options

Loops Index

4 loops have been discarded from the report because their coverage is lower than the threshold set by object_coverage_threshold (0.01%). It represents about 0% of the application. To include them, change the value of object_coverage_threshold in the experiment directory configuration file, then rerun the command with the additionnal parameter --force-static-analysis

Colums Filter

Level Coverage 1x1 (%) Coverage 1x2 (%) Coverage 1x4 (%) Coverage 1x8 (%) Coverage 1x16 (%) Coverage 1x32 (%) Coverage 1x64 (%) Coverage 1x112 (%) Max Time Over Threads 1x1 (s) Max Time Over Threads 1x2 (s) Max Time Over Threads 1x4 (s) Max Time Over Threads 1x8 (s) Max Time Over Threads 1x16 (s) Max Time Over Threads 1x32 (s) Max Time Over Threads 1x64 (s) Max Time Over Threads 1x112 (s) Time w.r.t. Wall Time 1x1 (s) Time w.r.t. Wall Time 1x2 (s) Time w.r.t. Wall Time 1x4 (s) Time w.r.t. Wall Time 1x8 (s) Time w.r.t. Wall Time 1x16 (s) Time w.r.t. Wall Time 1x32 (s) Time w.r.t. Wall Time 1x64 (s) Time w.r.t. Wall Time 1x112 (s) Nb Threads 1x1 Nb Threads 1x2 Nb Threads 1x4 Nb Threads 1x8 Nb Threads 1x16 Nb Threads 1x32 Nb Threads 1x64 Nb Threads 1x112 Vectorization Ratio (%) Vector Length Use (%) Speedup If No Scalar Integer Speedup If FP Vectorized Speedup If Fully Vectorized Speedup If Perfect Load Balancing 1x1 Speedup If Perfect Load Balancing 1x2 Speedup If Perfect Load Balancing 1x4 Speedup If Perfect Load Balancing 1x8 Speedup If Perfect Load Balancing 1x16 Speedup If Perfect Load Balancing 1x32 Speedup If Perfect Load Balancing 1x64 Speedup If Perfect Load Balancing 1x112 Stride 0 Stride 1 Stride n Stride Unknown Stride Indirect (1x1) Efficiency (1x1) Potential Speed-Up (%) (1x2) Efficiency (1x2) Potential Speed-Up (%) (1x4) Efficiency (1x4) Potential Speed-Up (%) (1x8) Efficiency (1x8) Potential Speed-Up (%) (1x16) Efficiency (1x16) Potential Speed-Up (%) (1x32) Efficiency (1x32) Potential Speed-Up (%) (1x64) Efficiency (1x64) Potential Speed-Up (%) (1x112) Efficiency (1x112) Potential Speed-Up (%)
Loop idSource LocationSource FunctionLevelCoverage 1x1 (%)Coverage 1x2 (%)Coverage 1x4 (%)Coverage 1x8 (%)Coverage 1x16 (%)Coverage 1x32 (%)Coverage 1x64 (%)Coverage 1x112 (%)Max Time Over Threads 1x1 (s)Max Time Over Threads 1x2 (s)Max Time Over Threads 1x4 (s)Max Time Over Threads 1x8 (s)Max Time Over Threads 1x16 (s)Max Time Over Threads 1x32 (s)Max Time Over Threads 1x64 (s)Max Time Over Threads 1x112 (s)Time w.r.t. Wall Time 1x1 (s)Time w.r.t. Wall Time 1x2 (s)Time w.r.t. Wall Time 1x4 (s)Time w.r.t. Wall Time 1x8 (s)Time w.r.t. Wall Time 1x16 (s)Time w.r.t. Wall Time 1x32 (s)Time w.r.t. Wall Time 1x64 (s)Time w.r.t. Wall Time 1x112 (s)Nb Threads 1x1Nb Threads 1x2Nb Threads 1x4Nb Threads 1x8Nb Threads 1x16Nb Threads 1x32Nb Threads 1x64Nb Threads 1x112Vectorization Ratio (%)Vector Length Use (%)Speedup If No Scalar IntegerSpeedup If FP VectorizedSpeedup If Fully VectorizedSpeedup If Perfect Load Balancing 1x1Speedup If Perfect Load Balancing 1x2Speedup If Perfect Load Balancing 1x4Speedup If Perfect Load Balancing 1x8Speedup If Perfect Load Balancing 1x16Speedup If Perfect Load Balancing 1x32Speedup If Perfect Load Balancing 1x64Speedup If Perfect Load Balancing 1x112Stride 0Stride 1Stride nStride UnknownStride Indirect(1x1) Efficiency(1x1) Potential Speed-Up (%)(1x2) Efficiency(1x2) Potential Speed-Up (%)(1x4) Efficiency(1x4) Potential Speed-Up (%)(1x8) Efficiency(1x8) Potential Speed-Up (%)(1x16) Efficiency(1x16) Potential Speed-Up (%)(1x32) Efficiency(1x32) Potential Speed-Up (%)(1x64) Efficiency(1x64) Potential Speed-Up (%)(1x112) Efficiency(1x112) Potential Speed-Up (%)
29exec - stream.c:343-344main.extracted.60Single27.0326.9725.4325.4725.5825.9327.8128.24132.5466.3335.0917.5895.084.184.24132.5466.3734.3317.479.175.444.664.681248163264112100100111111.031.031.031.021.011.01030001010.040.970.890.951.320.92.470.766.190.4415.450.2521.1
32exec - stream.c:355-356main.extracted.65Single27.0326.9925.4825.525.5925.9927.7928.23132.5466.4235.2117.6695.084.174.23132.5466.4234.3917.489.175.464.664.681248163264112100100111111.031.031.031.021.011.01030001010.060.960.930.951.330.92.470.766.270.4415.440.2521.09
23exec - stream.c:319-320main.extracted.50Single22.622.5622.0422.0321.7721.3620.219.75110.8355.4631.3815.727.974.323.082.99110.8355.529.7515.117.814.483.383.271248163264112100100111111.061.061.071.051.031.02020001010.030.931.510.921.830.892.460.774.850.519.850.313.77
26exec - stream.c:331-332main.extracted.55Single22.5422.4621.8521.8721.6221.220.1419.81110.5555.163115.557.884.293.082.98110.5555.2729.49157.754.453.373.281248163264112100100111111.061.061.061.051.031.0102000101-00.941.370.921.720.892.350.784.740.519.820.313.85
5exec - stream.c:476-479mainSingle0.250.340.340.350.350.310.20.111.231.671.811.871.91.881.891.881.230.840.460.240.120.060.030.02111111111001001111111111103000100.730.090.670.110.640.130.640.130.640.110.640.070.550.05
17exec - stream.c:272-276main.extracted.40Single0.10.090.070.10.080.070.040.020.50.220.120.090.060.020.020.010.50.220.10.070.030.020.01012481632445710010011111.051.331.5222103000101.1401.2500.890.011.04-00.780.020.780.0110
20exec - stream.c:291-292main.extracted.45Single0.10.10.090.090.110.160.20.180.490.250.130.060.040.030.030.030.50.250.120.060.040.030.030.031248163264112100100111111.08111110100010101.04-01.04-00.780.020.520.080.260.150.150.15
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