hardscroll.c revision 262629
1/****************************************************************************
2 * Copyright (c) 1998-2009,2010 Free Software Foundation, Inc.              *
3 *                                                                          *
4 * Permission is hereby granted, free of charge, to any person obtaining a  *
5 * copy of this software and associated documentation files (the            *
6 * "Software"), to deal in the Software without restriction, including      *
7 * without limitation the rights to use, copy, modify, merge, publish,      *
8 * distribute, distribute with modifications, sublicense, and/or sell       *
9 * copies of the Software, and to permit persons to whom the Software is    *
10 * furnished to do so, subject to the following conditions:                 *
11 *                                                                          *
12 * The above copyright notice and this permission notice shall be included  *
13 * in all copies or substantial portions of the Software.                   *
14 *                                                                          *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS  *
16 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF               *
17 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.   *
18 * IN NO EVENT SHALL THE ABOVE COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,   *
19 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR    *
20 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR    *
21 * THE USE OR OTHER DEALINGS IN THE SOFTWARE.                               *
22 *                                                                          *
23 * Except as contained in this notice, the name(s) of the above copyright   *
24 * holders shall not be used in advertising or otherwise to promote the     *
25 * sale, use or other dealings in this Software without prior written       *
26 * authorization.                                                           *
27 ****************************************************************************/
28
29/****************************************************************************
30 *  Author: Zeyd M. Ben-Halim <zmbenhal@netcom.com> 1992,1995               *
31 *     and: Eric S. Raymond <esr@snark.thyrsus.com>                         *
32 *     and: Thomas E. Dickey                        1996-on                 *
33 *     and: Alexander V Lukyanov                    1997-1998               *
34 ****************************************************************************/
35
36/******************************************************************************
37
38NAME
39   hardscroll.c -- hardware-scrolling optimization for ncurses
40
41SYNOPSIS
42   void _nc_scroll_optimize(void)
43
44DESCRIPTION
45			OVERVIEW
46
47This algorithm for computes optimum hardware scrolling to transform an
48old screen (curscr) into a new screen (newscr) via vertical line moves.
49
50Because the screen has a `grain' (there are insert/delete/scroll line
51operations but no insert/delete/scroll column operations), it is efficient
52break the update algorithm into two pieces: a first stage that does only line
53moves, optimizing the end product of user-invoked insertions, deletions, and
54scrolls; and a second phase (corresponding to the present doupdate code in
55ncurses) that does only line transformations.
56
57The common case we want hardware scrolling for is to handle line insertions
58and deletions in screen-oriented text-editors.  This two-stage approach will
59accomplish that at a low computation and code-size cost.
60
61			LINE-MOVE COMPUTATION
62
63Now, to a discussion of the line-move computation.
64
65For expository purposes, consider the screen lines to be represented by
66integers 0..23 (with the understanding that the value of 23 may vary).
67Let a new line introduced by insertion, scrolling, or at the bottom of
68the screen following a line delete be given the index -1.
69
70Assume that the real screen starts with lines 0..23.  Now, we have
71the following possible line-oriented operations on the screen:
72
73Insertion: inserts a line at a given screen row, forcing all lines below
74to scroll forward.  The last screen line is lost.  For example, an insertion
75at line 5 would produce: 0..4 -1 5..23.
76
77Deletion: deletes a line at a given screen row, forcing all lines below
78to scroll forward.  The last screen line is made new.  For example, a deletion
79at line 7 would produce: 0..6 8..23 -1.
80
81Scroll up: move a range of lines up 1.  The bottom line of the range
82becomes new.  For example, scrolling up the region from 9 to 14 will
83produce 0..8 10..14 -1 15..23.
84
85Scroll down: move a range of lines down 1.  The top line of the range
86becomes new.  For example, scrolling down the region from 12 to 16 will produce
870..11 -1 12..15 17..23.
88
89Now, an obvious property of all these operations is that they preserve the
90order of old lines, though not their position in the sequence.
91
92The key trick of this algorithm is that the original line indices described
93above are actually maintained as _line[].oldindex fields in the window
94structure, and stick to each line through scroll and insert/delete operations.
95
96Thus, it is possible at update time to look at the oldnum fields and compute
97an optimal set of il/dl/scroll operations that will take the real screen
98lines to the virtual screen lines.  Once these vertical moves have been done,
99we can hand off to the second stage of the update algorithm, which does line
100transformations.
101
102Note that the move computation does not need to have the full generality
103of a diff algorithm (which it superficially resembles) because lines cannot
104be moved out of order.
105
106			THE ALGORITHM
107
108The scrolling is done in two passes. The first pass is from top to bottom
109scroling hunks UP. The second one is from bottom to top scrolling hunks DOWN.
110Obviously enough, no lines to be scrolled will be destroyed. (lav)
111
112HOW TO TEST THIS:
113
114Use the following production:
115
116hardscroll: hardscroll.c
117	$(CC) -g -DSCROLLDEBUG hardscroll.c -o hardscroll
118
119Then just type scramble vectors and watch.  The following test loads are
120a representative sample of cases:
121
122-----------------------------  CUT HERE ------------------------------------
123# No lines moved
124 0  1  2  3  4  5  6  7  8  9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
125#
126# A scroll up
127 1  2  3  4  5  6  7  8  9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 -1
128#
129# A scroll down
130-1  0  1  2  3  4  5  6  7  8  9 10 11 12 13 14 15 16 17 18 19 20 21 22
131#
132# An insertion (after line 12)
133 0  1  2  3  4  5  6  7  8  9 10 11 12 -1 13 14 15 16 17 18 19 20 21 22
134#
135# A simple deletion (line 10)
136 0  1  2  3  4  5  6  7  8  9  11 12 13 14 15 16 17 18 19 20 21 22 23 -1
137#
138# A more complex case
139-1 -1 -1 -1 -1  3  4  5  6  7  -1 -1  8  9 10 11 12 13 14 15 16 17 -1 -1
140-----------------------------  CUT HERE ------------------------------------
141
142AUTHOR
143    Eric S. Raymond <esr@snark.thyrsus.com>, November 1994
144    New algorithm by Alexander V. Lukyanov <lav@yars.free.net>, Aug 1997
145
146*****************************************************************************/
147
148#include <curses.priv.h>
149
150MODULE_ID("$Id: hardscroll.c,v 1.47 2010/04/24 23:46:47 tom Exp $")
151
152#if defined(SCROLLDEBUG) || defined(HASHDEBUG)
153
154# undef screen_lines
155# define screen_lines(sp) MAXLINES
156NCURSES_EXPORT_VAR (int)
157  oldnums[MAXLINES];
158# define OLDNUM(sp,n)	oldnums[n]
159# define _tracef	printf
160# undef TR
161# define TR(n, a)	if (_nc_tracing & (n)) { _tracef a ; putchar('\n'); }
162
163extern				NCURSES_EXPORT_VAR(unsigned) _nc_tracing;
164
165#else /* no debug */
166
167/* OLDNUM(n) indicates which line will be shifted to the position n.
168   if OLDNUM(n) == _NEWINDEX, then the line n in new, not shifted from
169   somewhere. */
170NCURSES_EXPORT_VAR (int *)
171  _nc_oldnums = 0;		/* obsolete: keep for ABI compat */
172
173# if USE_HASHMAP
174#  define oldnums(sp)   (sp)->_oldnum_list
175#  define OLDNUM(sp,n)	oldnums(sp)[n]
176# else				/* !USE_HASHMAP */
177#  define OLDNUM(sp,n)	NewScreen(sp)->_line[n].oldindex
178# endif				/* !USE_HASHMAP */
179
180#define OLDNUM_SIZE(sp) (sp)->_oldnum_size
181
182#endif /* defined(SCROLLDEBUG) || defined(HASHDEBUG) */
183
184NCURSES_EXPORT(void)
185NCURSES_SP_NAME(_nc_scroll_optimize) (NCURSES_SP_DCL0)
186/* scroll optimization to transform curscr to newscr */
187{
188    int i;
189    int start, end, shift;
190
191    TR(TRACE_ICALLS, (T_CALLED("_nc_scroll_optimize(%p)"), (void *) SP_PARM));
192
193#if !defined(SCROLLDEBUG) && !defined(HASHDEBUG)
194#if USE_HASHMAP
195    /* get enough storage */
196    if (OLDNUM_SIZE(SP_PARM) < screen_lines(SP_PARM)) {
197	int *new_oldnums = typeRealloc(int,
198				       (size_t) screen_lines(SP_PARM),
199				       oldnums(SP_PARM));
200	if (!new_oldnums)
201	    return;
202	oldnums(SP_PARM) = new_oldnums;
203	OLDNUM_SIZE(SP_PARM) = screen_lines(SP_PARM);
204    }
205    /* calculate the indices */
206    NCURSES_SP_NAME(_nc_hash_map) (NCURSES_SP_ARG);
207#endif
208#endif /* !defined(SCROLLDEBUG) && !defined(HASHDEBUG) */
209
210#ifdef TRACE
211    if (USE_TRACEF(TRACE_UPDATE | TRACE_MOVE)) {
212	NCURSES_SP_NAME(_nc_linedump) (NCURSES_SP_ARG);
213	_nc_unlock_global(tracef);
214    }
215#endif /* TRACE */
216
217    /* pass 1 - from top to bottom scrolling up */
218    for (i = 0; i < screen_lines(SP_PARM);) {
219	while (i < screen_lines(SP_PARM)
220	       && (OLDNUM(SP_PARM, i) == _NEWINDEX || OLDNUM(SP_PARM, i) <= i))
221	    i++;
222	if (i >= screen_lines(SP_PARM))
223	    break;
224
225	shift = OLDNUM(SP_PARM, i) - i;		/* shift > 0 */
226	start = i;
227
228	i++;
229	while (i < screen_lines(SP_PARM)
230	       && OLDNUM(SP_PARM, i) != _NEWINDEX
231	       && OLDNUM(SP_PARM, i) - i == shift)
232	    i++;
233	end = i - 1 + shift;
234
235	TR(TRACE_UPDATE | TRACE_MOVE, ("scroll [%d, %d] by %d", start, end, shift));
236#if !defined(SCROLLDEBUG) && !defined(HASHDEBUG)
237	if (NCURSES_SP_NAME(_nc_scrolln) (NCURSES_SP_ARGx
238					  shift,
239					  start,
240					  end,
241					  screen_lines(SP_PARM) - 1) == ERR) {
242	    TR(TRACE_UPDATE | TRACE_MOVE, ("unable to scroll"));
243	    continue;
244	}
245#endif /* !defined(SCROLLDEBUG) && !defined(HASHDEBUG) */
246    }
247
248    /* pass 2 - from bottom to top scrolling down */
249    for (i = screen_lines(SP_PARM) - 1; i >= 0;) {
250	while (i >= 0
251	       && (OLDNUM(SP_PARM, i) == _NEWINDEX
252		   || OLDNUM(SP_PARM, i) >= i)) {
253	    i--;
254	}
255	if (i < 0)
256	    break;
257
258	shift = OLDNUM(SP_PARM, i) - i;		/* shift < 0 */
259	end = i;
260
261	i--;
262	while (i >= 0
263	       && OLDNUM(SP_PARM, i) != _NEWINDEX
264	       && OLDNUM(SP_PARM, i) - i == shift) {
265	    i--;
266	}
267	start = i + 1 - (-shift);
268
269	TR(TRACE_UPDATE | TRACE_MOVE, ("scroll [%d, %d] by %d", start, end, shift));
270#if !defined(SCROLLDEBUG) && !defined(HASHDEBUG)
271	if (NCURSES_SP_NAME(_nc_scrolln) (NCURSES_SP_ARGx
272					  shift,
273					  start,
274					  end,
275					  screen_lines(SP_PARM) - 1) == ERR) {
276	    TR(TRACE_UPDATE | TRACE_MOVE, ("unable to scroll"));
277	    continue;
278	}
279#endif /* !defined(SCROLLDEBUG) && !defined(HASHDEBUG) */
280    }
281    TR(TRACE_ICALLS, (T_RETURN("")));
282}
283
284#if NCURSES_SP_FUNCS
285NCURSES_EXPORT(void)
286_nc_scroll_optimize(void)
287{
288    NCURSES_SP_NAME(_nc_scroll_optimize) (CURRENT_SCREEN);
289}
290#endif
291
292#if defined(TRACE) || defined(SCROLLDEBUG) || defined(HASHDEBUG)
293NCURSES_EXPORT(void)
294NCURSES_SP_NAME(_nc_linedump) (NCURSES_SP_DCL0)
295/* dump the state of the real and virtual oldnum fields */
296{
297    int n;
298    char *buf = 0;
299    size_t want = ((size_t) screen_lines(SP_PARM) + 1) * 4;
300
301    if ((buf = typeMalloc(char, want)) != 0) {
302
303	*buf = '\0';
304	for (n = 0; n < screen_lines(SP_PARM); n++)
305	    (void) sprintf(buf + strlen(buf), " %02d", OLDNUM(SP_PARM, n));
306	TR(TRACE_UPDATE | TRACE_MOVE, ("virt %s", buf));
307	free(buf);
308    }
309}
310
311#if NCURSES_SP_FUNCS
312NCURSES_EXPORT(void)
313_nc_linedump(void)
314{
315    NCURSES_SP_NAME(_nc_linedump) (CURRENT_SCREEN);
316}
317#endif
318
319#endif /* defined(TRACE) || defined(SCROLLDEBUG) */
320
321#ifdef SCROLLDEBUG
322
323int
324main(int argc GCC_UNUSED, char *argv[]GCC_UNUSED)
325{
326    char line[BUFSIZ], *st;
327
328#ifdef TRACE
329    _nc_tracing = TRACE_MOVE;
330#endif
331    for (;;) {
332	int n;
333
334	for (n = 0; n < screen_lines; n++)
335	    oldnums[n] = _NEWINDEX;
336
337	/* grab the test vector */
338	if (fgets(line, sizeof(line), stdin) == (char *) NULL)
339	    exit(EXIT_SUCCESS);
340
341	/* parse it */
342	n = 0;
343	if (line[0] == '#') {
344	    (void) fputs(line, stderr);
345	    continue;
346	}
347	st = strtok(line, " ");
348	do {
349	    oldnums[n++] = atoi(st);
350	} while
351	    ((st = strtok((char *) NULL, " ")) != 0);
352
353	/* display it */
354	(void) fputs("Initial input:\n", stderr);
355	_nc_linedump();
356
357	_nc_scroll_optimize();
358    }
359}
360
361#endif /* SCROLLDEBUG */
362
363/* hardscroll.c ends here */
364