128-bit AVX2 SIMD for AMD Ryzen
[gromacs.git] / src / gromacs / mdtypes / pull-params.h
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1 /*
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36 /*! \libinternal \file
39 * \brief
40 * This file contains datatypes for the mdp options used by the pull code.
42 * \author Berk Hess
44 * \inlibraryapi
45 * \ingroup module_mdtypes
48 #ifndef GMX_MDTYPES_PULL_PARAMS_H
49 #define GMX_MDTYPES_PULL_PARAMS_H
51 #include "gromacs/math/vectypes.h"
52 #include "gromacs/mdtypes/md_enums.h"
53 #include "gromacs/utility/basedefinitions.h"
54 #include "gromacs/utility/real.h"
56 /*! \cond INTERNAL */
58 /*! \brief Struct that defines a pull group */
59 typedef struct {
60 int nat; /**< Number of atoms in the pull group */
61 int *ind; /**< The global atoms numbers */
62 int nweight; /**< The number of weights (0 or nat) */
63 real *weight; /**< Weights (use all 1 when weight==NULL) */
64 int pbcatom; /**< The reference atom for pbc (global number) */
65 } t_pull_group;
67 /*! Maximum number of pull groups that can be used in a pull coordinate */
68 static const int c_pullCoordNgroupMax = 6;
70 /*! \brief Struct that defines a pull coordinate */
71 typedef struct {
72 int eType; /**< The pull type: umbrella, constraint, ... */
73 char *externalPotentialProvider; /**< Name of the module providing the external potential, only used with eType==epullEXTERNAL */
74 int eGeom; /**< The pull geometry */
75 int ngroup; /**< The number of groups, depends on eGeom */
76 int group[c_pullCoordNgroupMax]; /**< The pull groups: indices into the group arrays in pull_t and pull_params_t, ngroup indices are used */
77 ivec dim; /**< Used to select components for constraint */
78 rvec origin; /**< The origin for the absolute reference */
79 rvec vec; /**< The pull vector, direction or position */
80 gmx_bool bStart; /**< Set init based on the initial structure */
81 real init; /**< Initial reference displacement (nm) or (deg) */
82 real rate; /**< Rate of motion (nm/ps) or (deg/ps) */
83 real k; /**< Force constant (kJ/(mol nm^2) or kJ/(mol rad^2) for umbrella pull type, or kJ/(mol nm) or kJ/(mol rad) for constant force pull type */
84 real kB; /**< Force constant for state B */
85 } t_pull_coord;
87 /*! \brief Struct containing all pull parameters */
88 typedef struct pull_params_t {
89 int ngroup; /**< Number of pull groups */
90 int ncoord; /**< Number of pull coordinates */
91 real cylinder_r; /**< Radius of cylinder for dynamic COM (nm) */
92 real constr_tol; /**< Absolute tolerance for constraints in (nm) */
93 gmx_bool bPrintCOM; /**< Print coordinates of COM for each coord */
94 gmx_bool bPrintRefValue; /**< Print the reference value for each coord */
95 gmx_bool bPrintComp; /**< Print cartesian components for each coord with geometry=distance */
96 int nstxout; /**< Output interval for pull x */
97 int nstfout; /**< Output interval for pull f */
99 t_pull_group *group; /**< groups to pull/restrain/etc/ */
100 t_pull_coord *coord; /**< the pull coordinates */
101 } pull_params_t;
103 /*! \endcond */
105 #endif /* GMX_MDTYPES_PULL_PARAMS_H */