| J. Bruck, D. Dolev, C.-T. Ho, M.-C. Rosu, and R. Strong, "Efficient message passing interface (mpi) for parallel computing on clusters of workstations," Tech. Rep. TR95-1474, Cornell University, February 1995. |
....the other. Second, the effect of group size may depend on the underlying networking technology. Third, the plot can be used to compare an existing implementation with a theoretical lower bound. Our performance results for various broadcast operations include both results from the literature [17, 23, 24, 25] as well as our own measurements. Using these data, we produced the plotshown in Figure 4; several parallel platforms are represented. The data for the IBM SP 2 are from Xu and Huang s study [17] in which two different communication libraries, MPI and MPL, were compared on a 512 node SP 2. The ....
....are from Xu and Huang s study [17] in which two different communication libraries, MPI and MPL, were compared on a 512 node SP 2. The data for the Intel Paragon is from measurements of the InterComm collective communication library, also on a 512 node system [23] The data for the MPI CCL library [24] is from an implementation atop unreliable hardware supported multicast on Ethernet; group sizes of 4 and 8 are represented. The SS10 ASX100 data represent software implementations of broadcast operations through FORE systems ATM application interface forming spanning binomial tree configuration, ....
J. Bruck, D. Dolev, C.-T. Ho, M.-C. Rosu, and R. Strong, "Efficient message passing interface (mpi) for parallel computing on clusters of workstations," Tech. Rep. TR95-1474, Cornell University, February 1995.
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