the \} and resize the buffer. |
|
* If we aren't, then convert it to spaces. |
|
*/ |
|
|
|
if ('\0' == *(ep + 1)) { |
|
*--ep = '\0'; |
|
*szp -= 2; |
|
} else |
|
*(ep - 1) = *ep = ' '; |
|
|
|
roff_ccond(r, ROFF_ccond, bufp, szp, |
|
ln, pos, pos + 2, offs); |
|
break; |
} |
} |
|
return(ROFFRULE_DENY == rr ? ROFF_IGN : ROFF_CONT); |
|
} |
|
|
return(v); |
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_cond_text(ROFF_ARGS) |
|
{ |
|
char *ep; |
|
enum roffrule rr; |
|
|
|
rr = r->last->rule; |
|
roffnode_cleanscope(r); |
|
|
|
ep = &(*bufp)[pos]; |
|
for ( ; NULL != (ep = strchr(ep, '\\')); ep++) { |
|
ep++; |
|
if ('}' != *ep) |
|
continue; |
|
*ep = '&'; |
|
roff_ccond(r, ROFF_ccond, bufp, szp, |
|
ln, pos, pos + 2, offs); |
|
} |
|
return(ROFFRULE_DENY == rr ? ROFF_IGN : ROFF_CONT); |
} |
} |
|
|
|
static enum roffrule |
|
roff_evalcond(const char *v, int *pos) |
|
{ |
|
|
|
switch (v[*pos]) { |
|
case ('n'): |
|
(*pos)++; |
|
return(ROFFRULE_ALLOW); |
|
case ('e'): |
|
/* FALLTHROUGH */ |
|
case ('o'): |
|
/* FALLTHROUGH */ |
|
case ('t'): |
|
(*pos)++; |
|
return(ROFFRULE_DENY); |
|
default: |
|
break; |
|
} |
|
|
|
while (v[*pos] && ' ' != v[*pos]) |
|
(*pos)++; |
|
return(ROFFRULE_DENY); |
|
} |
|
|
/* ARGSUSED */ |
/* ARGSUSED */ |
static int |
static enum rofferr |
roff_Dd(ROFFCALL_ARGS) |
roff_line_ignore(ROFF_ARGS) |
{ |
{ |
|
|
if (ROFF_BODY & tree->state) { |
return(ROFF_IGN); |
assert( ! (ROFF_PRELUDE & tree->state)); |
} |
assert(ROFF_PRELUDE_Dd & tree->state); |
|
return(roff_text(tok, tree, argv, type)); |
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_cond(ROFF_ARGS) |
|
{ |
|
|
|
roffnode_push(r, tok, NULL, ln, ppos); |
|
|
|
/* |
|
* An `.el' has no conditional body: it will consume the value |
|
* of the current rstack entry set in prior `ie' calls or |
|
* defaults to DENY. |
|
* |
|
* If we're not an `el', however, then evaluate the conditional. |
|
*/ |
|
|
|
r->last->rule = ROFF_el == tok ? |
|
(r->rstackpos < 0 ? |
|
ROFFRULE_DENY : r->rstack[r->rstackpos--]) : |
|
roff_evalcond(*bufp, &pos); |
|
|
|
/* |
|
* An if-else will put the NEGATION of the current evaluated |
|
* conditional into the stack of rules. |
|
*/ |
|
|
|
if (ROFF_ie == tok) { |
|
if (r->rstackpos == RSTACK_MAX - 1) { |
|
mandoc_msg(MANDOCERR_MEM, |
|
r->parse, ln, ppos, NULL); |
|
return(ROFF_ERR); |
|
} |
|
r->rstack[++r->rstackpos] = |
|
ROFFRULE_DENY == r->last->rule ? |
|
ROFFRULE_ALLOW : ROFFRULE_DENY; |
} |
} |
|
|
assert(ROFF_PRELUDE & tree->state); |
/* If the parent has false as its rule, then so do we. */ |
assert( ! (ROFF_BODY & tree->state)); |
|
|
|
if (ROFF_PRELUDE_Dd & tree->state) { |
if (r->last->parent && ROFFRULE_DENY == r->last->parent->rule) |
roff_err(tree, *argv, "repeated `Dd' in prelude"); |
r->last->rule = ROFFRULE_DENY; |
return(0); |
|
} else if (ROFF_PRELUDE_Dt & tree->state) { |
/* |
roff_err(tree, *argv, "out-of-order `Dd' in prelude"); |
* Determine scope. |
return(0); |
* If there is nothing on the line after the conditional, |
|
* not even whitespace, use next-line scope. |
|
*/ |
|
|
|
if ('\0' == (*bufp)[pos]) { |
|
r->last->endspan = 2; |
|
goto out; |
} |
} |
|
|
/* TODO: parse date. */ |
while (' ' == (*bufp)[pos]) |
|
pos++; |
|
|
assert(NULL == tree->last); |
/* An opening brace requests multiline scope. */ |
tree->state |= ROFF_PRELUDE_Dd; |
|
|
|
return(1); |
if ('\\' == (*bufp)[pos] && '{' == (*bufp)[pos + 1]) { |
|
r->last->endspan = -1; |
|
pos += 2; |
|
goto out; |
|
} |
|
|
|
/* |
|
* Anything else following the conditional causes |
|
* single-line scope. Warn if the scope contains |
|
* nothing but trailing whitespace. |
|
*/ |
|
|
|
if ('\0' == (*bufp)[pos]) |
|
mandoc_msg(MANDOCERR_NOARGS, r->parse, ln, ppos, NULL); |
|
|
|
r->last->endspan = 1; |
|
|
|
out: |
|
*offs = pos; |
|
return(ROFF_RERUN); |
} |
} |
|
|
|
|
/* ARGSUSED */ |
/* ARGSUSED */ |
static int |
static enum rofferr |
roff_Dt(ROFFCALL_ARGS) |
roff_ds(ROFF_ARGS) |
{ |
{ |
|
char *name, *string; |
|
|
if (ROFF_BODY & tree->state) { |
/* |
assert( ! (ROFF_PRELUDE & tree->state)); |
* A symbol is named by the first word following the macro |
assert(ROFF_PRELUDE_Dt & tree->state); |
* invocation up to a space. Its value is anything after the |
return(roff_text(tok, tree, argv, type)); |
* name's trailing whitespace and optional double-quote. Thus, |
} |
* |
|
* [.ds foo "bar " ] |
|
* |
|
* will have `bar " ' as its value. |
|
*/ |
|
|
assert(ROFF_PRELUDE & tree->state); |
string = *bufp + pos; |
assert( ! (ROFF_BODY & tree->state)); |
name = roff_getname(r, &string, ln, pos); |
|
if ('\0' == *name) |
|
return(ROFF_IGN); |
|
|
if ( ! (ROFF_PRELUDE_Dd & tree->state)) { |
/* Read past initial double-quote. */ |
roff_err(tree, *argv, "out-of-order `Dt' in prelude"); |
if ('"' == *string) |
return(0); |
string++; |
} else if (ROFF_PRELUDE_Dt & tree->state) { |
|
roff_err(tree, *argv, "repeated `Dt' in prelude"); |
/* The rest is the value. */ |
return(0); |
roff_setstr(r, name, string, 0); |
|
return(ROFF_IGN); |
|
} |
|
|
|
void |
|
roff_setreg(struct roff *r, const char *name, int val) |
|
{ |
|
struct roffreg *reg; |
|
|
|
/* Search for an existing register with the same name. */ |
|
reg = r->regtab; |
|
|
|
while (reg && strcmp(name, reg->key.p)) |
|
reg = reg->next; |
|
|
|
if (NULL == reg) { |
|
/* Create a new register. */ |
|
reg = mandoc_malloc(sizeof(struct roffreg)); |
|
reg->key.p = mandoc_strdup(name); |
|
reg->key.sz = strlen(name); |
|
reg->next = r->regtab; |
|
r->regtab = reg; |
} |
} |
|
|
/* TODO: parse date. */ |
reg->val = val; |
|
} |
|
|
assert(NULL == tree->last); |
int |
tree->state |= ROFF_PRELUDE_Dt; |
roff_getreg(const struct roff *r, const char *name) |
|
{ |
|
struct roffreg *reg; |
|
|
return(1); |
for (reg = r->regtab; reg; reg = reg->next) |
|
if (0 == strcmp(name, reg->key.p)) |
|
return(reg->val); |
|
|
|
return(0); |
} |
} |
|
|
|
static int |
|
roff_getregn(const struct roff *r, const char *name, size_t len) |
|
{ |
|
struct roffreg *reg; |
|
|
|
for (reg = r->regtab; reg; reg = reg->next) |
|
if (len == reg->key.sz && |
|
0 == strncmp(name, reg->key.p, len)) |
|
return(reg->val); |
|
|
|
return(0); |
|
} |
|
|
|
static void |
|
roff_freereg(struct roffreg *reg) |
|
{ |
|
struct roffreg *old_reg; |
|
|
|
while (NULL != reg) { |
|
free(reg->key.p); |
|
old_reg = reg; |
|
reg = reg->next; |
|
free(old_reg); |
|
} |
|
} |
|
|
/* ARGSUSED */ |
/* ARGSUSED */ |
static int |
static enum rofferr |
roff_Os(ROFFCALL_ARGS) |
roff_nr(ROFF_ARGS) |
{ |
{ |
|
const char *key; |
|
char *val; |
|
int iv; |
|
|
if (ROFF_EXIT == type) { |
val = *bufp + pos; |
assert(ROFF_PRELUDE_Os & tree->state); |
key = roff_getname(r, &val, ln, pos); |
return(roff_layout(tok, tree, argv, type)); |
|
} else if (ROFF_BODY & tree->state) { |
iv = mandoc_strntoi(val, strlen(val), 10); |
assert( ! (ROFF_PRELUDE & tree->state)); |
|
assert(ROFF_PRELUDE_Os & tree->state); |
roff_setreg(r, key, iv); |
return(roff_text(tok, tree, argv, type)); |
|
|
return(ROFF_IGN); |
|
} |
|
|
|
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_rm(ROFF_ARGS) |
|
{ |
|
const char *name; |
|
char *cp; |
|
|
|
cp = *bufp + pos; |
|
while ('\0' != *cp) { |
|
name = roff_getname(r, &cp, ln, (int)(cp - *bufp)); |
|
if ('\0' != *name) |
|
roff_setstr(r, name, NULL, 0); |
} |
} |
|
return(ROFF_IGN); |
|
} |
|
|
assert(ROFF_PRELUDE & tree->state); |
/* ARGSUSED */ |
if ( ! (ROFF_PRELUDE_Dt & tree->state) || |
static enum rofferr |
! (ROFF_PRELUDE_Dd & tree->state)) { |
roff_it(ROFF_ARGS) |
roff_err(tree, *argv, "out-of-order `Os' in prelude"); |
{ |
return(0); |
char *cp; |
|
size_t len; |
|
int iv; |
|
|
|
/* Parse the number of lines. */ |
|
cp = *bufp + pos; |
|
len = strcspn(cp, " \t"); |
|
cp[len] = '\0'; |
|
if ((iv = mandoc_strntoi(cp, len, 10)) <= 0) { |
|
mandoc_msg(MANDOCERR_NUMERIC, r->parse, |
|
ln, ppos, *bufp + 1); |
|
return(ROFF_IGN); |
} |
} |
|
cp += len + 1; |
|
|
/* TODO: extract OS. */ |
/* Arm the input line trap. */ |
|
roffit_lines = iv; |
|
roffit_macro = mandoc_strdup(cp); |
|
return(ROFF_IGN); |
|
} |
|
|
tree->state |= ROFF_PRELUDE_Os; |
/* ARGSUSED */ |
tree->state &= ~ROFF_PRELUDE; |
static enum rofferr |
tree->state |= ROFF_BODY; |
roff_Dd(ROFF_ARGS) |
|
{ |
|
const char *const *cp; |
|
|
assert(NULL == tree->last); |
if (MPARSE_MDOC != r->parsetype) |
|
for (cp = __mdoc_reserved; *cp; cp++) |
|
roff_setstr(r, *cp, NULL, 0); |
|
|
return(roff_layout(tok, tree, argv, type)); |
return(ROFF_CONT); |
} |
} |
|
|
|
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_TH(ROFF_ARGS) |
|
{ |
|
const char *const *cp; |
|
|
|
if (MPARSE_MDOC != r->parsetype) |
|
for (cp = __man_reserved; *cp; cp++) |
|
roff_setstr(r, *cp, NULL, 0); |
|
|
|
return(ROFF_CONT); |
|
} |
|
|
/* ARGSUSED */ |
/* ARGSUSED */ |
static int |
static enum rofferr |
roff_layout(ROFFCALL_ARGS) |
roff_TE(ROFF_ARGS) |
{ |
{ |
int i, c, argcp[ROFF_MAXARG]; |
|
char *v, *argvp[ROFF_MAXARG]; |
|
|
|
if (ROFF_PRELUDE & tree->state) { |
if (NULL == r->tbl) |
roff_err(tree, *argv, "`%s' disallowed in prelude", |
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
toknames[tok]); |
else |
return(0); |
tbl_end(&r->tbl); |
} |
|
|
|
if (ROFF_EXIT == type) { |
return(ROFF_IGN); |
roffnode_free(tree); |
} |
return((*tree->cb.roffblkout)(tree->arg, tok)); |
|
} |
|
|
|
i = 0; |
/* ARGSUSED */ |
argv++; |
static enum rofferr |
|
roff_T_(ROFF_ARGS) |
|
{ |
|
|
while (-1 != (c = roffnextopt(tree, tok, &argv, &v))) { |
if (NULL == r->tbl) |
if (ROFF_ARGMAX == c) |
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
return(0); |
else |
|
tbl_restart(ppos, ln, r->tbl); |
|
|
argcp[i] = c; |
return(ROFF_IGN); |
argvp[i] = v; |
} |
i++; |
|
argv++; |
|
} |
|
|
|
argcp[i] = ROFF_ARGMAX; |
#if 0 |
argvp[i] = NULL; |
static int |
|
roff_closeeqn(struct roff *r) |
|
{ |
|
|
if (NULL == roffnode_new(tok, tree)) |
return(r->eqn && ROFF_EQN == eqn_end(&r->eqn) ? 1 : 0); |
return(0); |
} |
|
#endif |
|
|
if ( ! (*tree->cb.roffin)(tree->arg, tok, argcp, argvp)) |
static void |
return(0); |
roff_openeqn(struct roff *r, const char *name, int line, |
|
int offs, const char *buf) |
|
{ |
|
struct eqn_node *e; |
|
int poff; |
|
|
if ( ! (ROFF_PARSED & tokens[tok].flags)) { |
assert(NULL == r->eqn); |
while (*argv) { |
e = eqn_alloc(name, offs, line, r->parse); |
if ( ! (*tree->cb.roffdata) |
|
(tree->arg, *argv++)) |
|
return(0); |
|
} |
|
|
|
if ( ! ((*tree->cb.roffout)(tree->arg, tok))) |
if (r->last_eqn) |
return(0); |
r->last_eqn->next = e; |
return((*tree->cb.roffblkin)(tree->arg, tok)); |
else |
} |
r->first_eqn = r->last_eqn = e; |
|
|
while (*argv) { |
r->eqn = r->last_eqn = e; |
if (ROFF_MAX != (c = rofffindcallable(*argv))) { |
|
if (NULL == tokens[c].cb) { |
|
roff_err(tree, *argv, "unsupported " |
|
"macro `%s'", |
|
toknames[c]); |
|
return(0); |
|
} |
|
if ( ! (*tokens[c].cb)(c, tree, argv, ROFF_ENTER)) |
|
return(0); |
|
break; |
|
} |
|
|
|
if ( ! (*tree->cb.roffdata)(tree->arg, *argv++)) |
if (buf) { |
return(0); |
poff = 0; |
|
eqn_read(&r->eqn, line, buf, offs, &poff); |
} |
} |
|
} |
|
|
if ( ! ((*tree->cb.roffout)(tree->arg, tok))) |
/* ARGSUSED */ |
return(0); |
static enum rofferr |
return((*tree->cb.roffblkin)(tree->arg, tok)); |
roff_EQ(ROFF_ARGS) |
|
{ |
|
|
|
roff_openeqn(r, *bufp + pos, ln, ppos, NULL); |
|
return(ROFF_IGN); |
} |
} |
|
|
|
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_EN(ROFF_ARGS) |
|
{ |
|
|
|
mandoc_msg(MANDOCERR_NOSCOPE, r->parse, ln, ppos, NULL); |
|
return(ROFF_IGN); |
|
} |
|
|
/* ARGSUSED */ |
/* ARGSUSED */ |
static int |
static enum rofferr |
roff_text(ROFFCALL_ARGS) |
roff_TS(ROFF_ARGS) |
{ |
{ |
int i, c, argcp[ROFF_MAXARG]; |
struct tbl_node *tbl; |
char *v, *argvp[ROFF_MAXARG]; |
|
|
|
if (ROFF_PRELUDE & tree->state) { |
if (r->tbl) { |
roff_err(tree, *argv, "`%s' disallowed in prelude", |
mandoc_msg(MANDOCERR_SCOPEBROKEN, r->parse, ln, ppos, NULL); |
toknames[tok]); |
tbl_end(&r->tbl); |
return(0); |
|
} |
} |
|
|
i = 0; |
tbl = tbl_alloc(ppos, ln, r->parse); |
argv++; |
|
|
|
while (-1 != (c = roffnextopt(tree, tok, &argv, &v))) { |
if (r->last_tbl) |
if (ROFF_ARGMAX == c) |
r->last_tbl->next = tbl; |
return(0); |
else |
|
r->first_tbl = r->last_tbl = tbl; |
|
|
argcp[i] = c; |
r->tbl = r->last_tbl = tbl; |
argvp[i] = v; |
return(ROFF_IGN); |
i++; |
} |
argv++; |
|
} |
|
|
|
argcp[i] = ROFF_ARGMAX; |
/* ARGSUSED */ |
argvp[i] = NULL; |
static enum rofferr |
|
roff_cc(ROFF_ARGS) |
|
{ |
|
const char *p; |
|
|
if ( ! (*tree->cb.roffin)(tree->arg, tok, argcp, argvp)) |
p = *bufp + pos; |
return(0); |
|
|
|
if ( ! (ROFF_PARSED & tokens[tok].flags)) { |
if ('\0' == *p || '.' == (r->control = *p++)) |
while (*argv) { |
r->control = 0; |
if ( ! (*tree->cb.roffdata)(tree->arg, *argv++)) |
|
return(0); |
if ('\0' != *p) |
} |
mandoc_msg(MANDOCERR_ARGCOUNT, r->parse, ln, ppos, NULL); |
return((*tree->cb.roffout)(tree->arg, tok)); |
|
|
return(ROFF_IGN); |
|
} |
|
|
|
/* ARGSUSED */ |
|
static enum rofferr |
|
roff_tr(ROFF_ARGS) |
|
{ |
|
const char *p, *first, *second; |
|
size_t fsz, ssz; |
|
enum mandoc_esc esc; |
|
|
|
p = *bufp + pos; |
|
|
|
if ('\0' == *p) { |
|
mandoc_msg(MANDOCERR_ARGCOUNT, r->parse, ln, ppos, NULL); |
|
return(ROFF_IGN); |
} |
} |
|
|
while (*argv) { |
while ('\0' != *p) { |
if (ROFF_MAX != (c = rofffindcallable(*argv))) { |
fsz = ssz = 1; |
if (NULL == tokens[c].cb) { |
|
roff_err(tree, *argv, "unsupported " |
first = p++; |
"macro `%s'", |
if ('\\' == *first) { |
toknames[c]); |
esc = mandoc_escape(&p, NULL, NULL); |
return(0); |
if (ESCAPE_ERROR == esc) { |
|
mandoc_msg |
|
(MANDOCERR_BADESCAPE, r->parse, |
|
ln, (int)(p - *bufp), NULL); |
|
return(ROFF_IGN); |
} |
} |
if ( ! (*tokens[c].cb)(c, tree, |
fsz = (size_t)(p - first); |
argv, ROFF_ENTER)) |
|
return(0); |
|
break; |
|
} |
} |
if ( ! (*tree->cb.roffdata)(tree->arg, *argv++)) |
|
return(0); |
second = p++; |
|
if ('\\' == *second) { |
|
esc = mandoc_escape(&p, NULL, NULL); |
|
if (ESCAPE_ERROR == esc) { |
|
mandoc_msg |
|
(MANDOCERR_BADESCAPE, r->parse, |
|
ln, (int)(p - *bufp), NULL); |
|
return(ROFF_IGN); |
|
} |
|
ssz = (size_t)(p - second); |
|
} else if ('\0' == *second) { |
|
mandoc_msg(MANDOCERR_ARGCOUNT, r->parse, |
|
ln, (int)(p - *bufp), NULL); |
|
second = " "; |
|
p--; |
|
} |
|
|
|
if (fsz > 1) { |
|
roff_setstrn(&r->xmbtab, first, |
|
fsz, second, ssz, 0); |
|
continue; |
|
} |
|
|
|
if (NULL == r->xtab) |
|
r->xtab = mandoc_calloc |
|
(128, sizeof(struct roffstr)); |
|
|
|
free(r->xtab[(int)*first].p); |
|
r->xtab[(int)*first].p = mandoc_strndup(second, ssz); |
|
r->xtab[(int)*first].sz = ssz; |
} |
} |
|
|
return((*tree->cb.roffout)(tree->arg, tok)); |
return(ROFF_IGN); |
} |
} |
|
|
|
|
/* ARGSUSED */ |
/* ARGSUSED */ |
static int |
static enum rofferr |
roff_comment(ROFFCALL_ARGS) |
roff_so(ROFF_ARGS) |
{ |
{ |
|
char *name; |
|
|
return(1); |
mandoc_msg(MANDOCERR_SO, r->parse, ln, ppos, NULL); |
} |
|
|
|
|
/* |
|
* Handle `so'. Be EXTREMELY careful, as we shouldn't be |
|
* opening anything that's not in our cwd or anything beneath |
|
* it. Thus, explicitly disallow traversing up the file-system |
|
* or using absolute paths. |
|
*/ |
|
|
|
name = *bufp + pos; |
|
if ('/' == *name || strstr(name, "../") || strstr(name, "/..")) { |
|
mandoc_msg(MANDOCERR_SOPATH, r->parse, ln, pos, NULL); |
|
return(ROFF_ERR); |
|
} |
|
|
|
*offs = pos; |
|
return(ROFF_SO); |
|
} |
|
|
/* ARGSUSED */ |
/* ARGSUSED */ |
static int |
static enum rofferr |
roff_close(ROFFCALL_ARGS) |
roff_userdef(ROFF_ARGS) |
{ |
{ |
|
const char *arg[9]; |
|
char *cp, *n1, *n2; |
|
int i; |
|
|
return(1); |
/* |
} |
* Collect pointers to macro argument strings |
|
* and null-terminate them. |
|
*/ |
|
cp = *bufp + pos; |
|
for (i = 0; i < 9; i++) |
|
arg[i] = '\0' == *cp ? "" : |
|
mandoc_getarg(r->parse, &cp, ln, &pos); |
|
|
|
/* |
|
* Expand macro arguments. |
|
*/ |
|
*szp = 0; |
|
n1 = cp = mandoc_strdup(r->current_string); |
|
while (NULL != (cp = strstr(cp, "\\$"))) { |
|
i = cp[2] - '1'; |
|
if (0 > i || 8 < i) { |
|
/* Not an argument invocation. */ |
|
cp += 2; |
|
continue; |
|
} |
|
|
/* ARGSUSED */ |
*szp = strlen(n1) - 3 + strlen(arg[i]) + 1; |
static int |
n2 = mandoc_malloc(*szp); |
roff_special(ROFFCALL_ARGS) |
|
|
strlcpy(n2, n1, (size_t)(cp - n1 + 1)); |
|
strlcat(n2, arg[i], *szp); |
|
strlcat(n2, cp + 3, *szp); |
|
|
|
cp = n2 + (cp - n1); |
|
free(n1); |
|
n1 = n2; |
|
} |
|
|
|
/* |
|
* Replace the macro invocation |
|
* by the expanded macro. |
|
*/ |
|
free(*bufp); |
|
*bufp = n1; |
|
if (0 == *szp) |
|
*szp = strlen(*bufp) + 1; |
|
|
|
return(*szp > 1 && '\n' == (*bufp)[(int)*szp - 2] ? |
|
ROFF_REPARSE : ROFF_APPEND); |
|
} |
|
|
|
static char * |
|
roff_getname(struct roff *r, char **cpp, int ln, int pos) |
{ |
{ |
|
char *name, *cp; |
|
|
return((*tree->cb.roffspecial)(tree->arg, tok)); |
name = *cpp; |
|
if ('\0' == *name) |
|
return(name); |
|
|
|
/* Read until end of name. */ |
|
for (cp = name; '\0' != *cp && ' ' != *cp; cp++) { |
|
if ('\\' != *cp) |
|
continue; |
|
cp++; |
|
if ('\\' == *cp) |
|
continue; |
|
mandoc_msg(MANDOCERR_NAMESC, r->parse, ln, pos, NULL); |
|
*cp = '\0'; |
|
name = cp; |
|
} |
|
|
|
/* Nil-terminate name. */ |
|
if ('\0' != *cp) |
|
*(cp++) = '\0'; |
|
|
|
/* Read past spaces. */ |
|
while (' ' == *cp) |
|
cp++; |
|
|
|
*cpp = cp; |
|
return(name); |
} |
} |
|
|
|
/* |
|
* Store *string into the user-defined string called *name. |
|
* In multiline mode, append to an existing entry and append '\n'; |
|
* else replace the existing entry, if there is one. |
|
* To clear an existing entry, call with (*r, *name, NULL, 0). |
|
*/ |
|
static void |
|
roff_setstr(struct roff *r, const char *name, const char *string, |
|
int multiline) |
|
{ |
|
|
|
roff_setstrn(&r->strtab, name, strlen(name), string, |
|
string ? strlen(string) : 0, multiline); |
|
} |
|
|
static void |
static void |
roff_warn(const struct rofftree *tree, const char *pos, char *fmt, ...) |
roff_setstrn(struct roffkv **r, const char *name, size_t namesz, |
|
const char *string, size_t stringsz, int multiline) |
{ |
{ |
va_list ap; |
struct roffkv *n; |
char buf[128]; |
char *c; |
|
int i; |
|
size_t oldch, newch; |
|
|
va_start(ap, fmt); |
/* Search for an existing string with the same name. */ |
(void)vsnprintf(buf, sizeof(buf), fmt, ap); |
n = *r; |
va_end(ap); |
|
|
|
(*tree->cb.roffmsg)(tree->arg, |
while (n && strcmp(name, n->key.p)) |
ROFF_WARN, tree->cur, pos, buf); |
n = n->next; |
|
|
|
if (NULL == n) { |
|
/* Create a new string table entry. */ |
|
n = mandoc_malloc(sizeof(struct roffkv)); |
|
n->key.p = mandoc_strndup(name, namesz); |
|
n->key.sz = namesz; |
|
n->val.p = NULL; |
|
n->val.sz = 0; |
|
n->next = *r; |
|
*r = n; |
|
} else if (0 == multiline) { |
|
/* In multiline mode, append; else replace. */ |
|
free(n->val.p); |
|
n->val.p = NULL; |
|
n->val.sz = 0; |
|
} |
|
|
|
if (NULL == string) |
|
return; |
|
|
|
/* |
|
* One additional byte for the '\n' in multiline mode, |
|
* and one for the terminating '\0'. |
|
*/ |
|
newch = stringsz + (multiline ? 2u : 1u); |
|
|
|
if (NULL == n->val.p) { |
|
n->val.p = mandoc_malloc(newch); |
|
*n->val.p = '\0'; |
|
oldch = 0; |
|
} else { |
|
oldch = n->val.sz; |
|
n->val.p = mandoc_realloc(n->val.p, oldch + newch); |
|
} |
|
|
|
/* Skip existing content in the destination buffer. */ |
|
c = n->val.p + (int)oldch; |
|
|
|
/* Append new content to the destination buffer. */ |
|
i = 0; |
|
while (i < (int)stringsz) { |
|
/* |
|
* Rudimentary roff copy mode: |
|
* Handle escaped backslashes. |
|
*/ |
|
if ('\\' == string[i] && '\\' == string[i + 1]) |
|
i++; |
|
*c++ = string[i++]; |
|
} |
|
|
|
/* Append terminating bytes. */ |
|
if (multiline) |
|
*c++ = '\n'; |
|
|
|
*c = '\0'; |
|
n->val.sz = (int)(c - n->val.p); |
} |
} |
|
|
|
static const char * |
|
roff_getstrn(const struct roff *r, const char *name, size_t len) |
|
{ |
|
const struct roffkv *n; |
|
|
|
for (n = r->strtab; n; n = n->next) |
|
if (0 == strncmp(name, n->key.p, len) && |
|
'\0' == n->key.p[(int)len]) |
|
return(n->val.p); |
|
|
|
return(NULL); |
|
} |
|
|
static void |
static void |
roff_err(const struct rofftree *tree, const char *pos, char *fmt, ...) |
roff_freestr(struct roffkv *r) |
{ |
{ |
va_list ap; |
struct roffkv *n, *nn; |
char buf[128]; |
|
|
|
va_start(ap, fmt); |
for (n = r; n; n = nn) { |
(void)vsnprintf(buf, sizeof(buf), fmt, ap); |
free(n->key.p); |
va_end(ap); |
free(n->val.p); |
|
nn = n->next; |
|
free(n); |
|
} |
|
} |
|
|
(*tree->cb.roffmsg)(tree->arg, |
const struct tbl_span * |
ROFF_ERROR, tree->cur, pos, buf); |
roff_span(const struct roff *r) |
|
{ |
|
|
|
return(r->tbl ? tbl_span(r->tbl) : NULL); |
|
} |
|
|
|
const struct eqn * |
|
roff_eqn(const struct roff *r) |
|
{ |
|
|
|
return(r->last_eqn ? &r->last_eqn->eqn : NULL); |
|
} |
|
|
|
/* |
|
* Duplicate an input string, making the appropriate character |
|
* conversations (as stipulated by `tr') along the way. |
|
* Returns a heap-allocated string with all the replacements made. |
|
*/ |
|
char * |
|
roff_strdup(const struct roff *r, const char *p) |
|
{ |
|
const struct roffkv *cp; |
|
char *res; |
|
const char *pp; |
|
size_t ssz, sz; |
|
enum mandoc_esc esc; |
|
|
|
if (NULL == r->xmbtab && NULL == r->xtab) |
|
return(mandoc_strdup(p)); |
|
else if ('\0' == *p) |
|
return(mandoc_strdup("")); |
|
|
|
/* |
|
* Step through each character looking for term matches |
|
* (remember that a `tr' can be invoked with an escape, which is |
|
* a glyph but the escape is multi-character). |
|
* We only do this if the character hash has been initialised |
|
* and the string is >0 length. |
|
*/ |
|
|
|
res = NULL; |
|
ssz = 0; |
|
|
|
while ('\0' != *p) { |
|
if ('\\' != *p && r->xtab && r->xtab[(int)*p].p) { |
|
sz = r->xtab[(int)*p].sz; |
|
res = mandoc_realloc(res, ssz + sz + 1); |
|
memcpy(res + ssz, r->xtab[(int)*p].p, sz); |
|
ssz += sz; |
|
p++; |
|
continue; |
|
} else if ('\\' != *p) { |
|
res = mandoc_realloc(res, ssz + 2); |
|
res[ssz++] = *p++; |
|
continue; |
|
} |
|
|
|
/* Search for term matches. */ |
|
for (cp = r->xmbtab; cp; cp = cp->next) |
|
if (0 == strncmp(p, cp->key.p, cp->key.sz)) |
|
break; |
|
|
|
if (NULL != cp) { |
|
/* |
|
* A match has been found. |
|
* Append the match to the array and move |
|
* forward by its keysize. |
|
*/ |
|
res = mandoc_realloc |
|
(res, ssz + cp->val.sz + 1); |
|
memcpy(res + ssz, cp->val.p, cp->val.sz); |
|
ssz += cp->val.sz; |
|
p += (int)cp->key.sz; |
|
continue; |
|
} |
|
|
|
/* |
|
* Handle escapes carefully: we need to copy |
|
* over just the escape itself, or else we might |
|
* do replacements within the escape itself. |
|
* Make sure to pass along the bogus string. |
|
*/ |
|
pp = p++; |
|
esc = mandoc_escape(&p, NULL, NULL); |
|
if (ESCAPE_ERROR == esc) { |
|
sz = strlen(pp); |
|
res = mandoc_realloc(res, ssz + sz + 1); |
|
memcpy(res + ssz, pp, sz); |
|
break; |
|
} |
|
/* |
|
* We bail out on bad escapes. |
|
* No need to warn: we already did so when |
|
* roff_res() was called. |
|
*/ |
|
sz = (int)(p - pp); |
|
res = mandoc_realloc(res, ssz + sz + 1); |
|
memcpy(res + ssz, pp, sz); |
|
ssz += sz; |
|
} |
|
|
|
res[(int)ssz] = '\0'; |
|
return(res); |
|
} |
|
|
|
/* |
|
* Find out whether a line is a macro line or not. |
|
* If it is, adjust the current position and return one; if it isn't, |
|
* return zero and don't change the current position. |
|
* If the control character has been set with `.cc', then let that grain |
|
* precedence. |
|
* This is slighly contrary to groff, where using the non-breaking |
|
* control character when `cc' has been invoked will cause the |
|
* non-breaking macro contents to be printed verbatim. |
|
*/ |
|
int |
|
roff_getcontrol(const struct roff *r, const char *cp, int *ppos) |
|
{ |
|
int pos; |
|
|
|
pos = *ppos; |
|
|
|
if (0 != r->control && cp[pos] == r->control) |
|
pos++; |
|
else if (0 != r->control) |
|
return(0); |
|
else if ('\\' == cp[pos] && '.' == cp[pos + 1]) |
|
pos += 2; |
|
else if ('.' == cp[pos] || '\'' == cp[pos]) |
|
pos++; |
|
else |
|
return(0); |
|
|
|
while (' ' == cp[pos] || '\t' == cp[pos]) |
|
pos++; |
|
|
|
*ppos = pos; |
|
return(1); |
} |
} |