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devlink: Add health reporter create/destroy functionality

Devlink health reporter is an instance for reporting, diagnosing and
recovering from run time errors discovered by the reporters.
Define it's data structure and supported operations.
In addition, expose devlink API to create and destroy a reporter.
Each devlink instance will hold it's own reporters list.

As part of the allocation, driver shall provide a set of callbacks which
will be used the devlink in order to handle health reports and user
commands related to this reporter. In addition, driver is entitled to
provide some priv pointer, which can be fetched from the reporter by
devlink_health_reporter_priv function.

For each reporter, devlink will hold a metadata of statistics,
buffers and status.

Signed-off-by: Eran Ben Elisha <eranbe@mellanox.com>
Reviewed-by: Moshe Shemesh <moshe@mellanox.com>
Signed-off-by: David S. Miller <davem@davemloft.net>
hifive-unleashed-5.1
Eran Ben Elisha 2019-01-17 23:59:11 +02:00 committed by David S. Miller
parent cb5ccfbe73
commit 880ee82f03
2 changed files with 186 additions and 0 deletions

View File

@ -30,6 +30,7 @@ struct devlink {
struct list_head param_list;
struct list_head region_list;
u32 snapshot_id;
struct list_head reporter_list;
struct devlink_dpipe_headers *dpipe_headers;
const struct devlink_ops *ops;
struct device *dev;
@ -424,6 +425,34 @@ struct devlink_region;
typedef void devlink_snapshot_data_dest_t(const void *data);
struct devlink_health_buffer;
struct devlink_health_reporter;
/**
* struct devlink_health_reporter_ops - Reporter operations
* @name: reporter name
* dump_size: dump buffer size allocated by the devlink
* diagnose_size: diagnose buffer size allocated by the devlink
* recover: callback to recover from reported error
* if priv_ctx is NULL, run a full recover
* dump: callback to dump an object
* if priv_ctx is NULL, run a full dump
* diagnose: callback to diagnose the current status
*/
struct devlink_health_reporter_ops {
char *name;
unsigned int dump_size;
unsigned int diagnose_size;
int (*recover)(struct devlink_health_reporter *reporter,
void *priv_ctx);
int (*dump)(struct devlink_health_reporter *reporter,
struct devlink_health_buffer **buffers_array,
unsigned int buffer_size, unsigned int num_buffers,
void *priv_ctx);
int (*diagnose)(struct devlink_health_reporter *reporter,
struct devlink_health_buffer **buffers_array,
unsigned int buffer_size, unsigned int num_buffers);
};
struct devlink_ops {
int (*reload)(struct devlink *devlink, struct netlink_ext_ack *extack);
@ -602,6 +631,16 @@ int devlink_health_buffer_put_value_string(struct devlink_health_buffer *buffer,
char *name);
int devlink_health_buffer_put_value_data(struct devlink_health_buffer *buffer,
void *data, int len);
struct devlink_health_reporter *
devlink_health_reporter_create(struct devlink *devlink,
const struct devlink_health_reporter_ops *ops,
u64 graceful_period, bool auto_recover,
void *priv);
void
devlink_health_reporter_destroy(struct devlink_health_reporter *reporter);
void *
devlink_health_reporter_priv(struct devlink_health_reporter *reporter);
#else
static inline struct devlink *devlink_alloc(const struct devlink_ops *ops,
@ -920,6 +959,26 @@ devlink_health_buffer_put_value_data(struct devlink_health_buffer *buffer,
{
return 0;
}
static inline struct devlink_health_reporter *
devlink_health_reporter_create(struct devlink *devlink,
const struct devlink_health_reporter_ops *ops,
u64 graceful_period, bool auto_recover,
void *priv)
{
return NULL;
}
static inline void
devlink_health_reporter_destroy(struct devlink_health_reporter *reporter)
{
}
static inline void *
devlink_health_reporter_priv(struct devlink_health_reporter *reporter)
{
return NULL;
}
#endif
#endif /* _NET_DEVLINK_H_ */

View File

@ -4098,6 +4098,132 @@ nla_put_failure:
return err;
}
struct devlink_health_reporter {
struct list_head list;
struct devlink_health_buffer **dump_buffers_array;
struct mutex dump_lock; /* lock parallel read/write from dump buffers */
struct devlink_health_buffer **diagnose_buffers_array;
struct mutex diagnose_lock; /* lock parallel read/write from diagnose buffers */
void *priv;
const struct devlink_health_reporter_ops *ops;
struct devlink *devlink;
u64 graceful_period;
bool auto_recover;
u8 health_state;
};
void *
devlink_health_reporter_priv(struct devlink_health_reporter *reporter)
{
return reporter->priv;
}
EXPORT_SYMBOL_GPL(devlink_health_reporter_priv);
static struct devlink_health_reporter *
devlink_health_reporter_find_by_name(struct devlink *devlink,
const char *reporter_name)
{
struct devlink_health_reporter *reporter;
list_for_each_entry(reporter, &devlink->reporter_list, list)
if (!strcmp(reporter->ops->name, reporter_name))
return reporter;
return NULL;
}
/**
* devlink_health_reporter_create - create devlink health reporter
*
* @devlink: devlink
* @ops: ops
* @graceful_period: to avoid recovery loops, in msecs
* @auto_recover: auto recover when error occurs
* @priv: priv
*/
struct devlink_health_reporter *
devlink_health_reporter_create(struct devlink *devlink,
const struct devlink_health_reporter_ops *ops,
u64 graceful_period, bool auto_recover,
void *priv)
{
struct devlink_health_reporter *reporter;
mutex_lock(&devlink->lock);
if (devlink_health_reporter_find_by_name(devlink, ops->name)) {
reporter = ERR_PTR(-EEXIST);
goto unlock;
}
if (WARN_ON(ops->dump && !ops->dump_size) ||
WARN_ON(ops->diagnose && !ops->diagnose_size) ||
WARN_ON(auto_recover && !ops->recover) ||
WARN_ON(graceful_period && !ops->recover)) {
reporter = ERR_PTR(-EINVAL);
goto unlock;
}
reporter = kzalloc(sizeof(*reporter), GFP_KERNEL);
if (!reporter) {
reporter = ERR_PTR(-ENOMEM);
goto unlock;
}
if (ops->dump) {
reporter->dump_buffers_array =
devlink_health_buffers_create(ops->dump_size);
if (!reporter->dump_buffers_array) {
kfree(reporter);
reporter = ERR_PTR(-ENOMEM);
goto unlock;
}
}
if (ops->diagnose) {
reporter->diagnose_buffers_array =
devlink_health_buffers_create(ops->diagnose_size);
if (!reporter->diagnose_buffers_array) {
devlink_health_buffers_destroy(reporter->dump_buffers_array,
DEVLINK_HEALTH_SIZE_TO_BUFFERS(ops->dump_size));
kfree(reporter);
reporter = ERR_PTR(-ENOMEM);
goto unlock;
}
}
list_add_tail(&reporter->list, &devlink->reporter_list);
mutex_init(&reporter->dump_lock);
mutex_init(&reporter->diagnose_lock);
reporter->priv = priv;
reporter->ops = ops;
reporter->devlink = devlink;
reporter->graceful_period = graceful_period;
reporter->auto_recover = auto_recover;
unlock:
mutex_unlock(&devlink->lock);
return reporter;
}
EXPORT_SYMBOL_GPL(devlink_health_reporter_create);
/**
* devlink_health_reporter_destroy - destroy devlink health reporter
*
* @reporter: devlink health reporter to destroy
*/
void
devlink_health_reporter_destroy(struct devlink_health_reporter *reporter)
{
mutex_lock(&reporter->devlink->lock);
list_del(&reporter->list);
devlink_health_buffers_destroy(reporter->dump_buffers_array,
DEVLINK_HEALTH_SIZE_TO_BUFFERS(reporter->ops->dump_size));
devlink_health_buffers_destroy(reporter->diagnose_buffers_array,
DEVLINK_HEALTH_SIZE_TO_BUFFERS(reporter->ops->diagnose_size));
kfree(reporter);
mutex_unlock(&reporter->devlink->lock);
}
EXPORT_SYMBOL_GPL(devlink_health_reporter_destroy);
static const struct nla_policy devlink_nl_policy[DEVLINK_ATTR_MAX + 1] = {
[DEVLINK_ATTR_BUS_NAME] = { .type = NLA_NUL_STRING },
[DEVLINK_ATTR_DEV_NAME] = { .type = NLA_NUL_STRING },
@ -4383,6 +4509,7 @@ struct devlink *devlink_alloc(const struct devlink_ops *ops, size_t priv_size)
INIT_LIST_HEAD(&devlink->resource_list);
INIT_LIST_HEAD(&devlink->param_list);
INIT_LIST_HEAD(&devlink->region_list);
INIT_LIST_HEAD(&devlink->reporter_list);
mutex_init(&devlink->lock);
return devlink;
}