Files
s390-tools/libzpci/pci_list.c
Niklas Schnelle cf5560a100 libzpci: opticsmon: Refactor on_link_change() using new zpci_find_by_netdev()
Finding a PCI device given the name of a netdev seems generally useful
so pull this out into a new zpci_find_by_netdev() function in libzpci
and use this to simplify on_link_change() removing the need for
backwards goto.

Reviewed-by: Halil Pasic <pasic@linux.ibm.com>
Reviewed-by: Jan Höppner <hoeppner@linux.ibm.com>
Signed-off-by: Niklas Schnelle <schnelle@linux.ibm.com>
Signed-off-by: Jan Höppner <hoeppner@linux.ibm.com>
2024-12-13 16:26:35 +01:00

390 lines
8.8 KiB
C

/**
* libzpci - Functions to handle zPCI devices and their properties
*
* Copyright IBM Corp. 2023
*
* s390-tools is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#include <err.h>
#include <errno.h>
#include <linux/if.h>
#include <stdint.h>
#include <stdlib.h>
#include <string.h>
#include "lib/pci_list.h"
#include "lib/util_file.h"
#include "lib/util_libc.h"
#include "lib/util_list.h"
#include "lib/util_path.h"
#include "lib/util_scandir.h"
/**
* Get the function type name for the given device
*
* The device type name is suitable for presentation to a user.
*
* @param[in] zdev The device in question
*
* @return a string representing the PCI device type
*/
const char *zpci_pft_str(struct zpci_dev *zdev)
{
switch (zdev->pft) {
case ZPCI_PFT_UNCLASSIFIED:
return "unclassified";
case ZPCI_PFT_ROCE_EXPRESS:
return "RoCE Express";
case ZPCI_PFT_ROCE_EXPRESS2:
return "RoCE Express-2";
case ZPCI_PFT_CNW:
return "Cloud Network Adapter";
case ZPCI_PFT_NETH:
return "Network Express Hybrid";
case ZPCI_PFT_NETD:
return "Network Express Dedicated";
case ZPCI_PFT_NVME:
return "NVMe";
case ZPCI_PFT_ISM:
return "ISM";
default:
return "unknown";
}
}
/**
* Get a textual representation of the device's PCI address
*
* The representation has extended "DDDD:bb:dd.f" format used
* by Linux tooling such as lspci.
*
* @param[in] zdev The device in question
*
* @return the string representing the PCI address
*/
char *zpci_pci_addr(struct zpci_dev *zdev)
{
uint8_t bus = zdev->bdf.bus;
uint8_t dev = zdev->bdf.dev;
uint8_t fn = zdev->bdf.fn;
char *pci_addr;
util_asprintf(&pci_addr, "%04x:%02x:%02x.%x", zdev->domain_nr, bus, dev, fn);
return pci_addr;
}
/**
* Get an operationanl state value from its state name
*
* The state names follow RFC 2863 and the values match
* IF_OPER_* in linux/if.h.
*
* @param[in] oper_str The name of the operational state
*
* @return the operational state value
*/
operstate_t zpci_operstate_from_str(const char *oper_str)
{
if (!strcmp(oper_str, "notpresent"))
return IF_OPER_NOTPRESENT;
else if (!strcmp(oper_str, "down"))
return IF_OPER_DOWN;
else if (!strcmp(oper_str, "lowerlayerdown"))
return IF_OPER_LOWERLAYERDOWN;
else if (!strcmp(oper_str, "testing"))
return IF_OPER_TESTING;
else if (!strcmp(oper_str, "dormant"))
return IF_OPER_DORMANT;
else if (!strcmp(oper_str, "up"))
return IF_OPER_UP;
else
return IF_OPER_UNKNOWN;
}
/**
* Get an operationanl state name from its value
*
* The state names follow RFC 2863 and the values match
* IF_OPER_* in linux/if.h.
*
* @param[in] state The value of the operational state
*
* @return the operational state name string representation
*/
const char *zpci_operstate_str(operstate_t state)
{
switch (state) {
case IF_OPER_NOTPRESENT:
return "notpresent";
case IF_OPER_DOWN:
return "down";
case IF_OPER_LOWERLAYERDOWN:
return "lowerlayerdown";
case IF_OPER_TESTING:
return "testing";
case IF_OPER_DORMANT:
return "dormant";
case IF_OPER_UP:
return "up";
case IF_OPER_UNKNOWN:
default:
return "unknown";
};
}
static int zpci_populate_from_slot_dir(struct zpci_dev *zdev, const char *slot_dir,
const char *slot_name)
{
char buf_addr[11]; /* "dddd:bb:dd\0" */
uint8_t bus, df;
uint32_t domain;
int val, rc;
rc = sscanf(slot_name, "%x", &zdev->fid);
if (rc != 1)
return -EINVAL;
rc = util_file_read_line(buf_addr, sizeof(buf_addr), "%s/%s/address", slot_dir, slot_name);
if (rc) {
warn("Reading address from slot %s/%s", slot_dir, slot_name);
return rc;
}
rc = sscanf(buf_addr, "%04x:%02hhx:%02hhx", &domain, &bus, &df);
if (rc != 3)
return -EINVAL;
zdev->domain_nr = domain;
zdev->bdf.val = (((uint16_t)bus) << 8) | df;
rc = util_file_read_i(&val, 10, "%s/%s/power", slot_dir, slot_name);
if (rc) {
warn("Reading power from slot %s/%s", slot_dir, slot_name);
return rc;
}
zdev->conf = val > 0;
return 0;
}
static int zpci_populate_netdevices(struct zpci_dev *zdev, const char *dev_dir)
{
const char *netdev_patt = "en.*";
struct dirent **de_vec;
int count, i, rc = 0;
char *net_dir;
char buf[16]; /* "lowerlayerdown" */
util_asprintf(&net_dir, "%s/net", dev_dir);
count = util_scandir(&de_vec, alphasort, net_dir, netdev_patt);
if (count == -1) {
warn("Reading netdevice information for %s/net failed", dev_dir);
rc = -EINVAL;
goto out_net_dir;
}
/* A directory per netdev */
for (i = 0; i < count; i++) {
if (de_vec[i]->d_type != DT_DIR) {
rc = -EINVAL;
goto out_scan_dir;
}
}
zdev->num_netdevs = count;
if (!count)
goto out_scan_dir;
zdev->netdevs = util_zalloc(sizeof(struct zpci_netdev) * zdev->num_netdevs);
for (i = 0; i < count; i++) {
zdev->netdevs[i].name = util_strdup(de_vec[i]->d_name);
rc = util_file_read_line(buf, sizeof(buf), "%s/%s/operstate", net_dir,
zdev->netdevs[i].name);
if (rc) {
/* If operstate is not readable just set to unknown */
zdev->netdevs[i].operstate = IF_OPER_UNKNOWN;
rc = 0;
continue;
}
zdev->netdevs[i].operstate = zpci_operstate_from_str(buf);
}
out_scan_dir:
util_scandir_free(de_vec, count);
out_net_dir:
free(net_dir);
return rc;
}
static int zpci_populate_from_dev_dir(struct zpci_dev *zdev)
{
char *pci_addr = zpci_pci_addr(zdev);
int rc, val;
char *path;
path = util_path_sysfs("bus/pci/devices/%s", pci_addr);
if (!path) {
rc = -EINVAL;
goto out_pci_addr;
}
if (!util_path_exists(path)) {
rc = -ENODEV;
goto out_path;
}
rc = util_file_read_i(&val, 16, "%s/uid", path);
if (rc)
goto out_path;
zdev->uid = val;
/* In old Linux versions uid_is_unique doesn't exist
* so don't treat this as an error.
*/
rc = util_file_read_i(&val, 10, "%s/uid_is_unique", path);
if (!rc)
zdev->uid_is_unique = !!val;
rc = util_file_read_i(&val, 16, "%s/pchid", path);
if (rc)
goto out_path;
zdev->pchid = val;
rc = util_file_read_i(&val, 16, "%s/vfn", path);
if (rc)
goto out_path;
zdev->vfn = val;
rc = util_file_read_i(&val, 10, "%s/port", path);
if (rc)
goto out_path;
zdev->port = val;
rc = util_file_read_i(&val, 16, "%s/pft", path);
if (rc)
goto out_path;
zdev->pft = val;
if (util_path_is_readable("%s/net", path)) {
rc = zpci_populate_netdevices(zdev, path);
if (rc)
goto out_path;
}
out_path:
free(path);
out_pci_addr:
free(pci_addr);
return rc;
}
/**
* Get a list of all configured and standby PCI devices
*
* @return a list of struct zpci_dev in case of success,
* NULL in case of failure
*/
struct util_list *zpci_dev_list(void)
{
char *path = util_path_sysfs("bus/pci/slots/");
const char *zpci_slot_patt = "[0-9a-f]{8}";
struct util_list *zpci_list = NULL;
struct dirent **de_vec;
struct zpci_dev *zdev;
int count, i, rc;
count = util_scandir(&de_vec, alphasort, path, zpci_slot_patt);
if (count == -1) {
warn("util_scandir failed");
goto error_path;
}
zpci_list = util_list_new(struct zpci_dev, entry);
for (i = 0; i < count; i++) {
if (de_vec[i]->d_type != DT_DIR)
continue;
zdev = util_zalloc(sizeof(*zdev));
rc = zpci_populate_from_slot_dir(zdev, path, de_vec[i]->d_name);
if (rc) {
free(zdev);
continue;
}
if (zdev->conf) {
rc = zpci_populate_from_dev_dir(zdev);
if (rc) {
free(zdev);
continue;
}
}
util_list_add_tail(zpci_list, zdev);
}
util_scandir_free(de_vec, count);
error_path:
free(path);
return zpci_list;
}
/**
* Free a PCI device struct
*
* This frees both the struct zpci_dev and its associated netdevs array
*
* @param[in] zdev The device struct to free
*/
void zpci_free_dev(struct zpci_dev *zdev)
{
int i;
if (zdev->num_netdevs) {
for (i = 0; i < zdev->num_netdevs; i++)
free(zdev->netdevs[i].name);
free(zdev->netdevs);
}
free(zdev);
}
/**
* Free a PCI device list
*
* This frees all elements in the list
*
* @param[in] zpci_list The device list to free
*/
void zpci_free_dev_list(struct util_list *zpci_list)
{
struct zpci_dev *zdev, *tmp;
util_list_iterate_safe(zpci_list, zdev, tmp) {
util_list_remove(zpci_list, zdev);
zpci_free_dev(zdev);
}
util_list_free(zpci_list);
}
/**
* Find a PCI device given the name of a netdev
*
* This function allows finding a PCI device when only the name of one
* of its netdevs is known.
*
* @param[in] zpci_list The device list to search
* @param[in] netdev_name The name of the netdev
* @param[out] netdev Pointer to store the netdev or NULL if
* only the PCI device is needed
*
* @return The PCI device if one is found NULL otherwise
*/
struct zpci_dev *zpci_find_by_netdev(struct util_list *zpci_list, char *netdev_name,
struct zpci_netdev **netdev)
{
struct zpci_dev *zdev = NULL;
int i;
util_list_iterate(zpci_list, zdev) {
for (i = 0; i < zdev->num_netdevs; i++) {
if (!strcmp(zdev->netdevs[i].name, netdev_name)) {
if (netdev)
*netdev = &zdev->netdevs[i];
return zdev;
}
}
}
return NULL;
}