prim.c revision 1.10 1 1.10 tsutsui /* $NetBSD: prim.c,v 1.10 2009/01/24 13:58:21 tsutsui Exp $ */
2 1.3 perry
3 1.1 cjs /*
4 1.9 agc * Copyright (c) 1988 Mark Nudelman
5 1.1 cjs * Copyright (c) 1988, 1993
6 1.1 cjs * The Regents of the University of California. All rights reserved.
7 1.1 cjs *
8 1.1 cjs * Redistribution and use in source and binary forms, with or without
9 1.1 cjs * modification, are permitted provided that the following conditions
10 1.1 cjs * are met:
11 1.1 cjs * 1. Redistributions of source code must retain the above copyright
12 1.1 cjs * notice, this list of conditions and the following disclaimer.
13 1.1 cjs * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 cjs * notice, this list of conditions and the following disclaimer in the
15 1.1 cjs * documentation and/or other materials provided with the distribution.
16 1.8 agc * 3. Neither the name of the University nor the names of its contributors
17 1.8 agc * may be used to endorse or promote products derived from this software
18 1.8 agc * without specific prior written permission.
19 1.8 agc *
20 1.8 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
21 1.8 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 1.8 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 1.8 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
24 1.8 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25 1.8 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26 1.8 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 1.8 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28 1.8 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29 1.8 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 1.8 agc * SUCH DAMAGE.
31 1.8 agc */
32 1.8 agc
33 1.4 christos #include <sys/cdefs.h>
34 1.1 cjs #ifndef lint
35 1.4 christos #if 0
36 1.1 cjs static char sccsid[] = "@(#)prim.c 8.1 (Berkeley) 6/6/93";
37 1.4 christos #else
38 1.10 tsutsui __RCSID("$NetBSD: prim.c,v 1.10 2009/01/24 13:58:21 tsutsui Exp $");
39 1.4 christos #endif
40 1.1 cjs #endif /* not lint */
41 1.1 cjs
42 1.1 cjs /*
43 1.1 cjs * Primitives for displaying the file on the screen.
44 1.1 cjs */
45 1.1 cjs
46 1.1 cjs #include <sys/types.h>
47 1.1 cjs #include <stdio.h>
48 1.1 cjs #include <ctype.h>
49 1.5 thorpej #include <string.h>
50 1.4 christos
51 1.4 christos #include "less.h"
52 1.4 christos #include "extern.h"
53 1.1 cjs
54 1.1 cjs int back_scroll = -1;
55 1.1 cjs int hit_eof; /* keeps track of how many times we hit end of file */
56 1.1 cjs int screen_trashed;
57 1.1 cjs
58 1.1 cjs static int squished;
59 1.1 cjs
60 1.1 cjs
61 1.4 christos static int match(char *, char *);
62 1.4 christos static int badmark __P((int));
63 1.2 cjs
64 1.1 cjs /*
65 1.1 cjs * Check to see if the end of file is currently "displayed".
66 1.1 cjs */
67 1.4 christos void
68 1.1 cjs eof_check()
69 1.4 christos /*###72 [cc] conflicting types for `eof_check'%%%*/
70 1.1 cjs {
71 1.1 cjs off_t pos;
72 1.1 cjs
73 1.1 cjs if (sigs)
74 1.1 cjs return;
75 1.1 cjs /*
76 1.1 cjs * If the bottom line is empty, we are at EOF.
77 1.1 cjs * If the bottom line ends at the file length,
78 1.1 cjs * we must be just at EOF.
79 1.1 cjs */
80 1.1 cjs pos = position(BOTTOM_PLUS_ONE);
81 1.1 cjs if (pos == NULL_POSITION || pos == ch_length())
82 1.1 cjs hit_eof++;
83 1.1 cjs }
84 1.1 cjs
85 1.1 cjs /*
86 1.1 cjs * If the screen is "squished", repaint it.
87 1.1 cjs * "Squished" means the first displayed line is not at the top
88 1.1 cjs * of the screen; this can happen when we display a short file
89 1.1 cjs * for the first time.
90 1.1 cjs */
91 1.4 christos void
92 1.1 cjs squish_check()
93 1.4 christos /*###95 [cc] conflicting types for `squish_check'%%%*/
94 1.1 cjs {
95 1.1 cjs if (squished) {
96 1.1 cjs squished = 0;
97 1.1 cjs repaint();
98 1.1 cjs }
99 1.1 cjs }
100 1.1 cjs
101 1.1 cjs /*
102 1.1 cjs * Display n lines, scrolling forward, starting at position pos in the
103 1.1 cjs * input file. "only_last" means display only the last screenful if
104 1.1 cjs * n > screen size.
105 1.1 cjs */
106 1.4 christos void
107 1.1 cjs forw(n, pos, only_last)
108 1.4 christos /*###109 [cc] conflicting types for `forw'%%%*/
109 1.4 christos int n;
110 1.1 cjs off_t pos;
111 1.1 cjs int only_last;
112 1.1 cjs {
113 1.1 cjs static int first_time = 1;
114 1.1 cjs int eof = 0, do_repaint;
115 1.1 cjs
116 1.1 cjs squish_check();
117 1.1 cjs
118 1.1 cjs /*
119 1.1 cjs * do_repaint tells us not to display anything till the end,
120 1.1 cjs * then just repaint the entire screen.
121 1.1 cjs */
122 1.1 cjs do_repaint = (only_last && n > sc_height-1);
123 1.1 cjs
124 1.1 cjs if (!do_repaint) {
125 1.1 cjs if (top_scroll && n >= sc_height - 1) {
126 1.1 cjs /*
127 1.1 cjs * Start a new screen.
128 1.1 cjs * {{ This is not really desirable if we happen
129 1.1 cjs * to hit eof in the middle of this screen,
130 1.1 cjs * but we don't yet know if that will happen. }}
131 1.1 cjs */
132 1.1 cjs clear();
133 1.1 cjs home();
134 1.1 cjs } else {
135 1.1 cjs lower_left();
136 1.1 cjs clear_eol();
137 1.1 cjs }
138 1.1 cjs
139 1.1 cjs /*
140 1.1 cjs * This is not contiguous with what is currently displayed.
141 1.1 cjs * Clear the screen image (position table) and start a new
142 1.1 cjs * screen.
143 1.1 cjs */
144 1.1 cjs if (pos != position(BOTTOM_PLUS_ONE)) {
145 1.1 cjs pos_clear();
146 1.1 cjs add_forw_pos(pos);
147 1.1 cjs if (top_scroll) {
148 1.1 cjs clear();
149 1.1 cjs home();
150 1.1 cjs } else if (!first_time)
151 1.1 cjs putstr("...skipping...\n");
152 1.1 cjs }
153 1.1 cjs }
154 1.1 cjs
155 1.1 cjs for (short_file = 0; --n >= 0;) {
156 1.1 cjs /*
157 1.1 cjs * Read the next line of input.
158 1.1 cjs */
159 1.1 cjs pos = forw_line(pos);
160 1.1 cjs if (pos == NULL_POSITION) {
161 1.1 cjs /*
162 1.1 cjs * end of file; copy the table if the file was
163 1.1 cjs * too small for an entire screen.
164 1.1 cjs */
165 1.1 cjs eof = 1;
166 1.1 cjs if (position(TOP) == NULL_POSITION) {
167 1.1 cjs copytable();
168 1.1 cjs if (!position(TOP))
169 1.1 cjs short_file = 1;
170 1.1 cjs }
171 1.1 cjs break;
172 1.1 cjs }
173 1.1 cjs /*
174 1.1 cjs * Add the position of the next line to the position table.
175 1.1 cjs * Display the current line on the screen.
176 1.1 cjs */
177 1.1 cjs add_forw_pos(pos);
178 1.1 cjs if (do_repaint)
179 1.1 cjs continue;
180 1.1 cjs /*
181 1.1 cjs * If this is the first screen displayed and we hit an early
182 1.1 cjs * EOF (i.e. before the requested number of lines), we
183 1.1 cjs * "squish" the display down at the bottom of the screen.
184 1.1 cjs */
185 1.2 cjs if (first_time && line == NULL && !top_scroll) {
186 1.1 cjs squished = 1;
187 1.1 cjs continue;
188 1.1 cjs }
189 1.1 cjs put_line();
190 1.1 cjs }
191 1.1 cjs
192 1.1 cjs if (eof && !sigs)
193 1.1 cjs hit_eof++;
194 1.1 cjs else
195 1.1 cjs eof_check();
196 1.1 cjs if (do_repaint)
197 1.1 cjs repaint();
198 1.1 cjs first_time = 0;
199 1.1 cjs (void) currline(BOTTOM);
200 1.1 cjs }
201 1.1 cjs
202 1.1 cjs /*
203 1.1 cjs * Display n lines, scrolling backward.
204 1.1 cjs */
205 1.4 christos void
206 1.1 cjs back(n, pos, only_last)
207 1.4 christos /*###207 [cc] conflicting types for `back'%%%*/
208 1.4 christos int n;
209 1.1 cjs off_t pos;
210 1.1 cjs int only_last;
211 1.1 cjs {
212 1.1 cjs int do_repaint;
213 1.1 cjs
214 1.1 cjs squish_check();
215 1.1 cjs do_repaint = (n > get_back_scroll() || (only_last && n > sc_height-1));
216 1.1 cjs hit_eof = 0;
217 1.1 cjs while (--n >= 0)
218 1.1 cjs {
219 1.1 cjs /*
220 1.1 cjs * Get the previous line of input.
221 1.1 cjs */
222 1.1 cjs pos = back_line(pos);
223 1.1 cjs if (pos == NULL_POSITION)
224 1.1 cjs break;
225 1.1 cjs /*
226 1.1 cjs * Add the position of the previous line to the position table.
227 1.1 cjs * Display the line on the screen.
228 1.1 cjs */
229 1.1 cjs add_back_pos(pos);
230 1.1 cjs if (!do_repaint)
231 1.1 cjs {
232 1.1 cjs if (retain_below)
233 1.1 cjs {
234 1.1 cjs lower_left();
235 1.1 cjs clear_eol();
236 1.1 cjs }
237 1.1 cjs home();
238 1.1 cjs add_line();
239 1.1 cjs put_line();
240 1.1 cjs }
241 1.1 cjs }
242 1.1 cjs
243 1.1 cjs eof_check();
244 1.1 cjs if (do_repaint)
245 1.1 cjs repaint();
246 1.1 cjs (void) currline(BOTTOM);
247 1.1 cjs }
248 1.1 cjs
249 1.1 cjs /*
250 1.1 cjs * Display n more lines, forward.
251 1.1 cjs * Start just after the line currently displayed at the bottom of the screen.
252 1.1 cjs */
253 1.4 christos void
254 1.1 cjs forward(n, only_last)
255 1.4 christos /*###254 [cc] conflicting types for `forward'%%%*/
256 1.1 cjs int n;
257 1.1 cjs int only_last;
258 1.1 cjs {
259 1.1 cjs off_t pos;
260 1.1 cjs
261 1.1 cjs if (hit_eof) {
262 1.1 cjs /*
263 1.1 cjs * If we're trying to go forward from end-of-file,
264 1.1 cjs * go on to the next file.
265 1.1 cjs */
266 1.1 cjs next_file(1);
267 1.1 cjs return;
268 1.1 cjs }
269 1.1 cjs
270 1.1 cjs pos = position(BOTTOM_PLUS_ONE);
271 1.1 cjs if (pos == NULL_POSITION)
272 1.1 cjs {
273 1.1 cjs hit_eof++;
274 1.1 cjs return;
275 1.1 cjs }
276 1.1 cjs forw(n, pos, only_last);
277 1.1 cjs }
278 1.1 cjs
279 1.1 cjs /*
280 1.1 cjs * Display n more lines, backward.
281 1.1 cjs * Start just before the line currently displayed at the top of the screen.
282 1.1 cjs */
283 1.4 christos void
284 1.1 cjs backward(n, only_last)
285 1.4 christos /*###283 [cc] conflicting types for `backward'%%%*/
286 1.1 cjs int n;
287 1.1 cjs int only_last;
288 1.1 cjs {
289 1.1 cjs off_t pos;
290 1.1 cjs
291 1.1 cjs pos = position(TOP);
292 1.1 cjs /*
293 1.1 cjs * This will almost never happen, because the top line is almost
294 1.1 cjs * never empty.
295 1.1 cjs */
296 1.1 cjs if (pos == NULL_POSITION)
297 1.1 cjs return;
298 1.1 cjs back(n, pos, only_last);
299 1.1 cjs }
300 1.1 cjs
301 1.1 cjs /*
302 1.1 cjs * Repaint the screen, starting from a specified position.
303 1.1 cjs */
304 1.4 christos void
305 1.1 cjs prepaint(pos)
306 1.4 christos /*###303 [cc] conflicting types for `prepaint'%%%*/
307 1.1 cjs off_t pos;
308 1.1 cjs {
309 1.1 cjs hit_eof = 0;
310 1.1 cjs forw(sc_height-1, pos, 0);
311 1.1 cjs screen_trashed = 0;
312 1.1 cjs }
313 1.1 cjs
314 1.1 cjs /*
315 1.1 cjs * Repaint the screen.
316 1.1 cjs */
317 1.4 christos void
318 1.1 cjs repaint()
319 1.4 christos /*###315 [cc] conflicting types for `repaint'%%%*/
320 1.1 cjs {
321 1.1 cjs /*
322 1.1 cjs * Start at the line currently at the top of the screen
323 1.1 cjs * and redisplay the screen.
324 1.1 cjs */
325 1.1 cjs prepaint(position(TOP));
326 1.1 cjs }
327 1.1 cjs
328 1.1 cjs /*
329 1.1 cjs * Jump to the end of the file.
330 1.1 cjs * It is more convenient to paint the screen backward,
331 1.1 cjs * from the end of the file toward the beginning.
332 1.1 cjs */
333 1.4 christos void
334 1.1 cjs jump_forw()
335 1.4 christos /*###330 [cc] conflicting types for `jump_forw'%%%*/
336 1.1 cjs {
337 1.1 cjs off_t pos;
338 1.1 cjs
339 1.1 cjs if (ch_end_seek())
340 1.1 cjs {
341 1.1 cjs error("Cannot seek to end of file");
342 1.1 cjs return;
343 1.1 cjs }
344 1.1 cjs lastmark();
345 1.1 cjs pos = ch_tell();
346 1.1 cjs clear();
347 1.1 cjs pos_clear();
348 1.1 cjs add_back_pos(pos);
349 1.1 cjs back(sc_height - 1, pos, 0);
350 1.1 cjs }
351 1.1 cjs
352 1.1 cjs /*
353 1.1 cjs * Jump to line n in the file.
354 1.1 cjs */
355 1.4 christos void
356 1.1 cjs jump_back(n)
357 1.4 christos /*###351 [cc] conflicting types for `jump_back'%%%*/
358 1.4 christos int n;
359 1.1 cjs {
360 1.4 christos int c, nlines;
361 1.1 cjs
362 1.1 cjs /*
363 1.1 cjs * This is done the slow way, by starting at the beginning
364 1.1 cjs * of the file and counting newlines.
365 1.1 cjs *
366 1.1 cjs * {{ Now that we have line numbering (in linenum.c),
367 1.1 cjs * we could improve on this by starting at the
368 1.1 cjs * nearest known line rather than at the beginning. }}
369 1.1 cjs */
370 1.1 cjs if (ch_seek((off_t)0)) {
371 1.1 cjs /*
372 1.1 cjs * Probably a pipe with beginning of file no longer buffered.
373 1.1 cjs * If he wants to go to line 1, we do the best we can,
374 1.1 cjs * by going to the first line which is still buffered.
375 1.1 cjs */
376 1.1 cjs if (n <= 1 && ch_beg_seek() == 0)
377 1.1 cjs jump_loc(ch_tell());
378 1.1 cjs error("Cannot get to beginning of file");
379 1.1 cjs return;
380 1.1 cjs }
381 1.1 cjs
382 1.1 cjs /*
383 1.1 cjs * Start counting lines.
384 1.1 cjs */
385 1.1 cjs for (nlines = 1; nlines < n; nlines++)
386 1.1 cjs while ((c = ch_forw_get()) != '\n')
387 1.1 cjs if (c == EOI) {
388 1.1 cjs char message[40];
389 1.1 cjs (void)sprintf(message, "File has only %d lines",
390 1.1 cjs nlines - 1);
391 1.1 cjs error(message);
392 1.1 cjs return;
393 1.1 cjs }
394 1.1 cjs jump_loc(ch_tell());
395 1.1 cjs }
396 1.1 cjs
397 1.1 cjs /*
398 1.1 cjs * Jump to a specified percentage into the file.
399 1.1 cjs * This is a poor compensation for not being able to
400 1.1 cjs * quickly jump to a specific line number.
401 1.1 cjs */
402 1.4 christos void
403 1.1 cjs jump_percent(percent)
404 1.4 christos /*###397 [cc] conflicting types for `jump_percent'%%%*/
405 1.1 cjs int percent;
406 1.1 cjs {
407 1.4 christos off_t pos, len;
408 1.4 christos int c;
409 1.1 cjs
410 1.1 cjs /*
411 1.1 cjs * Determine the position in the file
412 1.1 cjs * (the specified percentage of the file's length).
413 1.1 cjs */
414 1.1 cjs if ((len = ch_length()) == NULL_POSITION)
415 1.1 cjs {
416 1.1 cjs error("Don't know length of file");
417 1.1 cjs return;
418 1.1 cjs }
419 1.1 cjs pos = (percent * len) / 100;
420 1.1 cjs
421 1.1 cjs /*
422 1.1 cjs * Back up to the beginning of the line.
423 1.1 cjs */
424 1.1 cjs if (ch_seek(pos) == 0)
425 1.1 cjs {
426 1.1 cjs while ((c = ch_back_get()) != '\n' && c != EOI)
427 1.1 cjs ;
428 1.1 cjs if (c == '\n')
429 1.1 cjs (void) ch_forw_get();
430 1.1 cjs pos = ch_tell();
431 1.1 cjs }
432 1.1 cjs jump_loc(pos);
433 1.1 cjs }
434 1.1 cjs
435 1.1 cjs /*
436 1.1 cjs * Jump to a specified position in the file.
437 1.1 cjs */
438 1.4 christos void
439 1.1 cjs jump_loc(pos)
440 1.4 christos /*###432 [cc] conflicting types for `jump_loc'%%%*/
441 1.1 cjs off_t pos;
442 1.1 cjs {
443 1.4 christos int nline;
444 1.1 cjs off_t tpos;
445 1.1 cjs
446 1.1 cjs if ((nline = onscreen(pos)) >= 0) {
447 1.1 cjs /*
448 1.1 cjs * The line is currently displayed.
449 1.1 cjs * Just scroll there.
450 1.1 cjs */
451 1.1 cjs forw(nline, position(BOTTOM_PLUS_ONE), 0);
452 1.1 cjs return;
453 1.1 cjs }
454 1.1 cjs
455 1.1 cjs /*
456 1.1 cjs * Line is not on screen.
457 1.1 cjs * Seek to the desired location.
458 1.1 cjs */
459 1.1 cjs if (ch_seek(pos)) {
460 1.1 cjs error("Cannot seek to that position");
461 1.1 cjs return;
462 1.1 cjs }
463 1.1 cjs
464 1.1 cjs /*
465 1.1 cjs * See if the desired line is BEFORE the currently displayed screen.
466 1.1 cjs * If so, then move forward far enough so the line we're on will be
467 1.1 cjs * at the bottom of the screen, in order to be able to call back()
468 1.1 cjs * to make the screen scroll backwards & put the line at the top of
469 1.1 cjs * the screen.
470 1.1 cjs * {{ This seems inefficient, but it's not so bad,
471 1.1 cjs * since we can never move forward more than a
472 1.1 cjs * screenful before we stop to redraw the screen. }}
473 1.1 cjs */
474 1.1 cjs tpos = position(TOP);
475 1.1 cjs if (tpos != NULL_POSITION && pos < tpos) {
476 1.1 cjs off_t npos = pos;
477 1.1 cjs /*
478 1.1 cjs * Note that we can't forw_line() past tpos here,
479 1.1 cjs * so there should be no EOI at this stage.
480 1.1 cjs */
481 1.1 cjs for (nline = 0; npos < tpos && nline < sc_height - 1; nline++)
482 1.1 cjs npos = forw_line(npos);
483 1.1 cjs
484 1.1 cjs if (npos < tpos) {
485 1.1 cjs /*
486 1.1 cjs * More than a screenful back.
487 1.1 cjs */
488 1.1 cjs lastmark();
489 1.1 cjs clear();
490 1.1 cjs pos_clear();
491 1.1 cjs add_back_pos(npos);
492 1.1 cjs }
493 1.1 cjs
494 1.1 cjs /*
495 1.1 cjs * Note that back() will repaint() if nline > back_scroll.
496 1.1 cjs */
497 1.1 cjs back(nline, npos, 0);
498 1.1 cjs return;
499 1.1 cjs }
500 1.1 cjs /*
501 1.1 cjs * Remember where we were; clear and paint the screen.
502 1.1 cjs */
503 1.1 cjs lastmark();
504 1.1 cjs prepaint(pos);
505 1.1 cjs }
506 1.1 cjs
507 1.1 cjs /*
508 1.1 cjs * The table of marks.
509 1.1 cjs * A mark is simply a position in the file.
510 1.1 cjs */
511 1.1 cjs #define NMARKS (27) /* 26 for a-z plus one for quote */
512 1.1 cjs #define LASTMARK (NMARKS-1) /* For quote */
513 1.1 cjs static off_t marks[NMARKS];
514 1.1 cjs
515 1.1 cjs /*
516 1.1 cjs * Initialize the mark table to show no marks are set.
517 1.1 cjs */
518 1.4 christos void
519 1.1 cjs init_mark()
520 1.4 christos /*###511 [cc] conflicting types for `init_mark'%%%*/
521 1.1 cjs {
522 1.1 cjs int i;
523 1.1 cjs
524 1.1 cjs for (i = 0; i < NMARKS; i++)
525 1.1 cjs marks[i] = NULL_POSITION;
526 1.1 cjs }
527 1.1 cjs
528 1.1 cjs /*
529 1.1 cjs * See if a mark letter is valid (between a and z).
530 1.1 cjs */
531 1.4 christos static int
532 1.1 cjs badmark(c)
533 1.1 cjs int c;
534 1.1 cjs {
535 1.1 cjs if (c < 'a' || c > 'z')
536 1.1 cjs {
537 1.1 cjs error("Choose a letter between 'a' and 'z'");
538 1.1 cjs return (1);
539 1.1 cjs }
540 1.1 cjs return (0);
541 1.1 cjs }
542 1.1 cjs
543 1.1 cjs /*
544 1.1 cjs * Set a mark.
545 1.1 cjs */
546 1.4 christos void
547 1.1 cjs setmark(c)
548 1.4 christos /*###538 [cc] conflicting types for `setmark'%%%*/
549 1.1 cjs int c;
550 1.1 cjs {
551 1.1 cjs if (badmark(c))
552 1.1 cjs return;
553 1.1 cjs marks[c-'a'] = position(TOP);
554 1.1 cjs }
555 1.1 cjs
556 1.4 christos void
557 1.1 cjs lastmark()
558 1.4 christos /*###547 [cc] conflicting types for `lastmark'%%%*/
559 1.1 cjs {
560 1.1 cjs marks[LASTMARK] = position(TOP);
561 1.1 cjs }
562 1.1 cjs
563 1.1 cjs /*
564 1.1 cjs * Go to a previously set mark.
565 1.1 cjs */
566 1.4 christos void
567 1.1 cjs gomark(c)
568 1.4 christos /*###556 [cc] conflicting types for `gomark'%%%*/
569 1.1 cjs int c;
570 1.1 cjs {
571 1.1 cjs off_t pos;
572 1.1 cjs
573 1.1 cjs if (c == '\'') {
574 1.1 cjs pos = marks[LASTMARK];
575 1.1 cjs if (pos == NULL_POSITION)
576 1.1 cjs pos = 0;
577 1.1 cjs }
578 1.1 cjs else {
579 1.1 cjs if (badmark(c))
580 1.1 cjs return;
581 1.1 cjs pos = marks[c-'a'];
582 1.1 cjs if (pos == NULL_POSITION) {
583 1.1 cjs error("mark not set");
584 1.1 cjs return;
585 1.1 cjs }
586 1.1 cjs }
587 1.1 cjs jump_loc(pos);
588 1.1 cjs }
589 1.1 cjs
590 1.1 cjs /*
591 1.1 cjs * Get the backwards scroll limit.
592 1.1 cjs * Must call this function instead of just using the value of
593 1.1 cjs * back_scroll, because the default case depends on sc_height and
594 1.1 cjs * top_scroll, as well as back_scroll.
595 1.1 cjs */
596 1.4 christos int
597 1.1 cjs get_back_scroll()
598 1.1 cjs {
599 1.1 cjs if (back_scroll >= 0)
600 1.1 cjs return (back_scroll);
601 1.1 cjs if (top_scroll)
602 1.1 cjs return (sc_height - 2);
603 1.1 cjs return (sc_height - 1);
604 1.1 cjs }
605 1.1 cjs
606 1.1 cjs /*
607 1.1 cjs * Search for the n-th occurence of a specified pattern,
608 1.1 cjs * either forward or backward.
609 1.1 cjs */
610 1.4 christos int
611 1.1 cjs search(search_forward, pattern, n, wantmatch)
612 1.4 christos int search_forward;
613 1.4 christos char *pattern;
614 1.4 christos int n;
615 1.1 cjs int wantmatch;
616 1.1 cjs {
617 1.1 cjs off_t pos, linepos;
618 1.4 christos char *p;
619 1.4 christos char *q;
620 1.1 cjs int linenum;
621 1.1 cjs int linematch;
622 1.1 cjs #ifdef RECOMP
623 1.1 cjs char *re_comp();
624 1.1 cjs char *errmsg;
625 1.1 cjs #else
626 1.1 cjs #ifdef REGCMP
627 1.1 cjs char *regcmp();
628 1.1 cjs static char *cpattern = NULL;
629 1.1 cjs #else
630 1.1 cjs static char lpbuf[100];
631 1.1 cjs static char *last_pattern = NULL;
632 1.1 cjs #endif
633 1.1 cjs #endif
634 1.1 cjs
635 1.1 cjs /*
636 1.1 cjs * For a caseless search, convert any uppercase in the pattern to
637 1.1 cjs * lowercase.
638 1.1 cjs */
639 1.1 cjs if (caseless && pattern != NULL)
640 1.1 cjs for (p = pattern; *p; p++)
641 1.10 tsutsui if (isupper((unsigned char)*p))
642 1.10 tsutsui *p = tolower((unsigned char)*p);
643 1.1 cjs #ifdef RECOMP
644 1.1 cjs
645 1.1 cjs /*
646 1.1 cjs * (re_comp handles a null pattern internally,
647 1.1 cjs * so there is no need to check for a null pattern here.)
648 1.1 cjs */
649 1.1 cjs if ((errmsg = re_comp(pattern)) != NULL)
650 1.1 cjs {
651 1.1 cjs error(errmsg);
652 1.1 cjs return(0);
653 1.1 cjs }
654 1.1 cjs #else
655 1.1 cjs #ifdef REGCMP
656 1.1 cjs if (pattern == NULL || *pattern == '\0')
657 1.1 cjs {
658 1.1 cjs /*
659 1.1 cjs * A null pattern means use the previous pattern.
660 1.1 cjs * The compiled previous pattern is in cpattern, so just use it.
661 1.1 cjs */
662 1.1 cjs if (cpattern == NULL)
663 1.1 cjs {
664 1.1 cjs error("No previous regular expression");
665 1.1 cjs return(0);
666 1.1 cjs }
667 1.1 cjs } else
668 1.1 cjs {
669 1.1 cjs /*
670 1.1 cjs * Otherwise compile the given pattern.
671 1.1 cjs */
672 1.1 cjs char *s;
673 1.1 cjs if ((s = regcmp(pattern, 0)) == NULL)
674 1.1 cjs {
675 1.1 cjs error("Invalid pattern");
676 1.1 cjs return(0);
677 1.1 cjs }
678 1.1 cjs if (cpattern != NULL)
679 1.1 cjs free(cpattern);
680 1.1 cjs cpattern = s;
681 1.1 cjs }
682 1.1 cjs #else
683 1.1 cjs if (pattern == NULL || *pattern == '\0')
684 1.1 cjs {
685 1.1 cjs /*
686 1.1 cjs * Null pattern means use the previous pattern.
687 1.1 cjs */
688 1.1 cjs if (last_pattern == NULL)
689 1.1 cjs {
690 1.1 cjs error("No previous regular expression");
691 1.1 cjs return(0);
692 1.1 cjs }
693 1.1 cjs pattern = last_pattern;
694 1.1 cjs } else
695 1.1 cjs {
696 1.7 itojun (void)strlcpy(lpbuf, pattern, sizeof(lpbuf));
697 1.1 cjs last_pattern = lpbuf;
698 1.1 cjs }
699 1.1 cjs #endif
700 1.1 cjs #endif
701 1.1 cjs
702 1.1 cjs /*
703 1.1 cjs * Figure out where to start the search.
704 1.1 cjs */
705 1.1 cjs
706 1.1 cjs if (position(TOP) == NULL_POSITION) {
707 1.1 cjs /*
708 1.1 cjs * Nothing is currently displayed. Start at the beginning
709 1.1 cjs * of the file. (This case is mainly for searches from the
710 1.1 cjs * command line.
711 1.1 cjs */
712 1.1 cjs pos = (off_t)0;
713 1.1 cjs } else if (!search_forward) {
714 1.1 cjs /*
715 1.1 cjs * Backward search: start just before the top line
716 1.1 cjs * displayed on the screen.
717 1.1 cjs */
718 1.1 cjs pos = position(TOP);
719 1.1 cjs } else {
720 1.1 cjs /*
721 1.1 cjs * Start at the second screen line displayed on the screen.
722 1.1 cjs */
723 1.1 cjs pos = position(TOP_PLUS_ONE);
724 1.1 cjs }
725 1.1 cjs
726 1.1 cjs if (pos == NULL_POSITION)
727 1.1 cjs {
728 1.1 cjs /*
729 1.1 cjs * Can't find anyplace to start searching from.
730 1.1 cjs */
731 1.1 cjs error("Nothing to search");
732 1.1 cjs return(0);
733 1.1 cjs }
734 1.1 cjs
735 1.1 cjs linenum = find_linenum(pos);
736 1.1 cjs for (;;)
737 1.1 cjs {
738 1.1 cjs /*
739 1.1 cjs * Get lines until we find a matching one or
740 1.1 cjs * until we hit end-of-file (or beginning-of-file
741 1.1 cjs * if we're going backwards).
742 1.1 cjs */
743 1.1 cjs if (sigs)
744 1.1 cjs /*
745 1.1 cjs * A signal aborts the search.
746 1.1 cjs */
747 1.1 cjs return(0);
748 1.1 cjs
749 1.1 cjs if (search_forward)
750 1.1 cjs {
751 1.1 cjs /*
752 1.1 cjs * Read the next line, and save the
753 1.1 cjs * starting position of that line in linepos.
754 1.1 cjs */
755 1.1 cjs linepos = pos;
756 1.1 cjs pos = forw_raw_line(pos);
757 1.1 cjs if (linenum != 0)
758 1.1 cjs linenum++;
759 1.1 cjs } else
760 1.1 cjs {
761 1.1 cjs /*
762 1.1 cjs * Read the previous line and save the
763 1.1 cjs * starting position of that line in linepos.
764 1.1 cjs */
765 1.1 cjs pos = back_raw_line(pos);
766 1.1 cjs linepos = pos;
767 1.1 cjs if (linenum != 0)
768 1.1 cjs linenum--;
769 1.1 cjs }
770 1.1 cjs
771 1.1 cjs if (pos == NULL_POSITION)
772 1.1 cjs {
773 1.1 cjs /*
774 1.1 cjs * We hit EOF/BOF without a match.
775 1.1 cjs */
776 1.1 cjs error("Pattern not found");
777 1.1 cjs return(0);
778 1.1 cjs }
779 1.1 cjs
780 1.1 cjs /*
781 1.1 cjs * If we're using line numbers, we might as well
782 1.1 cjs * remember the information we have now (the position
783 1.1 cjs * and line number of the current line).
784 1.1 cjs */
785 1.1 cjs if (linenums)
786 1.1 cjs add_lnum(linenum, pos);
787 1.1 cjs
788 1.1 cjs /*
789 1.1 cjs * If this is a caseless search, convert uppercase in the
790 1.1 cjs * input line to lowercase.
791 1.1 cjs */
792 1.1 cjs if (caseless)
793 1.1 cjs for (p = q = line; *p; p++, q++)
794 1.10 tsutsui *q = isupper((unsigned char)*p) ?
795 1.10 tsutsui tolower((unsigned char)*p) : *p;
796 1.1 cjs
797 1.1 cjs /*
798 1.6 wiz * Remove any backspaces along with the preceding char.
799 1.1 cjs * This allows us to match text which is underlined or
800 1.1 cjs * overstruck.
801 1.1 cjs */
802 1.1 cjs for (p = q = line; *p; p++, q++)
803 1.1 cjs if (q > line && *p == '\b')
804 1.6 wiz /* Delete BS and preceding char. */
805 1.1 cjs q -= 2;
806 1.1 cjs else
807 1.1 cjs /* Otherwise, just copy. */
808 1.1 cjs *q = *p;
809 1.1 cjs
810 1.1 cjs /*
811 1.1 cjs * Test the next line to see if we have a match.
812 1.1 cjs * This is done in a variety of ways, depending
813 1.1 cjs * on what pattern matching functions are available.
814 1.1 cjs */
815 1.1 cjs #ifdef REGCMP
816 1.1 cjs linematch = (regex(cpattern, line) != NULL);
817 1.1 cjs #else
818 1.1 cjs #ifdef RECOMP
819 1.1 cjs linematch = (re_exec(line) == 1);
820 1.1 cjs #else
821 1.1 cjs linematch = match(pattern, line);
822 1.1 cjs #endif
823 1.1 cjs #endif
824 1.1 cjs /*
825 1.1 cjs * We are successful if wantmatch and linematch are
826 1.1 cjs * both true (want a match and got it),
827 1.1 cjs * or both false (want a non-match and got it).
828 1.1 cjs */
829 1.1 cjs if (((wantmatch && linematch) || (!wantmatch && !linematch)) &&
830 1.1 cjs --n <= 0)
831 1.1 cjs /*
832 1.1 cjs * Found the line.
833 1.1 cjs */
834 1.1 cjs break;
835 1.1 cjs }
836 1.1 cjs jump_loc(linepos);
837 1.1 cjs return(1);
838 1.1 cjs }
839 1.1 cjs
840 1.1 cjs #if !defined(REGCMP) && !defined(RECOMP)
841 1.1 cjs /*
842 1.1 cjs * We have neither regcmp() nor re_comp().
843 1.1 cjs * We use this function to do simple pattern matching.
844 1.1 cjs * It supports no metacharacters like *, etc.
845 1.1 cjs */
846 1.4 christos static int
847 1.1 cjs match(pattern, buf)
848 1.1 cjs char *pattern, *buf;
849 1.1 cjs {
850 1.4 christos char *pp, *lp;
851 1.1 cjs
852 1.1 cjs for ( ; *buf != '\0'; buf++)
853 1.1 cjs {
854 1.1 cjs for (pp = pattern, lp = buf; *pp == *lp; pp++, lp++)
855 1.1 cjs if (*pp == '\0' || *lp == '\0')
856 1.1 cjs break;
857 1.1 cjs if (*pp == '\0')
858 1.1 cjs return (1);
859 1.1 cjs }
860 1.1 cjs return (0);
861 1.1 cjs }
862 1.1 cjs #endif
863