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From "Matthew Jacobs (JIRA)" <j...@apache.org>
Subject [jira] [Updated] (HDFS-3170) Add more useful metrics for write latency
Date Mon, 25 Jun 2012 20:58:44 GMT

     [ https://issues.apache.org/jira/browse/HDFS-3170?page=com.atlassian.jira.plugin.system.issuetabpanels:all-tabpanel
]

Matthew Jacobs updated HDFS-3170:
---------------------------------

    Status: Patch Available  (was: Open)

The attached patch adds the write-latency related metrics described in this JIRA. The tests
verify that the metrics are added. I manually checked that the averaged latency values were
reasonable. For example, I added a sleep before taking the ack end time and then verified
that the resulting metric (via jmx) was greater than the sleep time.
                
> Add more useful metrics for write latency
> -----------------------------------------
>
>                 Key: HDFS-3170
>                 URL: https://issues.apache.org/jira/browse/HDFS-3170
>             Project: Hadoop HDFS
>          Issue Type: Improvement
>          Components: data-node
>    Affects Versions: 2.0.0-alpha
>            Reporter: Todd Lipcon
>            Assignee: Matthew Jacobs
>         Attachments: hdfs-3170.txt
>
>
> Currently, the only write-latency related metric we expose is the total amount of time
taken by opWriteBlock. This is practically useless, since (a) different blocks may be wildly
different sizes, and (b) if the writer is only generating data slowly, it will make a block
write take longer by no fault of the DN. I would like to propose two new metrics:
> 1) *flush-to-disk time*: count how long it takes for each call to flush an incoming packet
to disk (including the checksums). In most cases this will be close to 0, as it only flushes
to buffer cache, but if the backing block device enters congested writeback, it can take much
longer, which provides an interesting metric.
> 2) *round trip to downstream pipeline node*: track the round trip latency for the part
of the pipeline between the local node and its downstream neighbors. When we add a new packet
to the ack queue, save the current timestamp. When we receive an ack, update the metric based
on how long since we sent the original packet. This gives a metric of the total RTT through
the pipeline. If we also include this metric in the ack to upstream, we can subtract the amount
of time due to the later stages in the pipeline and have an accurate count of this particular
link.

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