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openmpi/opal/mca/timer/linux/timer_linux_component.c
Nathan Hjelm a718743a5c opal/timer: add code to check if rtdtsc is core invariant
Newer x86 processors have a core invariant tsc. On these systems it is
safe to use the rtdtsc instruction as a monotonic timer. This commit
adds a new function to the opal timer code to check if the timer
backend is monotonic. On x86 it checks the appropriate bit and on
other architectures it parrots back the OPAL_TIMER_MONOTONIC value.

Signed-off-by: Nathan Hjelm <hjelmn@lanl.gov>
2016-12-16 15:11:50 -07:00

231 строка
6.9 KiB
C

/* -*- Mode: C; c-basic-offset:4 ; indent-tabs-mode:nil -*- */
/*
* Copyright (c) 2004-2007 The Trustees of Indiana University and Indiana
* University Research and Technology
* Corporation. All rights reserved.
* Copyright (c) 2004-2016 The University of Tennessee and The University
* of Tennessee Research Foundation. All rights
* reserved.
* Copyright (c) 2004-2005 High Performance Computing Center Stuttgart,
* University of Stuttgart. All rights reserved.
* Copyright (c) 2004-2005 The Regents of the University of California.
* All rights reserved.
* Copyright (c) 2015 Research Organization for Information Science
* and Technology (RIST). All rights reserved.
* Copyright (c) 2015-2016 Los Alamos National Security, LLC. All rights
* reserved.
* Copyright (c) 2015 Cisco Systems, Inc. All rights reserved.
* Copyright (c) 2016 Broadcom Limited. All rights reserved.
* $COPYRIGHT$
*
* Additional copyrights may follow
*
* $HEADER$
*/
#include "opal_config.h"
#include <string.h>
#include "opal/mca/timer/timer.h"
#include "opal/mca/timer/base/base.h"
#include "opal/mca/timer/linux/timer_linux.h"
#include "opal/constants.h"
#include "opal/util/show_help.h"
static opal_timer_t opal_timer_base_get_cycles_sys_timer(void);
static opal_timer_t opal_timer_base_get_usec_sys_timer(void);
/**
* Define some sane defaults until we call the _init function.
*/
#if OPAL_HAVE_CLOCK_GETTIME
static opal_timer_t opal_timer_base_get_cycles_clock_gettime(void);
static opal_timer_t opal_timer_base_get_usec_clock_gettime(void);
opal_timer_t (*opal_timer_base_get_cycles)(void) = opal_timer_base_get_cycles_clock_gettime;
opal_timer_t (*opal_timer_base_get_usec)(void) = opal_timer_base_get_usec_clock_gettime;
#else
opal_timer_t (*opal_timer_base_get_cycles)(void) = opal_timer_base_get_cycles_sys_timer;
opal_timer_t (*opal_timer_base_get_usec)(void) = opal_timer_base_get_usec_sys_timer;
#endif /* OPAL_HAVE_CLOCK_GETTIME */
opal_timer_t opal_timer_linux_freq = {0};
static int opal_timer_linux_open(void);
const opal_timer_base_component_2_0_0_t mca_timer_linux_component = {
/* First, the mca_component_t struct containing meta information
about the component itself */
.timerc_version = {
OPAL_TIMER_BASE_VERSION_2_0_0,
/* Component name and version */
.mca_component_name = "linux",
MCA_BASE_MAKE_VERSION(component, OPAL_MAJOR_VERSION, OPAL_MINOR_VERSION,
OPAL_RELEASE_VERSION),
/* Component open and close functions */
.mca_open_component = opal_timer_linux_open,
},
.timerc_data = {
/* The component is checkpoint ready */
MCA_BASE_METADATA_PARAM_CHECKPOINT
},
};
static char *
find_info(FILE* fp, char *str, char *buf, size_t buflen)
{
char *tmp;
rewind(fp);
while (NULL != fgets(buf, buflen, fp)) {
if (strncmp(buf, str, strlen(str)) == 0) {
/* we found the line. Now eat everything up to,
including, and one past the : */
for (tmp = buf ; (*tmp != '\0') && (*tmp != ':') ; ++tmp) ;
if (*tmp == '\0') {
continue;
}
for ( ++tmp ; *tmp == ' ' ; ++tmp);
if ('\0' != *tmp) {
return tmp;
}
}
}
return NULL;
}
static int opal_timer_linux_find_freq(void)
{
FILE *fp;
char *loc;
float cpu_f;
int ret;
char buf[1024];
fp = fopen("/proc/cpuinfo", "r");
if (NULL == fp) {
return OPAL_ERR_IN_ERRNO;
}
opal_timer_linux_freq = 0;
#if OPAL_ASSEMBLY_ARCH == OPAL_ARM64
opal_timer_linux_freq = opal_sys_timer_freq();
#endif
if (0 == opal_timer_linux_freq) {
/* first, look for a timebase field. probably only on PPC,
but one never knows */
loc = find_info(fp, "timebase", buf, 1024);
if (NULL != loc) {
int freq;
ret = sscanf(loc, "%d", &freq);
if (1 == ret) {
opal_timer_linux_freq = freq;
}
}
}
if (0 == opal_timer_linux_freq) {
/* find the CPU speed - most timers are 1:1 with CPU speed */
loc = find_info(fp, "cpu MHz", buf, 1024);
if (NULL != loc) {
ret = sscanf(loc, "%f", &cpu_f);
if (1 == ret) {
/* numer is in MHz - convert to Hz and make an integer */
opal_timer_linux_freq = (opal_timer_t) (cpu_f * 1000000);
}
}
}
if (0 == opal_timer_linux_freq) {
/* look for the sparc way of getting cpu frequency */
loc = find_info(fp, "Cpu0ClkTck", buf, 1024);
if (NULL != loc) {
unsigned int freq;
ret = sscanf(loc, "%x", &freq);
if (1 == ret) {
opal_timer_linux_freq = freq;
}
}
}
fclose(fp);
return OPAL_SUCCESS;
}
int opal_timer_linux_open(void)
{
int ret = OPAL_SUCCESS;
if (mca_timer_base_monotonic && !opal_sys_timer_is_monotonic ()) {
#if OPAL_HAVE_CLOCK_GETTIME && (0 == OPAL_TIMER_MONOTONIC)
struct timespec res;
if( 0 == clock_getres(CLOCK_MONOTONIC, &res)) {
opal_timer_linux_freq = 1.e9;
opal_timer_base_get_cycles = opal_timer_base_get_cycles_clock_gettime;
opal_timer_base_get_usec = opal_timer_base_get_usec_clock_gettime;
return ret;
}
#else
/* Monotonic time requested but cannot be found. Complain! */
opal_show_help("help-opal-timer-linux.txt", "monotonic not supported", true);
#endif /* OPAL_HAVE_CLOCK_GETTIME && (0 == OPAL_TIMER_MONOTONIC) */
}
ret = opal_timer_linux_find_freq();
opal_timer_base_get_cycles = opal_timer_base_get_cycles_sys_timer;
opal_timer_base_get_usec = opal_timer_base_get_usec_sys_timer;
return ret;
}
#if OPAL_HAVE_CLOCK_GETTIME
opal_timer_t opal_timer_base_get_usec_clock_gettime(void)
{
struct timespec tp = {.tv_sec = 0, .tv_nsec = 0};
(void) clock_gettime (CLOCK_MONOTONIC, &tp);
return (tp.tv_sec * 1e6 + tp.tv_nsec/1000);
}
opal_timer_t opal_timer_base_get_cycles_clock_gettime(void)
{
struct timespec tp = {.tv_sec = 0, .tv_nsec = 0};
(void) clock_gettime(CLOCK_MONOTONIC, &tp);
return (tp.tv_sec * 1e9 + tp.tv_nsec);
}
#endif /* OPAL_HAVE_CLOCK_GETTIME */
opal_timer_t opal_timer_base_get_cycles_sys_timer(void)
{
#if OPAL_HAVE_SYS_TIMER_GET_CYCLES
return opal_sys_timer_get_cycles();
#else
return 0;
#endif
}
opal_timer_t opal_timer_base_get_usec_sys_timer(void)
{
#if OPAL_HAVE_SYS_TIMER_GET_CYCLES
/* freq is in Hz, so this gives usec */
return opal_sys_timer_get_cycles() * 1000000 / opal_timer_linux_freq;
#else
return 0;
#endif
}
opal_timer_t opal_timer_base_get_freq(void)
{
return opal_timer_linux_freq;
}