refresh.c revision 1.30 1 1.30 christos /* $NetBSD: refresh.c,v 1.30 2009/03/31 17:38:27 christos Exp $ */
2 1.2 lukem
3 1.1 cgd /*-
4 1.1 cgd * Copyright (c) 1992, 1993
5 1.1 cgd * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This code is derived from software contributed to Berkeley by
8 1.1 cgd * Christos Zoulas of Cornell University.
9 1.1 cgd *
10 1.1 cgd * Redistribution and use in source and binary forms, with or without
11 1.1 cgd * modification, are permitted provided that the following conditions
12 1.1 cgd * are met:
13 1.1 cgd * 1. Redistributions of source code must retain the above copyright
14 1.1 cgd * notice, this list of conditions and the following disclaimer.
15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer in the
17 1.1 cgd * documentation and/or other materials provided with the distribution.
18 1.26 agc * 3. Neither the name of the University nor the names of its contributors
19 1.1 cgd * may be used to endorse or promote products derived from this software
20 1.1 cgd * without specific prior written permission.
21 1.1 cgd *
22 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 cgd * SUCH DAMAGE.
33 1.1 cgd */
34 1.1 cgd
35 1.18 christos #include "config.h"
36 1.1 cgd #if !defined(lint) && !defined(SCCSID)
37 1.2 lukem #if 0
38 1.1 cgd static char sccsid[] = "@(#)refresh.c 8.1 (Berkeley) 6/4/93";
39 1.2 lukem #else
40 1.30 christos __RCSID("$NetBSD: refresh.c,v 1.30 2009/03/31 17:38:27 christos Exp $");
41 1.2 lukem #endif
42 1.1 cgd #endif /* not lint && not SCCSID */
43 1.1 cgd
44 1.1 cgd /*
45 1.1 cgd * refresh.c: Lower level screen refreshing functions
46 1.1 cgd */
47 1.1 cgd #include <stdio.h>
48 1.1 cgd #include <ctype.h>
49 1.1 cgd #include <unistd.h>
50 1.1 cgd #include <string.h>
51 1.1 cgd
52 1.1 cgd #include "el.h"
53 1.1 cgd
54 1.15 lukem private void re_addc(EditLine *, int);
55 1.15 lukem private void re_update_line(EditLine *, char *, char *, int);
56 1.15 lukem private void re_insert (EditLine *, char *, int, int, char *, int);
57 1.15 lukem private void re_delete(EditLine *, char *, int, int, int);
58 1.15 lukem private void re_fastputc(EditLine *, int);
59 1.27 christos private void re_clear_eol(EditLine *, int, int, int);
60 1.15 lukem private void re__strncopy(char *, char *, size_t);
61 1.18 christos private void re__copy_and_pad(char *, const char *, size_t);
62 1.1 cgd
63 1.1 cgd #ifdef DEBUG_REFRESH
64 1.20 christos private void re_printstr(EditLine *, const char *, char *, char *);
65 1.15 lukem #define __F el->el_errfile
66 1.17 lukem #define ELRE_ASSERT(a, b, c) do \
67 1.20 christos if (/*CONSTCOND*/ a) { \
68 1.1 cgd (void) fprintf b; \
69 1.1 cgd c; \
70 1.1 cgd } \
71 1.20 christos while (/*CONSTCOND*/0)
72 1.17 lukem #define ELRE_DEBUG(a, b) ELRE_ASSERT(a,b,;)
73 1.15 lukem
74 1.1 cgd /* re_printstr():
75 1.1 cgd * Print a string on the debugging pty
76 1.1 cgd */
77 1.1 cgd private void
78 1.20 christos re_printstr(EditLine *el, const char *str, char *f, char *t)
79 1.1 cgd {
80 1.15 lukem
81 1.17 lukem ELRE_DEBUG(1, (__F, "%s:\"", str));
82 1.15 lukem while (f < t)
83 1.17 lukem ELRE_DEBUG(1, (__F, "%c", *f++ & 0177));
84 1.17 lukem ELRE_DEBUG(1, (__F, "\"\r\n"));
85 1.8 simonb }
86 1.1 cgd #else
87 1.17 lukem #define ELRE_ASSERT(a, b, c)
88 1.17 lukem #define ELRE_DEBUG(a, b)
89 1.1 cgd #endif
90 1.1 cgd
91 1.1 cgd
92 1.1 cgd /* re_addc():
93 1.1 cgd * Draw c, expanding tabs, control chars etc.
94 1.1 cgd */
95 1.1 cgd private void
96 1.15 lukem re_addc(EditLine *el, int c)
97 1.1 cgd {
98 1.15 lukem
99 1.15 lukem if (isprint(c)) {
100 1.16 jdolecek re_putc(el, c, 1);
101 1.15 lukem return;
102 1.15 lukem }
103 1.15 lukem if (c == '\n') { /* expand the newline */
104 1.15 lukem int oldv = el->el_refresh.r_cursor.v;
105 1.16 jdolecek re_putc(el, '\0', 0); /* assure end of line */
106 1.16 jdolecek if (oldv == el->el_refresh.r_cursor.v) { /* XXX */
107 1.15 lukem el->el_refresh.r_cursor.h = 0; /* reset cursor pos */
108 1.15 lukem el->el_refresh.r_cursor.v++;
109 1.15 lukem }
110 1.15 lukem return;
111 1.15 lukem }
112 1.15 lukem if (c == '\t') { /* expand the tab */
113 1.15 lukem for (;;) {
114 1.16 jdolecek re_putc(el, ' ', 1);
115 1.15 lukem if ((el->el_refresh.r_cursor.h & 07) == 0)
116 1.15 lukem break; /* go until tab stop */
117 1.15 lukem }
118 1.15 lukem } else if (iscntrl(c)) {
119 1.16 jdolecek re_putc(el, '^', 1);
120 1.15 lukem if (c == '\177')
121 1.16 jdolecek re_putc(el, '?', 1);
122 1.15 lukem else
123 1.15 lukem /* uncontrolify it; works only for iso8859-1 like sets */
124 1.16 jdolecek re_putc(el, (c | 0100), 1);
125 1.15 lukem } else {
126 1.16 jdolecek re_putc(el, '\\', 1);
127 1.16 jdolecek re_putc(el, (int) ((((unsigned int) c >> 6) & 07) + '0'), 1);
128 1.16 jdolecek re_putc(el, (int) ((((unsigned int) c >> 3) & 07) + '0'), 1);
129 1.16 jdolecek re_putc(el, (c & 07) + '0', 1);
130 1.15 lukem }
131 1.15 lukem }
132 1.1 cgd
133 1.1 cgd
134 1.1 cgd /* re_putc():
135 1.1 cgd * Draw the character given
136 1.1 cgd */
137 1.1 cgd protected void
138 1.16 jdolecek re_putc(EditLine *el, int c, int shift)
139 1.1 cgd {
140 1.1 cgd
141 1.17 lukem ELRE_DEBUG(1, (__F, "printing %3.3o '%c'\r\n", c, c));
142 1.15 lukem
143 1.15 lukem el->el_vdisplay[el->el_refresh.r_cursor.v][el->el_refresh.r_cursor.h] = c;
144 1.16 jdolecek if (!shift)
145 1.16 jdolecek return;
146 1.16 jdolecek
147 1.15 lukem el->el_refresh.r_cursor.h++; /* advance to next place */
148 1.15 lukem if (el->el_refresh.r_cursor.h >= el->el_term.t_size.h) {
149 1.15 lukem el->el_vdisplay[el->el_refresh.r_cursor.v][el->el_term.t_size.h] = '\0';
150 1.15 lukem /* assure end of line */
151 1.15 lukem el->el_refresh.r_cursor.h = 0; /* reset it. */
152 1.16 jdolecek
153 1.16 jdolecek /*
154 1.16 jdolecek * If we would overflow (input is longer than terminal size),
155 1.16 jdolecek * emulate scroll by dropping first line and shuffling the rest.
156 1.16 jdolecek * We do this via pointer shuffling - it's safe in this case
157 1.16 jdolecek * and we avoid memcpy().
158 1.16 jdolecek */
159 1.16 jdolecek if (el->el_refresh.r_cursor.v + 1 >= el->el_term.t_size.v) {
160 1.16 jdolecek int i, lins = el->el_term.t_size.v;
161 1.16 jdolecek char *firstline = el->el_vdisplay[0];
162 1.16 jdolecek
163 1.16 jdolecek for(i=1; i < lins; i++)
164 1.16 jdolecek el->el_vdisplay[i-1] = el->el_vdisplay[i];
165 1.16 jdolecek
166 1.16 jdolecek firstline[0] = '\0'; /* empty the string */
167 1.16 jdolecek el->el_vdisplay[i-1] = firstline;
168 1.16 jdolecek } else
169 1.16 jdolecek el->el_refresh.r_cursor.v++;
170 1.16 jdolecek
171 1.17 lukem ELRE_ASSERT(el->el_refresh.r_cursor.v >= el->el_term.t_size.v,
172 1.15 lukem (__F, "\r\nre_putc: overflow! r_cursor.v == %d > %d\r\n",
173 1.15 lukem el->el_refresh.r_cursor.v, el->el_term.t_size.v),
174 1.15 lukem abort());
175 1.15 lukem }
176 1.15 lukem }
177 1.15 lukem
178 1.1 cgd
179 1.1 cgd /* re_refresh():
180 1.1 cgd * draws the new virtual screen image from the current input
181 1.1 cgd * line, then goes line-by-line changing the real image to the new
182 1.1 cgd * virtual image. The routine to re-draw a line can be replaced
183 1.1 cgd * easily in hopes of a smarter one being placed there.
184 1.1 cgd */
185 1.1 cgd protected void
186 1.15 lukem re_refresh(EditLine *el)
187 1.1 cgd {
188 1.15 lukem int i, rhdiff;
189 1.16 jdolecek char *cp, *st;
190 1.15 lukem coord_t cur;
191 1.16 jdolecek #ifdef notyet
192 1.16 jdolecek size_t termsz;
193 1.16 jdolecek #endif
194 1.15 lukem
195 1.15 lukem ELRE_DEBUG(1, (__F, "el->el_line.buffer = :%s:\r\n",
196 1.17 lukem el->el_line.buffer));
197 1.15 lukem
198 1.15 lukem /* reset the Drawing cursor */
199 1.15 lukem el->el_refresh.r_cursor.h = 0;
200 1.15 lukem el->el_refresh.r_cursor.v = 0;
201 1.15 lukem
202 1.15 lukem /* temporarily draw rprompt to calculate its size */
203 1.15 lukem prompt_print(el, EL_RPROMPT);
204 1.15 lukem
205 1.15 lukem /* reset the Drawing cursor */
206 1.15 lukem el->el_refresh.r_cursor.h = 0;
207 1.15 lukem el->el_refresh.r_cursor.v = 0;
208 1.15 lukem
209 1.22 christos if (el->el_line.cursor >= el->el_line.lastchar) {
210 1.22 christos if (el->el_map.current == el->el_map.alt
211 1.22 christos && el->el_line.lastchar != el->el_line.buffer)
212 1.22 christos el->el_line.cursor = el->el_line.lastchar - 1;
213 1.22 christos else
214 1.22 christos el->el_line.cursor = el->el_line.lastchar;
215 1.22 christos }
216 1.22 christos
217 1.15 lukem cur.h = -1; /* set flag in case I'm not set */
218 1.15 lukem cur.v = 0;
219 1.15 lukem
220 1.15 lukem prompt_print(el, EL_PROMPT);
221 1.15 lukem
222 1.15 lukem /* draw the current input buffer */
223 1.16 jdolecek #if notyet
224 1.16 jdolecek termsz = el->el_term.t_size.h * el->el_term.t_size.v;
225 1.16 jdolecek if (el->el_line.lastchar - el->el_line.buffer > termsz) {
226 1.16 jdolecek /*
227 1.16 jdolecek * If line is longer than terminal, process only part
228 1.16 jdolecek * of line which would influence display.
229 1.16 jdolecek */
230 1.16 jdolecek size_t rem = (el->el_line.lastchar-el->el_line.buffer)%termsz;
231 1.16 jdolecek
232 1.16 jdolecek st = el->el_line.lastchar - rem
233 1.16 jdolecek - (termsz - (((rem / el->el_term.t_size.v) - 1)
234 1.16 jdolecek * el->el_term.t_size.v));
235 1.16 jdolecek } else
236 1.16 jdolecek #endif
237 1.16 jdolecek st = el->el_line.buffer;
238 1.16 jdolecek
239 1.16 jdolecek for (cp = st; cp < el->el_line.lastchar; cp++) {
240 1.15 lukem if (cp == el->el_line.cursor) {
241 1.16 jdolecek /* save for later */
242 1.15 lukem cur.h = el->el_refresh.r_cursor.h;
243 1.15 lukem cur.v = el->el_refresh.r_cursor.v;
244 1.15 lukem }
245 1.15 lukem re_addc(el, (unsigned char) *cp);
246 1.15 lukem }
247 1.15 lukem
248 1.15 lukem if (cur.h == -1) { /* if I haven't been set yet, I'm at the end */
249 1.15 lukem cur.h = el->el_refresh.r_cursor.h;
250 1.15 lukem cur.v = el->el_refresh.r_cursor.v;
251 1.15 lukem }
252 1.15 lukem rhdiff = el->el_term.t_size.h - el->el_refresh.r_cursor.h -
253 1.15 lukem el->el_rprompt.p_pos.h;
254 1.15 lukem if (el->el_rprompt.p_pos.h && !el->el_rprompt.p_pos.v &&
255 1.15 lukem !el->el_refresh.r_cursor.v && rhdiff > 1) {
256 1.15 lukem /*
257 1.15 lukem * have a right-hand side prompt that will fit
258 1.15 lukem * on the end of the first line with at least
259 1.15 lukem * one character gap to the input buffer.
260 1.15 lukem */
261 1.15 lukem while (--rhdiff > 0) /* pad out with spaces */
262 1.16 jdolecek re_putc(el, ' ', 1);
263 1.15 lukem prompt_print(el, EL_RPROMPT);
264 1.15 lukem } else {
265 1.15 lukem el->el_rprompt.p_pos.h = 0; /* flag "not using rprompt" */
266 1.15 lukem el->el_rprompt.p_pos.v = 0;
267 1.15 lukem }
268 1.15 lukem
269 1.16 jdolecek re_putc(el, '\0', 0); /* make line ended with NUL, no cursor shift */
270 1.16 jdolecek
271 1.15 lukem el->el_refresh.r_newcv = el->el_refresh.r_cursor.v;
272 1.15 lukem
273 1.15 lukem ELRE_DEBUG(1, (__F,
274 1.15 lukem "term.h=%d vcur.h=%d vcur.v=%d vdisplay[0]=\r\n:%80.80s:\r\n",
275 1.15 lukem el->el_term.t_size.h, el->el_refresh.r_cursor.h,
276 1.17 lukem el->el_refresh.r_cursor.v, el->el_vdisplay[0]));
277 1.15 lukem
278 1.17 lukem ELRE_DEBUG(1, (__F, "updating %d lines.\r\n", el->el_refresh.r_newcv));
279 1.15 lukem for (i = 0; i <= el->el_refresh.r_newcv; i++) {
280 1.15 lukem /* NOTE THAT re_update_line MAY CHANGE el_display[i] */
281 1.15 lukem re_update_line(el, el->el_display[i], el->el_vdisplay[i], i);
282 1.15 lukem
283 1.15 lukem /*
284 1.15 lukem * Copy the new line to be the current one, and pad out with
285 1.15 lukem * spaces to the full width of the terminal so that if we try
286 1.15 lukem * moving the cursor by writing the character that is at the
287 1.15 lukem * end of the screen line, it won't be a NUL or some old
288 1.15 lukem * leftover stuff.
289 1.15 lukem */
290 1.15 lukem re__copy_and_pad(el->el_display[i], el->el_vdisplay[i],
291 1.15 lukem (size_t) el->el_term.t_size.h);
292 1.15 lukem }
293 1.15 lukem ELRE_DEBUG(1, (__F,
294 1.15 lukem "\r\nel->el_refresh.r_cursor.v=%d,el->el_refresh.r_oldcv=%d i=%d\r\n",
295 1.17 lukem el->el_refresh.r_cursor.v, el->el_refresh.r_oldcv, i));
296 1.15 lukem
297 1.15 lukem if (el->el_refresh.r_oldcv > el->el_refresh.r_newcv)
298 1.15 lukem for (; i <= el->el_refresh.r_oldcv; i++) {
299 1.15 lukem term_move_to_line(el, i);
300 1.15 lukem term_move_to_char(el, 0);
301 1.15 lukem term_clear_EOL(el, (int) strlen(el->el_display[i]));
302 1.1 cgd #ifdef DEBUG_REFRESH
303 1.30 christos term_overwrite(el, "C\b", (size_t)2);
304 1.1 cgd #endif /* DEBUG_REFRESH */
305 1.16 jdolecek el->el_display[i][0] = '\0';
306 1.15 lukem }
307 1.8 simonb
308 1.15 lukem el->el_refresh.r_oldcv = el->el_refresh.r_newcv; /* set for next time */
309 1.15 lukem ELRE_DEBUG(1, (__F,
310 1.15 lukem "\r\ncursor.h = %d, cursor.v = %d, cur.h = %d, cur.v = %d\r\n",
311 1.15 lukem el->el_refresh.r_cursor.h, el->el_refresh.r_cursor.v,
312 1.17 lukem cur.h, cur.v));
313 1.15 lukem term_move_to_line(el, cur.v); /* go to where the cursor is */
314 1.15 lukem term_move_to_char(el, cur.h);
315 1.15 lukem }
316 1.1 cgd
317 1.1 cgd
318 1.1 cgd /* re_goto_bottom():
319 1.8 simonb * used to go to last used screen line
320 1.1 cgd */
321 1.1 cgd protected void
322 1.15 lukem re_goto_bottom(EditLine *el)
323 1.1 cgd {
324 1.15 lukem
325 1.15 lukem term_move_to_line(el, el->el_refresh.r_oldcv);
326 1.28 christos term__putc(el, '\n');
327 1.15 lukem re_clear_display(el);
328 1.28 christos term__flush(el);
329 1.15 lukem }
330 1.1 cgd
331 1.1 cgd
332 1.1 cgd /* re_insert():
333 1.1 cgd * insert num characters of s into d (in front of the character)
334 1.8 simonb * at dat, maximum length of d is dlen
335 1.1 cgd */
336 1.1 cgd private void
337 1.1 cgd /*ARGSUSED*/
338 1.25 christos re_insert(EditLine *el __attribute__((__unused__)),
339 1.25 christos char *d, int dat, int dlen, char *s, int num)
340 1.1 cgd {
341 1.15 lukem char *a, *b;
342 1.1 cgd
343 1.15 lukem if (num <= 0)
344 1.15 lukem return;
345 1.15 lukem if (num > dlen - dat)
346 1.15 lukem num = dlen - dat;
347 1.1 cgd
348 1.15 lukem ELRE_DEBUG(1,
349 1.15 lukem (__F, "re_insert() starting: %d at %d max %d, d == \"%s\"\n",
350 1.17 lukem num, dat, dlen, d));
351 1.27 christos ELRE_DEBUG(1, (__F, "s == \"%s\"\n", s));
352 1.1 cgd
353 1.15 lukem /* open up the space for num chars */
354 1.15 lukem if (num > 0) {
355 1.15 lukem b = d + dlen - 1;
356 1.15 lukem a = b - num;
357 1.15 lukem while (a >= &d[dat])
358 1.15 lukem *b-- = *a--;
359 1.15 lukem d[dlen] = '\0'; /* just in case */
360 1.15 lukem }
361 1.15 lukem ELRE_DEBUG(1, (__F,
362 1.1 cgd "re_insert() after insert: %d at %d max %d, d == \"%s\"\n",
363 1.17 lukem num, dat, dlen, d));
364 1.27 christos ELRE_DEBUG(1, (__F, "s == \"%s\"\n", s));
365 1.1 cgd
366 1.15 lukem /* copy the characters */
367 1.15 lukem for (a = d + dat; (a < d + dlen) && (num > 0); num--)
368 1.15 lukem *a++ = *s++;
369 1.15 lukem
370 1.15 lukem ELRE_DEBUG(1,
371 1.15 lukem (__F, "re_insert() after copy: %d at %d max %d, %s == \"%s\"\n",
372 1.17 lukem num, dat, dlen, d, s));
373 1.27 christos ELRE_DEBUG(1, (__F, "s == \"%s\"\n", s));
374 1.15 lukem }
375 1.1 cgd
376 1.1 cgd
377 1.1 cgd /* re_delete():
378 1.8 simonb * delete num characters d at dat, maximum length of d is dlen
379 1.1 cgd */
380 1.1 cgd private void
381 1.1 cgd /*ARGSUSED*/
382 1.25 christos re_delete(EditLine *el __attribute__((__unused__)),
383 1.25 christos char *d, int dat, int dlen, int num)
384 1.1 cgd {
385 1.15 lukem char *a, *b;
386 1.1 cgd
387 1.15 lukem if (num <= 0)
388 1.15 lukem return;
389 1.15 lukem if (dat + num >= dlen) {
390 1.15 lukem d[dat] = '\0';
391 1.15 lukem return;
392 1.15 lukem }
393 1.15 lukem ELRE_DEBUG(1,
394 1.15 lukem (__F, "re_delete() starting: %d at %d max %d, d == \"%s\"\n",
395 1.17 lukem num, dat, dlen, d));
396 1.1 cgd
397 1.15 lukem /* open up the space for num chars */
398 1.15 lukem if (num > 0) {
399 1.15 lukem b = d + dat;
400 1.15 lukem a = b + num;
401 1.15 lukem while (a < &d[dlen])
402 1.15 lukem *b++ = *a++;
403 1.15 lukem d[dlen] = '\0'; /* just in case */
404 1.15 lukem }
405 1.15 lukem ELRE_DEBUG(1,
406 1.15 lukem (__F, "re_delete() after delete: %d at %d max %d, d == \"%s\"\n",
407 1.17 lukem num, dat, dlen, d));
408 1.15 lukem }
409 1.1 cgd
410 1.1 cgd
411 1.1 cgd /* re__strncopy():
412 1.1 cgd * Like strncpy without padding.
413 1.1 cgd */
414 1.1 cgd private void
415 1.15 lukem re__strncopy(char *a, char *b, size_t n)
416 1.1 cgd {
417 1.15 lukem
418 1.15 lukem while (n-- && *b)
419 1.15 lukem *a++ = *b++;
420 1.15 lukem }
421 1.1 cgd
422 1.27 christos /* re_clear_eol():
423 1.27 christos * Find the number of characters we need to clear till the end of line
424 1.27 christos * in order to make sure that we have cleared the previous contents of
425 1.27 christos * the line. fx and sx is the number of characters inserted or deleted
426 1.27 christos * int the first or second diff, diff is the difference between the
427 1.27 christos * number of characters between the new and old line.
428 1.27 christos */
429 1.27 christos private void
430 1.27 christos re_clear_eol(EditLine *el, int fx, int sx, int diff)
431 1.27 christos {
432 1.27 christos
433 1.27 christos ELRE_DEBUG(1, (__F, "re_clear_eol sx %d, fx %d, diff %d\n",
434 1.27 christos sx, fx, diff));
435 1.27 christos
436 1.27 christos if (fx < 0)
437 1.27 christos fx = -fx;
438 1.27 christos if (sx < 0)
439 1.27 christos sx = -sx;
440 1.27 christos if (fx > diff)
441 1.27 christos diff = fx;
442 1.27 christos if (sx > diff)
443 1.27 christos diff = sx;
444 1.27 christos
445 1.27 christos ELRE_DEBUG(1, (__F, "re_clear_eol %d\n", diff));
446 1.27 christos term_clear_EOL(el, diff);
447 1.27 christos }
448 1.1 cgd
449 1.15 lukem /*****************************************************************
450 1.1 cgd re_update_line() is based on finding the middle difference of each line
451 1.1 cgd on the screen; vis:
452 1.1 cgd
453 1.1 cgd /old first difference
454 1.1 cgd /beginning of line | /old last same /old EOL
455 1.1 cgd v v v v
456 1.1 cgd old: eddie> Oh, my little gruntle-buggy is to me, as lurgid as
457 1.1 cgd new: eddie> Oh, my little buggy says to me, as lurgid as
458 1.1 cgd ^ ^ ^ ^
459 1.1 cgd \beginning of line | \new last same \new end of line
460 1.1 cgd \new first difference
461 1.1 cgd
462 1.1 cgd all are character pointers for the sake of speed. Special cases for
463 1.1 cgd no differences, as well as for end of line additions must be handled.
464 1.1 cgd **************************************************************** */
465 1.1 cgd
466 1.1 cgd /* Minimum at which doing an insert it "worth it". This should be about
467 1.1 cgd * half the "cost" of going into insert mode, inserting a character, and
468 1.1 cgd * going back out. This should really be calculated from the termcap
469 1.1 cgd * data... For the moment, a good number for ANSI terminals.
470 1.1 cgd */
471 1.15 lukem #define MIN_END_KEEP 4
472 1.1 cgd
473 1.1 cgd private void
474 1.15 lukem re_update_line(EditLine *el, char *old, char *new, int i)
475 1.1 cgd {
476 1.15 lukem char *o, *n, *p, c;
477 1.15 lukem char *ofd, *ols, *oe, *nfd, *nls, *ne;
478 1.15 lukem char *osb, *ose, *nsb, *nse;
479 1.15 lukem int fx, sx;
480 1.30 christos size_t len;
481 1.15 lukem
482 1.15 lukem /*
483 1.15 lukem * find first diff
484 1.15 lukem */
485 1.15 lukem for (o = old, n = new; *o && (*o == *n); o++, n++)
486 1.15 lukem continue;
487 1.15 lukem ofd = o;
488 1.15 lukem nfd = n;
489 1.15 lukem
490 1.15 lukem /*
491 1.15 lukem * Find the end of both old and new
492 1.15 lukem */
493 1.15 lukem while (*o)
494 1.15 lukem o++;
495 1.15 lukem /*
496 1.15 lukem * Remove any trailing blanks off of the end, being careful not to
497 1.15 lukem * back up past the beginning.
498 1.15 lukem */
499 1.15 lukem while (ofd < o) {
500 1.15 lukem if (o[-1] != ' ')
501 1.15 lukem break;
502 1.15 lukem o--;
503 1.15 lukem }
504 1.15 lukem oe = o;
505 1.15 lukem *oe = '\0';
506 1.15 lukem
507 1.15 lukem while (*n)
508 1.15 lukem n++;
509 1.15 lukem
510 1.15 lukem /* remove blanks from end of new */
511 1.15 lukem while (nfd < n) {
512 1.15 lukem if (n[-1] != ' ')
513 1.15 lukem break;
514 1.15 lukem n--;
515 1.15 lukem }
516 1.15 lukem ne = n;
517 1.15 lukem *ne = '\0';
518 1.15 lukem
519 1.15 lukem /*
520 1.15 lukem * if no diff, continue to next line of redraw
521 1.15 lukem */
522 1.15 lukem if (*ofd == '\0' && *nfd == '\0') {
523 1.17 lukem ELRE_DEBUG(1, (__F, "no difference.\r\n"));
524 1.15 lukem return;
525 1.15 lukem }
526 1.15 lukem /*
527 1.15 lukem * find last same pointer
528 1.15 lukem */
529 1.15 lukem while ((o > ofd) && (n > nfd) && (*--o == *--n))
530 1.15 lukem continue;
531 1.15 lukem ols = ++o;
532 1.15 lukem nls = ++n;
533 1.15 lukem
534 1.15 lukem /*
535 1.15 lukem * find same begining and same end
536 1.15 lukem */
537 1.1 cgd osb = ols;
538 1.15 lukem nsb = nls;
539 1.1 cgd ose = ols;
540 1.1 cgd nse = nls;
541 1.1 cgd
542 1.15 lukem /*
543 1.15 lukem * case 1: insert: scan from nfd to nls looking for *ofd
544 1.15 lukem */
545 1.15 lukem if (*ofd) {
546 1.15 lukem for (c = *ofd, n = nfd; n < nls; n++) {
547 1.15 lukem if (c == *n) {
548 1.15 lukem for (o = ofd, p = n;
549 1.15 lukem p < nls && o < ols && *o == *p;
550 1.15 lukem o++, p++)
551 1.15 lukem continue;
552 1.15 lukem /*
553 1.15 lukem * if the new match is longer and it's worth
554 1.15 lukem * keeping, then we take it
555 1.15 lukem */
556 1.15 lukem if (((nse - nsb) < (p - n)) &&
557 1.15 lukem (2 * (p - n) > n - nfd)) {
558 1.15 lukem nsb = n;
559 1.15 lukem nse = p;
560 1.15 lukem osb = ofd;
561 1.15 lukem ose = o;
562 1.15 lukem }
563 1.15 lukem }
564 1.15 lukem }
565 1.15 lukem }
566 1.15 lukem /*
567 1.15 lukem * case 2: delete: scan from ofd to ols looking for *nfd
568 1.15 lukem */
569 1.15 lukem if (*nfd) {
570 1.15 lukem for (c = *nfd, o = ofd; o < ols; o++) {
571 1.15 lukem if (c == *o) {
572 1.15 lukem for (n = nfd, p = o;
573 1.15 lukem p < ols && n < nls && *p == *n;
574 1.15 lukem p++, n++)
575 1.15 lukem continue;
576 1.15 lukem /*
577 1.15 lukem * if the new match is longer and it's worth
578 1.15 lukem * keeping, then we take it
579 1.15 lukem */
580 1.15 lukem if (((ose - osb) < (p - o)) &&
581 1.15 lukem (2 * (p - o) > o - ofd)) {
582 1.15 lukem nsb = nfd;
583 1.15 lukem nse = n;
584 1.15 lukem osb = o;
585 1.15 lukem ose = p;
586 1.15 lukem }
587 1.15 lukem }
588 1.15 lukem }
589 1.15 lukem }
590 1.15 lukem /*
591 1.15 lukem * Pragmatics I: If old trailing whitespace or not enough characters to
592 1.15 lukem * save to be worth it, then don't save the last same info.
593 1.15 lukem */
594 1.15 lukem if ((oe - ols) < MIN_END_KEEP) {
595 1.15 lukem ols = oe;
596 1.15 lukem nls = ne;
597 1.15 lukem }
598 1.15 lukem /*
599 1.15 lukem * Pragmatics II: if the terminal isn't smart enough, make the data
600 1.15 lukem * dumber so the smart update doesn't try anything fancy
601 1.15 lukem */
602 1.15 lukem
603 1.15 lukem /*
604 1.15 lukem * fx is the number of characters we need to insert/delete: in the
605 1.15 lukem * beginning to bring the two same begins together
606 1.15 lukem */
607 1.29 christos fx = (int)((nsb - nfd) - (osb - ofd));
608 1.15 lukem /*
609 1.15 lukem * sx is the number of characters we need to insert/delete: in the
610 1.15 lukem * end to bring the two same last parts together
611 1.15 lukem */
612 1.29 christos sx = (int)((nls - nse) - (ols - ose));
613 1.15 lukem
614 1.15 lukem if (!EL_CAN_INSERT) {
615 1.15 lukem if (fx > 0) {
616 1.15 lukem osb = ols;
617 1.15 lukem ose = ols;
618 1.15 lukem nsb = nls;
619 1.15 lukem nse = nls;
620 1.15 lukem }
621 1.15 lukem if (sx > 0) {
622 1.15 lukem ols = oe;
623 1.15 lukem nls = ne;
624 1.15 lukem }
625 1.15 lukem if ((ols - ofd) < (nls - nfd)) {
626 1.15 lukem ols = oe;
627 1.15 lukem nls = ne;
628 1.15 lukem }
629 1.15 lukem }
630 1.15 lukem if (!EL_CAN_DELETE) {
631 1.15 lukem if (fx < 0) {
632 1.15 lukem osb = ols;
633 1.15 lukem ose = ols;
634 1.15 lukem nsb = nls;
635 1.15 lukem nse = nls;
636 1.15 lukem }
637 1.15 lukem if (sx < 0) {
638 1.15 lukem ols = oe;
639 1.15 lukem nls = ne;
640 1.15 lukem }
641 1.15 lukem if ((ols - ofd) > (nls - nfd)) {
642 1.15 lukem ols = oe;
643 1.15 lukem nls = ne;
644 1.15 lukem }
645 1.15 lukem }
646 1.15 lukem /*
647 1.15 lukem * Pragmatics III: make sure the middle shifted pointers are correct if
648 1.15 lukem * they don't point to anything (we may have moved ols or nls).
649 1.15 lukem */
650 1.15 lukem /* if the change isn't worth it, don't bother */
651 1.15 lukem /* was: if (osb == ose) */
652 1.15 lukem if ((ose - osb) < MIN_END_KEEP) {
653 1.15 lukem osb = ols;
654 1.15 lukem ose = ols;
655 1.15 lukem nsb = nls;
656 1.15 lukem nse = nls;
657 1.15 lukem }
658 1.15 lukem /*
659 1.15 lukem * Now that we are done with pragmatics we recompute fx, sx
660 1.15 lukem */
661 1.29 christos fx = (int)((nsb - nfd) - (osb - ofd));
662 1.29 christos sx = (int)((nls - nse) - (ols - ose));
663 1.15 lukem
664 1.27 christos ELRE_DEBUG(1, (__F, "fx %d, sx %d\n", fx, sx));
665 1.15 lukem ELRE_DEBUG(1, (__F, "ofd %d, osb %d, ose %d, ols %d, oe %d\n",
666 1.17 lukem ofd - old, osb - old, ose - old, ols - old, oe - old));
667 1.15 lukem ELRE_DEBUG(1, (__F, "nfd %d, nsb %d, nse %d, nls %d, ne %d\n",
668 1.17 lukem nfd - new, nsb - new, nse - new, nls - new, ne - new));
669 1.15 lukem ELRE_DEBUG(1, (__F,
670 1.17 lukem "xxx-xxx:\"00000000001111111111222222222233333333334\"\r\n"));
671 1.15 lukem ELRE_DEBUG(1, (__F,
672 1.17 lukem "xxx-xxx:\"01234567890123456789012345678901234567890\"\r\n"));
673 1.1 cgd #ifdef DEBUG_REFRESH
674 1.15 lukem re_printstr(el, "old- oe", old, oe);
675 1.15 lukem re_printstr(el, "new- ne", new, ne);
676 1.15 lukem re_printstr(el, "old-ofd", old, ofd);
677 1.15 lukem re_printstr(el, "new-nfd", new, nfd);
678 1.15 lukem re_printstr(el, "ofd-osb", ofd, osb);
679 1.15 lukem re_printstr(el, "nfd-nsb", nfd, nsb);
680 1.15 lukem re_printstr(el, "osb-ose", osb, ose);
681 1.15 lukem re_printstr(el, "nsb-nse", nsb, nse);
682 1.15 lukem re_printstr(el, "ose-ols", ose, ols);
683 1.15 lukem re_printstr(el, "nse-nls", nse, nls);
684 1.15 lukem re_printstr(el, "ols- oe", ols, oe);
685 1.15 lukem re_printstr(el, "nls- ne", nls, ne);
686 1.1 cgd #endif /* DEBUG_REFRESH */
687 1.1 cgd
688 1.15 lukem /*
689 1.15 lukem * el_cursor.v to this line i MUST be in this routine so that if we
690 1.15 lukem * don't have to change the line, we don't move to it. el_cursor.h to
691 1.15 lukem * first diff char
692 1.15 lukem */
693 1.15 lukem term_move_to_line(el, i);
694 1.15 lukem
695 1.15 lukem /*
696 1.15 lukem * at this point we have something like this:
697 1.15 lukem *
698 1.15 lukem * /old /ofd /osb /ose /ols /oe
699 1.15 lukem * v.....................v v..................v v........v
700 1.15 lukem * eddie> Oh, my fredded gruntle-buggy is to me, as foo var lurgid as
701 1.15 lukem * eddie> Oh, my fredded quiux buggy is to me, as gruntle-lurgid as
702 1.15 lukem * ^.....................^ ^..................^ ^........^
703 1.15 lukem * \new \nfd \nsb \nse \nls \ne
704 1.15 lukem *
705 1.15 lukem * fx is the difference in length between the chars between nfd and
706 1.15 lukem * nsb, and the chars between ofd and osb, and is thus the number of
707 1.15 lukem * characters to delete if < 0 (new is shorter than old, as above),
708 1.15 lukem * or insert (new is longer than short).
709 1.15 lukem *
710 1.15 lukem * sx is the same for the second differences.
711 1.15 lukem */
712 1.15 lukem
713 1.15 lukem /*
714 1.15 lukem * if we have a net insert on the first difference, AND inserting the
715 1.15 lukem * net amount ((nsb-nfd) - (osb-ofd)) won't push the last useful
716 1.15 lukem * character (which is ne if nls != ne, otherwise is nse) off the edge
717 1.15 lukem * of the screen (el->el_term.t_size.h) else we do the deletes first
718 1.15 lukem * so that we keep everything we need to.
719 1.15 lukem */
720 1.15 lukem
721 1.15 lukem /*
722 1.15 lukem * if the last same is the same like the end, there is no last same
723 1.15 lukem * part, otherwise we want to keep the last same part set p to the
724 1.15 lukem * last useful old character
725 1.15 lukem */
726 1.15 lukem p = (ols != oe) ? oe : ose;
727 1.15 lukem
728 1.15 lukem /*
729 1.15 lukem * if (There is a diffence in the beginning) && (we need to insert
730 1.15 lukem * characters) && (the number of characters to insert is less than
731 1.15 lukem * the term width)
732 1.15 lukem * We need to do an insert!
733 1.15 lukem * else if (we need to delete characters)
734 1.15 lukem * We need to delete characters!
735 1.15 lukem * else
736 1.15 lukem * No insert or delete
737 1.15 lukem */
738 1.15 lukem if ((nsb != nfd) && fx > 0 &&
739 1.15 lukem ((p - old) + fx <= el->el_term.t_size.h)) {
740 1.15 lukem ELRE_DEBUG(1,
741 1.17 lukem (__F, "first diff insert at %d...\r\n", nfd - new));
742 1.1 cgd /*
743 1.15 lukem * Move to the first char to insert, where the first diff is.
744 1.15 lukem */
745 1.29 christos term_move_to_char(el, (int)(nfd - new));
746 1.15 lukem /*
747 1.15 lukem * Check if we have stuff to keep at end
748 1.15 lukem */
749 1.15 lukem if (nsb != ne) {
750 1.17 lukem ELRE_DEBUG(1, (__F, "with stuff to keep at end\r\n"));
751 1.15 lukem /*
752 1.15 lukem * insert fx chars of new starting at nfd
753 1.15 lukem */
754 1.15 lukem if (fx > 0) {
755 1.15 lukem ELRE_DEBUG(!EL_CAN_INSERT, (__F,
756 1.17 lukem "ERROR: cannot insert in early first diff\n"));
757 1.15 lukem term_insertwrite(el, nfd, fx);
758 1.29 christos re_insert(el, old, (int)(ofd - old),
759 1.15 lukem el->el_term.t_size.h, nfd, fx);
760 1.15 lukem }
761 1.15 lukem /*
762 1.15 lukem * write (nsb-nfd) - fx chars of new starting at
763 1.15 lukem * (nfd + fx)
764 1.15 lukem */
765 1.30 christos len = (size_t) ((nsb - nfd) - fx);
766 1.30 christos term_overwrite(el, (nfd + fx), len);
767 1.30 christos re__strncopy(ofd + fx, nfd + fx, len);
768 1.15 lukem } else {
769 1.17 lukem ELRE_DEBUG(1, (__F, "without anything to save\r\n"));
770 1.30 christos len = (size_t)(nsb - nfd);
771 1.30 christos term_overwrite(el, nfd, len);
772 1.30 christos re__strncopy(ofd, nfd, len);
773 1.15 lukem /*
774 1.15 lukem * Done
775 1.15 lukem */
776 1.15 lukem return;
777 1.15 lukem }
778 1.15 lukem } else if (fx < 0) {
779 1.15 lukem ELRE_DEBUG(1,
780 1.17 lukem (__F, "first diff delete at %d...\r\n", ofd - old));
781 1.15 lukem /*
782 1.15 lukem * move to the first char to delete where the first diff is
783 1.15 lukem */
784 1.29 christos term_move_to_char(el, (int)(ofd - old));
785 1.15 lukem /*
786 1.15 lukem * Check if we have stuff to save
787 1.15 lukem */
788 1.15 lukem if (osb != oe) {
789 1.17 lukem ELRE_DEBUG(1, (__F, "with stuff to save at end\r\n"));
790 1.15 lukem /*
791 1.15 lukem * fx is less than zero *always* here but we check
792 1.15 lukem * for code symmetry
793 1.15 lukem */
794 1.15 lukem if (fx < 0) {
795 1.15 lukem ELRE_DEBUG(!EL_CAN_DELETE, (__F,
796 1.17 lukem "ERROR: cannot delete in first diff\n"));
797 1.15 lukem term_deletechars(el, -fx);
798 1.29 christos re_delete(el, old, (int)(ofd - old),
799 1.15 lukem el->el_term.t_size.h, -fx);
800 1.15 lukem }
801 1.15 lukem /*
802 1.15 lukem * write (nsb-nfd) chars of new starting at nfd
803 1.15 lukem */
804 1.30 christos len = (size_t) (nsb - nfd);
805 1.30 christos term_overwrite(el, nfd, len);
806 1.30 christos re__strncopy(ofd, nfd, len);
807 1.15 lukem
808 1.15 lukem } else {
809 1.15 lukem ELRE_DEBUG(1, (__F,
810 1.17 lukem "but with nothing left to save\r\n"));
811 1.15 lukem /*
812 1.15 lukem * write (nsb-nfd) chars of new starting at nfd
813 1.15 lukem */
814 1.30 christos term_overwrite(el, nfd, (size_t)(nsb - nfd));
815 1.29 christos re_clear_eol(el, fx, sx,
816 1.29 christos (int)((oe - old) - (ne - new)));
817 1.15 lukem /*
818 1.15 lukem * Done
819 1.15 lukem */
820 1.15 lukem return;
821 1.15 lukem }
822 1.15 lukem } else
823 1.15 lukem fx = 0;
824 1.15 lukem
825 1.15 lukem if (sx < 0 && (ose - old) + fx < el->el_term.t_size.h) {
826 1.15 lukem ELRE_DEBUG(1, (__F,
827 1.17 lukem "second diff delete at %d...\r\n", (ose - old) + fx));
828 1.15 lukem /*
829 1.15 lukem * Check if we have stuff to delete
830 1.15 lukem */
831 1.15 lukem /*
832 1.15 lukem * fx is the number of characters inserted (+) or deleted (-)
833 1.1 cgd */
834 1.15 lukem
835 1.29 christos term_move_to_char(el, (int)((ose - old) + fx));
836 1.15 lukem /*
837 1.15 lukem * Check if we have stuff to save
838 1.15 lukem */
839 1.15 lukem if (ols != oe) {
840 1.17 lukem ELRE_DEBUG(1, (__F, "with stuff to save at end\r\n"));
841 1.15 lukem /*
842 1.15 lukem * Again a duplicate test.
843 1.15 lukem */
844 1.15 lukem if (sx < 0) {
845 1.15 lukem ELRE_DEBUG(!EL_CAN_DELETE, (__F,
846 1.17 lukem "ERROR: cannot delete in second diff\n"));
847 1.15 lukem term_deletechars(el, -sx);
848 1.15 lukem }
849 1.15 lukem /*
850 1.15 lukem * write (nls-nse) chars of new starting at nse
851 1.15 lukem */
852 1.30 christos term_overwrite(el, nse, (size_t)(nls - nse));
853 1.15 lukem } else {
854 1.15 lukem ELRE_DEBUG(1, (__F,
855 1.17 lukem "but with nothing left to save\r\n"));
856 1.30 christos term_overwrite(el, nse, (size_t)(nls - nse));
857 1.29 christos re_clear_eol(el, fx, sx,
858 1.29 christos (int)((oe - old) - (ne - new)));
859 1.15 lukem }
860 1.15 lukem }
861 1.15 lukem /*
862 1.15 lukem * if we have a first insert AND WE HAVEN'T ALREADY DONE IT...
863 1.15 lukem */
864 1.15 lukem if ((nsb != nfd) && (osb - ofd) <= (nsb - nfd) && (fx == 0)) {
865 1.15 lukem ELRE_DEBUG(1, (__F, "late first diff insert at %d...\r\n",
866 1.17 lukem nfd - new));
867 1.15 lukem
868 1.29 christos term_move_to_char(el, (int)(nfd - new));
869 1.15 lukem /*
870 1.15 lukem * Check if we have stuff to keep at the end
871 1.15 lukem */
872 1.15 lukem if (nsb != ne) {
873 1.17 lukem ELRE_DEBUG(1, (__F, "with stuff to keep at end\r\n"));
874 1.15 lukem /*
875 1.15 lukem * We have to recalculate fx here because we set it
876 1.15 lukem * to zero above as a flag saying that we hadn't done
877 1.15 lukem * an early first insert.
878 1.15 lukem */
879 1.29 christos fx = (int)((nsb - nfd) - (osb - ofd));
880 1.15 lukem if (fx > 0) {
881 1.15 lukem /*
882 1.15 lukem * insert fx chars of new starting at nfd
883 1.15 lukem */
884 1.15 lukem ELRE_DEBUG(!EL_CAN_INSERT, (__F,
885 1.17 lukem "ERROR: cannot insert in late first diff\n"));
886 1.15 lukem term_insertwrite(el, nfd, fx);
887 1.29 christos re_insert(el, old, (int)(ofd - old),
888 1.15 lukem el->el_term.t_size.h, nfd, fx);
889 1.15 lukem }
890 1.15 lukem /*
891 1.15 lukem * write (nsb-nfd) - fx chars of new starting at
892 1.15 lukem * (nfd + fx)
893 1.15 lukem */
894 1.30 christos len = (size_t) ((nsb - nfd) - fx);
895 1.30 christos term_overwrite(el, (nfd + fx), len);
896 1.30 christos re__strncopy(ofd + fx, nfd + fx, len);
897 1.15 lukem } else {
898 1.17 lukem ELRE_DEBUG(1, (__F, "without anything to save\r\n"));
899 1.30 christos len = (size_t) (nsb - nfd);
900 1.30 christos term_overwrite(el, nfd, len);
901 1.30 christos re__strncopy(ofd, nfd, len);
902 1.15 lukem }
903 1.15 lukem }
904 1.15 lukem /*
905 1.15 lukem * line is now NEW up to nse
906 1.15 lukem */
907 1.15 lukem if (sx >= 0) {
908 1.15 lukem ELRE_DEBUG(1, (__F,
909 1.29 christos "second diff insert at %d...\r\n", (int)(nse - new)));
910 1.29 christos term_move_to_char(el, (int)(nse - new));
911 1.15 lukem if (ols != oe) {
912 1.17 lukem ELRE_DEBUG(1, (__F, "with stuff to keep at end\r\n"));
913 1.15 lukem if (sx > 0) {
914 1.15 lukem /* insert sx chars of new starting at nse */
915 1.15 lukem ELRE_DEBUG(!EL_CAN_INSERT, (__F,
916 1.17 lukem "ERROR: cannot insert in second diff\n"));
917 1.15 lukem term_insertwrite(el, nse, sx);
918 1.15 lukem }
919 1.15 lukem /*
920 1.15 lukem * write (nls-nse) - sx chars of new starting at
921 1.15 lukem * (nse + sx)
922 1.15 lukem */
923 1.29 christos term_overwrite(el, (nse + sx),
924 1.30 christos (size_t)((nls - nse) - sx));
925 1.15 lukem } else {
926 1.17 lukem ELRE_DEBUG(1, (__F, "without anything to save\r\n"));
927 1.30 christos term_overwrite(el, nse, (size_t)(nls - nse));
928 1.15 lukem
929 1.15 lukem /*
930 1.15 lukem * No need to do a clear-to-end here because we were
931 1.15 lukem * doing a second insert, so we will have over
932 1.15 lukem * written all of the old string.
933 1.15 lukem */
934 1.15 lukem }
935 1.15 lukem }
936 1.17 lukem ELRE_DEBUG(1, (__F, "done.\r\n"));
937 1.15 lukem }
938 1.1 cgd
939 1.1 cgd
940 1.1 cgd /* re__copy_and_pad():
941 1.1 cgd * Copy string and pad with spaces
942 1.1 cgd */
943 1.1 cgd private void
944 1.18 christos re__copy_and_pad(char *dst, const char *src, size_t width)
945 1.1 cgd {
946 1.21 thorpej size_t i;
947 1.1 cgd
948 1.15 lukem for (i = 0; i < width; i++) {
949 1.15 lukem if (*src == '\0')
950 1.15 lukem break;
951 1.15 lukem *dst++ = *src++;
952 1.15 lukem }
953 1.15 lukem
954 1.16 jdolecek for (; i < width; i++)
955 1.15 lukem *dst++ = ' ';
956 1.16 jdolecek
957 1.15 lukem *dst = '\0';
958 1.15 lukem }
959 1.1 cgd
960 1.1 cgd
961 1.1 cgd /* re_refresh_cursor():
962 1.1 cgd * Move to the new cursor position
963 1.1 cgd */
964 1.1 cgd protected void
965 1.15 lukem re_refresh_cursor(EditLine *el)
966 1.1 cgd {
967 1.15 lukem char *cp, c;
968 1.15 lukem int h, v, th;
969 1.15 lukem
970 1.22 christos if (el->el_line.cursor >= el->el_line.lastchar) {
971 1.22 christos if (el->el_map.current == el->el_map.alt
972 1.22 christos && el->el_line.lastchar != el->el_line.buffer)
973 1.22 christos el->el_line.cursor = el->el_line.lastchar - 1;
974 1.22 christos else
975 1.22 christos el->el_line.cursor = el->el_line.lastchar;
976 1.22 christos }
977 1.22 christos
978 1.15 lukem /* first we must find where the cursor is... */
979 1.15 lukem h = el->el_prompt.p_pos.h;
980 1.15 lukem v = el->el_prompt.p_pos.v;
981 1.15 lukem th = el->el_term.t_size.h; /* optimize for speed */
982 1.15 lukem
983 1.15 lukem /* do input buffer to el->el_line.cursor */
984 1.15 lukem for (cp = el->el_line.buffer; cp < el->el_line.cursor; cp++) {
985 1.15 lukem c = *cp;
986 1.15 lukem h++; /* all chars at least this long */
987 1.15 lukem
988 1.15 lukem if (c == '\n') {/* handle newline in data part too */
989 1.15 lukem h = 0;
990 1.15 lukem v++;
991 1.15 lukem } else {
992 1.15 lukem if (c == '\t') { /* if a tab, to next tab stop */
993 1.15 lukem while (h & 07) {
994 1.15 lukem h++;
995 1.15 lukem }
996 1.15 lukem } else if (iscntrl((unsigned char) c)) {
997 1.15 lukem /* if control char */
998 1.15 lukem h++;
999 1.15 lukem if (h > th) { /* if overflow, compensate */
1000 1.15 lukem h = 1;
1001 1.15 lukem v++;
1002 1.15 lukem }
1003 1.15 lukem } else if (!isprint((unsigned char) c)) {
1004 1.15 lukem h += 3;
1005 1.15 lukem if (h > th) { /* if overflow, compensate */
1006 1.15 lukem h = h - th;
1007 1.15 lukem v++;
1008 1.15 lukem }
1009 1.15 lukem }
1010 1.15 lukem }
1011 1.1 cgd
1012 1.15 lukem if (h >= th) { /* check, extra long tabs picked up here also */
1013 1.15 lukem h = 0;
1014 1.15 lukem v++;
1015 1.15 lukem }
1016 1.15 lukem }
1017 1.15 lukem
1018 1.15 lukem /* now go there */
1019 1.15 lukem term_move_to_line(el, v);
1020 1.15 lukem term_move_to_char(el, h);
1021 1.28 christos term__flush(el);
1022 1.15 lukem }
1023 1.1 cgd
1024 1.1 cgd
1025 1.1 cgd /* re_fastputc():
1026 1.1 cgd * Add a character fast.
1027 1.1 cgd */
1028 1.1 cgd private void
1029 1.15 lukem re_fastputc(EditLine *el, int c)
1030 1.1 cgd {
1031 1.15 lukem
1032 1.28 christos term__putc(el, c);
1033 1.15 lukem el->el_display[el->el_cursor.v][el->el_cursor.h++] = c;
1034 1.15 lukem if (el->el_cursor.h >= el->el_term.t_size.h) {
1035 1.15 lukem /* if we must overflow */
1036 1.15 lukem el->el_cursor.h = 0;
1037 1.16 jdolecek
1038 1.16 jdolecek /*
1039 1.16 jdolecek * If we would overflow (input is longer than terminal size),
1040 1.16 jdolecek * emulate scroll by dropping first line and shuffling the rest.
1041 1.16 jdolecek * We do this via pointer shuffling - it's safe in this case
1042 1.16 jdolecek * and we avoid memcpy().
1043 1.16 jdolecek */
1044 1.16 jdolecek if (el->el_cursor.v + 1 >= el->el_term.t_size.v) {
1045 1.16 jdolecek int i, lins = el->el_term.t_size.v;
1046 1.16 jdolecek char *firstline = el->el_display[0];
1047 1.16 jdolecek
1048 1.16 jdolecek for(i=1; i < lins; i++)
1049 1.16 jdolecek el->el_display[i-1] = el->el_display[i];
1050 1.16 jdolecek
1051 1.16 jdolecek re__copy_and_pad(firstline, "", 0);
1052 1.16 jdolecek el->el_display[i-1] = firstline;
1053 1.16 jdolecek } else {
1054 1.16 jdolecek el->el_cursor.v++;
1055 1.16 jdolecek el->el_refresh.r_oldcv++;
1056 1.16 jdolecek }
1057 1.15 lukem if (EL_HAS_AUTO_MARGINS) {
1058 1.15 lukem if (EL_HAS_MAGIC_MARGINS) {
1059 1.28 christos term__putc(el, ' ');
1060 1.28 christos term__putc(el, '\b');
1061 1.15 lukem }
1062 1.15 lukem } else {
1063 1.28 christos term__putc(el, '\r');
1064 1.28 christos term__putc(el, '\n');
1065 1.15 lukem }
1066 1.12 christos }
1067 1.15 lukem }
1068 1.1 cgd
1069 1.1 cgd
1070 1.1 cgd /* re_fastaddc():
1071 1.1 cgd * we added just one char, handle it fast.
1072 1.8 simonb * Assumes that screen cursor == real cursor
1073 1.1 cgd */
1074 1.1 cgd protected void
1075 1.15 lukem re_fastaddc(EditLine *el)
1076 1.1 cgd {
1077 1.15 lukem char c;
1078 1.15 lukem int rhdiff;
1079 1.1 cgd
1080 1.15 lukem c = el->el_line.cursor[-1];
1081 1.1 cgd
1082 1.15 lukem if (c == '\t' || el->el_line.cursor != el->el_line.lastchar) {
1083 1.15 lukem re_refresh(el); /* too hard to handle */
1084 1.15 lukem return;
1085 1.15 lukem }
1086 1.15 lukem rhdiff = el->el_term.t_size.h - el->el_cursor.h -
1087 1.15 lukem el->el_rprompt.p_pos.h;
1088 1.15 lukem if (el->el_rprompt.p_pos.h && rhdiff < 3) {
1089 1.15 lukem re_refresh(el); /* clear out rprompt if less than 1 char gap */
1090 1.15 lukem return;
1091 1.15 lukem } /* else (only do at end of line, no TAB) */
1092 1.15 lukem if (iscntrl((unsigned char) c)) { /* if control char, do caret */
1093 1.15 lukem char mc = (c == '\177') ? '?' : (c | 0100);
1094 1.15 lukem re_fastputc(el, '^');
1095 1.15 lukem re_fastputc(el, mc);
1096 1.15 lukem } else if (isprint((unsigned char) c)) { /* normal char */
1097 1.15 lukem re_fastputc(el, c);
1098 1.15 lukem } else {
1099 1.15 lukem re_fastputc(el, '\\');
1100 1.24 christos re_fastputc(el, (int)(((((unsigned int)c) >> 6) & 3) + '0'));
1101 1.24 christos re_fastputc(el, (int)(((((unsigned int)c) >> 3) & 7) + '0'));
1102 1.15 lukem re_fastputc(el, (c & 7) + '0');
1103 1.15 lukem }
1104 1.28 christos term__flush(el);
1105 1.15 lukem }
1106 1.1 cgd
1107 1.1 cgd
1108 1.1 cgd /* re_clear_display():
1109 1.8 simonb * clear the screen buffers so that new new prompt starts fresh.
1110 1.1 cgd */
1111 1.1 cgd protected void
1112 1.15 lukem re_clear_display(EditLine *el)
1113 1.1 cgd {
1114 1.15 lukem int i;
1115 1.1 cgd
1116 1.15 lukem el->el_cursor.v = 0;
1117 1.15 lukem el->el_cursor.h = 0;
1118 1.15 lukem for (i = 0; i < el->el_term.t_size.v; i++)
1119 1.15 lukem el->el_display[i][0] = '\0';
1120 1.15 lukem el->el_refresh.r_oldcv = 0;
1121 1.15 lukem }
1122 1.1 cgd
1123 1.1 cgd
1124 1.1 cgd /* re_clear_lines():
1125 1.8 simonb * Make sure all lines are *really* blank
1126 1.1 cgd */
1127 1.1 cgd protected void
1128 1.15 lukem re_clear_lines(EditLine *el)
1129 1.1 cgd {
1130 1.15 lukem
1131 1.15 lukem if (EL_CAN_CEOL) {
1132 1.15 lukem int i;
1133 1.15 lukem term_move_to_char(el, 0);
1134 1.15 lukem for (i = 0; i <= el->el_refresh.r_oldcv; i++) {
1135 1.15 lukem /* for each line on the screen */
1136 1.15 lukem term_move_to_line(el, i);
1137 1.15 lukem term_clear_EOL(el, el->el_term.t_size.h);
1138 1.15 lukem }
1139 1.15 lukem term_move_to_line(el, 0);
1140 1.15 lukem } else {
1141 1.15 lukem term_move_to_line(el, el->el_refresh.r_oldcv);
1142 1.15 lukem /* go to last line */
1143 1.28 christos term__putc(el, '\r'); /* go to BOL */
1144 1.28 christos term__putc(el, '\n'); /* go to new line */
1145 1.15 lukem }
1146 1.15 lukem }
1147