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| 000-case studies standing on the shoulders of giants | 001-introduction to distributed file systems | 002-introduction to gfs |
| 003-gfs file operations | 004-detailed design of gfs | 005-workflow of create and read file operations in gfs |
| 006-workflow of write operations in gfs | 007-workflow of delete and snapshot operations in gfs | 008-relaxed data consistency model |
| 009-dealing with data inconsistencies in gfs | 010-metadata consistency model of gfs | 011-evaluation of gfs |
| 012-quiz on gfs | 013-introduction to colossus | 014-design and evaluation of colossus |
| 015-quiz on colossus | 016-introduction to tectonic | 017-zippydb design |
| 018-detailed design of tectonic | 019-multitenancy in tectonic | 020-tenant specific optimization in tectonic |
| 021-empirical evaluation of tectonic s functional requirements | 022-evaluation of tectonic | 023-quiz on tectonic |
| 024-introduction to distributed databases | 025-introduction to bigtable | 026-data model of bigtable |
| 027-detailed design of bigtable part i | 028-detailed design of bigtable part ii | 029-design refinements in bigtable |
| 030-evaluation of bigtable | 031-quiz on bigtable | 032-introduction to megastore |
| 033-high level design for better availability and scalability | 034-data model of megastore | 035-replication in megastore |
| 036-evaluation of megastore | 037-quiz on megastore | 038-introduction to spanner |
| 039-detailed design of spanner | 040-database buckets and data model of spanner | 041-truetime api in spanner |
| 042-spanner truetime and the cap theorem | 043-concurrency control in spanner | 044-database operations in spanner |
| 045-evaluation of spanner | 046-quiz on spanner | 047-introduction to key value stores |
| 048-motivation and requirements for a many core approach | 049-estimations and limitations of a many core system | 050-detailed design of a many core system |
| 051-evaluation of the many core system | 052-quiz on many core systems | 053-introduction to scaling memcache |
| 054-single server level of memcache | 055-cluster level of memcache | 056-regional level of memcache |
| 057-cross regional level of memcache | 058-evaluation of memcache | 059-quiz on memcache |
| 060-introduction to silt | 061-high level design of silt | 062-a write friendly store for silt part i |
| 063-a write friendly store for silt part ii | 064-a write friendly store for silt part iii | 065-intermediary store s in silt |
| 066-a memory efficient store for silt part i | 067-a memory efficient store for silt part ii | 068-a memory efficient store for silt part iii |
| 069-request flows in silt | 070-evaluating and extending the design of silt | 071-quiz on silt |
| 072-introduction to dynamodb | 073-high level design of dynamodb | 074-no fixed schema in dynamodb |
| 075-partitioning and replication in dynamodb | 076-adapting to traffic patterns in dynamodb | 077-durability and correctness in dynamodb |
| 078-ensuring high availability in dynamodb | 079-quiz on dynamodb | 080-introduction to concurrency management |
| 081-introduction to two phase locking 2pl | 082-analysis and evaluation of two phase locking 2pl | 083-quiz on 2pl |
| 084-introduction to chubby | 085-detailed design of chubby part i | 086-detailed design of chubby part ii |
| 087-detailed design of chubby part iii | 088-detailed design of chubby part iv | 089-the rationale behind chubbys design |
| 090-evaluation of chubby | 091-quiz on chubby | 092-introduction to zookeeper |
| 093-detailed design of zookeeper | 094-primitives of zookeeper | 095-evaluation of zookeeper |
| 096-quiz on zookeeper | 097-introduction to big data processing systems | 098-system design mapreduce |
| 099-high level design of mapreduce | 100-mapreduce detailed design | 101-design refinements in mapreduce part i |
| 102-design refinements in mapreduce part ii | 103-mapreduce evaluation | 104-concluding mapreduce |
| 105-quiz on mapreduce | 106-introduction to spark | 107-requirements of spark |
| 108-high level design of spark | 109-resilient distributed datasets of spark | 110-parallel operations in spark |
| 111-shared variables in spark | 112-detailed design of spark | 113-refinements in spark |
| 114-evaluation of spark | 115-quiz on spark | 116-introduction to kafka |
| 117-high level design of kafka | 118-detailed design of kafka | 119-efficiency of kafka |
| 120-distributed coordination in kafka | 121-delivery guarantees of kafka | 122-evaluation of kafka |
| 123-quiz on kafka | 124-introduction to consensus in distributed systems | 125-consensus prerequisites and two generals problem |
| 126-flp impossibility | 127-the byzantine generals problem | 128-quiz on consensus fundamentals |
| 129-introduction to two phase commit 2pc | 130-working of the two phase commit protocol | 131-failures in the two phase commit protocol |
| 132-quiz on two phase commit | 133-introduction to state machine replication | 134-state machines |
| 135-replication and coordination of state machines | 136-ordering requests part i | 137-ordering requests part ii |
| 138-fault tolerance for outputs and clients | 139-protocols for maintaining fault tolerance part i | 140-protocols for maintaining fault tolerance part ii |
| 141-smr in practice via a log | 142-quiz on state machine replication | 143-introduction to paxos |
| 144-basic paxos protocol design | 145-basic paxos in action | 146-the rationale behind paxos design choices |
| 147-multi paxos | 148-quiz on paxos | 149-introduction to raft |
| 150-raft s basics and high level workflow | 151-raft s leader election protocol | 152-raft s log replication protocol |
| 153-raft s safety fault tolerance and availability protocols | 154-raft s cluster membership changes | 155-log compaction and client interaction in raft |
| 156-quiz on raft | 157-conclusion |
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