Files
s390-tools/cpuplugd/cpuplugd.h
Mete Durlu 147ff1bf49 cpuplugd: Halt cpu hotplugging on vertical polarization
On vertical polarization, kernel can be adjusting CPU capacities
dynamically, and cpuplugd can interfere this with hotplug operations
causing performance degradation. To prevent this, check if system has
switched its polarization state, and act accordingly.
If system is on vertical polarization when daemon starts, no CPU hotplug
action is triggered. If system changes to vertical polarization during
daemon runtime, revert cpuhotplug adjustments and stop further CPU
hotplug actions. If system switches back to horizontal polarization
during runtime of the daemon, start evaluating CPU hotplug rules and
trigger adjustments.

Reviewed-by: Steffen Eiden <seiden@linux.ibm.com>
Reviewed-by: Gerald Schaefer <gerald.schaefer@linux.ibm.com>
Signed-off-by: Mete Durlu <meted@linux.ibm.com>
Signed-off-by: Jan Höppner <hoeppner@linux.ibm.com>
2024-09-13 19:15:01 +02:00

240 lines
5.1 KiB
C

/*
* cpuplugd - Linux for System z Hotplug Daemon
*
* Header file
*
* Copyright IBM Corp. 2007, 2017
*
* s390-tools is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef __USE_ISOC99
#define __USE_ISOC99
#endif
#include <ctype.h>
#include <errno.h>
#include <setjmp.h>
#include <signal.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <syslog.h>
#include <unistd.h>
#include "lib/util_base.h"
#include "lib/util_path.h"
#include "lib/util_file.h"
#include "lib/util_scandir.h"
#include "lib/zt_common.h"
#define NAME "cpuplugd"
#define MAX_HISTORY 100
#define PIDFILE "/run/cpuplugd.pid"
#define LOCKFILE "/var/lock/cpuplugd.lock"
#define PROCINFO_LINE 512
#define CPUSTAT_SIZE 1024
#define VARINFO_SIZE 4096
#define MAX_VARNAME 128
#define MAX_LINESIZE 2048
#define CPUSTATS 10
#define PLR_HORIZONTAL 0
#define PLR_VERTICAL 1
/*
* Precedence of C operators
* full list:
* http://www.imada.sdu.dk/~svalle/
* courses/dm14-2005/mirror/c/_7193_tabular246.gif
*
* ()
* +-
* * /
* < >
* &
* |
*/
enum op_prio {
OP_PRIO_NONE,
OP_PRIO_OR,
OP_PRIO_AND,
/* greater and lower */
OP_PRIO_CMP,
OP_PRIO_ADD,
OP_PRIO_MULT
};
enum operation {
/* Leaf operators */
OP_SYMBOL_LOADAVG,
OP_SYMBOL_RUNABLE,
OP_SYMBOL_CPUS,
OP_SYMBOL_USER,
OP_SYMBOL_NICE,
OP_SYMBOL_SYSTEM,
OP_SYMBOL_IDLE,
OP_SYMBOL_IOWAIT,
OP_SYMBOL_IRQ,
OP_SYMBOL_SOFTIRQ,
OP_SYMBOL_STEAL,
OP_SYMBOL_GUEST,
OP_SYMBOL_GUEST_NICE,
OP_SYMBOL_APCR,
OP_SYMBOL_SWAPRATE,
OP_SYMBOL_FREEMEM,
OP_SYMBOL_MEMINFO,
OP_SYMBOL_VMSTAT,
OP_SYMBOL_CPUSTAT,
OP_SYMBOL_TIME,
OP_CONST,
/* Unary operators */
OP_NEG,
OP_NOT,
/* Binary operators */
OP_AND,
OP_OR,
OP_GREATER,
OP_LESSER,
OP_PLUS,
OP_MINUS,
OP_MULT,
OP_DIV,
/* ... */
/*Variables which are eligible within rules*/
VAR_LOAD, /* loadaverage */
VAR_RUN, /* number of runnable processes */
VAR_ONLINE /* number of online cpus */
};
struct symbols {
double loadavg;
double runnable_proc;
double onumcpus;
double idle;
double freemem;
double apcr;
double swaprate;
double user;
double nice;
double system;
double iowait;
double irq;
double softirq;
double steal;
double guest;
double guest_nice;
};
struct term {
enum operation op;
double value;
struct term *left, *right;
char *proc_name;
unsigned int index;
};
/*
* List of argurments taken fromt the configuration file
*
*/
struct config {
long cpu_max;
long cpu_min;
long update;
long cmm_max;
long cmm_min;
struct term *cmm_inc;
struct term *cmm_dec;
struct term *hotplug;
struct term *hotunplug;
struct term *memplug;
struct term *memunplug;
};
struct symbol_names {
char *name;
enum operation symop;
};
extern int foreground;
extern char *configfile;
extern int debug; /* is verbose specified? */
extern int memory;
extern int cpu;
extern int num_cpu_start; /* # of online cpus at the time of the startup */
extern long cmm_pagesize_start; /* cmm_pageize at the time of daemon startup */
extern struct config cfg;
extern int reload_pending;
extern unsigned long meminfo_size;
extern unsigned long vmstat_size;
extern unsigned long cpustat_size;
extern unsigned long varinfo_size;
extern char *meminfo;
extern char *vmstat;
extern char *cpustat;
extern char *varinfo;
extern double *timestamps;
extern unsigned int history_max;
extern unsigned int history_current;
extern struct symbol_names sym_names[];
extern unsigned int sym_names_count;
extern int saved_polarization;
int get_numcpus();
int get_num_online_cpus();
int get_polarization(void);
void get_loadavg_runnable(double *loadavg, double *runnable);
void clean_up();
void reactivate_cpus();
void parse_configfile(char *file);
void print_term(struct term *fn);
struct term *parse_term(char **p, enum op_prio prio);
int eval_term(struct term *fn, struct symbols *symbols);
double eval_double(struct term *fn, struct symbols *symbols);
double get_proc_value(char *procinfo, char *name, char separator);
void proc_read(char *procinfo, char *path, unsigned long size);
void proc_cpu_read(char *procinfo);
unsigned long proc_read_size(char *path);
char *get_var_rvalue(char *var_name);
void cleanup_cmm(void);
int hotplug_one_cpu(void);
int hotunplug_one_cpu(void);
long get_cmmpages_size();
void parse_options(int argc, char **argv);
void check_if_started_twice();
void handle_signals(void);
void handle_sighup(void);
void reload_daemon(void);
int daemonize(void);
int check_cmmfiles(void);
void check_config();
void apply_cpu_config(void);
void set_cmm_pages(long size);
int check_lpar();
void setup_history(void);
#define cpuplugd_info(fmt, ...) ({ \
if (foreground == 1) \
printf(fmt, ##__VA_ARGS__); \
if (foreground == 0) \
syslog(LOG_INFO, fmt, ##__VA_ARGS__); \
})
#define cpuplugd_error(fmt, ...) ({ \
if (foreground == 1) \
fprintf(stderr, fmt, ##__VA_ARGS__); \
if (foreground == 0) \
syslog(LOG_ERR, fmt, ##__VA_ARGS__); \
})
#define cpuplugd_debug(fmt, ...) ({ \
if (debug) \
cpuplugd_info(fmt, ##__VA_ARGS__); \
})
#define cpuplugd_exit(fmt, ...) ({ \
cpuplugd_error(fmt, ##__VA_ARGS__); \
clean_up(); \
})