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diffreg.c
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/* $OpenBSD: diffreg.c,v 1.91 2016/03/01 20:57:35 natano Exp $ */
/*-
* SPDX-License-Identifier: BSD-4-Clause
*
* Copyright (C) Caldera International Inc. 2001-2002.
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code and documentation must retain the above
* copyright notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. All advertising materials mentioning features or use of this software
* must display the following acknowledgement:
* This product includes software developed or owned by Caldera
* International, Inc.
* 4. Neither the name of Caldera International, Inc. nor the names of other
* contributors may be used to endorse or promote products derived from
* this software without specific prior written permission.
*
* USE OF THE SOFTWARE PROVIDED FOR UNDER THIS LICENSE BY CALDERA
* INTERNATIONAL, INC. AND CONTRIBUTORS ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
* IN NO EVENT SHALL CALDERA INTERNATIONAL, INC. BE LIABLE FOR ANY DIRECT,
* INDIRECT INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
* STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
* IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
* POSSIBILITY OF SUCH DAMAGE.
*/
/*-
* Copyright (c) 1991, 1993
* The Regents of the University of California. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. Neither the name of the University nor the names of its contributors
* may be used to endorse or promote products derived from this software
* without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
* ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
* SUCH DAMAGE.
*
* @(#)diffreg.c 8.1 (Berkeley) 6/6/93
*/
#include <sys/cdefs.h>
__FBSDID("$FreeBSD$");
// #include <sys/capsicum.h>
// #include <sys/procdesc.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <sys/event.h>
#include <sys/wait.h>
//#include <capsicum_helpers.h>
#include <ctype.h>
#include <err.h>
#include <errno.h>
#include <fcntl.h>
#include <paths.h>
#include <regex.h>
#include <stddef.h>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include <limits.h>
#include <signal.h>
#include <time.h>
#include "diff.h"
#include "xmalloc.h"
#include "ios_error.h"
// #define _PATH_PR "/usr/bin/pr"
#define MIN(a,b) ((a) < (b) ? (a) : (b))
#define MAX(a,b) ((a) > (b) ? (a) : (b))
/*
* diff - compare two files.
*/
/*
* Uses an algorithm due to Harold Stone, which finds
* a pair of longest identical subsequences in the two
* files.
*
* The major goal is to generate the match vector J.
* J[i] is the index of the line in file1 corresponding
* to line i file0. J[i] = 0 if there is no
* such line in file1.
*
* Lines are hashed so as to work in core. All potential
* matches are located by sorting the lines of each file
* on the hash (called ``value''). In particular, this
* collects the equivalence classes in file1 together.
* Subroutine equiv replaces the value of each line in
* file0 by the index of the first element of its
* matching equivalence in (the reordered) file1.
* To save space equiv squeezes file1 into a single
* array member in which the equivalence classes
* are simply concatenated, except that their first
* members are flagged by changing sign.
*
* Next the indices that point into member are unsorted into
* array class according to the original order of file0.
*
* The cleverness lies in routine stone. This marches
* through the lines of file0, developing a vector klist
* of "k-candidates". At step i a k-candidate is a matched
* pair of lines x,y (x in file0 y in file1) such that
* there is a common subsequence of length k
* between the first i lines of file0 and the first y
* lines of file1, but there is no such subsequence for
* any smaller y. x is the earliest possible mate to y
* that occurs in such a subsequence.
*
* Whenever any of the members of the equivalence class of
* lines in file1 matable to a line in file0 has serial number
* less than the y of some k-candidate, that k-candidate
* with the smallest such y is replaced. The new
* k-candidate is chained (via pred) to the current
* k-1 candidate so that the actual subsequence can
* be recovered. When a member has serial number greater
* that the y of all k-candidates, the klist is extended.
* At the end, the longest subsequence is pulled out
* and placed in the array J by unravel
*
* With J in hand, the matches there recorded are
* check'ed against reality to assure that no spurious
* matches have crept in due to hashing. If they have,
* they are broken, and "jackpot" is recorded--a harmless
* matter except that a true match for a spuriously
* mated line may now be unnecessarily reported as a change.
*
* Much of the complexity of the program comes simply
* from trying to minimize core utilization and
* maximize the range of doable problems by dynamically
* allocating what is needed and reusing what is not.
* The core requirements for problems larger than somewhat
* are (in words) 2*length(file0) + length(file1) +
* 3*(number of k-candidates installed), typically about
* 6n words for files of length n.
*/
struct cand {
int x;
int y;
int pred;
};
static struct line {
int serial;
int value;
} *file[2];
/*
* The following struct is used to record change information when
* doing a "context" or "unified" diff. (see routine "change" to
* understand the highly mnemonic field names)
*/
struct context_vec {
int a; /* start line in old file */
int b; /* end line in old file */
int c; /* start line in new file */
int d; /* end line in new file */
};
// iOS: replaced this define with a replace_all
#define diff_output printf
static FILE *opentemp(const char *);
static void output(char *, FILE *, char *, FILE *, int);
static void check(FILE *, FILE *, int);
static void range(int, int, const char *);
static void uni_range(int, int);
static void dump_context_vec(FILE *, FILE *, int);
static void dump_unified_vec(FILE *, FILE *, int);
static void prepare(int, FILE *, size_t, int);
static void prune(void);
static void equiv(struct line *, int, struct line *, int, int *);
static void unravel(int);
static void unsort(struct line *, int, int *);
static void change(char *, FILE *, char *, FILE *, int, int, int, int, int *);
static void sort(struct line *, int);
static void print_header(const char *, const char *);
static int ignoreline(char *);
static int asciifile(FILE *);
static int fetch(long *, int, int, FILE *, int, int, int);
static int newcand(int, int, int);
static int search(int *, int, int);
static int skipline(FILE *);
static int isqrt(int);
static int stone(int *, int, int *, int *, int);
static int readhash(FILE *, int);
static int files_differ(FILE *, FILE *, int);
static char *match_function(const long *, int, FILE *);
static char *preadline(int, size_t, off_t);
static int *J; /* will be overlaid on class */
static int *class; /* will be overlaid on file[0] */
static int *klist; /* will be overlaid on file[0] after class */
static int *member; /* will be overlaid on file[1] */
static int clen;
static int inifdef; /* whether or not we are in a #ifdef block */
static int len[2];
static int pref, suff; /* length of prefix and suffix */
static int slen[2];
static int anychange;
static long *ixnew; /* will be overlaid on file[1] */
static long *ixold; /* will be overlaid on klist */
static struct cand *clist; /* merely a free storage pot for candidates */
static int clistlen; /* the length of clist */
static struct line *sfile[2]; /* shortened by pruning common prefix/suffix */
static int (*chrtran)(int); /* translation table for case-folding */
static struct context_vec *context_vec_start;
static struct context_vec *context_vec_end;
static struct context_vec *context_vec_ptr;
#define FUNCTION_CONTEXT_SIZE 55
static char lastbuf[FUNCTION_CONTEXT_SIZE];
static int lastline;
static int lastmatchline;
static int
clow2low(int c)
{
return (c);
}
static int
cup2low(int c)
{
return tolower(c);
}
int
diffreg(char *file1, char *file2, int flags, int capsicum)
{
FILE *f1, *f2;
int i, rval;
int ostdout = -1;
int pr_pd, kq;
struct kevent *e;
// cap_rights_t rights_ro;
e = NULL;
kq = -1;
f1 = f2 = NULL;
rval = D_SAME;
anychange = 0;
lastline = 0;
lastmatchline = 0;
J = NULL; /* will be overlaid on class */
class = NULL; /* will be overlaid on file[0] */
klist = NULL; /* will be overlaid on file[0] after class */
member = NULL; /* will be overlaid on file[1] */
clen = 0;
inifdef = 0; /* whether or not we are in a #ifdef block */
len[0] = 0;
len[1] = 0;
pref = 0;
suff = 0; /* length of prefix and suffix */
slen[0] = 0;
slen[1] = 0;
ixnew = NULL; /* will be overlaid on file[1] */
ixold = NULL; /* will be overlaid on klist */
clist = NULL; /* merely a free storage pot for candidates */
clistlen = 0; /* the length of clist */
sfile[0] = NULL; /* shortened by pruning common prefix/suffix */
sfile[1] = NULL; /* shortened by pruning common prefix/suffix */
context_vec_start = NULL;
context_vec_end = NULL;
context_vec_ptr = NULL;
// NH: This line crashes if diff is run inside Xcode (pointer overflow), but not otherwise.
context_vec_ptr = context_vec_start - 1;
if (flags & D_IGNORECASE)
chrtran = cup2low;
else
chrtran = clow2low;
if (S_ISDIR(stb1.st_mode) != S_ISDIR(stb2.st_mode))
return (S_ISDIR(stb1.st_mode) ? D_MISMATCH1 : D_MISMATCH2);
if (strcmp(file1, "-") == 0 && strcmp(file2, "-") == 0)
goto closem;
if (flags & D_EMPTY1)
f1 = fopen(_PATH_DEVNULL, "r");
else {
if (!S_ISREG(stb1.st_mode)) {
if ((f1 = opentemp(file1)) == NULL ||
fstat(fileno(f1), &stb1) < 0) {
warn("%s", file1);
status |= 2;
goto closem;
}
} else if (strcmp(file1, "-") == 0)
f1 = stdin;
else
f1 = fopen(file1, "r");
}
if (f1 == NULL) {
warn("%s", file1);
status |= 2;
goto closem;
}
if (flags & D_EMPTY2)
f2 = fopen(_PATH_DEVNULL, "r");
else {
if (!S_ISREG(stb2.st_mode)) {
if ((f2 = opentemp(file2)) == NULL ||
fstat(fileno(f2), &stb2) < 0) {
warn("%s", file2);
status |= 2;
goto closem;
}
} else if (strcmp(file2, "-") == 0)
f2 = stdin;
else
f2 = fopen(file2, "r");
}
if (f2 == NULL) {
warn("%s", file2);
status |= 2;
goto closem;
}
#if 0
if (lflag) {
/* redirect stdout to pr */
int pfd[2];
pid_t pid;
char *header;
xasprintf(&header, "%s %s %s", diffargs, file1, file2);
signal(SIGPIPE, SIG_IGN);
fflush(stdout);
rewind(stdout);
pipe(pfd);
switch ((pid = pdfork(&pr_pd, PD_CLOEXEC))) {
case -1:
status |= 2;
free(header);
err(2, "No more processes");
case 0:
/* child */
if (pfd[0] != STDIN_FILENO) {
dup2(pfd[0], STDIN_FILENO);
close(pfd[0]);
}
close(pfd[1]);
execl(_PATH_PR, _PATH_PR, "-h", header, (char *)0);
_exit(127);
default:
/* parent */
if (pfd[1] != STDOUT_FILENO) {
ostdout = dup(STDOUT_FILENO);
dup2(pfd[1], STDOUT_FILENO);
close(pfd[1]);
}
close(pfd[0]);
rewind(stdout);
free(header);
kq = kqueue();
if (kq == -1)
err(2, "kqueue");
e = xmalloc(sizeof(struct kevent));
EV_SET(e, pr_pd, EVFILT_PROCDESC, EV_ADD, NOTE_EXIT, 0,
NULL);
if (kevent(kq, e, 1, NULL, 0, NULL) == -1)
err(2, "kevent");
}
}
#endif
#if 0
if (capsicum) {
cap_rights_init(&rights_ro, CAP_READ, CAP_FSTAT, CAP_SEEK);
if (cap_rights_limit(fileno(f1), &rights_ro) < 0
&& errno != ENOSYS)
err(2, "unable to limit rights on: %s", file1);
if (cap_rights_limit(fileno(f2), &rights_ro) < 0 &&
errno != ENOSYS)
err(2, "unable to limit rights on: %s", file2);
if (fileno(f1) == STDIN_FILENO || fileno(f2) == STDIN_FILENO) {
/* stding has already been limited */
if (caph_limit_stderr() == -1)
err(2, "unable to limit stderr");
if (caph_limit_stdout() == -1)
err(2, "unable to limit stdout");
} else if (caph_limit_stdio() == -1)
err(2, "unable to limit stdio");
caph_cache_catpages();
caph_cache_tzdata();
if (cap_enter() < 0 && errno != ENOSYS)
err(2, "unable to enter capability mode");
}
#endif
switch (files_differ(f1, f2, flags)) {
case 0:
goto closem;
case 1:
break;
default:
/* error */
status |= 2;
goto closem;
}
if ((flags & D_FORCEASCII) == 0 &&
(!asciifile(f1) || !asciifile(f2))) {
rval = D_BINARY;
status |= 1;
goto closem;
}
prepare(0, f1, stb1.st_size, flags);
prepare(1, f2, stb2.st_size, flags);
prune();
sort(sfile[0], slen[0]);
sort(sfile[1], slen[1]);
member = (int *)file[1];
equiv(sfile[0], slen[0], sfile[1], slen[1], member);
member = xreallocarray(member, slen[1] + 2, sizeof(*member));
class = (int *)file[0];
unsort(sfile[0], slen[0], class);
class = xreallocarray(class, slen[0] + 2, sizeof(*class));
klist = xcalloc(slen[0] + 2, sizeof(*klist));
clen = 0;
clistlen = 100;
clist = xcalloc(clistlen, sizeof(*clist));
i = stone(class, slen[0], member, klist, flags);
free(member);
free(class);
J = xreallocarray(J, len[0] + 2, sizeof(*J));
unravel(klist[i]);
free(clist);
free(klist);
ixold = xreallocarray(ixold, len[0] + 2, sizeof(*ixold));
ixnew = xreallocarray(ixnew, len[1] + 2, sizeof(*ixnew));
check(f1, f2, flags);
output(file1, f1, file2, f2, flags);
if (ostdout != -1 && e != NULL) {
/* close the pipe to pr and restore stdout */
int wstatus;
fflush(stdout);
if (ostdout != STDOUT_FILENO) {
close(STDOUT_FILENO);
dup2(ostdout, STDOUT_FILENO);
close(ostdout);
}
if (kevent(kq, NULL, 0, e, 1, NULL) == -1)
err(2, "kevent");
wstatus = e[0].data;
close(kq);
if (WIFEXITED(wstatus) && WEXITSTATUS(wstatus) != 0)
errx(2, "pr exited abnormally");
else if (WIFSIGNALED(wstatus))
errx(2, "pr killed by signal %d",
WTERMSIG(wstatus));
}
closem:
if (anychange) {
status |= 1;
if (rval == D_SAME)
rval = D_DIFFER;
}
if (f1 != NULL)
fclose(f1);
if (f2 != NULL)
fclose(f2);
return (rval);
}
/*
* Check to see if the given files differ.
* Returns 0 if they are the same, 1 if different, and -1 on error.
* XXX - could use code from cmp(1) [faster]
*/
static int
files_differ(FILE *f1, FILE *f2, int flags)
{
char buf1[BUFSIZ], buf2[BUFSIZ];
size_t i, j;
if ((flags & (D_EMPTY1|D_EMPTY2)) || stb1.st_size != stb2.st_size ||
(stb1.st_mode & S_IFMT) != (stb2.st_mode & S_IFMT))
return (1);
for (;;) {
i = fread(buf1, 1, sizeof(buf1), f1);
j = fread(buf2, 1, sizeof(buf2), f2);
if ((!i && ferror(f1)) || (!j && ferror(f2)))
return (-1);
if (i != j)
return (1);
if (i == 0)
return (0);
if (memcmp(buf1, buf2, i) != 0)
return (1);
}
}
static FILE *
opentemp(const char *f)
{
char buf[BUFSIZ], tempfile[PATH_MAX];
ssize_t nread;
int ifd, ofd;
if (strcmp(f, "-") == 0)
ifd = STDIN_FILENO;
else if ((ifd = open(f, O_RDONLY, 0644)) < 0)
return (NULL);
(void)strlcpy(tempfile, _PATH_TMP "/diff.XXXXXXXX", sizeof(tempfile));
if ((ofd = mkstemp(tempfile)) < 0) {
close(ifd);
return (NULL);
}
unlink(tempfile);
while ((nread = read(ifd, buf, BUFSIZ)) > 0) {
if (write(ofd, buf, nread) != nread) {
close(ifd);
close(ofd);
return (NULL);
}
}
close(ifd);
lseek(ofd, (off_t)0, SEEK_SET);
return (fdopen(ofd, "r"));
}
char *
splice(char *dir, char *path)
{
char *tail, *buf;
size_t dirlen;
dirlen = strlen(dir);
while (dirlen != 0 && dir[dirlen - 1] == '/')
dirlen--;
if ((tail = strrchr(path, '/')) == NULL)
tail = path;
else
tail++;
xasprintf(&buf, "%.*s/%s", (int)dirlen, dir, tail);
return (buf);
}
static void
prepare(int i, FILE *fd, size_t filesize, int flags)
{
struct line *p;
int h;
size_t sz, j;
rewind(fd);
sz = MIN(filesize, SIZE_MAX) / 25;
if (sz < 100)
sz = 100;
p = xcalloc(sz + 3, sizeof(*p));
for (j = 0; (h = readhash(fd, flags));) {
if (j == sz) {
sz = sz * 3 / 2;
p = xreallocarray(p, sz + 3, sizeof(*p));
}
p[++j].value = h;
}
len[i] = j;
file[i] = p;
}
static void
prune(void)
{
int i, j;
for (pref = 0; pref < len[0] && pref < len[1] &&
file[0][pref + 1].value == file[1][pref + 1].value;
pref++)
;
for (suff = 0; suff < len[0] - pref && suff < len[1] - pref &&
file[0][len[0] - suff].value == file[1][len[1] - suff].value;
suff++)
;
for (j = 0; j < 2; j++) {
sfile[j] = file[j] + pref;
slen[j] = len[j] - pref - suff;
for (i = 0; i <= slen[j]; i++)
sfile[j][i].serial = i;
}
}
static void
equiv(struct line *a, int n, struct line *b, int m, int *c)
{
int i, j;
i = j = 1;
while (i <= n && j <= m) {
if (a[i].value < b[j].value)
a[i++].value = 0;
else if (a[i].value == b[j].value)
a[i++].value = j;
else
j++;
}
while (i <= n)
a[i++].value = 0;
b[m + 1].value = 0;
j = 0;
while (++j <= m) {
c[j] = -b[j].serial;
while (b[j + 1].value == b[j].value) {
j++;
c[j] = b[j].serial;
}
}
c[j] = -1;
}
/* Code taken from ping.c */
static int
isqrt(int n)
{
int y, x = 1;
if (n == 0)
return (0);
do { /* newton was a stinker */
y = x;
x = n / x;
x += y;
x /= 2;
} while ((x - y) > 1 || (x - y) < -1);
return (x);
}
static int
stone(int *a, int n, int *b, int *c, int flags)
{
int i, k, y, j, l;
int oldc, tc, oldl, sq;
u_int numtries, bound;
if (flags & D_MINIMAL)
bound = UINT_MAX;
else {
sq = isqrt(n);
bound = MAX(256, sq);
}
k = 0;
c[0] = newcand(0, 0, 0);
for (i = 1; i <= n; i++) {
j = a[i];
if (j == 0)
continue;
y = -b[j];
oldl = 0;
oldc = c[0];
numtries = 0;
do {
if (y <= clist[oldc].y)
continue;
l = search(c, k, y);
if (l != oldl + 1)
oldc = c[l - 1];
if (l <= k) {
if (clist[c[l]].y <= y)
continue;
tc = c[l];
c[l] = newcand(i, y, oldc);
oldc = tc;
oldl = l;
numtries++;
} else {
c[l] = newcand(i, y, oldc);
k++;
break;
}
} while ((y = b[++j]) > 0 && numtries < bound);
}
return (k);
}
static int
newcand(int x, int y, int pred)
{
struct cand *q;
if (clen == clistlen) {
clistlen = clistlen * 11 / 10;
clist = xreallocarray(clist, clistlen, sizeof(*clist));
}
q = clist + clen;
q->x = x;
q->y = y;
q->pred = pred;
return (clen++);
}
static int
search(int *c, int k, int y)
{
int i, j, l, t;
if (clist[c[k]].y < y) /* quick look for typical case */
return (k + 1);
i = 0;
j = k + 1;
for (;;) {
l = (i + j) / 2;
if (l <= i)
break;
t = clist[c[l]].y;
if (t > y)
j = l;
else if (t < y)
i = l;
else
return (l);
}
return (l + 1);
}
static void
unravel(int p)
{
struct cand *q;
int i;
for (i = 0; i <= len[0]; i++)
J[i] = i <= pref ? i :
i > len[0] - suff ? i + len[1] - len[0] : 0;
for (q = clist + p; q->y != 0; q = clist + q->pred)
J[q->x + pref] = q->y + pref;
}
/*
* Check does double duty:
* 1. ferret out any fortuitous correspondences due
* to confounding by hashing (which result in "jackpot")
* 2. collect random access indexes to the two files
*/
static void
check(FILE *f1, FILE *f2, int flags)
{
int i, j, jackpot, c, d;
long ctold, ctnew;
rewind(f1);
rewind(f2);
j = 1;
ixold[0] = ixnew[0] = 0;
jackpot = 0;
ctold = ctnew = 0;
for (i = 1; i <= len[0]; i++) {
if (J[i] == 0) {
ixold[i] = ctold += skipline(f1);
continue;
}
while (j < J[i]) {
ixnew[j] = ctnew += skipline(f2);
j++;
}
if (flags & (D_FOLDBLANKS|D_IGNOREBLANKS|D_IGNORECASE|D_STRIPCR)) {
for (;;) {
c = getc(f1);
d = getc(f2);
/*
* GNU diff ignores a missing newline
* in one file for -b or -w.
*/
if (flags & (D_FOLDBLANKS|D_IGNOREBLANKS)) {
if (c == EOF && d == '\n') {
ctnew++;
break;
} else if (c == '\n' && d == EOF) {
ctold++;
break;
}
}
ctold++;
ctnew++;
if (flags & D_STRIPCR) {
if (c == '\r') {
if ((c = getc(f1)) == '\n') {
ctnew++;
break;
}
}
if (d == '\r') {
if ((d = getc(f2)) == '\n') {
ctold++;
break;
}
}
}
if ((flags & D_FOLDBLANKS) && isspace(c) &&
isspace(d)) {
do {
if (c == '\n')
break;
ctold++;
} while (isspace(c = getc(f1)));
do {
if (d == '\n')
break;
ctnew++;
} while (isspace(d = getc(f2)));
} else if ((flags & D_IGNOREBLANKS)) {
while (isspace(c) && c != '\n') {
c = getc(f1);
ctold++;
}
while (isspace(d) && d != '\n') {
d = getc(f2);
ctnew++;
}
}
if (chrtran(c) != chrtran(d)) {
jackpot++;
J[i] = 0;
if (c != '\n' && c != EOF)
ctold += skipline(f1);
if (d != '\n' && c != EOF)
ctnew += skipline(f2);
break;
}
if (c == '\n' || c == EOF)
break;
}
} else {
for (;;) {
ctold++;
ctnew++;
if ((c = getc(f1)) != (d = getc(f2))) {
/* jackpot++; */
J[i] = 0;
if (c != '\n' && c != EOF)
ctold += skipline(f1);
if (d != '\n' && c != EOF)
ctnew += skipline(f2);
break;
}
if (c == '\n' || c == EOF)
break;
}
}
ixold[i] = ctold;
ixnew[j] = ctnew;
j++;
}
for (; j <= len[1]; j++) {
ixnew[j] = ctnew += skipline(f2);
}
/*
* if (jackpot)
* fprintf(stderr, "jackpot\n");
*/
}
/* shellsort CACM #201 */
static void
sort(struct line *a, int n)
{
struct line *ai, *aim, w;
int j, m = 0, k;
if (n == 0)
return;
for (j = 1; j <= n; j *= 2)
m = 2 * j - 1;
for (m /= 2; m != 0; m /= 2) {
k = n - m;
for (j = 1; j <= k; j++) {
for (ai = &a[j]; ai > a; ai -= m) {
aim = &ai[m];
if (aim < ai)
break; /* wraparound */
if (aim->value > ai[0].value ||
(aim->value == ai[0].value &&
aim->serial > ai[0].serial))
break;
w.value = ai[0].value;
ai[0].value = aim->value;
aim->value = w.value;
w.serial = ai[0].serial;
ai[0].serial = aim->serial;
aim->serial = w.serial;
}
}
}
}
static void
unsort(struct line *f, int l, int *b)
{
int *a, i;
a = xcalloc(l + 1, sizeof(*a));
for (i = 1; i <= l; i++)
a[f[i].serial] = f[i].value;
for (i = 1; i <= l; i++)
b[i] = a[i];
free(a);
}
static int
skipline(FILE *f)
{
int i, c;
for (i = 1; (c = getc(f)) != '\n' && c != EOF; i++)
continue;
return (i);
}
static void
output(char *file1, FILE *f1, char *file2, FILE *f2, int flags)
{
int m, i0, i1, j0, j1;
rewind(f1);
rewind(f2);
m = len[0];
J[0] = 0;
J[m + 1] = len[1] + 1;
if (diff_format != D_EDIT) {
for (i0 = 1; i0 <= m; i0 = i1 + 1) {
while (i0 <= m && J[i0] == J[i0 - 1] + 1)
i0++;
j0 = J[i0 - 1] + 1;
i1 = i0 - 1;
while (i1 < m && J[i1 + 1] == 0)
i1++;
j1 = J[i1 + 1] - 1;
J[i1] = j1;
change(file1, f1, file2, f2, i0, i1, j0, j1, &flags);
}
} else {
for (i0 = m; i0 >= 1; i0 = i1 - 1) {
while (i0 >= 1 && J[i0] == J[i0 + 1] - 1 && J[i0] != 0)
i0--;
j0 = J[i0 + 1] - 1;
i1 = i0 + 1;
while (i1 > 1 && J[i1 - 1] == 0)
i1--;
j1 = J[i1 - 1] + 1;
J[i1] = j1;
change(file1, f1, file2, f2, i1, i0, j1, j0, &flags);
}
}
if (m == 0)