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@@ -557,3 +557,37 @@ Generally, you should aim for **maximal throughput** with **acceptable latency**
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### Source(s) and further reading
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### Source(s) and further reading
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* [Understanding latency vs throughput](https://community.cadence.com/cadence_blogs_8/b/sd/archive/2010/09/13/understanding-latency-vs-throughput)
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* [Understanding latency vs throughput](https://community.cadence.com/cadence_blogs_8/b/sd/archive/2010/09/13/understanding-latency-vs-throughput)
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+
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+## Availability vs consistency
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+
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+### CAP theorem
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+
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+<p align="center">
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+ <img src="http://i.imgur.com/bgLMI2u.png">
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+ <br/>
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+ <i><a href=http://robertgreiner.com/2014/08/cap-theorem-revisited>Source: CAP theorem revisited</a></i>
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+</p>
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+
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+In a distributed computer system, you can only support two of the following guarantees:
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+
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+* **Consistency** - Every read receives the most recent write or an error
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+* **Availability** - Every request receives a response, without guarantee that it contains the most recent version of the information
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+* **Partition Tolerance** - The system continues to operate despite arbitrary partitioning due to network failures
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+
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+*Networks aren't reliable, so you'll need to support partition tolerance. You'll need to make a software tradeoff between consistency and availability.*
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+
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+#### CP - consistency and partition tolerance
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+
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+Waiting for a response from the partitioned node might result in a timeout error. CP is a good choice if your business needs require atomic reads and writes.
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+
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+#### AP - availability and partition tolerance
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+
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+Responses return the most recent version of the data, which might not be the latest. Writes might take some time to propagate when the partition is resolved.
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+
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+AP is a good choice if the business needs allow for [eventual consistency](#eventual-consistency) or when the system needs to continue working despite external errors.
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+
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+### Source(s) and further reading
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+
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+* [CAP theorem revisited](http://robertgreiner.com/2014/08/cap-theorem-revisited/)
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+* [A plain english introduction to CAP theorem](http://ksat.me/a-plain-english-introduction-to-cap-theorem/)
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+* [CAP FAQ](https://github.com/henryr/cap-faq)
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