Add OpenMP for orientation restraints
[gromacs.git] / src / gromacs / mdtypes / fcdata.h
blob1243c99211be48a0818a874eb6d4088384e5fae6
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37 #ifndef GMX_MDTYPES_FCDATA_H
38 #define GMX_MDTYPES_FCDATA_H
40 #include "gromacs/math/vectypes.h"
41 #include "gromacs/topology/idef.h"
42 #include "gromacs/utility/basedefinitions.h"
43 #include "gromacs/utility/real.h"
45 #ifdef __cplusplus
46 extern "C" {
47 #endif
49 typedef real rvec5[5];
51 /* Distance restraining stuff */
52 typedef struct t_disresdata {
53 int dr_weighting; /* Weighting of pairs in one restraint */
54 gmx_bool dr_bMixed; /* Use sqrt of the instantaneous times *
55 * the time averaged violation */
56 real dr_fc; /* Force constant for disres, *
57 * which is multiplied by a (possibly) *
58 * different factor for each restraint */
59 real dr_tau; /* Time constant for disres */
60 real ETerm; /* multiplication factor for time averaging */
61 real ETerm1; /* 1 - ETerm1 */
62 real exp_min_t_tau; /* Factor for slowly switching on the force */
63 int nres; /* The number of distance restraints */
64 int npair; /* The number of distance restraint pairs */
65 int type_min; /* The minimum iparam type index for restraints */
66 real sumviol; /* The sum of violations */
67 real *rt; /* The instantaneous distance (npair) */
68 real *rm3tav; /* The time averaged distance (npair) */
69 real *Rtl_6; /* The instantaneous r^-6 (nres) */
70 real *Rt_6; /* The instantaneous ensemble averaged r^-6 (nres) */
71 real *Rtav_6; /* The time and ensemble averaged r^-6 (nres) */
72 int nsystems; /* The number of systems for ensemble averaging */
74 /* TODO: Implement a proper solution for parallel disre indexing */
75 const t_iatom *forceatomsStart; /* Pointer to the start of the disre forceatoms */
76 } t_disresdata;
78 /* All coefficients for the matrix equation for the orientation tensor */
79 struct OriresMatEq
81 real rhs[5]; /* The right hand side of the matrix equation */
82 real mat[5][5]; /* The matrix */
85 /* Orientation restraining stuff */
86 typedef struct t_oriresdata {
87 real fc; /* Force constant for the restraints */
88 real edt; /* Multiplication factor for time averaging */
89 real edt_1; /* 1 - edt */
90 real exp_min_t_tau; /* Factor for slowly switching on the force */
91 int nr; /* The number of orientation restraints */
92 int nex; /* The number of experiments */
93 int typeMin; /* The minimum iparam type index for restraints */
94 int nref; /* The number of atoms for the fit */
95 real *mref; /* The masses of the reference atoms */
96 rvec *xref; /* The reference coordinates for the fit (nref) */
97 rvec *xtmp; /* Temporary array for fitting (nref) */
98 matrix R; /* Rotation matrix to rotate to the reference coor. */
99 tensor *S; /* Array of order tensors for each experiment (nexp) */
100 rvec5 *Dinsl; /* The order matrix D for all restraints (nr x 5) */
101 rvec5 *Dins; /* The ensemble averaged D (nr x 5) */
102 rvec5 *Dtav; /* The time and ensemble averaged D (nr x 5) */
103 real *oinsl; /* The calculated instantaneous orientations */
104 real *oins; /* The calculated emsemble averaged orientations */
105 real *otav; /* The calculated time and ensemble averaged orient. */
106 real rmsdev; /* The weighted (using kfac) RMS deviation */
107 OriresMatEq *tmpEq; /* An temporary array of matrix + rhs */
108 real *eig; /* Eigenvalues/vectors, for output only (nex x 12) */
110 /* variables for diagonalization with diagonalize_orires_tensors()*/
111 double **M;
112 double *eig_diag;
113 double **v;
114 } t_oriresdata;
116 typedef struct bondedtable_t {
117 int n; /* n+1 is the number of points */
118 real scale; /* distance between two points */
119 real *data; /* the actual table data, per point there are 4 numbers */
120 } bondedtable_t;
123 * Data struct used in the force calculation routines
124 * for storing the tables for bonded interactions and
125 * for storing information which is needed in following steps
126 * (for instance for time averaging in distance retraints)
127 * or for storing output, since force routines only return the potential.
129 typedef struct t_fcdata {
130 bondedtable_t *bondtab;
131 bondedtable_t *angletab;
132 bondedtable_t *dihtab;
134 t_disresdata disres;
135 t_oriresdata orires;
136 } t_fcdata;
138 #ifdef __cplusplus
140 #endif
142 #endif