numam-dpdk/lib/ethdev/sff_telemetry.c
Dmitry Kozlyuk 72b452c5f2 eal: remove unneeded includes from a public header
Do not include <ctype.h>, <errno.h>, and <stdlib.h> from <rte_common.h>,
because they are not used by this file.
Include the needed headers directly from the files that need them.

Signed-off-by: Dmitry Kozlyuk <dmitry.kozliuk@gmail.com>
Acked-by: Bruce Richardson <bruce.richardson@intel.com>
2022-09-21 15:31:03 +02:00

153 lines
3.5 KiB
C

/* SPDX-License-Identifier: BSD-3-Clause
* Copyright(c) 2022 Intel Corporation
*/
#include <ctype.h>
#include <errno.h>
#include <stdlib.h>
#include "rte_ethdev.h"
#include <rte_common.h>
#include "sff_telemetry.h"
#include <telemetry_data.h>
static void
sff_port_module_eeprom_parse(uint16_t port_id, struct rte_tel_data *d)
{
struct rte_eth_dev_module_info minfo;
struct rte_dev_eeprom_info einfo;
int ret;
if (d == NULL) {
RTE_ETHDEV_LOG(ERR, "Dict invalid\n");
return;
}
ret = rte_eth_dev_get_module_info(port_id, &minfo);
if (ret != 0) {
switch (ret) {
case -ENODEV:
RTE_ETHDEV_LOG(ERR, "Port index %d invalid\n", port_id);
break;
case -ENOTSUP:
RTE_ETHDEV_LOG(ERR, "Operation not supported by device\n");
break;
case -EIO:
RTE_ETHDEV_LOG(ERR, "Device is removed\n");
break;
default:
RTE_ETHDEV_LOG(ERR, "Unable to get port module info, %d\n", ret);
break;
}
return;
}
einfo.offset = 0;
einfo.length = minfo.eeprom_len;
einfo.data = calloc(1, minfo.eeprom_len);
if (einfo.data == NULL) {
RTE_ETHDEV_LOG(ERR, "Allocation of port %u EEPROM data failed\n", port_id);
return;
}
ret = rte_eth_dev_get_module_eeprom(port_id, &einfo);
if (ret != 0) {
switch (ret) {
case -ENODEV:
RTE_ETHDEV_LOG(ERR, "Port index %d invalid\n", port_id);
break;
case -ENOTSUP:
RTE_ETHDEV_LOG(ERR, "Operation not supported by device\n");
break;
case -EIO:
RTE_ETHDEV_LOG(ERR, "Device is removed\n");
break;
default:
RTE_ETHDEV_LOG(ERR, "Unable to get port module EEPROM, %d\n", ret);
break;
}
free(einfo.data);
return;
}
switch (minfo.type) {
/* parsing module EEPROM data base on different module type */
case RTE_ETH_MODULE_SFF_8079:
sff_8079_show_all(einfo.data, d);
break;
case RTE_ETH_MODULE_SFF_8472:
sff_8079_show_all(einfo.data, d);
sff_8472_show_all(einfo.data, d);
break;
case RTE_ETH_MODULE_SFF_8436:
case RTE_ETH_MODULE_SFF_8636:
sff_8636_show_all(einfo.data, einfo.length, d);
break;
default:
RTE_ETHDEV_LOG(NOTICE, "Unsupported module type: %u\n", minfo.type);
break;
}
free(einfo.data);
}
void
ssf_add_dict_string(struct rte_tel_data *d, const char *name_str, const char *value_str)
{
struct tel_dict_entry *e = &d->data.dict[d->data_len];
if (d->type != RTE_TEL_DICT)
return;
if (d->data_len >= RTE_TEL_MAX_DICT_ENTRIES) {
RTE_ETHDEV_LOG(ERR, "data_len has exceeded the maximum number of inserts\n");
return;
}
e->type = RTE_TEL_STRING_VAL;
/* append different values for same keys */
if (d->data_len > 0) {
struct tel_dict_entry *previous = &d->data.dict[d->data_len - 1];
if (strcmp(previous->name, name_str) == 0) {
strlcat(previous->value.sval, "; ", RTE_TEL_MAX_STRING_LEN);
strlcat(previous->value.sval, value_str, RTE_TEL_MAX_STRING_LEN);
goto end;
}
}
strlcpy(e->value.sval, value_str, RTE_TEL_MAX_STRING_LEN);
strlcpy(e->name, name_str, RTE_TEL_MAX_STRING_LEN);
d->data_len++;
end:
return;
}
int
eth_dev_handle_port_module_eeprom(const char *cmd __rte_unused, const char *params,
struct rte_tel_data *d)
{
char *end_param;
int port_id;
if (params == NULL || strlen(params) == 0 || !isdigit(*params))
return -1;
errno = 0;
port_id = strtoul(params, &end_param, 0);
if (errno != 0) {
RTE_ETHDEV_LOG(ERR, "Invalid argument, %d\n", errno);
return -1;
}
if (*end_param != '\0')
RTE_ETHDEV_LOG(NOTICE,
"Extra parameters [%s] passed to ethdev telemetry command, ignoring\n",
end_param);
rte_tel_data_start_dict(d);
sff_port_module_eeprom_parse(port_id, d);
return 0;
}