refresh.c revision 1.10 1 1.10 perry /* $NetBSD: refresh.c,v 1.10 1998/02/03 19:12:32 perry Exp $ */
2 1.8 mikel
3 1.1 cgd /*
4 1.7 cgd * Copyright (c) 1981, 1993, 1994
5 1.5 cgd * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * Redistribution and use in source and binary forms, with or without
8 1.1 cgd * modification, are permitted provided that the following conditions
9 1.1 cgd * are met:
10 1.1 cgd * 1. Redistributions of source code must retain the above copyright
11 1.1 cgd * notice, this list of conditions and the following disclaimer.
12 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 cgd * notice, this list of conditions and the following disclaimer in the
14 1.1 cgd * documentation and/or other materials provided with the distribution.
15 1.1 cgd * 3. All advertising materials mentioning features or use of this software
16 1.1 cgd * must display the following acknowledgement:
17 1.1 cgd * This product includes software developed by the University of
18 1.1 cgd * California, Berkeley and its contributors.
19 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
20 1.1 cgd * may be used to endorse or promote products derived from this software
21 1.1 cgd * without specific prior written permission.
22 1.1 cgd *
23 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 cgd * SUCH DAMAGE.
34 1.1 cgd */
35 1.1 cgd
36 1.8 mikel #include <sys/cdefs.h>
37 1.1 cgd #ifndef lint
38 1.8 mikel #if 0
39 1.7 cgd static char sccsid[] = "@(#)refresh.c 8.7 (Berkeley) 8/13/94";
40 1.8 mikel #else
41 1.10 perry __RCSID("$NetBSD: refresh.c,v 1.10 1998/02/03 19:12:32 perry Exp $");
42 1.8 mikel #endif
43 1.1 cgd #endif /* not lint */
44 1.1 cgd
45 1.4 mycroft #include <string.h>
46 1.1 cgd
47 1.7 cgd #include "curses.h"
48 1.7 cgd
49 1.4 mycroft static int curwin;
50 1.4 mycroft static short ly, lx;
51 1.1 cgd
52 1.4 mycroft static void domvcur __P((int, int, int, int));
53 1.4 mycroft static int makech __P((WINDOW *, int));
54 1.7 cgd static void quickch __P((WINDOW *));
55 1.5 cgd static void scrolln __P((WINDOW *, int, int, int, int, int));
56 1.1 cgd
57 1.4 mycroft /*
58 1.4 mycroft * wrefresh --
59 1.4 mycroft * Make the current screen look like "win" over the area coverd by
60 1.4 mycroft * win.
61 1.4 mycroft */
62 1.4 mycroft int
63 1.1 cgd wrefresh(win)
64 1.10 perry WINDOW *win;
65 1.1 cgd {
66 1.10 perry __LINE *wlp;
67 1.10 perry int retval;
68 1.10 perry short wy;
69 1.5 cgd int dnum;
70 1.9 phil
71 1.9 phil /* Check if we need to restart ... */
72 1.9 phil if (__endwin) {
73 1.9 phil __endwin = 0;
74 1.9 phil __restartwin();
75 1.9 phil }
76 1.7 cgd
77 1.4 mycroft /* Initialize loop parameters. */
78 1.5 cgd ly = curscr->cury;
79 1.5 cgd lx = curscr->curx;
80 1.1 cgd wy = 0;
81 1.1 cgd curwin = (win == curscr);
82 1.1 cgd
83 1.5 cgd if (!curwin)
84 1.5 cgd for (wy = 0; wy < win->maxy; wy++) {
85 1.5 cgd wlp = win->lines[wy];
86 1.5 cgd if (wlp->flags & __ISDIRTY)
87 1.7 cgd wlp->hash = __hash((char *)wlp->line,
88 1.7 cgd win->maxx * __LDATASIZE);
89 1.5 cgd }
90 1.5 cgd
91 1.5 cgd if (win->flags & __CLEAROK || curscr->flags & __CLEAROK || curwin) {
92 1.5 cgd if ((win->flags & __FULLWIN) || curscr->flags & __CLEAROK) {
93 1.4 mycroft tputs(CL, 0, __cputchar);
94 1.1 cgd ly = 0;
95 1.1 cgd lx = 0;
96 1.1 cgd if (!curwin) {
97 1.5 cgd curscr->flags &= ~__CLEAROK;
98 1.5 cgd curscr->cury = 0;
99 1.5 cgd curscr->curx = 0;
100 1.1 cgd werase(curscr);
101 1.1 cgd }
102 1.5 cgd __touchwin(win);
103 1.1 cgd }
104 1.5 cgd win->flags &= ~__CLEAROK;
105 1.1 cgd }
106 1.1 cgd if (!CA) {
107 1.5 cgd if (win->curx != 0)
108 1.4 mycroft putchar('\n');
109 1.1 cgd if (!curwin)
110 1.1 cgd werase(curscr);
111 1.1 cgd }
112 1.4 mycroft #ifdef DEBUG
113 1.5 cgd __CTRACE("wrefresh: (%0.2o): curwin = %d\n", win, curwin);
114 1.5 cgd __CTRACE("wrefresh: \tfirstch\tlastch\n");
115 1.5 cgd #endif
116 1.5 cgd
117 1.5 cgd #ifndef NOQCH
118 1.5 cgd if ((win->flags & __FULLWIN) && !curwin) {
119 1.5 cgd /*
120 1.5 cgd * Invoke quickch() only if more than a quarter of the lines
121 1.5 cgd * in the window are dirty.
122 1.5 cgd */
123 1.5 cgd for (wy = 0, dnum = 0; wy < win->maxy; wy++)
124 1.5 cgd if (win->lines[wy]->flags & (__ISDIRTY | __FORCEPAINT))
125 1.5 cgd dnum++;
126 1.5 cgd if (!__noqch && dnum > (int) win->maxy / 4)
127 1.5 cgd quickch(win);
128 1.5 cgd }
129 1.4 mycroft #endif
130 1.5 cgd
131 1.5 cgd #ifdef DEBUG
132 1.5 cgd { int i, j;
133 1.5 cgd __CTRACE("#####################################\n");
134 1.5 cgd for (i = 0; i < curscr->maxy; i++) {
135 1.5 cgd __CTRACE("C: %d:", i);
136 1.5 cgd __CTRACE(" 0x%x \n", curscr->lines[i]->hash);
137 1.7 cgd for (j = 0; j < curscr->maxx; j++)
138 1.7 cgd __CTRACE("%c",
139 1.5 cgd curscr->lines[i]->line[j].ch);
140 1.5 cgd __CTRACE("\n");
141 1.7 cgd for (j = 0; j < curscr->maxx; j++)
142 1.7 cgd __CTRACE("%x",
143 1.5 cgd curscr->lines[i]->line[j].attr);
144 1.5 cgd __CTRACE("\n");
145 1.5 cgd __CTRACE("W: %d:", i);
146 1.5 cgd __CTRACE(" 0x%x \n", win->lines[i]->hash);
147 1.5 cgd __CTRACE(" 0x%x ", win->lines[i]->flags);
148 1.7 cgd for (j = 0; j < win->maxx; j++)
149 1.7 cgd __CTRACE("%c",
150 1.5 cgd win->lines[i]->line[j].ch);
151 1.5 cgd __CTRACE("\n");
152 1.7 cgd for (j = 0; j < win->maxx; j++)
153 1.7 cgd __CTRACE("%x",
154 1.5 cgd win->lines[i]->line[j].attr);
155 1.5 cgd __CTRACE("\n");
156 1.5 cgd }
157 1.5 cgd }
158 1.5 cgd #endif /* DEBUG */
159 1.5 cgd
160 1.5 cgd for (wy = 0; wy < win->maxy; wy++) {
161 1.4 mycroft #ifdef DEBUG
162 1.5 cgd __CTRACE("%d\t%d\t%d\n",
163 1.5 cgd wy, *win->lines[wy]->firstchp, *win->lines[wy]->lastchp);
164 1.4 mycroft #endif
165 1.5 cgd if (!curwin)
166 1.5 cgd curscr->lines[wy]->hash = win->lines[wy]->hash;
167 1.5 cgd if (win->lines[wy]->flags & (__ISDIRTY | __FORCEPAINT)) {
168 1.1 cgd if (makech(win, wy) == ERR)
169 1.4 mycroft return (ERR);
170 1.1 cgd else {
171 1.5 cgd if (*win->lines[wy]->firstchp >= win->ch_off)
172 1.5 cgd *win->lines[wy]->firstchp = win->maxx +
173 1.5 cgd win->ch_off;
174 1.5 cgd if (*win->lines[wy]->lastchp < win->maxx +
175 1.5 cgd win->ch_off)
176 1.5 cgd *win->lines[wy]->lastchp = win->ch_off;
177 1.7 cgd if (*win->lines[wy]->lastchp <
178 1.5 cgd *win->lines[wy]->firstchp) {
179 1.5 cgd #ifdef DEBUG
180 1.5 cgd __CTRACE("wrefresh: line %d notdirty \n", wy);
181 1.5 cgd #endif
182 1.5 cgd win->lines[wy]->flags &= ~__ISDIRTY;
183 1.5 cgd }
184 1.1 cgd }
185 1.5 cgd
186 1.5 cgd }
187 1.4 mycroft #ifdef DEBUG
188 1.7 cgd __CTRACE("\t%d\t%d\n", *win->lines[wy]->firstchp,
189 1.5 cgd *win->lines[wy]->lastchp);
190 1.4 mycroft #endif
191 1.1 cgd }
192 1.7 cgd
193 1.5 cgd #ifdef DEBUG
194 1.5 cgd __CTRACE("refresh: ly=%d, lx=%d\n", ly, lx);
195 1.5 cgd #endif
196 1.1 cgd
197 1.1 cgd if (win == curscr)
198 1.5 cgd domvcur(ly, lx, win->cury, win->curx);
199 1.1 cgd else {
200 1.5 cgd if (win->flags & __LEAVEOK) {
201 1.5 cgd curscr->cury = ly;
202 1.5 cgd curscr->curx = lx;
203 1.5 cgd ly -= win->begy;
204 1.5 cgd lx -= win->begx;
205 1.5 cgd if (ly >= 0 && ly < win->maxy && lx >= 0 &&
206 1.5 cgd lx < win->maxx) {
207 1.5 cgd win->cury = ly;
208 1.5 cgd win->curx = lx;
209 1.4 mycroft } else
210 1.5 cgd win->cury = win->curx = 0;
211 1.4 mycroft } else {
212 1.5 cgd domvcur(ly, lx, win->cury + win->begy,
213 1.5 cgd win->curx + win->begx);
214 1.5 cgd curscr->cury = win->cury + win->begy;
215 1.5 cgd curscr->curx = win->curx + win->begx;
216 1.1 cgd }
217 1.1 cgd }
218 1.1 cgd retval = OK;
219 1.4 mycroft
220 1.4 mycroft (void)fflush(stdout);
221 1.4 mycroft return (retval);
222 1.1 cgd }
223 1.1 cgd
224 1.1 cgd /*
225 1.4 mycroft * makech --
226 1.4 mycroft * Make a change on the screen.
227 1.1 cgd */
228 1.4 mycroft static int
229 1.1 cgd makech(win, wy)
230 1.10 perry WINDOW *win;
231 1.4 mycroft int wy;
232 1.1 cgd {
233 1.5 cgd static __LDATA blank = {' ', 0};
234 1.7 cgd __LDATA *nsp, *csp, *cp, *cep;
235 1.5 cgd u_int force;
236 1.7 cgd int clsp, nlsp; /* Last space in lines. */
237 1.7 cgd int lch, wx, y;
238 1.5 cgd char *ce;
239 1.5 cgd
240 1.8 mikel #ifdef __GNUC__
241 1.8 mikel nlsp = 0; /* XXX gcc -Wuninitialized */
242 1.8 mikel #endif
243 1.5 cgd /* Is the cursor still on the end of the last line? */
244 1.5 cgd if (wy > 0 && win->lines[wy - 1]->flags & __ISPASTEOL) {
245 1.5 cgd domvcur(ly, lx, ly + 1, 0);
246 1.5 cgd ly++;
247 1.5 cgd lx = 0;
248 1.5 cgd }
249 1.5 cgd wx = *win->lines[wy]->firstchp - win->ch_off;
250 1.5 cgd if (wx < 0)
251 1.5 cgd wx = 0;
252 1.5 cgd else if (wx >= win->maxx)
253 1.4 mycroft return (OK);
254 1.5 cgd lch = *win->lines[wy]->lastchp - win->ch_off;
255 1.1 cgd if (lch < 0)
256 1.4 mycroft return (OK);
257 1.5 cgd else if (lch >= (int) win->maxx)
258 1.5 cgd lch = win->maxx - 1;
259 1.5 cgd y = wy + win->begy;
260 1.1 cgd
261 1.1 cgd if (curwin)
262 1.5 cgd csp = ␣
263 1.1 cgd else
264 1.5 cgd csp = &curscr->lines[wy + win->begy]->line[wx + win->begx];
265 1.1 cgd
266 1.5 cgd nsp = &win->lines[wy]->line[wx];
267 1.5 cgd force = win->lines[wy]->flags & __FORCEPAINT;
268 1.5 cgd win->lines[wy]->flags &= ~__FORCEPAINT;
269 1.1 cgd if (CE && !curwin) {
270 1.7 cgd for (cp = &win->lines[wy]->line[win->maxx - 1];
271 1.5 cgd cp->ch == ' ' && cp->attr == 0; cp--)
272 1.5 cgd if (cp <= win->lines[wy]->line)
273 1.1 cgd break;
274 1.5 cgd nlsp = cp - win->lines[wy]->line;
275 1.1 cgd }
276 1.1 cgd if (!curwin)
277 1.4 mycroft ce = CE;
278 1.1 cgd else
279 1.4 mycroft ce = NULL;
280 1.1 cgd
281 1.5 cgd if (force) {
282 1.5 cgd if (CM)
283 1.5 cgd tputs(tgoto(CM, lx, ly), 0, __cputchar);
284 1.5 cgd else {
285 1.5 cgd tputs(HO, 0, __cputchar);
286 1.5 cgd __mvcur(0, 0, ly, lx, 1);
287 1.5 cgd }
288 1.5 cgd }
289 1.7 cgd
290 1.1 cgd while (wx <= lch) {
291 1.5 cgd if (!force && memcmp(nsp, csp, sizeof(__LDATA)) == 0) {
292 1.4 mycroft if (wx <= lch) {
293 1.5 cgd while (wx <= lch &&
294 1.7 cgd memcmp(nsp, csp, sizeof(__LDATA)) == 0) {
295 1.7 cgd nsp++;
296 1.7 cgd if (!curwin)
297 1.7 cgd ++csp;
298 1.7 cgd ++wx;
299 1.7 cgd }
300 1.4 mycroft continue;
301 1.4 mycroft }
302 1.4 mycroft break;
303 1.4 mycroft }
304 1.5 cgd domvcur(ly, lx, y, wx + win->begx);
305 1.5 cgd
306 1.4 mycroft #ifdef DEBUG
307 1.7 cgd __CTRACE("makech: 1: wx = %d, ly= %d, lx = %d, newy = %d, newx = %d, force =%d\n",
308 1.5 cgd wx, ly, lx, y, wx + win->begx, force);
309 1.4 mycroft #endif
310 1.4 mycroft ly = y;
311 1.5 cgd lx = wx + win->begx;
312 1.7 cgd while ((force || memcmp(nsp, csp, sizeof(__LDATA)) != 0)
313 1.5 cgd && wx <= lch) {
314 1.5 cgd
315 1.7 cgd if (ce != NULL &&
316 1.7 cgd win->maxx + win->begx == curscr->maxx &&
317 1.7 cgd wx >= nlsp && nsp->ch == ' ' && nsp->attr == 0) {
318 1.4 mycroft /* Check for clear to end-of-line. */
319 1.5 cgd cep = &curscr->lines[wy]->line[win->maxx - 1];
320 1.5 cgd while (cep->ch == ' ' && cep->attr == 0)
321 1.5 cgd if (cep-- <= csp)
322 1.4 mycroft break;
323 1.7 cgd clsp = cep - curscr->lines[wy]->line -
324 1.5 cgd win->begx * __LDATASIZE;
325 1.4 mycroft #ifdef DEBUG
326 1.5 cgd __CTRACE("makech: clsp = %d, nlsp = %d\n", clsp, nlsp);
327 1.4 mycroft #endif
328 1.7 cgd if ((clsp - nlsp >= strlen(CE)
329 1.5 cgd && clsp < win->maxx * __LDATASIZE) ||
330 1.5 cgd wy == win->maxy - 1) {
331 1.7 cgd if (curscr->flags & __WSTANDOUT) {
332 1.7 cgd tputs(SE, 0, __cputchar);
333 1.7 cgd curscr->flags &= ~__WSTANDOUT;
334 1.7 cgd }
335 1.4 mycroft tputs(CE, 0, __cputchar);
336 1.5 cgd lx = wx + win->begx;
337 1.5 cgd while (wx++ <= clsp) {
338 1.5 cgd csp->ch = ' ';
339 1.5 cgd csp->attr = 0;
340 1.5 cgd csp++;
341 1.5 cgd }
342 1.4 mycroft return (OK);
343 1.1 cgd }
344 1.4 mycroft ce = NULL;
345 1.4 mycroft }
346 1.4 mycroft
347 1.7 cgd /*
348 1.7 cgd * Enter/exit standout mode as appropriate.
349 1.7 cgd * XXX
350 1.7 cgd * Should use UC if SO/SE not available.
351 1.7 cgd */
352 1.7 cgd if (nsp->attr & __STANDOUT) {
353 1.7 cgd if (!(curscr->flags & __WSTANDOUT) &&
354 1.7 cgd SO != NULL && SE != NULL) {
355 1.4 mycroft tputs(SO, 0, __cputchar);
356 1.5 cgd curscr->flags |= __WSTANDOUT;
357 1.7 cgd }
358 1.7 cgd } else
359 1.7 cgd if (curscr->flags & __WSTANDOUT &&
360 1.7 cgd SE != NULL) {
361 1.4 mycroft tputs(SE, 0, __cputchar);
362 1.5 cgd curscr->flags &= ~__WSTANDOUT;
363 1.1 cgd }
364 1.4 mycroft
365 1.4 mycroft wx++;
366 1.5 cgd if (wx >= win->maxx && wy == win->maxy - 1 && !curwin)
367 1.5 cgd if (win->flags & __SCROLLOK) {
368 1.5 cgd if (curscr->flags & __WSTANDOUT
369 1.5 cgd && win->flags & __ENDLINE)
370 1.4 mycroft if (!MS) {
371 1.4 mycroft tputs(SE, 0,
372 1.4 mycroft __cputchar);
373 1.5 cgd curscr->flags &=
374 1.5 cgd ~__WSTANDOUT;
375 1.4 mycroft }
376 1.5 cgd if (!(win->flags & __SCROLLWIN)) {
377 1.5 cgd if (!curwin) {
378 1.5 cgd csp->attr = nsp->attr;
379 1.5 cgd putchar(csp->ch = nsp->ch);
380 1.5 cgd } else
381 1.5 cgd putchar(nsp->ch);
382 1.5 cgd }
383 1.5 cgd if (wx + win->begx < curscr->maxx) {
384 1.7 cgd domvcur(ly, wx + win->begx,
385 1.5 cgd win->begy + win->maxy - 1,
386 1.5 cgd win->begx + win->maxx - 1);
387 1.5 cgd }
388 1.5 cgd ly = win->begy + win->maxy - 1;
389 1.5 cgd lx = win->begx + win->maxx - 1;
390 1.4 mycroft return (OK);
391 1.7 cgd }
392 1.7 cgd if (wx < win->maxx || wy < win->maxy - 1 ||
393 1.5 cgd !(win->flags & __SCROLLWIN)) {
394 1.5 cgd if (!curwin) {
395 1.5 cgd csp->attr = nsp->attr;
396 1.5 cgd putchar(csp->ch = nsp->ch);
397 1.5 cgd csp++;
398 1.7 cgd } else
399 1.5 cgd putchar(nsp->ch);
400 1.5 cgd }
401 1.4 mycroft #ifdef DEBUG
402 1.5 cgd __CTRACE("makech: putchar(%c)\n", nsp->ch & 0177);
403 1.4 mycroft #endif
404 1.5 cgd if (UC && (nsp->attr & __STANDOUT)) {
405 1.4 mycroft putchar('\b');
406 1.4 mycroft tputs(UC, 0, __cputchar);
407 1.1 cgd }
408 1.4 mycroft nsp++;
409 1.4 mycroft #ifdef DEBUG
410 1.5 cgd __CTRACE("makech: 2: wx = %d, lx = %d\n", wx, lx);
411 1.4 mycroft #endif
412 1.5 cgd }
413 1.5 cgd if (lx == wx + win->begx) /* If no change. */
414 1.4 mycroft break;
415 1.5 cgd lx = wx + win->begx;
416 1.5 cgd if (lx >= COLS && AM)
417 1.5 cgd lx = COLS - 1;
418 1.5 cgd else if (wx >= win->maxx) {
419 1.5 cgd domvcur(ly, lx, ly, win->maxx + win->begx - 1);
420 1.5 cgd lx = win->maxx + win->begx - 1;
421 1.1 cgd }
422 1.5 cgd
423 1.4 mycroft #ifdef DEBUG
424 1.5 cgd __CTRACE("makech: 3: wx = %d, lx = %d\n", wx, lx);
425 1.4 mycroft #endif
426 1.1 cgd }
427 1.7 cgd
428 1.7 cgd /* Don't leave the screen in standout mode. */
429 1.7 cgd if (curscr->flags & __WSTANDOUT) {
430 1.7 cgd tputs(SE, 0, __cputchar);
431 1.7 cgd curscr->flags &= ~__WSTANDOUT;
432 1.7 cgd }
433 1.4 mycroft return (OK);
434 1.1 cgd }
435 1.1 cgd
436 1.1 cgd /*
437 1.4 mycroft * domvcur --
438 1.4 mycroft * Do a mvcur, leaving standout mode if necessary.
439 1.1 cgd */
440 1.4 mycroft static void
441 1.1 cgd domvcur(oy, ox, ny, nx)
442 1.4 mycroft int oy, ox, ny, nx;
443 1.4 mycroft {
444 1.5 cgd if (curscr->flags & __WSTANDOUT && !MS) {
445 1.4 mycroft tputs(SE, 0, __cputchar);
446 1.5 cgd curscr->flags &= ~__WSTANDOUT;
447 1.5 cgd }
448 1.5 cgd
449 1.5 cgd __mvcur(oy, ox, ny, nx, 1);
450 1.5 cgd }
451 1.5 cgd
452 1.5 cgd /*
453 1.5 cgd * Quickch() attempts to detect a pattern in the change of the window
454 1.7 cgd * in order to optimize the change, e.g., scroll n lines as opposed to
455 1.5 cgd * repainting the screen line by line.
456 1.5 cgd */
457 1.5 cgd
458 1.5 cgd static void
459 1.5 cgd quickch(win)
460 1.5 cgd WINDOW *win;
461 1.5 cgd {
462 1.5 cgd #define THRESH (int) win->maxy / 4
463 1.5 cgd
464 1.10 perry __LINE *clp, *tmp1, *tmp2;
465 1.10 perry int bsize, curs, curw, starts, startw, i, j;
466 1.5 cgd int n, target, cur_period, bot, top, sc_region;
467 1.5 cgd __LDATA buf[1024];
468 1.5 cgd u_int blank_hash;
469 1.5 cgd
470 1.8 mikel #ifdef __GNUC__
471 1.8 mikel curs = curw = starts = startw = 0; /* XXX gcc -Wuninitialized */
472 1.8 mikel #endif
473 1.7 cgd /*
474 1.5 cgd * Find how many lines from the top of the screen are unchanged.
475 1.5 cgd */
476 1.7 cgd for (top = 0; top < win->maxy; top++)
477 1.5 cgd if (win->lines[top]->flags & __FORCEPAINT ||
478 1.7 cgd win->lines[top]->hash != curscr->lines[top]->hash
479 1.7 cgd || memcmp(win->lines[top]->line,
480 1.7 cgd curscr->lines[top]->line,
481 1.5 cgd win->maxx * __LDATASIZE) != 0)
482 1.5 cgd break;
483 1.5 cgd else
484 1.5 cgd win->lines[top]->flags &= ~__ISDIRTY;
485 1.5 cgd /*
486 1.7 cgd * Find how many lines from bottom of screen are unchanged.
487 1.5 cgd */
488 1.5 cgd for (bot = win->maxy - 1; bot >= 0; bot--)
489 1.5 cgd if (win->lines[bot]->flags & __FORCEPAINT ||
490 1.7 cgd win->lines[bot]->hash != curscr->lines[bot]->hash
491 1.7 cgd || memcmp(win->lines[bot]->line,
492 1.7 cgd curscr->lines[bot]->line,
493 1.5 cgd win->maxx * __LDATASIZE) != 0)
494 1.5 cgd break;
495 1.5 cgd else
496 1.5 cgd win->lines[bot]->flags &= ~__ISDIRTY;
497 1.5 cgd
498 1.5 cgd #ifdef NO_JERKINESS
499 1.5 cgd /*
500 1.5 cgd * If we have a bottom unchanged region return. Scrolling the
501 1.5 cgd * bottom region up and then back down causes a screen jitter.
502 1.5 cgd * This will increase the number of characters sent to the screen
503 1.5 cgd * but it looks better.
504 1.5 cgd */
505 1.5 cgd if (bot < win->maxy - 1)
506 1.5 cgd return;
507 1.5 cgd #endif /* NO_JERKINESS */
508 1.5 cgd
509 1.5 cgd /*
510 1.5 cgd * Search for the largest block of text not changed.
511 1.5 cgd * Invariants of the loop:
512 1.5 cgd * - Startw is the index of the beginning of the examined block in win.
513 1.7 cgd * - Starts is the index of the beginning of the examined block in
514 1.5 cgd * curscr.
515 1.5 cgd * - Curs is the index of one past the end of the exmined block in win.
516 1.7 cgd * - Curw is the index of one past the end of the exmined block in
517 1.5 cgd * curscr.
518 1.5 cgd * - bsize is the current size of the examined block.
519 1.5 cgd */
520 1.5 cgd for (bsize = bot - top; bsize >= THRESH; bsize--) {
521 1.5 cgd for (startw = top; startw <= bot - bsize; startw++)
522 1.7 cgd for (starts = top; starts <= bot - bsize;
523 1.5 cgd starts++) {
524 1.5 cgd for (curw = startw, curs = starts;
525 1.5 cgd curs < starts + bsize; curw++, curs++)
526 1.5 cgd if (win->lines[curw]->flags &
527 1.5 cgd __FORCEPAINT ||
528 1.5 cgd (win->lines[curw]->hash !=
529 1.5 cgd curscr->lines[curs]->hash ||
530 1.7 cgd memcmp(win->lines[curw]->line,
531 1.7 cgd curscr->lines[curs]->line,
532 1.5 cgd win->maxx * __LDATASIZE) != 0))
533 1.5 cgd break;
534 1.5 cgd if (curs == starts + bsize)
535 1.5 cgd goto done;
536 1.5 cgd }
537 1.5 cgd }
538 1.5 cgd done:
539 1.5 cgd /* Did not find anything */
540 1.7 cgd if (bsize < THRESH)
541 1.5 cgd return;
542 1.5 cgd
543 1.5 cgd #ifdef DEBUG
544 1.7 cgd __CTRACE("quickch:bsize=%d,starts=%d,startw=%d,curw=%d,curs=%d,top=%d,bot=%d\n",
545 1.5 cgd bsize, starts, startw, curw, curs, top, bot);
546 1.5 cgd #endif
547 1.5 cgd
548 1.7 cgd /*
549 1.7 cgd * Make sure that there is no overlap between the bottom and top
550 1.5 cgd * regions and the middle scrolled block.
551 1.5 cgd */
552 1.5 cgd if (bot < curs)
553 1.5 cgd bot = curs - 1;
554 1.5 cgd if (top > starts)
555 1.5 cgd top = starts;
556 1.5 cgd
557 1.5 cgd n = startw - starts;
558 1.5 cgd
559 1.5 cgd #ifdef DEBUG
560 1.5 cgd __CTRACE("#####################################\n");
561 1.5 cgd for (i = 0; i < curscr->maxy; i++) {
562 1.5 cgd __CTRACE("C: %d:", i);
563 1.5 cgd __CTRACE(" 0x%x \n", curscr->lines[i]->hash);
564 1.7 cgd for (j = 0; j < curscr->maxx; j++)
565 1.7 cgd __CTRACE("%c",
566 1.5 cgd curscr->lines[i]->line[j].ch);
567 1.5 cgd __CTRACE("\n");
568 1.7 cgd for (j = 0; j < curscr->maxx; j++)
569 1.7 cgd __CTRACE("%x",
570 1.5 cgd curscr->lines[i]->line[j].attr);
571 1.5 cgd __CTRACE("\n");
572 1.5 cgd __CTRACE("W: %d:", i);
573 1.5 cgd __CTRACE(" 0x%x \n", win->lines[i]->hash);
574 1.5 cgd __CTRACE(" 0x%x ", win->lines[i]->flags);
575 1.7 cgd for (j = 0; j < win->maxx; j++)
576 1.7 cgd __CTRACE("%c",
577 1.5 cgd win->lines[i]->line[j].ch);
578 1.5 cgd __CTRACE("\n");
579 1.7 cgd for (j = 0; j < win->maxx; j++)
580 1.7 cgd __CTRACE("%x",
581 1.5 cgd win->lines[i]->line[j].attr);
582 1.5 cgd __CTRACE("\n");
583 1.5 cgd }
584 1.7 cgd #endif
585 1.7 cgd
586 1.5 cgd /* So we don't have to call __hash() each time */
587 1.5 cgd for (i = 0; i < win->maxx; i++) {
588 1.5 cgd buf[i].ch = ' ';
589 1.5 cgd buf[i].attr = 0;
590 1.5 cgd }
591 1.5 cgd blank_hash = __hash((char *) buf, win->maxx * __LDATASIZE);
592 1.5 cgd
593 1.5 cgd /*
594 1.5 cgd * Perform the rotation to maintain the consistency of curscr.
595 1.5 cgd * This is hairy since we are doing an *in place* rotation.
596 1.5 cgd * Invariants of the loop:
597 1.5 cgd * - I is the index of the current line.
598 1.5 cgd * - Target is the index of the target of line i.
599 1.5 cgd * - Tmp1 points to current line (i).
600 1.5 cgd * - Tmp2 and points to target line (target);
601 1.7 cgd * - Cur_period is the index of the end of the current period.
602 1.5 cgd * (see below).
603 1.5 cgd *
604 1.5 cgd * There are 2 major issues here that make this rotation non-trivial:
605 1.5 cgd * 1. Scrolling in a scrolling region bounded by the top
606 1.5 cgd * and bottom regions determined (whose size is sc_region).
607 1.7 cgd * 2. As a result of the use of the mod function, there may be a
608 1.5 cgd * period introduced, i.e., 2 maps to 4, 4 to 6, n-2 to 0, and
609 1.5 cgd * 0 to 2, which then causes all odd lines not to be rotated.
610 1.7 cgd * To remedy this, an index of the end ( = beginning) of the
611 1.7 cgd * current 'period' is kept, cur_period, and when it is reached,
612 1.7 cgd * the next period is started from cur_period + 1 which is
613 1.5 cgd * guaranteed not to have been reached since that would mean that
614 1.5 cgd * all records would have been reached. (think about it...).
615 1.7 cgd *
616 1.5 cgd * Lines in the rotation can have 3 attributes which are marked on the
617 1.5 cgd * line so that curscr is consistent with the visual screen.
618 1.5 cgd * 1. Not dirty -- lines inside the scrolled block, top region or
619 1.5 cgd * bottom region.
620 1.7 cgd * 2. Blank lines -- lines in the differential of the scrolling
621 1.7 cgd * region adjacent to top and bot regions
622 1.5 cgd * depending on scrolling direction.
623 1.5 cgd * 3. Dirty line -- all other lines are marked dirty.
624 1.5 cgd */
625 1.5 cgd sc_region = bot - top + 1;
626 1.5 cgd i = top;
627 1.5 cgd tmp1 = curscr->lines[top];
628 1.5 cgd cur_period = top;
629 1.5 cgd for (j = top; j <= bot; j++) {
630 1.5 cgd target = (i - top + n + sc_region) % sc_region + top;
631 1.5 cgd tmp2 = curscr->lines[target];
632 1.5 cgd curscr->lines[target] = tmp1;
633 1.5 cgd /* Mark block as clean and blank out scrolled lines. */
634 1.5 cgd clp = curscr->lines[target];
635 1.5 cgd #ifdef DEBUG
636 1.5 cgd __CTRACE("quickch: n=%d startw=%d curw=%d i = %d target=%d ",
637 1.5 cgd n, startw, curw, i, target);
638 1.5 cgd #endif
639 1.7 cgd if ((target >= startw && target < curw) || target < top
640 1.5 cgd || target > bot) {
641 1.5 cgd #ifdef DEBUG
642 1.5 cgd __CTRACE("-- notdirty");
643 1.5 cgd #endif
644 1.5 cgd win->lines[target]->flags &= ~__ISDIRTY;
645 1.5 cgd } else if ((n > 0 && target >= top && target < top + n) ||
646 1.5 cgd (n < 0 && target <= bot && target > bot + n)) {
647 1.7 cgd if (clp->hash != blank_hash || memcmp(clp->line,
648 1.5 cgd buf, win->maxx * __LDATASIZE) !=0) {
649 1.5 cgd (void)memcpy(clp->line, buf,
650 1.5 cgd win->maxx * __LDATASIZE);
651 1.5 cgd #ifdef DEBUG
652 1.5 cgd __CTRACE("-- blanked out: dirty");
653 1.5 cgd #endif
654 1.5 cgd clp->hash = blank_hash;
655 1.5 cgd __touchline(win, target, 0, win->maxx - 1, 0);
656 1.5 cgd } else {
657 1.5 cgd __touchline(win, target, 0, win->maxx - 1, 0);
658 1.5 cgd #ifdef DEBUG
659 1.5 cgd __CTRACE(" -- blank line already: dirty");
660 1.5 cgd #endif
661 1.5 cgd }
662 1.5 cgd } else {
663 1.5 cgd #ifdef DEBUG
664 1.5 cgd __CTRACE(" -- dirty");
665 1.5 cgd #endif
666 1.5 cgd __touchline(win, target, 0, win->maxx - 1, 0);
667 1.5 cgd }
668 1.5 cgd #ifdef DEBUG
669 1.5 cgd __CTRACE("\n");
670 1.5 cgd #endif
671 1.5 cgd if (target == cur_period) {
672 1.5 cgd i = target + 1;
673 1.5 cgd tmp1 = curscr->lines[i];
674 1.5 cgd cur_period = i;
675 1.5 cgd } else {
676 1.5 cgd tmp1 = tmp2;
677 1.5 cgd i = target;
678 1.5 cgd }
679 1.5 cgd }
680 1.5 cgd #ifdef DEBUG
681 1.5 cgd __CTRACE("$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$$\n");
682 1.5 cgd for (i = 0; i < curscr->maxy; i++) {
683 1.5 cgd __CTRACE("C: %d:", i);
684 1.7 cgd for (j = 0; j < curscr->maxx; j++)
685 1.7 cgd __CTRACE("%c",
686 1.5 cgd curscr->lines[i]->line[j].ch);
687 1.5 cgd __CTRACE("\n");
688 1.5 cgd __CTRACE("W: %d:", i);
689 1.7 cgd for (j = 0; j < win->maxx; j++)
690 1.7 cgd __CTRACE("%c", win->lines[i]->line[j].ch);
691 1.5 cgd __CTRACE("\n");
692 1.5 cgd }
693 1.5 cgd #endif
694 1.5 cgd if (n != 0) {
695 1.5 cgd WINDOW *wp;
696 1.5 cgd scrolln(win, starts, startw, curs, bot, top);
697 1.5 cgd /*
698 1.5 cgd * Need to repoint any subwindow lines to the rotated
699 1.7 cgd * line structured.
700 1.5 cgd */
701 1.5 cgd for (wp = win->nextp; wp != win; wp = wp->nextp)
702 1.5 cgd __set_subwin(win, wp);
703 1.1 cgd }
704 1.5 cgd }
705 1.5 cgd
706 1.5 cgd /*
707 1.7 cgd * scrolln --
708 1.7 cgd * Scroll n lines, where n is starts - startw.
709 1.5 cgd */
710 1.5 cgd static void
711 1.5 cgd scrolln(win, starts, startw, curs, bot, top)
712 1.5 cgd WINDOW *win;
713 1.5 cgd int starts, startw, curs, bot, top;
714 1.5 cgd {
715 1.5 cgd int i, oy, ox, n;
716 1.5 cgd
717 1.5 cgd oy = curscr->cury;
718 1.5 cgd ox = curscr->curx;
719 1.5 cgd n = starts - startw;
720 1.5 cgd
721 1.7 cgd /*
722 1.7 cgd * XXX
723 1.7 cgd * The initial tests that set __noqch don't let us reach here unless
724 1.7 cgd * we have either CS + HO + SF/sf/SR/sr, or AL + DL. SF/sf and SR/sr
725 1.7 cgd * scrolling can only shift the entire scrolling region, not just a
726 1.7 cgd * part of it, which means that the quickch() routine is going to be
727 1.7 cgd * sadly disappointed in us if we don't have CS as well.
728 1.7 cgd *
729 1.7 cgd * If CS, HO and SF/sf are set, can use the scrolling region. Because
730 1.7 cgd * the cursor position after CS is undefined, we need HO which gives us
731 1.7 cgd * the ability to move to somewhere without knowledge of the current
732 1.7 cgd * location of the cursor. Still call __mvcur() anyway, to update its
733 1.7 cgd * idea of where the cursor is.
734 1.7 cgd *
735 1.7 cgd * When the scrolling region has been set, the cursor has to be at the
736 1.7 cgd * last line of the region to make the scroll happen.
737 1.7 cgd *
738 1.7 cgd * Doing SF/SR or AL/DL appears faster on the screen than either sf/sr
739 1.7 cgd * or al/dl, and, some terminals have AL/DL, sf/sr, and CS, but not
740 1.7 cgd * SF/SR. So, if we're scrolling almost all of the screen, try and use
741 1.7 cgd * AL/DL, otherwise use the scrolling region. The "almost all" is a
742 1.7 cgd * shameless hack for vi.
743 1.7 cgd */
744 1.5 cgd if (n > 0) {
745 1.7 cgd if (CS != NULL && HO != NULL && (SF != NULL ||
746 1.8 mikel ((AL == NULL || DL == NULL ||
747 1.8 mikel top > 3 || bot + 3 < win->maxy) && sf != NULL))) {
748 1.7 cgd tputs(__tscroll(CS, top, bot + 1), 0, __cputchar);
749 1.7 cgd __mvcur(oy, ox, 0, 0, 1);
750 1.7 cgd tputs(HO, 0, __cputchar);
751 1.7 cgd __mvcur(0, 0, bot, 0, 1);
752 1.7 cgd if (SF != NULL)
753 1.7 cgd tputs(__tscroll(SF, n, 0), 0, __cputchar);
754 1.7 cgd else
755 1.7 cgd for (i = 0; i < n; i++)
756 1.7 cgd tputs(sf, 0, __cputchar);
757 1.7 cgd tputs(__tscroll(CS, 0, win->maxy), 0, __cputchar);
758 1.7 cgd __mvcur(bot, 0, 0, 0, 1);
759 1.7 cgd tputs(HO, 0, __cputchar);
760 1.7 cgd __mvcur(0, 0, oy, ox, 1);
761 1.7 cgd return;
762 1.7 cgd }
763 1.7 cgd
764 1.7 cgd /* Scroll up the block. */
765 1.7 cgd if (SF != NULL && top == 0) {
766 1.7 cgd __mvcur(oy, ox, bot, 0, 1);
767 1.7 cgd tputs(__tscroll(SF, n, 0), 0, __cputchar);
768 1.7 cgd } else if (DL != NULL) {
769 1.7 cgd __mvcur(oy, ox, top, 0, 1);
770 1.7 cgd tputs(__tscroll(DL, n, 0), 0, __cputchar);
771 1.7 cgd } else if (dl != NULL) {
772 1.7 cgd __mvcur(oy, ox, top, 0, 1);
773 1.7 cgd for (i = 0; i < n; i++)
774 1.5 cgd tputs(dl, 0, __cputchar);
775 1.7 cgd } else if (sf != NULL && top == 0) {
776 1.7 cgd __mvcur(oy, ox, bot, 0, 1);
777 1.7 cgd for (i = 0; i < n; i++)
778 1.7 cgd tputs(sf, 0, __cputchar);
779 1.7 cgd } else
780 1.7 cgd abort();
781 1.5 cgd
782 1.7 cgd /* Push down the bottom region. */
783 1.5 cgd __mvcur(top, 0, bot - n + 1, 0, 1);
784 1.7 cgd if (AL != NULL)
785 1.7 cgd tputs(__tscroll(AL, n, 0), 0, __cputchar);
786 1.7 cgd else if (al != NULL)
787 1.7 cgd for (i = 0; i < n; i++)
788 1.7 cgd tputs(al, 0, __cputchar);
789 1.5 cgd else
790 1.7 cgd abort();
791 1.5 cgd __mvcur(bot - n + 1, 0, oy, ox, 1);
792 1.5 cgd } else {
793 1.7 cgd /*
794 1.7 cgd * !!!
795 1.7 cgd * n < 0
796 1.7 cgd *
797 1.7 cgd * If CS, HO and SR/sr are set, can use the scrolling region.
798 1.7 cgd * See the above comments for details.
799 1.7 cgd */
800 1.7 cgd if (CS != NULL && HO != NULL && (SR != NULL ||
801 1.8 mikel ((AL == NULL || DL == NULL ||
802 1.8 mikel top > 3 || bot + 3 < win->maxy) && sr != NULL))) {
803 1.7 cgd tputs(__tscroll(CS, top, bot + 1), 0, __cputchar);
804 1.7 cgd __mvcur(oy, ox, 0, 0, 1);
805 1.7 cgd tputs(HO, 0, __cputchar);
806 1.7 cgd __mvcur(0, 0, top, 0, 1);
807 1.7 cgd
808 1.7 cgd if (SR != NULL)
809 1.7 cgd tputs(__tscroll(SR, -n, 0), 0, __cputchar);
810 1.7 cgd else
811 1.7 cgd for (i = n; i < 0; i++)
812 1.7 cgd tputs(sr, 0, __cputchar);
813 1.7 cgd tputs(__tscroll(CS, 0, win->maxy), 0, __cputchar);
814 1.7 cgd __mvcur(top, 0, 0, 0, 1);
815 1.7 cgd tputs(HO, 0, __cputchar);
816 1.7 cgd __mvcur(0, 0, oy, ox, 1);
817 1.7 cgd return;
818 1.7 cgd }
819 1.7 cgd
820 1.7 cgd /* Preserve the bottom lines. */
821 1.7 cgd __mvcur(oy, ox, bot + n + 1, 0, 1);
822 1.7 cgd if (SR != NULL && bot == win->maxy)
823 1.7 cgd tputs(__tscroll(SR, -n, 0), 0, __cputchar);
824 1.7 cgd else if (DL != NULL)
825 1.7 cgd tputs(__tscroll(DL, -n, 0), 0, __cputchar);
826 1.7 cgd else if (dl != NULL)
827 1.7 cgd for (i = n; i < 0; i++)
828 1.7 cgd tputs(dl, 0, __cputchar);
829 1.7 cgd else if (sr != NULL && bot == win->maxy)
830 1.7 cgd for (i = n; i < 0; i++)
831 1.7 cgd tputs(sr, 0, __cputchar);
832 1.5 cgd else
833 1.7 cgd abort();
834 1.7 cgd
835 1.7 cgd /* Scroll the block down. */
836 1.5 cgd __mvcur(bot + n + 1, 0, top, 0, 1);
837 1.7 cgd if (AL != NULL)
838 1.7 cgd tputs(__tscroll(AL, -n, 0), 0, __cputchar);
839 1.7 cgd else if (al != NULL)
840 1.7 cgd for (i = n; i < 0; i++)
841 1.7 cgd tputs(al, 0, __cputchar);
842 1.5 cgd else
843 1.7 cgd abort();
844 1.5 cgd __mvcur(top, 0, oy, ox, 1);
845 1.7 cgd }
846 1.1 cgd }
847