procps/sysctl.c

707 lines
18 KiB
C
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/*
* Sysctl 1.01 - A utility to read and manipulate the sysctl parameters
*
*
* "Copyright 1999 George Staikos
* This file may be used subject to the terms and conditions of the
* GNU General Public License Version 2, or any later version
* at your option, as published by the Free Software Foundation.
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details."
*
* Changelog:
* v1.01:
* - added -p <preload> to preload values from a file
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* Horms:
* - added -q to be quiet when modifying values
*
* Changes by Albert Cahalan, 2002.
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*/
#include <dirent.h>
#include <errno.h>
#include <getopt.h>
#include <libgen.h>
#include <limits.h>
#include <regex.h>
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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
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#include <sys/stat.h>
#include <sys/types.h>
#include <unistd.h>
#include "c.h"
#include "nls.h"
#include "xalloc.h"
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#include "proc/procps.h"
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#include "proc/version.h"
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/* Proof that C++ causes brain damage: */
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typedef int bool;
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static bool true = 1;
static bool false = 0;
/*
* Globals...
*/
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static const char PROC_PATH[] = "/proc/sys/";
static const char DEFAULT_PRELOAD[] = "/etc/sysctl.conf";
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static bool NameOnly;
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static bool PrintName;
static bool PrintNewline;
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static bool IgnoreError;
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static bool Quiet;
static char *pattern;
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static int pattern_match(const char *string, const char *pattern);
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static void slashdot(char *restrict p, char old, char new){
int warned = 1;
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p = strpbrk(p,"/.");
if(!p) return; /* nothing -- can't be, but oh well */
if(*p==new) return; /* already in desired format */
while(p){
char c = *p;
if((*(p+1) == '/' || *(p+1) == '.') && warned) {
warnx(_("separators should not be repeated: %s"), p);
warned = 0;
}
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if(c==old) *p=new;
if(c==new) *p=old;
p = strpbrk(p+1,"/.");
}
}
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/*
* Display the usage format
*
*/
static void __attribute__ ((__noreturn__))
Usage(FILE * out)
{
fputs(USAGE_HEADER, out);
fprintf(out,
" %s [options] [variable[=value] ...]\n", program_invocation_short_name);
fputs(USAGE_OPTIONS, out);
fputs(_(" -a, --all display all variables\n"), out);
fputs(_(" -A alias of -a\n"), out);
fputs(_(" -X alias of -a\n"), out);
fputs(_(" -b, --binary print value without new line\n"), out);
fputs(_(" -e, --ignore ignore unknown variables errors\n"), out);
fputs(_(" -N, --names print variable names without values\n"), out);
fputs(_(" -n, --values print only values of a variables\n"), out);
fputs(_(" -p, --load[=<file>] read values from file\n"), out);
fputs(_(" -f alias of -p\n"), out);
fputs(_(" --system read values from all system directories\n"), out);
fputs(_(" -r, --pattern <expression>\n"), out);
fputs(_(" select setting that match expression\n"), out);
fputs(_(" -q, --quiet do not echo variable set\n"), out);
fputs(_(" -w, --write enable writing a value to variable\n"), out);
fputs(_(" -o does nothing\n"), out);
fputs(_(" -x does nothing\n"), out);
fputs(_(" -d alias of -h\n"), out);
fputs(USAGE_SEPARATOR, out);
fputs(USAGE_HELP, out);
fputs(USAGE_VERSION, out);
fprintf(out, USAGE_MAN_TAIL("sysctl(8)"));
exit(out == stderr ? EXIT_FAILURE : EXIT_SUCCESS);
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}
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/*
* Strip the leading and trailing spaces from a string
*
*/
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static char *StripLeadingAndTrailingSpaces(char *oneline) {
char *t;
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if (!oneline || !*oneline)
return oneline;
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t = oneline;
t += strlen(oneline)-1;
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while ((*t==' ' || *t=='\t' || *t=='\n' || *t=='\r') && t!=oneline)
*t-- = 0;
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t = oneline;
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while ((*t==' ' || *t=='\t') && *t!=0)
t++;
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return t;
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}
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static int DisplayAll(const char *restrict const path);
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/*
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* Read a sysctl setting
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*
*/
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static int ReadSetting(const char *restrict const name) {
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int rc = 0;
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char *restrict tmpname;
char *restrict outname;
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char inbuf[1025];
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FILE *restrict fp;
struct stat ts;
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if (!name || !*name) {
warnx(_("\"%s\" is an unknown key"), name);
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return -1;
}
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/* used to display the output */
outname = xstrdup(name);
slashdot(outname,'/','.'); /* change / to . */
if (pattern && !pattern_match(outname, pattern)){
free(outname);
return 0;
}
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/* used to open the file */
tmpname = xmalloc(strlen(name)+strlen(PROC_PATH)+2);
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strcpy(tmpname, PROC_PATH);
strcat(tmpname, name);
slashdot(tmpname+strlen(PROC_PATH),'.','/'); /* change . to / */
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/* used to display the output */
outname = xstrdup(name);
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slashdot(outname,'/','.'); /* change / to . */
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if (stat(tmpname, &ts) < 0) {
if (!IgnoreError) {
warn(_("cannot stat %s"), tmpname);
rc = -1;
}
goto out;
}
if ((ts.st_mode & S_IRUSR) == 0)
goto out;
if (S_ISDIR(ts.st_mode)) {
size_t len;
len = strlen(tmpname);
tmpname[len] = '/';
tmpname[len+1] = '\0';
rc = DisplayAll(tmpname);
goto out;
}
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fp = fopen(tmpname, "r");
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if (!fp) {
switch(errno) {
case ENOENT:
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if (!IgnoreError) {
warnx(_("\"%s\" is an unknown key"), outname);
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rc = -1;
}
break;
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case EACCES:
warnx(_("permission denied on key '%s'"), outname);
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rc = -1;
break;
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default:
warn(_("reading key \"%s\""), outname);
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rc = -1;
break;
}
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} else {
errno = 0;
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if(fgets(inbuf, sizeof inbuf - 1, fp)) {
// this loop is required, see
// /sbin/sysctl -a | egrep -6 dev.cdrom.info
do {
if (NameOnly) {
fprintf(stdout, "%s\n", outname);
} else {
/* already has the \n in it */
if (PrintName) {
fprintf(stdout, "%s = %s", outname, inbuf);
} else {
if (!PrintNewline) {
char *nlptr = strchr(inbuf,'\n');
if(nlptr) *nlptr='\0';
}
fprintf(stdout, "%s", inbuf);
}
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}
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} while(fgets(inbuf, sizeof inbuf - 1, fp));
} else {
switch(errno) {
case EACCES:
warnx(_("permission denied on key '%s'"), outname);
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rc = -1;
break;
case EISDIR:{
size_t len;
len = strlen(tmpname);
tmpname[len] = '/';
tmpname[len+1] = '\0';
fclose(fp);
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rc = DisplayAll(tmpname);
goto out;
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}
default:
warnx(_("reading key \"%s\""), outname);
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rc = -1;
case 0:
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break;
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}
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}
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fclose(fp);
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}
out:
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free(tmpname);
free(outname);
return rc;
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}
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/*
* Display all the sysctl settings
*
*/
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static int DisplayAll(const char *restrict const path) {
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int rc = 0;
int rc2;
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DIR *restrict dp;
struct dirent *restrict de;
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struct stat ts;
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dp = opendir(path);
if (!dp) {
warnx(_("unable to open directory \"%s\""), path);
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rc = -1;
} else {
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readdir(dp); // skip .
readdir(dp); // skip ..
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while (( de = readdir(dp) )) {
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char *restrict tmpdir;
tmpdir = (char *restrict)xmalloc(strlen(path)+strlen(de->d_name)+2);
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sprintf(tmpdir, "%s%s", path, de->d_name);
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rc2 = stat(tmpdir, &ts);
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if (rc2 != 0) {
warn(_("cannot stat %s"), tmpdir);
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} else {
if (S_ISDIR(ts.st_mode)) {
strcat(tmpdir, "/");
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DisplayAll(tmpdir);
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} else {
rc |= ReadSetting(tmpdir+strlen(PROC_PATH));
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}
}
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free(tmpdir);
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}
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closedir(dp);
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}
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return rc;
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}
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/*
* Write a sysctl setting
*
*/
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static int WriteSetting(const char *setting) {
int rc = 0;
const char *name = setting;
const char *value;
const char *equals;
char *tmpname;
char *outname;
FILE *fp;
struct stat ts;
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if (!name) { /* probably don't want to display this err */
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return 0;
} /* end if */
equals = strchr(setting, '=');
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if (!equals) {
warnx(_("\"%s\" must be of the form name=value"), setting);
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return -1;
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}
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value = equals + 1; /* point to the value in name=value */
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if (!*name || !*value || name == equals) {
warnx(_("Malformed setting \"%s\""), setting);
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return -2;
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}
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/* used to open the file */
tmpname = xmalloc(equals-name+1+strlen(PROC_PATH));
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strcpy(tmpname, PROC_PATH);
strncat(tmpname, name, (int)(equals-name));
tmpname[equals-name+strlen(PROC_PATH)] = 0;
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slashdot(tmpname+strlen(PROC_PATH),'.','/'); /* change . to / */
/* used to display the output */
outname = xmalloc(equals-name+1);
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strncpy(outname, name, (int)(equals-name));
outname[equals-name] = 0;
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slashdot(outname,'/','.'); /* change / to . */
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if (stat(tmpname, &ts) < 0) {
if (!IgnoreError) {
warn(_("cannot stat %s"), tmpname);
rc = -1;
}
goto out;
}
if ((ts.st_mode & S_IWUSR) == 0) {
warn(_("setting key \"%s\""), outname);
goto out;
}
if (S_ISDIR(ts.st_mode)) {
warn(_("setting key \"%s\""), outname);
goto out;
}
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fp = fopen(tmpname, "w");
if (!fp) {
switch(errno) {
case ENOENT:
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if (!IgnoreError) {
warnx(_("\"%s\" is an unknown key"), outname);
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rc = -1;
}
break;
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case EACCES:
warnx(_("permission denied on key '%s'"), outname);
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rc = -1;
break;
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default:
warn(_("setting key \"%s\""), outname);
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rc = -1;
break;
}
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} else {
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rc = fprintf(fp, "%s\n", value);
if (rc < 0) {
warn(_("setting key \"%s\""), outname);
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fclose(fp);
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} else {
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rc=fclose(fp);
if (rc != 0)
warn(_("setting key \"%s\""), outname);
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}
if (rc==0 && !Quiet) {
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if (NameOnly) {
fprintf(stdout, "%s\n", outname);
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} else {
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if (PrintName) {
fprintf(stdout, "%s = %s\n", outname, value);
} else {
if (PrintNewline)
fprintf(stdout, "%s\n", value);
else
fprintf(stdout, "%s", value);
}
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}
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}
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}
out:
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free(tmpname);
free(outname);
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return rc;
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}
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static int pattern_match(const char *string, const char *pattern)
{
int status;
regex_t re;
if (regcomp(&re, pattern, REG_EXTENDED | REG_NOSUB) != 0) {
return (0); /* Report error. */
}
status = regexec(&re, string, (size_t) 0, NULL, 0);
regfree(&re);
if (status != 0) {
return (0); /* Report error. */
}
return (1);
}
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/*
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* Preload the sysctl's from the conf file
* - we parse the file and then reform it (strip out whitespace)
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*
*/
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static int Preload(const char *restrict const filename) {
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char oneline[256];
char buffer[256];
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FILE *fp;
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char *t;
int n = 0;
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int rc = 0;
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char *name, *value;
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fp = (filename[0]=='-' && !filename[1])
? stdin
: fopen(filename, "r")
;
if (!fp) {
warn(_("cannot open \"%s\""), filename);
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return -1;
}
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while (fgets(oneline, sizeof oneline, fp)) {
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n++;
t = StripLeadingAndTrailingSpaces(oneline);
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if (strlen(t) < 2)
continue;
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if (*t == '#' || *t == ';')
continue;
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name = strtok(t, "=");
if (!name || !*name) {
warnx(_("%s(%d): invalid syntax, continuing..."), filename, n);
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continue;
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}
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StripLeadingAndTrailingSpaces(name);
if (pattern && !pattern_match(name, pattern)){
continue;
}
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value = strtok(NULL, "\n\r");
if (!value || !*value) {
warnx(_("%s(%d): invalid syntax, continuing..."), filename, n);
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continue;
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}
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while ((*value == ' ' || *value == '\t') && *value != 0)
value++;
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// should NameOnly affect this?
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sprintf(buffer, "%s=%s", name, value);
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rc |= WriteSetting(buffer);
}
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fclose(fp);
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return rc;
}
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struct pair {
char* name;
char* value;
};
static int sortpairs(const void* A, const void* B)
{
const struct pair* a = *(struct pair* const*)A;
const struct pair* b = *(struct pair* const*)B;
return strcmp(a->name, b->name);
}
static int PreloadSystem(void) {
unsigned di, i;
const char* dirs[] = {
"/run/sysctl.d",
"/etc/sysctl.d",
"/usr/local/lib/sysctl.d",
"/usr/lib/sysctl.d",
"/lib/sysctl.d",
};
struct pair** cfgs = NULL;
unsigned ncfgs = 0;
enum { nprealloc = 16 };
for (di=0; di < sizeof(dirs)/sizeof(dirs[0]); ++di) {
struct dirent* de;
DIR* dp = opendir(dirs[di]);
if (!dp)
continue;
while (( de = readdir(dp) )) {
if (!strcmp(de->d_name, ".") || !strcmp(de->d_name, "..")) {
continue;
}
if (strlen(de->d_name) < 6 || !strcmp(de->d_name+strlen(de->d_name)-6, ".conf"))
continue;
/* check if config already known */
for (i = 0; i < ncfgs; ++i) {
if (!strcmp(cfgs[i]->name, de->d_name))
break;
}
if (i < ncfgs) // already in
continue;
if (ncfgs % nprealloc == 0) {
cfgs = xrealloc(cfgs, sizeof(struct pair*)*(ncfgs+nprealloc));
}
cfgs[ncfgs] = xmalloc(sizeof(struct pair) + strlen(de->d_name)*2+2 + strlen(dirs[di])+1);
cfgs[ncfgs]->name = (char*)cfgs[ncfgs]+sizeof(struct pair);
strcpy(cfgs[ncfgs]->name, de->d_name);
cfgs[ncfgs]->value = (char*)cfgs[ncfgs]+sizeof(struct pair) + strlen(cfgs[ncfgs]->name)+1;
sprintf(cfgs[ncfgs]->value, "%s/%s", dirs[di], de->d_name);
ncfgs++;
}
closedir(dp);
}
qsort(cfgs, ncfgs, sizeof(struct cfg*), sortpairs);
for (i = 0; i < ncfgs; ++i) {
if (!Quiet)
printf(_("* Applying %s ...\n"), cfgs[i]->value);
Preload(cfgs[i]->value);
}
if (!Quiet)
printf(_("* Applying %s ...\n"), DEFAULT_PRELOAD);
return Preload(DEFAULT_PRELOAD);
}
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/*
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* Main...
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*
*/
int main(int argc, char *argv[])
{
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bool SwitchesAllowed = true;
bool WriteMode = false;
bool DisplayAllOpt = false;
bool preloadfileOpt = false;
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int ReturnCode = 0;
int c;
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const char *preloadfile = DEFAULT_PRELOAD;
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enum {
SYSTEM_OPTION = CHAR_MAX + 1
};
static const struct option longopts[] = {
{"all", no_argument, NULL, 'a'},
{"binary", no_argument, NULL, 'b'},
{"ignore", no_argument, NULL, 'e'},
{"names", no_argument, NULL, 'N'},
{"values", no_argument, NULL, 'n'},
{"load", optional_argument, NULL, 'p'},
{"quiet", no_argument, NULL, 'q'},
{"write", no_argument, NULL, 'w'},
{"system", no_argument, NULL, SYSTEM_OPTION},
{"pattern", required_argument, NULL, 'r'},
{"help", no_argument, NULL, 'h'},
{"version", no_argument, NULL, 'V'},
{NULL, 0, NULL, 0}
};
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PrintName = true;
PrintNewline = true;
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IgnoreError = false;
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Quiet = false;
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if (argc < 2) {
Usage(stderr);
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}
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while ((c =
getopt_long(argc, argv, "bneNwfp::qoxaAXr:Vdh", longopts,
NULL)) != -1)
switch (c) {
case 'b':
/* This is "binary" format, which means more for BSD. */
PrintNewline = false;
/* FALL THROUGH */
case 'n':
PrintName = false;
break;
case 'e':
/*
* For FreeBSD, -e means a "%s=%s\n" format. ("%s: %s\n" default)
* We (and NetBSD) use "%s = %s\n" always, and -e to ignore errors.
*/
IgnoreError = true;
break;
case 'N':
NameOnly = true;
break;
case 'w':
SwitchesAllowed = false;
WriteMode = true;
break;
case 'f': /* the NetBSD way */
case 'p':
preloadfileOpt = true;
if (optarg)
preloadfile = optarg;
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break;
case 'q':
Quiet = true;
break;
case 'o': /* BSD: binary values too, 1st 16 bytes in hex */
case 'x': /* BSD: binary values too, whole thing in hex */
/* does nothing */ ;
break;
case 'a': /* string and integer values (for Linux, all of them) */
case 'A': /* same as -a -o */
case 'X': /* same as -a -x */
DisplayAllOpt = true;
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break;
case SYSTEM_OPTION:
IgnoreError = true;
return PreloadSystem();
case 'r':
pattern = xstrdup(optarg);
break;
case 'V':
printf(PROCPS_NG_VERSION);
exit(0);
case 'd': /* BSD: print description ("vm.kvm_size: Size of KVM") */
case 'h': /* BSD: human-readable (did FreeBSD 5 make -e default?) */
case '?':
Usage(stdout);
default:
Usage(stderr);
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}
if (DisplayAllOpt)
return DisplayAll(PROC_PATH);
if (preloadfileOpt)
return Preload(preloadfile);
argc -= optind;
argv += optind;
if (argc < 1) {
warnx(_("no variables specified"));
Usage(stderr);
}
if (NameOnly && Quiet) {
warnx(_("options -N and -q can not coexist"));
Usage(stderr);
}
if (WriteMode || index(*argv, '='))
ReturnCode = WriteSetting(*argv);
else
ReturnCode = ReadSetting(*argv);
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return ReturnCode;
}
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