openrc/src/librc/librc.c

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/*
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librc
core RC functions
*/
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/*
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* Copyright (c) 2007-2008 Roy Marples <roy@marples.name>
* 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.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR 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 AUTHOR 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.
*/
const char librc_copyright[] = "Copyright (c) 2007-2008 Roy Marples";
#include "librc.h"
#ifdef __FreeBSD__
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# include <sys/sysctl.h>
#endif
#define RC_RUNLEVEL RC_SVCDIR "/softlevel"
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#ifndef S_IXUGO
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# define S_IXUGO (S_IXUSR | S_IXGRP | S_IXOTH)
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#endif
/* File stream used for plugins to write environ vars to */
FILE *rc_environ_fd = NULL;
typedef struct rc_service_state_name {
RC_SERVICE state;
const char *name;
} rc_service_state_name_t;
/* We MUST list the states below 0x10 first
* The rest can be in any order */
static const rc_service_state_name_t rc_service_state_names[] = {
{ RC_SERVICE_STARTED, "started" },
{ RC_SERVICE_STOPPED, "stopped" },
{ RC_SERVICE_STARTING, "starting" },
{ RC_SERVICE_STOPPING, "stopping" },
{ RC_SERVICE_INACTIVE, "inactive" },
{ RC_SERVICE_WASINACTIVE, "wasinactive" },
{ RC_SERVICE_HOTPLUGGED, "hotplugged" },
{ RC_SERVICE_FAILED, "failed" },
{ RC_SERVICE_SCHEDULED, "scheduled"},
{ 0, NULL}
};
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#define LS_INITD 0x01
#define LS_DIR 0x02
static RC_STRINGLIST *
ls_dir(const char *dir, int options)
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{
DIR *dp;
struct dirent *d;
RC_STRINGLIST *list = NULL;
struct stat buf;
size_t l;
char file[PATH_MAX];
int r;
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list = rc_stringlist_new();
if ((dp = opendir(dir)) == NULL)
return list;
while (((d = readdir(dp)) != NULL)) {
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if (d->d_name[0] != '.') {
if (options & LS_INITD) {
/* Check that our file really exists.
* This is important as a service maybe in a
* runlevel, but could have been removed. */
snprintf(file, sizeof(file), "%s/%s",
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dir, d->d_name);
r = stat(file, &buf);
if (r != 0)
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continue;
/* .sh files are not init scripts */
l = strlen(d->d_name);
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if (l > 2 && d->d_name[l - 3] == '.' &&
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d->d_name[l - 2] == 's' &&
d->d_name[l - 1] == 'h')
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continue;
}
if (options & LS_DIR) {
if (stat(d->d_name, &buf) == 0 &&
!S_ISDIR(buf.st_mode))
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continue;
}
rc_stringlist_add(list, d->d_name);
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}
}
closedir(dp);
return list;
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}
static bool
rm_dir(const char *pathname, bool top)
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{
DIR *dp;
struct dirent *d;
char file[PATH_MAX];
struct stat s;
bool retval = true;
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if ((dp = opendir(pathname)) == NULL)
return false;
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errno = 0;
while (((d = readdir(dp)) != NULL) && errno == 0) {
if (strcmp(d->d_name, ".") != 0 &&
strcmp(d->d_name, "..") != 0)
{
snprintf(file, sizeof(file),
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"%s/%s", pathname, d->d_name);
if (stat(file, &s) != 0) {
retval = false;
break;
}
if (S_ISDIR(s.st_mode)) {
if (!rm_dir(file, true))
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{
retval = false;
break;
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}
} else {
if (unlink(file)) {
retval = false;
break;
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}
}
}
}
closedir(dp);
if (!retval)
return false;
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if (top && rmdir(pathname) != 0)
return false;
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return true;
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}
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/* Other systems may need this at some point, but for now it's Linux only */
#ifdef __linux__
static bool
file_regex(const char *file, const char *regex)
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{
FILE *fp;
char *line = NULL;
size_t len = 0;
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regex_t re;
bool retval = false;
int result;
if (!(fp = fopen(file, "r")))
return false;
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if ((result = regcomp(&re, regex, REG_EXTENDED | REG_NOSUB)) != 0) {
fclose(fp);
line = xmalloc(sizeof(char) * BUFSIZ);
regerror(result, &re, line, BUFSIZ);
fprintf(stderr, "file_regex: %s", line);
free(line);
return false;
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}
while ((rc_getline(&line, &len, fp))) {
if (regexec(&re, line, 0, NULL, 0) == 0)
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retval = true;
if (retval)
break;
}
fclose(fp);
free(line);
regfree(&re);
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return retval;
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}
#endif
const char *
rc_sys_v2(void)
{
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#define __STRING_SWITCH(x) { char* __string_switch = x; if (false) {}
#define __STRING_CASE(y) else if (strcmp(__string_switch,y) == 0)
#define __STRING_SWITCH_END() }
char* systype = rc_conf_value("rc_sys");
/* New sys identification code */
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if (systype) {
char* s = systype;
/* Convert to uppercase */
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while (s && *s) {
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if (islower((unsigned char)*s))
*s = toupper((unsigned char)*s);
s++;
}
/* Now do detection */
__STRING_SWITCH(systype)
__STRING_CASE(RC_SYS_PREFIX) { return RC_SYS_PREFIX; }
#ifdef __FreeBSD__
__STRING_CASE(RC_SYS_JAIL) { return RC_SYS_JAIL; }
#endif /* __FreeBSD__ */
#ifdef __NetBSD__
__STRING_CASE(RC_SYS_XEN0) { return RC_SYS_XEN0; }
__STRING_CASE(RC_SYS_XENU) { return RC_SYS_XENU; }
#endif /* __NetBSD__ */
#ifdef __linux__
__STRING_CASE(RC_SYS_XEN0) { return RC_SYS_XEN0; }
__STRING_CASE(RC_SYS_XENU) { return RC_SYS_XENU; }
__STRING_CASE(RC_SYS_UML) { return RC_SYS_UML; }
__STRING_CASE(RC_SYS_VSERVER) { return RC_SYS_VSERVER; }
__STRING_CASE(RC_SYS_OPENVZ) { return RC_SYS_OPENVZ; }
__STRING_CASE(RC_SYS_LXC) { return RC_SYS_LXC; }
#endif /* __linux__ */
__STRING_SWITCH_END()
}
#undef __STRING_SWITCH
#undef __STRING_CASE
#undef __STRING_SWITCH_END
return NULL;
}
librc_hidden_def(rc_sys_v2)
/* Old sys identification code */
const char *
rc_sys_v1(void)
{
#ifdef PREFIX
return RC_SYS_PREFIX;
#else
#ifdef __FreeBSD__
int jailed = 0;
size_t len = sizeof(jailed);
if (sysctlbyname("security.jail.jailed", &jailed, &len, NULL, 0) == 0)
if (jailed == 1)
return RC_SYS_JAIL;
#endif
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#ifdef __NetBSD__
if (exists("/kern/xen/privcmd"))
return RC_SYS_XEN0;
if (exists("/kern/xen"))
return RC_SYS_XENU;
#endif
#ifdef __linux__
if (exists("/proc/xen")) {
if (file_regex("/proc/xen/capabilities", "control_d"))
return RC_SYS_XEN0;
return RC_SYS_XENU;
} else if (file_regex("/proc/cpuinfo", "UML"))
return RC_SYS_UML;
else if (file_regex("/proc/self/status",
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"(s_context|VxID):[[:space:]]*[1-9]"))
return RC_SYS_VSERVER;
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else if (exists("/proc/vz/veinfo") && !exists("/proc/vz/version"))
return RC_SYS_OPENVZ;
else if (file_regex("/proc/self/status",
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"envID:[[:space:]]*[1-9]"))
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return RC_SYS_OPENVZ; /* old test */
#endif
return NULL;
#endif /* PREFIX */
}
librc_hidden_def(rc_sys_v1)
const char *
rc_sys(void)
{
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if (rc_conf_value("rc_sys")) {
return rc_sys_v2();
} else {
return rc_sys_v1();
}
}
librc_hidden_def(rc_sys)
static const char *
rc_parse_service_state(RC_SERVICE state)
{
int i;
for (i = 0; rc_service_state_names[i].name; i++) {
if (rc_service_state_names[i].state == state)
return rc_service_state_names[i].name;
}
return NULL;
}
bool
rc_runlevel_starting(void)
{
return exists(RC_STARTING);
}
librc_hidden_def(rc_runlevel_starting)
bool
rc_runlevel_stopping(void)
{
return exists(RC_STOPPING);
}
librc_hidden_def(rc_runlevel_stopping)
RC_STRINGLIST *rc_runlevel_list(void)
{
return ls_dir(RC_RUNLEVELDIR, LS_DIR);
}
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librc_hidden_def(rc_runlevel_list)
char *
rc_runlevel_get(void)
{
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FILE *fp;
char *runlevel = NULL;
size_t i;
if ((fp = fopen(RC_RUNLEVEL, "r"))) {
runlevel = xmalloc(sizeof(char) * PATH_MAX);
if (fgets(runlevel, PATH_MAX, fp)) {
i = strlen(runlevel) - 1;
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if (runlevel[i] == '\n')
runlevel[i] = 0;
} else
*runlevel = '\0';
fclose(fp);
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}
if (!runlevel || !*runlevel) {
free(runlevel);
runlevel = xstrdup(RC_LEVEL_SYSINIT);
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}
return runlevel;
}
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librc_hidden_def(rc_runlevel_get)
bool
rc_runlevel_set(const char *runlevel)
{
FILE *fp = fopen(RC_RUNLEVEL, "w");
if (!fp)
return false;
fprintf(fp, "%s", runlevel);
fclose(fp);
return true;
}
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librc_hidden_def(rc_runlevel_set)
bool
rc_runlevel_exists(const char *runlevel)
{
char path[PATH_MAX];
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struct stat buf;
if (!runlevel)
return false;
snprintf(path, sizeof(path), "%s/%s", RC_RUNLEVELDIR, runlevel);
if (stat(path, &buf) == 0 && S_ISDIR(buf.st_mode))
return true;
return false;
}
librc_hidden_def(rc_runlevel_exists)
bool
rc_runlevel_stack(const char *dst, const char *src)
{
char d[PATH_MAX], s[PATH_MAX];
if (!rc_runlevel_exists(dst) || !rc_runlevel_exists(src))
return false;
snprintf(s, sizeof(s), "../%s", src);
snprintf(d, sizeof(s), "%s/%s/%s", RC_RUNLEVELDIR, dst, src);
return (symlink(s, d) == 0 ? true : false);
}
librc_hidden_def(rc_runlevel_stack)
bool
rc_runlevel_unstack(const char *dst, const char *src)
{
char path[PATH_MAX];
snprintf(path, sizeof(path), "%s/%s/%s", RC_RUNLEVELDIR, dst, src);
return (unlink(path) == 0 ? true : false);
}
librc_hidden_def(rc_runlevel_unstack)
RC_STRINGLIST *
rc_runlevel_stacks(const char *runlevel)
{
char path[PATH_MAX];
RC_STRINGLIST *dirs;
RC_STRING *d, *dn;
if (!runlevel)
return false;
snprintf(path, sizeof(path), "%s/%s", RC_RUNLEVELDIR, runlevel);
dirs = ls_dir(path, LS_DIR);
TAILQ_FOREACH_SAFE(d, dirs, entries, dn) {
if (!rc_runlevel_exists(d->value)) {
TAILQ_REMOVE(dirs, d, entries);
free(d->value);
free(d);
}
}
return dirs;
}
librc_hidden_def(rc_runlevel_stacks)
/* Resolve a service name to its full path */
char *
rc_service_resolve(const char *service)
{
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char buffer[PATH_MAX];
char file[PATH_MAX];
int r;
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struct stat buf;
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if (!service)
return NULL;
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if (service[0] == '/')
return xstrdup(service);
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/* First check started services */
snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s", "started", service);
if (lstat(file, &buf) || ! S_ISLNK(buf.st_mode)) {
snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s",
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"inactive", service);
if (lstat(file, &buf) || ! S_ISLNK(buf.st_mode))
*file = '\0';
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}
if (*file) {
memset(buffer, 0, sizeof(buffer));
r = readlink(file, buffer, sizeof(buffer));
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if (r > 0)
return xstrdup(buffer);
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}
#ifdef RC_LOCAL_INITDIR
/* Nope, so lets see if the user has written it */
snprintf(file, sizeof(file), RC_LOCAL_INITDIR "/%s", service);
if (stat(file, &buf) == 0)
return xstrdup(file);
#endif
/* System scripts take precedence over 3rd party ones */
snprintf(file, sizeof(file), RC_INITDIR "/%s", service);
if (stat(file, &buf) == 0)
return xstrdup(file);
#ifdef RC_PKG_INITDIR
/* Check RC_PKG_INITDIR */
snprintf(file, sizeof(file), RC_PKG_INITDIR "/%s", service);
if (stat(file, &buf) == 0)
return xstrdup(file);
#endif
return NULL;
}
librc_hidden_def(rc_service_resolve)
bool
rc_service_exists(const char *service)
{
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char *file;
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bool retval = false;
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int len;
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struct stat buf;
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if (!service) {
errno = EINVAL;
return false;
}
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len = strlen(service);
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/* .sh files are not init scripts */
if (len > 2 && service[len - 3] == '.' &&
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service[len - 2] == 's' &&
service[len - 1] == 'h') {
errno = EINVAL;
return false;
}
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if (!(file = rc_service_resolve(service))) {
errno = ENOENT;
return false;
}
if (stat(file, &buf) == 0) {
if (buf.st_mode & S_IXUGO)
retval = true;
else
errno = ENOEXEC;
}
free(file);
return retval;
}
librc_hidden_def(rc_service_exists)
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#define OPTSTR ". '%s'; echo $opts"
RC_STRINGLIST *
rc_service_extra_commands(const char *service)
{
char *svc;
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char *cmd = NULL;
char *buffer = NULL;
size_t len = 0;
RC_STRINGLIST *commands = NULL;
char *token;
char *p;
FILE *fp;
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size_t l;
if (!(svc = rc_service_resolve(service)))
return NULL;
l = strlen(OPTSTR) + strlen(svc) + 1;
cmd = xmalloc(sizeof(char) * l);
snprintf(cmd, l, OPTSTR, svc);
free(svc);
if ((fp = popen(cmd, "r"))) {
rc_getline(&buffer, &len, fp);
p = buffer;
while ((token = strsep(&p, " "))) {
if (!commands)
commands = rc_stringlist_new();
rc_stringlist_add(commands, token);
}
pclose(fp);
free(buffer);
}
free(cmd);
return commands;
}
librc_hidden_def(rc_service_extra_commands)
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#define DESCSTR ". '%s'; echo \"${description%s%s}\""
char *
rc_service_description(const char *service, const char *option)
{
char *svc;
char *cmd;
char *desc = NULL;
size_t len = 0;
FILE *fp;
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size_t l;
if (!(svc = rc_service_resolve(service)))
return NULL;
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if (!option)
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option = "";
l = strlen(DESCSTR) + strlen(svc) + strlen(option) + 2;
cmd = xmalloc(sizeof(char) * l);
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snprintf(cmd, l, DESCSTR, svc, *option ? "_" : "", option);
free(svc);
if ((fp = popen(cmd, "r"))) {
rc_getline(&desc, &len, fp);
pclose(fp);
}
free(cmd);
return desc;
}
librc_hidden_def(rc_service_description)
bool
rc_service_in_runlevel(const char *service, const char *runlevel)
{
char file[PATH_MAX];
snprintf(file, sizeof(file), RC_RUNLEVELDIR "/%s/%s",
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runlevel, basename_c(service));
return exists(file);
}
librc_hidden_def(rc_service_in_runlevel)
bool
rc_service_mark(const char *service, const RC_SERVICE state)
{
char file[PATH_MAX];
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int i = 0;
int skip_state = -1;
const char *base;
char *init = rc_service_resolve(service);
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bool skip_wasinactive = false;
int s;
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char was[PATH_MAX];
RC_STRINGLIST *dirs;
RC_STRING *dir;
int serrno;
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if (!init)
return false;
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base = basename_c(service);
if (state != RC_SERVICE_STOPPED) {
if (!exists(init)) {
free(init);
return false;
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}
snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s",
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rc_parse_service_state(state), base);
if (exists(file))
unlink(file);
i = symlink(init, file);
if (i != 0) {
free(init);
return false;
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}
skip_state = state;
}
if (state == RC_SERVICE_HOTPLUGGED || state == RC_SERVICE_FAILED) {
free(init);
return true;
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}
/* Remove any old states now */
for (i = 0; rc_service_state_names[i].name; i++) {
s = rc_service_state_names[i].state;
if ((s != skip_state &&
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s != RC_SERVICE_STOPPED &&
s != RC_SERVICE_HOTPLUGGED &&
s != RC_SERVICE_SCHEDULED) &&
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(! skip_wasinactive || s != RC_SERVICE_WASINACTIVE))
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{
snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s",
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rc_service_state_names[i].name, base);
if (exists(file)) {
if ((state == RC_SERVICE_STARTING ||
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state == RC_SERVICE_STOPPING) &&
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s == RC_SERVICE_INACTIVE)
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{
snprintf(was, sizeof(was),
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RC_SVCDIR "/%s/%s",
rc_parse_service_state(RC_SERVICE_WASINACTIVE),
base);
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if (symlink(init, was) == -1)
return false;
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skip_wasinactive = true;
}
if (unlink(file) == -1) {
free(init);
return false;
}
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}
}
}
/* Remove the exclusive state if we're inactive */
if (state == RC_SERVICE_STARTED ||
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state == RC_SERVICE_STOPPED ||
state == RC_SERVICE_INACTIVE)
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{
snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s",
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"exclusive", base);
unlink(file);
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}
/* Remove any options and daemons the service may have stored */
if (state == RC_SERVICE_STOPPED) {
snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s",
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"options", base);
rm_dir(file, true);
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snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s",
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"daemons", base);
rm_dir(file, true);
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rc_service_schedule_clear(service);
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}
/* These are final states, so remove us from scheduled */
if (state == RC_SERVICE_STARTED || state == RC_SERVICE_STOPPED) {
snprintf(file, sizeof(file), RC_SVCDIR "/%s", "scheduled");
dirs = ls_dir(file, 0);
TAILQ_FOREACH(dir, dirs, entries) {
snprintf(was, sizeof(was), "%s/%s/%s",
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file, dir->value, base);
unlink(was);
/* Try and remove the dir; we don't care about errors */
snprintf(was, sizeof(was), "%s/%s", file, dir->value);
serrno = errno;
rmdir(was);
errno = serrno;
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}
rc_stringlist_free(dirs);
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}
free(init);
return true;
}
librc_hidden_def(rc_service_mark)
RC_SERVICE
rc_service_state(const char *service)
{
int i;
int state = RC_SERVICE_STOPPED;
char file[PATH_MAX];
RC_STRINGLIST *dirs;
RC_STRING *dir;
const char *base = basename_c(service);
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for (i = 0; rc_service_state_names[i].name; i++) {
snprintf(file, sizeof(file), RC_SVCDIR "/%s/%s",
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rc_service_state_names[i].name, base);
if (exists(file)) {
if (rc_service_state_names[i].state <= 0x10)
state = rc_service_state_names[i].state;
else
state |= rc_service_state_names[i].state;
}
}
if (state & RC_SERVICE_STOPPED) {
dirs = ls_dir(RC_SVCDIR "/scheduled", 0);
TAILQ_FOREACH (dir, dirs, entries) {
snprintf(file, sizeof(file),
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RC_SVCDIR "/scheduled/%s/%s",
dir->value, service);
if (exists(file)) {
state |= RC_SERVICE_SCHEDULED;
break;
}
}
rc_stringlist_free(dirs);
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}
return state;
}
librc_hidden_def(rc_service_state)
char *
rc_service_value_get(const char *service, const char *option)
{
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FILE *fp;
char *line = NULL;
size_t len = 0;
char file[PATH_MAX];
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snprintf(file, sizeof(file), RC_SVCDIR "/options/%s/%s",
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service, option);
if ((fp = fopen(file, "r"))) {
rc_getline(&line, &len, fp);
fclose(fp);
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}
return line;
}
librc_hidden_def(rc_service_value_get)
bool
rc_service_value_set(const char *service, const char *option,
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const char *value)
{
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FILE *fp;
char file[PATH_MAX];
char *p = file;
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p += snprintf(file, sizeof(file), RC_SVCDIR "/options/%s", service);
if (mkdir(file, 0755) != 0 && errno != EEXIST)
return false;
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snprintf(p, sizeof(file) - (p - file), "/%s", option);
if (!(fp = fopen(file, "w")))
return false;
if (value)
fprintf(fp, "%s", value);
fclose(fp);
return true;
}
librc_hidden_def(rc_service_value_set)
bool
rc_service_schedule_start(const char *service, const char *service_to_start)
{
char file[PATH_MAX];
char *p = file;
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char *init;
bool retval;
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/* service may be a provided service, like net */
if (! service || ! rc_service_exists(service_to_start))
return false;
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p += snprintf(file, sizeof(file), RC_SVCDIR "/scheduled/%s",
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basename_c(service));
if (mkdir(file, 0755) != 0 && errno != EEXIST)
return false;
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init = rc_service_resolve(service_to_start);
snprintf(p, sizeof(file) - (p - file),
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"/%s", basename_c(service_to_start));
retval = (exists(file) || symlink(init, file) == 0);
free(init);
return retval;
}
librc_hidden_def(rc_service_schedule_start)
bool
rc_service_schedule_clear(const char *service)
{
char dir[PATH_MAX];
snprintf(dir, sizeof(dir), RC_SVCDIR "/scheduled/%s",
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basename_c(service));
if (!rm_dir(dir, true) && errno == ENOENT)
return true;
return false;
}
librc_hidden_def(rc_service_schedule_clear)
RC_STRINGLIST *
rc_services_in_runlevel(const char *runlevel)
{
char dir[PATH_MAX];
RC_STRINGLIST *list = NULL;
if (!runlevel) {
#ifdef RC_PKG_INITDIR
RC_STRINGLIST *pkg = ls_dir(RC_PKG_INITDIR, LS_INITD);
#endif
#ifdef RC_LOCAL_INITDIR
RC_STRINGLIST *local = ls_dir(RC_LOCAL_INITDIR, LS_INITD);
#endif
list = ls_dir(RC_INITDIR, LS_INITD);
#ifdef RC_PKG_INITDIR
TAILQ_CONCAT(list, pkg, entries);
free(pkg);
#endif
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#ifdef RC_LOCAL_INITDIR
TAILQ_CONCAT(list, local, entries);
free(local);
#endif
return list;
}
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/* These special levels never contain any services */
if (strcmp(runlevel, RC_LEVEL_SINGLE) != 0) {
snprintf(dir, sizeof(dir), RC_RUNLEVELDIR "/%s", runlevel);
list = ls_dir(dir, LS_INITD);
}
if (!list)
list = rc_stringlist_new();
return list;
}
librc_hidden_def(rc_services_in_runlevel)
RC_STRINGLIST *
rc_services_in_runlevel_stacked(const char *runlevel)
{
RC_STRINGLIST *list, *stacks, *sl;
RC_STRING *stack;
list = rc_services_in_runlevel(runlevel);
stacks = rc_runlevel_stacks(runlevel);
TAILQ_FOREACH (stack, stacks, entries) {
sl = rc_services_in_runlevel(stack->value);
if (list != NULL) {
TAILQ_CONCAT(list, sl, entries);
free(sl);
} else
list = sl;
}
return list;
}
librc_hidden_def(rc_services_in_runlevel_stacked)
RC_STRINGLIST *
rc_services_in_state(RC_SERVICE state)
{
RC_STRINGLIST *services;
RC_STRINGLIST *list;
RC_STRINGLIST *dirs;
RC_STRING *d;
char dir[PATH_MAX];
char *p = dir;
p += snprintf(dir, sizeof(dir), RC_SVCDIR "/%s",
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rc_parse_service_state(state));
if (state != RC_SERVICE_SCHEDULED)
return ls_dir(dir, LS_INITD);
dirs = ls_dir(dir, 0);
list = rc_stringlist_new();
if (! dirs)
return list;
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TAILQ_FOREACH(d, dirs, entries) {
snprintf(p, sizeof(dir) - (p - dir), "/%s", d->value);
services = ls_dir(dir, LS_INITD);
if (services) {
TAILQ_CONCAT(list, services, entries);
free(services);
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}
}
rc_stringlist_free(dirs);
return list;
}
librc_hidden_def(rc_services_in_state)
bool
rc_service_add(const char *runlevel, const char *service)
{
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bool retval;
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char *init;
char file[PATH_MAX];
char path[MAXPATHLEN] = { '\0' };
char *p = NULL;
char binit[PATH_MAX];
char *i;
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if (!rc_runlevel_exists(runlevel)) {
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errno = ENOENT;
return false;
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}
if (rc_service_in_runlevel(service, runlevel)) {
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errno = EEXIST;
return false;
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}
i = init = rc_service_resolve(service);
snprintf(file, sizeof(file), RC_RUNLEVELDIR "/%s/%s",
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runlevel, basename_c(service));
/* We need to ensure that only things in /etc/init.d are added
* to the boot runlevel */
if (strcmp(runlevel, RC_LEVEL_BOOT) == 0) {
p = realpath(dirname(init), path);
if (!*p) {
free(init);
return false;
}
if (strcmp(path, RC_INITDIR) != 0) {
free(init);
errno = EPERM;
return false;
}
snprintf(binit, sizeof(binit), RC_INITDIR "/%s", service);
i = binit;
}
retval = (symlink(i, file) == 0);
free(init);
return retval;
}
librc_hidden_def(rc_service_add)
bool
rc_service_delete(const char *runlevel, const char *service)
{
char file[PATH_MAX];
snprintf(file, sizeof(file), RC_RUNLEVELDIR "/%s/%s",
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runlevel, basename_c(service));
if (unlink(file) == 0)
return true;
return false;
}
librc_hidden_def(rc_service_delete)
RC_STRINGLIST *
rc_services_scheduled_by(const char *service)
{
RC_STRINGLIST *dirs = ls_dir(RC_SVCDIR "/scheduled", 0);
RC_STRINGLIST *list = rc_stringlist_new();
RC_STRING *dir;
char file[PATH_MAX];
TAILQ_FOREACH (dir, dirs, entries) {
snprintf(file, sizeof(file), RC_SVCDIR "/scheduled/%s/%s",
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dir->value, service);
if (exists(file))
rc_stringlist_add(list, file);
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}
rc_stringlist_free(dirs);
return list;
}
librc_hidden_def(rc_services_scheduled_by)
RC_STRINGLIST *
rc_services_scheduled(const char *service)
{
char dir[PATH_MAX];
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snprintf(dir, sizeof(dir), RC_SVCDIR "/scheduled/%s",
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basename_c(service));
return ls_dir(dir, LS_INITD);
}
librc_hidden_def(rc_services_scheduled)