options

gmx - 2023-06-12 21:27:27 - MAQAO 2.17.4

Help is available by moving the cursor above any symbol or by checking MAQAO website.

▼Stylizer  

[ 4 / 4 ] Application profile is long enough (66.53 s)

To have good quality measurements, it is advised that the application profiling time is greater than 10 seconds.

[ 0 / 3 ] Optimization level option not used

To have better performances, it is advised to help the compiler by using a proper optimization level (-O2 of higher). Warning, depending on compilers, faster optimization levels can decrease numeric accuracy.

[ 0 / 3 ] Helper debug compilation options -g and -fno-omit-frame-pointer are missing

-g option gives access to debugging informations, such are source locations and -fno-omit-frame-pointer improve the accuracy of callchains found during the application profiling.

[ 0 / 3 ] Architecture specific options are not used

Architecture specific options are needed to produce efficient code for a specific processor ( -x(target) or -ax(target) ).

[ 2 / 2 ] Application is correctly profiled ("Others" category represents 0 % of the execution time)

To have a representative profiling, it is advised that the category "Others" represents less than 20% of the execution time in order to analyze as much as possible of the user code

▼Optimizer

Loop IDModuleAnalysisPenalty ScoreCoverage (%)Vectorization
Ratio (%)
Vector Length
Use (%)
○6783libgromacs.so.8Partial or unexisting vectorization - No issue detected08.35021.88
►26627libgromacs.so.8Partial or unexisting vectorization - Use pragma to force vectorization and check potential dependencies between array access.66025
○[SA] Presence of constant non unit stride data access - Use array restructuring, perform loop interchange or use gather instructions to lower a bit the cost. There are 3 issues ( = data accesses) costing 2 point each.6
►1732libgromacs.so.8Partial or unexisting vectorization - Use pragma to force vectorization and check potential dependencies between array access.743.395.5990.81
○[SA] Presence of calls - Inline either by compiler or by hand and use SVML for libm calls. There are 24 issues (= calls) costing 1 point each.24
○[SA] Inefficient vectorization: more than 10% of the vector loads instructions are unaligned - When allocating arrays, don’t forget to align them. There are 11 issues ( = arrays) costing 2 points each22
○[SA] Presence of constant non unit stride data access - Use array restructuring, perform loop interchange or use gather instructions to lower a bit the cost. There are 9 issues ( = data accesses) costing 2 point each.18
○[SA] Less than 10% of the FP ADD/SUB/MUL arithmetic operations are performed using FMA - Reorganize arithmetic expressions to exhibit potential for FMA. This issue costs 4 points.4
○[SA] More than 20% of the loads are accessing the stack - Perform loop splitting to decrease pressure on registers. This issue costs 2 points.2
○[SA] Inefficient vectorization: use of shorter than available vector length - Force compiler to use proper vector length. CAUTION: use of 512 bits vectors could be more expensive than 256 bits on some processors. Use intrinsics (costly and not portable). The issue costs 2 points.2
○[SA] Presence of a large number of scalar integer instructions - Simplify loop structure, perform loop splitting or perform unroll and jam. This issue costs 2 points.2
○Warning! There is no dynamic data for this loop. Some checks can not been performed.0
►6293libgromacs.so.8Inefficient vectorization.42.93100100
○[SA] Less than 10% of the FP ADD/SUB/MUL arithmetic operations are performed using FMA - Reorganize arithmetic expressions to exhibit potential for FMA. This issue costs 4 points.4
○Warning! There is no dynamic data for this loop. Some checks can not been performed.0
►1730libgromacs.so.8Partial or unexisting vectorization - Use pragma to force vectorization and check potential dependencies between array access.731.2295.7191.07
○[SA] Presence of calls - Inline either by compiler or by hand and use SVML for libm calls. There are 23 issues (= calls) costing 1 point each.23
○[SA] Inefficient vectorization: more than 10% of the vector loads instructions are unaligned - When allocating arrays, don’t forget to align them. There are 11 issues ( = arrays) costing 2 points each22
○[SA] Presence of constant non unit stride data access - Use array restructuring, perform loop interchange or use gather instructions to lower a bit the cost. There are 9 issues ( = data accesses) costing 2 point each.18
○[SA] Less than 10% of the FP ADD/SUB/MUL arithmetic operations are performed using FMA - Reorganize arithmetic expressions to exhibit potential for FMA. This issue costs 4 points.4
○[SA] More than 20% of the loads are accessing the stack - Perform loop splitting to decrease pressure on registers. This issue costs 2 points.2
○[SA] Inefficient vectorization: use of shorter than available vector length - Force compiler to use proper vector length. CAUTION: use of 512 bits vectors could be more expensive than 256 bits on some processors. Use intrinsics (costly and not portable). The issue costs 2 points.2
○[SA] Presence of a large number of scalar integer instructions - Simplify loop structure, perform loop splitting or perform unroll and jam. This issue costs 2 points.2
○Warning! There is no dynamic data for this loop. Some checks can not been performed.0
►26127libgromacs.so.8Partial or unexisting vectorization - Use pragma to force vectorization and check potential dependencies between array access.261.2188.8979.17
○[SA] Inefficient vectorization: more than 10% of the vector loads instructions are unaligned - When allocating arrays, don’t forget to align them. There are 6 issues ( = arrays) costing 2 points each12
○[SA] Presence of constant non unit stride data access - Use array restructuring, perform loop interchange or use gather instructions to lower a bit the cost. There are 4 issues ( = data accesses) costing 2 point each.8
○[SA] Presence of special instructions executing on a single port (INSERT/EXTRACT, BROADCAST) - Simplify data access and try to get stride 1 access. There are 4 issues (= instructions) costing 1 point each.4
○[SA] Inefficient vectorization: use of shorter than available vector length - Force compiler to use proper vector length. CAUTION: use of 512 bits vectors could be more expensive than 256 bits on some processors. Use intrinsics (costly and not portable). The issue costs 2 points.2
○Warning! There is no dynamic data for this loop. Some checks can not been performed.0
►70gmxThe loop is fully and efficiently vectorized.00.94100100
○Warning! There is no dynamic data for this loop. Some checks can not been performed.0
►23153libgromacs.so.8Partial or unexisting vectorization - Use pragma to force vectorization and check potential dependencies between array access.40.87012.5
○[SA] Presence of indirect accesses - Use array restructuring or gather instructions to lower the cost. There are 1 issues ( = indirect data accesses) costing 4 point each.4
►6278libgromacs.so.8Partial or unexisting vectorization - Use pragma to force vectorization and check potential dependencies between array access.120.86012.5
○[SA] Presence of constant non unit stride data access - Use array restructuring, perform loop interchange or use gather instructions to lower a bit the cost. There are 6 issues ( = data accesses) costing 2 point each.12
►26474libgromacs.so.8Partial or unexisting vectorization - Use pragma to force vectorization and check potential dependencies between array access.300.773.1313.67
○[SA] Presence of indirect accesses - Use array restructuring or gather instructions to lower the cost. There are 7 issues ( = indirect data accesses) costing 4 point each.28
○[SA] Presence of constant non unit stride data access - Use array restructuring, perform loop interchange or use gather instructions to lower a bit the cost. There are 1 issues ( = data accesses) costing 2 point each.2
×