Files
finit/src/cgutil.c
T

655 lines
13 KiB
C

/* New client tool, replaces old /dev/initctl API and telinit tool
*
* Copyright (c) 2019-2021 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 "config.h"
#include <err.h>
#include <dirent.h>
#include <stdio.h>
#include <signal.h>
#include <stdlib.h>
#include <search.h>
#include <inttypes.h>
#include <lite/lite.h>
#include <sys/sysinfo.h> /* sysinfo() */
#include "cgutil.h"
#include "initctl.h"
#define CDIM plain ? "" : "\e[2m"
#define CRST plain ? "" : "\e[0m"
#define NONE " "
#define PIPE plain ? "| " : "│ "
#define FORK plain ? "|-" : "├─"
#define END plain ? "`-" : "└─"
uint64_t total_ram; /* From sysinfo() */
struct cg dummy; /* empty result "NULL" */
struct cg *list;
char *pid_cmdline(int pid, char *buf, size_t len)
{
size_t i, sz;
char *ptr;
FILE *fp;
fp = fopenf("r", "/proc/%d/cmdline", pid);
if (!fp) {
buf[0] = 0;
return buf;
}
sz = fread(buf, sizeof(buf[0]), len - 1, fp);
fclose(fp);
if (!sz)
return NULL; /* kernel thread */
buf[sz] = 0;
ptr = strchr(buf, 0);
if (ptr && ptr != buf) {
ptr++;
sz -= ptr - buf;
memmove(buf, ptr, sz + 1);
}
for (i = 0; i < sz; i++) {
if (buf[i] == 0)
buf[i] = ' ';
}
return buf;
}
char *pid_comm(int pid, char *buf, size_t len)
{
char *ptr = NULL;
FILE *fp;
fp = fopenf("r", "/proc/%d/comm", pid);
if (!fp)
return NULL;
if (fgets(buf, len, fp))
ptr = chomp(buf);
fclose(fp);
return ptr;
}
char *pid_cgroup(int pid, char *buf, size_t len)
{
char *ptr = NULL;
FILE *fp;
fp = fopenf("r", "/proc/%d/cgroup", pid);
if (!fp)
return NULL;
if (fgets(buf, len, fp))
ptr = chomp(buf);
fclose(fp);
if (ptr)
ptr = strchr(buf, '/');
return ptr;
}
static char *cgroup_val(char *path, char *file, char *buf, size_t len)
{
char *val = NULL;
FILE *fp;
fp = fopenf("r", "%s/%s", path, file);
if (fp) {
if (fgets(buf, len, fp)) {
val = chomp(buf);
len = strcspn(val, " \t");
val[len] = 0;
}
fclose(fp);
}
return val;
}
static uint64_t cgroup_uint64(char *path, char *file)
{
uint64_t val = 0;
char buf[42];
if (cgroup_val(path, file, buf, sizeof(buf)))
val = strtoull(buf, NULL, 10);
return val;
}
static char *cgroup_memval(char *path, char *file, char *buf, size_t len)
{
char data[42];
if (cgroup_val(path, file, data, sizeof(data))) {
if (!strcmp(data, "max"))
strlcpy(buf, data, len);
else
memsz(strtoull(data, NULL, 10), buf, len);
} else
buf[0] = 0;
return buf;
}
static uint64_t cgroup_memuse(struct cg *cg)
{
char buf[42];
FILE *fp;
fp = fopenf("r", "%s/memory.stat", cg->cg_path);
if (fp) {
cg->cg_rss = 0;
cg->cg_vmlib = 0;
while (fgets(buf, sizeof(buf), fp)) {
chomp(buf);
if (!strncmp(buf, "anon", 4)) {
cg->cg_rss += strtoull(&buf[5], NULL, 10);
continue;
}
if (!strncmp(buf, "slab", 4)) {
cg->cg_rss += strtoull(&buf[5], NULL, 10);
continue;
}
if (!strncmp(buf, "kernel_stack", 12)) {
cg->cg_rss += strtoull(&buf[5], NULL, 10);
continue;
}
if (!strncmp(buf, "pagetables", 10)) {
cg->cg_rss += strtoull(&buf[5], NULL, 10);
continue;
}
if (!strncmp(buf, "percpu", 6)) {
cg->cg_rss += strtoull(&buf[5], NULL, 10);
continue;
}
if (!strncmp(buf, "sock", 4)) {
cg->cg_rss += strtoull(&buf[5], NULL, 10);
continue;
}
if (!strncmp(buf, "file", 4)) {
cg->cg_vmlib += strtoull(&buf[5], NULL, 10);
continue;
}
if (!strncmp(buf, "file_mapped", 11)) {
cg->cg_vmlib += strtoull(&buf[5], NULL, 10);
continue;
}
}
fclose(fp);
}
cg->cg_memshare = (float)(cg->cg_rss * 100 / total_ram);
return cg->cg_vmsize = cgroup_uint64(cg->cg_path, "memory.current");
}
uint64_t cgroup_memory(char *group)
{
char path[256];
paste(path, sizeof(path), FINIT_CGPATH, group);
return cgroup_uint64(path, "memory.current");
}
static float cgroup_cpuload(struct cg *cg)
{
char fn[256];
char buf[64];
FILE *fp;
snprintf(fn, sizeof(fn), "%s/cpu.stat", cg->cg_path);
fp = fopen(fn, "r");
if (!fp)
err(1, "Cannot open %s", fn);
while (fgets(buf, sizeof(buf), fp)) {
uint64_t curr;
chomp(buf);
if (strncmp(buf, "usage_usec", 10))
continue;
curr = strtoull(&buf[11], NULL, 10);
if (cg->cg_prev != 0) {
uint64_t diff = curr - cg->cg_prev;
/* this expects 1 sec poll interval */
cg->cg_load = (float)(diff / 1000000);
cg->cg_load *= 100.0;
}
cg->cg_prev = curr;
break;
}
fclose(fp);
return cg->cg_load;
}
static struct cg *append(char *path)
{
struct cg *cg;
char fn[256];
ENTRY item;
snprintf(fn, sizeof(fn), "%s/cpu.stat", path);
if (access(fn, F_OK)) {
/* older kernels, 4.19, don't have summary cpu.stat in root */
if (strcmp(path, FINIT_CGPATH))
warn("not a cgroup path with cpu controller, %s", path);
return NULL;
}
cg = calloc(1, sizeof(struct cg));
if (!cg)
err(1, "failed allocating struct cg");
cg->cg_path = strdup(path);
if (list)
cg->cg_next = list;
list = cg;
item.key = cg->cg_path;
item.data = cg;
if (!hsearch(item, ENTER))
err(1, "failed adding to hash table");
return cg;
}
static struct cg *find(char *path)
{
ENTRY *ep, item = { path, NULL };
ep = hsearch(item, FIND);
if (ep)
return ep->data;
return append(path);
}
/* update stats */
struct cg *cg_stats(char *path)
{
struct cg *cg;
cg = find(path);
if (!cg)
return &dummy;
cgroup_cpuload(cg);
cgroup_memuse(cg);
return cg;
}
/* query config */
struct cg *cg_conf(char *path)
{
static struct cg cg;
cgroup_val(path, "memory.min", cg.cg_mem.min, sizeof(cg.cg_mem.min));
cgroup_memval(path, "memory.max", cg.cg_mem.max, sizeof(cg.cg_mem.max));
cgroup_val(path, "cpu.weight", cg.cg_cpu.weight, sizeof(cg.cg_cpu.weight));
cgroup_val(path, "cpu.max", cg.cg_cpu.max, sizeof(cg.cg_cpu.max));
cgroup_val(path, "cpuset.cpus.effective", cg.cg_cpu.set, sizeof(cg.cg_cpu.set));
cg.cg_vmsize = cgroup_uint64(path, "memory.current");
return &cg;
}
static int cgroup_filter(const struct dirent *entry)
{
/* Skip current dir ".", and prev dir "..", from list of files */
if ((1 == strlen(entry->d_name) && entry->d_name[0] == '.') ||
(2 == strlen(entry->d_name) && !strcmp(entry->d_name, "..")))
return 0;
if (entry->d_name[0] == '.')
return 0;
if (entry->d_type != DT_DIR)
return 0;
return 1;
}
int cgroup_tree(char *path, char *pfx, int mode, int pos)
{
struct dirent **namelist = NULL;
char s[32], r[32], l[32];
char row[ttcols + 9]; /* + control codes */
size_t rlen = sizeof(row) - 1;
size_t rplen = rlen - 9;
struct stat st;
struct cg *cg;
char buf[512];
int rc = 0;
FILE *fp;
int i, n;
int num;
if (pos >= ttrows)
return 0;
if (-1 == lstat(path, &st))
return 1;
if ((st.st_mode & S_IFMT) != S_IFDIR) {
errno = ENOTDIR;
return -1;
}
fp = fopenf("r", "%s/cgroup.procs", path);
if (!fp)
return -1;
num = 0;
while (fgets(buf, sizeof(buf), fp))
num++;
if (!pfx) {
pfx = "";
switch (mode) {
case 1:
cg = cg_stats(path);
snprintf(row, rplen, "\r %6.6s %6.6s %6.6s %5.1f %5.1f %s",
memsz(cg->cg_vmsize, s, sizeof(s)),
memsz(cg->cg_rss, r, sizeof(r)),
memsz(cg->cg_vmlib, l, sizeof(l)),
cg->cg_memshare, cg->cg_load, path);
break;
case 2:
cg = cg_conf(path);
snprintf(row, rplen, "\r%6.6s [%-6.6s%6.6s] %6s [%-6.6s%6.6s] %s",
memsz(cg->cg_vmsize, s, sizeof(s)),
cg->cg_mem.min, cg->cg_mem.max, cg->cg_cpu.set,
cg->cg_cpu.weight, cg->cg_cpu.max, path);
break;
default:
strlcpy(row, "\r", rplen);
strlcat(row, path, rplen);
break;
}
puts(row);
}
if (num > 0) {
rewind(fp);
i = 0;
while (fgets(buf, sizeof(buf), fp)) {
char comm[80] = { 0 };
pid_t pid;
pid = atoi(chomp(buf));
if (pid <= 0)
continue;
/* skip kernel threads for now (no cmdline) */
pid_comm(pid, comm, sizeof(comm));
if (pid_cmdline(pid, buf, sizeof(buf))) {
char proc[ttcols];
int len;
switch (mode) {
case 1:
snprintf(row, rplen, "\r%37s", " ");
break;
case 2:
snprintf(row, rplen, "\r --.-- [ ] [ ] ");
break;
default:
strlcpy(row, "\r", rplen);
break;
}
strlcat(row, pfx, rplen);
strlcat(row, ++i == num ? END : FORK, rlen);
snprintf(proc, sizeof(proc), " %d %s %s", pid, comm, buf);
if (plain) {
strlcat(row, proc, rplen);
} else {
strlcat(row, CDIM, rlen);
strlcat(row, proc, rlen);
len = strlen(row) + strlen(CRST);
if (len > (int)rlen)
row[rlen - strlen(CRST)] = 0;
strlcat(row, CRST, sizeof(row));
}
puts(row);
}
if (mode == 1) {
pos += i;
if (pos >= ttrows)
break;
}
}
}
fclose(fp);
n = scandir(path, &namelist, cgroup_filter, alphasort);
if (n > 0) {
for (i = 0; i < n; i++) {
char *nm = namelist[i]->d_name;
char prefix[80];
snprintf(buf, sizeof(buf), "%s/%s", path, nm);
switch (mode) {
case 1:
cg = cg_stats(buf);
snprintf(row, rplen,
"\r %6.6s %6.6s %6.6s %5.1f %5.1f ",
memsz(cg->cg_vmsize, s, sizeof(s)),
memsz(cg->cg_rss, r, sizeof(r)),
memsz(cg->cg_vmlib, l, sizeof(l)),
cg->cg_memshare, cg->cg_load);
break;
case 2:
cg = cg_conf(buf);
snprintf(row, rplen, "\r%6.6s [%-6.6s%6.6s] %6.6s [%-6.6s%6.6s] ",
memsz(cg->cg_vmsize, s, sizeof(s)),
cg->cg_mem.min, cg->cg_mem.max,
cg->cg_cpu.set, cg->cg_cpu.weight, cg->cg_cpu.max);
break;
default:
strlcpy(row, "\r", rplen);
break;
}
strlcat(row, pfx, rplen);
if (i + 1 == n) {
strlcat(row, END, rplen);
snprintf(prefix, sizeof(prefix), "%s ", pfx);
} else {
strlcat(row, FORK, rplen);
snprintf(prefix, sizeof(prefix), "%s%s ", pfx, PIPE);
}
strlcat(row, " ", rplen);
strlcat(row, nm, rplen);
strlcat(row, "/ ", rplen);
puts(row);
rc += cgroup_tree(buf, prefix, mode, pos + i);
free(namelist[i]);
}
free(namelist);
}
return rc;
}
int show_cgps(char *arg)
{
char path[512];
if (!arg)
arg = FINIT_CGPATH;
else if (arg[0] != '/') {
paste(path, sizeof(path), FINIT_CGPATH, arg);
arg = path;
}
return cgroup_tree(arg, NULL, 0, 0);
}
static void cgtop(uev_t *w, void *arg, int events)
{
(void)w;
(void)events;
fputs("\e[2J\e[1;1H", stdout);
if (heading)
print_header(" VmSIZE RSS VmLIB %%MEM %%CPU GROUP");
cgroup_tree(arg, NULL, 1, 0);
}
static void cleanup(void)
{
ttcooked();
showcursor();
puts("");
}
static void leave(uev_t *w, void *arg, int events)
{
(void)arg;
(void)events;
uev_exit(w->ctx);
}
static void key(uev_t *w, void *arg, int events)
{
char ch;
(void)arg;
(void)events;
if (read(w->fd, &ch, sizeof(ch)) != -1) {
switch (ch) {
case 'q':
uev_exit(w->ctx);
break;
default:
warnx("Got char 0x%02x", ch);
break;
}
}
}
int show_cgtop(char *arg)
{
struct sysinfo si = { 0 };
uev_t timer, input, sigint, sigterm, sigquit;
char path[512];
uev_ctx_t ctx;
int flags;
if (!arg)
arg = FINIT_CGPATH;
else if (arg[0] != '/') {
paste(path, sizeof(path), FINIT_CGPATH, arg);
arg = path;
}
if (!hcreate(ttrows + 25))
err(1, "failed creating hash table");
sysinfo(&si);
total_ram = si.totalram * si.mem_unit;
uev_init(&ctx);
uev_timer_init(&ctx, &timer, cgtop, arg, 1, ionce ? 0 : 1000);
if (!ionce && !plain) {
atexit(cleanup);
ttraw();
hidecursor();
flags = fcntl(STDIN_FILENO, F_GETFL);
if (flags != -1)
(void)fcntl(STDIN_FILENO, F_SETFL, flags | O_NONBLOCK);
(void)uev_io_init(&ctx, &input, key, NULL, STDIN_FILENO, UEV_READ);
(void)uev_signal_init(&ctx, &sigint, leave, NULL, SIGINT);
(void)uev_signal_init(&ctx, &sigterm, leave, NULL, SIGTERM);
(void)uev_signal_init(&ctx, &sigquit, leave, NULL, SIGQUIT);
}
return uev_run(&ctx, 0);
}
int show_cgroup(char *arg)
{
char path[512];
if (!arg)
arg = FINIT_CGPATH;
else if (arg[0] != '/') {
paste(path, sizeof(path), FINIT_CGPATH, arg);
arg = path;
}
/* memory.current memory.min memory.max cpuset.cpus cpu.weight cpu.max */
if (heading)
print_header(" MEM [MIN MAX] CPU [WEIGHT MAX] GROUP");
return cgroup_tree(arg, NULL, 2, 0);
}
/**
* Local Variables:
* indent-tabs-mode: t
* c-file-style: "linux"
* End:
*/