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openmpi/opal/dss/dss_compare.c
Ralph Castain 9988b97b97 Extend/update how we handle process stats. Add the ability to collect node-level stats separate from the process stats. Update the process stat memory fields to report in MBytes instead of KBytes as I can't find any process that runs in KBytes nowadays.
Rename the memusage sensor plugin to "resusage" as it will soon be updated to include full process stat monitoring.

Extend the heartbeat sensor to report node and process stats in the heartbeat.

Store the process and node stats in their respective orte_xxx_t object.

This commit was SVN r24629.
2011-04-21 22:55:45 +00:00

268 строки
7.1 KiB
C

/*
* Copyright (c) 2004-2007 The Trustees of Indiana University and Indiana
* University Research and Technology
* Corporation. All rights reserved.
* Copyright (c) 2004-2006 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.
* $COPYRIGHT$
*
* Additional copyrights may follow
*
* $HEADER$
*/
#include "opal_config.h"
#include <stdlib.h>
#include "opal/dss/dss_internal.h"
int opal_dss_compare(const void *value1, const void *value2, opal_data_type_t type)
{
opal_dss_type_info_t *info;
/* check for error */
if (NULL == value1 || NULL == value2) {
return OPAL_ERR_BAD_PARAM;
}
/* Lookup the compare function for this type and call it */
if (NULL == (info = (opal_dss_type_info_t*)opal_pointer_array_get_item(&opal_dss_types, type))) {
return OPAL_ERR_UNKNOWN_DATA_TYPE;
}
return info->odti_compare_fn(value1, value2, type);
}
/*
* NUMERIC COMPARE FUNCTIONS
*/
int opal_dss_compare_int(int *value1, int *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_uint(unsigned int *value1, unsigned int *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_size(size_t *value1, size_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_pid(pid_t *value1, pid_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_byte(char *value1, char *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_char(char *value1, char *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_int8(int8_t *value1, int8_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_uint8(uint8_t *value1, uint8_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_int16(int16_t *value1, int16_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_uint16(uint16_t *value1, uint16_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_int32(int32_t *value1, int32_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_uint32(uint32_t *value1, uint32_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_int64(int64_t *value1, int64_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
int opal_dss_compare_uint64(uint64_t *value1, uint64_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
/*
* NON-NUMERIC SYSTEM TYPES
*/
/* NULL */
int opal_dss_compare_null(char *value1, char *value2, opal_data_type_t type)
{
return OPAL_EQUAL;
}
/* BOOL */
int opal_dss_compare_bool(bool *value1, bool *value2, opal_data_type_t type)
{
if (*value1 && !(*value2)) return OPAL_VALUE1_GREATER;
if (*value2 && !(*value1)) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
/* STRING */
int opal_dss_compare_string(char *value1, char *value2, opal_data_type_t type)
{
if (0 < strcmp(value1, value2)) return OPAL_VALUE2_GREATER;
if (0 > strcmp(value1, value2)) return OPAL_VALUE1_GREATER;
return OPAL_EQUAL;
}
/* COMPARE FUNCTIONS FOR GENERIC OPAL TYPES */
/* OPAL_DATA_TYPE */
int opal_dss_compare_dt(opal_data_type_t *value1, opal_data_type_t *value2, opal_data_type_t type)
{
if (*value1 > *value2) return OPAL_VALUE1_GREATER;
if (*value2 > *value1) return OPAL_VALUE2_GREATER;
return OPAL_EQUAL;
}
/* OPAL_DATA_VALUE */
int opal_dss_compare_data_value(opal_dss_value_t *value1, opal_dss_value_t *value2, opal_data_type_t type)
{
/* can't compare if the two types don't match */
if (value1->type != value2->type) {
return OPAL_ERR_TYPE_MISMATCH;
}
/* okay, go ahead and compare the values themselves */
return opal_dss.compare(value1->data, value2->data, value1->type);
}
/* OPAL_BYTE_OBJECT */
int opal_dss_compare_byte_object(opal_byte_object_t *value1, opal_byte_object_t *value2, opal_data_type_t type)
{
int checksum, diff;
int32_t i;
/* compare the sizes first - bigger size object is "greater than" */
if (value1->size > value2->size) return OPAL_VALUE1_GREATER;
if (value2->size > value1->size) return OPAL_VALUE2_GREATER;
/* get here if the two sizes are identical - now do a simple checksum-style
* calculation to determine "biggest"
*/
checksum = 0;
for (i=0; i < value1->size; i++) {
/* protect against overflows */
diff = value1->bytes[i] - value2->bytes[i];
if (INT_MAX-abs(checksum)-abs(diff) < 0) { /* got an overflow condition */
checksum = 0;
}
checksum += diff;
}
if (0 > checksum) return OPAL_VALUE2_GREATER; /* sum of value2 bytes was greater */
if (0 < checksum) return OPAL_VALUE1_GREATER; /* of value1 bytes was greater */
return OPAL_EQUAL; /* sum of both value's bytes was identical */
}
/* OPAL_PSTAT */
int opal_dss_compare_pstat(opal_pstats_t *value1, opal_pstats_t *value2, opal_data_type_t type)
{
return OPAL_EQUAL; /* eventually compare field to field */
}
/* OPAL_NODE_STAT */
int opal_dss_compare_node_stat(opal_node_stats_t *value1, opal_node_stats_t *value2, opal_data_type_t type)
{
return OPAL_EQUAL; /* eventually compare field to field */
}