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Annotation of src/usr.bin/mandoc/mdoc_term.c, Revision 1.211

1.211   ! schwarze    1: /*     $OpenBSD: mdoc_term.c,v 1.210 2015/02/17 20:33:44 schwarze Exp $ */
1.1       kristaps    2: /*
1.122     schwarze    3:  * Copyright (c) 2008, 2009, 2010, 2011 Kristaps Dzonsons <kristaps@bsd.lv>
1.202     schwarze    4:  * Copyright (c) 2010, 2012-2015 Ingo Schwarze <schwarze@openbsd.org>
1.158     schwarze    5:  * Copyright (c) 2013 Franco Fichtner <franco@lastsummer.de>
1.1       kristaps    6:  *
                      7:  * Permission to use, copy, modify, and distribute this software for any
1.2       schwarze    8:  * purpose with or without fee is hereby granted, provided that the above
                      9:  * copyright notice and this permission notice appear in all copies.
1.1       kristaps   10:  *
1.2       schwarze   11:  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
                     12:  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
                     13:  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
                     14:  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
                     15:  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
                     16:  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
                     17:  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
1.1       kristaps   18:  */
                     19: #include <sys/types.h>
                     20:
                     21: #include <assert.h>
                     22: #include <ctype.h>
1.201     schwarze   23: #include <limits.h>
1.77      schwarze   24: #include <stdint.h>
1.1       kristaps   25: #include <stdio.h>
                     26: #include <stdlib.h>
                     27: #include <string.h>
                     28:
1.81      schwarze   29: #include "mandoc.h"
1.168     schwarze   30: #include "mandoc_aux.h"
1.61      schwarze   31: #include "out.h"
1.1       kristaps   32: #include "term.h"
                     33: #include "mdoc.h"
1.61      schwarze   34: #include "main.h"
1.54      schwarze   35:
1.1       kristaps   36: struct termpair {
                     37:        struct termpair  *ppair;
1.27      schwarze   38:        int               count;
1.1       kristaps   39: };
                     40:
1.29      schwarze   41: #define        DECL_ARGS struct termp *p, \
                     42:                  struct termpair *pair, \
1.166     schwarze   43:                  const struct mdoc_meta *meta, \
1.146     schwarze   44:                  struct mdoc_node *n
1.1       kristaps   45:
                     46: struct termact {
                     47:        int     (*pre)(DECL_ARGS);
                     48:        void    (*post)(DECL_ARGS);
                     49: };
1.29      schwarze   50:
1.201     schwarze   51: static int       a2width(const struct termp *, const char *);
1.62      schwarze   52:
                     53: static void      print_bvspace(struct termp *,
                     54:                        const struct mdoc_node *,
                     55:                        const struct mdoc_node *);
1.166     schwarze   56: static void      print_mdoc_node(DECL_ARGS);
1.65      schwarze   57: static void      print_mdoc_nodelist(DECL_ARGS);
1.87      schwarze   58: static void      print_mdoc_head(struct termp *, const void *);
                     59: static void      print_mdoc_foot(struct termp *, const void *);
1.166     schwarze   60: static void      synopsis_pre(struct termp *,
1.86      schwarze   61:                        const struct mdoc_node *);
1.62      schwarze   62:
1.29      schwarze   63: static void      termp____post(DECL_ARGS);
1.120     schwarze   64: static void      termp__t_post(DECL_ARGS);
1.29      schwarze   65: static void      termp_bd_post(DECL_ARGS);
1.90      schwarze   66: static void      termp_bk_post(DECL_ARGS);
1.29      schwarze   67: static void      termp_bl_post(DECL_ARGS);
1.205     schwarze   68: static void      termp_eo_post(DECL_ARGS);
1.143     schwarze   69: static void      termp_fd_post(DECL_ARGS);
1.29      schwarze   70: static void      termp_fo_post(DECL_ARGS);
                     71: static void      termp_in_post(DECL_ARGS);
                     72: static void      termp_it_post(DECL_ARGS);
                     73: static void      termp_lb_post(DECL_ARGS);
1.94      schwarze   74: static void      termp_nm_post(DECL_ARGS);
1.29      schwarze   75: static void      termp_pf_post(DECL_ARGS);
1.107     schwarze   76: static void      termp_quote_post(DECL_ARGS);
1.29      schwarze   77: static void      termp_sh_post(DECL_ARGS);
                     78: static void      termp_ss_post(DECL_ARGS);
                     79:
1.104     schwarze   80: static int       termp__a_pre(DECL_ARGS);
1.120     schwarze   81: static int       termp__t_pre(DECL_ARGS);
1.49      schwarze   82: static int       termp_an_pre(DECL_ARGS);
1.29      schwarze   83: static int       termp_ap_pre(DECL_ARGS);
                     84: static int       termp_bd_pre(DECL_ARGS);
                     85: static int       termp_bf_pre(DECL_ARGS);
1.90      schwarze   86: static int       termp_bk_pre(DECL_ARGS);
1.73      schwarze   87: static int       termp_bl_pre(DECL_ARGS);
1.54      schwarze   88: static int       termp_bold_pre(DECL_ARGS);
1.29      schwarze   89: static int       termp_bt_pre(DECL_ARGS);
1.126     schwarze   90: static int       termp_bx_pre(DECL_ARGS);
1.29      schwarze   91: static int       termp_cd_pre(DECL_ARGS);
                     92: static int       termp_d1_pre(DECL_ARGS);
1.205     schwarze   93: static int       termp_eo_pre(DECL_ARGS);
1.29      schwarze   94: static int       termp_ex_pre(DECL_ARGS);
                     95: static int       termp_fa_pre(DECL_ARGS);
1.107     schwarze   96: static int       termp_fd_pre(DECL_ARGS);
1.29      schwarze   97: static int       termp_fl_pre(DECL_ARGS);
                     98: static int       termp_fn_pre(DECL_ARGS);
                     99: static int       termp_fo_pre(DECL_ARGS);
                    100: static int       termp_ft_pre(DECL_ARGS);
                    101: static int       termp_in_pre(DECL_ARGS);
                    102: static int       termp_it_pre(DECL_ARGS);
1.65      schwarze  103: static int       termp_li_pre(DECL_ARGS);
1.162     schwarze  104: static int       termp_ll_pre(DECL_ARGS);
1.29      schwarze  105: static int       termp_lk_pre(DECL_ARGS);
                    106: static int       termp_nd_pre(DECL_ARGS);
                    107: static int       termp_nm_pre(DECL_ARGS);
                    108: static int       termp_ns_pre(DECL_ARGS);
1.107     schwarze  109: static int       termp_quote_pre(DECL_ARGS);
1.29      schwarze  110: static int       termp_rs_pre(DECL_ARGS);
                    111: static int       termp_rv_pre(DECL_ARGS);
                    112: static int       termp_sh_pre(DECL_ARGS);
1.193     schwarze  113: static int       termp_skip_pre(DECL_ARGS);
1.29      schwarze  114: static int       termp_sm_pre(DECL_ARGS);
1.38      schwarze  115: static int       termp_sp_pre(DECL_ARGS);
1.29      schwarze  116: static int       termp_ss_pre(DECL_ARGS);
1.54      schwarze  117: static int       termp_under_pre(DECL_ARGS);
1.29      schwarze  118: static int       termp_ud_pre(DECL_ARGS);
1.69      schwarze  119: static int       termp_vt_pre(DECL_ARGS);
1.29      schwarze  120: static int       termp_xr_pre(DECL_ARGS);
                    121: static int       termp_xx_pre(DECL_ARGS);
1.1       kristaps  122:
1.54      schwarze  123: static const struct termact termacts[MDOC_MAX] = {
1.11      schwarze  124:        { termp_ap_pre, NULL }, /* Ap */
1.1       kristaps  125:        { NULL, NULL }, /* Dd */
                    126:        { NULL, NULL }, /* Dt */
                    127:        { NULL, NULL }, /* Os */
                    128:        { termp_sh_pre, termp_sh_post }, /* Sh */
1.166     schwarze  129:        { termp_ss_pre, termp_ss_post }, /* Ss */
                    130:        { termp_sp_pre, NULL }, /* Pp */
1.143     schwarze  131:        { termp_d1_pre, termp_bl_post }, /* D1 */
                    132:        { termp_d1_pre, termp_bl_post }, /* Dl */
1.1       kristaps  133:        { termp_bd_pre, termp_bd_post }, /* Bd */
                    134:        { NULL, NULL }, /* Ed */
1.73      schwarze  135:        { termp_bl_pre, termp_bl_post }, /* Bl */
1.1       kristaps  136:        { NULL, NULL }, /* El */
                    137:        { termp_it_pre, termp_it_post }, /* It */
1.166     schwarze  138:        { termp_under_pre, NULL }, /* Ad */
1.181     schwarze  139:        { termp_an_pre, NULL }, /* An */
1.54      schwarze  140:        { termp_under_pre, NULL }, /* Ar */
1.1       kristaps  141:        { termp_cd_pre, NULL }, /* Cd */
1.54      schwarze  142:        { termp_bold_pre, NULL }, /* Cm */
1.166     schwarze  143:        { NULL, NULL }, /* Dv */
                    144:        { NULL, NULL }, /* Er */
                    145:        { NULL, NULL }, /* Ev */
1.1       kristaps  146:        { termp_ex_pre, NULL }, /* Ex */
1.166     schwarze  147:        { termp_fa_pre, NULL }, /* Fa */
                    148:        { termp_fd_pre, termp_fd_post }, /* Fd */
1.1       kristaps  149:        { termp_fl_pre, NULL }, /* Fl */
1.166     schwarze  150:        { termp_fn_pre, NULL }, /* Fn */
                    151:        { termp_ft_pre, NULL }, /* Ft */
                    152:        { termp_bold_pre, NULL }, /* Ic */
                    153:        { termp_in_pre, termp_in_post }, /* In */
1.65      schwarze  154:        { termp_li_pre, NULL }, /* Li */
1.166     schwarze  155:        { termp_nd_pre, NULL }, /* Nd */
                    156:        { termp_nm_pre, termp_nm_post }, /* Nm */
1.107     schwarze  157:        { termp_quote_pre, termp_quote_post }, /* Op */
1.170     schwarze  158:        { termp_ft_pre, NULL }, /* Ot */
1.54      schwarze  159:        { termp_under_pre, NULL }, /* Pa */
1.1       kristaps  160:        { termp_rv_pre, NULL }, /* Rv */
1.166     schwarze  161:        { NULL, NULL }, /* St */
1.54      schwarze  162:        { termp_under_pre, NULL }, /* Va */
1.86      schwarze  163:        { termp_vt_pre, NULL }, /* Vt */
1.1       kristaps  164:        { termp_xr_pre, NULL }, /* Xr */
1.104     schwarze  165:        { termp__a_pre, termp____post }, /* %A */
1.58      schwarze  166:        { termp_under_pre, termp____post }, /* %B */
1.1       kristaps  167:        { NULL, termp____post }, /* %D */
1.58      schwarze  168:        { termp_under_pre, termp____post }, /* %I */
1.54      schwarze  169:        { termp_under_pre, termp____post }, /* %J */
1.1       kristaps  170:        { NULL, termp____post }, /* %N */
                    171:        { NULL, termp____post }, /* %O */
                    172:        { NULL, termp____post }, /* %P */
                    173:        { NULL, termp____post }, /* %R */
1.120     schwarze  174:        { termp__t_pre, termp__t_post }, /* %T */
1.1       kristaps  175:        { NULL, termp____post }, /* %V */
                    176:        { NULL, NULL }, /* Ac */
1.107     schwarze  177:        { termp_quote_pre, termp_quote_post }, /* Ao */
                    178:        { termp_quote_pre, termp_quote_post }, /* Aq */
1.32      schwarze  179:        { NULL, NULL }, /* At */
1.1       kristaps  180:        { NULL, NULL }, /* Bc */
1.166     schwarze  181:        { termp_bf_pre, NULL }, /* Bf */
1.107     schwarze  182:        { termp_quote_pre, termp_quote_post }, /* Bo */
                    183:        { termp_quote_pre, termp_quote_post }, /* Bq */
1.26      schwarze  184:        { termp_xx_pre, NULL }, /* Bsx */
1.126     schwarze  185:        { termp_bx_pre, NULL }, /* Bx */
1.193     schwarze  186:        { termp_skip_pre, NULL }, /* Db */
1.1       kristaps  187:        { NULL, NULL }, /* Dc */
1.107     schwarze  188:        { termp_quote_pre, termp_quote_post }, /* Do */
                    189:        { termp_quote_pre, termp_quote_post }, /* Dq */
1.73      schwarze  190:        { NULL, NULL }, /* Ec */ /* FIXME: no space */
1.1       kristaps  191:        { NULL, NULL }, /* Ef */
1.166     schwarze  192:        { termp_under_pre, NULL }, /* Em */
1.205     schwarze  193:        { termp_eo_pre, termp_eo_post }, /* Eo */
1.26      schwarze  194:        { termp_xx_pre, NULL }, /* Fx */
1.98      schwarze  195:        { termp_bold_pre, NULL }, /* Ms */
1.189     schwarze  196:        { termp_li_pre, NULL }, /* No */
1.1       kristaps  197:        { termp_ns_pre, NULL }, /* Ns */
1.26      schwarze  198:        { termp_xx_pre, NULL }, /* Nx */
                    199:        { termp_xx_pre, NULL }, /* Ox */
1.1       kristaps  200:        { NULL, NULL }, /* Pc */
1.156     schwarze  201:        { NULL, termp_pf_post }, /* Pf */
1.107     schwarze  202:        { termp_quote_pre, termp_quote_post }, /* Po */
                    203:        { termp_quote_pre, termp_quote_post }, /* Pq */
1.1       kristaps  204:        { NULL, NULL }, /* Qc */
1.107     schwarze  205:        { termp_quote_pre, termp_quote_post }, /* Ql */
                    206:        { termp_quote_pre, termp_quote_post }, /* Qo */
                    207:        { termp_quote_pre, termp_quote_post }, /* Qq */
1.1       kristaps  208:        { NULL, NULL }, /* Re */
                    209:        { termp_rs_pre, NULL }, /* Rs */
                    210:        { NULL, NULL }, /* Sc */
1.107     schwarze  211:        { termp_quote_pre, termp_quote_post }, /* So */
                    212:        { termp_quote_pre, termp_quote_post }, /* Sq */
1.1       kristaps  213:        { termp_sm_pre, NULL }, /* Sm */
1.54      schwarze  214:        { termp_under_pre, NULL }, /* Sx */
                    215:        { termp_bold_pre, NULL }, /* Sy */
1.1       kristaps  216:        { NULL, NULL }, /* Tn */
1.26      schwarze  217:        { termp_xx_pre, NULL }, /* Ux */
1.1       kristaps  218:        { NULL, NULL }, /* Xc */
                    219:        { NULL, NULL }, /* Xo */
1.166     schwarze  220:        { termp_fo_pre, termp_fo_post }, /* Fo */
                    221:        { NULL, NULL }, /* Fc */
1.107     schwarze  222:        { termp_quote_pre, termp_quote_post }, /* Oo */
1.1       kristaps  223:        { NULL, NULL }, /* Oc */
1.90      schwarze  224:        { termp_bk_pre, termp_bk_post }, /* Bk */
1.1       kristaps  225:        { NULL, NULL }, /* Ek */
                    226:        { termp_bt_pre, NULL }, /* Bt */
                    227:        { NULL, NULL }, /* Hf */
1.170     schwarze  228:        { termp_under_pre, NULL }, /* Fr */
1.1       kristaps  229:        { termp_ud_pre, NULL }, /* Ud */
1.32      schwarze  230:        { NULL, termp_lb_post }, /* Lb */
1.166     schwarze  231:        { termp_sp_pre, NULL }, /* Lp */
                    232:        { termp_lk_pre, NULL }, /* Lk */
                    233:        { termp_under_pre, NULL }, /* Mt */
                    234:        { termp_quote_pre, termp_quote_post }, /* Brq */
                    235:        { termp_quote_pre, termp_quote_post }, /* Bro */
                    236:        { NULL, NULL }, /* Brc */
                    237:        { NULL, termp____post }, /* %C */
1.193     schwarze  238:        { termp_skip_pre, NULL }, /* Es */
1.170     schwarze  239:        { termp_quote_pre, termp_quote_post }, /* En */
1.166     schwarze  240:        { termp_xx_pre, NULL }, /* Dx */
                    241:        { NULL, termp____post }, /* %Q */
1.54      schwarze  242:        { termp_sp_pre, NULL }, /* br */
1.166     schwarze  243:        { termp_sp_pre, NULL }, /* sp */
                    244:        { NULL, termp____post }, /* %U */
                    245:        { NULL, NULL }, /* Ta */
1.162     schwarze  246:        { termp_ll_pre, NULL }, /* ll */
1.1       kristaps  247: };
                    248:
                    249:
1.55      schwarze  250: void
1.61      schwarze  251: terminal_mdoc(void *arg, const struct mdoc *mdoc)
1.1       kristaps  252: {
1.147     schwarze  253:        const struct mdoc_meta  *meta;
1.180     schwarze  254:        struct mdoc_node        *n;
1.61      schwarze  255:        struct termp            *p;
                    256:
                    257:        p = (struct termp *)arg;
1.71      schwarze  258:
                    259:        p->overstep = 0;
1.180     schwarze  260:        p->rmargin = p->maxrmargin = p->defrmargin;
1.89      schwarze  261:        p->tabwidth = term_len(p, 5);
1.55      schwarze  262:
1.180     schwarze  263:        n = mdoc_node(mdoc)->child;
1.147     schwarze  264:        meta = mdoc_meta(mdoc);
1.55      schwarze  265:
1.180     schwarze  266:        if (p->synopsisonly) {
                    267:                while (n != NULL) {
                    268:                        if (n->tok == MDOC_Sh && n->sec == SEC_SYNOPSIS) {
                    269:                                if (n->child->next->child != NULL)
                    270:                                        print_mdoc_nodelist(p, NULL,
                    271:                                            meta, n->child->next->child);
                    272:                                term_newln(p);
                    273:                                break;
                    274:                        }
                    275:                        n = n->next;
                    276:                }
                    277:        } else {
                    278:                if (p->defindent == 0)
                    279:                        p->defindent = 5;
                    280:                term_begin(p, print_mdoc_head, print_mdoc_foot, meta);
                    281:                if (n != NULL) {
                    282:                        if (n->tok != MDOC_Sh)
                    283:                                term_vspace(p);
                    284:                        print_mdoc_nodelist(p, NULL, meta, n);
                    285:                }
                    286:                term_end(p);
1.173     schwarze  287:        }
1.1       kristaps  288: }
                    289:
                    290: static void
1.65      schwarze  291: print_mdoc_nodelist(DECL_ARGS)
1.1       kristaps  292: {
                    293:
1.203     schwarze  294:        while (n != NULL) {
                    295:                print_mdoc_node(p, pair, meta, n);
                    296:                n = n->next;
                    297:        }
1.1       kristaps  298: }
                    299:
                    300: static void
1.65      schwarze  301: print_mdoc_node(DECL_ARGS)
1.1       kristaps  302: {
1.65      schwarze  303:        int              chld;
1.1       kristaps  304:        struct termpair  npair;
1.28      schwarze  305:        size_t           offset, rmargin;
1.1       kristaps  306:
1.54      schwarze  307:        chld = 1;
1.28      schwarze  308:        offset = p->offset;
                    309:        rmargin = p->rmargin;
1.209     schwarze  310:        n->flags &= ~MDOC_ENDED;
1.204     schwarze  311:        n->prev_font = p->fonti;
1.1       kristaps  312:
1.63      schwarze  313:        memset(&npair, 0, sizeof(struct termpair));
1.1       kristaps  314:        npair.ppair = pair;
1.65      schwarze  315:
1.95      schwarze  316:        /*
                    317:         * Keeps only work until the end of a line.  If a keep was
                    318:         * invoked in a prior line, revert it to PREKEEP.
                    319:         */
                    320:
1.206     schwarze  321:        if (p->flags & TERMP_KEEP && n->flags & MDOC_LINE) {
                    322:                p->flags &= ~TERMP_KEEP;
                    323:                p->flags |= TERMP_PREKEEP;
1.95      schwarze  324:        }
1.116     schwarze  325:
                    326:        /*
1.128     schwarze  327:         * After the keep flags have been set up, we may now
                    328:         * produce output.  Note that some pre-handlers do so.
                    329:         */
                    330:
                    331:        switch (n->type) {
1.166     schwarze  332:        case MDOC_TEXT:
1.128     schwarze  333:                if (' ' == *n->string && MDOC_LINE & n->flags)
                    334:                        term_newln(p);
1.132     schwarze  335:                if (MDOC_DELIMC & n->flags)
                    336:                        p->flags |= TERMP_NOSPACE;
1.128     schwarze  337:                term_word(p, n->string);
1.132     schwarze  338:                if (MDOC_DELIMO & n->flags)
                    339:                        p->flags |= TERMP_NOSPACE;
1.128     schwarze  340:                break;
1.166     schwarze  341:        case MDOC_EQN:
1.183     schwarze  342:                if ( ! (n->flags & MDOC_LINE))
                    343:                        p->flags |= TERMP_NOSPACE;
1.135     schwarze  344:                term_eqn(p, n->eqn);
1.185     schwarze  345:                if (n->next != NULL && ! (n->next->flags & MDOC_LINE))
1.184     schwarze  346:                        p->flags |= TERMP_NOSPACE;
1.131     schwarze  347:                break;
1.166     schwarze  348:        case MDOC_TBL:
1.128     schwarze  349:                term_tbl(p, n->span);
                    350:                break;
                    351:        default:
1.194     schwarze  352:                if (termacts[n->tok].pre &&
                    353:                    (n->end == ENDBODY_NOT || n->nchild))
1.128     schwarze  354:                        chld = (*termacts[n->tok].pre)
1.147     schwarze  355:                                (p, &npair, meta, n);
1.128     schwarze  356:                break;
                    357:        }
1.95      schwarze  358:
1.60      schwarze  359:        if (chld && n->child)
1.147     schwarze  360:                print_mdoc_nodelist(p, &npair, meta, n->child);
1.1       kristaps  361:
1.146     schwarze  362:        term_fontpopq(p,
1.209     schwarze  363:            (ENDBODY_NOT == n->end ? n : n->body)->prev_font);
1.1       kristaps  364:
1.122     schwarze  365:        switch (n->type) {
1.166     schwarze  366:        case MDOC_TEXT:
1.122     schwarze  367:                break;
1.166     schwarze  368:        case MDOC_TBL:
1.131     schwarze  369:                break;
1.166     schwarze  370:        case MDOC_EQN:
1.122     schwarze  371:                break;
                    372:        default:
                    373:                if ( ! termacts[n->tok].post || MDOC_ENDED & n->flags)
                    374:                        break;
1.147     schwarze  375:                (void)(*termacts[n->tok].post)(p, &npair, meta, n);
1.93      schwarze  376:
                    377:                /*
                    378:                 * Explicit end tokens not only call the post
                    379:                 * handler, but also tell the respective block
                    380:                 * that it must not call the post handler again.
                    381:                 */
1.95      schwarze  382:                if (ENDBODY_NOT != n->end)
1.209     schwarze  383:                        n->body->flags |= MDOC_ENDED;
1.93      schwarze  384:
                    385:                /*
                    386:                 * End of line terminating an implicit block
                    387:                 * while an explicit block is still open.
                    388:                 * Continue the explicit block without spacing.
                    389:                 */
                    390:                if (ENDBODY_NOSPACE == n->end)
                    391:                        p->flags |= TERMP_NOSPACE;
1.122     schwarze  392:                break;
1.93      schwarze  393:        }
1.28      schwarze  394:
1.78      schwarze  395:        if (MDOC_EOS & n->flags)
                    396:                p->flags |= TERMP_SENTENCE;
                    397:
1.162     schwarze  398:        if (MDOC_ll != n->tok) {
                    399:                p->offset = offset;
                    400:                p->rmargin = rmargin;
                    401:        }
1.1       kristaps  402: }
                    403:
                    404: static void
1.87      schwarze  405: print_mdoc_foot(struct termp *p, const void *arg)
1.1       kristaps  406: {
1.147     schwarze  407:        const struct mdoc_meta *meta;
1.191     schwarze  408:        size_t sz;
1.87      schwarze  409:
1.147     schwarze  410:        meta = (const struct mdoc_meta *)arg;
1.1       kristaps  411:
1.65      schwarze  412:        term_fontrepl(p, TERMFONT_NONE);
                    413:
1.166     schwarze  414:        /*
1.7       schwarze  415:         * Output the footer in new-groff style, that is, three columns
                    416:         * with the middle being the manual date and flanking columns
                    417:         * being the operating system:
                    418:         *
                    419:         * SYSTEM                  DATE                    SYSTEM
                    420:         */
                    421:
1.1       kristaps  422:        term_vspace(p);
                    423:
1.7       schwarze  424:        p->offset = 0;
1.191     schwarze  425:        sz = term_strlen(p, meta->date);
                    426:        p->rmargin = p->maxrmargin > sz ?
                    427:            (p->maxrmargin + term_len(p, 1) - sz) / 2 : 0;
1.152     schwarze  428:        p->trailspace = 1;
1.1       kristaps  429:        p->flags |= TERMP_NOSPACE | TERMP_NOBREAK;
                    430:
1.147     schwarze  431:        term_word(p, meta->os);
1.1       kristaps  432:        term_flushln(p);
                    433:
1.7       schwarze  434:        p->offset = p->rmargin;
1.191     schwarze  435:        sz = term_strlen(p, meta->os);
                    436:        p->rmargin = p->maxrmargin > sz ? p->maxrmargin - sz : 0;
1.136     schwarze  437:        p->flags |= TERMP_NOSPACE;
1.7       schwarze  438:
1.147     schwarze  439:        term_word(p, meta->date);
1.7       schwarze  440:        term_flushln(p);
                    441:
1.1       kristaps  442:        p->offset = p->rmargin;
                    443:        p->rmargin = p->maxrmargin;
1.152     schwarze  444:        p->trailspace = 0;
1.1       kristaps  445:        p->flags &= ~TERMP_NOBREAK;
1.136     schwarze  446:        p->flags |= TERMP_NOSPACE;
1.1       kristaps  447:
1.147     schwarze  448:        term_word(p, meta->os);
1.1       kristaps  449:        term_flushln(p);
1.7       schwarze  450:
                    451:        p->offset = 0;
                    452:        p->rmargin = p->maxrmargin;
                    453:        p->flags = 0;
1.1       kristaps  454: }
                    455:
                    456: static void
1.87      schwarze  457: print_mdoc_head(struct termp *p, const void *arg)
1.1       kristaps  458: {
1.168     schwarze  459:        const struct mdoc_meta  *meta;
1.169     schwarze  460:        char                    *volume, *title;
                    461:        size_t                   vollen, titlen;
1.87      schwarze  462:
1.147     schwarze  463:        meta = (const struct mdoc_meta *)arg;
1.1       kristaps  464:
                    465:        /*
                    466:         * The header is strange.  It has three components, which are
                    467:         * really two with the first duplicated.  It goes like this:
                    468:         *
                    469:         * IDENTIFIER              TITLE                   IDENTIFIER
                    470:         *
                    471:         * The IDENTIFIER is NAME(SECTION), which is the command-name
                    472:         * (if given, or "unknown" if not) followed by the manual page
                    473:         * section.  These are given in `Dt'.  The TITLE is a free-form
                    474:         * string depending on the manual volume.  If not specified, it
                    475:         * switches on the manual section.
                    476:         */
1.137     schwarze  477:
1.147     schwarze  478:        assert(meta->vol);
1.169     schwarze  479:        if (NULL == meta->arch)
                    480:                volume = mandoc_strdup(meta->vol);
                    481:        else
                    482:                mandoc_asprintf(&volume, "%s (%s)",
                    483:                    meta->vol, meta->arch);
                    484:        vollen = term_strlen(p, volume);
1.1       kristaps  485:
1.177     schwarze  486:        if (NULL == meta->msec)
                    487:                title = mandoc_strdup(meta->title);
                    488:        else
                    489:                mandoc_asprintf(&title, "%s(%s)",
                    490:                    meta->title, meta->msec);
1.137     schwarze  491:        titlen = term_strlen(p, title);
1.1       kristaps  492:
1.137     schwarze  493:        p->flags |= TERMP_NOBREAK | TERMP_NOSPACE;
1.152     schwarze  494:        p->trailspace = 1;
1.1       kristaps  495:        p->offset = 0;
1.169     schwarze  496:        p->rmargin = 2 * (titlen+1) + vollen < p->maxrmargin ?
                    497:            (p->maxrmargin - vollen + term_len(p, 1)) / 2 :
1.191     schwarze  498:            vollen < p->maxrmargin ?  p->maxrmargin - vollen : 0;
1.1       kristaps  499:
                    500:        term_word(p, title);
                    501:        term_flushln(p);
                    502:
1.137     schwarze  503:        p->flags |= TERMP_NOSPACE;
1.1       kristaps  504:        p->offset = p->rmargin;
1.169     schwarze  505:        p->rmargin = p->offset + vollen + titlen < p->maxrmargin ?
1.137     schwarze  506:            p->maxrmargin - titlen : p->maxrmargin;
1.1       kristaps  507:
1.169     schwarze  508:        term_word(p, volume);
1.1       kristaps  509:        term_flushln(p);
                    510:
                    511:        p->flags &= ~TERMP_NOBREAK;
1.152     schwarze  512:        p->trailspace = 0;
1.137     schwarze  513:        if (p->rmargin + titlen <= p->maxrmargin) {
                    514:                p->flags |= TERMP_NOSPACE;
                    515:                p->offset = p->rmargin;
                    516:                p->rmargin = p->maxrmargin;
                    517:                term_word(p, title);
                    518:                term_flushln(p);
                    519:        }
1.1       kristaps  520:
1.137     schwarze  521:        p->flags &= ~TERMP_NOSPACE;
1.8       schwarze  522:        p->offset = 0;
1.1       kristaps  523:        p->rmargin = p->maxrmargin;
1.168     schwarze  524:        free(title);
1.169     schwarze  525:        free(volume);
1.1       kristaps  526: }
                    527:
1.201     schwarze  528: static int
1.89      schwarze  529: a2width(const struct termp *p, const char *v)
1.61      schwarze  530: {
                    531:        struct roffsu    su;
1.1       kristaps  532:
1.199     schwarze  533:        if (a2roffsu(v, &su, SCALE_MAX) < 2) {
1.89      schwarze  534:                SCALE_HS_INIT(&su, term_strlen(p, v));
1.182     schwarze  535:                su.scale /= term_strlen(p, "0");
1.201     schwarze  536:        }
1.89      schwarze  537:        return(term_hspan(p, &su));
1.1       kristaps  538: }
                    539:
1.68      schwarze  540: /*
                    541:  * Determine how much space to print out before block elements of `It'
                    542:  * (and thus `Bl') and `Bd'.  And then go ahead and print that space,
                    543:  * too.
                    544:  */
1.45      schwarze  545: static void
1.166     schwarze  546: print_bvspace(struct termp *p,
                    547:        const struct mdoc_node *bl,
                    548:        const struct mdoc_node *n)
1.1       kristaps  549: {
1.60      schwarze  550:        const struct mdoc_node  *nn;
1.138     schwarze  551:
                    552:        assert(n);
1.1       kristaps  553:
                    554:        term_newln(p);
1.88      schwarze  555:
1.121     schwarze  556:        if (MDOC_Bd == bl->tok && bl->norm->Bd.comp)
1.88      schwarze  557:                return;
1.121     schwarze  558:        if (MDOC_Bl == bl->tok && bl->norm->Bl.comp)
1.45      schwarze  559:                return;
                    560:
1.60      schwarze  561:        /* Do not vspace directly after Ss/Sh. */
1.1       kristaps  562:
1.188     schwarze  563:        nn = n;
                    564:        while (nn->prev == NULL) {
                    565:                do {
                    566:                        nn = nn->parent;
                    567:                        if (nn->type == MDOC_ROOT)
                    568:                                return;
                    569:                } while (nn->type != MDOC_BLOCK);
                    570:                if (nn->tok == MDOC_Sh || nn->tok == MDOC_Ss)
1.45      schwarze  571:                        return;
1.188     schwarze  572:                if (nn->tok == MDOC_It &&
                    573:                    nn->parent->parent->norm->Bl.type != LIST_item)
                    574:                        break;
1.1       kristaps  575:        }
                    576:
1.60      schwarze  577:        /* A `-column' does not assert vspace within the list. */
1.45      schwarze  578:
1.121     schwarze  579:        if (MDOC_Bl == bl->tok && LIST_column == bl->norm->Bl.type)
1.60      schwarze  580:                if (n->prev && MDOC_It == n->prev->tok)
1.45      schwarze  581:                        return;
                    582:
1.60      schwarze  583:        /* A `-diag' without body does not vspace. */
                    584:
1.121     schwarze  585:        if (MDOC_Bl == bl->tok && LIST_diag == bl->norm->Bl.type)
1.60      schwarze  586:                if (n->prev && MDOC_It == n->prev->tok) {
                    587:                        assert(n->prev->body);
                    588:                        if (NULL == n->prev->body->child)
1.45      schwarze  589:                                return;
                    590:                }
                    591:
                    592:        term_vspace(p);
1.162     schwarze  593: }
                    594:
                    595:
                    596: static int
                    597: termp_ll_pre(DECL_ARGS)
                    598: {
                    599:
1.163     schwarze  600:        term_setwidth(p, n->nchild ? n->child->string : NULL);
1.162     schwarze  601:        return(0);
1.1       kristaps  602: }
                    603:
                    604: static int
                    605: termp_it_pre(DECL_ARGS)
                    606: {
1.201     schwarze  607:        char                    buf[24];
1.60      schwarze  608:        const struct mdoc_node *bl, *nn;
1.201     schwarze  609:        size_t                  ncols, dcol;
                    610:        int                     i, offset, width;
1.82      schwarze  611:        enum mdoc_list          type;
1.1       kristaps  612:
1.60      schwarze  613:        if (MDOC_BLOCK == n->type) {
1.61      schwarze  614:                print_bvspace(p, n->parent->parent, n);
1.45      schwarze  615:                return(1);
                    616:        }
1.1       kristaps  617:
1.60      schwarze  618:        bl = n->parent->parent->parent;
1.121     schwarze  619:        type = bl->norm->Bl.type;
1.1       kristaps  620:
1.166     schwarze  621:        /*
1.201     schwarze  622:         * Defaults for specific list types.
                    623:         */
                    624:
                    625:        switch (type) {
                    626:        case LIST_bullet:
                    627:                /* FALLTHROUGH */
                    628:        case LIST_dash:
                    629:                /* FALLTHROUGH */
                    630:        case LIST_hyphen:
                    631:                /* FALLTHROUGH */
                    632:        case LIST_enum:
                    633:                width = term_len(p, 2);
                    634:                break;
                    635:        case LIST_hang:
                    636:                width = term_len(p, 8);
                    637:                break;
                    638:        case LIST_column:
                    639:                /* FALLTHROUGH */
                    640:        case LIST_tag:
                    641:                width = term_len(p, 10);
                    642:                break;
                    643:        default:
                    644:                width = 0;
                    645:                break;
                    646:        }
                    647:        offset = 0;
                    648:
                    649:        /*
1.68      schwarze  650:         * First calculate width and offset.  This is pretty easy unless
                    651:         * we're a -column list, in which case all prior columns must
                    652:         * be accounted for.
                    653:         */
                    654:
1.201     schwarze  655:        if (bl->norm->Bl.offs != NULL) {
1.187     schwarze  656:                offset = a2width(p, bl->norm->Bl.offs);
1.201     schwarze  657:                if (offset < 0 && (size_t)(-offset) > p->offset)
                    658:                        offset = -p->offset;
                    659:                else if (offset > SHRT_MAX)
                    660:                        offset = 0;
                    661:        }
1.66      schwarze  662:
1.1       kristaps  663:        switch (type) {
1.166     schwarze  664:        case LIST_column:
1.85      schwarze  665:                if (MDOC_HEAD == n->type)
1.1       kristaps  666:                        break;
1.88      schwarze  667:
1.66      schwarze  668:                /*
1.68      schwarze  669:                 * Imitate groff's column handling:
                    670:                 * - For each earlier column, add its width.
                    671:                 * - For less than 5 columns, add four more blanks per
                    672:                 *   column.
                    673:                 * - For exactly 5 columns, add three more blank per
                    674:                 *   column.
                    675:                 * - For more than 5 columns, add only one column.
1.66      schwarze  676:                 */
1.121     schwarze  677:                ncols = bl->norm->Bl.ncols;
1.166     schwarze  678:                dcol = ncols < 5 ? term_len(p, 4) :
                    679:                    ncols == 5 ? term_len(p, 3) : term_len(p, 1);
1.68      schwarze  680:
1.85      schwarze  681:                /*
                    682:                 * Calculate the offset by applying all prior MDOC_BODY,
                    683:                 * so we stop at the MDOC_HEAD (NULL == nn->prev).
                    684:                 */
                    685:
1.166     schwarze  686:                for (i = 0, nn = n->prev;
                    687:                    nn->prev && i < (int)ncols;
                    688:                    nn = nn->prev, i++)
                    689:                        offset += dcol + a2width(p,
                    690:                            bl->norm->Bl.cols[i]);
1.66      schwarze  691:
                    692:                /*
1.68      schwarze  693:                 * When exceeding the declared number of columns, leave
                    694:                 * the remaining widths at 0.  This will later be
                    695:                 * adjusted to the default width of 10, or, for the last
                    696:                 * column, stretched to the right margin.
1.46      schwarze  697:                 */
1.68      schwarze  698:                if (i >= (int)ncols)
                    699:                        break;
1.46      schwarze  700:
1.66      schwarze  701:                /*
1.68      schwarze  702:                 * Use the declared column widths, extended as explained
                    703:                 * in the preceding paragraph.
1.66      schwarze  704:                 */
1.121     schwarze  705:                width = a2width(p, bl->norm->Bl.cols[i]) + dcol;
1.1       kristaps  706:                break;
                    707:        default:
1.121     schwarze  708:                if (NULL == bl->norm->Bl.width)
1.68      schwarze  709:                        break;
                    710:
1.166     schwarze  711:                /*
1.68      schwarze  712:                 * Note: buffer the width by 2, which is groff's magic
                    713:                 * number for buffering single arguments.  See the above
                    714:                 * handling for column for how this changes.
                    715:                 */
1.121     schwarze  716:                width = a2width(p, bl->norm->Bl.width) + term_len(p, 2);
1.201     schwarze  717:                if (width < 0 && (size_t)(-width) > p->offset)
                    718:                        width = -p->offset;
                    719:                else if (width > SHRT_MAX)
                    720:                        width = 0;
1.1       kristaps  721:                break;
                    722:        }
                    723:
1.166     schwarze  724:        /*
1.16      schwarze  725:         * Whitespace control.  Inset bodies need an initial space,
                    726:         * while diagonal bodies need two.
1.1       kristaps  727:         */
                    728:
1.42      schwarze  729:        p->flags |= TERMP_NOSPACE;
                    730:
1.1       kristaps  731:        switch (type) {
1.166     schwarze  732:        case LIST_diag:
1.60      schwarze  733:                if (MDOC_BODY == n->type)
1.48      schwarze  734:                        term_word(p, "\\ \\ ");
1.42      schwarze  735:                break;
1.166     schwarze  736:        case LIST_inset:
1.172     schwarze  737:                if (MDOC_BODY == n->type && n->parent->head->nchild)
1.42      schwarze  738:                        term_word(p, "\\ ");
1.1       kristaps  739:                break;
                    740:        default:
                    741:                break;
                    742:        }
                    743:
1.42      schwarze  744:        p->flags |= TERMP_NOSPACE;
                    745:
1.1       kristaps  746:        switch (type) {
1.166     schwarze  747:        case LIST_diag:
1.60      schwarze  748:                if (MDOC_HEAD == n->type)
1.65      schwarze  749:                        term_fontpush(p, TERMFONT_BOLD);
1.1       kristaps  750:                break;
                    751:        default:
                    752:                break;
                    753:        }
                    754:
                    755:        /*
1.68      schwarze  756:         * Pad and break control.  This is the tricky part.  These flags
                    757:         * are documented in term_flushln() in term.c.  Note that we're
                    758:         * going to unset all of these flags in termp_it_post() when we
                    759:         * exit.
1.1       kristaps  760:         */
                    761:
                    762:        switch (type) {
1.166     schwarze  763:        case LIST_enum:
1.144     schwarze  764:                /*
                    765:                 * Weird special case.
1.201     schwarze  766:                 * Some very narrow lists actually hang.
1.144     schwarze  767:                 */
                    768:                /* FALLTHROUGH */
1.166     schwarze  769:        case LIST_bullet:
1.1       kristaps  770:                /* FALLTHROUGH */
1.166     schwarze  771:        case LIST_dash:
1.1       kristaps  772:                /* FALLTHROUGH */
1.166     schwarze  773:        case LIST_hyphen:
1.201     schwarze  774:                if (width <= (int)term_len(p, 2))
                    775:                        p->flags |= TERMP_HANG;
1.152     schwarze  776:                if (MDOC_HEAD != n->type)
                    777:                        break;
                    778:                p->flags |= TERMP_NOBREAK;
                    779:                p->trailspace = 1;
1.33      schwarze  780:                break;
1.166     schwarze  781:        case LIST_hang:
1.152     schwarze  782:                if (MDOC_HEAD != n->type)
1.47      schwarze  783:                        break;
                    784:
                    785:                /*
                    786:                 * This is ugly.  If `-hang' is specified and the body
                    787:                 * is a `Bl' or `Bd', then we want basically to nullify
                    788:                 * the "overstep" effect in term_flushln() and treat
                    789:                 * this as a `-ohang' list instead.
                    790:                 */
1.178     schwarze  791:                if (NULL != n->next &&
                    792:                    NULL != n->next->child &&
1.166     schwarze  793:                    (MDOC_Bl == n->next->child->tok ||
                    794:                     MDOC_Bd == n->next->child->tok))
1.152     schwarze  795:                        break;
                    796:
1.165     schwarze  797:                p->flags |= TERMP_NOBREAK | TERMP_BRIND | TERMP_HANG;
1.152     schwarze  798:                p->trailspace = 1;
1.33      schwarze  799:                break;
1.166     schwarze  800:        case LIST_tag:
1.60      schwarze  801:                if (MDOC_HEAD != n->type)
1.33      schwarze  802:                        break;
1.152     schwarze  803:
1.165     schwarze  804:                p->flags |= TERMP_NOBREAK | TERMP_BRIND;
1.152     schwarze  805:                p->trailspace = 2;
                    806:
1.60      schwarze  807:                if (NULL == n->next || NULL == n->next->child)
1.33      schwarze  808:                        p->flags |= TERMP_DANGLE;
1.1       kristaps  809:                break;
1.166     schwarze  810:        case LIST_column:
1.85      schwarze  811:                if (MDOC_HEAD == n->type)
                    812:                        break;
                    813:
1.152     schwarze  814:                if (NULL == n->next) {
1.85      schwarze  815:                        p->flags &= ~TERMP_NOBREAK;
1.152     schwarze  816:                        p->trailspace = 0;
                    817:                } else {
1.85      schwarze  818:                        p->flags |= TERMP_NOBREAK;
1.152     schwarze  819:                        p->trailspace = 1;
                    820:                }
1.85      schwarze  821:
1.1       kristaps  822:                break;
1.166     schwarze  823:        case LIST_diag:
1.152     schwarze  824:                if (MDOC_HEAD != n->type)
                    825:                        break;
1.165     schwarze  826:                p->flags |= TERMP_NOBREAK | TERMP_BRIND;
1.152     schwarze  827:                p->trailspace = 1;
1.1       kristaps  828:                break;
                    829:        default:
                    830:                break;
                    831:        }
                    832:
1.166     schwarze  833:        /*
1.1       kristaps  834:         * Margin control.  Set-head-width lists have their right
                    835:         * margins shortened.  The body for these lists has the offset
                    836:         * necessarily lengthened.  Everybody gets the offset.
                    837:         */
                    838:
                    839:        p->offset += offset;
                    840:
                    841:        switch (type) {
1.166     schwarze  842:        case LIST_hang:
1.47      schwarze  843:                /*
                    844:                 * Same stipulation as above, regarding `-hang'.  We
                    845:                 * don't want to recalculate rmargin and offsets when
                    846:                 * using `Bd' or `Bl' within `-hang' overstep lists.
                    847:                 */
1.178     schwarze  848:                if (MDOC_HEAD == n->type &&
                    849:                    NULL != n->next &&
                    850:                    NULL != n->next->child &&
1.166     schwarze  851:                    (MDOC_Bl == n->next->child->tok ||
                    852:                     MDOC_Bd == n->next->child->tok))
1.47      schwarze  853:                        break;
                    854:                /* FALLTHROUGH */
1.166     schwarze  855:        case LIST_bullet:
1.1       kristaps  856:                /* FALLTHROUGH */
1.166     schwarze  857:        case LIST_dash:
1.1       kristaps  858:                /* FALLTHROUGH */
1.166     schwarze  859:        case LIST_enum:
1.1       kristaps  860:                /* FALLTHROUGH */
1.166     schwarze  861:        case LIST_hyphen:
1.33      schwarze  862:                /* FALLTHROUGH */
1.166     schwarze  863:        case LIST_tag:
1.60      schwarze  864:                if (MDOC_HEAD == n->type)
1.1       kristaps  865:                        p->rmargin = p->offset + width;
1.191     schwarze  866:                else
1.1       kristaps  867:                        p->offset += width;
                    868:                break;
1.166     schwarze  869:        case LIST_column:
1.41      schwarze  870:                assert(width);
1.1       kristaps  871:                p->rmargin = p->offset + width;
1.166     schwarze  872:                /*
1.43      schwarze  873:                 * XXX - this behaviour is not documented: the
                    874:                 * right-most column is filled to the right margin.
                    875:                 */
1.85      schwarze  876:                if (MDOC_HEAD == n->type)
                    877:                        break;
                    878:                if (NULL == n->next && p->rmargin < p->maxrmargin)
1.43      schwarze  879:                        p->rmargin = p->maxrmargin;
1.1       kristaps  880:                break;
                    881:        default:
                    882:                break;
                    883:        }
                    884:
1.166     schwarze  885:        /*
1.1       kristaps  886:         * The dash, hyphen, bullet and enum lists all have a special
1.166     schwarze  887:         * HEAD character (temporarily bold, in some cases).
1.1       kristaps  888:         */
                    889:
1.60      schwarze  890:        if (MDOC_HEAD == n->type)
1.1       kristaps  891:                switch (type) {
1.166     schwarze  892:                case LIST_bullet:
1.65      schwarze  893:                        term_fontpush(p, TERMFONT_BOLD);
1.1       kristaps  894:                        term_word(p, "\\[bu]");
1.65      schwarze  895:                        term_fontpop(p);
1.1       kristaps  896:                        break;
1.166     schwarze  897:                case LIST_dash:
1.1       kristaps  898:                        /* FALLTHROUGH */
1.166     schwarze  899:                case LIST_hyphen:
1.65      schwarze  900:                        term_fontpush(p, TERMFONT_BOLD);
1.35      schwarze  901:                        term_word(p, "\\(hy");
1.65      schwarze  902:                        term_fontpop(p);
1.1       kristaps  903:                        break;
1.166     schwarze  904:                case LIST_enum:
1.1       kristaps  905:                        (pair->ppair->ppair->count)++;
1.167     schwarze  906:                        (void)snprintf(buf, sizeof(buf), "%d.",
1.166     schwarze  907:                            pair->ppair->ppair->count);
1.1       kristaps  908:                        term_word(p, buf);
                    909:                        break;
                    910:                default:
                    911:                        break;
                    912:                }
1.12      schwarze  913:
1.166     schwarze  914:        /*
1.1       kristaps  915:         * If we're not going to process our children, indicate so here.
                    916:         */
                    917:
                    918:        switch (type) {
1.166     schwarze  919:        case LIST_bullet:
1.1       kristaps  920:                /* FALLTHROUGH */
1.166     schwarze  921:        case LIST_item:
1.1       kristaps  922:                /* FALLTHROUGH */
1.166     schwarze  923:        case LIST_dash:
1.1       kristaps  924:                /* FALLTHROUGH */
1.166     schwarze  925:        case LIST_hyphen:
1.1       kristaps  926:                /* FALLTHROUGH */
1.166     schwarze  927:        case LIST_enum:
1.60      schwarze  928:                if (MDOC_HEAD == n->type)
1.1       kristaps  929:                        return(0);
                    930:                break;
1.166     schwarze  931:        case LIST_column:
1.85      schwarze  932:                if (MDOC_HEAD == n->type)
1.1       kristaps  933:                        return(0);
                    934:                break;
                    935:        default:
                    936:                break;
                    937:        }
                    938:
                    939:        return(1);
                    940: }
                    941:
                    942: static void
                    943: termp_it_post(DECL_ARGS)
                    944: {
1.82      schwarze  945:        enum mdoc_list     type;
1.1       kristaps  946:
1.68      schwarze  947:        if (MDOC_BLOCK == n->type)
1.1       kristaps  948:                return;
                    949:
1.121     schwarze  950:        type = n->parent->parent->parent->norm->Bl.type;
1.1       kristaps  951:
                    952:        switch (type) {
1.166     schwarze  953:        case LIST_item:
1.44      schwarze  954:                /* FALLTHROUGH */
1.166     schwarze  955:        case LIST_diag:
1.1       kristaps  956:                /* FALLTHROUGH */
1.166     schwarze  957:        case LIST_inset:
1.60      schwarze  958:                if (MDOC_BODY == n->type)
1.74      schwarze  959:                        term_newln(p);
1.1       kristaps  960:                break;
1.166     schwarze  961:        case LIST_column:
1.85      schwarze  962:                if (MDOC_BODY == n->type)
1.1       kristaps  963:                        term_flushln(p);
                    964:                break;
                    965:        default:
1.74      schwarze  966:                term_newln(p);
1.1       kristaps  967:                break;
                    968:        }
                    969:
1.166     schwarze  970:        /*
1.68      schwarze  971:         * Now that our output is flushed, we can reset our tags.  Since
                    972:         * only `It' sets these flags, we're free to assume that nobody
                    973:         * has munged them in the meanwhile.
                    974:         */
                    975:
1.165     schwarze  976:        p->flags &= ~(TERMP_NOBREAK | TERMP_BRIND |
                    977:                        TERMP_DANGLE | TERMP_HANG);
1.152     schwarze  978:        p->trailspace = 0;
1.1       kristaps  979: }
                    980:
                    981: static int
                    982: termp_nm_pre(DECL_ARGS)
                    983: {
1.195     schwarze  984:        const char      *cp;
1.1       kristaps  985:
1.155     schwarze  986:        if (MDOC_BLOCK == n->type) {
                    987:                p->flags |= TERMP_PREKEEP;
1.94      schwarze  988:                return(1);
1.155     schwarze  989:        }
1.94      schwarze  990:
                    991:        if (MDOC_BODY == n->type) {
                    992:                if (NULL == n->child)
                    993:                        return(0);
1.136     schwarze  994:                p->flags |= TERMP_NOSPACE;
1.195     schwarze  995:                cp = NULL;
                    996:                if (n->prev->child != NULL)
                    997:                    cp = n->prev->child->string;
                    998:                if (cp == NULL)
                    999:                        cp = meta->name;
                   1000:                if (cp == NULL)
                   1001:                        p->offset += term_len(p, 6);
                   1002:                else
                   1003:                        p->offset += term_len(p, 1) + term_strlen(p, cp);
1.94      schwarze 1004:                return(1);
                   1005:        }
                   1006:
1.147     schwarze 1007:        if (NULL == n->child && NULL == meta->name)
1.94      schwarze 1008:                return(0);
1.81      schwarze 1009:
1.97      schwarze 1010:        if (MDOC_HEAD == n->type)
                   1011:                synopsis_pre(p, n->parent);
1.65      schwarze 1012:
1.178     schwarze 1013:        if (MDOC_HEAD == n->type &&
                   1014:            NULL != n->next && NULL != n->next->child) {
1.165     schwarze 1015:                p->flags |= TERMP_NOSPACE | TERMP_NOBREAK | TERMP_BRIND;
1.152     schwarze 1016:                p->trailspace = 1;
1.105     schwarze 1017:                p->rmargin = p->offset + term_len(p, 1);
                   1018:                if (NULL == n->child) {
1.147     schwarze 1019:                        p->rmargin += term_strlen(p, meta->name);
1.105     schwarze 1020:                } else if (MDOC_TEXT == n->child->type) {
                   1021:                        p->rmargin += term_strlen(p, n->child->string);
                   1022:                        if (n->child->next)
                   1023:                                p->flags |= TERMP_HANG;
                   1024:                } else {
                   1025:                        p->rmargin += term_len(p, 5);
                   1026:                        p->flags |= TERMP_HANG;
                   1027:                }
1.94      schwarze 1028:        }
                   1029:
1.65      schwarze 1030:        term_fontpush(p, TERMFONT_BOLD);
1.60      schwarze 1031:        if (NULL == n->child)
1.147     schwarze 1032:                term_word(p, meta->name);
1.1       kristaps 1033:        return(1);
                   1034: }
                   1035:
1.94      schwarze 1036: static void
                   1037: termp_nm_post(DECL_ARGS)
                   1038: {
                   1039:
1.155     schwarze 1040:        if (MDOC_BLOCK == n->type) {
                   1041:                p->flags &= ~(TERMP_KEEP | TERMP_PREKEEP);
1.178     schwarze 1042:        } else if (MDOC_HEAD == n->type &&
                   1043:            NULL != n->next && NULL != n->next->child) {
1.94      schwarze 1044:                term_flushln(p);
1.165     schwarze 1045:                p->flags &= ~(TERMP_NOBREAK | TERMP_BRIND | TERMP_HANG);
1.152     schwarze 1046:                p->trailspace = 0;
1.136     schwarze 1047:        } else if (MDOC_BODY == n->type && n->child)
1.94      schwarze 1048:                term_flushln(p);
                   1049: }
                   1050:
1.1       kristaps 1051: static int
                   1052: termp_fl_pre(DECL_ARGS)
                   1053: {
                   1054:
1.65      schwarze 1055:        term_fontpush(p, TERMFONT_BOLD);
1.1       kristaps 1056:        term_word(p, "\\-");
1.67      schwarze 1057:
1.179     schwarze 1058:        if ( ! (n->nchild == 0 &&
                   1059:            (n->next == NULL ||
                   1060:             n->next->type == MDOC_TEXT ||
                   1061:             n->next->flags & MDOC_LINE)))
1.73      schwarze 1062:                p->flags |= TERMP_NOSPACE;
1.67      schwarze 1063:
1.1       kristaps 1064:        return(1);
1.49      schwarze 1065: }
                   1066:
                   1067: static int
1.104     schwarze 1068: termp__a_pre(DECL_ARGS)
                   1069: {
                   1070:
                   1071:        if (n->prev && MDOC__A == n->prev->tok)
                   1072:                if (NULL == n->next || MDOC__A != n->next->tok)
                   1073:                        term_word(p, "and");
                   1074:
                   1075:        return(1);
                   1076: }
                   1077:
                   1078: static int
1.49      schwarze 1079: termp_an_pre(DECL_ARGS)
                   1080: {
                   1081:
1.181     schwarze 1082:        if (n->norm->An.auth == AUTH_split) {
                   1083:                p->flags &= ~TERMP_NOSPLIT;
                   1084:                p->flags |= TERMP_SPLIT;
                   1085:                return(0);
                   1086:        }
                   1087:        if (n->norm->An.auth == AUTH_nosplit) {
                   1088:                p->flags &= ~TERMP_SPLIT;
                   1089:                p->flags |= TERMP_NOSPLIT;
                   1090:                return(0);
                   1091:        }
1.166     schwarze 1092:
1.181     schwarze 1093:        if (p->flags & TERMP_SPLIT)
1.49      schwarze 1094:                term_newln(p);
                   1095:
1.181     schwarze 1096:        if (n->sec == SEC_AUTHORS && ! (p->flags & TERMP_NOSPLIT))
                   1097:                p->flags |= TERMP_SPLIT;
1.49      schwarze 1098:
                   1099:        return(1);
1.1       kristaps 1100: }
                   1101:
                   1102: static int
                   1103: termp_ns_pre(DECL_ARGS)
                   1104: {
                   1105:
1.127     schwarze 1106:        if ( ! (MDOC_LINE & n->flags))
                   1107:                p->flags |= TERMP_NOSPACE;
1.1       kristaps 1108:        return(1);
                   1109: }
                   1110:
                   1111: static int
                   1112: termp_rs_pre(DECL_ARGS)
                   1113: {
                   1114:
1.60      schwarze 1115:        if (SEC_SEE_ALSO != n->sec)
1.57      schwarze 1116:                return(1);
1.60      schwarze 1117:        if (MDOC_BLOCK == n->type && n->prev)
1.1       kristaps 1118:                term_vspace(p);
                   1119:        return(1);
                   1120: }
                   1121:
                   1122: static int
                   1123: termp_rv_pre(DECL_ARGS)
                   1124: {
1.132     schwarze 1125:        int              nchild;
1.1       kristaps 1126:
                   1127:        term_newln(p);
                   1128:
1.132     schwarze 1129:        nchild = n->nchild;
1.175     schwarze 1130:        if (nchild > 0) {
                   1131:                term_word(p, "The");
1.132     schwarze 1132:
1.175     schwarze 1133:                for (n = n->child; n; n = n->next) {
                   1134:                        term_fontpush(p, TERMFONT_BOLD);
                   1135:                        term_word(p, n->string);
                   1136:                        term_fontpop(p);
1.132     schwarze 1137:
                   1138:                        p->flags |= TERMP_NOSPACE;
1.175     schwarze 1139:                        term_word(p, "()");
                   1140:
                   1141:                        if (n->next == NULL)
                   1142:                                continue;
                   1143:
                   1144:                        if (nchild > 2) {
                   1145:                                p->flags |= TERMP_NOSPACE;
                   1146:                                term_word(p, ",");
                   1147:                        }
                   1148:                        if (n->next->next == NULL)
                   1149:                                term_word(p, "and");
1.132     schwarze 1150:                }
                   1151:
1.175     schwarze 1152:                if (nchild > 1)
                   1153:                        term_word(p, "functions return");
                   1154:                else
                   1155:                        term_word(p, "function returns");
                   1156:
                   1157:                term_word(p, "the value\\~0 if successful;");
                   1158:        } else
                   1159:                term_word(p, "Upon successful completion,"
                   1160:                    " the value\\~0 is returned;");
1.1       kristaps 1161:
1.175     schwarze 1162:        term_word(p, "otherwise the value\\~\\-1 is returned"
                   1163:            " and the global variable");
1.1       kristaps 1164:
1.65      schwarze 1165:        term_fontpush(p, TERMFONT_UNDER);
1.1       kristaps 1166:        term_word(p, "errno");
1.65      schwarze 1167:        term_fontpop(p);
1.1       kristaps 1168:
1.166     schwarze 1169:        term_word(p, "is set to indicate the error.");
1.84      schwarze 1170:        p->flags |= TERMP_SENTENCE;
1.1       kristaps 1171:
1.53      schwarze 1172:        return(0);
1.1       kristaps 1173: }
                   1174:
                   1175: static int
                   1176: termp_ex_pre(DECL_ARGS)
                   1177: {
1.132     schwarze 1178:        int              nchild;
1.1       kristaps 1179:
1.132     schwarze 1180:        term_newln(p);
1.53      schwarze 1181:        term_word(p, "The");
1.1       kristaps 1182:
1.132     schwarze 1183:        nchild = n->nchild;
                   1184:        for (n = n->child; n; n = n->next) {
1.65      schwarze 1185:                term_fontpush(p, TERMFONT_BOLD);
1.132     schwarze 1186:                term_word(p, n->string);
1.65      schwarze 1187:                term_fontpop(p);
1.132     schwarze 1188:
                   1189:                if (nchild > 2 && n->next) {
                   1190:                        p->flags |= TERMP_NOSPACE;
1.53      schwarze 1191:                        term_word(p, ",");
1.132     schwarze 1192:                }
                   1193:
                   1194:                if (n->next && NULL == n->next->next)
                   1195:                        term_word(p, "and");
1.53      schwarze 1196:        }
                   1197:
1.132     schwarze 1198:        if (nchild > 1)
1.175     schwarze 1199:                term_word(p, "utilities exit\\~0");
1.53      schwarze 1200:        else
1.175     schwarze 1201:                term_word(p, "utility exits\\~0");
1.53      schwarze 1202:
1.175     schwarze 1203:        term_word(p, "on success, and\\~>0 if an error occurs.");
1.132     schwarze 1204:
1.84      schwarze 1205:        p->flags |= TERMP_SENTENCE;
1.53      schwarze 1206:        return(0);
1.1       kristaps 1207: }
                   1208:
                   1209: static int
                   1210: termp_nd_pre(DECL_ARGS)
                   1211: {
1.25      schwarze 1212:
1.196     schwarze 1213:        if (n->type == MDOC_BODY)
                   1214:                term_word(p, "\\(en");
1.1       kristaps 1215:        return(1);
                   1216: }
                   1217:
1.73      schwarze 1218: static int
                   1219: termp_bl_pre(DECL_ARGS)
                   1220: {
                   1221:
                   1222:        return(MDOC_HEAD != n->type);
                   1223: }
                   1224:
1.1       kristaps 1225: static void
                   1226: termp_bl_post(DECL_ARGS)
                   1227: {
                   1228:
1.60      schwarze 1229:        if (MDOC_BLOCK == n->type)
1.1       kristaps 1230:                term_newln(p);
                   1231: }
                   1232:
                   1233: static int
                   1234: termp_xr_pre(DECL_ARGS)
                   1235: {
                   1236:
1.132     schwarze 1237:        if (NULL == (n = n->child))
1.72      schwarze 1238:                return(0);
                   1239:
1.132     schwarze 1240:        assert(MDOC_TEXT == n->type);
                   1241:        term_word(p, n->string);
1.10      schwarze 1242:
1.166     schwarze 1243:        if (NULL == (n = n->next))
1.1       kristaps 1244:                return(0);
1.132     schwarze 1245:
1.1       kristaps 1246:        p->flags |= TERMP_NOSPACE;
                   1247:        term_word(p, "(");
1.132     schwarze 1248:        p->flags |= TERMP_NOSPACE;
                   1249:
                   1250:        assert(MDOC_TEXT == n->type);
                   1251:        term_word(p, n->string);
                   1252:
                   1253:        p->flags |= TERMP_NOSPACE;
1.1       kristaps 1254:        term_word(p, ")");
1.60      schwarze 1255:
1.1       kristaps 1256:        return(0);
                   1257: }
                   1258:
1.86      schwarze 1259: /*
                   1260:  * This decides how to assert whitespace before any of the SYNOPSIS set
                   1261:  * of macros (which, as in the case of Ft/Fo and Ft/Fn, may contain
                   1262:  * macro combos).
                   1263:  */
                   1264: static void
                   1265: synopsis_pre(struct termp *p, const struct mdoc_node *n)
                   1266: {
1.166     schwarze 1267:        /*
1.86      schwarze 1268:         * Obviously, if we're not in a SYNOPSIS or no prior macros
                   1269:         * exist, do nothing.
                   1270:         */
1.92      schwarze 1271:        if (NULL == n->prev || ! (MDOC_SYNPRETTY & n->flags))
1.86      schwarze 1272:                return;
                   1273:
                   1274:        /*
                   1275:         * If we're the second in a pair of like elements, emit our
                   1276:         * newline and return.  UNLESS we're `Fo', `Fn', `Fn', in which
                   1277:         * case we soldier on.
                   1278:         */
1.166     schwarze 1279:        if (n->prev->tok == n->tok &&
                   1280:            MDOC_Ft != n->tok &&
                   1281:            MDOC_Fo != n->tok &&
                   1282:            MDOC_Fn != n->tok) {
1.86      schwarze 1283:                term_newln(p);
                   1284:                return;
                   1285:        }
                   1286:
                   1287:        /*
                   1288:         * If we're one of the SYNOPSIS set and non-like pair-wise after
                   1289:         * another (or Fn/Fo, which we've let slip through) then assert
                   1290:         * vertical space, else only newline and move on.
                   1291:         */
                   1292:        switch (n->prev->tok) {
1.166     schwarze 1293:        case MDOC_Fd:
1.86      schwarze 1294:                /* FALLTHROUGH */
1.166     schwarze 1295:        case MDOC_Fn:
1.86      schwarze 1296:                /* FALLTHROUGH */
1.166     schwarze 1297:        case MDOC_Fo:
1.86      schwarze 1298:                /* FALLTHROUGH */
1.166     schwarze 1299:        case MDOC_In:
1.86      schwarze 1300:                /* FALLTHROUGH */
1.166     schwarze 1301:        case MDOC_Vt:
1.86      schwarze 1302:                term_vspace(p);
                   1303:                break;
1.166     schwarze 1304:        case MDOC_Ft:
1.86      schwarze 1305:                if (MDOC_Fn != n->tok && MDOC_Fo != n->tok) {
                   1306:                        term_vspace(p);
                   1307:                        break;
                   1308:                }
                   1309:                /* FALLTHROUGH */
                   1310:        default:
                   1311:                term_newln(p);
                   1312:                break;
                   1313:        }
                   1314: }
                   1315:
1.69      schwarze 1316: static int
                   1317: termp_vt_pre(DECL_ARGS)
                   1318: {
                   1319:
1.86      schwarze 1320:        if (MDOC_ELEM == n->type) {
                   1321:                synopsis_pre(p, n);
1.147     schwarze 1322:                return(termp_under_pre(p, pair, meta, n));
1.86      schwarze 1323:        } else if (MDOC_BLOCK == n->type) {
                   1324:                synopsis_pre(p, n);
                   1325:                return(1);
                   1326:        } else if (MDOC_HEAD == n->type)
1.69      schwarze 1327:                return(0);
                   1328:
1.147     schwarze 1329:        return(termp_under_pre(p, pair, meta, n));
1.69      schwarze 1330: }
                   1331:
1.1       kristaps 1332: static int
1.54      schwarze 1333: termp_bold_pre(DECL_ARGS)
1.1       kristaps 1334: {
                   1335:
1.65      schwarze 1336:        term_fontpush(p, TERMFONT_BOLD);
1.1       kristaps 1337:        return(1);
                   1338: }
                   1339:
1.86      schwarze 1340: static int
                   1341: termp_fd_pre(DECL_ARGS)
1.1       kristaps 1342: {
                   1343:
1.86      schwarze 1344:        synopsis_pre(p, n);
1.147     schwarze 1345:        return(termp_bold_pre(p, pair, meta, n));
1.1       kristaps 1346: }
                   1347:
1.143     schwarze 1348: static void
                   1349: termp_fd_post(DECL_ARGS)
                   1350: {
                   1351:
                   1352:        term_newln(p);
                   1353: }
                   1354:
1.1       kristaps 1355: static int
                   1356: termp_sh_pre(DECL_ARGS)
                   1357: {
1.60      schwarze 1358:
                   1359:        switch (n->type) {
1.166     schwarze 1360:        case MDOC_BLOCK:
1.192     schwarze 1361:                /*
                   1362:                 * Vertical space before sections, except
                   1363:                 * when the previous section was empty.
                   1364:                 */
                   1365:                if (n->prev == NULL ||
                   1366:                    MDOC_Sh != n->prev->tok ||
                   1367:                    (n->prev->body != NULL &&
                   1368:                     n->prev->body->child != NULL))
                   1369:                        term_vspace(p);
1.52      schwarze 1370:                break;
1.166     schwarze 1371:        case MDOC_HEAD:
1.65      schwarze 1372:                term_fontpush(p, TERMFONT_BOLD);
1.1       kristaps 1373:                break;
1.166     schwarze 1374:        case MDOC_BODY:
1.140     schwarze 1375:                p->offset = term_len(p, p->defindent);
1.141     schwarze 1376:                if (SEC_AUTHORS == n->sec)
                   1377:                        p->flags &= ~(TERMP_SPLIT|TERMP_NOSPLIT);
1.1       kristaps 1378:                break;
                   1379:        default:
                   1380:                break;
                   1381:        }
                   1382:        return(1);
                   1383: }
                   1384:
                   1385: static void
                   1386: termp_sh_post(DECL_ARGS)
                   1387: {
                   1388:
1.60      schwarze 1389:        switch (n->type) {
1.166     schwarze 1390:        case MDOC_HEAD:
1.1       kristaps 1391:                term_newln(p);
                   1392:                break;
1.166     schwarze 1393:        case MDOC_BODY:
1.1       kristaps 1394:                term_newln(p);
                   1395:                p->offset = 0;
                   1396:                break;
                   1397:        default:
                   1398:                break;
                   1399:        }
                   1400: }
                   1401:
                   1402: static int
                   1403: termp_bt_pre(DECL_ARGS)
                   1404: {
                   1405:
                   1406:        term_word(p, "is currently in beta test.");
1.84      schwarze 1407:        p->flags |= TERMP_SENTENCE;
1.59      schwarze 1408:        return(0);
1.1       kristaps 1409: }
                   1410:
                   1411: static void
                   1412: termp_lb_post(DECL_ARGS)
                   1413: {
                   1414:
1.77      schwarze 1415:        if (SEC_LIBRARY == n->sec && MDOC_LINE & n->flags)
1.57      schwarze 1416:                term_newln(p);
1.1       kristaps 1417: }
                   1418:
                   1419: static int
                   1420: termp_ud_pre(DECL_ARGS)
                   1421: {
                   1422:
                   1423:        term_word(p, "currently under development.");
1.84      schwarze 1424:        p->flags |= TERMP_SENTENCE;
1.60      schwarze 1425:        return(0);
1.1       kristaps 1426: }
                   1427:
                   1428: static int
                   1429: termp_d1_pre(DECL_ARGS)
                   1430: {
                   1431:
1.60      schwarze 1432:        if (MDOC_BLOCK != n->type)
1.1       kristaps 1433:                return(1);
                   1434:        term_newln(p);
1.140     schwarze 1435:        p->offset += term_len(p, p->defindent + 1);
1.1       kristaps 1436:        return(1);
                   1437: }
                   1438:
                   1439: static int
                   1440: termp_ft_pre(DECL_ARGS)
                   1441: {
                   1442:
1.85      schwarze 1443:        /* NB: MDOC_LINE does not effect this! */
1.86      schwarze 1444:        synopsis_pre(p, n);
1.65      schwarze 1445:        term_fontpush(p, TERMFONT_UNDER);
1.1       kristaps 1446:        return(1);
                   1447: }
                   1448:
                   1449: static int
                   1450: termp_fn_pre(DECL_ARGS)
                   1451: {
1.159     schwarze 1452:        size_t           rmargin = 0;
1.132     schwarze 1453:        int              pretty;
                   1454:
                   1455:        pretty = MDOC_SYNPRETTY & n->flags;
1.1       kristaps 1456:
1.86      schwarze 1457:        synopsis_pre(p, n);
1.85      schwarze 1458:
1.132     schwarze 1459:        if (NULL == (n = n->child))
                   1460:                return(0);
                   1461:
1.153     schwarze 1462:        if (pretty) {
                   1463:                rmargin = p->rmargin;
1.159     schwarze 1464:                p->rmargin = p->offset + term_len(p, 4);
1.165     schwarze 1465:                p->flags |= TERMP_NOBREAK | TERMP_BRIND | TERMP_HANG;
1.153     schwarze 1466:        }
                   1467:
1.132     schwarze 1468:        assert(MDOC_TEXT == n->type);
1.65      schwarze 1469:        term_fontpush(p, TERMFONT_BOLD);
1.132     schwarze 1470:        term_word(p, n->string);
1.65      schwarze 1471:        term_fontpop(p);
1.1       kristaps 1472:
1.153     schwarze 1473:        if (pretty) {
                   1474:                term_flushln(p);
1.165     schwarze 1475:                p->flags &= ~(TERMP_NOBREAK | TERMP_BRIND | TERMP_HANG);
1.153     schwarze 1476:                p->offset = p->rmargin;
                   1477:                p->rmargin = rmargin;
                   1478:        }
                   1479:
1.1       kristaps 1480:        p->flags |= TERMP_NOSPACE;
                   1481:        term_word(p, "(");
1.132     schwarze 1482:        p->flags |= TERMP_NOSPACE;
1.1       kristaps 1483:
1.132     schwarze 1484:        for (n = n->next; n; n = n->next) {
                   1485:                assert(MDOC_TEXT == n->type);
1.65      schwarze 1486:                term_fontpush(p, TERMFONT_UNDER);
1.157     schwarze 1487:                if (pretty)
                   1488:                        p->flags |= TERMP_NBRWORD;
1.132     schwarze 1489:                term_word(p, n->string);
1.65      schwarze 1490:                term_fontpop(p);
                   1491:
1.132     schwarze 1492:                if (n->next) {
                   1493:                        p->flags |= TERMP_NOSPACE;
1.1       kristaps 1494:                        term_word(p, ",");
1.132     schwarze 1495:                }
1.1       kristaps 1496:        }
                   1497:
1.132     schwarze 1498:        p->flags |= TERMP_NOSPACE;
1.1       kristaps 1499:        term_word(p, ")");
                   1500:
1.132     schwarze 1501:        if (pretty) {
                   1502:                p->flags |= TERMP_NOSPACE;
1.1       kristaps 1503:                term_word(p, ";");
1.153     schwarze 1504:                term_flushln(p);
1.132     schwarze 1505:        }
1.1       kristaps 1506:
                   1507:        return(0);
                   1508: }
                   1509:
                   1510: static int
                   1511: termp_fa_pre(DECL_ARGS)
                   1512: {
1.60      schwarze 1513:        const struct mdoc_node  *nn;
1.1       kristaps 1514:
1.60      schwarze 1515:        if (n->parent->tok != MDOC_Fo) {
1.65      schwarze 1516:                term_fontpush(p, TERMFONT_UNDER);
1.1       kristaps 1517:                return(1);
                   1518:        }
                   1519:
1.60      schwarze 1520:        for (nn = n->child; nn; nn = nn->next) {
1.65      schwarze 1521:                term_fontpush(p, TERMFONT_UNDER);
1.160     schwarze 1522:                p->flags |= TERMP_NBRWORD;
1.60      schwarze 1523:                term_word(p, nn->string);
1.65      schwarze 1524:                term_fontpop(p);
                   1525:
1.158     schwarze 1526:                if (nn->next || (n->next && n->next->tok == MDOC_Fa)) {
1.132     schwarze 1527:                        p->flags |= TERMP_NOSPACE;
1.1       kristaps 1528:                        term_word(p, ",");
1.132     schwarze 1529:                }
1.1       kristaps 1530:        }
                   1531:
                   1532:        return(0);
                   1533: }
                   1534:
                   1535: static int
                   1536: termp_bd_pre(DECL_ARGS)
                   1537: {
1.174     schwarze 1538:        size_t                   tabwidth, lm, len, rm, rmax;
1.146     schwarze 1539:        struct mdoc_node        *nn;
1.201     schwarze 1540:        int                      offset;
1.1       kristaps 1541:
1.60      schwarze 1542:        if (MDOC_BLOCK == n->type) {
1.61      schwarze 1543:                print_bvspace(p, n, n);
1.45      schwarze 1544:                return(1);
1.73      schwarze 1545:        } else if (MDOC_HEAD == n->type)
                   1546:                return(0);
1.1       kristaps 1547:
1.187     schwarze 1548:        /* Handle the -offset argument. */
                   1549:
                   1550:        if (n->norm->Bd.offs == NULL ||
                   1551:            ! strcmp(n->norm->Bd.offs, "left"))
                   1552:                /* nothing */;
                   1553:        else if ( ! strcmp(n->norm->Bd.offs, "indent"))
                   1554:                p->offset += term_len(p, p->defindent + 1);
                   1555:        else if ( ! strcmp(n->norm->Bd.offs, "indent-two"))
                   1556:                p->offset += term_len(p, (p->defindent + 1) * 2);
1.201     schwarze 1557:        else {
                   1558:                offset = a2width(p, n->norm->Bd.offs);
                   1559:                if (offset < 0 && (size_t)(-offset) > p->offset)
                   1560:                        p->offset = 0;
                   1561:                else if (offset < SHRT_MAX)
                   1562:                        p->offset += offset;
                   1563:        }
1.60      schwarze 1564:
                   1565:        /*
                   1566:         * If -ragged or -filled are specified, the block does nothing
                   1567:         * but change the indentation.  If -unfilled or -literal are
                   1568:         * specified, text is printed exactly as entered in the display:
                   1569:         * for macro lines, a newline is appended to the line.  Blank
                   1570:         * lines are allowed.
                   1571:         */
1.166     schwarze 1572:
                   1573:        if (DISP_literal != n->norm->Bd.type &&
1.174     schwarze 1574:            DISP_unfilled != n->norm->Bd.type &&
                   1575:            DISP_centered != n->norm->Bd.type)
1.1       kristaps 1576:                return(1);
                   1577:
1.75      schwarze 1578:        tabwidth = p->tabwidth;
1.123     schwarze 1579:        if (DISP_literal == n->norm->Bd.type)
                   1580:                p->tabwidth = term_len(p, 8);
                   1581:
1.174     schwarze 1582:        lm = p->offset;
1.77      schwarze 1583:        rm = p->rmargin;
                   1584:        rmax = p->maxrmargin;
                   1585:        p->rmargin = p->maxrmargin = TERM_MAXMARGIN;
                   1586:
1.60      schwarze 1587:        for (nn = n->child; nn; nn = nn->next) {
1.174     schwarze 1588:                if (DISP_centered == n->norm->Bd.type) {
                   1589:                        if (MDOC_TEXT == nn->type) {
                   1590:                                len = term_strlen(p, nn->string);
                   1591:                                p->offset = len >= rm ? 0 :
                   1592:                                    lm + len >= rm ? rm - len :
                   1593:                                    (lm + rm - len) / 2;
                   1594:                        } else
                   1595:                                p->offset = lm;
                   1596:                }
1.147     schwarze 1597:                print_mdoc_node(p, pair, meta, nn);
1.108     schwarze 1598:                /*
                   1599:                 * If the printed node flushes its own line, then we
                   1600:                 * needn't do it here as well.  This is hacky, but the
                   1601:                 * notion of selective eoln whitespace is pretty dumb
                   1602:                 * anyway, so don't sweat it.
                   1603:                 */
                   1604:                switch (nn->tok) {
1.166     schwarze 1605:                case MDOC_Sm:
1.112     schwarze 1606:                        /* FALLTHROUGH */
1.166     schwarze 1607:                case MDOC_br:
1.108     schwarze 1608:                        /* FALLTHROUGH */
1.166     schwarze 1609:                case MDOC_sp:
1.108     schwarze 1610:                        /* FALLTHROUGH */
1.166     schwarze 1611:                case MDOC_Bl:
1.115     schwarze 1612:                        /* FALLTHROUGH */
1.166     schwarze 1613:                case MDOC_D1:
1.115     schwarze 1614:                        /* FALLTHROUGH */
1.166     schwarze 1615:                case MDOC_Dl:
1.108     schwarze 1616:                        /* FALLTHROUGH */
1.166     schwarze 1617:                case MDOC_Lp:
1.108     schwarze 1618:                        /* FALLTHROUGH */
1.166     schwarze 1619:                case MDOC_Pp:
1.108     schwarze 1620:                        continue;
                   1621:                default:
                   1622:                        break;
                   1623:                }
1.198     schwarze 1624:                if (p->flags & TERMP_NONEWLINE ||
                   1625:                    (nn->next && ! (nn->next->flags & MDOC_LINE)))
1.100     schwarze 1626:                        continue;
                   1627:                term_flushln(p);
1.48      schwarze 1628:                p->flags |= TERMP_NOSPACE;
1.1       kristaps 1629:        }
1.88      schwarze 1630:
1.75      schwarze 1631:        p->tabwidth = tabwidth;
1.77      schwarze 1632:        p->rmargin = rm;
                   1633:        p->maxrmargin = rmax;
1.1       kristaps 1634:        return(0);
                   1635: }
                   1636:
                   1637: static void
                   1638: termp_bd_post(DECL_ARGS)
                   1639: {
1.77      schwarze 1640:        size_t           rm, rmax;
1.1       kristaps 1641:
1.166     schwarze 1642:        if (MDOC_BODY != n->type)
1.1       kristaps 1643:                return;
1.77      schwarze 1644:
                   1645:        rm = p->rmargin;
                   1646:        rmax = p->maxrmargin;
                   1647:
1.166     schwarze 1648:        if (DISP_literal == n->norm->Bd.type ||
                   1649:            DISP_unfilled == n->norm->Bd.type)
1.77      schwarze 1650:                p->rmargin = p->maxrmargin = TERM_MAXMARGIN;
                   1651:
1.48      schwarze 1652:        p->flags |= TERMP_NOSPACE;
1.75      schwarze 1653:        term_newln(p);
1.77      schwarze 1654:
                   1655:        p->rmargin = rm;
                   1656:        p->maxrmargin = rmax;
1.1       kristaps 1657: }
                   1658:
1.126     schwarze 1659: static int
                   1660: termp_bx_pre(DECL_ARGS)
1.1       kristaps 1661: {
                   1662:
1.126     schwarze 1663:        if (NULL != (n = n->child)) {
                   1664:                term_word(p, n->string);
                   1665:                p->flags |= TERMP_NOSPACE;
                   1666:                term_word(p, "BSD");
                   1667:        } else {
                   1668:                term_word(p, "BSD");
                   1669:                return(0);
                   1670:        }
                   1671:
                   1672:        if (NULL != (n = n->next)) {
                   1673:                p->flags |= TERMP_NOSPACE;
                   1674:                term_word(p, "-");
1.1       kristaps 1675:                p->flags |= TERMP_NOSPACE;
1.126     schwarze 1676:                term_word(p, n->string);
                   1677:        }
                   1678:
                   1679:        return(0);
1.1       kristaps 1680: }
                   1681:
                   1682: static int
1.26      schwarze 1683: termp_xx_pre(DECL_ARGS)
1.1       kristaps 1684: {
1.26      schwarze 1685:        const char      *pp;
1.129     schwarze 1686:        int              flags;
1.1       kristaps 1687:
1.26      schwarze 1688:        pp = NULL;
1.60      schwarze 1689:        switch (n->tok) {
1.166     schwarze 1690:        case MDOC_Bsx:
1.113     schwarze 1691:                pp = "BSD/OS";
1.26      schwarze 1692:                break;
1.166     schwarze 1693:        case MDOC_Dx:
1.64      schwarze 1694:                pp = "DragonFly";
1.26      schwarze 1695:                break;
1.166     schwarze 1696:        case MDOC_Fx:
1.26      schwarze 1697:                pp = "FreeBSD";
                   1698:                break;
1.166     schwarze 1699:        case MDOC_Nx:
1.26      schwarze 1700:                pp = "NetBSD";
                   1701:                break;
1.166     schwarze 1702:        case MDOC_Ox:
1.26      schwarze 1703:                pp = "OpenBSD";
                   1704:                break;
1.166     schwarze 1705:        case MDOC_Ux:
1.26      schwarze 1706:                pp = "UNIX";
                   1707:                break;
                   1708:        default:
1.148     schwarze 1709:                abort();
                   1710:                /* NOTREACHED */
1.26      schwarze 1711:        }
1.1       kristaps 1712:
1.26      schwarze 1713:        term_word(p, pp);
1.129     schwarze 1714:        if (n->child) {
                   1715:                flags = p->flags;
                   1716:                p->flags |= TERMP_KEEP;
                   1717:                term_word(p, n->child->string);
                   1718:                p->flags = flags;
                   1719:        }
                   1720:        return(0);
1.1       kristaps 1721: }
                   1722:
                   1723: static void
                   1724: termp_pf_post(DECL_ARGS)
                   1725: {
                   1726:
1.197     schwarze 1727:        if ( ! (n->next == NULL || n->next->flags & MDOC_LINE))
                   1728:                p->flags |= TERMP_NOSPACE;
1.1       kristaps 1729: }
                   1730:
                   1731: static int
                   1732: termp_ss_pre(DECL_ARGS)
                   1733: {
                   1734:
1.60      schwarze 1735:        switch (n->type) {
1.166     schwarze 1736:        case MDOC_BLOCK:
1.1       kristaps 1737:                term_newln(p);
1.60      schwarze 1738:                if (n->prev)
1.1       kristaps 1739:                        term_vspace(p);
                   1740:                break;
1.166     schwarze 1741:        case MDOC_HEAD:
1.65      schwarze 1742:                term_fontpush(p, TERMFONT_BOLD);
1.140     schwarze 1743:                p->offset = term_len(p, (p->defindent+1)/2);
1.1       kristaps 1744:                break;
1.176     schwarze 1745:        case MDOC_BODY:
                   1746:                p->offset = term_len(p, p->defindent);
                   1747:                break;
1.1       kristaps 1748:        default:
                   1749:                break;
                   1750:        }
                   1751:
                   1752:        return(1);
                   1753: }
                   1754:
                   1755: static void
                   1756: termp_ss_post(DECL_ARGS)
                   1757: {
                   1758:
1.176     schwarze 1759:        if (n->type == MDOC_HEAD || n->type == MDOC_BODY)
1.1       kristaps 1760:                term_newln(p);
                   1761: }
                   1762:
                   1763: static int
                   1764: termp_cd_pre(DECL_ARGS)
                   1765: {
                   1766:
1.86      schwarze 1767:        synopsis_pre(p, n);
1.65      schwarze 1768:        term_fontpush(p, TERMFONT_BOLD);
1.1       kristaps 1769:        return(1);
                   1770: }
                   1771:
                   1772: static int
                   1773: termp_in_pre(DECL_ARGS)
                   1774: {
                   1775:
1.86      schwarze 1776:        synopsis_pre(p, n);
1.85      schwarze 1777:
1.92      schwarze 1778:        if (MDOC_SYNPRETTY & n->flags && MDOC_LINE & n->flags) {
1.85      schwarze 1779:                term_fontpush(p, TERMFONT_BOLD);
1.23      schwarze 1780:                term_word(p, "#include");
1.85      schwarze 1781:                term_word(p, "<");
                   1782:        } else {
                   1783:                term_word(p, "<");
                   1784:                term_fontpush(p, TERMFONT_UNDER);
                   1785:        }
1.23      schwarze 1786:
1.1       kristaps 1787:        p->flags |= TERMP_NOSPACE;
                   1788:        return(1);
                   1789: }
                   1790:
                   1791: static void
                   1792: termp_in_post(DECL_ARGS)
                   1793: {
                   1794:
1.92      schwarze 1795:        if (MDOC_SYNPRETTY & n->flags)
1.85      schwarze 1796:                term_fontpush(p, TERMFONT_BOLD);
                   1797:
1.59      schwarze 1798:        p->flags |= TERMP_NOSPACE;
1.1       kristaps 1799:        term_word(p, ">");
                   1800:
1.92      schwarze 1801:        if (MDOC_SYNPRETTY & n->flags)
1.85      schwarze 1802:                term_fontpop(p);
1.38      schwarze 1803: }
                   1804:
                   1805: static int
                   1806: termp_sp_pre(DECL_ARGS)
                   1807: {
1.199     schwarze 1808:        struct roffsu    su;
1.211   ! schwarze 1809:        int              i, len;
1.38      schwarze 1810:
1.60      schwarze 1811:        switch (n->tok) {
1.166     schwarze 1812:        case MDOC_sp:
1.199     schwarze 1813:                if (n->child) {
                   1814:                        if ( ! a2roffsu(n->child->string, &su, SCALE_VS))
                   1815:                                su.scale = 1.0;
                   1816:                        len = term_vspan(p, &su);
                   1817:                } else
                   1818:                        len = 1;
1.54      schwarze 1819:                break;
1.166     schwarze 1820:        case MDOC_br:
1.54      schwarze 1821:                len = 0;
                   1822:                break;
                   1823:        default:
                   1824:                len = 1;
                   1825:                break;
1.38      schwarze 1826:        }
                   1827:
                   1828:        if (0 == len)
                   1829:                term_newln(p);
1.211   ! schwarze 1830:        else if (len < 0)
        !          1831:                p->skipvsp -= len;
        !          1832:        else
        !          1833:                for (i = 0; i < len; i++)
        !          1834:                        term_vspace(p);
1.38      schwarze 1835:
                   1836:        return(0);
                   1837: }
                   1838:
                   1839: static int
1.193     schwarze 1840: termp_skip_pre(DECL_ARGS)
1.170     schwarze 1841: {
                   1842:
                   1843:        return(0);
                   1844: }
                   1845:
                   1846: static int
1.107     schwarze 1847: termp_quote_pre(DECL_ARGS)
1.1       kristaps 1848: {
                   1849:
1.120     schwarze 1850:        if (MDOC_BODY != n->type && MDOC_ELEM != n->type)
1.1       kristaps 1851:                return(1);
                   1852:
1.107     schwarze 1853:        switch (n->tok) {
1.166     schwarze 1854:        case MDOC_Ao:
1.107     schwarze 1855:                /* FALLTHROUGH */
1.166     schwarze 1856:        case MDOC_Aq:
1.202     schwarze 1857:                term_word(p, n->nchild == 1 &&
                   1858:                    n->child->tok == MDOC_Mt ? "<" : "\\(la");
1.107     schwarze 1859:                break;
1.166     schwarze 1860:        case MDOC_Bro:
1.107     schwarze 1861:                /* FALLTHROUGH */
1.166     schwarze 1862:        case MDOC_Brq:
1.107     schwarze 1863:                term_word(p, "{");
                   1864:                break;
1.166     schwarze 1865:        case MDOC_Oo:
1.107     schwarze 1866:                /* FALLTHROUGH */
1.166     schwarze 1867:        case MDOC_Op:
1.107     schwarze 1868:                /* FALLTHROUGH */
1.166     schwarze 1869:        case MDOC_Bo:
1.107     schwarze 1870:                /* FALLTHROUGH */
1.166     schwarze 1871:        case MDOC_Bq:
1.107     schwarze 1872:                term_word(p, "[");
                   1873:                break;
1.166     schwarze 1874:        case MDOC_Do:
1.107     schwarze 1875:                /* FALLTHROUGH */
1.166     schwarze 1876:        case MDOC_Dq:
1.210     schwarze 1877:                term_word(p, "\\(Lq");
1.107     schwarze 1878:                break;
1.170     schwarze 1879:        case MDOC_En:
                   1880:                if (NULL == n->norm->Es ||
                   1881:                    NULL == n->norm->Es->child)
                   1882:                        return(1);
                   1883:                term_word(p, n->norm->Es->child->string);
                   1884:                break;
1.166     schwarze 1885:        case MDOC_Po:
1.107     schwarze 1886:                /* FALLTHROUGH */
1.166     schwarze 1887:        case MDOC_Pq:
1.107     schwarze 1888:                term_word(p, "(");
                   1889:                break;
1.166     schwarze 1890:        case MDOC__T:
1.120     schwarze 1891:                /* FALLTHROUGH */
1.166     schwarze 1892:        case MDOC_Qo:
1.107     schwarze 1893:                /* FALLTHROUGH */
1.166     schwarze 1894:        case MDOC_Qq:
1.107     schwarze 1895:                term_word(p, "\"");
                   1896:                break;
1.166     schwarze 1897:        case MDOC_Ql:
1.107     schwarze 1898:                /* FALLTHROUGH */
1.166     schwarze 1899:        case MDOC_So:
1.107     schwarze 1900:                /* FALLTHROUGH */
1.166     schwarze 1901:        case MDOC_Sq:
1.151     schwarze 1902:                term_word(p, "\\(oq");
1.107     schwarze 1903:                break;
                   1904:        default:
                   1905:                abort();
                   1906:                /* NOTREACHED */
                   1907:        }
1.1       kristaps 1908:
                   1909:        p->flags |= TERMP_NOSPACE;
                   1910:        return(1);
                   1911: }
                   1912:
                   1913: static void
1.107     schwarze 1914: termp_quote_post(DECL_ARGS)
1.1       kristaps 1915: {
                   1916:
1.194     schwarze 1917:        if (n->type != MDOC_BODY && n->type != MDOC_ELEM)
1.1       kristaps 1918:                return;
                   1919:
1.205     schwarze 1920:        p->flags |= TERMP_NOSPACE;
1.1       kristaps 1921:
1.107     schwarze 1922:        switch (n->tok) {
1.166     schwarze 1923:        case MDOC_Ao:
1.107     schwarze 1924:                /* FALLTHROUGH */
1.166     schwarze 1925:        case MDOC_Aq:
1.202     schwarze 1926:                term_word(p, n->nchild == 1 &&
                   1927:                    n->child->tok == MDOC_Mt ? ">" : "\\(ra");
1.107     schwarze 1928:                break;
1.166     schwarze 1929:        case MDOC_Bro:
1.107     schwarze 1930:                /* FALLTHROUGH */
1.166     schwarze 1931:        case MDOC_Brq:
1.107     schwarze 1932:                term_word(p, "}");
                   1933:                break;
1.166     schwarze 1934:        case MDOC_Oo:
1.107     schwarze 1935:                /* FALLTHROUGH */
1.166     schwarze 1936:        case MDOC_Op:
1.107     schwarze 1937:                /* FALLTHROUGH */
1.166     schwarze 1938:        case MDOC_Bo:
1.107     schwarze 1939:                /* FALLTHROUGH */
1.166     schwarze 1940:        case MDOC_Bq:
1.107     schwarze 1941:                term_word(p, "]");
                   1942:                break;
1.166     schwarze 1943:        case MDOC_Do:
1.107     schwarze 1944:                /* FALLTHROUGH */
1.166     schwarze 1945:        case MDOC_Dq:
1.210     schwarze 1946:                term_word(p, "\\(Rq");
1.170     schwarze 1947:                break;
                   1948:        case MDOC_En:
1.205     schwarze 1949:                if (n->norm->Es == NULL ||
                   1950:                    n->norm->Es->child == NULL ||
                   1951:                    n->norm->Es->child->next == NULL)
                   1952:                        p->flags &= ~TERMP_NOSPACE;
                   1953:                else
1.170     schwarze 1954:                        term_word(p, n->norm->Es->child->next->string);
1.107     schwarze 1955:                break;
1.166     schwarze 1956:        case MDOC_Po:
1.107     schwarze 1957:                /* FALLTHROUGH */
1.166     schwarze 1958:        case MDOC_Pq:
1.107     schwarze 1959:                term_word(p, ")");
                   1960:                break;
1.166     schwarze 1961:        case MDOC__T:
1.120     schwarze 1962:                /* FALLTHROUGH */
1.166     schwarze 1963:        case MDOC_Qo:
1.107     schwarze 1964:                /* FALLTHROUGH */
1.166     schwarze 1965:        case MDOC_Qq:
1.107     schwarze 1966:                term_word(p, "\"");
                   1967:                break;
1.166     schwarze 1968:        case MDOC_Ql:
1.107     schwarze 1969:                /* FALLTHROUGH */
1.166     schwarze 1970:        case MDOC_So:
1.107     schwarze 1971:                /* FALLTHROUGH */
1.166     schwarze 1972:        case MDOC_Sq:
1.151     schwarze 1973:                term_word(p, "\\(cq");
1.107     schwarze 1974:                break;
                   1975:        default:
                   1976:                abort();
                   1977:                /* NOTREACHED */
                   1978:        }
1.205     schwarze 1979: }
                   1980:
                   1981: static int
                   1982: termp_eo_pre(DECL_ARGS)
                   1983: {
                   1984:
                   1985:        if (n->type != MDOC_BODY)
                   1986:                return(1);
                   1987:
                   1988:        if (n->end == ENDBODY_NOT &&
                   1989:            n->parent->head->child == NULL &&
                   1990:            n->child != NULL &&
                   1991:            n->child->end != ENDBODY_NOT)
                   1992:                term_word(p, "\\&");
                   1993:        else if (n->end != ENDBODY_NOT ? n->child != NULL :
1.208     schwarze 1994:             n->parent->head->child != NULL && (n->child != NULL ||
                   1995:             (n->parent->tail != NULL && n->parent->tail->child != NULL)))
1.205     schwarze 1996:                p->flags |= TERMP_NOSPACE;
                   1997:
                   1998:        return(1);
                   1999: }
                   2000:
                   2001: static void
                   2002: termp_eo_post(DECL_ARGS)
                   2003: {
                   2004:        int      body, tail;
                   2005:
                   2006:        if (n->type != MDOC_BODY)
                   2007:                return;
                   2008:
                   2009:        if (n->end != ENDBODY_NOT) {
                   2010:                p->flags &= ~TERMP_NOSPACE;
                   2011:                return;
                   2012:        }
                   2013:
                   2014:        body = n->child != NULL || n->parent->head->child != NULL;
                   2015:        tail = n->parent->tail != NULL && n->parent->tail->child != NULL;
                   2016:
                   2017:        if (body && tail)
                   2018:                p->flags |= TERMP_NOSPACE;
                   2019:        else if ( ! (body || tail))
                   2020:                term_word(p, "\\&");
                   2021:        else if ( ! tail)
                   2022:                p->flags &= ~TERMP_NOSPACE;
1.1       kristaps 2023: }
                   2024:
                   2025: static int
                   2026: termp_fo_pre(DECL_ARGS)
                   2027: {
1.159     schwarze 2028:        size_t           rmargin = 0;
1.158     schwarze 2029:        int              pretty;
                   2030:
                   2031:        pretty = MDOC_SYNPRETTY & n->flags;
1.1       kristaps 2032:
1.85      schwarze 2033:        if (MDOC_BLOCK == n->type) {
1.86      schwarze 2034:                synopsis_pre(p, n);
1.85      schwarze 2035:                return(1);
                   2036:        } else if (MDOC_BODY == n->type) {
1.158     schwarze 2037:                if (pretty) {
                   2038:                        rmargin = p->rmargin;
1.159     schwarze 2039:                        p->rmargin = p->offset + term_len(p, 4);
1.165     schwarze 2040:                        p->flags |= TERMP_NOBREAK | TERMP_BRIND |
                   2041:                                        TERMP_HANG;
1.158     schwarze 2042:                }
1.31      schwarze 2043:                p->flags |= TERMP_NOSPACE;
1.1       kristaps 2044:                term_word(p, "(");
1.132     schwarze 2045:                p->flags |= TERMP_NOSPACE;
1.158     schwarze 2046:                if (pretty) {
                   2047:                        term_flushln(p);
1.165     schwarze 2048:                        p->flags &= ~(TERMP_NOBREAK | TERMP_BRIND |
                   2049:                                        TERMP_HANG);
1.158     schwarze 2050:                        p->offset = p->rmargin;
                   2051:                        p->rmargin = rmargin;
                   2052:                }
1.1       kristaps 2053:                return(1);
1.158     schwarze 2054:        }
1.85      schwarze 2055:
1.95      schwarze 2056:        if (NULL == n->child)
                   2057:                return(0);
                   2058:
1.85      schwarze 2059:        /* XXX: we drop non-initial arguments as per groff. */
1.1       kristaps 2060:
1.85      schwarze 2061:        assert(n->child->string);
1.65      schwarze 2062:        term_fontpush(p, TERMFONT_BOLD);
1.85      schwarze 2063:        term_word(p, n->child->string);
1.1       kristaps 2064:        return(0);
                   2065: }
                   2066:
                   2067: static void
                   2068: termp_fo_post(DECL_ARGS)
                   2069: {
                   2070:
1.166     schwarze 2071:        if (MDOC_BODY != n->type)
1.86      schwarze 2072:                return;
                   2073:
1.132     schwarze 2074:        p->flags |= TERMP_NOSPACE;
1.86      schwarze 2075:        term_word(p, ")");
                   2076:
1.132     schwarze 2077:        if (MDOC_SYNPRETTY & n->flags) {
                   2078:                p->flags |= TERMP_NOSPACE;
1.86      schwarze 2079:                term_word(p, ";");
1.158     schwarze 2080:                term_flushln(p);
1.132     schwarze 2081:        }
1.1       kristaps 2082: }
                   2083:
                   2084: static int
                   2085: termp_bf_pre(DECL_ARGS)
                   2086: {
                   2087:
1.60      schwarze 2088:        if (MDOC_HEAD == n->type)
1.1       kristaps 2089:                return(0);
1.146     schwarze 2090:        else if (MDOC_BODY != n->type)
1.1       kristaps 2091:                return(1);
                   2092:
1.166     schwarze 2093:        if (FONT_Em == n->norm->Bf.font)
1.65      schwarze 2094:                term_fontpush(p, TERMFONT_UNDER);
1.166     schwarze 2095:        else if (FONT_Sy == n->norm->Bf.font)
1.65      schwarze 2096:                term_fontpush(p, TERMFONT_BOLD);
1.166     schwarze 2097:        else
1.65      schwarze 2098:                term_fontpush(p, TERMFONT_NONE);
1.1       kristaps 2099:
                   2100:        return(1);
                   2101: }
                   2102:
                   2103: static int
                   2104: termp_sm_pre(DECL_ARGS)
                   2105: {
                   2106:
1.171     schwarze 2107:        if (NULL == n->child)
                   2108:                p->flags ^= TERMP_NONOSPACE;
                   2109:        else if (0 == strcmp("on", n->child->string))
1.1       kristaps 2110:                p->flags &= ~TERMP_NONOSPACE;
1.171     schwarze 2111:        else
1.1       kristaps 2112:                p->flags |= TERMP_NONOSPACE;
1.171     schwarze 2113:
                   2114:        if (p->col && ! (TERMP_NONOSPACE & p->flags))
                   2115:                p->flags &= ~TERMP_NOSPACE;
1.1       kristaps 2116:
                   2117:        return(0);
                   2118: }
                   2119:
                   2120: static int
                   2121: termp_ap_pre(DECL_ARGS)
                   2122: {
                   2123:
                   2124:        p->flags |= TERMP_NOSPACE;
1.107     schwarze 2125:        term_word(p, "'");
1.1       kristaps 2126:        p->flags |= TERMP_NOSPACE;
                   2127:        return(1);
                   2128: }
                   2129:
                   2130: static void
                   2131: termp____post(DECL_ARGS)
                   2132: {
1.104     schwarze 2133:
                   2134:        /*
                   2135:         * Handle lists of authors.  In general, print each followed by
                   2136:         * a comma.  Don't print the comma if there are only two
                   2137:         * authors.
                   2138:         */
                   2139:        if (MDOC__A == n->tok && n->next && MDOC__A == n->next->tok)
                   2140:                if (NULL == n->next->next || MDOC__A != n->next->next->tok)
                   2141:                        if (NULL == n->prev || MDOC__A != n->prev->tok)
                   2142:                                return;
1.1       kristaps 2143:
1.62      schwarze 2144:        /* TODO: %U. */
                   2145:
1.106     schwarze 2146:        if (NULL == n->parent || MDOC_Rs != n->parent->tok)
                   2147:                return;
                   2148:
1.132     schwarze 2149:        p->flags |= TERMP_NOSPACE;
1.106     schwarze 2150:        if (NULL == n->next) {
                   2151:                term_word(p, ".");
                   2152:                p->flags |= TERMP_SENTENCE;
                   2153:        } else
                   2154:                term_word(p, ",");
1.1       kristaps 2155: }
                   2156:
                   2157: static int
1.65      schwarze 2158: termp_li_pre(DECL_ARGS)
                   2159: {
                   2160:
                   2161:        term_fontpush(p, TERMFONT_NONE);
                   2162:        return(1);
                   2163: }
                   2164:
                   2165: static int
1.1       kristaps 2166: termp_lk_pre(DECL_ARGS)
                   2167: {
1.142     schwarze 2168:        const struct mdoc_node *link, *descr;
1.1       kristaps 2169:
1.142     schwarze 2170:        if (NULL == (link = n->child))
                   2171:                return(0);
1.101     schwarze 2172:
1.142     schwarze 2173:        if (NULL != (descr = link->next)) {
                   2174:                term_fontpush(p, TERMFONT_UNDER);
                   2175:                while (NULL != descr) {
                   2176:                        term_word(p, descr->string);
                   2177:                        descr = descr->next;
                   2178:                }
                   2179:                p->flags |= TERMP_NOSPACE;
                   2180:                term_word(p, ":");
                   2181:                term_fontpop(p);
                   2182:        }
1.1       kristaps 2183:
1.65      schwarze 2184:        term_fontpush(p, TERMFONT_BOLD);
1.142     schwarze 2185:        term_word(p, link->string);
1.65      schwarze 2186:        term_fontpop(p);
1.6       schwarze 2187:
1.1       kristaps 2188:        return(0);
                   2189: }
                   2190:
1.90      schwarze 2191: static int
                   2192: termp_bk_pre(DECL_ARGS)
                   2193: {
                   2194:
1.91      schwarze 2195:        switch (n->type) {
1.166     schwarze 2196:        case MDOC_BLOCK:
1.95      schwarze 2197:                break;
1.166     schwarze 2198:        case MDOC_HEAD:
1.91      schwarze 2199:                return(0);
1.166     schwarze 2200:        case MDOC_BODY:
1.117     schwarze 2201:                if (n->parent->args || 0 == n->prev->nchild)
                   2202:                        p->flags |= TERMP_PREKEEP;
1.95      schwarze 2203:                break;
1.91      schwarze 2204:        default:
                   2205:                abort();
1.95      schwarze 2206:                /* NOTREACHED */
1.91      schwarze 2207:        }
1.95      schwarze 2208:
                   2209:        return(1);
1.90      schwarze 2210: }
                   2211:
                   2212: static void
                   2213: termp_bk_post(DECL_ARGS)
                   2214: {
                   2215:
1.155     schwarze 2216:        if (MDOC_BODY == n->type)
1.91      schwarze 2217:                p->flags &= ~(TERMP_KEEP | TERMP_PREKEEP);
1.90      schwarze 2218: }
1.120     schwarze 2219:
                   2220: static void
                   2221: termp__t_post(DECL_ARGS)
                   2222: {
                   2223:
                   2224:        /*
                   2225:         * If we're in an `Rs' and there's a journal present, then quote
                   2226:         * us instead of underlining us (for disambiguation).
                   2227:         */
1.121     schwarze 2228:        if (n->parent && MDOC_Rs == n->parent->tok &&
1.166     schwarze 2229:            n->parent->norm->Rs.quote_T)
1.147     schwarze 2230:                termp_quote_post(p, pair, meta, n);
1.120     schwarze 2231:
1.147     schwarze 2232:        termp____post(p, pair, meta, n);
1.120     schwarze 2233: }
                   2234:
                   2235: static int
                   2236: termp__t_pre(DECL_ARGS)
                   2237: {
                   2238:
                   2239:        /*
                   2240:         * If we're in an `Rs' and there's a journal present, then quote
                   2241:         * us instead of underlining us (for disambiguation).
                   2242:         */
1.121     schwarze 2243:        if (n->parent && MDOC_Rs == n->parent->tok &&
1.166     schwarze 2244:            n->parent->norm->Rs.quote_T)
1.147     schwarze 2245:                return(termp_quote_pre(p, pair, meta, n));
1.120     schwarze 2246:
                   2247:        term_fontpush(p, TERMFONT_UNDER);
                   2248:        return(1);
1.121     schwarze 2249: }
1.1       kristaps 2250:
                   2251: static int
1.54      schwarze 2252: termp_under_pre(DECL_ARGS)
1.1       kristaps 2253: {
                   2254:
1.65      schwarze 2255:        term_fontpush(p, TERMFONT_UNDER);
1.1       kristaps 2256:        return(1);
                   2257: }