Name | de_nbody_orbit_fitting_02_18_2025_v186_OCS__data__30_1740880091_171834_0 |
Workunit | 1000336970 |
Created | 6 Mar 2025, 19:14:50 UTC |
Sent | 6 Mar 2025, 20:23:47 UTC |
Report deadline | 18 Mar 2025, 20:23:47 UTC |
Received | 12 Mar 2025, 14:44:49 UTC |
Server state | Over |
Outcome | Success |
Client state | Done |
Exit status | 0 (0x00000000) |
Computer ID | 862212 |
Run time | |
CPU time | |
Validate state | Checked, but no consensus yet |
Credit | 0.00 |
Device peak FLOPS | 54.86 GFLOPS |
Application version | Milkyway@home N-Body Simulation with Orbit Fitting v1.87 (mt) x86_64-pc-linux-gnu |
Peak working set size | 3.14 MB |
Peak swap size | 64.28 MB |
<core_client_version>7.16.6</core_client_version> <![CDATA[ <stderr_txt> <search_application> milkyway_nbody 1.86 Linux x86_64 double OpenMP, Crlibm </search_application> Using OpenMP 8 max threads on a system with 16 processors Running MilkyWay@home Nbody v1.86 Optimal Softening Length = 0.000025252569165 kpc Dwarf Initial Position: [59.080978250310743,-3.421374334837478,-6.744842787860739] Dwarf Initial Velocity: [18.934343667026063,-54.959054289817331,-55.074352359383198] Running MilkyWay@home Nbody v1.86 Running MilkyWay@home Nbody v1.86 Number of particles in bins is very small compared to total. (0 << 1). Skipping distance calculation Running MilkyWay@home Nbody v1.86 Number of particles in bins is very small compared to total. (0 << 1). Skipping distance calculation <search_likelihood>-9999999.900000000372529</search_likelihood> <search_likelihood_EMD>-9999999.900000000372529</search_likelihood_EMD> <search_likelihood_Mass>-0.000000000000000</search_likelihood_Mass> <search_likelihood_Beta>-0.000000000000000</search_likelihood_Beta> <search_likelihood_BetaAvg>-0.000000000000000</search_likelihood_BetaAvg> <search_likelihood_VelAvg>-0.000000000000000</search_likelihood_VelAvg> <search_likelihood_Dist>-0.000000000000000</search_likelihood_Dist> 2025-03-12 10:43:09 (3897225): called boinc_finish(0) </stderr_txt> ]]>
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