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Annotation of mandoc/roff.c, Revision 1.391

1.391   ! schwarze    1: /* $Id: roff.c,v 1.390 2022/05/31 18:09:57 schwarze Exp $ */
1.1       kristaps    2: /*
1.381     schwarze    3:  * Copyright (c) 2010-2015, 2017-2022 Ingo Schwarze <schwarze@openbsd.org>
1.267     schwarze    4:  * Copyright (c) 2008-2012, 2014 Kristaps Dzonsons <kristaps@bsd.lv>
1.1       kristaps    5:  *
                      6:  * Permission to use, copy, modify, and distribute this software for any
1.66      kristaps    7:  * purpose with or without fee is hereby granted, provided that the above
                      8:  * copyright notice and this permission notice appear in all copies.
1.1       kristaps    9:  *
1.106     kristaps   10:  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHORS DISCLAIM ALL WARRANTIES
1.66      kristaps   11:  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
1.106     kristaps   12:  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR
1.66      kristaps   13:  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
                     14:  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
                     15:  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
                     16:  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
1.372     schwarze   17:  *
                     18:  * Implementation of the roff(7) parser for mandoc(1).
1.1       kristaps   19:  */
1.66      kristaps   20: #include "config.h"
1.225     schwarze   21:
                     22: #include <sys/types.h>
1.30      kristaps   23:
1.67      kristaps   24: #include <assert.h>
1.85      kristaps   25: #include <ctype.h>
1.245     schwarze   26: #include <limits.h>
1.295     schwarze   27: #include <stddef.h>
                     28: #include <stdint.h>
1.178     schwarze   29: #include <stdio.h>
1.1       kristaps   30: #include <stdlib.h>
1.67      kristaps   31: #include <string.h>
1.1       kristaps   32:
1.201     schwarze   33: #include "mandoc_aux.h"
1.295     schwarze   34: #include "mandoc_ohash.h"
1.345     schwarze   35: #include "mandoc.h"
1.265     schwarze   36: #include "roff.h"
1.349     schwarze   37: #include "mandoc_parse.h"
1.226     schwarze   38: #include "libmandoc.h"
1.266     schwarze   39: #include "roff_int.h"
1.346     schwarze   40: #include "tbl_parse.h"
1.347     schwarze   41: #include "eqn_parse.h"
1.82      kristaps   42:
1.355     schwarze   43: /*
                     44:  * ASCII_ESC is used to signal from roff_getarg() to roff_expand()
                     45:  * that an escape sequence resulted from copy-in processing and
                     46:  * needs to be checked or interpolated.  As it is used nowhere
                     47:  * else, it is defined here rather than in a header file.
                     48:  */
                     49: #define        ASCII_ESC       27
                     50:
1.170     schwarze   51: /* Maximum number of string expansions per line, to break infinite loops. */
                     52: #define        EXPAND_LIMIT    1000
                     53:
1.315     schwarze   54: /* Types of definitions of macros and strings. */
                     55: #define        ROFFDEF_USER    (1 << 1)  /* User-defined. */
                     56: #define        ROFFDEF_PRE     (1 << 2)  /* Predefined. */
                     57: #define        ROFFDEF_REN     (1 << 3)  /* Renamed standard macro. */
                     58: #define        ROFFDEF_STD     (1 << 4)  /* mdoc(7) or man(7) macro. */
                     59: #define        ROFFDEF_ANY     (ROFFDEF_USER | ROFFDEF_PRE | \
                     60:                         ROFFDEF_REN | ROFFDEF_STD)
1.325     schwarze   61: #define        ROFFDEF_UNDEF   (1 << 5)  /* Completely undefined. */
1.315     schwarze   62:
1.266     schwarze   63: /* --- data types --------------------------------------------------------- */
                     64:
1.147     kristaps   65: /*
1.167     kristaps   66:  * An incredibly-simple string buffer.
                     67:  */
1.94      kristaps   68: struct roffstr {
1.167     kristaps   69:        char            *p; /* nil-terminated buffer */
                     70:        size_t           sz; /* saved strlen(p) */
1.166     kristaps   71: };
                     72:
                     73: /*
1.167     kristaps   74:  * A key-value roffstr pair as part of a singly-linked list.
1.166     kristaps   75:  */
                     76: struct roffkv {
                     77:        struct roffstr   key;
                     78:        struct roffstr   val;
                     79:        struct roffkv   *next; /* next in list */
1.94      kristaps   80: };
                     81:
1.180     schwarze   82: /*
                     83:  * A single number register as part of a singly-linked list.
                     84:  */
                     85: struct roffreg {
                     86:        struct roffstr   key;
1.181     schwarze   87:        int              val;
1.327     schwarze   88:        int              step;
1.180     schwarze   89:        struct roffreg  *next;
                     90: };
                     91:
1.295     schwarze   92: /*
                     93:  * Association of request and macro names with token IDs.
                     94:  */
                     95: struct roffreq {
                     96:        enum roff_tok    tok;
                     97:        char             name[];
                     98: };
                     99:
1.339     schwarze  100: /*
                    101:  * A macro processing context.
                    102:  * More than one is needed when macro calls are nested.
                    103:  */
                    104: struct mctx {
                    105:        char            **argv;
                    106:        int              argc;
                    107:        int              argsz;
                    108: };
                    109:
1.67      kristaps  110: struct roff {
1.296     schwarze  111:        struct roff_man *man; /* mdoc or man parser */
1.67      kristaps  112:        struct roffnode *last; /* leaf of stack */
1.339     schwarze  113:        struct mctx     *mstack; /* stack of macro contexts */
1.223     schwarze  114:        int             *rstack; /* stack of inverted `ie' values */
1.295     schwarze  115:        struct ohash    *reqtab; /* request lookup table */
1.180     schwarze  116:        struct roffreg  *regtab; /* number registers */
1.166     kristaps  117:        struct roffkv   *strtab; /* user-defined strings & macros */
1.306     schwarze  118:        struct roffkv   *rentab; /* renamed strings & macros */
1.167     kristaps  119:        struct roffkv   *xmbtab; /* multi-byte trans table (`tr') */
                    120:        struct roffstr  *xtab; /* single-byte trans table (`tr') */
1.106     kristaps  121:        const char      *current_string; /* value of last called user macro */
1.118     kristaps  122:        struct tbl_node *first_tbl; /* first table parsed */
                    123:        struct tbl_node *last_tbl; /* last table parsed */
                    124:        struct tbl_node *tbl; /* current table being parsed */
1.319     schwarze  125:        struct eqn_node *last_eqn; /* equation parser */
                    126:        struct eqn_node *eqn; /* active equation parser */
1.230     schwarze  127:        int              eqn_inline; /* current equation is inline */
1.223     schwarze  128:        int              options; /* parse options */
1.339     schwarze  129:        int              mstacksz; /* current size of mstack */
                    130:        int              mstackpos; /* position in mstack */
1.223     schwarze  131:        int              rstacksz; /* current size limit of rstack */
                    132:        int              rstackpos; /* position in rstack */
1.227     schwarze  133:        int              format; /* current file in mdoc or man format */
1.223     schwarze  134:        char             control; /* control character */
1.303     schwarze  135:        char             escape; /* escape character */
1.79      kristaps  136: };
                    137:
1.364     schwarze  138: /*
                    139:  * A macro definition, condition, or ignored block.
                    140:  */
1.67      kristaps  141: struct roffnode {
1.294     schwarze  142:        enum roff_tok    tok; /* type of node */
1.67      kristaps  143:        struct roffnode *parent; /* up one in stack */
                    144:        int              line; /* parse line */
                    145:        int              col; /* parse col */
1.106     kristaps  146:        char            *name; /* node name, e.g. macro name */
1.364     schwarze  147:        char            *end; /* custom end macro of the block */
                    148:        int              endspan; /* scope to: 1=eol 2=next line -1=\} */
                    149:        int              rule; /* content is: 1=evaluated 0=skipped */
1.67      kristaps  150: };
                    151:
                    152: #define        ROFF_ARGS        struct roff *r, /* parse ctx */ \
1.294     schwarze  153:                         enum roff_tok tok, /* tok of macro */ \
1.238     schwarze  154:                         struct buf *buf, /* input buffer */ \
1.67      kristaps  155:                         int ln, /* parse line */ \
1.75      kristaps  156:                         int ppos, /* original pos in buffer */ \
                    157:                         int pos, /* current pos in buffer */ \
1.74      kristaps  158:                         int *offs /* reset offset of buffer data */
1.67      kristaps  159:
1.340     schwarze  160: typedef        int (*roffproc)(ROFF_ARGS);
1.67      kristaps  161:
                    162: struct roffmac {
1.79      kristaps  163:        roffproc         proc; /* process new macro */
                    164:        roffproc         text; /* process as child text of macro */
                    165:        roffproc         sub; /* process as child of macro */
                    166:        int              flags;
                    167: #define        ROFFMAC_STRUCT  (1 << 0) /* always interpret */
1.67      kristaps  168: };
                    169:
1.141     kristaps  170: struct predef {
                    171:        const char      *name; /* predefined input name */
                    172:        const char      *str; /* replacement symbol */
                    173: };
                    174:
                    175: #define        PREDEF(__name, __str) \
                    176:        { (__name), (__str) },
                    177:
1.266     schwarze  178: /* --- function prototypes ------------------------------------------------ */
                    179:
1.340     schwarze  180: static int              roffnode_cleanscope(struct roff *);
                    181: static int              roffnode_pop(struct roff *);
1.294     schwarze  182: static void             roffnode_push(struct roff *, enum roff_tok,
1.155     kristaps  183:                                const char *, int, int);
1.346     schwarze  184: static void             roff_addtbl(struct roff_man *, int, struct tbl_node *);
1.340     schwarze  185: static int              roff_als(ROFF_ARGS);
                    186: static int              roff_block(ROFF_ARGS);
                    187: static int              roff_block_text(ROFF_ARGS);
                    188: static int              roff_block_sub(ROFF_ARGS);
1.364     schwarze  189: static int              roff_break(ROFF_ARGS);
1.340     schwarze  190: static int              roff_cblock(ROFF_ARGS);
                    191: static int              roff_cc(ROFF_ARGS);
                    192: static int              roff_ccond(struct roff *, int, int);
1.341     schwarze  193: static int              roff_char(ROFF_ARGS);
1.340     schwarze  194: static int              roff_cond(ROFF_ARGS);
1.375     schwarze  195: static int              roff_cond_checkend(ROFF_ARGS);
1.340     schwarze  196: static int              roff_cond_text(ROFF_ARGS);
                    197: static int              roff_cond_sub(ROFF_ARGS);
                    198: static int              roff_ds(ROFF_ARGS);
                    199: static int              roff_ec(ROFF_ARGS);
                    200: static int              roff_eo(ROFF_ARGS);
                    201: static int              roff_eqndelim(struct roff *, struct buf *, int);
1.372     schwarze  202: static int              roff_evalcond(struct roff *, int, char *, int *);
1.234     kristaps  203: static int              roff_evalnum(struct roff *, int,
                    204:                                const char *, int *, int *, int);
                    205: static int              roff_evalpar(struct roff *, int,
1.261     schwarze  206:                                const char *, int *, int *, int);
1.198     schwarze  207: static int              roff_evalstrcond(const char *, int *);
1.355     schwarze  208: static int              roff_expand(struct roff *, struct buf *,
                    209:                                int, int, char);
1.388     schwarze  210: static void             roff_expand_patch(struct buf *, int,
                    211:                                const char *, int);
1.155     kristaps  212: static void             roff_free1(struct roff *);
1.180     schwarze  213: static void             roff_freereg(struct roffreg *);
1.167     kristaps  214: static void             roff_freestr(struct roffkv *);
1.212     schwarze  215: static size_t           roff_getname(struct roff *, char **, int, int);
1.261     schwarze  216: static int              roff_getnum(const char *, int *, int *, int);
1.184     schwarze  217: static int              roff_getop(const char *, int *, char *);
1.327     schwarze  218: static int              roff_getregn(struct roff *,
                    219:                                const char *, size_t, char);
1.273     schwarze  220: static int              roff_getregro(const struct roff *,
                    221:                                const char *name);
1.325     schwarze  222: static const char      *roff_getstrn(struct roff *,
1.315     schwarze  223:                                const char *, size_t, int *);
1.271     schwarze  224: static int              roff_hasregn(const struct roff *,
                    225:                                const char *, size_t);
1.340     schwarze  226: static int              roff_insec(ROFF_ARGS);
                    227: static int              roff_it(ROFF_ARGS);
                    228: static int              roff_line_ignore(ROFF_ARGS);
1.265     schwarze  229: static void             roff_man_alloc1(struct roff_man *);
                    230: static void             roff_man_free1(struct roff_man *);
1.340     schwarze  231: static int              roff_manyarg(ROFF_ARGS);
1.384     schwarze  232: static int              roff_mc(ROFF_ARGS);
1.358     schwarze  233: static int              roff_noarg(ROFF_ARGS);
1.340     schwarze  234: static int              roff_nop(ROFF_ARGS);
                    235: static int              roff_nr(ROFF_ARGS);
                    236: static int              roff_onearg(ROFF_ARGS);
1.294     schwarze  237: static enum roff_tok    roff_parse(struct roff *, char *, int *,
1.214     schwarze  238:                                int, int);
1.387     schwarze  239: static int              roff_parse_comment(struct roff *, struct buf *,
                    240:                                int, int, char);
1.340     schwarze  241: static int              roff_parsetext(struct roff *, struct buf *,
1.305     schwarze  242:                                int, int *);
1.340     schwarze  243: static int              roff_renamed(ROFF_ARGS);
1.386     schwarze  244: static int              roff_req_or_macro(ROFF_ARGS);
1.340     schwarze  245: static int              roff_return(ROFF_ARGS);
                    246: static int              roff_rm(ROFF_ARGS);
                    247: static int              roff_rn(ROFF_ARGS);
                    248: static int              roff_rr(ROFF_ARGS);
1.326     schwarze  249: static void             roff_setregn(struct roff *, const char *,
1.327     schwarze  250:                                size_t, int, char, int);
1.94      kristaps  251: static void             roff_setstr(struct roff *,
1.106     kristaps  252:                                const char *, const char *, int);
1.207     schwarze  253: static void             roff_setstrn(struct roffkv **, const char *,
1.164     kristaps  254:                                size_t, const char *, size_t, int);
1.340     schwarze  255: static int              roff_shift(ROFF_ARGS);
                    256: static int              roff_so(ROFF_ARGS);
                    257: static int              roff_tr(ROFF_ARGS);
                    258: static int              roff_Dd(ROFF_ARGS);
                    259: static int              roff_TE(ROFF_ARGS);
                    260: static int              roff_TS(ROFF_ARGS);
                    261: static int              roff_EQ(ROFF_ARGS);
                    262: static int              roff_EN(ROFF_ARGS);
                    263: static int              roff_T_(ROFF_ARGS);
                    264: static int              roff_unsupp(ROFF_ARGS);
                    265: static int              roff_userdef(ROFF_ARGS);
1.67      kristaps  266:
1.266     schwarze  267: /* --- constant data ------------------------------------------------------ */
                    268:
1.261     schwarze  269: #define        ROFFNUM_SCALE   (1 << 0)  /* Honour scaling in roff_getnum(). */
                    270: #define        ROFFNUM_WHITE   (1 << 1)  /* Skip whitespace in roff_evalnum(). */
                    271:
1.294     schwarze  272: const char *__roff_name[MAN_MAX + 1] = {
1.358     schwarze  273:        "br",           "ce",           "fi",           "ft",
                    274:        "ll",           "mc",           "nf",
                    275:        "po",           "rj",           "sp",
1.312     schwarze  276:        "ta",           "ti",           NULL,
1.294     schwarze  277:        "ab",           "ad",           "af",           "aln",
                    278:        "als",          "am",           "am1",          "ami",
                    279:        "ami1",         "as",           "as1",          "asciify",
                    280:        "backtrace",    "bd",           "bleedat",      "blm",
                    281:         "box",         "boxa",         "bp",           "BP",
                    282:        "break",        "breakchar",    "brnl",         "brp",
1.305     schwarze  283:        "brpnl",        "c2",           "cc",
1.294     schwarze  284:        "cf",           "cflags",       "ch",           "char",
                    285:        "chop",         "class",        "close",        "CL",
                    286:        "color",        "composite",    "continue",     "cp",
                    287:        "cropat",       "cs",           "cu",           "da",
                    288:        "dch",          "Dd",           "de",           "de1",
                    289:        "defcolor",     "dei",          "dei1",         "device",
                    290:        "devicem",      "di",           "do",           "ds",
                    291:        "ds1",          "dwh",          "dt",           "ec",
                    292:        "ecr",          "ecs",          "el",           "em",
                    293:        "EN",           "eo",           "EP",           "EQ",
                    294:        "errprint",     "ev",           "evc",          "ex",
                    295:        "fallback",     "fam",          "fc",           "fchar",
                    296:        "fcolor",       "fdeferlig",    "feature",      "fkern",
                    297:        "fl",           "flig",         "fp",           "fps",
                    298:        "fschar",       "fspacewidth",  "fspecial",     "ftr",
                    299:        "fzoom",        "gcolor",       "hc",           "hcode",
                    300:        "hidechar",     "hla",          "hlm",          "hpf",
                    301:        "hpfa",         "hpfcode",      "hw",           "hy",
                    302:        "hylang",       "hylen",        "hym",          "hypp",
                    303:        "hys",          "ie",           "if",           "ig",
                    304:        "index",        "it",           "itc",          "IX",
                    305:        "kern",         "kernafter",    "kernbefore",   "kernpair",
                    306:        "lc",           "lc_ctype",     "lds",          "length",
                    307:        "letadj",       "lf",           "lg",           "lhang",
                    308:        "linetabs",     "lnr",          "lnrf",         "lpfx",
1.304     schwarze  309:        "ls",           "lsm",          "lt",
1.294     schwarze  310:        "mediasize",    "minss",        "mk",           "mso",
                    311:        "na",           "ne",           "nh",           "nhychar",
                    312:        "nm",           "nn",           "nop",          "nr",
                    313:        "nrf",          "nroff",        "ns",           "nx",
                    314:        "open",         "opena",        "os",           "output",
                    315:        "padj",         "papersize",    "pc",           "pev",
                    316:        "pi",           "PI",           "pl",           "pm",
1.312     schwarze  317:        "pn",           "pnr",          "ps",
1.294     schwarze  318:        "psbb",         "pshape",       "pso",          "ptr",
                    319:        "pvs",          "rchar",        "rd",           "recursionlimit",
1.309     schwarze  320:        "return",       "rfschar",      "rhang",
1.294     schwarze  321:        "rm",           "rn",           "rnn",          "rr",
                    322:        "rs",           "rt",           "schar",        "sentchar",
                    323:        "shc",          "shift",        "sizes",        "so",
                    324:        "spacewidth",   "special",      "spreadwarn",   "ss",
                    325:        "sty",          "substring",    "sv",           "sy",
1.300     schwarze  326:        "T&",           "tc",           "TE",
1.301     schwarze  327:        "TH",           "tkf",          "tl",
1.294     schwarze  328:        "tm",           "tm1",          "tmc",          "tr",
                    329:        "track",        "transchar",    "trf",          "trimat",
                    330:        "trin",         "trnt",         "troff",        "TS",
                    331:        "uf",           "ul",           "unformat",     "unwatch",
                    332:        "unwatchn",     "vpt",          "vs",           "warn",
                    333:        "warnscale",    "watch",        "watchlength",  "watchn",
                    334:        "wh",           "while",        "write",        "writec",
                    335:        "writem",       "xflag",        ".",            NULL,
1.306     schwarze  336:        NULL,           "text",
1.294     schwarze  337:        "Dd",           "Dt",           "Os",           "Sh",
                    338:        "Ss",           "Pp",           "D1",           "Dl",
                    339:        "Bd",           "Ed",           "Bl",           "El",
                    340:        "It",           "Ad",           "An",           "Ap",
                    341:        "Ar",           "Cd",           "Cm",           "Dv",
                    342:        "Er",           "Ev",           "Ex",           "Fa",
                    343:        "Fd",           "Fl",           "Fn",           "Ft",
                    344:        "Ic",           "In",           "Li",           "Nd",
                    345:        "Nm",           "Op",           "Ot",           "Pa",
                    346:        "Rv",           "St",           "Va",           "Vt",
                    347:        "Xr",           "%A",           "%B",           "%D",
                    348:        "%I",           "%J",           "%N",           "%O",
                    349:        "%P",           "%R",           "%T",           "%V",
                    350:        "Ac",           "Ao",           "Aq",           "At",
                    351:        "Bc",           "Bf",           "Bo",           "Bq",
                    352:        "Bsx",          "Bx",           "Db",           "Dc",
                    353:        "Do",           "Dq",           "Ec",           "Ef",
                    354:        "Em",           "Eo",           "Fx",           "Ms",
                    355:        "No",           "Ns",           "Nx",           "Ox",
                    356:        "Pc",           "Pf",           "Po",           "Pq",
                    357:        "Qc",           "Ql",           "Qo",           "Qq",
                    358:        "Re",           "Rs",           "Sc",           "So",
                    359:        "Sq",           "Sm",           "Sx",           "Sy",
                    360:        "Tn",           "Ux",           "Xc",           "Xo",
                    361:        "Fo",           "Fc",           "Oo",           "Oc",
                    362:        "Bk",           "Ek",           "Bt",           "Hf",
                    363:        "Fr",           "Ud",           "Lb",           "Lp",
                    364:        "Lk",           "Mt",           "Brq",          "Bro",
                    365:        "Brc",          "%C",           "Es",           "En",
1.299     schwarze  366:        "Dx",           "%Q",           "%U",           "Ta",
1.369     schwarze  367:        "Tg",           NULL,
1.294     schwarze  368:        "TH",           "SH",           "SS",           "TP",
1.332     schwarze  369:        "TQ",
1.294     schwarze  370:        "LP",           "PP",           "P",            "IP",
                    371:        "HP",           "SM",           "SB",           "BI",
                    372:        "IB",           "BR",           "RB",           "R",
                    373:        "B",            "I",            "IR",           "RI",
                    374:        "RE",           "RS",           "DT",           "UC",
1.297     schwarze  375:        "PD",           "AT",           "in",
1.333     schwarze  376:        "SY",           "YS",           "OP",
                    377:        "EX",           "EE",           "UR",
1.317     schwarze  378:        "UE",           "MT",           "ME",           NULL
1.294     schwarze  379: };
                    380: const  char *const *roff_name = __roff_name;
                    381:
                    382: static struct roffmac   roffs[TOKEN_NONE] = {
1.358     schwarze  383:        { roff_noarg, NULL, NULL, 0 },  /* br */
1.305     schwarze  384:        { roff_onearg, NULL, NULL, 0 },  /* ce */
1.358     schwarze  385:        { roff_noarg, NULL, NULL, 0 },  /* fi */
1.297     schwarze  386:        { roff_onearg, NULL, NULL, 0 },  /* ft */
1.298     schwarze  387:        { roff_onearg, NULL, NULL, 0 },  /* ll */
1.384     schwarze  388:        { roff_mc, NULL, NULL, 0 },  /* mc */
1.358     schwarze  389:        { roff_noarg, NULL, NULL, 0 },  /* nf */
1.312     schwarze  390:        { roff_onearg, NULL, NULL, 0 },  /* po */
1.309     schwarze  391:        { roff_onearg, NULL, NULL, 0 },  /* rj */
1.299     schwarze  392:        { roff_onearg, NULL, NULL, 0 },  /* sp */
1.300     schwarze  393:        { roff_manyarg, NULL, NULL, 0 },  /* ta */
1.301     schwarze  394:        { roff_onearg, NULL, NULL, 0 },  /* ti */
1.296     schwarze  395:        { NULL, NULL, NULL, 0 },  /* ROFF_MAX */
1.295     schwarze  396:        { roff_unsupp, NULL, NULL, 0 },  /* ab */
                    397:        { roff_line_ignore, NULL, NULL, 0 },  /* ad */
                    398:        { roff_line_ignore, NULL, NULL, 0 },  /* af */
                    399:        { roff_unsupp, NULL, NULL, 0 },  /* aln */
1.311     schwarze  400:        { roff_als, NULL, NULL, 0 },  /* als */
1.295     schwarze  401:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* am */
                    402:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* am1 */
                    403:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* ami */
                    404:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* ami1 */
                    405:        { roff_ds, NULL, NULL, 0 },  /* as */
                    406:        { roff_ds, NULL, NULL, 0 },  /* as1 */
                    407:        { roff_unsupp, NULL, NULL, 0 },  /* asciify */
                    408:        { roff_line_ignore, NULL, NULL, 0 },  /* backtrace */
                    409:        { roff_line_ignore, NULL, NULL, 0 },  /* bd */
                    410:        { roff_line_ignore, NULL, NULL, 0 },  /* bleedat */
                    411:        { roff_unsupp, NULL, NULL, 0 },  /* blm */
                    412:        { roff_unsupp, NULL, NULL, 0 },  /* box */
                    413:        { roff_unsupp, NULL, NULL, 0 },  /* boxa */
                    414:        { roff_line_ignore, NULL, NULL, 0 },  /* bp */
                    415:        { roff_unsupp, NULL, NULL, 0 },  /* BP */
1.364     schwarze  416:        { roff_break, NULL, NULL, 0 },  /* break */
1.295     schwarze  417:        { roff_line_ignore, NULL, NULL, 0 },  /* breakchar */
                    418:        { roff_line_ignore, NULL, NULL, 0 },  /* brnl */
1.358     schwarze  419:        { roff_noarg, NULL, NULL, 0 },  /* brp */
1.295     schwarze  420:        { roff_line_ignore, NULL, NULL, 0 },  /* brpnl */
                    421:        { roff_unsupp, NULL, NULL, 0 },  /* c2 */
                    422:        { roff_cc, NULL, NULL, 0 },  /* cc */
                    423:        { roff_insec, NULL, NULL, 0 },  /* cf */
                    424:        { roff_line_ignore, NULL, NULL, 0 },  /* cflags */
                    425:        { roff_line_ignore, NULL, NULL, 0 },  /* ch */
1.341     schwarze  426:        { roff_char, NULL, NULL, 0 },  /* char */
1.295     schwarze  427:        { roff_unsupp, NULL, NULL, 0 },  /* chop */
                    428:        { roff_line_ignore, NULL, NULL, 0 },  /* class */
                    429:        { roff_insec, NULL, NULL, 0 },  /* close */
                    430:        { roff_unsupp, NULL, NULL, 0 },  /* CL */
                    431:        { roff_line_ignore, NULL, NULL, 0 },  /* color */
                    432:        { roff_unsupp, NULL, NULL, 0 },  /* composite */
                    433:        { roff_unsupp, NULL, NULL, 0 },  /* continue */
                    434:        { roff_line_ignore, NULL, NULL, 0 },  /* cp */
                    435:        { roff_line_ignore, NULL, NULL, 0 },  /* cropat */
                    436:        { roff_line_ignore, NULL, NULL, 0 },  /* cs */
                    437:        { roff_line_ignore, NULL, NULL, 0 },  /* cu */
                    438:        { roff_unsupp, NULL, NULL, 0 },  /* da */
                    439:        { roff_unsupp, NULL, NULL, 0 },  /* dch */
                    440:        { roff_Dd, NULL, NULL, 0 },  /* Dd */
                    441:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* de */
                    442:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* de1 */
                    443:        { roff_line_ignore, NULL, NULL, 0 },  /* defcolor */
                    444:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* dei */
                    445:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* dei1 */
                    446:        { roff_unsupp, NULL, NULL, 0 },  /* device */
                    447:        { roff_unsupp, NULL, NULL, 0 },  /* devicem */
                    448:        { roff_unsupp, NULL, NULL, 0 },  /* di */
                    449:        { roff_unsupp, NULL, NULL, 0 },  /* do */
                    450:        { roff_ds, NULL, NULL, 0 },  /* ds */
                    451:        { roff_ds, NULL, NULL, 0 },  /* ds1 */
                    452:        { roff_unsupp, NULL, NULL, 0 },  /* dwh */
                    453:        { roff_unsupp, NULL, NULL, 0 },  /* dt */
1.303     schwarze  454:        { roff_ec, NULL, NULL, 0 },  /* ec */
1.295     schwarze  455:        { roff_unsupp, NULL, NULL, 0 },  /* ecr */
                    456:        { roff_unsupp, NULL, NULL, 0 },  /* ecs */
                    457:        { roff_cond, roff_cond_text, roff_cond_sub, ROFFMAC_STRUCT },  /* el */
                    458:        { roff_unsupp, NULL, NULL, 0 },  /* em */
                    459:        { roff_EN, NULL, NULL, 0 },  /* EN */
1.303     schwarze  460:        { roff_eo, NULL, NULL, 0 },  /* eo */
1.295     schwarze  461:        { roff_unsupp, NULL, NULL, 0 },  /* EP */
                    462:        { roff_EQ, NULL, NULL, 0 },  /* EQ */
                    463:        { roff_line_ignore, NULL, NULL, 0 },  /* errprint */
                    464:        { roff_unsupp, NULL, NULL, 0 },  /* ev */
                    465:        { roff_unsupp, NULL, NULL, 0 },  /* evc */
                    466:        { roff_unsupp, NULL, NULL, 0 },  /* ex */
                    467:        { roff_line_ignore, NULL, NULL, 0 },  /* fallback */
                    468:        { roff_line_ignore, NULL, NULL, 0 },  /* fam */
                    469:        { roff_unsupp, NULL, NULL, 0 },  /* fc */
                    470:        { roff_unsupp, NULL, NULL, 0 },  /* fchar */
                    471:        { roff_line_ignore, NULL, NULL, 0 },  /* fcolor */
                    472:        { roff_line_ignore, NULL, NULL, 0 },  /* fdeferlig */
                    473:        { roff_line_ignore, NULL, NULL, 0 },  /* feature */
                    474:        { roff_line_ignore, NULL, NULL, 0 },  /* fkern */
                    475:        { roff_line_ignore, NULL, NULL, 0 },  /* fl */
                    476:        { roff_line_ignore, NULL, NULL, 0 },  /* flig */
                    477:        { roff_line_ignore, NULL, NULL, 0 },  /* fp */
                    478:        { roff_line_ignore, NULL, NULL, 0 },  /* fps */
                    479:        { roff_unsupp, NULL, NULL, 0 },  /* fschar */
                    480:        { roff_line_ignore, NULL, NULL, 0 },  /* fspacewidth */
                    481:        { roff_line_ignore, NULL, NULL, 0 },  /* fspecial */
                    482:        { roff_line_ignore, NULL, NULL, 0 },  /* ftr */
                    483:        { roff_line_ignore, NULL, NULL, 0 },  /* fzoom */
                    484:        { roff_line_ignore, NULL, NULL, 0 },  /* gcolor */
                    485:        { roff_line_ignore, NULL, NULL, 0 },  /* hc */
                    486:        { roff_line_ignore, NULL, NULL, 0 },  /* hcode */
                    487:        { roff_line_ignore, NULL, NULL, 0 },  /* hidechar */
                    488:        { roff_line_ignore, NULL, NULL, 0 },  /* hla */
                    489:        { roff_line_ignore, NULL, NULL, 0 },  /* hlm */
                    490:        { roff_line_ignore, NULL, NULL, 0 },  /* hpf */
                    491:        { roff_line_ignore, NULL, NULL, 0 },  /* hpfa */
                    492:        { roff_line_ignore, NULL, NULL, 0 },  /* hpfcode */
                    493:        { roff_line_ignore, NULL, NULL, 0 },  /* hw */
                    494:        { roff_line_ignore, NULL, NULL, 0 },  /* hy */
                    495:        { roff_line_ignore, NULL, NULL, 0 },  /* hylang */
                    496:        { roff_line_ignore, NULL, NULL, 0 },  /* hylen */
                    497:        { roff_line_ignore, NULL, NULL, 0 },  /* hym */
                    498:        { roff_line_ignore, NULL, NULL, 0 },  /* hypp */
                    499:        { roff_line_ignore, NULL, NULL, 0 },  /* hys */
                    500:        { roff_cond, roff_cond_text, roff_cond_sub, ROFFMAC_STRUCT },  /* ie */
                    501:        { roff_cond, roff_cond_text, roff_cond_sub, ROFFMAC_STRUCT },  /* if */
                    502:        { roff_block, roff_block_text, roff_block_sub, 0 },  /* ig */
                    503:        { roff_unsupp, NULL, NULL, 0 },  /* index */
                    504:        { roff_it, NULL, NULL, 0 },  /* it */
                    505:        { roff_unsupp, NULL, NULL, 0 },  /* itc */
                    506:        { roff_line_ignore, NULL, NULL, 0 },  /* IX */
                    507:        { roff_line_ignore, NULL, NULL, 0 },  /* kern */
                    508:        { roff_line_ignore, NULL, NULL, 0 },  /* kernafter */
                    509:        { roff_line_ignore, NULL, NULL, 0 },  /* kernbefore */
                    510:        { roff_line_ignore, NULL, NULL, 0 },  /* kernpair */
                    511:        { roff_unsupp, NULL, NULL, 0 },  /* lc */
                    512:        { roff_unsupp, NULL, NULL, 0 },  /* lc_ctype */
                    513:        { roff_unsupp, NULL, NULL, 0 },  /* lds */
                    514:        { roff_unsupp, NULL, NULL, 0 },  /* length */
                    515:        { roff_line_ignore, NULL, NULL, 0 },  /* letadj */
                    516:        { roff_insec, NULL, NULL, 0 },  /* lf */
                    517:        { roff_line_ignore, NULL, NULL, 0 },  /* lg */
                    518:        { roff_line_ignore, NULL, NULL, 0 },  /* lhang */
                    519:        { roff_unsupp, NULL, NULL, 0 },  /* linetabs */
                    520:        { roff_unsupp, NULL, NULL, 0 },  /* lnr */
                    521:        { roff_unsupp, NULL, NULL, 0 },  /* lnrf */
                    522:        { roff_unsupp, NULL, NULL, 0 },  /* lpfx */
                    523:        { roff_line_ignore, NULL, NULL, 0 },  /* ls */
                    524:        { roff_unsupp, NULL, NULL, 0 },  /* lsm */
                    525:        { roff_line_ignore, NULL, NULL, 0 },  /* lt */
                    526:        { roff_line_ignore, NULL, NULL, 0 },  /* mediasize */
                    527:        { roff_line_ignore, NULL, NULL, 0 },  /* minss */
                    528:        { roff_line_ignore, NULL, NULL, 0 },  /* mk */
                    529:        { roff_insec, NULL, NULL, 0 },  /* mso */
                    530:        { roff_line_ignore, NULL, NULL, 0 },  /* na */
                    531:        { roff_line_ignore, NULL, NULL, 0 },  /* ne */
                    532:        { roff_line_ignore, NULL, NULL, 0 },  /* nh */
                    533:        { roff_line_ignore, NULL, NULL, 0 },  /* nhychar */
                    534:        { roff_unsupp, NULL, NULL, 0 },  /* nm */
                    535:        { roff_unsupp, NULL, NULL, 0 },  /* nn */
1.330     schwarze  536:        { roff_nop, NULL, NULL, 0 },  /* nop */
1.295     schwarze  537:        { roff_nr, NULL, NULL, 0 },  /* nr */
                    538:        { roff_unsupp, NULL, NULL, 0 },  /* nrf */
                    539:        { roff_line_ignore, NULL, NULL, 0 },  /* nroff */
                    540:        { roff_line_ignore, NULL, NULL, 0 },  /* ns */
                    541:        { roff_insec, NULL, NULL, 0 },  /* nx */
                    542:        { roff_insec, NULL, NULL, 0 },  /* open */
                    543:        { roff_insec, NULL, NULL, 0 },  /* opena */
                    544:        { roff_line_ignore, NULL, NULL, 0 },  /* os */
                    545:        { roff_unsupp, NULL, NULL, 0 },  /* output */
                    546:        { roff_line_ignore, NULL, NULL, 0 },  /* padj */
                    547:        { roff_line_ignore, NULL, NULL, 0 },  /* papersize */
                    548:        { roff_line_ignore, NULL, NULL, 0 },  /* pc */
                    549:        { roff_line_ignore, NULL, NULL, 0 },  /* pev */
                    550:        { roff_insec, NULL, NULL, 0 },  /* pi */
                    551:        { roff_unsupp, NULL, NULL, 0 },  /* PI */
                    552:        { roff_line_ignore, NULL, NULL, 0 },  /* pl */
                    553:        { roff_line_ignore, NULL, NULL, 0 },  /* pm */
                    554:        { roff_line_ignore, NULL, NULL, 0 },  /* pn */
                    555:        { roff_line_ignore, NULL, NULL, 0 },  /* pnr */
                    556:        { roff_line_ignore, NULL, NULL, 0 },  /* ps */
                    557:        { roff_unsupp, NULL, NULL, 0 },  /* psbb */
                    558:        { roff_unsupp, NULL, NULL, 0 },  /* pshape */
                    559:        { roff_insec, NULL, NULL, 0 },  /* pso */
                    560:        { roff_line_ignore, NULL, NULL, 0 },  /* ptr */
                    561:        { roff_line_ignore, NULL, NULL, 0 },  /* pvs */
                    562:        { roff_unsupp, NULL, NULL, 0 },  /* rchar */
                    563:        { roff_line_ignore, NULL, NULL, 0 },  /* rd */
                    564:        { roff_line_ignore, NULL, NULL, 0 },  /* recursionlimit */
1.339     schwarze  565:        { roff_return, NULL, NULL, 0 },  /* return */
1.295     schwarze  566:        { roff_unsupp, NULL, NULL, 0 },  /* rfschar */
                    567:        { roff_line_ignore, NULL, NULL, 0 },  /* rhang */
                    568:        { roff_rm, NULL, NULL, 0 },  /* rm */
1.306     schwarze  569:        { roff_rn, NULL, NULL, 0 },  /* rn */
1.295     schwarze  570:        { roff_unsupp, NULL, NULL, 0 },  /* rnn */
                    571:        { roff_rr, NULL, NULL, 0 },  /* rr */
                    572:        { roff_line_ignore, NULL, NULL, 0 },  /* rs */
                    573:        { roff_line_ignore, NULL, NULL, 0 },  /* rt */
                    574:        { roff_unsupp, NULL, NULL, 0 },  /* schar */
                    575:        { roff_line_ignore, NULL, NULL, 0 },  /* sentchar */
                    576:        { roff_line_ignore, NULL, NULL, 0 },  /* shc */
1.339     schwarze  577:        { roff_shift, NULL, NULL, 0 },  /* shift */
1.295     schwarze  578:        { roff_line_ignore, NULL, NULL, 0 },  /* sizes */
                    579:        { roff_so, NULL, NULL, 0 },  /* so */
                    580:        { roff_line_ignore, NULL, NULL, 0 },  /* spacewidth */
                    581:        { roff_line_ignore, NULL, NULL, 0 },  /* special */
                    582:        { roff_line_ignore, NULL, NULL, 0 },  /* spreadwarn */
                    583:        { roff_line_ignore, NULL, NULL, 0 },  /* ss */
                    584:        { roff_line_ignore, NULL, NULL, 0 },  /* sty */
                    585:        { roff_unsupp, NULL, NULL, 0 },  /* substring */
                    586:        { roff_line_ignore, NULL, NULL, 0 },  /* sv */
                    587:        { roff_insec, NULL, NULL, 0 },  /* sy */
                    588:        { roff_T_, NULL, NULL, 0 },  /* T& */
                    589:        { roff_unsupp, NULL, NULL, 0 },  /* tc */
                    590:        { roff_TE, NULL, NULL, 0 },  /* TE */
1.315     schwarze  591:        { roff_Dd, NULL, NULL, 0 },  /* TH */
1.295     schwarze  592:        { roff_line_ignore, NULL, NULL, 0 },  /* tkf */
                    593:        { roff_unsupp, NULL, NULL, 0 },  /* tl */
                    594:        { roff_line_ignore, NULL, NULL, 0 },  /* tm */
                    595:        { roff_line_ignore, NULL, NULL, 0 },  /* tm1 */
                    596:        { roff_line_ignore, NULL, NULL, 0 },  /* tmc */
                    597:        { roff_tr, NULL, NULL, 0 },  /* tr */
                    598:        { roff_line_ignore, NULL, NULL, 0 },  /* track */
                    599:        { roff_line_ignore, NULL, NULL, 0 },  /* transchar */
                    600:        { roff_insec, NULL, NULL, 0 },  /* trf */
                    601:        { roff_line_ignore, NULL, NULL, 0 },  /* trimat */
                    602:        { roff_unsupp, NULL, NULL, 0 },  /* trin */
                    603:        { roff_unsupp, NULL, NULL, 0 },  /* trnt */
                    604:        { roff_line_ignore, NULL, NULL, 0 },  /* troff */
                    605:        { roff_TS, NULL, NULL, 0 },  /* TS */
                    606:        { roff_line_ignore, NULL, NULL, 0 },  /* uf */
                    607:        { roff_line_ignore, NULL, NULL, 0 },  /* ul */
                    608:        { roff_unsupp, NULL, NULL, 0 },  /* unformat */
                    609:        { roff_line_ignore, NULL, NULL, 0 },  /* unwatch */
                    610:        { roff_line_ignore, NULL, NULL, 0 },  /* unwatchn */
                    611:        { roff_line_ignore, NULL, NULL, 0 },  /* vpt */
                    612:        { roff_line_ignore, NULL, NULL, 0 },  /* vs */
                    613:        { roff_line_ignore, NULL, NULL, 0 },  /* warn */
                    614:        { roff_line_ignore, NULL, NULL, 0 },  /* warnscale */
                    615:        { roff_line_ignore, NULL, NULL, 0 },  /* watch */
                    616:        { roff_line_ignore, NULL, NULL, 0 },  /* watchlength */
                    617:        { roff_line_ignore, NULL, NULL, 0 },  /* watchn */
                    618:        { roff_unsupp, NULL, NULL, 0 },  /* wh */
1.340     schwarze  619:        { roff_cond, roff_cond_text, roff_cond_sub, ROFFMAC_STRUCT }, /*while*/
1.295     schwarze  620:        { roff_insec, NULL, NULL, 0 },  /* write */
                    621:        { roff_insec, NULL, NULL, 0 },  /* writec */
                    622:        { roff_insec, NULL, NULL, 0 },  /* writem */
                    623:        { roff_line_ignore, NULL, NULL, 0 },  /* xflag */
                    624:        { roff_cblock, NULL, NULL, 0 },  /* . */
1.306     schwarze  625:        { roff_renamed, NULL, NULL, 0 },
1.295     schwarze  626:        { roff_userdef, NULL, NULL, 0 }
1.67      kristaps  627: };
                    628:
1.141     kristaps  629: /* Array of injected predefined strings. */
                    630: #define        PREDEFS_MAX      38
                    631: static const struct predef predefs[PREDEFS_MAX] = {
                    632: #include "predefs.in"
                    633: };
                    634:
1.305     schwarze  635: static int      roffce_lines;  /* number of input lines to center */
                    636: static struct roff_node *roffce_node;  /* active request */
1.178     schwarze  637: static int      roffit_lines;  /* number of lines to delay */
                    638: static char    *roffit_macro;  /* nil-terminated macro line */
                    639:
1.207     schwarze  640:
1.266     schwarze  641: /* --- request table ------------------------------------------------------ */
                    642:
1.295     schwarze  643: struct ohash *
                    644: roffhash_alloc(enum roff_tok mintok, enum roff_tok maxtok)
1.85      kristaps  645: {
1.295     schwarze  646:        struct ohash    *htab;
                    647:        struct roffreq  *req;
                    648:        enum roff_tok    tok;
                    649:        size_t           sz;
                    650:        unsigned int     slot;
1.85      kristaps  651:
1.295     schwarze  652:        htab = mandoc_malloc(sizeof(*htab));
                    653:        mandoc_ohash_init(htab, 8, offsetof(struct roffreq, name));
1.85      kristaps  654:
1.295     schwarze  655:        for (tok = mintok; tok < maxtok; tok++) {
1.296     schwarze  656:                if (roff_name[tok] == NULL)
                    657:                        continue;
1.295     schwarze  658:                sz = strlen(roff_name[tok]);
                    659:                req = mandoc_malloc(sizeof(*req) + sz + 1);
                    660:                req->tok = tok;
                    661:                memcpy(req->name, roff_name[tok], sz + 1);
                    662:                slot = ohash_qlookup(htab, req->name);
                    663:                ohash_insert(htab, slot, req);
1.85      kristaps  664:        }
1.295     schwarze  665:        return htab;
1.85      kristaps  666: }
                    667:
1.295     schwarze  668: void
                    669: roffhash_free(struct ohash *htab)
1.67      kristaps  670: {
1.295     schwarze  671:        struct roffreq  *req;
                    672:        unsigned int     slot;
1.67      kristaps  673:
1.295     schwarze  674:        if (htab == NULL)
                    675:                return;
                    676:        for (req = ohash_first(htab, &slot); req != NULL;
                    677:             req = ohash_next(htab, &slot))
                    678:                free(req);
                    679:        ohash_delete(htab);
                    680:        free(htab);
                    681: }
                    682:
                    683: enum roff_tok
                    684: roffhash_find(struct ohash *htab, const char *name, size_t sz)
                    685: {
                    686:        struct roffreq  *req;
                    687:        const char      *end;
                    688:
                    689:        if (sz) {
                    690:                end = name + sz;
                    691:                req = ohash_find(htab, ohash_qlookupi(htab, name, &end));
                    692:        } else
                    693:                req = ohash_find(htab, ohash_qlookup(htab, name));
                    694:        return req == NULL ? TOKEN_NONE : req->tok;
1.67      kristaps  695: }
                    696:
1.266     schwarze  697: /* --- stack of request blocks -------------------------------------------- */
                    698:
1.67      kristaps  699: /*
                    700:  * Pop the current node off of the stack of roff instructions currently
1.364     schwarze  701:  * pending.  Return 1 if it is a loop or 0 otherwise.
1.67      kristaps  702:  */
1.340     schwarze  703: static int
1.67      kristaps  704: roffnode_pop(struct roff *r)
                    705: {
                    706:        struct roffnode *p;
1.340     schwarze  707:        int              inloop;
1.67      kristaps  708:
1.207     schwarze  709:        p = r->last;
1.340     schwarze  710:        inloop = p->tok == ROFF_while;
                    711:        r->last = p->parent;
1.106     kristaps  712:        free(p->name);
                    713:        free(p->end);
1.67      kristaps  714:        free(p);
1.340     schwarze  715:        return inloop;
1.67      kristaps  716: }
                    717:
                    718: /*
                    719:  * Push a roff node onto the instruction stack.  This must later be
                    720:  * removed with roffnode_pop().
                    721:  */
1.98      schwarze  722: static void
1.294     schwarze  723: roffnode_push(struct roff *r, enum roff_tok tok, const char *name,
1.106     kristaps  724:                int line, int col)
1.67      kristaps  725: {
                    726:        struct roffnode *p;
                    727:
1.98      schwarze  728:        p = mandoc_calloc(1, sizeof(struct roffnode));
1.67      kristaps  729:        p->tok = tok;
1.106     kristaps  730:        if (name)
                    731:                p->name = mandoc_strdup(name);
1.67      kristaps  732:        p->parent = r->last;
                    733:        p->line = line;
                    734:        p->col = col;
1.198     schwarze  735:        p->rule = p->parent ? p->parent->rule : 0;
1.67      kristaps  736:
                    737:        r->last = p;
                    738: }
                    739:
1.266     schwarze  740: /* --- roff parser state data management ---------------------------------- */
                    741:
1.67      kristaps  742: static void
                    743: roff_free1(struct roff *r)
                    744: {
1.167     kristaps  745:        int              i;
1.67      kristaps  746:
1.346     schwarze  747:        tbl_free(r->first_tbl);
1.113     kristaps  748:        r->first_tbl = r->last_tbl = r->tbl = NULL;
                    749:
1.347     schwarze  750:        eqn_free(r->last_eqn);
1.319     schwarze  751:        r->last_eqn = r->eqn = NULL;
1.125     kristaps  752:
1.339     schwarze  753:        while (r->mstackpos >= 0)
                    754:                roff_userret(r);
                    755:
1.67      kristaps  756:        while (r->last)
                    757:                roffnode_pop(r);
1.109     kristaps  758:
1.223     schwarze  759:        free (r->rstack);
                    760:        r->rstack = NULL;
                    761:        r->rstacksz = 0;
                    762:        r->rstackpos = -1;
                    763:
                    764:        roff_freereg(r->regtab);
                    765:        r->regtab = NULL;
                    766:
1.167     kristaps  767:        roff_freestr(r->strtab);
1.306     schwarze  768:        roff_freestr(r->rentab);
1.167     kristaps  769:        roff_freestr(r->xmbtab);
1.306     schwarze  770:        r->strtab = r->rentab = r->xmbtab = NULL;
1.167     kristaps  771:
                    772:        if (r->xtab)
                    773:                for (i = 0; i < 128; i++)
                    774:                        free(r->xtab[i].p);
                    775:        free(r->xtab);
                    776:        r->xtab = NULL;
1.67      kristaps  777: }
                    778:
                    779: void
                    780: roff_reset(struct roff *r)
                    781: {
                    782:        roff_free1(r);
1.367     schwarze  783:        r->options |= MPARSE_COMMENT;
1.227     schwarze  784:        r->format = r->options & (MPARSE_MDOC | MPARSE_MAN);
1.303     schwarze  785:        r->control = '\0';
                    786:        r->escape = '\\';
1.307     schwarze  787:        roffce_lines = 0;
                    788:        roffce_node = NULL;
                    789:        roffit_lines = 0;
                    790:        roffit_macro = NULL;
1.67      kristaps  791: }
                    792:
                    793: void
                    794: roff_free(struct roff *r)
                    795: {
1.366     schwarze  796:        int              i;
1.339     schwarze  797:
1.67      kristaps  798:        roff_free1(r);
1.339     schwarze  799:        for (i = 0; i < r->mstacksz; i++)
                    800:                free(r->mstack[i].argv);
                    801:        free(r->mstack);
1.295     schwarze  802:        roffhash_free(r->reqtab);
1.67      kristaps  803:        free(r);
                    804: }
                    805:
                    806: struct roff *
1.351     schwarze  807: roff_alloc(int options)
1.67      kristaps  808: {
                    809:        struct roff     *r;
                    810:
1.98      schwarze  811:        r = mandoc_calloc(1, sizeof(struct roff));
1.328     schwarze  812:        r->reqtab = roffhash_alloc(0, ROFF_RENAMED);
1.367     schwarze  813:        r->options = options | MPARSE_COMMENT;
1.227     schwarze  814:        r->format = options & (MPARSE_MDOC | MPARSE_MAN);
1.339     schwarze  815:        r->mstackpos = -1;
1.82      kristaps  816:        r->rstackpos = -1;
1.303     schwarze  817:        r->escape = '\\';
1.277     schwarze  818:        return r;
1.265     schwarze  819: }
                    820:
1.266     schwarze  821: /* --- syntax tree state data management ---------------------------------- */
                    822:
1.265     schwarze  823: static void
                    824: roff_man_free1(struct roff_man *man)
                    825: {
1.356     schwarze  826:        if (man->meta.first != NULL)
                    827:                roff_node_delete(man, man->meta.first);
1.265     schwarze  828:        free(man->meta.msec);
                    829:        free(man->meta.vol);
                    830:        free(man->meta.os);
                    831:        free(man->meta.arch);
                    832:        free(man->meta.title);
                    833:        free(man->meta.name);
                    834:        free(man->meta.date);
1.356     schwarze  835:        free(man->meta.sodest);
1.265     schwarze  836: }
                    837:
1.357     schwarze  838: void
                    839: roff_state_reset(struct roff_man *man)
                    840: {
                    841:        man->last = man->meta.first;
                    842:        man->last_es = NULL;
                    843:        man->flags = 0;
                    844:        man->lastsec = man->lastnamed = SEC_NONE;
                    845:        man->next = ROFF_NEXT_CHILD;
                    846:        roff_setreg(man->roff, "nS", 0, '=');
                    847: }
                    848:
1.265     schwarze  849: static void
                    850: roff_man_alloc1(struct roff_man *man)
                    851: {
                    852:        memset(&man->meta, 0, sizeof(man->meta));
1.356     schwarze  853:        man->meta.first = mandoc_calloc(1, sizeof(*man->meta.first));
                    854:        man->meta.first->type = ROFFT_ROOT;
                    855:        man->meta.macroset = MACROSET_NONE;
1.357     schwarze  856:        roff_state_reset(man);
1.265     schwarze  857: }
                    858:
                    859: void
                    860: roff_man_reset(struct roff_man *man)
                    861: {
                    862:        roff_man_free1(man);
                    863:        roff_man_alloc1(man);
                    864: }
                    865:
                    866: void
                    867: roff_man_free(struct roff_man *man)
                    868: {
                    869:        roff_man_free1(man);
1.380     schwarze  870:        free(man->os_r);
1.265     schwarze  871:        free(man);
                    872: }
                    873:
                    874: struct roff_man *
1.351     schwarze  875: roff_man_alloc(struct roff *roff, const char *os_s, int quick)
1.265     schwarze  876: {
                    877:        struct roff_man *man;
                    878:
                    879:        man = mandoc_calloc(1, sizeof(*man));
                    880:        man->roff = roff;
1.316     schwarze  881:        man->os_s = os_s;
1.265     schwarze  882:        man->quick = quick;
                    883:        roff_man_alloc1(man);
1.296     schwarze  884:        roff->man = man;
1.277     schwarze  885:        return man;
1.67      kristaps  886: }
                    887:
1.266     schwarze  888: /* --- syntax tree handling ----------------------------------------------- */
                    889:
                    890: struct roff_node *
                    891: roff_node_alloc(struct roff_man *man, int line, int pos,
                    892:        enum roff_type type, int tok)
                    893: {
                    894:        struct roff_node        *n;
                    895:
                    896:        n = mandoc_calloc(1, sizeof(*n));
                    897:        n->line = line;
                    898:        n->pos = pos;
                    899:        n->tok = tok;
                    900:        n->type = type;
                    901:        n->sec = man->lastsec;
                    902:
                    903:        if (man->flags & MDOC_SYNOPSIS)
1.285     schwarze  904:                n->flags |= NODE_SYNPRETTY;
1.266     schwarze  905:        else
1.285     schwarze  906:                n->flags &= ~NODE_SYNPRETTY;
1.360     schwarze  907:        if ((man->flags & (ROFF_NOFILL | ROFF_NONOFILL)) == ROFF_NOFILL)
1.359     schwarze  908:                n->flags |= NODE_NOFILL;
                    909:        else
                    910:                n->flags &= ~NODE_NOFILL;
1.266     schwarze  911:        if (man->flags & MDOC_NEWLINE)
1.285     schwarze  912:                n->flags |= NODE_LINE;
1.266     schwarze  913:        man->flags &= ~MDOC_NEWLINE;
                    914:
1.277     schwarze  915:        return n;
1.266     schwarze  916: }
                    917:
                    918: void
                    919: roff_node_append(struct roff_man *man, struct roff_node *n)
                    920: {
                    921:
                    922:        switch (man->next) {
                    923:        case ROFF_NEXT_SIBLING:
1.281     schwarze  924:                if (man->last->next != NULL) {
                    925:                        n->next = man->last->next;
                    926:                        man->last->next->prev = n;
                    927:                } else
                    928:                        man->last->parent->last = n;
1.266     schwarze  929:                man->last->next = n;
                    930:                n->prev = man->last;
                    931:                n->parent = man->last->parent;
                    932:                break;
                    933:        case ROFF_NEXT_CHILD:
1.287     schwarze  934:                if (man->last->child != NULL) {
                    935:                        n->next = man->last->child;
                    936:                        man->last->child->prev = n;
                    937:                } else
                    938:                        man->last->last = n;
1.266     schwarze  939:                man->last->child = n;
                    940:                n->parent = man->last;
                    941:                break;
                    942:        default:
                    943:                abort();
                    944:        }
1.282     schwarze  945:        man->last = n;
1.266     schwarze  946:
                    947:        switch (n->type) {
                    948:        case ROFFT_HEAD:
                    949:                n->parent->head = n;
                    950:                break;
                    951:        case ROFFT_BODY:
1.282     schwarze  952:                if (n->end != ENDBODY_NOT)
                    953:                        return;
1.266     schwarze  954:                n->parent->body = n;
                    955:                break;
                    956:        case ROFFT_TAIL:
                    957:                n->parent->tail = n;
                    958:                break;
                    959:        default:
1.282     schwarze  960:                return;
1.266     schwarze  961:        }
1.282     schwarze  962:
                    963:        /*
                    964:         * Copy over the normalised-data pointer of our parent.  Not
                    965:         * everybody has one, but copying a null pointer is fine.
                    966:         */
                    967:
                    968:        n->norm = n->parent->norm;
                    969:        assert(n->parent->type == ROFFT_BLOCK);
1.266     schwarze  970: }
                    971:
1.267     schwarze  972: void
                    973: roff_word_alloc(struct roff_man *man, int line, int pos, const char *word)
                    974: {
                    975:        struct roff_node        *n;
                    976:
                    977:        n = roff_node_alloc(man, line, pos, ROFFT_TEXT, TOKEN_NONE);
                    978:        n->string = roff_strdup(man->roff, word);
                    979:        roff_node_append(man, n);
1.286     schwarze  980:        n->flags |= NODE_VALID | NODE_ENDED;
1.267     schwarze  981:        man->next = ROFF_NEXT_SIBLING;
                    982: }
                    983:
                    984: void
                    985: roff_word_append(struct roff_man *man, const char *word)
                    986: {
                    987:        struct roff_node        *n;
                    988:        char                    *addstr, *newstr;
                    989:
                    990:        n = man->last;
                    991:        addstr = roff_strdup(man->roff, word);
                    992:        mandoc_asprintf(&newstr, "%s %s", n->string, addstr);
                    993:        free(addstr);
                    994:        free(n->string);
                    995:        n->string = newstr;
                    996:        man->next = ROFF_NEXT_SIBLING;
1.268     schwarze  997: }
                    998:
                    999: void
                   1000: roff_elem_alloc(struct roff_man *man, int line, int pos, int tok)
                   1001: {
                   1002:        struct roff_node        *n;
                   1003:
                   1004:        n = roff_node_alloc(man, line, pos, ROFFT_ELEM, tok);
                   1005:        roff_node_append(man, n);
                   1006:        man->next = ROFF_NEXT_CHILD;
                   1007: }
                   1008:
                   1009: struct roff_node *
                   1010: roff_block_alloc(struct roff_man *man, int line, int pos, int tok)
                   1011: {
                   1012:        struct roff_node        *n;
                   1013:
                   1014:        n = roff_node_alloc(man, line, pos, ROFFT_BLOCK, tok);
                   1015:        roff_node_append(man, n);
                   1016:        man->next = ROFF_NEXT_CHILD;
1.277     schwarze 1017:        return n;
1.267     schwarze 1018: }
                   1019:
1.266     schwarze 1020: struct roff_node *
                   1021: roff_head_alloc(struct roff_man *man, int line, int pos, int tok)
                   1022: {
                   1023:        struct roff_node        *n;
                   1024:
                   1025:        n = roff_node_alloc(man, line, pos, ROFFT_HEAD, tok);
                   1026:        roff_node_append(man, n);
                   1027:        man->next = ROFF_NEXT_CHILD;
1.277     schwarze 1028:        return n;
1.266     schwarze 1029: }
                   1030:
                   1031: struct roff_node *
                   1032: roff_body_alloc(struct roff_man *man, int line, int pos, int tok)
                   1033: {
                   1034:        struct roff_node        *n;
                   1035:
                   1036:        n = roff_node_alloc(man, line, pos, ROFFT_BODY, tok);
                   1037:        roff_node_append(man, n);
                   1038:        man->next = ROFF_NEXT_CHILD;
1.277     schwarze 1039:        return n;
1.267     schwarze 1040: }
                   1041:
1.321     schwarze 1042: static void
1.346     schwarze 1043: roff_addtbl(struct roff_man *man, int line, struct tbl_node *tbl)
1.267     schwarze 1044: {
                   1045:        struct roff_node        *n;
1.346     schwarze 1046:        struct tbl_span         *span;
1.267     schwarze 1047:
1.356     schwarze 1048:        if (man->meta.macroset == MACROSET_MAN)
1.302     schwarze 1049:                man_breakscope(man, ROFF_TS);
1.321     schwarze 1050:        while ((span = tbl_span(tbl)) != NULL) {
1.346     schwarze 1051:                n = roff_node_alloc(man, line, 0, ROFFT_TBL, TOKEN_NONE);
1.321     schwarze 1052:                n->span = span;
                   1053:                roff_node_append(man, n);
                   1054:                n->flags |= NODE_VALID | NODE_ENDED;
                   1055:                man->next = ROFF_NEXT_SIBLING;
                   1056:        }
1.266     schwarze 1057: }
                   1058:
                   1059: void
                   1060: roff_node_unlink(struct roff_man *man, struct roff_node *n)
                   1061: {
                   1062:
                   1063:        /* Adjust siblings. */
                   1064:
                   1065:        if (n->prev)
                   1066:                n->prev->next = n->next;
                   1067:        if (n->next)
                   1068:                n->next->prev = n->prev;
                   1069:
                   1070:        /* Adjust parent. */
                   1071:
                   1072:        if (n->parent != NULL) {
                   1073:                if (n->parent->child == n)
                   1074:                        n->parent->child = n->next;
                   1075:                if (n->parent->last == n)
                   1076:                        n->parent->last = n->prev;
                   1077:        }
                   1078:
                   1079:        /* Adjust parse point. */
                   1080:
                   1081:        if (man == NULL)
                   1082:                return;
                   1083:        if (man->last == n) {
                   1084:                if (n->prev == NULL) {
                   1085:                        man->last = n->parent;
                   1086:                        man->next = ROFF_NEXT_CHILD;
                   1087:                } else {
                   1088:                        man->last = n->prev;
                   1089:                        man->next = ROFF_NEXT_SIBLING;
                   1090:                }
                   1091:        }
1.356     schwarze 1092:        if (man->meta.first == n)
                   1093:                man->meta.first = NULL;
1.344     schwarze 1094: }
                   1095:
                   1096: void
                   1097: roff_node_relink(struct roff_man *man, struct roff_node *n)
                   1098: {
                   1099:        roff_node_unlink(man, n);
                   1100:        n->prev = n->next = NULL;
                   1101:        roff_node_append(man, n);
1.266     schwarze 1102: }
                   1103:
                   1104: void
                   1105: roff_node_free(struct roff_node *n)
                   1106: {
                   1107:
                   1108:        if (n->args != NULL)
                   1109:                mdoc_argv_free(n->args);
                   1110:        if (n->type == ROFFT_BLOCK || n->type == ROFFT_ELEM)
                   1111:                free(n->norm);
1.347     schwarze 1112:        eqn_box_free(n->eqn);
1.266     schwarze 1113:        free(n->string);
1.374     schwarze 1114:        free(n->tag);
1.266     schwarze 1115:        free(n);
                   1116: }
                   1117:
                   1118: void
                   1119: roff_node_delete(struct roff_man *man, struct roff_node *n)
                   1120: {
                   1121:
                   1122:        while (n->child != NULL)
                   1123:                roff_node_delete(man, n->child);
                   1124:        roff_node_unlink(man, n);
                   1125:        roff_node_free(n);
1.370     schwarze 1126: }
                   1127:
                   1128: int
                   1129: roff_node_transparent(struct roff_node *n)
                   1130: {
                   1131:        if (n == NULL)
                   1132:                return 0;
                   1133:        if (n->type == ROFFT_COMMENT || n->flags & NODE_NOPRT)
                   1134:                return 1;
1.373     schwarze 1135:        return roff_tok_transparent(n->tok);
                   1136: }
                   1137:
                   1138: int
                   1139: roff_tok_transparent(enum roff_tok tok)
                   1140: {
                   1141:        switch (tok) {
1.370     schwarze 1142:        case ROFF_ft:
                   1143:        case ROFF_ll:
                   1144:        case ROFF_mc:
                   1145:        case ROFF_po:
                   1146:        case ROFF_ta:
                   1147:        case MDOC_Db:
                   1148:        case MDOC_Es:
                   1149:        case MDOC_Sm:
                   1150:        case MDOC_Tg:
                   1151:        case MAN_DT:
                   1152:        case MAN_UC:
                   1153:        case MAN_PD:
                   1154:        case MAN_AT:
                   1155:                return 1;
                   1156:        default:
                   1157:                return 0;
                   1158:        }
                   1159: }
                   1160:
                   1161: struct roff_node *
                   1162: roff_node_child(struct roff_node *n)
                   1163: {
                   1164:        for (n = n->child; roff_node_transparent(n); n = n->next)
                   1165:                continue;
                   1166:        return n;
                   1167: }
                   1168:
                   1169: struct roff_node *
                   1170: roff_node_prev(struct roff_node *n)
                   1171: {
                   1172:        do {
                   1173:                n = n->prev;
                   1174:        } while (roff_node_transparent(n));
                   1175:        return n;
                   1176: }
                   1177:
                   1178: struct roff_node *
                   1179: roff_node_next(struct roff_node *n)
                   1180: {
                   1181:        do {
                   1182:                n = n->next;
                   1183:        } while (roff_node_transparent(n));
                   1184:        return n;
1.269     schwarze 1185: }
                   1186:
                   1187: void
                   1188: deroff(char **dest, const struct roff_node *n)
                   1189: {
                   1190:        char    *cp;
                   1191:        size_t   sz;
                   1192:
1.371     schwarze 1193:        if (n->string == NULL) {
1.269     schwarze 1194:                for (n = n->child; n != NULL; n = n->next)
                   1195:                        deroff(dest, n);
                   1196:                return;
                   1197:        }
                   1198:
1.288     schwarze 1199:        /* Skip leading whitespace. */
1.269     schwarze 1200:
1.288     schwarze 1201:        for (cp = n->string; *cp != '\0'; cp++) {
1.289     schwarze 1202:                if (cp[0] == '\\' && cp[1] != '\0' &&
                   1203:                    strchr(" %&0^|~", cp[1]) != NULL)
1.269     schwarze 1204:                        cp++;
1.288     schwarze 1205:                else if ( ! isspace((unsigned char)*cp))
1.269     schwarze 1206:                        break;
                   1207:        }
                   1208:
1.289     schwarze 1209:        /* Skip trailing backslash. */
                   1210:
                   1211:        sz = strlen(cp);
1.290     schwarze 1212:        if (sz > 0 && cp[sz - 1] == '\\')
1.289     schwarze 1213:                sz--;
                   1214:
1.269     schwarze 1215:        /* Skip trailing whitespace. */
                   1216:
1.289     schwarze 1217:        for (; sz; sz--)
1.269     schwarze 1218:                if ( ! isspace((unsigned char)cp[sz-1]))
                   1219:                        break;
                   1220:
                   1221:        /* Skip empty strings. */
                   1222:
                   1223:        if (sz == 0)
                   1224:                return;
                   1225:
                   1226:        if (*dest == NULL) {
                   1227:                *dest = mandoc_strndup(cp, sz);
                   1228:                return;
                   1229:        }
                   1230:
                   1231:        mandoc_asprintf(&cp, "%s %*s", *dest, (int)sz, cp);
                   1232:        free(*dest);
                   1233:        *dest = cp;
1.266     schwarze 1234: }
                   1235:
                   1236: /* --- main functions of the roff parser ---------------------------------- */
                   1237:
1.388     schwarze 1238: /*
                   1239:  * Save comments preceding the title macro, for example in order to
                   1240:  * preserve Copyright and license headers in HTML output,
                   1241:  * provide diagnostics about RCS ids and trailing whitespace in comments,
                   1242:  * then discard comments including preceding whitespace.
                   1243:  * This function also handles input line continuation.
                   1244:  */
1.387     schwarze 1245: static int
1.388     schwarze 1246: roff_parse_comment(struct roff *r, struct buf *buf, int ln, int pos, char ec)
1.387     schwarze 1247: {
                   1248:        struct roff_node *n;    /* used for header comments */
                   1249:        const char      *start; /* start of the string to process */
                   1250:        const char      *cp;    /* for RCS id parsing */
                   1251:        char            *stesc; /* start of an escape sequence ('\\') */
                   1252:        char            *ep;    /* end of comment string */
                   1253:        int              rcsid; /* kind of RCS id seen */
                   1254:
                   1255:        for (start = stesc = buf->buf + pos;; stesc++) {
1.388     schwarze 1256:                /*
                   1257:                 * XXX Ugly hack: Remove the newline character that
                   1258:                 * mparse_buf_r() appended to mark the end of input
                   1259:                 * if it is not preceded by an escape character.
                   1260:                 */
                   1261:                if (stesc[0] == '\n') {
                   1262:                        assert(stesc[1] == '\0');
                   1263:                        stesc[0] = '\0';
                   1264:                }
                   1265:
1.387     schwarze 1266:                /* The line ends without continuation or comment. */
                   1267:                if (stesc[0] == '\0')
                   1268:                        return ROFF_CONT;
                   1269:
                   1270:                /* Unescaped byte: skip it. */
1.388     schwarze 1271:                if (stesc[0] != ec)
1.387     schwarze 1272:                        continue;
                   1273:
1.388     schwarze 1274:                /*
                   1275:                 * XXX Ugly hack: Do not attempt to append another line
                   1276:                 * if the function mparse_buf_r() appended a newline
                   1277:                 * character to indicate the end of input.
                   1278:                 */
                   1279:                if (stesc[1] == '\n') {
                   1280:                        assert(stesc[2] == '\0');
                   1281:                        stesc[0] = '\0';
                   1282:                        return ROFF_CONT;
                   1283:                }
                   1284:
                   1285:                /*
                   1286:                 * An escape character at the end of an input line
                   1287:                 * requests line continuation.
                   1288:                 */
1.387     schwarze 1289:                if (stesc[1] == '\0') {
                   1290:                        stesc[0] = '\0';
                   1291:                        return ROFF_IGN | ROFF_APPEND;
                   1292:                }
                   1293:
                   1294:                /* Found a comment: process it. */
                   1295:                if (stesc[1] == '"' || stesc[1] == '#')
                   1296:                        break;
                   1297:
                   1298:                /* Escaped escape character: skip them both. */
1.388     schwarze 1299:                if (stesc[1] == ec)
1.387     schwarze 1300:                        stesc++;
                   1301:        }
                   1302:
                   1303:        /* Look for an RCS id in the comment. */
                   1304:
                   1305:        rcsid = 0;
                   1306:        if ((cp = strstr(stesc + 2, "$" "OpenBSD")) != NULL) {
                   1307:                rcsid = 1 << MANDOC_OS_OPENBSD;
                   1308:                cp += 8;
                   1309:        } else if ((cp = strstr(stesc + 2, "$" "NetBSD")) != NULL) {
                   1310:                rcsid = 1 << MANDOC_OS_NETBSD;
                   1311:                cp += 7;
                   1312:        }
                   1313:        if (cp != NULL && isalnum((unsigned char)*cp) == 0 &&
                   1314:            strchr(cp, '$') != NULL) {
                   1315:                if (r->man->meta.rcsids & rcsid)
                   1316:                        mandoc_msg(MANDOCERR_RCS_REP, ln,
                   1317:                            (int)(stesc - buf->buf) + 2, "%s", stesc + 1);
                   1318:                r->man->meta.rcsids |= rcsid;
                   1319:        }
                   1320:
                   1321:        /* Warn about trailing whitespace at the end of the comment. */
                   1322:
                   1323:        ep = strchr(stesc + 2, '\0') - 1;
                   1324:        if (*ep == '\n')
                   1325:                *ep-- = '\0';
                   1326:        if (*ep == ' ' || *ep == '\t')
                   1327:                mandoc_msg(MANDOCERR_SPACE_EOL,
                   1328:                    ln, (int)(ep - buf->buf), NULL);
                   1329:
                   1330:        /* Save comments preceding the title macro in the syntax tree. */
                   1331:
                   1332:        if (r->options & MPARSE_COMMENT) {
                   1333:                while (*ep == ' ' || *ep == '\t')
                   1334:                        ep--;
                   1335:                ep[1] = '\0';
                   1336:                n = roff_node_alloc(r->man, ln, stesc + 1 - buf->buf,
                   1337:                    ROFFT_COMMENT, TOKEN_NONE);
                   1338:                n->string = mandoc_strdup(stesc + 2);
                   1339:                roff_node_append(r->man, n);
                   1340:                n->flags |= NODE_VALID | NODE_ENDED;
                   1341:                r->man->next = ROFF_NEXT_SIBLING;
                   1342:        }
                   1343:
                   1344:        /* The comment requests line continuation. */
                   1345:
                   1346:        if (stesc[1] == '#') {
                   1347:                *stesc = '\0';
                   1348:                return ROFF_IGN | ROFF_APPEND;
                   1349:        }
                   1350:
                   1351:        /* Discard the comment including preceding whitespace. */
                   1352:
                   1353:        while (stesc > start && stesc[-1] == ' ' &&
                   1354:            (stesc == start + 1 || stesc[-2] != '\\'))
                   1355:                stesc--;
                   1356:        *stesc = '\0';
                   1357:        return ROFF_CONT;
                   1358: }
                   1359:
1.94      kristaps 1360: /*
1.355     schwarze 1361:  * In the current line, expand escape sequences that produce parsable
                   1362:  * input text.  Also check the syntax of the remaining escape sequences,
                   1363:  * which typically produce output glyphs or change formatter state.
1.154     kristaps 1364:  */
1.340     schwarze 1365: static int
1.388     schwarze 1366: roff_expand(struct roff *r, struct buf *buf, int ln, int pos, char ec)
1.94      kristaps 1367: {
1.388     schwarze 1368:        char             ubuf[24];      /* buffer to print a number */
                   1369:        struct mctx     *ctx;           /* current macro call context */
                   1370:        const char      *res;           /* the string to be pasted */
                   1371:        const char      *src;           /* source for copying */
                   1372:        char            *dst;           /* destination for copying */
                   1373:        int              iesc;          /* index of leading escape char */
                   1374:        int              inam;          /* index of the escape name */
                   1375:        int              iarg;          /* index beginning the argument */
                   1376:        int              iendarg;       /* index right after the argument */
                   1377:        int              iend;          /* index right after the sequence */
                   1378:        int              deftype;       /* type of definition to paste */
                   1379:        int              argi;          /* macro argument index */
                   1380:        int              quote_args;    /* true for \\$@, false for \\$* */
                   1381:        int              asz;           /* length of the replacement */
                   1382:        int              rsz;           /* length of the rest of the string */
                   1383:        int              npos;          /* position in numeric expression */
1.181     schwarze 1384:        int              expand_count;  /* to avoid infinite loops */
1.303     schwarze 1385:
1.170     schwarze 1386:        expand_count = 0;
1.388     schwarze 1387:        while (buf->buf[pos] != '\0') {
1.170     schwarze 1388:
1.388     schwarze 1389:                /*
                   1390:                 * Skip plain ASCII characters.
                   1391:                 * If we have a non-standard escape character,
                   1392:                 * escape literal backslashes because all processing in
                   1393:                 * subsequent functions uses the standard escaping rules.
                   1394:                 */
1.205     schwarze 1395:
1.388     schwarze 1396:                if (buf->buf[pos] != ec) {
                   1397:                        if (ec != ASCII_ESC && buf->buf[pos] == '\\') {
                   1398:                                roff_expand_patch(buf, pos, "\\e", pos + 1);
                   1399:                                pos++;
1.303     schwarze 1400:                        }
1.388     schwarze 1401:                        pos++;
1.205     schwarze 1402:                        continue;
1.303     schwarze 1403:                }
1.205     schwarze 1404:
1.388     schwarze 1405:                /*
                   1406:                 * Parse escape sequences,
                   1407:                 * issue diagnostic messages when appropriate,
                   1408:                 * and skip sequences that do not need expansion.
                   1409:                 * If we have a non-standard escape character, translate
                   1410:                 * it to backslashes and translate backslashes to \e.
                   1411:                 */
1.205     schwarze 1412:
1.388     schwarze 1413:                if (roff_escape(buf->buf, ln, pos,
                   1414:                    &iesc, &iarg, &iendarg, &iend) != ESCAPE_EXPAND) {
                   1415:                        while (pos < iend) {
                   1416:                                if (buf->buf[pos] == ec) {
                   1417:                                        buf->buf[pos] = '\\';
                   1418:                                        if (pos + 1 < iend)
                   1419:                                                pos++;
                   1420:                                } else if (buf->buf[pos] == '\\') {
                   1421:                                        roff_expand_patch(buf,
                   1422:                                            pos, "\\e", pos + 1);
                   1423:                                        pos++;
                   1424:                                        iend++;
                   1425:                                }
                   1426:                                pos++;
1.352     schwarze 1427:                        }
1.205     schwarze 1428:                        continue;
1.152     kristaps 1429:                }
                   1430:
1.108     schwarze 1431:                /*
1.388     schwarze 1432:                 * Treat "\E" just like "\";
                   1433:                 * it only makes a difference in copy mode.
1.108     schwarze 1434:                 */
                   1435:
1.388     schwarze 1436:                inam = iesc + 1;
                   1437:                while (buf->buf[inam] == 'E')
                   1438:                        inam++;
                   1439:
                   1440:                /* Handle expansion. */
                   1441:
                   1442:                res = NULL;
                   1443:                switch (buf->buf[inam]) {
                   1444:                case '*':
                   1445:                        if (iendarg == iarg)
1.206     schwarze 1446:                                break;
1.388     schwarze 1447:                        deftype = ROFFDEF_USER | ROFFDEF_PRE;
                   1448:                        if ((res = roff_getstrn(r, buf->buf + iarg,
                   1449:                            iendarg - iarg, &deftype)) != NULL)
1.206     schwarze 1450:                                break;
1.94      kristaps 1451:
1.388     schwarze 1452:                        /*
                   1453:                         * If not overriden,
                   1454:                         * let \*(.T through to the formatters.
                   1455:                         */
1.94      kristaps 1456:
1.388     schwarze 1457:                        if (iendarg - iarg == 2 &&
                   1458:                            buf->buf[iarg] == '.' &&
                   1459:                            buf->buf[iarg + 1] == 'T') {
                   1460:                                roff_setstrn(&r->strtab, ".T", 2, NULL, 0, 0);
                   1461:                                pos = iend;
1.253     schwarze 1462:                                continue;
                   1463:                        }
1.94      kristaps 1464:
1.388     schwarze 1465:                        mandoc_msg(MANDOCERR_STR_UNDEF, ln, iesc,
                   1466:                            "%.*s", iendarg - iarg, buf->buf + iarg);
                   1467:                        break;
1.108     schwarze 1468:
1.339     schwarze 1469:                case '$':
                   1470:                        if (r->mstackpos < 0) {
1.388     schwarze 1471:                                mandoc_msg(MANDOCERR_ARG_UNDEF, ln, iesc,
                   1472:                                    "%.*s", iend - iesc, buf->buf + iesc);
1.339     schwarze 1473:                                break;
                   1474:                        }
                   1475:                        ctx = r->mstack + r->mstackpos;
1.388     schwarze 1476:                        argi = buf->buf[iarg] - '1';
                   1477:                        if (argi >= 0 && argi <= 8) {
                   1478:                                if (argi < ctx->argc)
                   1479:                                        res = ctx->argv[argi];
1.339     schwarze 1480:                                break;
                   1481:                        }
1.388     schwarze 1482:                        if (buf->buf[iarg] == '*')
1.339     schwarze 1483:                                quote_args = 0;
1.388     schwarze 1484:                        else if (buf->buf[iarg] == '@')
1.339     schwarze 1485:                                quote_args = 1;
                   1486:                        else {
1.388     schwarze 1487:                                mandoc_msg(MANDOCERR_ARG_NONUM, ln, iesc,
                   1488:                                    "%.*s", iend - iesc, buf->buf + iesc);
1.339     schwarze 1489:                                break;
                   1490:                        }
                   1491:                        asz = 0;
1.388     schwarze 1492:                        for (argi = 0; argi < ctx->argc; argi++) {
                   1493:                                if (argi)
1.339     schwarze 1494:                                        asz++;  /* blank */
                   1495:                                if (quote_args)
                   1496:                                        asz += 2;  /* quotes */
1.388     schwarze 1497:                                asz += strlen(ctx->argv[argi]);
1.339     schwarze 1498:                        }
1.388     schwarze 1499:                        if (asz != iend - iesc) {
                   1500:                                rsz = buf->sz - iend;
                   1501:                                if (asz < iend - iesc)
                   1502:                                        memmove(buf->buf + iesc + asz,
                   1503:                                            buf->buf + iend, rsz);
                   1504:                                buf->sz = iesc + asz + rsz;
                   1505:                                buf->buf = mandoc_realloc(buf->buf, buf->sz);
                   1506:                                if (asz > iend - iesc)
                   1507:                                        memmove(buf->buf + iesc + asz,
                   1508:                                            buf->buf + iend, rsz);
1.339     schwarze 1509:                        }
1.388     schwarze 1510:                        dst = buf->buf + iesc;
                   1511:                        for (argi = 0; argi < ctx->argc; argi++) {
                   1512:                                if (argi)
                   1513:                                        *dst++ = ' ';
1.339     schwarze 1514:                                if (quote_args)
1.388     schwarze 1515:                                        *dst++ = '"';
                   1516:                                src = ctx->argv[argi];
                   1517:                                while (*src != '\0')
                   1518:                                        *dst++ = *src++;
1.339     schwarze 1519:                                if (quote_args)
1.388     schwarze 1520:                                        *dst++ = '"';
1.339     schwarze 1521:                        }
                   1522:                        continue;
1.391   ! schwarze 1523:                case 'A':
        !          1524:                        ubuf[0] = iendarg > iarg ? '1' : '0';
        !          1525:                        ubuf[1] = '\0';
        !          1526:                        res = ubuf;
        !          1527:                        break;
1.207     schwarze 1528:                case 'B':
1.206     schwarze 1529:                        npos = 0;
1.388     schwarze 1530:                        ubuf[0] = iendarg > iarg && iend > iendarg &&
                   1531:                            roff_evalnum(r, ln, buf->buf + iarg, &npos,
                   1532:                                         NULL, ROFFNUM_SCALE) &&
                   1533:                            npos == iendarg - iarg ? '1' : '0';
1.206     schwarze 1534:                        ubuf[1] = '\0';
1.388     schwarze 1535:                        res = ubuf;
1.206     schwarze 1536:                        break;
1.389     schwarze 1537:                case 'V':
                   1538:                        mandoc_msg(MANDOCERR_UNSUPP, ln, iesc,
                   1539:                            "%.*s", iend - iesc, buf->buf + iesc);
                   1540:                        roff_expand_patch(buf, iendarg, "}", iend);
                   1541:                        roff_expand_patch(buf, iesc, "${", iarg);
                   1542:                        continue;
1.390     schwarze 1543:                case 'g':
                   1544:                        break;
1.207     schwarze 1545:                case 'n':
1.388     schwarze 1546:                        if (iendarg > iarg)
1.218     schwarze 1547:                                (void)snprintf(ubuf, sizeof(ubuf), "%d",
1.388     schwarze 1548:                                    roff_getregn(r, buf->buf + iarg,
                   1549:                                    iendarg - iarg, buf->buf[inam + 1]));
1.218     schwarze 1550:                        else
                   1551:                                ubuf[0] = '\0';
1.388     schwarze 1552:                        res = ubuf;
1.206     schwarze 1553:                        break;
1.207     schwarze 1554:                case 'w':
1.388     schwarze 1555:                        (void)snprintf(ubuf, sizeof(ubuf),
                   1556:                            "%d", (iendarg - iarg) * 24);
                   1557:                        res = ubuf;
                   1558:                        break;
                   1559:                default:
1.206     schwarze 1560:                        break;
                   1561:                }
1.388     schwarze 1562:                if (res == NULL)
1.142     kristaps 1563:                        res = "";
1.388     schwarze 1564:                if (++expand_count > EXPAND_LIMIT ||
                   1565:                    buf->sz + strlen(res) > SHRT_MAX) {
                   1566:                        mandoc_msg(MANDOCERR_ROFFLOOP, ln, iesc, NULL);
1.277     schwarze 1567:                        return ROFF_IGN;
1.94      kristaps 1568:                }
1.388     schwarze 1569:                roff_expand_patch(buf, iesc, res, iend);
                   1570:        }
                   1571:        return ROFF_CONT;
                   1572: }
1.94      kristaps 1573:
1.388     schwarze 1574: /*
                   1575:  * Replace the substring from the start position (inclusive)
                   1576:  * to end position (exclusive) with the repl(acement) string.
                   1577:  */
                   1578: static void
                   1579: roff_expand_patch(struct buf *buf, int start, const char *repl, int end)
                   1580: {
                   1581:        char    *nbuf;
1.108     schwarze 1582:
1.389     schwarze 1583:        buf->sz = mandoc_asprintf(&nbuf, "%.*s%s%s", start, buf->buf,
                   1584:            repl, buf->buf + end) + 1;
1.388     schwarze 1585:        free(buf->buf);
                   1586:        buf->buf = nbuf;
1.154     kristaps 1587: }
1.353     schwarze 1588:
                   1589: /*
                   1590:  * Parse a quoted or unquoted roff-style request or macro argument.
                   1591:  * Return a pointer to the parsed argument, which is either the original
                   1592:  * pointer or advanced by one byte in case the argument is quoted.
                   1593:  * NUL-terminate the argument in place.
                   1594:  * Collapse pairs of quotes inside quoted arguments.
                   1595:  * Advance the argument pointer to the next argument,
                   1596:  * or to the NUL byte terminating the argument line.
                   1597:  */
                   1598: char *
1.355     schwarze 1599: roff_getarg(struct roff *r, char **cpp, int ln, int *pos)
1.353     schwarze 1600: {
1.355     schwarze 1601:        struct buf       buf;
1.366     schwarze 1602:        char            *cp, *start;
1.355     schwarze 1603:        int              newesc, pairs, quoted, white;
1.353     schwarze 1604:
                   1605:        /* Quoting can only start with a new word. */
                   1606:        start = *cpp;
                   1607:        quoted = 0;
                   1608:        if ('"' == *start) {
                   1609:                quoted = 1;
                   1610:                start++;
                   1611:        }
                   1612:
1.355     schwarze 1613:        newesc = pairs = white = 0;
1.353     schwarze 1614:        for (cp = start; '\0' != *cp; cp++) {
                   1615:
                   1616:                /*
                   1617:                 * Move the following text left
                   1618:                 * after quoted quotes and after "\\" and "\t".
                   1619:                 */
                   1620:                if (pairs)
                   1621:                        cp[-pairs] = cp[0];
                   1622:
                   1623:                if ('\\' == cp[0]) {
                   1624:                        /*
                   1625:                         * In copy mode, translate double to single
                   1626:                         * backslashes and backslash-t to literal tabs.
                   1627:                         */
                   1628:                        switch (cp[1]) {
                   1629:                        case 'a':
                   1630:                        case 't':
1.354     schwarze 1631:                                cp[-pairs] = '\t';
1.355     schwarze 1632:                                pairs++;
                   1633:                                cp++;
                   1634:                                break;
1.353     schwarze 1635:                        case '\\':
1.355     schwarze 1636:                                newesc = 1;
                   1637:                                cp[-pairs] = ASCII_ESC;
1.353     schwarze 1638:                                pairs++;
                   1639:                                cp++;
                   1640:                                break;
                   1641:                        case ' ':
                   1642:                                /* Skip escaped blanks. */
                   1643:                                if (0 == quoted)
                   1644:                                        cp++;
                   1645:                                break;
                   1646:                        default:
                   1647:                                break;
                   1648:                        }
                   1649:                } else if (0 == quoted) {
                   1650:                        if (' ' == cp[0]) {
                   1651:                                /* Unescaped blanks end unquoted args. */
                   1652:                                white = 1;
                   1653:                                break;
                   1654:                        }
                   1655:                } else if ('"' == cp[0]) {
                   1656:                        if ('"' == cp[1]) {
                   1657:                                /* Quoted quotes collapse. */
                   1658:                                pairs++;
                   1659:                                cp++;
                   1660:                        } else {
                   1661:                                /* Unquoted quotes end quoted args. */
                   1662:                                quoted = 2;
                   1663:                                break;
                   1664:                        }
                   1665:                }
                   1666:        }
                   1667:
                   1668:        /* Quoted argument without a closing quote. */
                   1669:        if (1 == quoted)
                   1670:                mandoc_msg(MANDOCERR_ARG_QUOTE, ln, *pos, NULL);
                   1671:
                   1672:        /* NUL-terminate this argument and move to the next one. */
                   1673:        if (pairs)
                   1674:                cp[-pairs] = '\0';
                   1675:        if ('\0' != *cp) {
                   1676:                *cp++ = '\0';
                   1677:                while (' ' == *cp)
                   1678:                        cp++;
                   1679:        }
                   1680:        *pos += (int)(cp - start) + (quoted ? 1 : 0);
                   1681:        *cpp = cp;
                   1682:
                   1683:        if ('\0' == *cp && (white || ' ' == cp[-1]))
                   1684:                mandoc_msg(MANDOCERR_SPACE_EOL, ln, *pos, NULL);
                   1685:
1.355     schwarze 1686:        start = mandoc_strdup(start);
                   1687:        if (newesc == 0)
                   1688:                return start;
                   1689:
                   1690:        buf.buf = start;
                   1691:        buf.sz = strlen(start) + 1;
                   1692:        buf.next = NULL;
                   1693:        if (roff_expand(r, &buf, ln, 0, ASCII_ESC) & ROFF_IGN) {
                   1694:                free(buf.buf);
                   1695:                buf.buf = mandoc_strdup("");
                   1696:        }
                   1697:        return buf.buf;
1.353     schwarze 1698: }
                   1699:
1.154     kristaps 1700:
                   1701: /*
1.275     schwarze 1702:  * Process text streams.
1.154     kristaps 1703:  */
1.340     schwarze 1704: static int
1.305     schwarze 1705: roff_parsetext(struct roff *r, struct buf *buf, int pos, int *offs)
1.154     kristaps 1706: {
                   1707:        size_t           sz;
                   1708:        const char      *start;
1.178     schwarze 1709:        char            *p;
                   1710:        int              isz;
1.154     kristaps 1711:        enum mandoc_esc  esc;
                   1712:
1.275     schwarze 1713:        /* Spring the input line trap. */
                   1714:
                   1715:        if (roffit_lines == 1) {
                   1716:                isz = mandoc_asprintf(&p, "%s\n.%s", buf->buf, roffit_macro);
                   1717:                free(buf->buf);
                   1718:                buf->buf = p;
                   1719:                buf->sz = isz + 1;
                   1720:                *offs = 0;
                   1721:                free(roffit_macro);
                   1722:                roffit_lines = 0;
1.277     schwarze 1723:                return ROFF_REPARSE;
1.275     schwarze 1724:        } else if (roffit_lines > 1)
                   1725:                --roffit_lines;
                   1726:
1.305     schwarze 1727:        if (roffce_node != NULL && buf->buf[pos] != '\0') {
                   1728:                if (roffce_lines < 1) {
                   1729:                        r->man->last = roffce_node;
                   1730:                        r->man->next = ROFF_NEXT_SIBLING;
                   1731:                        roffce_lines = 0;
                   1732:                        roffce_node = NULL;
                   1733:                } else
                   1734:                        roffce_lines--;
                   1735:        }
                   1736:
1.275     schwarze 1737:        /* Convert all breakable hyphens into ASCII_HYPH. */
                   1738:
1.238     schwarze 1739:        start = p = buf->buf + pos;
1.154     kristaps 1740:
1.238     schwarze 1741:        while (*p != '\0') {
1.154     kristaps 1742:                sz = strcspn(p, "-\\");
                   1743:                p += sz;
                   1744:
1.238     schwarze 1745:                if (*p == '\0')
1.159     kristaps 1746:                        break;
                   1747:
1.238     schwarze 1748:                if (*p == '\\') {
1.154     kristaps 1749:                        /* Skip over escapes. */
                   1750:                        p++;
1.189     schwarze 1751:                        esc = mandoc_escape((const char **)&p, NULL, NULL);
1.238     schwarze 1752:                        if (esc == ESCAPE_ERROR)
1.154     kristaps 1753:                                break;
1.264     schwarze 1754:                        while (*p == '-')
                   1755:                                p++;
1.155     kristaps 1756:                        continue;
1.159     kristaps 1757:                } else if (p == start) {
1.158     kristaps 1758:                        p++;
1.155     kristaps 1759:                        continue;
1.158     kristaps 1760:                }
1.155     kristaps 1761:
1.171     schwarze 1762:                if (isalpha((unsigned char)p[-1]) &&
                   1763:                    isalpha((unsigned char)p[1]))
1.155     kristaps 1764:                        *p = ASCII_HYPH;
                   1765:                p++;
1.94      kristaps 1766:        }
1.277     schwarze 1767:        return ROFF_CONT;
1.94      kristaps 1768: }
                   1769:
1.340     schwarze 1770: int
1.377     schwarze 1771: roff_parseln(struct roff *r, int ln, struct buf *buf, int *offs, size_t len)
1.67      kristaps 1772: {
1.294     schwarze 1773:        enum roff_tok    t;
1.340     schwarze 1774:        int              e;
1.238     schwarze 1775:        int              pos;   /* parse point */
1.243     schwarze 1776:        int              spos;  /* saved parse point for messages */
1.238     schwarze 1777:        int              ppos;  /* original offset in buf->buf */
                   1778:        int              ctl;   /* macro line (boolean) */
                   1779:
                   1780:        ppos = pos = *offs;
1.377     schwarze 1781:
                   1782:        if (len > 80 && r->tbl == NULL && r->eqn == NULL &&
                   1783:            (r->man->flags & ROFF_NOFILL) == 0 &&
                   1784:            strchr(" .\\", buf->buf[pos]) == NULL &&
                   1785:            buf->buf[pos] != r->control &&
                   1786:            strcspn(buf->buf, " ") < 80)
                   1787:                mandoc_msg(MANDOCERR_TEXT_LONG, ln, (int)len - 1,
                   1788:                    "%.20s...", buf->buf + pos);
1.79      kristaps 1789:
1.230     schwarze 1790:        /* Handle in-line equation delimiters. */
                   1791:
1.236     schwarze 1792:        if (r->tbl == NULL &&
                   1793:            r->last_eqn != NULL && r->last_eqn->delim &&
1.230     schwarze 1794:            (r->eqn == NULL || r->eqn_inline)) {
1.238     schwarze 1795:                e = roff_eqndelim(r, buf, pos);
1.230     schwarze 1796:                if (e == ROFF_REPARSE)
1.277     schwarze 1797:                        return e;
1.230     schwarze 1798:                assert(e == ROFF_CONT);
                   1799:        }
                   1800:
1.387     schwarze 1801:        /* Handle comments and escape sequences. */
                   1802:
                   1803:        e = roff_parse_comment(r, buf, ln, pos, r->escape);
                   1804:        if ((e & ROFF_MASK) == ROFF_IGN)
                   1805:                return e;
                   1806:        assert(e == ROFF_CONT);
1.94      kristaps 1807:
1.355     schwarze 1808:        e = roff_expand(r, buf, ln, pos, r->escape);
1.340     schwarze 1809:        if ((e & ROFF_MASK) == ROFF_IGN)
1.277     schwarze 1810:                return e;
1.238     schwarze 1811:        assert(e == ROFF_CONT);
1.94      kristaps 1812:
1.238     schwarze 1813:        ctl = roff_getcontrol(r, buf->buf, &pos);
1.130     kristaps 1814:
1.94      kristaps 1815:        /*
1.79      kristaps 1816:         * First, if a scope is open and we're not a macro, pass the
1.252     schwarze 1817:         * text through the macro's filter.
                   1818:         * Equations process all content themselves.
                   1819:         * Tables process almost all content themselves, but we want
                   1820:         * to warn about macros before passing it there.
1.79      kristaps 1821:         */
1.74      kristaps 1822:
1.252     schwarze 1823:        if (r->last != NULL && ! ctl) {
1.78      kristaps 1824:                t = r->last->tok;
1.238     schwarze 1825:                e = (*roffs[t].text)(r, t, buf, ln, pos, pos, offs);
1.340     schwarze 1826:                if ((e & ROFF_MASK) == ROFF_IGN)
1.277     schwarze 1827:                        return e;
1.340     schwarze 1828:                e &= ~ROFF_MASK;
                   1829:        } else
                   1830:                e = ROFF_IGN;
1.319     schwarze 1831:        if (r->eqn != NULL && strncmp(buf->buf + ppos, ".EN", 3)) {
                   1832:                eqn_read(r->eqn, buf->buf + ppos);
1.340     schwarze 1833:                return e;
1.319     schwarze 1834:        }
1.321     schwarze 1835:        if (r->tbl != NULL && (ctl == 0 || buf->buf[pos] == '\0')) {
                   1836:                tbl_read(r->tbl, ln, buf->buf, ppos);
1.346     schwarze 1837:                roff_addtbl(r->man, ln, r->tbl);
1.340     schwarze 1838:                return e;
1.321     schwarze 1839:        }
1.367     schwarze 1840:        if ( ! ctl) {
                   1841:                r->options &= ~MPARSE_COMMENT;
1.340     schwarze 1842:                return roff_parsetext(r, buf, pos, offs) | e;
1.367     schwarze 1843:        }
1.228     schwarze 1844:
                   1845:        /* Skip empty request lines. */
                   1846:
1.238     schwarze 1847:        if (buf->buf[pos] == '"') {
1.350     schwarze 1848:                mandoc_msg(MANDOCERR_COMMENT_BAD, ln, pos, NULL);
1.277     schwarze 1849:                return ROFF_IGN;
1.238     schwarze 1850:        } else if (buf->buf[pos] == '\0')
1.277     schwarze 1851:                return ROFF_IGN;
1.67      kristaps 1852:
1.79      kristaps 1853:        /*
                   1854:         * If a scope is open, go to the child handler for that macro,
                   1855:         * as it may want to preprocess before doing anything with it.
                   1856:         */
1.78      kristaps 1857:
1.79      kristaps 1858:        if (r->last) {
                   1859:                t = r->last->tok;
1.277     schwarze 1860:                return (*roffs[t].sub)(r, t, buf, ln, ppos, pos, offs);
1.79      kristaps 1861:        }
1.78      kristaps 1862:
1.367     schwarze 1863:        r->options &= ~MPARSE_COMMENT;
1.243     schwarze 1864:        spos = pos;
                   1865:        t = roff_parse(r, buf->buf, &pos, ln, ppos);
1.386     schwarze 1866:        return roff_req_or_macro(r, t, buf, ln, spos, pos, offs);
                   1867: }
                   1868:
                   1869: /*
                   1870:  * Handle a new request or macro.
                   1871:  * May be called outside any scope or from inside a conditional scope.
                   1872:  */
                   1873: static int
                   1874: roff_req_or_macro(ROFF_ARGS) {
1.243     schwarze 1875:
1.386     schwarze 1876:        /* For now, tables ignore most macros and some request. */
1.243     schwarze 1877:
1.386     schwarze 1878:        if (r->tbl != NULL && (tok == TOKEN_NONE || tok == ROFF_TS ||
                   1879:            tok == ROFF_br || tok == ROFF_ce || tok == ROFF_rj ||
                   1880:            tok == ROFF_sp)) {
1.350     schwarze 1881:                mandoc_msg(MANDOCERR_TBLMACRO,
1.386     schwarze 1882:                    ln, ppos, "%s", buf->buf + ppos);
                   1883:                if (tok != TOKEN_NONE)
1.277     schwarze 1884:                        return ROFF_IGN;
1.257     schwarze 1885:                while (buf->buf[pos] != '\0' && buf->buf[pos] != ' ')
                   1886:                        pos++;
1.291     schwarze 1887:                while (buf->buf[pos] == ' ')
1.257     schwarze 1888:                        pos++;
1.321     schwarze 1889:                tbl_read(r->tbl, ln, buf->buf, pos);
1.346     schwarze 1890:                roff_addtbl(r->man, ln, r->tbl);
1.321     schwarze 1891:                return ROFF_IGN;
1.243     schwarze 1892:        }
                   1893:
1.305     schwarze 1894:        /* For now, let high level macros abort .ce mode. */
                   1895:
1.386     schwarze 1896:        if (roffce_node != NULL &&
                   1897:            (tok == TOKEN_NONE || tok == ROFF_Dd || tok == ROFF_EQ ||
                   1898:             tok == ROFF_TH || tok == ROFF_TS)) {
1.305     schwarze 1899:                r->man->last = roffce_node;
                   1900:                r->man->next = ROFF_NEXT_SIBLING;
                   1901:                roffce_lines = 0;
                   1902:                roffce_node = NULL;
                   1903:        }
                   1904:
1.79      kristaps 1905:        /*
1.243     schwarze 1906:         * This is neither a roff request nor a user-defined macro.
                   1907:         * Let the standard macro set parsers handle it.
1.79      kristaps 1908:         */
1.67      kristaps 1909:
1.386     schwarze 1910:        if (tok == TOKEN_NONE)
1.277     schwarze 1911:                return ROFF_CONT;
1.243     schwarze 1912:
1.386     schwarze 1913:        /* Execute a roff request or a user-defined macro. */
1.67      kristaps 1914:
1.386     schwarze 1915:        return (*roffs[tok].proc)(r, tok, buf, ln, ppos, pos, offs);
1.74      kristaps 1916: }
                   1917:
1.339     schwarze 1918: /*
                   1919:  * Internal interface function to tell the roff parser that execution
                   1920:  * of the current macro ended.  This is required because macro
                   1921:  * definitions usually do not end with a .return request.
                   1922:  */
                   1923: void
                   1924: roff_userret(struct roff *r)
                   1925: {
                   1926:        struct mctx     *ctx;
                   1927:        int              i;
                   1928:
                   1929:        assert(r->mstackpos >= 0);
                   1930:        ctx = r->mstack + r->mstackpos;
                   1931:        for (i = 0; i < ctx->argc; i++)
                   1932:                free(ctx->argv[i]);
                   1933:        ctx->argc = 0;
                   1934:        r->mstackpos--;
                   1935: }
                   1936:
1.117     kristaps 1937: void
1.74      kristaps 1938: roff_endparse(struct roff *r)
                   1939: {
1.321     schwarze 1940:        if (r->last != NULL)
1.350     schwarze 1941:                mandoc_msg(MANDOCERR_BLK_NOEND, r->last->line,
                   1942:                    r->last->col, "%s", roff_name[r->last->tok]);
1.117     kristaps 1943:
1.321     schwarze 1944:        if (r->eqn != NULL) {
1.350     schwarze 1945:                mandoc_msg(MANDOCERR_BLK_NOEND,
1.319     schwarze 1946:                    r->eqn->node->line, r->eqn->node->pos, "EQ");
                   1947:                eqn_parse(r->eqn);
                   1948:                r->eqn = NULL;
1.125     kristaps 1949:        }
                   1950:
1.321     schwarze 1951:        if (r->tbl != NULL) {
1.346     schwarze 1952:                tbl_end(r->tbl, 1);
1.321     schwarze 1953:                r->tbl = NULL;
1.117     kristaps 1954:        }
1.67      kristaps 1955: }
                   1956:
                   1957: /*
1.386     schwarze 1958:  * Parse the request or macro name at buf[*pos].
                   1959:  * Return ROFF_RENAMED, ROFF_USERDEF, or a ROFF_* token value.
                   1960:  * For empty, undefined, mdoc(7), and man(7) macros, return TOKEN_NONE.
                   1961:  * As a side effect, set r->current_string to the definition or to NULL.
1.67      kristaps 1962:  */
1.294     schwarze 1963: static enum roff_tok
1.214     schwarze 1964: roff_parse(struct roff *r, char *buf, int *pos, int ln, int ppos)
1.67      kristaps 1965: {
1.214     schwarze 1966:        char            *cp;
1.106     kristaps 1967:        const char      *mac;
                   1968:        size_t           maclen;
1.315     schwarze 1969:        int              deftype;
1.294     schwarze 1970:        enum roff_tok    t;
1.67      kristaps 1971:
1.214     schwarze 1972:        cp = buf + *pos;
                   1973:
                   1974:        if ('\0' == *cp || '"' == *cp || '\t' == *cp || ' ' == *cp)
1.294     schwarze 1975:                return TOKEN_NONE;
1.67      kristaps 1976:
1.214     schwarze 1977:        mac = cp;
                   1978:        maclen = roff_getname(r, &cp, ln, ppos);
1.67      kristaps 1979:
1.315     schwarze 1980:        deftype = ROFFDEF_USER | ROFFDEF_REN;
                   1981:        r->current_string = roff_getstrn(r, mac, maclen, &deftype);
                   1982:        switch (deftype) {
                   1983:        case ROFFDEF_USER:
                   1984:                t = ROFF_USERDEF;
                   1985:                break;
                   1986:        case ROFFDEF_REN:
                   1987:                t = ROFF_RENAMED;
                   1988:                break;
                   1989:        default:
                   1990:                t = roffhash_find(r->reqtab, mac, maclen);
                   1991:                break;
                   1992:        }
1.294     schwarze 1993:        if (t != TOKEN_NONE)
1.214     schwarze 1994:                *pos = cp - buf;
1.325     schwarze 1995:        else if (deftype == ROFFDEF_UNDEF) {
                   1996:                /* Using an undefined macro defines it to be empty. */
                   1997:                roff_setstrn(&r->strtab, mac, maclen, "", 0, 0);
                   1998:                roff_setstrn(&r->rentab, mac, maclen, NULL, 0, 0);
                   1999:        }
1.277     schwarze 2000:        return t;
1.67      kristaps 2001: }
                   2002:
1.266     schwarze 2003: /* --- handling of request blocks ----------------------------------------- */
                   2004:
1.375     schwarze 2005: /*
                   2006:  * Close a macro definition block or an "ignore" block.
                   2007:  */
1.340     schwarze 2008: static int
1.76      kristaps 2009: roff_cblock(ROFF_ARGS)
1.67      kristaps 2010: {
1.375     schwarze 2011:        int      rr;
1.79      kristaps 2012:
1.238     schwarze 2013:        if (r->last == NULL) {
1.350     schwarze 2014:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "..");
1.277     schwarze 2015:                return ROFF_IGN;
1.76      kristaps 2016:        }
1.67      kristaps 2017:
1.81      kristaps 2018:        switch (r->last->tok) {
1.207     schwarze 2019:        case ROFF_am:
                   2020:        case ROFF_ami:
                   2021:        case ROFF_de:
                   2022:        case ROFF_dei:
                   2023:        case ROFF_ig:
1.81      kristaps 2024:                break;
1.375     schwarze 2025:        case ROFF_am1:
                   2026:        case ROFF_de1:
                   2027:                /* Remapped in roff_block(). */
                   2028:                abort();
1.81      kristaps 2029:        default:
1.350     schwarze 2030:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "..");
1.277     schwarze 2031:                return ROFF_IGN;
1.76      kristaps 2032:        }
1.67      kristaps 2033:
1.375     schwarze 2034:        roffnode_pop(r);
                   2035:        roffnode_cleanscope(r);
                   2036:
                   2037:        /*
                   2038:         * If a conditional block with braces is still open,
                   2039:         * check for "\}" block end markers.
                   2040:         */
                   2041:
                   2042:        if (r->last != NULL && r->last->endspan < 0) {
                   2043:                rr = 1;  /* If arguments follow "\}", warn about them. */
                   2044:                roff_cond_checkend(r, tok, buf, ln, ppos, pos, &rr);
                   2045:        }
                   2046:
1.238     schwarze 2047:        if (buf->buf[pos] != '\0')
1.350     schwarze 2048:                mandoc_msg(MANDOCERR_ARG_SKIP, ln, pos,
1.238     schwarze 2049:                    ".. %s", buf->buf + pos);
1.71      kristaps 2050:
1.277     schwarze 2051:        return ROFF_IGN;
1.67      kristaps 2052: }
                   2053:
1.364     schwarze 2054: /*
                   2055:  * Pop all nodes ending at the end of the current input line.
                   2056:  * Return the number of loops ended.
                   2057:  */
1.340     schwarze 2058: static int
1.76      kristaps 2059: roffnode_cleanscope(struct roff *r)
1.67      kristaps 2060: {
1.340     schwarze 2061:        int inloop;
1.67      kristaps 2062:
1.340     schwarze 2063:        inloop = 0;
1.375     schwarze 2064:        while (r->last != NULL && r->last->endspan > 0) {
1.173     schwarze 2065:                if (--r->last->endspan != 0)
1.76      kristaps 2066:                        break;
1.340     schwarze 2067:                inloop += roffnode_pop(r);
1.76      kristaps 2068:        }
1.340     schwarze 2069:        return inloop;
1.67      kristaps 2070: }
                   2071:
1.364     schwarze 2072: /*
1.375     schwarze 2073:  * Handle the closing "\}" of a conditional block.
1.364     schwarze 2074:  * Apart from generating warnings, this only pops nodes.
                   2075:  * Return the number of loops ended.
                   2076:  */
1.340     schwarze 2077: static int
1.195     schwarze 2078: roff_ccond(struct roff *r, int ln, int ppos)
1.74      kristaps 2079: {
1.76      kristaps 2080:        if (NULL == r->last) {
1.350     schwarze 2081:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "\\}");
1.340     schwarze 2082:                return 0;
1.76      kristaps 2083:        }
                   2084:
1.82      kristaps 2085:        switch (r->last->tok) {
1.207     schwarze 2086:        case ROFF_el:
                   2087:        case ROFF_ie:
                   2088:        case ROFF_if:
1.340     schwarze 2089:        case ROFF_while:
1.82      kristaps 2090:                break;
                   2091:        default:
1.350     schwarze 2092:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "\\}");
1.340     schwarze 2093:                return 0;
1.75      kristaps 2094:        }
                   2095:
1.76      kristaps 2096:        if (r->last->endspan > -1) {
1.350     schwarze 2097:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "\\}");
1.340     schwarze 2098:                return 0;
1.76      kristaps 2099:        }
                   2100:
1.340     schwarze 2101:        return roffnode_pop(r) + roffnode_cleanscope(r);
1.76      kristaps 2102: }
                   2103:
1.340     schwarze 2104: static int
1.80      kristaps 2105: roff_block(ROFF_ARGS)
1.76      kristaps 2106: {
1.315     schwarze 2107:        const char      *name, *value;
                   2108:        char            *call, *cp, *iname, *rname;
                   2109:        size_t           csz, namesz, rsz;
                   2110:        int              deftype;
1.106     kristaps 2111:
1.220     schwarze 2112:        /* Ignore groff compatibility mode for now. */
1.76      kristaps 2113:
1.238     schwarze 2114:        if (tok == ROFF_de1)
1.220     schwarze 2115:                tok = ROFF_de;
1.251     schwarze 2116:        else if (tok == ROFF_dei1)
                   2117:                tok = ROFF_dei;
1.238     schwarze 2118:        else if (tok == ROFF_am1)
1.220     schwarze 2119:                tok = ROFF_am;
1.251     schwarze 2120:        else if (tok == ROFF_ami1)
                   2121:                tok = ROFF_ami;
1.220     schwarze 2122:
                   2123:        /* Parse the macro name argument. */
                   2124:
1.238     schwarze 2125:        cp = buf->buf + pos;
                   2126:        if (tok == ROFF_ig) {
1.220     schwarze 2127:                iname = NULL;
                   2128:                namesz = 0;
                   2129:        } else {
                   2130:                iname = cp;
                   2131:                namesz = roff_getname(r, &cp, ln, ppos);
                   2132:                iname[namesz] = '\0';
                   2133:        }
1.107     kristaps 2134:
1.220     schwarze 2135:        /* Resolve the macro name argument if it is indirect. */
1.107     kristaps 2136:
1.238     schwarze 2137:        if (namesz && (tok == ROFF_dei || tok == ROFF_ami)) {
1.315     schwarze 2138:                deftype = ROFFDEF_USER;
                   2139:                name = roff_getstrn(r, iname, namesz, &deftype);
                   2140:                if (name == NULL) {
1.350     schwarze 2141:                        mandoc_msg(MANDOCERR_STR_UNDEF,
                   2142:                            ln, (int)(iname - buf->buf),
1.220     schwarze 2143:                            "%.*s", (int)namesz, iname);
                   2144:                        namesz = 0;
                   2145:                } else
                   2146:                        namesz = strlen(name);
                   2147:        } else
                   2148:                name = iname;
1.107     kristaps 2149:
1.238     schwarze 2150:        if (namesz == 0 && tok != ROFF_ig) {
1.350     schwarze 2151:                mandoc_msg(MANDOCERR_REQ_EMPTY,
                   2152:                    ln, ppos, "%s", roff_name[tok]);
1.277     schwarze 2153:                return ROFF_IGN;
1.220     schwarze 2154:        }
1.80      kristaps 2155:
1.106     kristaps 2156:        roffnode_push(r, tok, name, ln, ppos);
                   2157:
                   2158:        /*
                   2159:         * At the beginning of a `de' macro, clear the existing string
                   2160:         * with the same name, if there is one.  New content will be
1.193     schwarze 2161:         * appended from roff_block_text() in multiline mode.
1.106     kristaps 2162:         */
1.107     kristaps 2163:
1.311     schwarze 2164:        if (tok == ROFF_de || tok == ROFF_dei) {
1.213     schwarze 2165:                roff_setstrn(&r->strtab, name, namesz, "", 0, 0);
1.311     schwarze 2166:                roff_setstrn(&r->rentab, name, namesz, NULL, 0, 0);
1.315     schwarze 2167:        } else if (tok == ROFF_am || tok == ROFF_ami) {
                   2168:                deftype = ROFFDEF_ANY;
                   2169:                value = roff_getstrn(r, iname, namesz, &deftype);
                   2170:                switch (deftype) {  /* Before appending, ... */
                   2171:                case ROFFDEF_PRE: /* copy predefined to user-defined. */
                   2172:                        roff_setstrn(&r->strtab, name, namesz,
                   2173:                            value, strlen(value), 0);
                   2174:                        break;
                   2175:                case ROFFDEF_REN: /* call original standard macro. */
                   2176:                        csz = mandoc_asprintf(&call, ".%.*s \\$* \\\"\n",
                   2177:                            (int)strlen(value), value);
                   2178:                        roff_setstrn(&r->strtab, name, namesz, call, csz, 0);
                   2179:                        roff_setstrn(&r->rentab, name, namesz, NULL, 0, 0);
                   2180:                        free(call);
                   2181:                        break;
                   2182:                case ROFFDEF_STD:  /* rename and call standard macro. */
                   2183:                        rsz = mandoc_asprintf(&rname, "__%s_renamed", name);
                   2184:                        roff_setstrn(&r->rentab, rname, rsz, name, namesz, 0);
                   2185:                        csz = mandoc_asprintf(&call, ".%.*s \\$* \\\"\n",
                   2186:                            (int)rsz, rname);
                   2187:                        roff_setstrn(&r->strtab, name, namesz, call, csz, 0);
                   2188:                        free(call);
                   2189:                        free(rname);
                   2190:                        break;
                   2191:                default:
                   2192:                        break;
                   2193:                }
1.311     schwarze 2194:        }
1.76      kristaps 2195:
1.238     schwarze 2196:        if (*cp == '\0')
1.277     schwarze 2197:                return ROFF_IGN;
1.78      kristaps 2198:
1.220     schwarze 2199:        /* Get the custom end marker. */
1.107     kristaps 2200:
1.220     schwarze 2201:        iname = cp;
1.213     schwarze 2202:        namesz = roff_getname(r, &cp, ln, ppos);
1.220     schwarze 2203:
                   2204:        /* Resolve the end marker if it is indirect. */
                   2205:
1.238     schwarze 2206:        if (namesz && (tok == ROFF_dei || tok == ROFF_ami)) {
1.315     schwarze 2207:                deftype = ROFFDEF_USER;
                   2208:                name = roff_getstrn(r, iname, namesz, &deftype);
                   2209:                if (name == NULL) {
1.350     schwarze 2210:                        mandoc_msg(MANDOCERR_STR_UNDEF,
                   2211:                            ln, (int)(iname - buf->buf),
1.220     schwarze 2212:                            "%.*s", (int)namesz, iname);
                   2213:                        namesz = 0;
                   2214:                } else
                   2215:                        namesz = strlen(name);
                   2216:        } else
                   2217:                name = iname;
                   2218:
1.213     schwarze 2219:        if (namesz)
                   2220:                r->last->end = mandoc_strndup(name, namesz);
1.78      kristaps 2221:
1.238     schwarze 2222:        if (*cp != '\0')
1.350     schwarze 2223:                mandoc_msg(MANDOCERR_ARG_EXCESS,
1.295     schwarze 2224:                    ln, pos, ".%s ... %s", roff_name[tok], cp);
1.74      kristaps 2225:
1.277     schwarze 2226:        return ROFF_IGN;
1.78      kristaps 2227: }
                   2228:
1.340     schwarze 2229: static int
1.80      kristaps 2230: roff_block_sub(ROFF_ARGS)
1.79      kristaps 2231: {
1.294     schwarze 2232:        enum roff_tok   t;
1.79      kristaps 2233:        int             i, j;
                   2234:
                   2235:        /*
1.385     schwarze 2236:         * If a custom end marker is a user-defined or predefined macro
                   2237:         * or a request, interpret it.
1.79      kristaps 2238:         */
                   2239:
                   2240:        if (r->last->end) {
1.130     kristaps 2241:                for (i = pos, j = 0; r->last->end[j]; j++, i++)
1.238     schwarze 2242:                        if (buf->buf[i] != r->last->end[j])
1.79      kristaps 2243:                                break;
                   2244:
1.238     schwarze 2245:                if (r->last->end[j] == '\0' &&
                   2246:                    (buf->buf[i] == '\0' ||
                   2247:                     buf->buf[i] == ' ' ||
                   2248:                     buf->buf[i] == '\t')) {
1.79      kristaps 2249:                        roffnode_pop(r);
                   2250:                        roffnode_cleanscope(r);
                   2251:
1.238     schwarze 2252:                        while (buf->buf[i] == ' ' || buf->buf[i] == '\t')
1.130     kristaps 2253:                                i++;
                   2254:
                   2255:                        pos = i;
1.238     schwarze 2256:                        if (roff_parse(r, buf->buf, &pos, ln, ppos) !=
1.294     schwarze 2257:                            TOKEN_NONE)
1.277     schwarze 2258:                                return ROFF_RERUN;
                   2259:                        return ROFF_IGN;
1.79      kristaps 2260:                }
                   2261:        }
                   2262:
1.385     schwarze 2263:        /* Handle the standard end marker. */
1.79      kristaps 2264:
1.238     schwarze 2265:        t = roff_parse(r, buf->buf, &pos, ln, ppos);
1.385     schwarze 2266:        if (t == ROFF_cblock)
                   2267:                return roff_cblock(r, t, buf, ln, ppos, pos, offs);
1.79      kristaps 2268:
1.385     schwarze 2269:        /* Not an end marker, so append the line to the block. */
1.79      kristaps 2270:
1.385     schwarze 2271:        if (tok != ROFF_ig)
                   2272:                roff_setstr(r, r->last->name, buf->buf + ppos, 2);
                   2273:        return ROFF_IGN;
1.79      kristaps 2274: }
                   2275:
1.340     schwarze 2276: static int
1.80      kristaps 2277: roff_block_text(ROFF_ARGS)
1.78      kristaps 2278: {
                   2279:
1.238     schwarze 2280:        if (tok != ROFF_ig)
                   2281:                roff_setstr(r, r->last->name, buf->buf + pos, 2);
1.106     kristaps 2282:
1.277     schwarze 2283:        return ROFF_IGN;
1.78      kristaps 2284: }
                   2285:
1.375     schwarze 2286: /*
                   2287:  * Check for a closing "\}" and handle it.
                   2288:  * In this function, the final "int *offs" argument is used for
                   2289:  * different purposes than elsewhere:
                   2290:  * Input: *offs == 0: caller wants to discard arguments following \}
                   2291:  *        *offs == 1: caller wants to preserve text following \}
                   2292:  * Output: *offs = 0: tell caller to discard input line
                   2293:  *         *offs = 1: tell caller to use input line
                   2294:  */
1.340     schwarze 2295: static int
1.375     schwarze 2296: roff_cond_checkend(ROFF_ARGS)
1.82      kristaps 2297: {
1.340     schwarze 2298:        char            *ep;
                   2299:        int              endloop, irc, rr;
1.82      kristaps 2300:
1.340     schwarze 2301:        irc = ROFF_IGN;
1.82      kristaps 2302:        rr = r->last->rule;
1.340     schwarze 2303:        endloop = tok != ROFF_while ? ROFF_IGN :
                   2304:            rr ? ROFF_LOOPCONT : ROFF_LOOPEXIT;
                   2305:        if (roffnode_cleanscope(r))
                   2306:                irc |= endloop;
1.144     kristaps 2307:
1.196     schwarze 2308:        /*
1.375     schwarze 2309:         * If "\}" occurs on a macro line without a preceding macro or
                   2310:         * a text line contains nothing else, drop the line completely.
1.196     schwarze 2311:         */
                   2312:
1.238     schwarze 2313:        ep = buf->buf + pos;
1.375     schwarze 2314:        if (ep[0] == '\\' && ep[1] == '}' && (ep[2] == '\0' || *offs == 0))
1.198     schwarze 2315:                rr = 0;
1.196     schwarze 2316:
1.343     schwarze 2317:        /*
1.375     schwarze 2318:         * The closing delimiter "\}" rewinds the conditional scope
1.343     schwarze 2319:         * but is otherwise ignored when interpreting the line.
                   2320:         */
1.144     kristaps 2321:
1.238     schwarze 2322:        while ((ep = strchr(ep, '\\')) != NULL) {
1.318     schwarze 2323:                switch (ep[1]) {
                   2324:                case '}':
1.376     schwarze 2325:                        if (ep[2] == '\0')
                   2326:                                ep[0] = '\0';
                   2327:                        else if (rr)
1.375     schwarze 2328:                                ep[1] = '&';
                   2329:                        else
                   2330:                                memmove(ep, ep + 2, strlen(ep + 2) + 1);
1.340     schwarze 2331:                        if (roff_ccond(r, ln, ep - buf->buf))
                   2332:                                irc |= endloop;
1.318     schwarze 2333:                        break;
                   2334:                case '\0':
                   2335:                        ++ep;
                   2336:                        break;
                   2337:                default:
                   2338:                        ep += 2;
                   2339:                        break;
1.197     schwarze 2340:                }
1.177     schwarze 2341:        }
1.375     schwarze 2342:        *offs = rr;
                   2343:        return irc;
                   2344: }
1.318     schwarze 2345:
1.375     schwarze 2346: /*
                   2347:  * Parse and process a request or macro line in conditional scope.
                   2348:  */
                   2349: static int
                   2350: roff_cond_sub(ROFF_ARGS)
                   2351: {
                   2352:        struct roffnode *bl;
1.386     schwarze 2353:        int              irc, rr, spos;
1.375     schwarze 2354:        enum roff_tok    t;
                   2355:
                   2356:        rr = 0;  /* If arguments follow "\}", skip them. */
                   2357:        irc = roff_cond_checkend(r, tok, buf, ln, ppos, pos, &rr);
1.386     schwarze 2358:        spos = pos;
1.368     schwarze 2359:        t = roff_parse(r, buf->buf, &pos, ln, ppos);
                   2360:
1.318     schwarze 2361:        /*
1.386     schwarze 2362:         * Handle requests and macros if the conditional evaluated
                   2363:         * to true or if they are structurally required.
                   2364:         * The .break request is always handled specially.
1.318     schwarze 2365:         */
                   2366:
1.364     schwarze 2367:        if (t == ROFF_break) {
                   2368:                if (irc & ROFF_LOOPMASK)
                   2369:                        irc = ROFF_IGN | ROFF_LOOPEXIT;
                   2370:                else if (rr) {
                   2371:                        for (bl = r->last; bl != NULL; bl = bl->parent) {
                   2372:                                bl->rule = 0;
                   2373:                                if (bl->tok == ROFF_while)
                   2374:                                        break;
                   2375:                        }
                   2376:                }
1.386     schwarze 2377:        } else if (rr || (t < TOKEN_NONE && roffs[t].flags & ROFFMAC_STRUCT)) {
                   2378:                irc |= roff_req_or_macro(r, t, buf, ln, spos, pos, offs);
1.383     schwarze 2379:                if (irc & ROFF_WHILE)
                   2380:                        irc &= ~(ROFF_LOOPCONT | ROFF_LOOPEXIT);
1.386     schwarze 2381:        }
1.340     schwarze 2382:        return irc;
1.82      kristaps 2383: }
                   2384:
1.375     schwarze 2385: /*
                   2386:  * Parse and process a text line in conditional scope.
                   2387:  */
1.340     schwarze 2388: static int
1.82      kristaps 2389: roff_cond_text(ROFF_ARGS)
1.78      kristaps 2390: {
1.375     schwarze 2391:        int      irc, rr;
1.343     schwarze 2392:
1.375     schwarze 2393:        rr = 1;  /* If arguments follow "\}", preserve them. */
                   2394:        irc = roff_cond_checkend(r, tok, buf, ln, ppos, pos, &rr);
1.340     schwarze 2395:        if (rr)
                   2396:                irc |= ROFF_CONT;
                   2397:        return irc;
1.74      kristaps 2398: }
                   2399:
1.266     schwarze 2400: /* --- handling of numeric and conditional expressions -------------------- */
                   2401:
1.204     schwarze 2402: /*
                   2403:  * Parse a single signed integer number.  Stop at the first non-digit.
                   2404:  * If there is at least one digit, return success and advance the
                   2405:  * parse point, else return failure and let the parse point unchanged.
                   2406:  * Ignore overflows, treat them just like the C language.
                   2407:  */
1.184     schwarze 2408: static int
1.261     schwarze 2409: roff_getnum(const char *v, int *pos, int *res, int flags)
1.184     schwarze 2410: {
1.261     schwarze 2411:        int      myres, scaled, n, p;
1.206     schwarze 2412:
                   2413:        if (NULL == res)
                   2414:                res = &myres;
1.184     schwarze 2415:
                   2416:        p = *pos;
                   2417:        n = v[p] == '-';
1.261     schwarze 2418:        if (n || v[p] == '+')
1.184     schwarze 2419:                p++;
                   2420:
1.261     schwarze 2421:        if (flags & ROFFNUM_WHITE)
                   2422:                while (isspace((unsigned char)v[p]))
                   2423:                        p++;
                   2424:
1.184     schwarze 2425:        for (*res = 0; isdigit((unsigned char)v[p]); p++)
1.204     schwarze 2426:                *res = 10 * *res + v[p] - '0';
1.184     schwarze 2427:        if (p == *pos + n)
                   2428:                return 0;
                   2429:
                   2430:        if (n)
                   2431:                *res = -*res;
                   2432:
1.254     schwarze 2433:        /* Each number may be followed by one optional scaling unit. */
                   2434:
                   2435:        switch (v[p]) {
                   2436:        case 'f':
1.261     schwarze 2437:                scaled = *res * 65536;
1.254     schwarze 2438:                break;
                   2439:        case 'i':
1.261     schwarze 2440:                scaled = *res * 240;
1.254     schwarze 2441:                break;
                   2442:        case 'c':
1.261     schwarze 2443:                scaled = *res * 240 / 2.54;
1.254     schwarze 2444:                break;
                   2445:        case 'v':
                   2446:        case 'P':
1.261     schwarze 2447:                scaled = *res * 40;
1.254     schwarze 2448:                break;
                   2449:        case 'm':
                   2450:        case 'n':
1.261     schwarze 2451:                scaled = *res * 24;
1.254     schwarze 2452:                break;
                   2453:        case 'p':
1.261     schwarze 2454:                scaled = *res * 10 / 3;
1.254     schwarze 2455:                break;
                   2456:        case 'u':
1.261     schwarze 2457:                scaled = *res;
1.254     schwarze 2458:                break;
                   2459:        case 'M':
1.261     schwarze 2460:                scaled = *res * 6 / 25;
1.254     schwarze 2461:                break;
                   2462:        default:
1.261     schwarze 2463:                scaled = *res;
1.254     schwarze 2464:                p--;
                   2465:                break;
                   2466:        }
1.261     schwarze 2467:        if (flags & ROFFNUM_SCALE)
                   2468:                *res = scaled;
1.254     schwarze 2469:
                   2470:        *pos = p + 1;
1.277     schwarze 2471:        return 1;
1.184     schwarze 2472: }
                   2473:
1.198     schwarze 2474: /*
                   2475:  * Evaluate a string comparison condition.
                   2476:  * The first character is the delimiter.
                   2477:  * Succeed if the string up to its second occurrence
                   2478:  * matches the string up to its third occurence.
                   2479:  * Advance the cursor after the third occurrence
                   2480:  * or lacking that, to the end of the line.
                   2481:  */
                   2482: static int
                   2483: roff_evalstrcond(const char *v, int *pos)
                   2484: {
                   2485:        const char      *s1, *s2, *s3;
                   2486:        int              match;
                   2487:
                   2488:        match = 0;
                   2489:        s1 = v + *pos;          /* initial delimiter */
                   2490:        s2 = s1 + 1;            /* for scanning the first string */
                   2491:        s3 = strchr(s2, *s1);   /* for scanning the second string */
                   2492:
                   2493:        if (NULL == s3)         /* found no middle delimiter */
                   2494:                goto out;
                   2495:
                   2496:        while ('\0' != *++s3) {
                   2497:                if (*s2 != *s3) {  /* mismatch */
                   2498:                        s3 = strchr(s3, *s1);
                   2499:                        break;
                   2500:                }
                   2501:                if (*s3 == *s1) {  /* found the final delimiter */
                   2502:                        match = 1;
                   2503:                        break;
                   2504:                }
                   2505:                s2++;
                   2506:        }
                   2507:
                   2508: out:
                   2509:        if (NULL == s3)
                   2510:                s3 = strchr(s2, '\0');
1.242     schwarze 2511:        else if (*s3 != '\0')
1.198     schwarze 2512:                s3++;
                   2513:        *pos = s3 - v;
1.277     schwarze 2514:        return match;
1.198     schwarze 2515: }
                   2516:
1.204     schwarze 2517: /*
                   2518:  * Evaluate an optionally negated single character, numerical,
                   2519:  * or string condition.
                   2520:  */
1.198     schwarze 2521: static int
1.271     schwarze 2522: roff_evalcond(struct roff *r, int ln, char *v, int *pos)
1.88      kristaps 2523: {
1.336     schwarze 2524:        const char      *start, *end;
                   2525:        char            *cp, *name;
                   2526:        size_t           sz;
                   2527:        int              deftype, len, number, savepos, istrue, wanttrue;
1.88      kristaps 2528:
1.198     schwarze 2529:        if ('!' == v[*pos]) {
                   2530:                wanttrue = 0;
                   2531:                (*pos)++;
                   2532:        } else
                   2533:                wanttrue = 1;
                   2534:
1.88      kristaps 2535:        switch (v[*pos]) {
1.240     schwarze 2536:        case '\0':
1.277     schwarze 2537:                return 0;
1.207     schwarze 2538:        case 'n':
                   2539:        case 'o':
1.88      kristaps 2540:                (*pos)++;
1.277     schwarze 2541:                return wanttrue;
1.207     schwarze 2542:        case 'e':
                   2543:        case 't':
1.239     schwarze 2544:        case 'v':
1.88      kristaps 2545:                (*pos)++;
1.277     schwarze 2546:                return !wanttrue;
1.336     schwarze 2547:        case 'c':
                   2548:                do {
                   2549:                        (*pos)++;
                   2550:                } while (v[*pos] == ' ');
                   2551:
                   2552:                /*
                   2553:                 * Quirk for groff compatibility:
                   2554:                 * The horizontal tab is neither available nor unavailable.
                   2555:                 */
                   2556:
                   2557:                if (v[*pos] == '\t') {
                   2558:                        (*pos)++;
                   2559:                        return 0;
                   2560:                }
                   2561:
                   2562:                /* Printable ASCII characters are available. */
                   2563:
                   2564:                if (v[*pos] != '\\') {
                   2565:                        (*pos)++;
                   2566:                        return wanttrue;
                   2567:                }
                   2568:
                   2569:                end = v + ++*pos;
                   2570:                switch (mandoc_escape(&end, &start, &len)) {
                   2571:                case ESCAPE_SPECIAL:
                   2572:                        istrue = mchars_spec2cp(start, len) != -1;
                   2573:                        break;
                   2574:                case ESCAPE_UNICODE:
                   2575:                        istrue = 1;
                   2576:                        break;
                   2577:                case ESCAPE_NUMBERED:
                   2578:                        istrue = mchars_num2char(start, len) != -1;
                   2579:                        break;
                   2580:                default:
                   2581:                        istrue = !wanttrue;
                   2582:                        break;
                   2583:                }
                   2584:                *pos = end - v;
                   2585:                return istrue == wanttrue;
1.310     schwarze 2586:        case 'd':
1.271     schwarze 2587:        case 'r':
1.310     schwarze 2588:                cp = v + *pos + 1;
                   2589:                while (*cp == ' ')
                   2590:                        cp++;
                   2591:                name = cp;
                   2592:                sz = roff_getname(r, &cp, ln, cp - v);
1.315     schwarze 2593:                if (sz == 0)
                   2594:                        istrue = 0;
                   2595:                else if (v[*pos] == 'r')
                   2596:                        istrue = roff_hasregn(r, name, sz);
                   2597:                else {
                   2598:                        deftype = ROFFDEF_ANY;
                   2599:                        roff_getstrn(r, name, sz, &deftype);
                   2600:                        istrue = !!deftype;
                   2601:                }
1.363     schwarze 2602:                *pos = (name + sz) - v;
1.310     schwarze 2603:                return istrue == wanttrue;
1.88      kristaps 2604:        default:
                   2605:                break;
                   2606:        }
                   2607:
1.241     schwarze 2608:        savepos = *pos;
1.261     schwarze 2609:        if (roff_evalnum(r, ln, v, pos, &number, ROFFNUM_SCALE))
1.277     schwarze 2610:                return (number > 0) == wanttrue;
1.241     schwarze 2611:        else if (*pos == savepos)
1.277     schwarze 2612:                return roff_evalstrcond(v, pos) == wanttrue;
1.204     schwarze 2613:        else
1.277     schwarze 2614:                return 0;
1.88      kristaps 2615: }
                   2616:
1.340     schwarze 2617: static int
1.103     kristaps 2618: roff_line_ignore(ROFF_ARGS)
1.89      kristaps 2619: {
1.123     schwarze 2620:
1.277     schwarze 2621:        return ROFF_IGN;
1.89      kristaps 2622: }
                   2623:
1.340     schwarze 2624: static int
1.251     schwarze 2625: roff_insec(ROFF_ARGS)
                   2626: {
                   2627:
1.350     schwarze 2628:        mandoc_msg(MANDOCERR_REQ_INSEC, ln, ppos, "%s", roff_name[tok]);
1.277     schwarze 2629:        return ROFF_IGN;
1.251     schwarze 2630: }
                   2631:
1.340     schwarze 2632: static int
1.251     schwarze 2633: roff_unsupp(ROFF_ARGS)
                   2634: {
                   2635:
1.350     schwarze 2636:        mandoc_msg(MANDOCERR_REQ_UNSUPP, ln, ppos, "%s", roff_name[tok]);
1.277     schwarze 2637:        return ROFF_IGN;
1.251     schwarze 2638: }
                   2639:
1.340     schwarze 2640: static int
1.82      kristaps 2641: roff_cond(ROFF_ARGS)
1.74      kristaps 2642: {
1.340     schwarze 2643:        int      irc;
1.173     schwarze 2644:
                   2645:        roffnode_push(r, tok, NULL, ln, ppos);
1.74      kristaps 2646:
1.207     schwarze 2647:        /*
1.134     kristaps 2648:         * An `.el' has no conditional body: it will consume the value
                   2649:         * of the current rstack entry set in prior `ie' calls or
1.207     schwarze 2650:         * defaults to DENY.
1.134     kristaps 2651:         *
                   2652:         * If we're not an `el', however, then evaluate the conditional.
                   2653:         */
1.133     kristaps 2654:
1.238     schwarze 2655:        r->last->rule = tok == ROFF_el ?
1.207     schwarze 2656:            (r->rstackpos < 0 ? 0 : r->rstack[r->rstackpos--]) :
1.238     schwarze 2657:            roff_evalcond(r, ln, buf->buf, &pos);
1.77      kristaps 2658:
1.134     kristaps 2659:        /*
                   2660:         * An if-else will put the NEGATION of the current evaluated
                   2661:         * conditional into the stack of rules.
                   2662:         */
                   2663:
1.238     schwarze 2664:        if (tok == ROFF_ie) {
1.223     schwarze 2665:                if (r->rstackpos + 1 == r->rstacksz) {
                   2666:                        r->rstacksz += 16;
                   2667:                        r->rstack = mandoc_reallocarray(r->rstack,
                   2668:                            r->rstacksz, sizeof(int));
1.134     kristaps 2669:                }
1.198     schwarze 2670:                r->rstack[++r->rstackpos] = !r->last->rule;
1.82      kristaps 2671:        }
1.88      kristaps 2672:
                   2673:        /* If the parent has false as its rule, then so do we. */
                   2674:
1.198     schwarze 2675:        if (r->last->parent && !r->last->parent->rule)
                   2676:                r->last->rule = 0;
1.88      kristaps 2677:
                   2678:        /*
1.173     schwarze 2679:         * Determine scope.
                   2680:         * If there is nothing on the line after the conditional,
                   2681:         * not even whitespace, use next-line scope.
1.340     schwarze 2682:         * Except that .while does not support next-line scope.
1.88      kristaps 2683:         */
1.74      kristaps 2684:
1.340     schwarze 2685:        if (buf->buf[pos] == '\0' && tok != ROFF_while) {
1.173     schwarze 2686:                r->last->endspan = 2;
                   2687:                goto out;
                   2688:        }
                   2689:
1.238     schwarze 2690:        while (buf->buf[pos] == ' ')
1.173     schwarze 2691:                pos++;
                   2692:
                   2693:        /* An opening brace requests multiline scope. */
1.75      kristaps 2694:
1.238     schwarze 2695:        if (buf->buf[pos] == '\\' && buf->buf[pos + 1] == '{') {
1.75      kristaps 2696:                r->last->endspan = -1;
                   2697:                pos += 2;
1.272     schwarze 2698:                while (buf->buf[pos] == ' ')
                   2699:                        pos++;
1.173     schwarze 2700:                goto out;
1.207     schwarze 2701:        }
1.74      kristaps 2702:
1.77      kristaps 2703:        /*
1.173     schwarze 2704:         * Anything else following the conditional causes
                   2705:         * single-line scope.  Warn if the scope contains
                   2706:         * nothing but trailing whitespace.
1.77      kristaps 2707:         */
                   2708:
1.238     schwarze 2709:        if (buf->buf[pos] == '\0')
1.350     schwarze 2710:                mandoc_msg(MANDOCERR_COND_EMPTY,
                   2711:                    ln, ppos, "%s", roff_name[tok]);
1.77      kristaps 2712:
1.173     schwarze 2713:        r->last->endspan = 1;
1.74      kristaps 2714:
1.173     schwarze 2715: out:
1.75      kristaps 2716:        *offs = pos;
1.340     schwarze 2717:        irc = ROFF_RERUN;
                   2718:        if (tok == ROFF_while)
                   2719:                irc |= ROFF_WHILE;
                   2720:        return irc;
1.83      schwarze 2721: }
                   2722:
1.340     schwarze 2723: static int
1.92      schwarze 2724: roff_ds(ROFF_ARGS)
                   2725: {
1.212     schwarze 2726:        char            *string;
                   2727:        const char      *name;
                   2728:        size_t           namesz;
1.96      kristaps 2729:
1.251     schwarze 2730:        /* Ignore groff compatibility mode for now. */
                   2731:
                   2732:        if (tok == ROFF_ds1)
                   2733:                tok = ROFF_ds;
                   2734:        else if (tok == ROFF_as1)
                   2735:                tok = ROFF_as;
                   2736:
1.96      kristaps 2737:        /*
1.212     schwarze 2738:         * The first word is the name of the string.
                   2739:         * If it is empty or terminated by an escape sequence,
                   2740:         * abort the `ds' request without defining anything.
1.96      kristaps 2741:         */
1.92      schwarze 2742:
1.238     schwarze 2743:        name = string = buf->buf + pos;
                   2744:        if (*name == '\0')
1.277     schwarze 2745:                return ROFF_IGN;
1.92      schwarze 2746:
1.212     schwarze 2747:        namesz = roff_getname(r, &string, ln, pos);
1.363     schwarze 2748:        switch (name[namesz]) {
                   2749:        case '\\':
1.277     schwarze 2750:                return ROFF_IGN;
1.363     schwarze 2751:        case '\t':
                   2752:                string = buf->buf + pos + namesz;
                   2753:                break;
                   2754:        default:
                   2755:                break;
                   2756:        }
1.212     schwarze 2757:
                   2758:        /* Read past the initial double-quote, if any. */
1.238     schwarze 2759:        if (*string == '"')
1.92      schwarze 2760:                string++;
                   2761:
1.96      kristaps 2762:        /* The rest is the value. */
1.212     schwarze 2763:        roff_setstrn(&r->strtab, name, namesz, string, strlen(string),
                   2764:            ROFF_as == tok);
1.311     schwarze 2765:        roff_setstrn(&r->rentab, name, namesz, NULL, 0, 0);
1.277     schwarze 2766:        return ROFF_IGN;
1.92      schwarze 2767: }
                   2768:
1.204     schwarze 2769: /*
                   2770:  * Parse a single operator, one or two characters long.
                   2771:  * If the operator is recognized, return success and advance the
                   2772:  * parse point, else return failure and let the parse point unchanged.
                   2773:  */
                   2774: static int
                   2775: roff_getop(const char *v, int *pos, char *res)
                   2776: {
                   2777:
                   2778:        *res = v[*pos];
                   2779:
                   2780:        switch (*res) {
1.207     schwarze 2781:        case '+':
                   2782:        case '-':
                   2783:        case '*':
                   2784:        case '/':
                   2785:        case '%':
                   2786:        case '&':
                   2787:        case ':':
1.204     schwarze 2788:                break;
                   2789:        case '<':
                   2790:                switch (v[*pos + 1]) {
1.207     schwarze 2791:                case '=':
1.204     schwarze 2792:                        *res = 'l';
                   2793:                        (*pos)++;
                   2794:                        break;
1.207     schwarze 2795:                case '>':
1.204     schwarze 2796:                        *res = '!';
                   2797:                        (*pos)++;
                   2798:                        break;
1.207     schwarze 2799:                case '?':
1.204     schwarze 2800:                        *res = 'i';
                   2801:                        (*pos)++;
                   2802:                        break;
                   2803:                default:
                   2804:                        break;
                   2805:                }
                   2806:                break;
                   2807:        case '>':
                   2808:                switch (v[*pos + 1]) {
1.207     schwarze 2809:                case '=':
1.204     schwarze 2810:                        *res = 'g';
                   2811:                        (*pos)++;
                   2812:                        break;
1.207     schwarze 2813:                case '?':
1.204     schwarze 2814:                        *res = 'a';
                   2815:                        (*pos)++;
                   2816:                        break;
                   2817:                default:
                   2818:                        break;
                   2819:                }
                   2820:                break;
                   2821:        case '=':
                   2822:                if ('=' == v[*pos + 1])
                   2823:                        (*pos)++;
                   2824:                break;
                   2825:        default:
1.277     schwarze 2826:                return 0;
1.204     schwarze 2827:        }
                   2828:        (*pos)++;
                   2829:
1.277     schwarze 2830:        return *res;
1.204     schwarze 2831: }
                   2832:
                   2833: /*
                   2834:  * Evaluate either a parenthesized numeric expression
                   2835:  * or a single signed integer number.
                   2836:  */
                   2837: static int
1.235     schwarze 2838: roff_evalpar(struct roff *r, int ln,
1.261     schwarze 2839:        const char *v, int *pos, int *res, int flags)
1.204     schwarze 2840: {
                   2841:
                   2842:        if ('(' != v[*pos])
1.277     schwarze 2843:                return roff_getnum(v, pos, res, flags);
1.204     schwarze 2844:
                   2845:        (*pos)++;
1.261     schwarze 2846:        if ( ! roff_evalnum(r, ln, v, pos, res, flags | ROFFNUM_WHITE))
1.277     schwarze 2847:                return 0;
1.204     schwarze 2848:
1.206     schwarze 2849:        /*
                   2850:         * Omission of the closing parenthesis
                   2851:         * is an error in validation mode,
                   2852:         * but ignored in evaluation mode.
                   2853:         */
                   2854:
1.204     schwarze 2855:        if (')' == v[*pos])
                   2856:                (*pos)++;
1.206     schwarze 2857:        else if (NULL == res)
1.277     schwarze 2858:                return 0;
1.204     schwarze 2859:
1.277     schwarze 2860:        return 1;
1.204     schwarze 2861: }
                   2862:
                   2863: /*
                   2864:  * Evaluate a complete numeric expression.
                   2865:  * Proceed left to right, there is no concept of precedence.
                   2866:  */
                   2867: static int
1.235     schwarze 2868: roff_evalnum(struct roff *r, int ln, const char *v,
1.261     schwarze 2869:        int *pos, int *res, int flags)
1.204     schwarze 2870: {
                   2871:        int              mypos, operand2;
                   2872:        char             operator;
                   2873:
                   2874:        if (NULL == pos) {
                   2875:                mypos = 0;
                   2876:                pos = &mypos;
                   2877:        }
                   2878:
1.261     schwarze 2879:        if (flags & ROFFNUM_WHITE)
1.204     schwarze 2880:                while (isspace((unsigned char)v[*pos]))
                   2881:                        (*pos)++;
                   2882:
1.261     schwarze 2883:        if ( ! roff_evalpar(r, ln, v, pos, res, flags))
1.277     schwarze 2884:                return 0;
1.204     schwarze 2885:
                   2886:        while (1) {
1.261     schwarze 2887:                if (flags & ROFFNUM_WHITE)
1.204     schwarze 2888:                        while (isspace((unsigned char)v[*pos]))
                   2889:                                (*pos)++;
                   2890:
                   2891:                if ( ! roff_getop(v, pos, &operator))
                   2892:                        break;
                   2893:
1.261     schwarze 2894:                if (flags & ROFFNUM_WHITE)
1.204     schwarze 2895:                        while (isspace((unsigned char)v[*pos]))
                   2896:                                (*pos)++;
                   2897:
1.261     schwarze 2898:                if ( ! roff_evalpar(r, ln, v, pos, &operand2, flags))
1.277     schwarze 2899:                        return 0;
1.204     schwarze 2900:
1.261     schwarze 2901:                if (flags & ROFFNUM_WHITE)
1.204     schwarze 2902:                        while (isspace((unsigned char)v[*pos]))
                   2903:                                (*pos)++;
1.206     schwarze 2904:
                   2905:                if (NULL == res)
                   2906:                        continue;
1.204     schwarze 2907:
                   2908:                switch (operator) {
1.207     schwarze 2909:                case '+':
1.204     schwarze 2910:                        *res += operand2;
                   2911:                        break;
1.207     schwarze 2912:                case '-':
1.204     schwarze 2913:                        *res -= operand2;
                   2914:                        break;
1.207     schwarze 2915:                case '*':
1.204     schwarze 2916:                        *res *= operand2;
                   2917:                        break;
1.207     schwarze 2918:                case '/':
1.244     schwarze 2919:                        if (operand2 == 0) {
1.235     schwarze 2920:                                mandoc_msg(MANDOCERR_DIVZERO,
1.350     schwarze 2921:                                        ln, *pos, "%s", v);
1.234     kristaps 2922:                                *res = 0;
                   2923:                                break;
                   2924:                        }
1.204     schwarze 2925:                        *res /= operand2;
                   2926:                        break;
1.207     schwarze 2927:                case '%':
1.244     schwarze 2928:                        if (operand2 == 0) {
                   2929:                                mandoc_msg(MANDOCERR_DIVZERO,
1.350     schwarze 2930:                                        ln, *pos, "%s", v);
1.244     schwarze 2931:                                *res = 0;
                   2932:                                break;
                   2933:                        }
1.204     schwarze 2934:                        *res %= operand2;
                   2935:                        break;
1.207     schwarze 2936:                case '<':
1.204     schwarze 2937:                        *res = *res < operand2;
                   2938:                        break;
1.207     schwarze 2939:                case '>':
1.204     schwarze 2940:                        *res = *res > operand2;
                   2941:                        break;
1.207     schwarze 2942:                case 'l':
1.204     schwarze 2943:                        *res = *res <= operand2;
                   2944:                        break;
1.207     schwarze 2945:                case 'g':
1.204     schwarze 2946:                        *res = *res >= operand2;
                   2947:                        break;
1.207     schwarze 2948:                case '=':
1.204     schwarze 2949:                        *res = *res == operand2;
                   2950:                        break;
1.207     schwarze 2951:                case '!':
1.204     schwarze 2952:                        *res = *res != operand2;
                   2953:                        break;
1.207     schwarze 2954:                case '&':
1.204     schwarze 2955:                        *res = *res && operand2;
                   2956:                        break;
1.207     schwarze 2957:                case ':':
1.204     schwarze 2958:                        *res = *res || operand2;
                   2959:                        break;
1.207     schwarze 2960:                case 'i':
1.204     schwarze 2961:                        if (operand2 < *res)
                   2962:                                *res = operand2;
                   2963:                        break;
1.207     schwarze 2964:                case 'a':
1.204     schwarze 2965:                        if (operand2 > *res)
                   2966:                                *res = operand2;
                   2967:                        break;
                   2968:                default:
                   2969:                        abort();
                   2970:                }
                   2971:        }
1.277     schwarze 2972:        return 1;
1.204     schwarze 2973: }
                   2974:
1.266     schwarze 2975: /* --- register management ------------------------------------------------ */
                   2976:
1.180     schwarze 2977: void
1.187     schwarze 2978: roff_setreg(struct roff *r, const char *name, int val, char sign)
1.147     kristaps 2979: {
1.327     schwarze 2980:        roff_setregn(r, name, strlen(name), val, sign, INT_MIN);
1.326     schwarze 2981: }
                   2982:
                   2983: static void
                   2984: roff_setregn(struct roff *r, const char *name, size_t len,
1.327     schwarze 2985:     int val, char sign, int step)
1.326     schwarze 2986: {
1.180     schwarze 2987:        struct roffreg  *reg;
                   2988:
                   2989:        /* Search for an existing register with the same name. */
                   2990:        reg = r->regtab;
                   2991:
1.326     schwarze 2992:        while (reg != NULL && (reg->key.sz != len ||
                   2993:            strncmp(reg->key.p, name, len) != 0))
1.180     schwarze 2994:                reg = reg->next;
1.147     kristaps 2995:
1.180     schwarze 2996:        if (NULL == reg) {
                   2997:                /* Create a new register. */
                   2998:                reg = mandoc_malloc(sizeof(struct roffreg));
1.326     schwarze 2999:                reg->key.p = mandoc_strndup(name, len);
                   3000:                reg->key.sz = len;
1.187     schwarze 3001:                reg->val = 0;
1.327     schwarze 3002:                reg->step = 0;
1.180     schwarze 3003:                reg->next = r->regtab;
                   3004:                r->regtab = reg;
                   3005:        }
                   3006:
1.187     schwarze 3007:        if ('+' == sign)
                   3008:                reg->val += val;
                   3009:        else if ('-' == sign)
                   3010:                reg->val -= val;
                   3011:        else
                   3012:                reg->val = val;
1.327     schwarze 3013:        if (step != INT_MIN)
                   3014:                reg->step = step;
1.147     kristaps 3015: }
                   3016:
1.192     schwarze 3017: /*
                   3018:  * Handle some predefined read-only number registers.
                   3019:  * For now, return -1 if the requested register is not predefined;
                   3020:  * in case a predefined read-only register having the value -1
                   3021:  * were to turn up, another special value would have to be chosen.
                   3022:  */
                   3023: static int
1.273     schwarze 3024: roff_getregro(const struct roff *r, const char *name)
1.192     schwarze 3025: {
                   3026:
                   3027:        switch (*name) {
1.273     schwarze 3028:        case '$':  /* Number of arguments of the last macro evaluated. */
1.339     schwarze 3029:                return r->mstackpos < 0 ? 0 : r->mstack[r->mstackpos].argc;
1.207     schwarze 3030:        case 'A':  /* ASCII approximation mode is always off. */
1.277     schwarze 3031:                return 0;
1.207     schwarze 3032:        case 'g':  /* Groff compatibility mode is always on. */
1.277     schwarze 3033:                return 1;
1.207     schwarze 3034:        case 'H':  /* Fixed horizontal resolution. */
1.277     schwarze 3035:                return 24;
1.207     schwarze 3036:        case 'j':  /* Always adjust left margin only. */
1.277     schwarze 3037:                return 0;
1.207     schwarze 3038:        case 'T':  /* Some output device is always defined. */
1.277     schwarze 3039:                return 1;
1.207     schwarze 3040:        case 'V':  /* Fixed vertical resolution. */
1.277     schwarze 3041:                return 40;
1.192     schwarze 3042:        default:
1.277     schwarze 3043:                return -1;
1.192     schwarze 3044:        }
                   3045: }
                   3046:
1.181     schwarze 3047: int
1.326     schwarze 3048: roff_getreg(struct roff *r, const char *name)
1.147     kristaps 3049: {
1.327     schwarze 3050:        return roff_getregn(r, name, strlen(name), '\0');
1.181     schwarze 3051: }
                   3052:
                   3053: static int
1.327     schwarze 3054: roff_getregn(struct roff *r, const char *name, size_t len, char sign)
1.181     schwarze 3055: {
                   3056:        struct roffreg  *reg;
1.192     schwarze 3057:        int              val;
                   3058:
                   3059:        if ('.' == name[0] && 2 == len) {
1.273     schwarze 3060:                val = roff_getregro(r, name + 1);
1.192     schwarze 3061:                if (-1 != val)
1.277     schwarze 3062:                        return val;
1.192     schwarze 3063:        }
1.181     schwarze 3064:
1.327     schwarze 3065:        for (reg = r->regtab; reg; reg = reg->next) {
1.181     schwarze 3066:                if (len == reg->key.sz &&
1.327     schwarze 3067:                    0 == strncmp(name, reg->key.p, len)) {
                   3068:                        switch (sign) {
                   3069:                        case '+':
                   3070:                                reg->val += reg->step;
                   3071:                                break;
                   3072:                        case '-':
                   3073:                                reg->val -= reg->step;
                   3074:                                break;
                   3075:                        default:
                   3076:                                break;
                   3077:                        }
1.277     schwarze 3078:                        return reg->val;
1.327     schwarze 3079:                }
                   3080:        }
1.271     schwarze 3081:
1.327     schwarze 3082:        roff_setregn(r, name, len, 0, '\0', INT_MIN);
1.277     schwarze 3083:        return 0;
1.271     schwarze 3084: }
                   3085:
                   3086: static int
                   3087: roff_hasregn(const struct roff *r, const char *name, size_t len)
                   3088: {
                   3089:        struct roffreg  *reg;
                   3090:        int              val;
                   3091:
                   3092:        if ('.' == name[0] && 2 == len) {
1.273     schwarze 3093:                val = roff_getregro(r, name + 1);
1.271     schwarze 3094:                if (-1 != val)
1.277     schwarze 3095:                        return 1;
1.271     schwarze 3096:        }
                   3097:
                   3098:        for (reg = r->regtab; reg; reg = reg->next)
                   3099:                if (len == reg->key.sz &&
                   3100:                    0 == strncmp(name, reg->key.p, len))
1.277     schwarze 3101:                        return 1;
1.147     kristaps 3102:
1.277     schwarze 3103:        return 0;
1.147     kristaps 3104: }
                   3105:
1.180     schwarze 3106: static void
                   3107: roff_freereg(struct roffreg *reg)
1.147     kristaps 3108: {
1.180     schwarze 3109:        struct roffreg  *old_reg;
1.147     kristaps 3110:
1.180     schwarze 3111:        while (NULL != reg) {
                   3112:                free(reg->key.p);
                   3113:                old_reg = reg;
                   3114:                reg = reg->next;
                   3115:                free(old_reg);
                   3116:        }
1.147     kristaps 3117: }
1.92      schwarze 3118:
1.340     schwarze 3119: static int
1.89      kristaps 3120: roff_nr(ROFF_ARGS)
1.83      schwarze 3121: {
1.327     schwarze 3122:        char            *key, *val, *step;
1.212     schwarze 3123:        size_t           keysz;
1.327     schwarze 3124:        int              iv, is, len;
1.187     schwarze 3125:        char             sign;
1.89      kristaps 3126:
1.238     schwarze 3127:        key = val = buf->buf + pos;
                   3128:        if (*key == '\0')
1.277     schwarze 3129:                return ROFF_IGN;
1.212     schwarze 3130:
                   3131:        keysz = roff_getname(r, &val, ln, pos);
1.363     schwarze 3132:        if (key[keysz] == '\\' || key[keysz] == '\t')
1.277     schwarze 3133:                return ROFF_IGN;
1.89      kristaps 3134:
1.187     schwarze 3135:        sign = *val;
1.238     schwarze 3136:        if (sign == '+' || sign == '-')
1.187     schwarze 3137:                val++;
                   3138:
1.327     schwarze 3139:        len = 0;
                   3140:        if (roff_evalnum(r, ln, val, &len, &iv, ROFFNUM_SCALE) == 0)
                   3141:                return ROFF_IGN;
                   3142:
                   3143:        step = val + len;
                   3144:        while (isspace((unsigned char)*step))
                   3145:                step++;
                   3146:        if (roff_evalnum(r, ln, step, NULL, &is, 0) == 0)
                   3147:                is = INT_MIN;
1.109     kristaps 3148:
1.327     schwarze 3149:        roff_setregn(r, key, keysz, iv, sign, is);
1.277     schwarze 3150:        return ROFF_IGN;
1.203     schwarze 3151: }
                   3152:
1.340     schwarze 3153: static int
1.203     schwarze 3154: roff_rr(ROFF_ARGS)
                   3155: {
                   3156:        struct roffreg  *reg, **prev;
1.212     schwarze 3157:        char            *name, *cp;
                   3158:        size_t           namesz;
1.203     schwarze 3159:
1.238     schwarze 3160:        name = cp = buf->buf + pos;
                   3161:        if (*name == '\0')
1.277     schwarze 3162:                return ROFF_IGN;
1.212     schwarze 3163:        namesz = roff_getname(r, &cp, ln, pos);
                   3164:        name[namesz] = '\0';
1.203     schwarze 3165:
                   3166:        prev = &r->regtab;
                   3167:        while (1) {
                   3168:                reg = *prev;
1.238     schwarze 3169:                if (reg == NULL || !strcmp(name, reg->key.p))
1.203     schwarze 3170:                        break;
                   3171:                prev = &reg->next;
                   3172:        }
1.238     schwarze 3173:        if (reg != NULL) {
1.203     schwarze 3174:                *prev = reg->next;
                   3175:                free(reg->key.p);
                   3176:                free(reg);
                   3177:        }
1.277     schwarze 3178:        return ROFF_IGN;
1.122     schwarze 3179: }
                   3180:
1.266     schwarze 3181: /* --- handler functions for roff requests -------------------------------- */
                   3182:
1.340     schwarze 3183: static int
1.122     schwarze 3184: roff_rm(ROFF_ARGS)
                   3185: {
                   3186:        const char       *name;
                   3187:        char             *cp;
1.212     schwarze 3188:        size_t            namesz;
1.122     schwarze 3189:
1.238     schwarze 3190:        cp = buf->buf + pos;
                   3191:        while (*cp != '\0') {
1.212     schwarze 3192:                name = cp;
1.238     schwarze 3193:                namesz = roff_getname(r, &cp, ln, (int)(cp - buf->buf));
1.212     schwarze 3194:                roff_setstrn(&r->strtab, name, namesz, NULL, 0, 0);
1.311     schwarze 3195:                roff_setstrn(&r->rentab, name, namesz, NULL, 0, 0);
1.363     schwarze 3196:                if (name[namesz] == '\\' || name[namesz] == '\t')
1.212     schwarze 3197:                        break;
1.122     schwarze 3198:        }
1.277     schwarze 3199:        return ROFF_IGN;
1.178     schwarze 3200: }
                   3201:
1.340     schwarze 3202: static int
1.178     schwarze 3203: roff_it(ROFF_ARGS)
                   3204: {
                   3205:        int              iv;
                   3206:
                   3207:        /* Parse the number of lines. */
1.261     schwarze 3208:
                   3209:        if ( ! roff_evalnum(r, ln, buf->buf, &pos, &iv, 0)) {
1.350     schwarze 3210:                mandoc_msg(MANDOCERR_IT_NONUM,
                   3211:                    ln, ppos, "%s", buf->buf + 1);
1.277     schwarze 3212:                return ROFF_IGN;
1.178     schwarze 3213:        }
                   3214:
1.262     schwarze 3215:        while (isspace((unsigned char)buf->buf[pos]))
                   3216:                pos++;
                   3217:
                   3218:        /*
                   3219:         * Arm the input line trap.
                   3220:         * Special-casing "an-trap" is an ugly workaround to cope
                   3221:         * with DocBook stupidly fiddling with man(7) internals.
                   3222:         */
1.261     schwarze 3223:
1.178     schwarze 3224:        roffit_lines = iv;
1.262     schwarze 3225:        roffit_macro = mandoc_strdup(iv != 1 ||
                   3226:            strcmp(buf->buf + pos, "an-trap") ?
                   3227:            buf->buf + pos : "br");
1.277     schwarze 3228:        return ROFF_IGN;
1.175     schwarze 3229: }
                   3230:
1.340     schwarze 3231: static int
1.175     schwarze 3232: roff_Dd(ROFF_ARGS)
                   3233: {
1.315     schwarze 3234:        int              mask;
                   3235:        enum roff_tok    t, te;
1.227     schwarze 3236:
1.315     schwarze 3237:        switch (tok) {
                   3238:        case ROFF_Dd:
                   3239:                tok = MDOC_Dd;
                   3240:                te = MDOC_MAX;
                   3241:                if (r->format == 0)
                   3242:                        r->format = MPARSE_MDOC;
                   3243:                mask = MPARSE_MDOC | MPARSE_QUICK;
                   3244:                break;
                   3245:        case ROFF_TH:
                   3246:                tok = MAN_TH;
                   3247:                te = MAN_MAX;
                   3248:                if (r->format == 0)
                   3249:                        r->format = MPARSE_MAN;
                   3250:                mask = MPARSE_QUICK;
                   3251:                break;
                   3252:        default:
                   3253:                abort();
                   3254:        }
                   3255:        if ((r->options & mask) == 0)
                   3256:                for (t = tok; t < te; t++)
                   3257:                        roff_setstr(r, roff_name[t], NULL, 0);
1.277     schwarze 3258:        return ROFF_CONT;
1.109     kristaps 3259: }
                   3260:
1.340     schwarze 3261: static int
1.109     kristaps 3262: roff_TE(ROFF_ARGS)
                   3263: {
1.361     schwarze 3264:        r->man->flags &= ~ROFF_NONOFILL;
1.321     schwarze 3265:        if (r->tbl == NULL) {
1.350     schwarze 3266:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "TE");
1.321     schwarze 3267:                return ROFF_IGN;
                   3268:        }
1.346     schwarze 3269:        if (tbl_end(r->tbl, 0) == 0) {
1.321     schwarze 3270:                r->tbl = NULL;
1.258     schwarze 3271:                free(buf->buf);
                   3272:                buf->buf = mandoc_strdup(".sp");
                   3273:                buf->sz = 4;
1.329     schwarze 3274:                *offs = 0;
1.277     schwarze 3275:                return ROFF_REPARSE;
1.258     schwarze 3276:        }
1.321     schwarze 3277:        r->tbl = NULL;
1.277     schwarze 3278:        return ROFF_IGN;
1.112     kristaps 3279: }
                   3280:
1.340     schwarze 3281: static int
1.112     kristaps 3282: roff_T_(ROFF_ARGS)
                   3283: {
                   3284:
                   3285:        if (NULL == r->tbl)
1.350     schwarze 3286:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "T&");
1.112     kristaps 3287:        else
1.296     schwarze 3288:                tbl_restart(ln, ppos, r->tbl);
1.112     kristaps 3289:
1.277     schwarze 3290:        return ROFF_IGN;
1.109     kristaps 3291: }
                   3292:
1.230     schwarze 3293: /*
                   3294:  * Handle in-line equation delimiters.
                   3295:  */
1.340     schwarze 3296: static int
1.238     schwarze 3297: roff_eqndelim(struct roff *r, struct buf *buf, int pos)
1.151     kristaps 3298: {
1.233     schwarze 3299:        char            *cp1, *cp2;
                   3300:        const char      *bef_pr, *bef_nl, *mac, *aft_nl, *aft_pr;
1.151     kristaps 3301:
1.230     schwarze 3302:        /*
                   3303:         * Outside equations, look for an opening delimiter.
                   3304:         * If we are inside an equation, we already know it is
                   3305:         * in-line, or this function wouldn't have been called;
                   3306:         * so look for a closing delimiter.
                   3307:         */
                   3308:
1.238     schwarze 3309:        cp1 = buf->buf + pos;
1.230     schwarze 3310:        cp2 = strchr(cp1, r->eqn == NULL ?
                   3311:            r->last_eqn->odelim : r->last_eqn->cdelim);
                   3312:        if (cp2 == NULL)
1.277     schwarze 3313:                return ROFF_CONT;
1.230     schwarze 3314:
1.233     schwarze 3315:        *cp2++ = '\0';
                   3316:        bef_pr = bef_nl = aft_nl = aft_pr = "";
                   3317:
                   3318:        /* Handle preceding text, protecting whitespace. */
                   3319:
1.238     schwarze 3320:        if (*buf->buf != '\0') {
1.233     schwarze 3321:                if (r->eqn == NULL)
                   3322:                        bef_pr = "\\&";
                   3323:                bef_nl = "\n";
                   3324:        }
                   3325:
                   3326:        /*
                   3327:         * Prepare replacing the delimiter with an equation macro
                   3328:         * and drop leading white space from the equation.
                   3329:         */
1.230     schwarze 3330:
1.233     schwarze 3331:        if (r->eqn == NULL) {
                   3332:                while (*cp2 == ' ')
                   3333:                        cp2++;
                   3334:                mac = ".EQ";
                   3335:        } else
                   3336:                mac = ".EN";
                   3337:
                   3338:        /* Handle following text, protecting whitespace. */
                   3339:
                   3340:        if (*cp2 != '\0') {
                   3341:                aft_nl = "\n";
                   3342:                if (r->eqn != NULL)
                   3343:                        aft_pr = "\\&";
                   3344:        }
                   3345:
                   3346:        /* Do the actual replacement. */
                   3347:
1.238     schwarze 3348:        buf->sz = mandoc_asprintf(&cp1, "%s%s%s%s%s%s%s", buf->buf,
1.233     schwarze 3349:            bef_pr, bef_nl, mac, aft_nl, aft_pr, cp2) + 1;
1.238     schwarze 3350:        free(buf->buf);
                   3351:        buf->buf = cp1;
1.230     schwarze 3352:
                   3353:        /* Toggle the in-line state of the eqn subsystem. */
                   3354:
                   3355:        r->eqn_inline = r->eqn == NULL;
1.277     schwarze 3356:        return ROFF_REPARSE;
1.151     kristaps 3357: }
                   3358:
1.340     schwarze 3359: static int
1.235     schwarze 3360: roff_EQ(ROFF_ARGS)
1.125     kristaps 3361: {
1.319     schwarze 3362:        struct roff_node        *n;
                   3363:
1.356     schwarze 3364:        if (r->man->meta.macroset == MACROSET_MAN)
1.322     schwarze 3365:                man_breakscope(r->man, ROFF_EQ);
1.319     schwarze 3366:        n = roff_node_alloc(r->man, ln, ppos, ROFFT_EQN, TOKEN_NONE);
                   3367:        if (ln > r->man->last->line)
                   3368:                n->flags |= NODE_LINE;
1.348     schwarze 3369:        n->eqn = eqn_box_new();
1.319     schwarze 3370:        roff_node_append(r->man, n);
                   3371:        r->man->next = ROFF_NEXT_SIBLING;
1.125     kristaps 3372:
1.238     schwarze 3373:        assert(r->eqn == NULL);
1.319     schwarze 3374:        if (r->last_eqn == NULL)
1.351     schwarze 3375:                r->last_eqn = eqn_alloc();
1.319     schwarze 3376:        else
                   3377:                eqn_reset(r->last_eqn);
                   3378:        r->eqn = r->last_eqn;
                   3379:        r->eqn->node = n;
1.151     kristaps 3380:
1.238     schwarze 3381:        if (buf->buf[pos] != '\0')
1.350     schwarze 3382:                mandoc_msg(MANDOCERR_ARG_SKIP, ln, pos,
1.238     schwarze 3383:                    ".EQ %s", buf->buf + pos);
1.151     kristaps 3384:
1.277     schwarze 3385:        return ROFF_IGN;
1.125     kristaps 3386: }
                   3387:
1.340     schwarze 3388: static int
1.125     kristaps 3389: roff_EN(ROFF_ARGS)
                   3390: {
1.319     schwarze 3391:        if (r->eqn != NULL) {
                   3392:                eqn_parse(r->eqn);
                   3393:                r->eqn = NULL;
                   3394:        } else
1.350     schwarze 3395:                mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, ppos, "EN");
1.319     schwarze 3396:        if (buf->buf[pos] != '\0')
1.350     schwarze 3397:                mandoc_msg(MANDOCERR_ARG_SKIP, ln, pos,
1.319     schwarze 3398:                    "EN %s", buf->buf + pos);
1.277     schwarze 3399:        return ROFF_IGN;
1.125     kristaps 3400: }
                   3401:
1.340     schwarze 3402: static int
1.109     kristaps 3403: roff_TS(ROFF_ARGS)
                   3404: {
1.321     schwarze 3405:        if (r->tbl != NULL) {
1.350     schwarze 3406:                mandoc_msg(MANDOCERR_BLK_BROKEN, ln, ppos, "TS breaks TS");
1.346     schwarze 3407:                tbl_end(r->tbl, 0);
1.115     kristaps 3408:        }
1.361     schwarze 3409:        r->man->flags |= ROFF_NONOFILL;
1.351     schwarze 3410:        r->tbl = tbl_alloc(ppos, ln, r->last_tbl);
1.346     schwarze 3411:        if (r->last_tbl == NULL)
1.321     schwarze 3412:                r->first_tbl = r->tbl;
                   3413:        r->last_tbl = r->tbl;
1.297     schwarze 3414:        return ROFF_IGN;
                   3415: }
                   3416:
1.340     schwarze 3417: static int
1.358     schwarze 3418: roff_noarg(ROFF_ARGS)
                   3419: {
                   3420:        if (r->man->flags & (MAN_BLINE | MAN_ELINE))
                   3421:                man_breakscope(r->man, tok);
                   3422:        if (tok == ROFF_brp)
                   3423:                tok = ROFF_br;
                   3424:        roff_elem_alloc(r->man, ln, ppos, tok);
                   3425:        if (buf->buf[pos] != '\0')
                   3426:                mandoc_msg(MANDOCERR_ARG_SKIP, ln, pos,
                   3427:                   "%s %s", roff_name[tok], buf->buf + pos);
                   3428:        if (tok == ROFF_nf)
                   3429:                r->man->flags |= ROFF_NOFILL;
                   3430:        else if (tok == ROFF_fi)
                   3431:                r->man->flags &= ~ROFF_NOFILL;
                   3432:        r->man->last->flags |= NODE_LINE | NODE_VALID | NODE_ENDED;
                   3433:        r->man->next = ROFF_NEXT_SIBLING;
                   3434:        return ROFF_IGN;
                   3435: }
                   3436:
                   3437: static int
1.297     schwarze 3438: roff_onearg(ROFF_ARGS)
                   3439: {
                   3440:        struct roff_node        *n;
                   3441:        char                    *cp;
1.305     schwarze 3442:        int                      npos;
1.297     schwarze 3443:
1.302     schwarze 3444:        if (r->man->flags & (MAN_BLINE | MAN_ELINE) &&
1.320     schwarze 3445:            (tok == ROFF_ce || tok == ROFF_rj || tok == ROFF_sp ||
                   3446:             tok == ROFF_ti))
1.302     schwarze 3447:                man_breakscope(r->man, tok);
                   3448:
1.309     schwarze 3449:        if (roffce_node != NULL && (tok == ROFF_ce || tok == ROFF_rj)) {
1.305     schwarze 3450:                r->man->last = roffce_node;
                   3451:                r->man->next = ROFF_NEXT_SIBLING;
                   3452:        }
                   3453:
1.297     schwarze 3454:        roff_elem_alloc(r->man, ln, ppos, tok);
                   3455:        n = r->man->last;
                   3456:
                   3457:        cp = buf->buf + pos;
                   3458:        if (*cp != '\0') {
                   3459:                while (*cp != '\0' && *cp != ' ')
                   3460:                        cp++;
                   3461:                while (*cp == ' ')
                   3462:                        *cp++ = '\0';
                   3463:                if (*cp != '\0')
1.350     schwarze 3464:                        mandoc_msg(MANDOCERR_ARG_EXCESS,
                   3465:                            ln, (int)(cp - buf->buf),
1.297     schwarze 3466:                            "%s ... %s", roff_name[tok], cp);
                   3467:                roff_word_alloc(r->man, ln, pos, buf->buf + pos);
1.300     schwarze 3468:        }
                   3469:
1.309     schwarze 3470:        if (tok == ROFF_ce || tok == ROFF_rj) {
                   3471:                if (r->man->last->type == ROFFT_ELEM) {
1.305     schwarze 3472:                        roff_word_alloc(r->man, ln, pos, "1");
                   3473:                        r->man->last->flags |= NODE_NOSRC;
                   3474:                }
                   3475:                npos = 0;
                   3476:                if (roff_evalnum(r, ln, r->man->last->string, &npos,
                   3477:                    &roffce_lines, 0) == 0) {
1.350     schwarze 3478:                        mandoc_msg(MANDOCERR_CE_NONUM,
                   3479:                            ln, pos, "ce %s", buf->buf + pos);
1.305     schwarze 3480:                        roffce_lines = 1;
                   3481:                }
                   3482:                if (roffce_lines < 1) {
                   3483:                        r->man->last = r->man->last->parent;
                   3484:                        roffce_node = NULL;
                   3485:                        roffce_lines = 0;
                   3486:                } else
                   3487:                        roffce_node = r->man->last->parent;
                   3488:        } else {
                   3489:                n->flags |= NODE_VALID | NODE_ENDED;
                   3490:                r->man->last = n;
                   3491:        }
                   3492:        n->flags |= NODE_LINE;
1.300     schwarze 3493:        r->man->next = ROFF_NEXT_SIBLING;
                   3494:        return ROFF_IGN;
                   3495: }
                   3496:
1.340     schwarze 3497: static int
1.300     schwarze 3498: roff_manyarg(ROFF_ARGS)
                   3499: {
                   3500:        struct roff_node        *n;
                   3501:        char                    *sp, *ep;
                   3502:
                   3503:        roff_elem_alloc(r->man, ln, ppos, tok);
                   3504:        n = r->man->last;
                   3505:
                   3506:        for (sp = ep = buf->buf + pos; *sp != '\0'; sp = ep) {
                   3507:                while (*ep != '\0' && *ep != ' ')
                   3508:                        ep++;
                   3509:                while (*ep == ' ')
                   3510:                        *ep++ = '\0';
                   3511:                roff_word_alloc(r->man, ln, sp - buf->buf, sp);
1.297     schwarze 3512:        }
                   3513:
                   3514:        n->flags |= NODE_LINE | NODE_VALID | NODE_ENDED;
                   3515:        r->man->last = n;
                   3516:        r->man->next = ROFF_NEXT_SIBLING;
1.277     schwarze 3517:        return ROFF_IGN;
1.251     schwarze 3518: }
                   3519:
1.340     schwarze 3520: static int
1.311     schwarze 3521: roff_als(ROFF_ARGS)
                   3522: {
                   3523:        char            *oldn, *newn, *end, *value;
                   3524:        size_t           oldsz, newsz, valsz;
                   3525:
                   3526:        newn = oldn = buf->buf + pos;
                   3527:        if (*newn == '\0')
                   3528:                return ROFF_IGN;
                   3529:
                   3530:        newsz = roff_getname(r, &oldn, ln, pos);
1.363     schwarze 3531:        if (newn[newsz] == '\\' || newn[newsz] == '\t' || *oldn == '\0')
1.311     schwarze 3532:                return ROFF_IGN;
                   3533:
                   3534:        end = oldn;
                   3535:        oldsz = roff_getname(r, &end, ln, oldn - buf->buf);
                   3536:        if (oldsz == 0)
                   3537:                return ROFF_IGN;
                   3538:
1.338     schwarze 3539:        valsz = mandoc_asprintf(&value, ".%.*s \\$@\\\"\n",
1.315     schwarze 3540:            (int)oldsz, oldn);
1.311     schwarze 3541:        roff_setstrn(&r->strtab, newn, newsz, value, valsz, 0);
                   3542:        roff_setstrn(&r->rentab, newn, newsz, NULL, 0, 0);
                   3543:        free(value);
1.364     schwarze 3544:        return ROFF_IGN;
                   3545: }
                   3546:
                   3547: /*
                   3548:  * The .break request only makes sense inside conditionals,
                   3549:  * and that case is already handled in roff_cond_sub().
                   3550:  */
                   3551: static int
                   3552: roff_break(ROFF_ARGS)
                   3553: {
                   3554:        mandoc_msg(MANDOCERR_BLK_NOTOPEN, ln, pos, "break");
1.296     schwarze 3555:        return ROFF_IGN;
1.92      schwarze 3556: }
                   3557:
1.340     schwarze 3558: static int
1.174     kristaps 3559: roff_cc(ROFF_ARGS)
                   3560: {
                   3561:        const char      *p;
                   3562:
1.238     schwarze 3563:        p = buf->buf + pos;
1.174     kristaps 3564:
1.238     schwarze 3565:        if (*p == '\0' || (r->control = *p++) == '.')
1.303     schwarze 3566:                r->control = '\0';
1.174     kristaps 3567:
1.238     schwarze 3568:        if (*p != '\0')
1.350     schwarze 3569:                mandoc_msg(MANDOCERR_ARG_EXCESS,
1.260     schwarze 3570:                    ln, p - buf->buf, "cc ... %s", p);
1.174     kristaps 3571:
1.341     schwarze 3572:        return ROFF_IGN;
                   3573: }
                   3574:
                   3575: static int
                   3576: roff_char(ROFF_ARGS)
                   3577: {
                   3578:        const char      *p, *kp, *vp;
                   3579:        size_t           ksz, vsz;
                   3580:        int              font;
                   3581:
                   3582:        /* Parse the character to be replaced. */
                   3583:
                   3584:        kp = buf->buf + pos;
                   3585:        p = kp + 1;
                   3586:        if (*kp == '\0' || (*kp == '\\' &&
                   3587:             mandoc_escape(&p, NULL, NULL) != ESCAPE_SPECIAL) ||
                   3588:            (*p != ' ' && *p != '\0')) {
1.350     schwarze 3589:                mandoc_msg(MANDOCERR_CHAR_ARG, ln, pos, "char %s", kp);
1.341     schwarze 3590:                return ROFF_IGN;
                   3591:        }
                   3592:        ksz = p - kp;
                   3593:        while (*p == ' ')
                   3594:                p++;
                   3595:
                   3596:        /*
                   3597:         * If the replacement string contains a font escape sequence,
                   3598:         * we have to restore the font at the end.
                   3599:         */
                   3600:
                   3601:        vp = p;
                   3602:        vsz = strlen(p);
                   3603:        font = 0;
                   3604:        while (*p != '\0') {
                   3605:                if (*p++ != '\\')
                   3606:                        continue;
                   3607:                switch (mandoc_escape(&p, NULL, NULL)) {
                   3608:                case ESCAPE_FONT:
                   3609:                case ESCAPE_FONTROMAN:
                   3610:                case ESCAPE_FONTITALIC:
                   3611:                case ESCAPE_FONTBOLD:
                   3612:                case ESCAPE_FONTBI:
1.378     schwarze 3613:                case ESCAPE_FONTCR:
                   3614:                case ESCAPE_FONTCB:
                   3615:                case ESCAPE_FONTCI:
1.341     schwarze 3616:                case ESCAPE_FONTPREV:
                   3617:                        font++;
                   3618:                        break;
                   3619:                default:
                   3620:                        break;
                   3621:                }
                   3622:        }
                   3623:        if (font > 1)
1.350     schwarze 3624:                mandoc_msg(MANDOCERR_CHAR_FONT,
                   3625:                    ln, (int)(vp - buf->buf), "%s", vp);
1.341     schwarze 3626:
                   3627:        /*
                   3628:         * Approximate the effect of .char using the .tr tables.
                   3629:         * XXX In groff, .char and .tr interact differently.
                   3630:         */
                   3631:
                   3632:        if (ksz == 1) {
                   3633:                if (r->xtab == NULL)
                   3634:                        r->xtab = mandoc_calloc(128, sizeof(*r->xtab));
                   3635:                assert((unsigned int)*kp < 128);
                   3636:                free(r->xtab[(int)*kp].p);
                   3637:                r->xtab[(int)*kp].sz = mandoc_asprintf(&r->xtab[(int)*kp].p,
                   3638:                    "%s%s", vp, font ? "\fP" : "");
                   3639:        } else {
                   3640:                roff_setstrn(&r->xmbtab, kp, ksz, vp, vsz, 0);
                   3641:                if (font)
                   3642:                        roff_setstrn(&r->xmbtab, kp, ksz, "\\fP", 3, 1);
                   3643:        }
1.277     schwarze 3644:        return ROFF_IGN;
1.174     kristaps 3645: }
                   3646:
1.340     schwarze 3647: static int
1.303     schwarze 3648: roff_ec(ROFF_ARGS)
                   3649: {
                   3650:        const char      *p;
                   3651:
                   3652:        p = buf->buf + pos;
                   3653:        if (*p == '\0')
                   3654:                r->escape = '\\';
                   3655:        else {
                   3656:                r->escape = *p;
                   3657:                if (*++p != '\0')
1.350     schwarze 3658:                        mandoc_msg(MANDOCERR_ARG_EXCESS, ln,
                   3659:                            (int)(p - buf->buf), "ec ... %s", p);
1.303     schwarze 3660:        }
                   3661:        return ROFF_IGN;
                   3662: }
                   3663:
1.340     schwarze 3664: static int
1.303     schwarze 3665: roff_eo(ROFF_ARGS)
                   3666: {
                   3667:        r->escape = '\0';
                   3668:        if (buf->buf[pos] != '\0')
1.350     schwarze 3669:                mandoc_msg(MANDOCERR_ARG_SKIP,
1.303     schwarze 3670:                    ln, pos, "eo %s", buf->buf + pos);
1.384     schwarze 3671:        return ROFF_IGN;
                   3672: }
                   3673:
                   3674: static int
                   3675: roff_mc(ROFF_ARGS)
                   3676: {
                   3677:        struct roff_node        *n;
                   3678:        char                    *cp;
                   3679:
                   3680:        /* Parse the first argument. */
                   3681:
                   3682:        cp = buf->buf + pos;
                   3683:        if (*cp != '\0')
                   3684:                cp++;
                   3685:        if (buf->buf[pos] == '\\') {
                   3686:                switch (mandoc_escape((const char **)&cp, NULL, NULL)) {
                   3687:                case ESCAPE_SPECIAL:
                   3688:                case ESCAPE_UNICODE:
                   3689:                case ESCAPE_NUMBERED:
                   3690:                        break;
                   3691:                default:
                   3692:                        *cp = '\0';
                   3693:                        mandoc_msg(MANDOCERR_MC_ESC, ln, pos,
                   3694:                            "mc %s", buf->buf + pos);
                   3695:                        buf->buf[pos] = '\0';
                   3696:                        break;
                   3697:                }
                   3698:        }
                   3699:
                   3700:        /* Ignore additional arguments. */
                   3701:
                   3702:        while (*cp == ' ')
                   3703:                *cp++ = '\0';
                   3704:        if (*cp != '\0') {
                   3705:                mandoc_msg(MANDOCERR_MC_DIST, ln, (int)(cp - buf->buf),
                   3706:                    "mc ... %s", cp);
                   3707:                *cp = '\0';
                   3708:        }
                   3709:
                   3710:        /* Create the .mc node. */
                   3711:
                   3712:        roff_elem_alloc(r->man, ln, ppos, tok);
                   3713:        n = r->man->last;
                   3714:        if (buf->buf[pos] != '\0')
                   3715:                roff_word_alloc(r->man, ln, pos, buf->buf + pos);
                   3716:        n->flags |= NODE_LINE | NODE_VALID | NODE_ENDED;
                   3717:        r->man->last = n;
                   3718:        r->man->next = ROFF_NEXT_SIBLING;
1.303     schwarze 3719:        return ROFF_IGN;
1.330     schwarze 3720: }
                   3721:
1.340     schwarze 3722: static int
1.330     schwarze 3723: roff_nop(ROFF_ARGS)
                   3724: {
                   3725:        while (buf->buf[pos] == ' ')
                   3726:                pos++;
                   3727:        *offs = pos;
                   3728:        return ROFF_RERUN;
1.303     schwarze 3729: }
                   3730:
1.340     schwarze 3731: static int
1.164     kristaps 3732: roff_tr(ROFF_ARGS)
                   3733: {
                   3734:        const char      *p, *first, *second;
                   3735:        size_t           fsz, ssz;
                   3736:        enum mandoc_esc  esc;
                   3737:
1.238     schwarze 3738:        p = buf->buf + pos;
1.164     kristaps 3739:
1.238     schwarze 3740:        if (*p == '\0') {
1.350     schwarze 3741:                mandoc_msg(MANDOCERR_REQ_EMPTY, ln, ppos, "tr");
1.277     schwarze 3742:                return ROFF_IGN;
1.164     kristaps 3743:        }
                   3744:
1.238     schwarze 3745:        while (*p != '\0') {
1.164     kristaps 3746:                fsz = ssz = 1;
                   3747:
                   3748:                first = p++;
1.238     schwarze 3749:                if (*first == '\\') {
1.164     kristaps 3750:                        esc = mandoc_escape(&p, NULL, NULL);
1.238     schwarze 3751:                        if (esc == ESCAPE_ERROR) {
1.350     schwarze 3752:                                mandoc_msg(MANDOCERR_ESC_BAD, ln,
                   3753:                                    (int)(p - buf->buf), "%s", first);
1.277     schwarze 3754:                                return ROFF_IGN;
1.164     kristaps 3755:                        }
                   3756:                        fsz = (size_t)(p - first);
                   3757:                }
                   3758:
                   3759:                second = p++;
1.238     schwarze 3760:                if (*second == '\\') {
1.164     kristaps 3761:                        esc = mandoc_escape(&p, NULL, NULL);
1.238     schwarze 3762:                        if (esc == ESCAPE_ERROR) {
1.350     schwarze 3763:                                mandoc_msg(MANDOCERR_ESC_BAD, ln,
                   3764:                                    (int)(p - buf->buf), "%s", second);
1.277     schwarze 3765:                                return ROFF_IGN;
1.164     kristaps 3766:                        }
                   3767:                        ssz = (size_t)(p - second);
1.238     schwarze 3768:                } else if (*second == '\0') {
1.350     schwarze 3769:                        mandoc_msg(MANDOCERR_TR_ODD, ln,
                   3770:                            (int)(first - buf->buf), "tr %s", first);
1.164     kristaps 3771:                        second = " ";
1.165     kristaps 3772:                        p--;
1.164     kristaps 3773:                }
                   3774:
1.167     kristaps 3775:                if (fsz > 1) {
1.207     schwarze 3776:                        roff_setstrn(&r->xmbtab, first, fsz,
                   3777:                            second, ssz, 0);
1.167     kristaps 3778:                        continue;
                   3779:                }
                   3780:
1.238     schwarze 3781:                if (r->xtab == NULL)
1.207     schwarze 3782:                        r->xtab = mandoc_calloc(128,
                   3783:                            sizeof(struct roffstr));
1.167     kristaps 3784:
                   3785:                free(r->xtab[(int)*first].p);
                   3786:                r->xtab[(int)*first].p = mandoc_strndup(second, ssz);
                   3787:                r->xtab[(int)*first].sz = ssz;
1.164     kristaps 3788:        }
                   3789:
1.277     schwarze 3790:        return ROFF_IGN;
1.164     kristaps 3791: }
                   3792:
1.339     schwarze 3793: /*
                   3794:  * Implementation of the .return request.
                   3795:  * There is no need to call roff_userret() from here.
                   3796:  * The read module will call that after rewinding the reader stack
                   3797:  * to the place from where the current macro was called.
                   3798:  */
1.340     schwarze 3799: static int
1.339     schwarze 3800: roff_return(ROFF_ARGS)
                   3801: {
                   3802:        if (r->mstackpos >= 0)
1.340     schwarze 3803:                return ROFF_IGN | ROFF_USERRET;
1.339     schwarze 3804:
1.350     schwarze 3805:        mandoc_msg(MANDOCERR_REQ_NOMAC, ln, ppos, "return");
1.339     schwarze 3806:        return ROFF_IGN;
                   3807: }
                   3808:
1.340     schwarze 3809: static int
1.306     schwarze 3810: roff_rn(ROFF_ARGS)
                   3811: {
                   3812:        const char      *value;
                   3813:        char            *oldn, *newn, *end;
                   3814:        size_t           oldsz, newsz;
1.315     schwarze 3815:        int              deftype;
1.306     schwarze 3816:
                   3817:        oldn = newn = buf->buf + pos;
                   3818:        if (*oldn == '\0')
                   3819:                return ROFF_IGN;
                   3820:
                   3821:        oldsz = roff_getname(r, &newn, ln, pos);
1.363     schwarze 3822:        if (oldn[oldsz] == '\\' || oldn[oldsz] == '\t' || *newn == '\0')
1.306     schwarze 3823:                return ROFF_IGN;
                   3824:
                   3825:        end = newn;
                   3826:        newsz = roff_getname(r, &end, ln, newn - buf->buf);
                   3827:        if (newsz == 0)
                   3828:                return ROFF_IGN;
                   3829:
1.315     schwarze 3830:        deftype = ROFFDEF_ANY;
                   3831:        value = roff_getstrn(r, oldn, oldsz, &deftype);
                   3832:        switch (deftype) {
                   3833:        case ROFFDEF_USER:
1.306     schwarze 3834:                roff_setstrn(&r->strtab, newn, newsz, value, strlen(value), 0);
                   3835:                roff_setstrn(&r->strtab, oldn, oldsz, NULL, 0, 0);
                   3836:                roff_setstrn(&r->rentab, newn, newsz, NULL, 0, 0);
1.315     schwarze 3837:                break;
                   3838:        case ROFFDEF_PRE:
                   3839:                roff_setstrn(&r->strtab, newn, newsz, value, strlen(value), 0);
                   3840:                roff_setstrn(&r->rentab, newn, newsz, NULL, 0, 0);
                   3841:                break;
                   3842:        case ROFFDEF_REN:
1.306     schwarze 3843:                roff_setstrn(&r->rentab, newn, newsz, value, strlen(value), 0);
                   3844:                roff_setstrn(&r->rentab, oldn, oldsz, NULL, 0, 0);
1.315     schwarze 3845:                roff_setstrn(&r->strtab, newn, newsz, NULL, 0, 0);
                   3846:                break;
                   3847:        case ROFFDEF_STD:
1.306     schwarze 3848:                roff_setstrn(&r->rentab, newn, newsz, oldn, oldsz, 0);
1.315     schwarze 3849:                roff_setstrn(&r->strtab, newn, newsz, NULL, 0, 0);
                   3850:                break;
                   3851:        default:
                   3852:                roff_setstrn(&r->strtab, newn, newsz, NULL, 0, 0);
                   3853:                roff_setstrn(&r->rentab, newn, newsz, NULL, 0, 0);
                   3854:                break;
                   3855:        }
1.306     schwarze 3856:        return ROFF_IGN;
                   3857: }
                   3858:
1.340     schwarze 3859: static int
1.339     schwarze 3860: roff_shift(ROFF_ARGS)
                   3861: {
                   3862:        struct mctx     *ctx;
1.382     schwarze 3863:        int              argpos, levels, i;
1.339     schwarze 3864:
1.382     schwarze 3865:        argpos = pos;
1.339     schwarze 3866:        levels = 1;
                   3867:        if (buf->buf[pos] != '\0' &&
                   3868:            roff_evalnum(r, ln, buf->buf, &pos, &levels, 0) == 0) {
1.350     schwarze 3869:                mandoc_msg(MANDOCERR_CE_NONUM,
1.339     schwarze 3870:                    ln, pos, "shift %s", buf->buf + pos);
                   3871:                levels = 1;
                   3872:        }
                   3873:        if (r->mstackpos < 0) {
1.350     schwarze 3874:                mandoc_msg(MANDOCERR_REQ_NOMAC, ln, ppos, "shift");
1.339     schwarze 3875:                return ROFF_IGN;
                   3876:        }
                   3877:        ctx = r->mstack + r->mstackpos;
                   3878:        if (levels > ctx->argc) {
1.350     schwarze 3879:                mandoc_msg(MANDOCERR_SHIFT,
1.382     schwarze 3880:                    ln, argpos, "%d, but max is %d", levels, ctx->argc);
1.339     schwarze 3881:                levels = ctx->argc;
1.382     schwarze 3882:        }
                   3883:        if (levels < 0) {
                   3884:                mandoc_msg(MANDOCERR_ARG_NEG, ln, argpos, "shift %d", levels);
                   3885:                levels = 0;
1.339     schwarze 3886:        }
                   3887:        if (levels == 0)
                   3888:                return ROFF_IGN;
                   3889:        for (i = 0; i < levels; i++)
                   3890:                free(ctx->argv[i]);
                   3891:        ctx->argc -= levels;
                   3892:        for (i = 0; i < ctx->argc; i++)
                   3893:                ctx->argv[i] = ctx->argv[i + levels];
                   3894:        return ROFF_IGN;
                   3895: }
                   3896:
1.340     schwarze 3897: static int
1.105     kristaps 3898: roff_so(ROFF_ARGS)
                   3899: {
1.249     schwarze 3900:        char *name, *cp;
1.105     kristaps 3901:
1.238     schwarze 3902:        name = buf->buf + pos;
1.350     schwarze 3903:        mandoc_msg(MANDOCERR_SO, ln, ppos, "so %s", name);
1.105     kristaps 3904:
                   3905:        /*
                   3906:         * Handle `so'.  Be EXTREMELY careful, as we shouldn't be
                   3907:         * opening anything that's not in our cwd or anything beneath
                   3908:         * it.  Thus, explicitly disallow traversing up the file-system
                   3909:         * or using absolute paths.
                   3910:         */
                   3911:
1.238     schwarze 3912:        if (*name == '/' || strstr(name, "../") || strstr(name, "/..")) {
1.350     schwarze 3913:                mandoc_msg(MANDOCERR_SO_PATH, ln, ppos, ".so %s", name);
1.249     schwarze 3914:                buf->sz = mandoc_asprintf(&cp,
                   3915:                    ".sp\nSee the file %s.\n.sp", name) + 1;
                   3916:                free(buf->buf);
                   3917:                buf->buf = cp;
                   3918:                *offs = 0;
1.277     schwarze 3919:                return ROFF_REPARSE;
1.105     kristaps 3920:        }
                   3921:
                   3922:        *offs = pos;
1.277     schwarze 3923:        return ROFF_SO;
1.105     kristaps 3924: }
1.92      schwarze 3925:
1.266     schwarze 3926: /* --- user defined strings and macros ------------------------------------ */
                   3927:
1.340     schwarze 3928: static int
1.106     kristaps 3929: roff_userdef(ROFF_ARGS)
1.99      kristaps 3930: {
1.339     schwarze 3931:        struct mctx      *ctx;
                   3932:        char             *arg, *ap, *dst, *src;
                   3933:        size_t            sz;
                   3934:
1.365     schwarze 3935:        /* If the macro is empty, ignore it altogether. */
                   3936:
                   3937:        if (*r->current_string == '\0')
                   3938:                return ROFF_IGN;
                   3939:
1.339     schwarze 3940:        /* Initialize a new macro stack context. */
                   3941:
                   3942:        if (++r->mstackpos == r->mstacksz) {
                   3943:                r->mstack = mandoc_recallocarray(r->mstack,
                   3944:                    r->mstacksz, r->mstacksz + 8, sizeof(*r->mstack));
                   3945:                r->mstacksz += 8;
                   3946:        }
                   3947:        ctx = r->mstack + r->mstackpos;
                   3948:        ctx->argc = 0;
                   3949:
                   3950:        /*
                   3951:         * Collect pointers to macro argument strings,
                   3952:         * NUL-terminating them and escaping quotes.
                   3953:         */
                   3954:
                   3955:        src = buf->buf + pos;
                   3956:        while (*src != '\0') {
                   3957:                if (ctx->argc == ctx->argsz) {
                   3958:                        ctx->argsz += 8;
                   3959:                        ctx->argv = mandoc_reallocarray(ctx->argv,
                   3960:                            ctx->argsz, sizeof(*ctx->argv));
                   3961:                }
1.355     schwarze 3962:                arg = roff_getarg(r, &src, ln, &pos);
1.339     schwarze 3963:                sz = 1;  /* For the terminating NUL. */
                   3964:                for (ap = arg; *ap != '\0'; ap++)
                   3965:                        sz += *ap == '"' ? 4 : 1;
                   3966:                ctx->argv[ctx->argc++] = dst = mandoc_malloc(sz);
                   3967:                for (ap = arg; *ap != '\0'; ap++) {
                   3968:                        if (*ap == '"') {
                   3969:                                memcpy(dst, "\\(dq", 4);
                   3970:                                dst += 4;
                   3971:                        } else
                   3972:                                *dst++ = *ap;
1.106     kristaps 3973:                }
1.339     schwarze 3974:                *dst = '\0';
1.355     schwarze 3975:                free(arg);
1.337     schwarze 3976:        }
                   3977:
1.339     schwarze 3978:        /* Replace the macro invocation by the macro definition. */
1.263     schwarze 3979:
1.238     schwarze 3980:        free(buf->buf);
1.339     schwarze 3981:        buf->buf = mandoc_strdup(r->current_string);
                   3982:        buf->sz = strlen(buf->buf) + 1;
1.248     schwarze 3983:        *offs = 0;
1.106     kristaps 3984:
1.365     schwarze 3985:        return buf->buf[buf->sz - 2] == '\n' ?
1.340     schwarze 3986:            ROFF_REPARSE | ROFF_USERCALL : ROFF_IGN | ROFF_APPEND;
1.99      kristaps 3987: }
1.121     schwarze 3988:
1.306     schwarze 3989: /*
                   3990:  * Calling a high-level macro that was renamed with .rn.
                   3991:  * r->current_string has already been set up by roff_parse().
                   3992:  */
1.340     schwarze 3993: static int
1.306     schwarze 3994: roff_renamed(ROFF_ARGS)
                   3995: {
                   3996:        char    *nbuf;
                   3997:
1.315     schwarze 3998:        buf->sz = mandoc_asprintf(&nbuf, ".%s%s%s", r->current_string,
                   3999:            buf->buf[pos] == '\0' ? "" : " ", buf->buf + pos) + 1;
1.306     schwarze 4000:        free(buf->buf);
                   4001:        buf->buf = nbuf;
1.329     schwarze 4002:        *offs = 0;
1.306     schwarze 4003:        return ROFF_CONT;
                   4004: }
                   4005:
1.362     schwarze 4006: /*
                   4007:  * Measure the length in bytes of the roff identifier at *cpp
                   4008:  * and advance the pointer to the next word.
                   4009:  */
1.212     schwarze 4010: static size_t
1.121     schwarze 4011: roff_getname(struct roff *r, char **cpp, int ln, int pos)
                   4012: {
                   4013:        char     *name, *cp;
1.212     schwarze 4014:        size_t    namesz;
1.121     schwarze 4015:
                   4016:        name = *cpp;
1.362     schwarze 4017:        if (*name == '\0')
1.277     schwarze 4018:                return 0;
1.121     schwarze 4019:
1.362     schwarze 4020:        /* Advance cp to the byte after the end of the name. */
                   4021:
1.212     schwarze 4022:        for (cp = name; 1; cp++) {
1.362     schwarze 4023:                namesz = cp - name;
1.363     schwarze 4024:                if (*cp == '\0')
1.212     schwarze 4025:                        break;
1.363     schwarze 4026:                if (*cp == ' ' || *cp == '\t') {
                   4027:                        cp++;
                   4028:                        break;
                   4029:                }
1.362     schwarze 4030:                if (*cp != '\\')
1.121     schwarze 4031:                        continue;
1.362     schwarze 4032:                if (cp[1] == '{' || cp[1] == '}')
1.215     schwarze 4033:                        break;
1.362     schwarze 4034:                if (*++cp == '\\')
1.121     schwarze 4035:                        continue;
1.350     schwarze 4036:                mandoc_msg(MANDOCERR_NAMESC, ln, pos,
1.224     schwarze 4037:                    "%.*s", (int)(cp - name + 1), name);
1.212     schwarze 4038:                mandoc_escape((const char **)&cp, NULL, NULL);
                   4039:                break;
1.121     schwarze 4040:        }
                   4041:
                   4042:        /* Read past spaces. */
1.362     schwarze 4043:
                   4044:        while (*cp == ' ')
1.121     schwarze 4045:                cp++;
                   4046:
                   4047:        *cpp = cp;
1.277     schwarze 4048:        return namesz;
1.121     schwarze 4049: }
                   4050:
1.106     kristaps 4051: /*
                   4052:  * Store *string into the user-defined string called *name.
                   4053:  * To clear an existing entry, call with (*r, *name, NULL, 0).
1.193     schwarze 4054:  * append == 0: replace mode
                   4055:  * append == 1: single-line append mode
                   4056:  * append == 2: multiline append mode, append '\n' after each call
1.106     kristaps 4057:  */
1.94      kristaps 4058: static void
1.106     kristaps 4059: roff_setstr(struct roff *r, const char *name, const char *string,
1.193     schwarze 4060:        int append)
1.92      schwarze 4061: {
1.315     schwarze 4062:        size_t   namesz;
1.164     kristaps 4063:
1.315     schwarze 4064:        namesz = strlen(name);
                   4065:        roff_setstrn(&r->strtab, name, namesz, string,
1.207     schwarze 4066:            string ? strlen(string) : 0, append);
1.315     schwarze 4067:        roff_setstrn(&r->rentab, name, namesz, NULL, 0, 0);
1.164     kristaps 4068: }
                   4069:
                   4070: static void
1.166     kristaps 4071: roff_setstrn(struct roffkv **r, const char *name, size_t namesz,
1.193     schwarze 4072:                const char *string, size_t stringsz, int append)
1.164     kristaps 4073: {
1.166     kristaps 4074:        struct roffkv   *n;
1.164     kristaps 4075:        char            *c;
                   4076:        int              i;
                   4077:        size_t           oldch, newch;
1.92      schwarze 4078:
1.106     kristaps 4079:        /* Search for an existing string with the same name. */
1.164     kristaps 4080:        n = *r;
                   4081:
1.211     schwarze 4082:        while (n && (namesz != n->key.sz ||
                   4083:                        strncmp(n->key.p, name, namesz)))
1.92      schwarze 4084:                n = n->next;
1.94      kristaps 4085:
                   4086:        if (NULL == n) {
1.106     kristaps 4087:                /* Create a new string table entry. */
1.166     kristaps 4088:                n = mandoc_malloc(sizeof(struct roffkv));
                   4089:                n->key.p = mandoc_strndup(name, namesz);
                   4090:                n->key.sz = namesz;
                   4091:                n->val.p = NULL;
                   4092:                n->val.sz = 0;
1.164     kristaps 4093:                n->next = *r;
                   4094:                *r = n;
1.193     schwarze 4095:        } else if (0 == append) {
1.166     kristaps 4096:                free(n->val.p);
                   4097:                n->val.p = NULL;
                   4098:                n->val.sz = 0;
1.106     kristaps 4099:        }
                   4100:
                   4101:        if (NULL == string)
                   4102:                return;
                   4103:
                   4104:        /*
                   4105:         * One additional byte for the '\n' in multiline mode,
                   4106:         * and one for the terminating '\0'.
                   4107:         */
1.193     schwarze 4108:        newch = stringsz + (1 < append ? 2u : 1u);
1.164     kristaps 4109:
1.166     kristaps 4110:        if (NULL == n->val.p) {
                   4111:                n->val.p = mandoc_malloc(newch);
                   4112:                *n->val.p = '\0';
1.106     kristaps 4113:                oldch = 0;
                   4114:        } else {
1.166     kristaps 4115:                oldch = n->val.sz;
                   4116:                n->val.p = mandoc_realloc(n->val.p, oldch + newch);
1.106     kristaps 4117:        }
                   4118:
                   4119:        /* Skip existing content in the destination buffer. */
1.166     kristaps 4120:        c = n->val.p + (int)oldch;
1.106     kristaps 4121:
                   4122:        /* Append new content to the destination buffer. */
1.164     kristaps 4123:        i = 0;
                   4124:        while (i < (int)stringsz) {
1.106     kristaps 4125:                /*
                   4126:                 * Rudimentary roff copy mode:
                   4127:                 * Handle escaped backslashes.
                   4128:                 */
1.164     kristaps 4129:                if ('\\' == string[i] && '\\' == string[i + 1])
                   4130:                        i++;
                   4131:                *c++ = string[i++];
1.106     kristaps 4132:        }
1.94      kristaps 4133:
1.106     kristaps 4134:        /* Append terminating bytes. */
1.193     schwarze 4135:        if (1 < append)
1.106     kristaps 4136:                *c++ = '\n';
1.163     kristaps 4137:
1.106     kristaps 4138:        *c = '\0';
1.166     kristaps 4139:        n->val.sz = (int)(c - n->val.p);
1.92      schwarze 4140: }
                   4141:
1.94      kristaps 4142: static const char *
1.325     schwarze 4143: roff_getstrn(struct roff *r, const char *name, size_t len,
1.315     schwarze 4144:     int *deftype)
1.92      schwarze 4145: {
1.315     schwarze 4146:        const struct roffkv     *n;
1.325     schwarze 4147:        int                      found, i;
1.315     schwarze 4148:        enum roff_tok            tok;
                   4149:
1.325     schwarze 4150:        found = 0;
                   4151:        for (n = r->strtab; n != NULL; n = n->next) {
                   4152:                if (strncmp(name, n->key.p, len) != 0 ||
                   4153:                    n->key.p[len] != '\0' || n->val.p == NULL)
                   4154:                        continue;
                   4155:                if (*deftype & ROFFDEF_USER) {
                   4156:                        *deftype = ROFFDEF_USER;
                   4157:                        return n->val.p;
                   4158:                } else {
                   4159:                        found = 1;
                   4160:                        break;
                   4161:                }
                   4162:        }
                   4163:        for (n = r->rentab; n != NULL; n = n->next) {
                   4164:                if (strncmp(name, n->key.p, len) != 0 ||
                   4165:                    n->key.p[len] != '\0' || n->val.p == NULL)
                   4166:                        continue;
                   4167:                if (*deftype & ROFFDEF_REN) {
                   4168:                        *deftype = ROFFDEF_REN;
                   4169:                        return n->val.p;
                   4170:                } else {
                   4171:                        found = 1;
                   4172:                        break;
1.315     schwarze 4173:                }
                   4174:        }
1.325     schwarze 4175:        for (i = 0; i < PREDEFS_MAX; i++) {
                   4176:                if (strncmp(name, predefs[i].name, len) != 0 ||
                   4177:                    predefs[i].name[len] != '\0')
                   4178:                        continue;
                   4179:                if (*deftype & ROFFDEF_PRE) {
                   4180:                        *deftype = ROFFDEF_PRE;
                   4181:                        return predefs[i].str;
                   4182:                } else {
                   4183:                        found = 1;
                   4184:                        break;
1.315     schwarze 4185:                }
                   4186:        }
1.356     schwarze 4187:        if (r->man->meta.macroset != MACROSET_MAN) {
1.325     schwarze 4188:                for (tok = MDOC_Dd; tok < MDOC_MAX; tok++) {
                   4189:                        if (strncmp(name, roff_name[tok], len) != 0 ||
                   4190:                            roff_name[tok][len] != '\0')
                   4191:                                continue;
                   4192:                        if (*deftype & ROFFDEF_STD) {
                   4193:                                *deftype = ROFFDEF_STD;
                   4194:                                return NULL;
                   4195:                        } else {
                   4196:                                found = 1;
                   4197:                                break;
1.315     schwarze 4198:                        }
                   4199:                }
                   4200:        }
1.356     schwarze 4201:        if (r->man->meta.macroset != MACROSET_MDOC) {
1.325     schwarze 4202:                for (tok = MAN_TH; tok < MAN_MAX; tok++) {
                   4203:                        if (strncmp(name, roff_name[tok], len) != 0 ||
                   4204:                            roff_name[tok][len] != '\0')
                   4205:                                continue;
                   4206:                        if (*deftype & ROFFDEF_STD) {
                   4207:                                *deftype = ROFFDEF_STD;
                   4208:                                return NULL;
                   4209:                        } else {
                   4210:                                found = 1;
                   4211:                                break;
1.315     schwarze 4212:                        }
                   4213:                }
1.325     schwarze 4214:        }
                   4215:
                   4216:        if (found == 0 && *deftype != ROFFDEF_ANY) {
                   4217:                if (*deftype & ROFFDEF_REN) {
                   4218:                        /*
                   4219:                         * This might still be a request,
                   4220:                         * so do not treat it as undefined yet.
                   4221:                         */
                   4222:                        *deftype = ROFFDEF_UNDEF;
                   4223:                        return NULL;
1.315     schwarze 4224:                }
1.325     schwarze 4225:
                   4226:                /* Using an undefined string defines it to be empty. */
                   4227:
                   4228:                roff_setstrn(&r->strtab, name, len, "", 0, 0);
                   4229:                roff_setstrn(&r->rentab, name, len, NULL, 0, 0);
1.315     schwarze 4230:        }
1.325     schwarze 4231:
1.315     schwarze 4232:        *deftype = 0;
1.277     schwarze 4233:        return NULL;
1.92      schwarze 4234: }
                   4235:
1.94      kristaps 4236: static void
1.167     kristaps 4237: roff_freestr(struct roffkv *r)
1.92      schwarze 4238: {
1.166     kristaps 4239:        struct roffkv    *n, *nn;
1.92      schwarze 4240:
1.167     kristaps 4241:        for (n = r; n; n = nn) {
1.166     kristaps 4242:                free(n->key.p);
                   4243:                free(n->val.p);
1.92      schwarze 4244:                nn = n->next;
                   4245:                free(n);
                   4246:        }
1.114     kristaps 4247: }
1.266     schwarze 4248:
                   4249: /* --- accessors and utility functions ------------------------------------ */
1.164     kristaps 4250:
                   4251: /*
                   4252:  * Duplicate an input string, making the appropriate character
                   4253:  * conversations (as stipulated by `tr') along the way.
                   4254:  * Returns a heap-allocated string with all the replacements made.
                   4255:  */
                   4256: char *
                   4257: roff_strdup(const struct roff *r, const char *p)
                   4258: {
1.166     kristaps 4259:        const struct roffkv *cp;
1.164     kristaps 4260:        char            *res;
                   4261:        const char      *pp;
                   4262:        size_t           ssz, sz;
                   4263:        enum mandoc_esc  esc;
                   4264:
1.167     kristaps 4265:        if (NULL == r->xmbtab && NULL == r->xtab)
1.277     schwarze 4266:                return mandoc_strdup(p);
1.164     kristaps 4267:        else if ('\0' == *p)
1.277     schwarze 4268:                return mandoc_strdup("");
1.164     kristaps 4269:
                   4270:        /*
                   4271:         * Step through each character looking for term matches
                   4272:         * (remember that a `tr' can be invoked with an escape, which is
                   4273:         * a glyph but the escape is multi-character).
                   4274:         * We only do this if the character hash has been initialised
                   4275:         * and the string is >0 length.
                   4276:         */
                   4277:
                   4278:        res = NULL;
                   4279:        ssz = 0;
                   4280:
                   4281:        while ('\0' != *p) {
1.289     schwarze 4282:                assert((unsigned int)*p < 128);
                   4283:                if ('\\' != *p && r->xtab && r->xtab[(unsigned int)*p].p) {
1.167     kristaps 4284:                        sz = r->xtab[(int)*p].sz;
                   4285:                        res = mandoc_realloc(res, ssz + sz + 1);
                   4286:                        memcpy(res + ssz, r->xtab[(int)*p].p, sz);
                   4287:                        ssz += sz;
                   4288:                        p++;
                   4289:                        continue;
                   4290:                } else if ('\\' != *p) {
                   4291:                        res = mandoc_realloc(res, ssz + 2);
                   4292:                        res[ssz++] = *p++;
                   4293:                        continue;
                   4294:                }
                   4295:
1.164     kristaps 4296:                /* Search for term matches. */
1.167     kristaps 4297:                for (cp = r->xmbtab; cp; cp = cp->next)
1.166     kristaps 4298:                        if (0 == strncmp(p, cp->key.p, cp->key.sz))
1.164     kristaps 4299:                                break;
                   4300:
                   4301:                if (NULL != cp) {
                   4302:                        /*
                   4303:                         * A match has been found.
                   4304:                         * Append the match to the array and move
                   4305:                         * forward by its keysize.
                   4306:                         */
1.207     schwarze 4307:                        res = mandoc_realloc(res,
                   4308:                            ssz + cp->val.sz + 1);
1.166     kristaps 4309:                        memcpy(res + ssz, cp->val.p, cp->val.sz);
                   4310:                        ssz += cp->val.sz;
                   4311:                        p += (int)cp->key.sz;
1.164     kristaps 4312:                        continue;
                   4313:                }
                   4314:
1.167     kristaps 4315:                /*
                   4316:                 * Handle escapes carefully: we need to copy
                   4317:                 * over just the escape itself, or else we might
                   4318:                 * do replacements within the escape itself.
                   4319:                 * Make sure to pass along the bogus string.
                   4320:                 */
                   4321:                pp = p++;
                   4322:                esc = mandoc_escape(&p, NULL, NULL);
                   4323:                if (ESCAPE_ERROR == esc) {
                   4324:                        sz = strlen(pp);
1.164     kristaps 4325:                        res = mandoc_realloc(res, ssz + sz + 1);
                   4326:                        memcpy(res + ssz, pp, sz);
1.167     kristaps 4327:                        break;
1.164     kristaps 4328:                }
1.207     schwarze 4329:                /*
                   4330:                 * We bail out on bad escapes.
1.167     kristaps 4331:                 * No need to warn: we already did so when
1.355     schwarze 4332:                 * roff_expand() was called.
1.167     kristaps 4333:                 */
                   4334:                sz = (int)(p - pp);
                   4335:                res = mandoc_realloc(res, ssz + sz + 1);
                   4336:                memcpy(res + ssz, pp, sz);
                   4337:                ssz += sz;
1.164     kristaps 4338:        }
                   4339:
                   4340:        res[(int)ssz] = '\0';
1.277     schwarze 4341:        return res;
1.227     schwarze 4342: }
                   4343:
                   4344: int
                   4345: roff_getformat(const struct roff *r)
                   4346: {
                   4347:
1.277     schwarze 4348:        return r->format;
1.174     kristaps 4349: }
                   4350:
                   4351: /*
1.207     schwarze 4352:  * Find out whether a line is a macro line or not.
1.174     kristaps 4353:  * If it is, adjust the current position and return one; if it isn't,
                   4354:  * return zero and don't change the current position.
                   4355:  * If the control character has been set with `.cc', then let that grain
                   4356:  * precedence.
                   4357:  * This is slighly contrary to groff, where using the non-breaking
                   4358:  * control character when `cc' has been invoked will cause the
                   4359:  * non-breaking macro contents to be printed verbatim.
                   4360:  */
                   4361: int
                   4362: roff_getcontrol(const struct roff *r, const char *cp, int *ppos)
                   4363: {
                   4364:        int             pos;
                   4365:
                   4366:        pos = *ppos;
                   4367:
1.303     schwarze 4368:        if (r->control != '\0' && cp[pos] == r->control)
1.174     kristaps 4369:                pos++;
1.303     schwarze 4370:        else if (r->control != '\0')
1.277     schwarze 4371:                return 0;
1.174     kristaps 4372:        else if ('\\' == cp[pos] && '.' == cp[pos + 1])
                   4373:                pos += 2;
                   4374:        else if ('.' == cp[pos] || '\'' == cp[pos])
                   4375:                pos++;
                   4376:        else
1.277     schwarze 4377:                return 0;
1.174     kristaps 4378:
                   4379:        while (' ' == cp[pos] || '\t' == cp[pos])
                   4380:                pos++;
                   4381:
                   4382:        *ppos = pos;
1.277     schwarze 4383:        return 1;
1.74      kristaps 4384: }

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