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root/group/trunk/mdtools/headers/Atom.hpp
Revision: 237
Committed: Fri Jan 17 21:53:33 2003 UTC (21 years, 8 months ago) by mmeineke
File size: 7256 byte(s)
Log Message:
added some stuf to implement thefortran interface in LJ_FF

File Contents

# User Rev Content
1 mmeineke 10 #ifndef _ATOM_H_
2     #define _ATOM_H_
3    
4     #include <cstring>
5     #include <iostream>
6    
7     class Atom{
8     public:
9 mmeineke 143 Atom(int theIndex) {
10 mmeineke 10 c_n_hyd = 0;
11     has_dipole = 0;
12     is_VDW = 0;
13     is_LJ = 0;
14 mmeineke 143 index = theIndex;
15 mmeineke 189 offset = 3 * index;
16 mmeineke 190 offsetX = offset;
17     offsetY = offset+1;
18     offsetZ = offset+2;
19 mmeineke 10 }
20 mmeineke 117 virtual ~Atom() {}
21 mmeineke 143
22     static void createArrays (int nElements) {
23     pos = new double[nElements*3];
24     vel = new double[nElements*3];
25     frc = new double[nElements*3];
26     trq = new double[nElements*3];
27     }
28     static void destroyArrays(void) {
29     delete[] pos;
30     delete[] vel;
31     delete[] frc;
32     delete[] trq;
33     }
34 mmeineke 237
35     static double* getPosArray( void ) { return pos; }
36     static double* getVelArray( void ) { return vel; }
37     static double* getFrcArray( void ) { return frc; }
38     static double* getTrqArray( void ) { return trq; }
39 mmeineke 10
40 mmeineke 237
41 mmeineke 190 double getX() const {return pos[offsetX];}
42     double getY() const {return pos[offsetY];}
43     double getZ() const {return pos[offsetZ];}
44 mmeineke 237 void setX(double x) {pos[offsetX] = x;}
45 mmeineke 190 void setY(double y) {pos[offsetY] = y;}
46     void setZ(double z) {pos[offsetZ] = z;}
47 mmeineke 10
48 mmeineke 190 double get_vx() const {return vel[offsetX];}
49     double get_vy() const {return vel[offsetY];}
50     double get_vz() const {return vel[offsetZ];}
51     void set_vx(double vx) {vel[offsetX] = vx;}
52     void set_vy(double vy) {vel[offsetY] = vy;}
53     void set_vz(double vz) {vel[offsetZ] = vz;}
54 mmeineke 10
55 mmeineke 190 double getFx() const {return frc[offsetX];}
56     double getFy() const {return frc[offsetY];}
57     double getFz() const {return frc[offsetZ];}
58     void addFx(double add) {frc[offsetX] += add;}
59     void addFy(double add) {frc[offsetY] += add;}
60     void addFz(double add) {frc[offsetZ] += add;}
61 mmeineke 10 virtual void zeroForces() = 0;
62    
63     double getMass() const {return c_mass;}
64     void setMass(double mass) {c_mass = mass;}
65    
66     double getSigma() const {return c_sigma;}
67     void setSigma(double sigma) {c_sigma = sigma;}
68    
69     double getEpslon() const {return c_epslon;}
70     void setEpslon(double epslon) {c_epslon = epslon;}
71    
72     double getCovalent() const {return c_covalent;}
73     void setCovalent(double covalent) {c_covalent = covalent;}
74    
75 mmeineke 143 int getIndex() const {return index;}
76 mmeineke 190 void setIndex(int theIndex) {
77     index = theIndex;
78     offset = index*3;
79     offsetX = offset;
80     offsetY = offset+1;
81     offsetZ = offset+2;
82     }
83    
84 mmeineke 10 char *getType() {return c_name;}
85     void setType(char * name) {strcpy(c_name,name);}
86 mmeineke 225
87     int getIdent( void ) { return ident; }
88     void setIdent( int info ) { ident = info; }
89 mmeineke 10
90     void set_n_hydrogens( int n_h ) {c_n_hyd = n_h;}
91     int get_n_hydrogens() const {return c_n_hyd;}
92    
93     void setHasDipole( int value ) { has_dipole = value; }
94 chuckv 134 int hasDipole( void ) { return has_dipole; }
95 mmeineke 10
96     void setLJ( void ) { is_LJ = 1; is_VDW = 0; }
97 chuckv 134 int isLJ( void ) { return is_LJ; }
98 mmeineke 10
99     void seVDW( void ) { is_VDW = 1; is_LJ = 0; }
100 chuckv 134 int isVDW( void ) { return is_VDW; }
101 mmeineke 10
102     virtual int isDirectional( void ) = 0;
103    
104 mmeineke 143 static double* pos; // the position array
105     static double* vel; // the velocity array
106     static double* frc; // the forc array
107     static double* trq; // the torque vector ( space fixed )
108    
109 mmeineke 184 protected:
110    
111 mmeineke 10 double c_mass; /* the mass of the atom in amu */
112     double c_sigma; /* the sigma parameter for van der walls interactions */
113     double c_epslon; /* the esplon parameter for VDW interactions */
114     double c_covalent; // The covalent radius of the atom.
115    
116 mmeineke 143 int index; /* set the atom's index */
117 mmeineke 189 int offset; // the atom's offset in the storage array
118 mmeineke 213 int offsetX, offsetY, offsetZ;
119 mmeineke 10
120     char c_name[100]; /* it's name */
121 mmeineke 225 int ident; // it's unique numeric identity.
122 mmeineke 10
123     int c_n_hyd; // the number of hydrogens bonded to the atom
124    
125 chuckv 134 int has_dipole; // dipole boolean
126     int is_VDW; // VDW boolean
127     int is_LJ; // LJ boolean
128 mmeineke 10
129     };
130    
131 mmeineke 184
132    
133 mmeineke 10 class GeneralAtom : public Atom{
134    
135     public:
136 mmeineke 143 GeneralAtom(int theIndex): Atom(theIndex){}
137 mmeineke 117 virtual ~GeneralAtom(){}
138 mmeineke 10
139     int isDirectional( void ){ return 0; }
140     void zeroForces() {
141 mmeineke 190 frc[offsetX] = 0.0;
142     frc[offsetY] = 0.0;
143     frc[offsetZ] = 0.0;
144 mmeineke 10 }
145     };
146    
147     class DirectionalAtom : public Atom {
148    
149     public:
150 mmeineke 143 DirectionalAtom(int theIndex) : Atom(theIndex)
151     {
152     ssdIdentity = 0;
153     }
154 mmeineke 117 virtual ~DirectionalAtom() {}
155 mmeineke 10
156 mmeineke 143 static void createDArrays(int nElements){
157     trq = new double[nElements*3];
158     }
159     static void destroyDArrays(void){
160     delete[] trq;
161     }
162    
163 mmeineke 10 int isDirectional(void) { return 1; }
164    
165     void setSSD( int value) { ssdIdentity = value; }
166     int isSSD(void) {return ssdIdentity; }
167    
168     void setA( double the_A[3][3] );
169    
170     void setI( double the_I[3][3] );
171    
172     void setQ( double the_q[4] );
173    
174     void setEuler( double phi, double theta, double psi );
175    
176     void setSUx( double the_sux ) { sux = the_sux; }
177     void setSUy( double the_suy ) { suy = the_suy; }
178     void setSUz( double the_suz ) { suz = the_suz; }
179    
180     void setJx( double the_jx ) { jx = the_jx; }
181     void setJy( double the_jy ) { jy = the_jy; }
182     void setJz( double the_jz ) { jz = the_jz; }
183    
184 mmeineke 190 void addTx( double the_tx ) { trq[offsetX] += the_tx;}
185     void addTy( double the_ty ) { trq[offsetY] += the_ty;}
186     void addTz( double the_tz ) { trq[offsetZ] += the_tz;}
187 mmeineke 10
188     void setMu( double the_mu ) { mu = the_mu; }
189    
190     void zeroForces() {
191 mmeineke 190 frc[offsetX] = 0.0;
192     frc[offsetY] = 0.0;
193     frc[offsetZ] = 0.0;
194 mmeineke 143
195 mmeineke 190 trq[offsetX] = 0.0;
196     trq[offsetY] = 0.0;
197     trq[offsetZ] = 0.0;
198 mmeineke 10 }
199    
200     double getAxx( void ) { return Axx; }
201     double getAxy( void ) { return Axy; }
202     double getAxz( void ) { return Axz; }
203    
204     double getAyx( void ) { return Ayx; }
205     double getAyy( void ) { return Ayy; }
206     double getAyz( void ) { return Ayz; }
207    
208     double getAzx( void ) { return Azx; }
209     double getAzy( void ) { return Azy; }
210     double getAzz( void ) { return Azz; }
211    
212 mmeineke 30 void getA( double the_A[3][3] ); // get the full rotation matrix
213    
214 mmeineke 10 double getSUx( void ) { return sux; }
215     double getSUy( void ) { return suy; }
216     double getSUz( void ) { return suz; }
217    
218     void getU( double the_u[3] ); // get the unit vector
219     void getQ( double the_q[4] ); // get the quanternions
220    
221     double getJx( void ) { return jx; }
222     double getJy( void ) { return jy; }
223     double getJz( void ) { return jz; }
224    
225 mmeineke 190 double getTx( void ) { return trq[offsetX];}
226     double getTy( void ) { return trq[offsetY]; }
227     double getTz( void ) { return trq[offsetZ]; }
228 mmeineke 10
229     double getIxx( void ) { return Ixx; }
230     double getIxy( void ) { return Ixy; }
231     double getIxz( void ) { return Ixz; }
232    
233     double getIyx( void ) { return Iyx; }
234     double getIyy( void ) { return Iyy; }
235     double getIyz( void ) { return Iyz; }
236    
237     double getIzx( void ) { return Izx; }
238     double getIzy( void ) { return Izy; }
239     double getIzz( void ) { return Izz; }
240    
241     double getMu( void ) { return mu; }
242    
243     void lab2Body( double r[3] );
244     void body2Lab( double r[3] );
245    
246     private:
247 mmeineke 143 int dIndex;
248 mmeineke 10
249 chuckv 134 double Axx, Axy, Axz; // the rotational matrix
250 mmeineke 10 double Ayx, Ayy, Ayz;
251     double Azx, Azy, Azz;
252    
253 mmeineke 143 double sux, suy, suz; // the standard unit vector ( body fixed )
254     double jx, jy, jz; // the angular momentum vector ( body fixed )
255 mmeineke 10
256 mmeineke 143 double Ixx, Ixy, Ixz; // the inertial tensor matrix ( body fixed )
257 mmeineke 10 double Iyx, Iyy, Iyz;
258     double Izx, Izy, Izz;
259    
260     double mu; // the magnitude of the dipole moment
261    
262     int ssdIdentity; // boolean of whether atom is ssd
263    
264     };
265    
266     #endif