Files
finit/src/svc.c
T
Ming Liu cfffcd4513 svc.c: change strncmp to string_compare
strncmp can not handle the case when name is a substring of cmd.

Signed-off-by: Ming Liu <liu.ming50@gmail.com>
2022-02-05 13:54:54 +01:00

742 lines
16 KiB
C

/* Low-level service primitives and generic API for managing svc_t structures
*
* Copyright (c) 2008-2010 Claudio Matsuoka <cmatsuoka@gmail.com>
* Copyright (c) 2008-2021 Joachim Wiberg <troglobit@gmail.com>
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
* THE SOFTWARE.
*/
#include <err.h>
#include <ctype.h> /* isdigit() */
#include <time.h>
#include <signal.h>
#include <stdlib.h>
#include <strings.h>
#include <sys/time.h>
#ifdef _LIBITE_LITE
# include <libite/queue.h> /* BSD sys/queue.h API */
#else
# include <lite/queue.h> /* BSD sys/queue.h API */
#endif
#include "finit.h"
#include "svc.h"
#include "helpers.h"
#include "pid.h"
#include "util.h"
#include "cond.h"
#include "schedule.h"
/* Each svc_t needs a unique job# */
static int jobcounter = 1;
static TAILQ_HEAD(, svc) svc_list = TAILQ_HEAD_INITIALIZER(svc_list);
static TAILQ_HEAD(, svc) gc_list = TAILQ_HEAD_INITIALIZER(gc_list);
/*
* Before gc removal of svc, make sure we don't clear an active
* condition of a new instance of the svc.
*/
static void maybe_clear_cond(svc_t *svc)
{
char ident[MAX_IDENT_LEN];
char cond[MAX_COND_LEN];
svc_t *iter = NULL;
svc_t *s;
mkcond(svc, cond, sizeof(cond));
svc_ident(svc, ident, sizeof(ident));
for (s = svc_iterator(&iter, 1); s; s = svc_iterator(&iter, 0)) {
char c[MAX_COND_LEN];
mkcond(s, c, sizeof(c));
if (!string_compare(cond, c))
continue;
_d("Not clearing cond %s from gc svc %s, provided by new active service %s",
cond, ident, svc_ident(s, NULL, 0));
return;
}
_d("Cleaning out %s, clearing any conditions ...", svc->name);
cond_clear(mkcond(svc, cond, sizeof(cond)));
}
static void svc_gc(void *arg)
{
struct timespec now;
struct wq *work = (struct wq *)arg;
svc_t *svc, *next;
clock_gettime(CLOCK_MONOTONIC_COARSE, &now);
TAILQ_FOREACH_SAFE(svc, &gc_list, link, next) {
int msec;
msec = (now.tv_sec - svc->gc.tv_sec) * 1000 +
(now.tv_nsec - svc->gc.tv_nsec) / 1000000;
if (msec < SVC_TERM_TIMEOUT)
continue;
TAILQ_REMOVE(&gc_list, svc, link);
maybe_clear_cond(svc);
free(svc);
}
if (!TAILQ_EMPTY(&gc_list))
schedule_work(work);
}
/**
* svc_new - Create a new service
* @cmd: External program to call
* @id: Instance id
* @type: Service type, one of service, task, run
*
* Returns:
* A pointer to a new &svc_t object, or %NULL if out of empty slots.
*/
svc_t *svc_new(char *cmd, char *id, int type)
{
int job = -1;
svc_t *svc, *iter = NULL;
/* Find first job n:o if registering multiple instances */
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (cmd && !strcmp(svc->cmd, cmd)) {
job = svc->job;
break;
}
}
if (job == -1)
job = jobcounter++;
svc = calloc(1, sizeof(*svc));
if (!svc)
return NULL;
svc->type = type;
svc->job = job;
if (id && id[0])
strlcpy(svc->id, id, sizeof(svc->id));
if (cmd)
strlcpy(svc->cmd, cmd, sizeof(svc->cmd));
/* Default description, if missing */
strlcpy(svc->desc, svc->name, sizeof(svc->desc));
/* Default HALT signal to send */
if (svc_is_tty(svc))
svc->sighalt = SIGHUP;
else
svc->sighalt = SIGTERM;
/* Default delay between SIGTERM and SIGKILL */
svc->killdelay = SVC_TERM_TIMEOUT;
TAILQ_INSERT_TAIL(&svc_list, svc, link);
return svc;
}
static struct wq work = {
.cb = svc_gc,
.delay = SVC_TERM_TIMEOUT
};
/**
* svc_del - Mark a service object for deletion
* @svc: Pointer to an &svc_t object
*
* Returns:
* Always succeeds, returning POSIX OK(0).
*/
int svc_del(svc_t *svc)
{
TAILQ_REMOVE(&svc_list, svc, link);
TAILQ_INSERT_TAIL(&gc_list, svc, link);
clock_gettime(CLOCK_MONOTONIC_COARSE, &svc->gc);
schedule_work(&work);
return 0;
}
/**
* svc_validate - Check if service asserts same condition as another service
* @svc: Pointer to an &svc_t object
*
* Logs to syslog if there is a name clash with existing services.
*/
void svc_validate(svc_t *svc)
{
char ident[MAX_IDENT_LEN];
char cond[MAX_COND_LEN];
svc_t *iter = NULL;
svc_t *s;
mkcond(svc, cond, sizeof(cond));
svc_ident(svc, ident, sizeof(ident));
for (s = svc_iterator(&iter, 1); s; s = svc_iterator(&iter, 0)) {
char c[MAX_COND_LEN];
if (s->removed)
continue;
if (s == svc)
continue;
mkcond(s, c, sizeof(c));
if (!string_compare(cond, c))
continue;
logit(LOG_WARNING, "%s (%s) asserts the same condition as %s (%s) => %s",
svc->cmd, ident, s->cmd, svc_ident(s, NULL, 0), c);
}
}
/**
* svc_iterator - Naive iterator over all registered services.
* @iter: Iterator, must be a valid pointer
* @first: If set, get first &svc_t, otherwise get next
*
* Returns:
* An &svc_t pointer, or %NULL when no more entries can be found.
*/
svc_t *svc_iterator(svc_t **iter, int first)
{
svc_t *svc;
if (!iter) {
errno = EINVAL;
return NULL;
}
if (first)
svc = TAILQ_FIRST(&svc_list);
else
svc = *iter;
if (svc)
*iter = TAILQ_NEXT(svc, link);
return svc;
}
/**
* svc_named_iterator - Iterates over all instances of a service.
* @iter: Iterator, must be a valid pointer
* @first: If set, get first &svc_t, otherwise get next
* @cmd: Service name to look for.
*
* Returns:
* The first matching &svc_t when %NULL is given as argument, otherwise
* the next &svc_t with the same @cmd name until the end when %NULL is
* returned.
*/
svc_t *svc_named_iterator(svc_t **iter, int first, char *cmd)
{
svc_t *svc;
for (svc = svc_iterator(iter, first); svc; svc = svc_iterator(iter, 0)) {
char *name = svc->name;
if (string_compare(name, cmd))
return svc;
}
return NULL;
}
/**
* svc_job_iterator - Iterates over all instances of a service.
* @iter: Iterator, must be a valid pointer
* @first: If set, get first &svc_t, otherwise get next
* @job: Job to look for.
*
* Returns:
* The first matching &svc_t when %NULL is given as argument, otherwise
* the next &svc_t with the same @job ID until the end when %NULL is
* returned.
*/
svc_t *svc_job_iterator(svc_t **iter, int first, int job)
{
svc_t *svc;
for (svc = svc_iterator(iter, first); svc; svc = svc_iterator(iter, 0)) {
if (svc->job == job)
return svc;
}
return NULL;
}
/**
* svc_foreach - Run a callback for each registered service
* @cb: Callback to run for each service
*/
void svc_foreach(int (*cb)(svc_t *))
{
svc_t *svc, *iter = NULL;
if (!cb)
return;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0))
cb(svc);
}
/**
* svc_foreach_type - Run a callback for each matching type
* @types: Mask of service types
* @cb: Callback to run for each matching type
*/
void svc_foreach_type(int types, int (*cb)(svc_t *))
{
svc_t *svc, *iter = NULL;
if (!cb)
return;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (!(svc->type & types))
continue;
cb(svc);
}
}
/**
* svc_stop_completed - Have all stopped services been collected?
*
* Returns:
* %NULL if all stopped services have been collected, otherwise a
* pointer to the first svc_t waiting to be collected.
*/
svc_t *svc_stop_completed(void)
{
svc_t *svc, *iter = NULL;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (svc->state == SVC_STOPPING_STATE && svc->pid > 1)
return svc;
}
return NULL;
}
/**
* svc_find - Find a service object by its full path name
* @cmd: Full path name, e.g., /sbin/syslogd
* @id: Optional instance id
*
* Returns:
* A pointer to an &svc_t object, or %NULL if not found.
*/
svc_t *svc_find(char *cmd, char *id)
{
svc_t *svc, *iter = NULL;
if (!id)
id = "";
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (!strcmp(svc->cmd, cmd) && !strcmp(svc->id, id))
return svc;
}
return NULL;
}
/**
* svc_find_by_pid - Find an service object by its PID
* @pid: Process ID to match
*
* Returns:
* A pointer to an &svc_t object, or %NULL if not found.
*/
svc_t *svc_find_by_pid(pid_t pid)
{
svc_t *svc, *iter = NULL;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (svc->pid == pid)
return svc;
}
return NULL;
}
/**
* svc_find_by_jobid - Find an service object by its JOB:ID
* @job: Job n:o
* @id: Optional instance id
*
* Returns:
* A pointer to an &svc_t object, or %NULL if not found.
*/
svc_t *svc_find_by_jobid(int job, char *id)
{
svc_t *svc, *iter = NULL;
if (!id)
id = "";
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (svc->job == job && !strcmp(svc->id, id))
return svc;
}
return NULL;
}
/**
* svc_find_by_nameid - Find an service object by its basename:ID
* @name: Process name to match
* @id: Optional instance id
*
* Returns:
* A pointer to an &svc_t object, or %NULL if not found.
*/
svc_t *svc_find_by_nameid(char *name, char *id)
{
svc_t *svc, *iter = NULL;
if (!id)
id = "";
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (!strcmp(svc->id, id) && !strcmp(name, svc->name))
return svc;
}
return NULL;
}
svc_t *svc_find_by_tty(char *dev)
{
svc_t *svc, *iter = NULL;
/* rescue (notty) shells have no device node */
if (!dev)
return NULL;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (!svc_is_tty(svc))
continue;
if (!strcmp(dev, svc->dev))
return svc;
}
return NULL;
}
/**
* svc_find_by_plidfile - Find a service by its PID file
* @fn: PID file, can be absolute path or relative to /run
*
* This function is primarily used by the pidfile plugin to track the
* conditions and dependencies of services.
*
* Note, the PID file is assumed to exist so the contents can be
* compared to the the PID of a located service. There may be several
* services, in many runlevels, that use the same name for the PID file.
* So we won't know for sure until the PID is compared.
*
* Returns:
* A pointer to an &svc_t object, or %NULL if not found.
*/
svc_t *svc_find_by_pidfile(char *fn)
{
svc_t *svc, *iter = NULL;
pid_t pid;
pid = pid_file_read(fn);
if (pid <= 0) {
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
int v = 0;
if (svc->pidfile[0] == '!')
v = 1;
if (strcmp(&svc->pidfile[v], fn))
continue;
return svc;
}
return NULL;
}
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (svc->pid != pid)
continue;
return svc;
}
return NULL;
}
/**
* svc_mark_dynamic - Mark dynamically loaded services for deletion.
*
* This function traverses the list of known services, marking all that
* have been loaded from /etc/finit.d/ for deletion. If a .conf file
* has been removed svc_cleanup_dynamic() will stop and delete the
* service.
*
* This function is called from sighup_cb().
*/
void svc_mark_dynamic(void)
{
svc_t *svc, *iter = NULL;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (svc->protect)
continue;
*((int *)&svc->removed) = 1;
}
}
void svc_mark_dirty(svc_t *svc)
{
*((int *)&svc->dirty) = 1;
}
void svc_mark_clean(svc_t *svc)
{
*((int *)&svc->dirty) = 0;
*((int *)&svc->args_dirty) = 0;
}
void svc_enable(svc_t *svc)
{
*((int *)&svc->removed) = 0;
}
/**
* svc_clean_dynamic - Stop and cleanup stale services removed from /etc/finit.d
* @cb: Callback to run for each stale service
*
* This function traverses the list of known services to stop and clean
* up all non-existing services previously marked by svc_mark_dynamic().
*/
void svc_clean_dynamic(void (*cb)(svc_t *))
{
svc_t *svc, *iter = NULL;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (svc->removed && cb)
cb(svc);
}
}
/**
* svc_clean_bootstrap - Remove bootstrap-only services after boot
* @svc: Pointer to &svc_t object
*
* Returns:
* %TRUE(1) if object was bootstrap-only, otherwise %FALSE(0)
*/
int svc_clean_bootstrap(svc_t *svc)
{
if (!ISOTHER(svc->runlevels, 0)) {
svc->pid = 0;
svc_del(svc);
return 1;
}
return 0;
}
/**
* svc_prune_bootstrap - Prune any remaining bootstrap tasks
*
* This function cleans up all bootstrap tasks that have not yet been
* collected, or that never even ran in bootstrap. All other instances
* when svc_clean_bootstrap() is called are when a service is collected.
*/
void svc_prune_bootstrap(void)
{
svc_t *svc, *iter = NULL;
for (svc = svc_iterator(&iter, 1); svc; svc = svc_iterator(&iter, 0)) {
if (!svc->pid)
svc_clean_bootstrap(svc);
}
}
/**
* svc_enabled - Should the service run?
* @svc: Pointer to &svc_t object
*
* Returns:
* 1, if the service is allowed to run in the current runlevel and the
* user has not manually requested that this service should not run. 0
* otherwise.
*/
int svc_enabled(svc_t *svc)
{
if (!svc)
return 0;
if (!svc_in_runlevel(svc, runlevel))
return 0;
if (svc_is_removed(svc) || svc_is_blocked(svc))
return 0;
if (svc_is_missing(svc))
return 0;
if (svc_is_tty(svc) && bootstrap)
return 0;
return 1;
}
/* break up "job:id job:id job:id ..." into several "job:id" tokens */
static char *tokstr(char *str, size_t len)
{
static char *cur = NULL;
static size_t pos = 0;
char *token;
if (!cur && !str)
return NULL;
if (str) {
cur = str;
pos = 0;
}
if (pos >= len)
return NULL;
token = &cur[pos];
while (pos < len) {
if (isspace(cur[pos])) {
cur[pos++] = 0;
break;
}
pos++;
}
return token;
}
/*
* Used by api.c (to start/stop/restart) and initctl.c (for input validation)
*/
int svc_parse_jobstr(char *str, size_t len, int (*found)(svc_t *), int (not_found)(char *, char *))
{
char *input, *token;
int result = 0;
_d("Got str:'%s'", str);
input = tokstr(str, len);
while (input) {
char *id = NULL;
svc_t *svc, *iter = NULL;
char *ptr;
_d("Got token:'%s'", input);
token = sanitize(input, strlen(input) + 1);
if (!token) {
_d("Sanitation of token:'%s' failed", input);
goto next;
}
ptr = strchr(token, ':');
if (isdigit(token[0])) {
char *ep;
long job = 0;
errno = 0;
job = strtol(token, &ep, 10);
if ((errno == ERANGE && (job == LONG_MAX || job == LONG_MIN)) ||
(errno != 0 && job == 0) ||
(token == ep)) {
result++;
continue;
}
if (!ptr) {
svc = svc_job_iterator(&iter, 1, job);
if (!svc && not_found)
result += not_found(NULL, token);
while (svc) {
if (found)
result += found(svc);
svc = svc_job_iterator(&iter, 0, job);
}
} else {
*ptr++ = 0;
id = ptr;
svc = svc_find_by_jobid(job, id);
if (!svc && not_found)
result += not_found(token, id);
else if (found)
result += found(svc);
}
} else {
if (!ptr) {
svc = svc_named_iterator(&iter, 1, token);
if (!svc && not_found)
result += not_found(token, id);
while (svc) {
if (found)
result += found(svc);
svc = svc_named_iterator(&iter, 0, token);
}
} else {
*ptr++ = 0;
id = ptr;
svc = svc_find_by_nameid(token, id);
if (!svc && not_found)
result += not_found(token, id);
else if (found)
result += found(svc);
}
}
next:
input = tokstr(NULL, len);
}
return result;
}
/**
* Local Variables:
* indent-tabs-mode: t
* c-file-style: "linux"
* End:
*/