root / src / Calc_zmat_constr_frag.f90 @ 1
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1 | 1 | equemene | SUBROUTINE Calc_Zmat_const_frag(na,atome,ind_zmat,val_zmat,x,y,z, & |
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2 | 1 | equemene | r_cov,fact,frozen) |
3 | 1 | equemene | |
4 | 1 | equemene | ! |
5 | 1 | equemene | ! This second version enables the user to freeze some atoms |
6 | 1 | equemene | ! the frozen atoms indices are listed in the frozen array. |
7 | 1 | equemene | ! |
8 | 1 | equemene | ! The idea is surely too stupid to work all the time... but here it is |
9 | 1 | equemene | ! we first construct the zmat using only the frozen atoms, and then |
10 | 1 | equemene | ! we add the other atoms on top of the first ones... |
11 | 1 | equemene | ! |
12 | 1 | equemene | Use Path_module, only : max_Z, NMaxL, Nom,MaxFroz |
13 | 1 | equemene | Use Io_module |
14 | 1 | equemene | |
15 | 1 | equemene | IMPLICIT NONE |
16 | 1 | equemene | |
17 | 1 | equemene | |
18 | 1 | equemene | CHARACTER(5) :: AtName |
19 | 1 | equemene | integer(KINT) :: na,atome(na),ind_zmat(Na,5) |
20 | 1 | equemene | INTEGER(KINT) :: idx_zmat(NA) |
21 | 1 | equemene | real(KREAL) :: x(Na),y(Na),z(Na),fact |
22 | 1 | equemene | real(KREAL) :: val_zmat(Na,3) |
23 | 1 | equemene | real(KREAL) :: r_cov(0:Max_Z) |
24 | 1 | equemene | ! Frozen contains the indices of frozen atoms |
25 | 1 | equemene | INTEGER(KINT) :: Frozen(*),NFroz |
26 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: FrozDist(:) ! na |
27 | 1 | equemene | INTEGER(KINT) :: NbFrag,IdxFrag |
28 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: Fragment(:),NbAtFrag(:) !na |
29 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: FragAt(:,:) !na,na |
30 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: FrozFrag(:,:) !na,3 |
31 | 1 | equemene | ! INTEGER(KINT), ALLOCATABLE :: IdxFragAt(:) !na |
32 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: FrozBlock(:,:) !(na,0:na) |
33 | 1 | equemene | REAL(KREAL), ALLOCATABLE :: DistFroz(:) !na |
34 | 1 | equemene | |
35 | 1 | equemene | INTEGER(KINT) :: IdxCaFaire, IAfaire |
36 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: LIAISONS(:,:) ! (Na,0:NMaxL) |
37 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: LiaisonsBis(:,:) ! (Na,0:NMaxL) |
38 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: LiaisonsIni(:,:) ! (Na,0:NMaxL) |
39 | 1 | equemene | INTEGER(KINT), ALLOCATABLE :: CAFaire(:) ! (Na) |
40 | 1 | equemene | |
41 | 1 | equemene | |
42 | 1 | equemene | real(KREAL) :: vx1,vy1,vz1,norm1 |
43 | 1 | equemene | real(KREAL) :: vx2,vy2,vz2,norm2 |
44 | 1 | equemene | real(KREAL) :: vx3,vy3,vz3,norm3 |
45 | 1 | equemene | real(KREAL) :: vx4,vy4,vz4,norm4 |
46 | 1 | equemene | real(KREAL) :: vx5,vy5,vz5,norm5 |
47 | 1 | equemene | real(KREAL) :: val,val_d, d12, d13,d23,d |
48 | 1 | equemene | Logical PasFini,Debug |
49 | 1 | equemene | LOGICAL, ALLOCATABLE :: DejaFait(:), FCaf(:) !(na) |
50 | 1 | equemene | Logical, ALLOCATABLE :: FrozAt(:) !T if this atom is frozen |
51 | 1 | equemene | LOGICAL F1213, F1223,F1323 |
52 | 1 | equemene | |
53 | 1 | equemene | |
54 | 1 | equemene | INTEGER(KINT) :: I,J,n0,n1,n2,n3,n4,IAt,IL,JL,IFrag,ITmp, K, KMax |
55 | 1 | equemene | INTEGER(KINT) :: IMax, I3,I1,Ip, IFragFroz |
56 | 1 | equemene | INTEGER(KINT) :: I0, Izm, JAt,Izm0 |
57 | 1 | equemene | |
58 | 1 | equemene | REAL(KREAL) :: sDihe, Pi |
59 | 1 | equemene | |
60 | 1 | equemene | INTERFACE |
61 | 1 | equemene | function valid(string) result (isValid) |
62 | 1 | equemene | CHARACTER(*), intent(in) :: string |
63 | 1 | equemene | logical :: isValid |
64 | 1 | equemene | END function VALID |
65 | 1 | equemene | |
66 | 1 | equemene | FUNCTION angle(v1x,v1y,v1z,norm1,v2x,v2y,v2z,norm2) |
67 | 1 | equemene | use Path_module, only : Pi,KINT, KREAL |
68 | 1 | equemene | real(KREAL) :: v1x,v1y,v1z,norm1 |
69 | 1 | equemene | real(KREAL) :: v2x,v2y,v2z,norm2 |
70 | 1 | equemene | real(KREAL) :: angle |
71 | 1 | equemene | END FUNCTION ANGLE |
72 | 1 | equemene | |
73 | 1 | equemene | FUNCTION SinAngle(v1x,v1y,v1z,norm1,v2x,v2y,v2z,norm2) |
74 | 1 | equemene | use Path_module, only : Pi,KINT, KREAL |
75 | 1 | equemene | real(KREAL) :: v1x,v1y,v1z,norm1 |
76 | 1 | equemene | real(KREAL) :: v2x,v2y,v2z,norm2 |
77 | 1 | equemene | real(KREAL) :: SinAngle |
78 | 1 | equemene | END FUNCTION SINANGLE |
79 | 1 | equemene | |
80 | 1 | equemene | |
81 | 1 | equemene | FUNCTION angle_d(v1x,v1y,v1z,norm1,v2x,v2y,v2z,norm2,v3x,v3y,v3z,norm3) |
82 | 1 | equemene | use Path_module, only : Pi,KINT, KREAL |
83 | 1 | equemene | real(KREAL) :: v1x,v1y,v1z,norm1 |
84 | 1 | equemene | real(KREAL) :: v2x,v2y,v2z,norm2 |
85 | 1 | equemene | real(KREAL) :: v3x,v3y,v3z,norm3 |
86 | 1 | equemene | real(KREAL) :: angle_d,ca,sa |
87 | 1 | equemene | END FUNCTION ANGLE_D |
88 | 1 | equemene | |
89 | 1 | equemene | END INTERFACE |
90 | 1 | equemene | |
91 | 1 | equemene | |
92 | 1 | equemene | |
93 | 1 | equemene | Pi=dacos(-1.d0) |
94 | 1 | equemene | debug=valid("calc_zmat_constr").OR.valid("calc_zmat_contr_frag") |
95 | 1 | equemene | |
96 | 1 | equemene | if (debug) WRITE(*,*) "=============================== Entering Calc_zmat_contr_frag ========================" |
97 | 1 | equemene | if (na.le.2) THEN |
98 | 1 | equemene | WRITE(*,*) "I do not work for less than 2 atoms :-p" |
99 | 1 | equemene | RETURN |
100 | 1 | equemene | END IF |
101 | 1 | equemene | |
102 | 1 | equemene | ALLOCATE(FrozDist(Na),Fragment(na), NbAtFrag(na),FragAt(na,na)) |
103 | 1 | equemene | ! ALLOCATE(FrozFrag(na,3), IdxFragAt(na), FrozBlock(na,0:na)) |
104 | 1 | equemene | ALLOCATE(FrozFrag(na,3), FrozBlock(na,0:na)) |
105 | 1 | equemene | ALLOCATE(DistFroz(na),Liaisons(na,0:NMaxL)) |
106 | 1 | equemene | ALLOCATE(LiaisonsBis(na,0:NMaxL),LiaisonsIni(na,0:NMaxL)) |
107 | 1 | equemene | ALLOCATE(CaFaire(na),DejaFait(Na),FCaf(na),FrozAt(na)) |
108 | 1 | equemene | |
109 | 1 | equemene | DO i=1,na |
110 | 1 | equemene | DO J=1,5 |
111 | 1 | equemene | Ind_Zmat(i,J)=0 |
112 | 1 | equemene | END DO |
113 | 1 | equemene | END DO |
114 | 1 | equemene | |
115 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
116 | 1 | equemene | ! |
117 | 1 | equemene | ! Easy case : 3 or less atoms |
118 | 1 | equemene | ! |
119 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
120 | 1 | equemene | if (Na.eq.3) THEN |
121 | 1 | equemene | d12=sqrt((x(1)-x(2))**2+(y(1)-y(2))**2+(z(1)-z(2))**2) |
122 | 1 | equemene | d13=sqrt((x(1)-x(3))**2+(y(1)-y(3))**2+(z(1)-z(3))**2) |
123 | 1 | equemene | d23=sqrt((x(3)-x(2))**2+(y(3)-y(2))**2+(z(3)-z(2))**2) |
124 | 1 | equemene | F1213=(d12<=d13) |
125 | 1 | equemene | F1323=(d13<=d23) |
126 | 1 | equemene | F1223=(d12<=d23) |
127 | 1 | equemene | if (debug) THEN |
128 | 1 | equemene | WRITE(*,*) "DEBUG Calc_Zmat 3 atoms" |
129 | 1 | equemene | WRITE(*,*) "d12,d13,d23:",d12,d13,d23 |
130 | 1 | equemene | WRITE(*,*) "F1213,F1323,F1223:",F1213,F1323,F1223 |
131 | 1 | equemene | END IF |
132 | 1 | equemene | if (F1213) THEN |
133 | 1 | equemene | if (F1323) THEN |
134 | 1 | equemene | ind_zmat(1,1)=3 |
135 | 1 | equemene | ind_zmat(2,1)=1 |
136 | 1 | equemene | ind_zmat(2,2)=3 |
137 | 1 | equemene | ind_zmat(3,1)=2 |
138 | 1 | equemene | ind_zmat(3,2)=1 |
139 | 1 | equemene | ind_zmat(3,3)=3 |
140 | 1 | equemene | ELSE |
141 | 1 | equemene | ind_zmat(1,1)=1 |
142 | 1 | equemene | ind_zmat(2,1)=2 |
143 | 1 | equemene | ind_zmat(2,2)=1 |
144 | 1 | equemene | ind_zmat(3,1)=3 |
145 | 1 | equemene | ind_zmat(3,2)=2 |
146 | 1 | equemene | ind_zmat(3,3)=1 |
147 | 1 | equemene | END IF |
148 | 1 | equemene | ELSE |
149 | 1 | equemene | IF (F1223) THEN |
150 | 1 | equemene | ind_zmat(1,1)=2 |
151 | 1 | equemene | ind_zmat(2,1)=1 |
152 | 1 | equemene | ind_zmat(2,2)=2 |
153 | 1 | equemene | ind_zmat(3,1)=3 |
154 | 1 | equemene | ind_zmat(3,2)=1 |
155 | 1 | equemene | ind_zmat(3,3)=2 |
156 | 1 | equemene | ELSE |
157 | 1 | equemene | ind_zmat(1,1)=2 |
158 | 1 | equemene | ind_zmat(2,1)=3 |
159 | 1 | equemene | ind_zmat(2,2)=2 |
160 | 1 | equemene | ind_zmat(3,1)=1 |
161 | 1 | equemene | ind_zmat(3,2)=3 |
162 | 1 | equemene | ind_zmat(3,3)=2 |
163 | 1 | equemene | END IF |
164 | 1 | equemene | END IF |
165 | 1 | equemene | IF (debug) THEN |
166 | 1 | equemene | DO i=1,na |
167 | 1 | equemene | WRITE(*,'(1X,5(1X,I5))') (ind_zmat(i,j),j=1,5) |
168 | 1 | equemene | END DO |
169 | 1 | equemene | END IF |
170 | 1 | equemene | |
171 | 1 | equemene | ! We have ind_zmat, we fill val_zmat |
172 | 1 | equemene | val_zmat(1,1)=0. |
173 | 1 | equemene | val_zmat(1,2)=0. |
174 | 1 | equemene | val_zmat(1,3)=0. |
175 | 1 | equemene | n2=ind_zmat(2,1) |
176 | 1 | equemene | n1=ind_zmat(2,2) |
177 | 1 | equemene | d=sqrt((x(n1)-x(n2))**2+(y(n1)-y(n2))**2+(z(n1)-z(n2))**2) |
178 | 1 | equemene | val_zmat(2,1)=d |
179 | 1 | equemene | val_zmat(2,2)=0. |
180 | 1 | equemene | val_zmat(2,3)=0. |
181 | 1 | equemene | n1=ind_zmat(3,1) |
182 | 1 | equemene | n2=ind_zmat(3,2) |
183 | 1 | equemene | n3=ind_zmat(3,3) |
184 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
185 | 1 | equemene | if (debug) write(*,*) n1,n2,norm1 |
186 | 1 | equemene | val_zmat(3,1)=norm1 |
187 | 1 | equemene | |
188 | 1 | equemene | CALL vecteur(n2,n3,x,y,z,vx2,vy2,vz2,norm2) |
189 | 1 | equemene | val=angle(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2) |
190 | 1 | equemene | if (debug) write(*,*) n2,n3,norm2,val |
191 | 1 | equemene | val_zmat(3,2)=val |
192 | 1 | equemene | val_zmat(3,3)=0. |
193 | 1 | equemene | |
194 | 1 | equemene | RETURN |
195 | 1 | equemene | END IF |
196 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
197 | 1 | equemene | ! |
198 | 1 | equemene | ! End of Easy case : 3 or less atoms |
199 | 1 | equemene | ! |
200 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
201 | 1 | equemene | ! |
202 | 1 | equemene | ! General Case |
203 | 1 | equemene | ! |
204 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
205 | 1 | equemene | ! |
206 | 1 | equemene | ! 1 - Frozen Atoms |
207 | 1 | equemene | |
208 | 1 | equemene | ! Initialization |
209 | 1 | equemene | DejaFait=.False. |
210 | 1 | equemene | FrozAt=.False. |
211 | 1 | equemene | Liaisons=0 |
212 | 1 | equemene | LiaisonsBis=0 |
213 | 1 | equemene | ind_zmat=0 |
214 | 1 | equemene | val_zmat=0.d0 |
215 | 1 | equemene | |
216 | 1 | equemene | NFroz=0 |
217 | 1 | equemene | I=1 |
218 | 1 | equemene | DO WHILE (Frozen(I).NE.0) |
219 | 1 | equemene | If (Frozen(I).LT.0) THEN |
220 | 1 | equemene | DO J=Frozen(I-1),abs(Frozen(I)) |
221 | 1 | equemene | IF (.NOT.FrozAt(J)) THEN |
222 | 1 | equemene | NFroz=NFroz+1 |
223 | 1 | equemene | FrozAt(J)=.TRUE. |
224 | 1 | equemene | END IF |
225 | 1 | equemene | END DO |
226 | 1 | equemene | ELSEIF (.NOT.FrozAt(Frozen(I))) THEN |
227 | 1 | equemene | FrozAt(Frozen(I))=.TRUE. |
228 | 1 | equemene | NFroz=NFroz+1 |
229 | 1 | equemene | END IF |
230 | 1 | equemene | I=I+1 |
231 | 1 | equemene | END DO |
232 | 1 | equemene | |
233 | 1 | equemene | if (debug) WRITE(*,*) 'DGB zmtc NFroz=', NFroz |
234 | 1 | equemene | if (debug) WRITE(*,*) 'DGB zmtc FrozAt=',(FrozAt(I),I=1,na) |
235 | 1 | equemene | |
236 | 1 | equemene | if (debug) THEN |
237 | 1 | equemene | WRITE(*,*) "Liaisons initialized" |
238 | 1 | equemene | WRITE(*,*) 'Covalent radii used' |
239 | 1 | equemene | DO iat=1,na |
240 | 1 | equemene | i=atome(iat) |
241 | 1 | equemene | WRITE(*,*) Nom(I),Iat,r_cov(i),r_cov(i)*fact |
242 | 1 | equemene | END DO |
243 | 1 | equemene | END IF |
244 | 1 | equemene | |
245 | 1 | equemene | 1003 FORMAT(1X,I4,' - ',25(I5)) |
246 | 1 | equemene | ! DO IL=1,na |
247 | 1 | equemene | ! WRITE(IOOUT,1003) Il,(LIAISONS(IL,JL),JL=0,NMaxL) |
248 | 1 | equemene | ! WRITE(IOOUT,1003) Il,(LIAISONSBis(IL,JL),JL=0,NMaxL) |
249 | 1 | equemene | ! END DO |
250 | 1 | equemene | ! First step : connectivity are calculated |
251 | 1 | equemene | |
252 | 1 | equemene | Call CalcCnct(na,atome,x,y,z,LIAISONS,r_cov,fact) |
253 | 1 | equemene | |
254 | 1 | equemene | if (debug) THEN |
255 | 1 | equemene | WRITE(*,*) "Connections calculated" |
256 | 1 | equemene | DO IL=1,na |
257 | 1 | equemene | WRITE(IOOUT,1003) Il,(LIAISONS(IL,JL),JL=0,NMaxL) |
258 | 1 | equemene | END DO |
259 | 1 | equemene | END IF |
260 | 1 | equemene | |
261 | 1 | equemene | FCaf=.TRUE. |
262 | 1 | equemene | Call Decomp_frag(na,liaisons,FCaf,nbfrag,Fragment,NbAtFrag,FragAt) |
263 | 1 | equemene | |
264 | 1 | equemene | IF (debug) THEN |
265 | 1 | equemene | WRITE(*,*) 'I found ',NbFrag, 'fragments' |
266 | 1 | equemene | WRITE(*,'(20(1X,I4))') (NbAtFrag(I),I=1,NbFrag) |
267 | 1 | equemene | DO I=1,NbFrag |
268 | 1 | equemene | WRITE(*,*) NbAtFrag(I) |
269 | 1 | equemene | WRITE(*,*) 'Fragment ', i |
270 | 1 | equemene | DO J=1,Na |
271 | 1 | equemene | IF (Fragment(J).EQ.I) THEN |
272 | 1 | equemene | if (FrozAt(J)) THEN |
273 | 1 | equemene | WRITE(*,'(1X,I3,"f",1X,A5,3(1X,F10.6))') J,Nom(Atome(J)) & |
274 | 1 | equemene | ,X(J),Y(J),Z(J) |
275 | 1 | equemene | ELSE |
276 | 1 | equemene | WRITE(*,'(1X,I3,2X,A5,3(1X,F10.6))') J,Nom(Atome(J)) & |
277 | 1 | equemene | ,X(J),Y(J),Z(J) |
278 | 1 | equemene | END IF |
279 | 1 | equemene | END IF |
280 | 1 | equemene | END DO |
281 | 1 | equemene | WRITE(*,*) "FragAt:",(FragAt(I,j),j=1,NbAtFrag(I)) |
282 | 1 | equemene | END DO |
283 | 1 | equemene | END IF |
284 | 1 | equemene | |
285 | 1 | equemene | |
286 | 1 | equemene | ! First, we decompose the connectivity into Frozen atoms and non frozen atoms |
287 | 1 | equemene | DO I=1,na |
288 | 1 | equemene | LiaisonsBis(I,0)=0 |
289 | 1 | equemene | DO J=1,Liaisons(I,0) |
290 | 1 | equemene | IF (FrozAt(Liaisons(I,J))) THEN |
291 | 1 | equemene | LiaisonsBis(I,0)=LiaisonsBis(I,0)+1 |
292 | 1 | equemene | LiaisonsBis(I,LiaisonsBis(I,0))=Liaisons(I,J) |
293 | 1 | equemene | END IF |
294 | 1 | equemene | END DO |
295 | 1 | equemene | IMax=LiaisonsBis(I,0)+1 |
296 | 1 | equemene | LiaisonsBis(I,Imax)=0 |
297 | 1 | equemene | DO J=1,Liaisons(I,0) |
298 | 1 | equemene | IF (.NOT.FrozAt(Liaisons(I,J))) THEN |
299 | 1 | equemene | LiaisonsBis(I,IMax)=LiaisonsBis(I,Imax)+1 |
300 | 1 | equemene | LiaisonsBis(I,LiaisonsBis(I,Imax)+Imax)=Liaisons(I,J) |
301 | 1 | equemene | END IF |
302 | 1 | equemene | END DO |
303 | 1 | equemene | END DO |
304 | 1 | equemene | |
305 | 1 | equemene | if (debug) THEN |
306 | 1 | equemene | WRITE(*,*) "Liaisons and LiaisonsBis" |
307 | 1 | equemene | DO I=1,Na |
308 | 1 | equemene | WRITE(*,'(1X,I3," -",I3,":",15(1X,I3))') I, & |
309 | 1 | equemene | (Liaisons(I,J),J=0,NMaxL) |
310 | 1 | equemene | WRITE(*,'(1X,I3," +",I3,":",15(1X,I3))') I, & |
311 | 1 | equemene | (LiaisonsBis(I,J),J=0,NMaxL) |
312 | 1 | equemene | END DO |
313 | 1 | equemene | END IF |
314 | 1 | equemene | |
315 | 1 | equemene | ! Now, for each frozen atom, we count the length of the frozen block |
316 | 1 | equemene | ! FrozBlock(I,0) contains the number of frozen atoms forming a frozen |
317 | 1 | equemene | ! fragment containing atom I |
318 | 1 | equemene | ! FrozBlock(I,:) is the list of the frozen atoms of this fragment. |
319 | 1 | equemene | Do I=1,na |
320 | 1 | equemene | FrozBlock(I,0)=-1 |
321 | 1 | equemene | END DO |
322 | 1 | equemene | DO I=1,na |
323 | 1 | equemene | IF (FrozAt(I).AND.(FrozBlock(I,0).EQ.-1)) THEN |
324 | 1 | equemene | if (debug) WRITE(*,*) 'Treating atom ',I |
325 | 1 | equemene | FrozBlock(I,0)=1 |
326 | 1 | equemene | FrozBlock(I,1)=I |
327 | 1 | equemene | DO J=1,na |
328 | 1 | equemene | DejaFait(J)=.FALSE. |
329 | 1 | equemene | END DO |
330 | 1 | equemene | DejaFait(I)=.TRUE. |
331 | 1 | equemene | DO J=1,LiaisonsBis(I,0) |
332 | 1 | equemene | CaFaire(J)=LiaisonsBis(I,J) |
333 | 1 | equemene | END DO |
334 | 1 | equemene | IdxCaFaire=LiaisonsBis(I,0)+1 |
335 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
336 | 1 | equemene | IAfaire=1 |
337 | 1 | equemene | FCaf=DejaFait |
338 | 1 | equemene | DO WHILE (CaFaire(IAfaire).NE.0) |
339 | 1 | equemene | Iat=CaFaire(IAFAire) |
340 | 1 | equemene | if (debug) WRITE(*,*) 'IaFaire; Iat:', IaFaire, Iat, DejaFait(Iat) |
341 | 1 | equemene | IF (.NOT.DejaFait(Iat)) THEN |
342 | 1 | equemene | FrozBlock(I,0)=FrozBlock(I,0)+1 |
343 | 1 | equemene | FrozBlock(I,FrozBlock(I,0))=Iat |
344 | 1 | equemene | DO J=1,LiaisonsBis(Iat,0) |
345 | 1 | equemene | IF ((.NOT.DejaFait(LiaisonsBis(Iat,J))).AND.(.NOT.FCaf(LiaisonsBis(Iat,J)))) THEN |
346 | 1 | equemene | CaFaire(IdxCaFaire)=LiaisonsBis(Iat,J) |
347 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
348 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
349 | 1 | equemene | FCaf(LiaisonsBis(Iat,J))=.TRUE. |
350 | 1 | equemene | END IF |
351 | 1 | equemene | END DO |
352 | 1 | equemene | ! WRITE(*,*) 'liaisonbis(Iat,0),FrozBlick(I,0)',& |
353 | 1 | equemene | ! LiaisonsBis(Iat,0), FrozBlock(I,0) |
354 | 1 | equemene | END IF |
355 | 1 | equemene | DejaFait(Iat)=.TRUE. |
356 | 1 | equemene | IaFaire=IaFaire+1 |
357 | 1 | equemene | END DO |
358 | 1 | equemene | if (debug) WRITE(*,*) 'I,FrozBlock(0),IaFaire',I,FrozBlock(I,0),IaFaire |
359 | 1 | equemene | if (debug) WRITE(*,*) 'FrozBlock:',FrozBlock(I,1:FrozBlock(I,0)) |
360 | 1 | equemene | ! FrozBlock(I,1)=I |
361 | 1 | equemene | ! DO J=2,IaFaire |
362 | 1 | equemene | ! FrozBlock(I,J)=CaFaire(J-1) |
363 | 1 | equemene | ! END DO |
364 | 1 | equemene | ! We copy this block into all frozen atoms that belongs to it |
365 | 1 | equemene | DO J=2,Frozblock(I,0) |
366 | 1 | equemene | Iat=FrozBlock(I,J) |
367 | 1 | equemene | DO K=0,FrozBlock(I,0) |
368 | 1 | equemene | FrozBlock(Iat,K)=FrozBlock(I,K) |
369 | 1 | equemene | END DO |
370 | 1 | equemene | END DO |
371 | 1 | equemene | ELSE |
372 | 1 | equemene | IF (.NOT.FrozAt(I)) FrozBlock(I,0)=0 |
373 | 1 | equemene | END IF |
374 | 1 | equemene | END DO |
375 | 1 | equemene | |
376 | 1 | equemene | if (debug) THEN |
377 | 1 | equemene | WRITE(*,*) "FrozBlock" |
378 | 1 | equemene | DO I=1,Na |
379 | 1 | equemene | If (FrozAt(I)) WRITE(*,'(1X,I3," -",I3,":",15(1X,I3))') I, & |
380 | 1 | equemene | (FrozBlock(I,J),J=0,FrozBlock(I,0)) |
381 | 1 | equemene | END DO |
382 | 1 | equemene | END IF |
383 | 1 | equemene | |
384 | 1 | equemene | DO I=1,NbFrag |
385 | 1 | equemene | FrozFrag(I,1)=0 |
386 | 1 | equemene | FrozFrag(I,2)=0 |
387 | 1 | equemene | DO J=1,NbAtFrag(I) |
388 | 1 | equemene | IF (FrozAt(FragAt(I,J))) THEN |
389 | 1 | equemene | FrozFrag(I,1)=FrozFrag(I,1)+1 |
390 | 1 | equemene | IF (FrozBlock(FragAt(I,J),0).GE.FrozFrag(I,2)) & |
391 | 1 | equemene | FrozFrag(I,2)=FrozBlock(FragAt(I,J),0) |
392 | 1 | equemene | if (FrozFrag(I,3).LE.LiaisonsBis(FragAt(I,J),0))& |
393 | 1 | equemene | FrozFrag(I,3)=LiaisonsBis(FragAt(I,J),0) |
394 | 1 | equemene | END IF |
395 | 1 | equemene | END DO |
396 | 1 | equemene | IF (debug) WRITE(*,*) 'Frag :',I,FrozFrag(I,1), & |
397 | 1 | equemene | ' frozen atoms,max linked:' & |
398 | 1 | equemene | ,FrozFrag(I,2),' with at most',FrozFrag(I,3),' frozen' |
399 | 1 | equemene | END DO |
400 | 1 | equemene | |
401 | 1 | equemene | ! We will now build the molecule fragment by fragment |
402 | 1 | equemene | ! First the frozen atoms, then the rest of the fragment |
403 | 1 | equemene | ! We choose the starting fragment with two criteria: |
404 | 1 | equemene | ! 1- Number of linked frozen atoms: |
405 | 1 | equemene | ! * >=3 is good as it fully defines the coordinate space |
406 | 1 | equemene | ! * 2 is ok as we can either use a 3rd atom from the same fragment |
407 | 1 | equemene | ! or add a X atom somewhere but this complicates quite a lot the way |
408 | 1 | equemene | ! to treat the conversion from cartesian to zmat latter |
409 | 1 | equemene | ! * 1 is bad... |
410 | 1 | equemene | ! 2- Max number of linked frozen atoms |
411 | 1 | equemene | ! this allows us to deal more easily with cases 1- when number of |
412 | 1 | equemene | ! directly linked frozen atoms is less than 3 |
413 | 1 | equemene | |
414 | 1 | equemene | IFrag=0 |
415 | 1 | equemene | I0=0 |
416 | 1 | equemene | I1=0 |
417 | 1 | equemene | DO I=1,NbFrag |
418 | 1 | equemene | SELECT CASE(FrozFrag(I,3)-I0) |
419 | 1 | equemene | CASE (1:) |
420 | 1 | equemene | IFrag=I |
421 | 1 | equemene | I0=FrozFrag(I,3) |
422 | 1 | equemene | I1=FrozFrag(I,2) |
423 | 1 | equemene | CASE (0) |
424 | 1 | equemene | if (FrozFrag(I,2).GT.I1) THEN |
425 | 1 | equemene | IFrag=I |
426 | 1 | equemene | I0=FrozFrag(I,3) |
427 | 1 | equemene | I1=FrozFrag(I,2) |
428 | 1 | equemene | END IF |
429 | 1 | equemene | END SELECT |
430 | 1 | equemene | END DO |
431 | 1 | equemene | |
432 | 1 | equemene | if (debug) WRITE(*,'(1X,A,I5,A,I5,A,I5,A)') 'Starting with fragment:',IFrag,' with ',I0,' frozen linked and overall',I1,' linked' |
433 | 1 | equemene | |
434 | 1 | equemene | ! We will build the first fragment in a special way, as it will |
435 | 1 | equemene | ! set the coordinates system |
436 | 1 | equemene | ! We look for the frozen atom that is linked to the maximum frozen atom, |
437 | 1 | equemene | ! and belongs to the longer fragment |
438 | 1 | equemene | I0=0 |
439 | 1 | equemene | I1=0 |
440 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
441 | 1 | equemene | IF (FrozAt(FragAt(IFrag,I))) THEN |
442 | 1 | equemene | SELECT CASE(LiaisonsBis(FragAt(IFrag,I),0)-I0) |
443 | 1 | equemene | CASE (1:) |
444 | 1 | equemene | IAt=FragAt(IFrag,I) |
445 | 1 | equemene | I0=LiaisonsBis(IAt,0) |
446 | 1 | equemene | I1=FrozBlock(IAt,0) |
447 | 1 | equemene | CASE (0) |
448 | 1 | equemene | IF (FrozBlock(FragAt(IFrag,I),0).GT.I1) THEN |
449 | 1 | equemene | IAt=FragAt(IFrag,I) |
450 | 1 | equemene | I0=LiaisonsBis(Iat,0) |
451 | 1 | equemene | I1=FrozBlock(Iat,0) |
452 | 1 | equemene | END IF |
453 | 1 | equemene | END SELECT |
454 | 1 | equemene | END IF |
455 | 1 | equemene | if (debug) WRITE(*,*) 'DBG: I,FragAt(IFrag,I),IAt,I0,I1',I,FragAt(IFrag,I),IAt,I0,I1 |
456 | 1 | equemene | END DO |
457 | 1 | equemene | |
458 | 1 | equemene | if (debug) WRITE(*,*) 'Fragment 1, starting with atom:',IAt,I0,I1 |
459 | 1 | equemene | |
460 | 1 | equemene | DO I=1,na |
461 | 1 | equemene | DejaFait(I)=.FALSE. |
462 | 1 | equemene | FCaf(I)=.FALSE. |
463 | 1 | equemene | END DO |
464 | 1 | equemene | |
465 | 1 | equemene | izm=0 |
466 | 1 | equemene | SELECT CASE (I0) |
467 | 1 | equemene | CASE(3:) |
468 | 1 | equemene | if (debug) WRITE(*,*) 'DBG select case I0 3' |
469 | 1 | equemene | n0=Iat |
470 | 1 | equemene | ! We search for the fourth atom while making sure that the dihedral angle |
471 | 1 | equemene | ! is not 0 or Pi |
472 | 1 | equemene | ITmp=2 |
473 | 1 | equemene | sDihe=0. |
474 | 1 | equemene | n2=IAt |
475 | 1 | equemene | n3=LiaisonsBis(Iat,1) |
476 | 1 | equemene | ! We search for the third atom while making sure that it is not aligned with first two ! |
477 | 1 | equemene | DO While ((ITmp.LE.LiaisonsBis(Iat,0)).AND.(sDihe.LE.0.09d0)) |
478 | 1 | equemene | n4=LiaisonsBis(Iat,Itmp) |
479 | 1 | equemene | CALL vecteur(n2,n3,x,y,z,vx2,vy2,vz2,norm2) |
480 | 1 | equemene | CALL vecteur(n3,n4,x,y,z,vx3,vy3,vz3,norm3) |
481 | 1 | equemene | val_d=angle(vx3,vy3,vz3,norm3,vx2,vy2,vz2,norm2) |
482 | 1 | equemene | sDiHe=abs(sin(val_d*pi/180.d0)) |
483 | 1 | equemene | if (debug) Write(*,*) 'Trying n2,n3,n4,sdihe,val_d',n2,n3,n4,sdihe,val_d |
484 | 1 | equemene | Itmp=Itmp+1 |
485 | 1 | equemene | END DO |
486 | 1 | equemene | If (debug) WRITE(*,*) 'Itmp,LiaisonsBis',Itmp,LiaisonsBis(Iat,1:NMaxL) |
487 | 1 | equemene | LiaisonsBis(Iat,Itmp-1)=LiaisonsBis(iat,2) |
488 | 1 | equemene | LiaisonsBis(Iat,2)=n4 |
489 | 1 | equemene | If (debug) WRITE(*,*) 'Itmp,LiaisonsBis',Itmp,LiaisonsBis(Iat,1:NMaxL) |
490 | 1 | equemene | |
491 | 1 | equemene | if (sDihe.LE.0.09d0) THEN |
492 | 1 | equemene | WRITE(*,*) "Dans le caca car tous les atoms de ce block sont align?s!" |
493 | 1 | equemene | END IF |
494 | 1 | equemene | |
495 | 1 | equemene | CALL produit_vect(vx3,vy3,vz3,norm3,vx2,vy2,vz2,norm2, & |
496 | 1 | equemene | vx5,vy5,vz5,norm5) |
497 | 1 | equemene | |
498 | 1 | equemene | |
499 | 1 | equemene | Itmp=2 |
500 | 1 | equemene | sDiHe=0. |
501 | 1 | equemene | |
502 | 1 | equemene | DO While ((ITmp.LT.LiaisonsBis(Iat,0)).AND.(sDihe.LE.0.09d0)) |
503 | 1 | equemene | ITmp=ITmp+1 |
504 | 1 | equemene | n1=LiaisonsBis(Iat,Itmp) |
505 | 1 | equemene | if (debug) WRITe(*,*) 'trying n1,n2,n3,n4',n1,n2,n3,n4 |
506 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
507 | 1 | equemene | ! Is this atom aligned with n2-n3 ? |
508 | 1 | equemene | val_d=angle(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2) |
509 | 1 | equemene | sDiHe=abs(sin(val_d*pi/180.d0)) |
510 | 1 | equemene | if (debug) Write(*,*) 'Angle n3-n2-n1',val_d |
511 | 1 | equemene | if (sDiHe.le.0.09d0) THEN |
512 | 1 | equemene | ! As atoms n2,n3 and n4 are not aligned, we interchange n3 and n4 so that n1,n2 and n3 are not aligned |
513 | 1 | equemene | if (debug) WRITE(*,*) "n3-n2-n1 aligned, we interchange n3 and n4" |
514 | 1 | equemene | n1=n3 |
515 | 1 | equemene | n3=n4 |
516 | 1 | equemene | n4=n1 |
517 | 1 | equemene | n1=LiaisonsBis(Iat,ITmp) |
518 | 1 | equemene | CALL vecteur(n2,n3,x,y,z,vx2,vy2,vz2,norm2) |
519 | 1 | equemene | CALL vecteur(n2,n4,x,y,z,vx3,vy3,vz3,norm3) |
520 | 1 | equemene | val_d=angle(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2) |
521 | 1 | equemene | if (debug) Write(*,*) 'NEW Angle n3-n2-n1',val_d |
522 | 1 | equemene | END IF |
523 | 1 | equemene | |
524 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
525 | 1 | equemene | ! avant de tester l'angle diedre, il faut verifier que ce 4e atome n'est pas |
526 | 1 | equemene | ! aligne avec les 2 premiers. |
527 | 1 | equemene | ! comme on a deja test? que les 3 premiers ne sont pas alignes, |
528 | 1 | equemene | ! s'il est align? avec les 2 premiers, on peut inverser le role de 2 et 3. |
529 | 1 | equemene | ! On pourrait tout simplier en faisant une bete recherche parmi tous les atomes geles |
530 | 1 | equemene | ! de ce bloc (au moins 4 ?) avec le critere 1) on les range par distance croissante |
531 | 1 | equemene | ! 2) on les scanne tant que l'angle valence n'est pas bon, puis tant que diehedre pas bon |
532 | 1 | equemene | ! puis les atomes des autres fragment par distance croissante. |
533 | 1 | equemene | ! les autres fragments ne seraient additonn?s que si l'on ne trouve pas notre bonheur dans le premier bloc |
534 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
535 | 1 | equemene | |
536 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2, & |
537 | 1 | equemene | vx4,vy4,vz4,norm4) |
538 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4,vx5,vy5,vz5,norm5, & |
539 | 1 | equemene | vx2,vy2,vz2,norm2) |
540 | 1 | equemene | sDihe=abs(sin(val_d*pi/180.d0)) |
541 | 1 | equemene | if (debug) WRITE(*,*) 'n2,n3,n4,n1, angle_d',n2,n3,n4,n1,val_d |
542 | 1 | equemene | END DO |
543 | 1 | equemene | |
544 | 1 | equemene | DejaFait(n2)=.TRUE. |
545 | 1 | equemene | DejaFait(n3)=.TRUE. |
546 | 1 | equemene | DejaFait(n4)=.TRUE. |
547 | 1 | equemene | |
548 | 1 | equemene | if (sDihe.LE.0.09d0) THEN |
549 | 1 | equemene | ! None of the frozen atoms linked to IAt are good to define the third |
550 | 1 | equemene | ! direction in space... |
551 | 1 | equemene | ! We will look at the other frozen atoms |
552 | 1 | equemene | ! we might improve the search so as to take the atom closest to IAt |
553 | 1 | equemene | if (debug) WRITE(*,*) "All atoms linked to ",Iat," are in a plane. Looking for other frozen atoms" |
554 | 1 | equemene | ITmp=0 |
555 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
556 | 1 | equemene | JAt=FragAt(IFrag,I) |
557 | 1 | equemene | if (FrozAt(Jat).AND.(.NOT.DejaFait(JAt))) THEN |
558 | 1 | equemene | n1=JAt |
559 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
560 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2, & |
561 | 1 | equemene | vx4,vy4,vz4,norm4) |
562 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, & |
563 | 1 | equemene | vx5,vy5,vz5,norm5, & |
564 | 1 | equemene | vx2,vy2,vz2,norm2) |
565 | 1 | equemene | if (abs(sin(val_d)).GE.0.09D0) THEN |
566 | 1 | equemene | ITmp=ITmp+1 |
567 | 1 | equemene | DistFroz(ITmp)=Norm1 |
568 | 1 | equemene | FrozDist(ITmp)=JAt |
569 | 1 | equemene | END IF |
570 | 1 | equemene | END IF |
571 | 1 | equemene | END DO |
572 | 1 | equemene | IF (ITmp.EQ.0) THEN |
573 | 1 | equemene | ! All dihedral angles between frozen atoms are less than 5? |
574 | 1 | equemene | ! (or more than 175?). We have to look at other fragments :-( |
575 | 1 | equemene | DO I=1,NFroz |
576 | 1 | equemene | Jat=Frozen(I) |
577 | 1 | equemene | if (.NOT.DejaFait(JAt)) THEN |
578 | 1 | equemene | n1=JAt |
579 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
580 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1, & |
581 | 1 | equemene | vx2,vy2,vz2,norm2, & |
582 | 1 | equemene | vx4,vy4,vz4,norm4) |
583 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, & |
584 | 1 | equemene | vx5,vy5,vz5,norm5, & |
585 | 1 | equemene | vx2,vy2,vz2,norm2) |
586 | 1 | equemene | if (abs(sin(val_d)).GE.0.09D0) THEN |
587 | 1 | equemene | ITmp=ITmp+1 |
588 | 1 | equemene | DistFroz(ITmp)=Norm1 |
589 | 1 | equemene | FrozDist(ITmp)=JAt |
590 | 1 | equemene | END IF |
591 | 1 | equemene | END IF |
592 | 1 | equemene | END DO |
593 | 1 | equemene | IF (ITmp.EQ.0) THEN |
594 | 1 | equemene | ! All frozen atoms are in a plane... too bad |
595 | 1 | equemene | WRITE(*,*) 'ERROR: It seems that all frozen atoms are in a plane' |
596 | 1 | equemene | WRITE(*,*) 'For now, I do not treat this case' |
597 | 1 | equemene | STOP |
598 | 1 | equemene | END IF |
599 | 1 | equemene | END IF |
600 | 1 | equemene | I1=0 |
601 | 1 | equemene | d=1e9 |
602 | 1 | equemene | DO I=1,ITmp |
603 | 1 | equemene | IF (DistFroz(I).LE.d) THEN |
604 | 1 | equemene | d=DistFroz(I) |
605 | 1 | equemene | I1=FrozDist(I) |
606 | 1 | equemene | END IF |
607 | 1 | equemene | END DO |
608 | 1 | equemene | ELSE !(sDihe.LE.0.09d0) |
609 | 1 | equemene | I1=FrozBlock(IAt,ITmp) |
610 | 1 | equemene | if (debug) WRITE(*,*) 'I1,n1:',I1,n1 |
611 | 1 | equemene | END IF !(sDihe.LE.0.09d0) |
612 | 1 | equemene | ! we now have the atom that is closer to the first one and that |
613 | 1 | equemene | ! forms a non 0/Pi dihedral angle |
614 | 1 | equemene | |
615 | 1 | equemene | ind_zmat(1,1)=n2 |
616 | 1 | equemene | ind_zmat(2,1)=n3 |
617 | 1 | equemene | ind_zmat(2,2)=n2 |
618 | 1 | equemene | ind_zmat(3,1)=n4 |
619 | 1 | equemene | ind_zmat(3,2)=n2 |
620 | 1 | equemene | ind_zmat(3,3)=n3 |
621 | 1 | equemene | DejaFait(n2)=.TRUE. |
622 | 1 | equemene | DejaFait(n3)=.TRUE. |
623 | 1 | equemene | DejaFait(n4)=.TRUE. |
624 | 1 | equemene | CaFaire(1)=n3 |
625 | 1 | equemene | CaFaire(2)=n4 |
626 | 1 | equemene | |
627 | 1 | equemene | ind_zmat(4,1)=I1 |
628 | 1 | equemene | ind_zmat(4,2)=n2 |
629 | 1 | equemene | ind_zmat(4,3)=n3 |
630 | 1 | equemene | ind_zmat(4,4)=n4 |
631 | 1 | equemene | DejaFait(I1)=.TRUE. |
632 | 1 | equemene | CaFaire(3)=I1 |
633 | 1 | equemene | CaFaire(4)=0 |
634 | 1 | equemene | IdxCaFaire=4 |
635 | 1 | equemene | |
636 | 1 | equemene | FCaf(n2)=.TRUE. |
637 | 1 | equemene | FCaf(n3)=.TRUE. |
638 | 1 | equemene | FCaf(I1)=.TRUE. |
639 | 1 | equemene | izm=4 |
640 | 1 | equemene | DO I=3,LiaisonsBis(Iat,0) |
641 | 1 | equemene | IF (.NOT.DejaFait(LiaisonsBis(Iat,I))) THEN |
642 | 1 | equemene | izm=izm+1 |
643 | 1 | equemene | ! ind_zmat(izm,1)=LiaisonsBis(Iat,I) |
644 | 1 | equemene | ! ind_zmat(izm,2)=n2 |
645 | 1 | equemene | ! ind_zmat(izm,3)=n3 |
646 | 1 | equemene | ! ind_zmat(izm,4)=n4 |
647 | 1 | equemene | Call add2indzmat(na,izm,LiaisonsBis(Iat,I),n2,n3,n4,ind_zmat,x,y,z) |
648 | 1 | equemene | IF (.NOT.FCaf(LiaisonsBis(Iat,I))) THEN |
649 | 1 | equemene | CaFaire(IdxCaFaire)=LiaisonsBis(Iat,I) |
650 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
651 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
652 | 1 | equemene | FCaf(LiaisonsBis(Iat,I))=.TRUE. |
653 | 1 | equemene | END IF |
654 | 1 | equemene | DejaFait(LiaisonsBis(Iat,I))=.TRUE. |
655 | 1 | equemene | END IF |
656 | 1 | equemene | END DO |
657 | 1 | equemene | |
658 | 1 | equemene | if (debug) THEN |
659 | 1 | equemene | WRITE(*,*) "Ind_zmat 0 - SELECT CASE I0 3: -- izm=",izm |
660 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
661 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
662 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2), ind_zmat(3,3) |
663 | 1 | equemene | DO I=4,izm |
664 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(I,1), ind_zmat(I,2), & |
665 | 1 | equemene | ind_zmat(I,3), ind_zmat(I,4) |
666 | 1 | equemene | END DO |
667 | 1 | equemene | END IF |
668 | 1 | equemene | |
669 | 1 | equemene | |
670 | 1 | equemene | ! First four atoms (at least) have been put we go on with next parts |
671 | 1 | equemene | ! of this fragment... later |
672 | 1 | equemene | |
673 | 1 | equemene | |
674 | 1 | equemene | CASE(2) |
675 | 1 | equemene | if (debug) WRITE(*,*) 'DBG select case I0 2' |
676 | 1 | equemene | if (debug) WRITE(*,*) 'ATTENTION For now, case with only 3 frozen atoms non treated' |
677 | 1 | equemene | ind_zmat(1,1)=IAt |
678 | 1 | equemene | ind_zmat(2,1)=liaisonsBis(IAt,1) |
679 | 1 | equemene | ind_zmat(2,2)=IAt |
680 | 1 | equemene | ind_zmat(3,1)=LiaisonsBis(IAt,2) |
681 | 1 | equemene | ind_zmat(3,2)=IAt |
682 | 1 | equemene | ind_zmat(3,3)=LiaisonsBis(IAt,1) |
683 | 1 | equemene | DejaFait(IAt)=.TRUE. |
684 | 1 | equemene | DejaFait(LiaisonsBis(Iat,1))=.TRUE. |
685 | 1 | equemene | DejaFait(LiaisonsBis(Iat,2))=.TRUE. |
686 | 1 | equemene | CaFaire(1)=LiaisonsBis(Iat,1) |
687 | 1 | equemene | CaFaire(2)=LiaisonsBis(Iat,2) |
688 | 1 | equemene | FCaf(LiaisonsBis(Iat,1))=.TRUE. |
689 | 1 | equemene | FCaf(LiaisonsBis(Iat,2))=.TRUE. |
690 | 1 | equemene | |
691 | 1 | equemene | ! We search for a fourth atom, first in the FrozBlock atoms |
692 | 1 | equemene | ITmp=2 |
693 | 1 | equemene | sDihe=0. |
694 | 1 | equemene | n2=IAt |
695 | 1 | equemene | n3=LiaisonsBis(Iat,1) |
696 | 1 | equemene | n4=LiaisonsBis(Iat,2) |
697 | 1 | equemene | CALL vecteur(n2,n3,x,y,z,vx2,vy2,vz2,norm2) |
698 | 1 | equemene | CALL vecteur(n3,n4,x,y,z,vx3,vy3,vz3,norm3) |
699 | 1 | equemene | CALL produit_vect(vx3,vy3,vz3,norm3, & |
700 | 1 | equemene | vx2,vy2,vz2,norm2, & |
701 | 1 | equemene | vx5,vy5,vz5,norm5) |
702 | 1 | equemene | |
703 | 1 | equemene | DO While ((ITmp.LE.FrozBlock(Iat,0)).AND.(sDihe.LE.0.09d0)) |
704 | 1 | equemene | ITmp=ITmp+1 |
705 | 1 | equemene | n1=FrozBlock(Iat,Itmp) |
706 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
707 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1, & |
708 | 1 | equemene | vx2,vy2,vz2,norm2, & |
709 | 1 | equemene | vx4,vy4,vz4,norm4) |
710 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, & |
711 | 1 | equemene | vx5,vy5,vz5,norm5, & |
712 | 1 | equemene | vx2,vy2,vz2,norm2) |
713 | 1 | equemene | sDihe=abs(sin(val_d)) |
714 | 1 | equemene | END DO |
715 | 1 | equemene | IF (debug) WRITE(*,*) 'DBG 4th atom, ITmp, sDihe',ITmp, sDihe |
716 | 1 | equemene | if (sDihe.LE.0.09d0) THEN |
717 | 1 | equemene | ! None of the frozen atoms linked to IAt are good to define the third |
718 | 1 | equemene | ! direction in space... |
719 | 1 | equemene | ! We will look at the other frozen atoms |
720 | 1 | equemene | ! we might improve the search so as to take the atom closest to IAt |
721 | 1 | equemene | ITmp=0 |
722 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
723 | 1 | equemene | JAt=FragAt(IFrag,I) |
724 | 1 | equemene | if (FrozAt(Jat).AND.(.NOT.DejaFait(JAt))) THEN |
725 | 1 | equemene | n1=JAt |
726 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
727 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1, & |
728 | 1 | equemene | vx2,vy2,vz2,norm2, & |
729 | 1 | equemene | vx4,vy4,vz4,norm4) |
730 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, & |
731 | 1 | equemene | vx5,vy5,vz5,norm5, & |
732 | 1 | equemene | vx2,vy2,vz2,norm2) |
733 | 1 | equemene | if (abs(sin(val_d)).GE.0.09D0) THEN |
734 | 1 | equemene | ITmp=ITmp+1 |
735 | 1 | equemene | DistFroz(ITmp)=Norm1 |
736 | 1 | equemene | FrozDist(ITmp)=JAt |
737 | 1 | equemene | END IF |
738 | 1 | equemene | END IF |
739 | 1 | equemene | END DO |
740 | 1 | equemene | IF (ITmp.EQ.0) THEN |
741 | 1 | equemene | ! All dihedral angles between frozen atoms are less than 5? |
742 | 1 | equemene | ! (or more than 175?). We have to look at other fragments :-( |
743 | 1 | equemene | DO I=1,NFroz |
744 | 1 | equemene | Jat=Frozen(I) |
745 | 1 | equemene | if (.NOT.DejaFait(JAt)) THEN |
746 | 1 | equemene | n1=JAt |
747 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
748 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1, & |
749 | 1 | equemene | vx2,vy2,vz2,norm2, & |
750 | 1 | equemene | vx4,vy4,vz4,norm4) |
751 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, & |
752 | 1 | equemene | vx5,vy5,vz5,norm5, & |
753 | 1 | equemene | vx2,vy2,vz2,norm2) |
754 | 1 | equemene | if (abs(sin(val_d)).GE.0.09D0) THEN |
755 | 1 | equemene | ITmp=ITmp+1 |
756 | 1 | equemene | DistFroz(ITmp)=Norm1 |
757 | 1 | equemene | FrozDist(ITmp)=JAt |
758 | 1 | equemene | END IF |
759 | 1 | equemene | END IF |
760 | 1 | equemene | END DO |
761 | 1 | equemene | IF (ITmp.EQ.0) THEN |
762 | 1 | equemene | ! All frozen atoms are in a plane... too bad |
763 | 1 | equemene | WRITE(*,*) 'ERROR: It seems that all frozen atoms are in a plane' |
764 | 1 | equemene | WRITE(*,*) 'For now, I do not treat this case' |
765 | 1 | equemene | STOP |
766 | 1 | equemene | END IF |
767 | 1 | equemene | END IF |
768 | 1 | equemene | I1=0 |
769 | 1 | equemene | d=1e9 |
770 | 1 | equemene | DO I=1,ITmp |
771 | 1 | equemene | IF (DistFroz(I).LE.d) THEN |
772 | 1 | equemene | d=DistFroz(I) |
773 | 1 | equemene | I1=FrozDist(I) |
774 | 1 | equemene | END IF |
775 | 1 | equemene | END DO |
776 | 1 | equemene | ELSE !(sDihe.LE.0.09d0) |
777 | 1 | equemene | I1=FrozBlock(IAt,ITmp) |
778 | 1 | equemene | END IF !(sDihe.LE.0.09d0) |
779 | 1 | equemene | ! we now have the atom that is closer to the first one and that |
780 | 1 | equemene | ! forms a non 0/Pi dihedral angle |
781 | 1 | equemene | ! ind_zmat(4,1)=I1 |
782 | 1 | equemene | ! ind_zmat(4,2)=IAt |
783 | 1 | equemene | ! ind_zmat(4,3)=LiaisonsBis(Iat,1) |
784 | 1 | equemene | ! ind_zmat(4,4)=LiaisonsBis(Iat,2) |
785 | 1 | equemene | n3=LiaisonsBis(Iat,1) |
786 | 1 | equemene | n4=LiaisonsBis(Iat,2) |
787 | 1 | equemene | Call add2indzmat(na,4,I1,Iat,n3,n4,ind_zmat,x,y,z) |
788 | 1 | equemene | LiaisonsBis(Iat,1)=n3 |
789 | 1 | equemene | LiaisonsBis(Iat,2)=n4 |
790 | 1 | equemene | DejaFait(I1)=.TRUE. |
791 | 1 | equemene | CaFaire(3)=I1 |
792 | 1 | equemene | CaFaire(4)=0 |
793 | 1 | equemene | IdxCaFaire=4 |
794 | 1 | equemene | izm=4 |
795 | 1 | equemene | FCaf(I1)=.TRUE. |
796 | 1 | equemene | |
797 | 1 | equemene | CASE(1) |
798 | 1 | equemene | if (debug) WRITE(*,*) 'DBG select case I0 1' |
799 | 1 | equemene | ind_zmat(1,1)=IAt |
800 | 1 | equemene | ind_zmat(2,1)=liaisonsBis(IAt,1) |
801 | 1 | equemene | ind_zmat(2,2)=IAt |
802 | 1 | equemene | DejaFait(IAt)=.TRUE. |
803 | 1 | equemene | DejaFait(LiaisonsBis(Iat,1))=.TRUE. |
804 | 1 | equemene | IdxCaFaire=2 |
805 | 1 | equemene | CaFaire(1)=LiaisonsBis(Iat,1) |
806 | 1 | equemene | CaFaire(2)=0 |
807 | 1 | equemene | FCaf(LiaisonsBis(Iat,1))=.TRUE. |
808 | 1 | equemene | |
809 | 1 | equemene | ! We search for a third and fourth atoms, first in the FrozBlock atoms |
810 | 1 | equemene | ! It should not be possible to have (FrozBlock(Iat,0).GT.2) and |
811 | 1 | equemene | ! iat linked to only one atom ! |
812 | 1 | equemene | |
813 | 1 | equemene | IF (FrozBlock(Iat,0).GT.2) THEN |
814 | 1 | equemene | WRITE(*,*) 'I found some inconsistancy: IAt linked to 1' |
815 | 1 | equemene | WRITE(*,*) 'Atom only, but belongs to a frozblock of at ' |
816 | 1 | equemene | WRITE(*,*) 'least 3 atoms. IAt, FrozBlock' |
817 | 1 | equemene | WRITE(*,*) Iat,(FrozBlock(IAt,J),J=0,FrozBlock(Iat,0)) |
818 | 1 | equemene | STOP |
819 | 1 | equemene | END IF |
820 | 1 | equemene | |
821 | 1 | equemene | ! we calculate the distances between Iat and all other frozen |
822 | 1 | equemene | ! atoms of this fragment, and store only those for which |
823 | 1 | equemene | ! valence angles are not too close to 0/Pi. (limit:5?) |
824 | 1 | equemene | |
825 | 1 | equemene | ITmp=0 |
826 | 1 | equemene | CALL vecteur(LiaisonsBis(Iat,1),IAt,x,y,z,vx2,vy2,vz2,norm2) |
827 | 1 | equemene | |
828 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
829 | 1 | equemene | JAt=FragAt(IFrag,I) |
830 | 1 | equemene | if (FrozAt(Jat).AND.(.NOT.DejaFait(JAt))) THEN |
831 | 1 | equemene | CALL vecteur(JAt,IAt,x,y,z,vx1,vy1,vz1,norm1) |
832 | 1 | equemene | if (abs(cos(angle(vx1,vy1,vz1,norm1, & |
833 | 1 | equemene | vx2,vy2,vz2,norm2))).LE.0.996d0) THEN |
834 | 1 | equemene | ITmp=ITmp+1 |
835 | 1 | equemene | DistFroz(ITmp)=Norm1 |
836 | 1 | equemene | FrozDist(ITmp)=JAt |
837 | 1 | equemene | END IF |
838 | 1 | equemene | END IF |
839 | 1 | equemene | END DO |
840 | 1 | equemene | |
841 | 1 | equemene | IF (ITMP.EQ.0) THEN |
842 | 1 | equemene | ! We have no frozen atoms correct in this fragment, we use |
843 | 1 | equemene | ! atoms from other fragments |
844 | 1 | equemene | DO I=1,NFroz |
845 | 1 | equemene | Jat=Frozen(I) |
846 | 1 | equemene | if (.NOT.DejaFait(JAt)) THEN |
847 | 1 | equemene | CALL vecteur(JAt,IAt,x,y,z,vx1,vy1,vz1,norm1) |
848 | 1 | equemene | if (abs(cos(angle(vx1,vy1,vz1,norm1, & |
849 | 1 | equemene | vx2,vy2,vz2,norm2))).LE.0.996d0) THEN |
850 | 1 | equemene | ITmp=ITmp+1 |
851 | 1 | equemene | DistFroz(ITmp)=Norm1 |
852 | 1 | equemene | FrozDist(ITmp)=JAt |
853 | 1 | equemene | END IF |
854 | 1 | equemene | END IF |
855 | 1 | equemene | END DO |
856 | 1 | equemene | IF (ITMP.EQ.0) THEN |
857 | 1 | equemene | WRITE(*,*) 'It seems all frozen atoms are aligned' |
858 | 1 | equemene | WRITE(*,*) 'Case non treated for now :-( ' |
859 | 1 | equemene | STOP |
860 | 1 | equemene | END IF |
861 | 1 | equemene | END IF |
862 | 1 | equemene | |
863 | 1 | equemene | I1=0 |
864 | 1 | equemene | d=1e9 |
865 | 1 | equemene | DO I=1,ITmp |
866 | 1 | equemene | IF (DistFroz(I).LE.d) THEN |
867 | 1 | equemene | I1=FrozDist(I) |
868 | 1 | equemene | d=DistFroz(I) |
869 | 1 | equemene | END IF |
870 | 1 | equemene | END DO |
871 | 1 | equemene | |
872 | 1 | equemene | ! we now have the atom that is closer to the first one and that |
873 | 1 | equemene | ! forms a non 0/Pi valence angle |
874 | 1 | equemene | ind_zmat(3,1)=I1 |
875 | 1 | equemene | ind_zmat(3,2)=IAt |
876 | 1 | equemene | ind_zmat(3,3)=LiaisonsBis(Iat,1) |
877 | 1 | equemene | DejaFait(I1)=.TRUE. |
878 | 1 | equemene | CaFaire(2)=I1 |
879 | 1 | equemene | FCaf(I1)=.TRUE. |
880 | 1 | equemene | |
881 | 1 | equemene | |
882 | 1 | equemene | ! we search for a fourth atom ! |
883 | 1 | equemene | ! We search for a fourth atom, first in the FrozBlock atoms |
884 | 1 | equemene | ITmp=2 |
885 | 1 | equemene | sDihe=0. |
886 | 1 | equemene | n2=IAt |
887 | 1 | equemene | n3=LiaisonsBis(Iat,1) |
888 | 1 | equemene | n4=I1 |
889 | 1 | equemene | CALL vecteur(n2,n3,x,y,z,vx2,vy2,vz2,norm2) |
890 | 1 | equemene | CALL vecteur(n3,n4,x,y,z,vx3,vy3,vz3,norm3) |
891 | 1 | equemene | CALL produit_vect(vx3,vy3,vz3,norm3, & |
892 | 1 | equemene | vx2,vy2,vz2,norm2, & |
893 | 1 | equemene | vx5,vy5,vz5,norm5) |
894 | 1 | equemene | |
895 | 1 | equemene | ! We will look at the other frozen atoms |
896 | 1 | equemene | ! we might improve the search so as to take the atom closest to IAt |
897 | 1 | equemene | ITmp=0 |
898 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
899 | 1 | equemene | JAt=FragAt(IFrag,I) |
900 | 1 | equemene | if (FrozAt(Jat).AND.(.NOT.DejaFait(JAt))) THEN |
901 | 1 | equemene | n1=JAt |
902 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
903 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1, & |
904 | 1 | equemene | vx2,vy2,vz2,norm2, & |
905 | 1 | equemene | vx4,vy4,vz4,norm4) |
906 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, & |
907 | 1 | equemene | vx5,vy5,vz5,norm5, & |
908 | 1 | equemene | vx2,vy2,vz2,norm2) |
909 | 1 | equemene | if (abs(sin(val_d)).GE.0.09D0) THEN |
910 | 1 | equemene | ITmp=ITmp+1 |
911 | 1 | equemene | DistFroz(ITmp)=Norm1 |
912 | 1 | equemene | FrozDist(ITmp)=JAt |
913 | 1 | equemene | END IF |
914 | 1 | equemene | END IF |
915 | 1 | equemene | END DO |
916 | 1 | equemene | IF (ITmp.EQ.0) THEN |
917 | 1 | equemene | ! All dihedral angles between frozen atoms are less than 5? |
918 | 1 | equemene | ! (or more than 175?). We have to look at other fragments :-( |
919 | 1 | equemene | DO I=1,NFroz |
920 | 1 | equemene | Jat=Frozen(I) |
921 | 1 | equemene | if (.NOT.DejaFait(JAt)) THEN |
922 | 1 | equemene | n1=JAt |
923 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
924 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1, & |
925 | 1 | equemene | vx2,vy2,vz2,norm2, & |
926 | 1 | equemene | vx4,vy4,vz4,norm4) |
927 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, & |
928 | 1 | equemene | vx5,vy5,vz5,norm5, & |
929 | 1 | equemene | vx2,vy2,vz2,norm2) |
930 | 1 | equemene | if (abs(sin(val_d)).GE.0.09D0) THEN |
931 | 1 | equemene | ITmp=ITmp+1 |
932 | 1 | equemene | DistFroz(ITmp)=Norm1 |
933 | 1 | equemene | FrozDist(ITmp)=JAt |
934 | 1 | equemene | END IF |
935 | 1 | equemene | END IF |
936 | 1 | equemene | END DO |
937 | 1 | equemene | IF (ITmp.EQ.0) THEN |
938 | 1 | equemene | ! All frozen atoms are in a plane... too bad |
939 | 1 | equemene | WRITE(*,*) 'ERROR: It seems that all frozen atoms are in a plane' |
940 | 1 | equemene | WRITE(*,*) 'For now, I do not treat this case' |
941 | 1 | equemene | STOP |
942 | 1 | equemene | END IF |
943 | 1 | equemene | END IF ! ITmp.EQ.0 after scaning fragment |
944 | 1 | equemene | I1=0 |
945 | 1 | equemene | d=1e9 |
946 | 1 | equemene | DO I=1,ITmp |
947 | 1 | equemene | IF (DistFroz(I).LE.d) THEN |
948 | 1 | equemene | d=DistFroz(I) |
949 | 1 | equemene | I1=FrozDist(I) |
950 | 1 | equemene | END IF |
951 | 1 | equemene | END DO |
952 | 1 | equemene | |
953 | 1 | equemene | ! we now have the atom that is closer to the first one and that |
954 | 1 | equemene | ! forms a non 0/Pi dihedral angle |
955 | 1 | equemene | ! ind_zmat(4,1)=I1 |
956 | 1 | equemene | ! ind_zmat(4,2)=IAt |
957 | 1 | equemene | ! ind_zmat(4,3)=ind_zmat(2,1) |
958 | 1 | equemene | ! ind_zmat(4,4)=ind_zmat(3,1) |
959 | 1 | equemene | n3=ind_zmat(2,1) |
960 | 1 | equemene | n4=ind_zmat(3,1) |
961 | 1 | equemene | Call add2indzmat(na,4,I1,IAt,n3,n4,ind_zmat,x,y,z) |
962 | 1 | equemene | ind_zmat(2,1)=n3 |
963 | 1 | equemene | ind_zmat(3,1)=n4 |
964 | 1 | equemene | DejaFait(I1)=.TRUE. |
965 | 1 | equemene | CaFaire(3)=I1 |
966 | 1 | equemene | CaFaire(4)=0 |
967 | 1 | equemene | IdxCaFaire=4 |
968 | 1 | equemene | izm=4 |
969 | 1 | equemene | FCaf(I1)=.TRUE. |
970 | 1 | equemene | |
971 | 1 | equemene | CASE(0) |
972 | 1 | equemene | WRITE(*,*) 'All frozen atoms are separated .. ' |
973 | 1 | equemene | WRITE(*,*) 'this case should be treated separately !' |
974 | 1 | equemene | STOP |
975 | 1 | equemene | END SELECT |
976 | 1 | equemene | |
977 | 1 | equemene | if (debug) THEN |
978 | 1 | equemene | WRITE(*,*) 'ind_zmat 1' |
979 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
980 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
981 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2), ind_zmat(3,3) |
982 | 1 | equemene | DO I=4,izm |
983 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(I,1), ind_zmat(I,2), & |
984 | 1 | equemene | ind_zmat(I,3), ind_zmat(I,4) |
985 | 1 | equemene | END DO |
986 | 1 | equemene | END IF |
987 | 1 | equemene | |
988 | 1 | equemene | DO I=1,izm |
989 | 1 | equemene | Idx_zmat(ind_zmat(I,1))=i |
990 | 1 | equemene | END Do |
991 | 1 | equemene | |
992 | 1 | equemene | ! at least first four (frozen) atoms of this fragment done... |
993 | 1 | equemene | ! we empty the 'cafaire' array before pursuing |
994 | 1 | equemene | IAFaire=1 |
995 | 1 | equemene | DO WHILE (CaFaire(IaFaire).NE.0) |
996 | 1 | equemene | n1=CaFaire(IaFaire) |
997 | 1 | equemene | n2=ind_zmat(idx_zmat(N1),2) |
998 | 1 | equemene | if (idx_zmat(N1).EQ.2) THEN |
999 | 1 | equemene | ! We have a (small) problem: we have to add atoms linked to the 2nd |
1000 | 1 | equemene | ! atom of the zmat. This is a pb because we do not know |
1001 | 1 | equemene | ! which atom to use to define the dihedral angle |
1002 | 1 | equemene | ! we take the third atom of the zmat |
1003 | 1 | equemene | n3=ind_zmat(3,1) |
1004 | 1 | equemene | ELSE |
1005 | 1 | equemene | n3=ind_zmat(idx_zmat(n1),3) |
1006 | 1 | equemene | END IF |
1007 | 1 | equemene | IF (LiaisonsBis(n1,0).GE.1) THEN |
1008 | 1 | equemene | IAt=LiaisonsBis(n1,1) |
1009 | 1 | equemene | if (.NOT.DejaFait(Iat)) THEN |
1010 | 1 | equemene | izm=izm+1 |
1011 | 1 | equemene | if (debug) WRITE(*,*) ">0< Adding atom ",Iat,"position izm=",izm |
1012 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1013 | 1 | equemene | ! ind_zmat(izm,2)=n1 |
1014 | 1 | equemene | ! ind_zmat(izm,3)=n2 |
1015 | 1 | equemene | ! ind_zmat(izm,4)=n3 |
1016 | 1 | equemene | Call add2indzmat(na,izm,iat,n1,n2,n3,ind_zmat,x,y,z) |
1017 | 1 | equemene | Idx_zmat(iat)=izm |
1018 | 1 | equemene | n3=iat |
1019 | 1 | equemene | IF (.NOT.FCaf(Iat)) THEN |
1020 | 1 | equemene | CaFaire(IdxCaFaire)=iat |
1021 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
1022 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1023 | 1 | equemene | FCaf(Iat)=.TRUE. |
1024 | 1 | equemene | END IF |
1025 | 1 | equemene | DejaFait(iat)=.TRUE. |
1026 | 1 | equemene | END IF |
1027 | 1 | equemene | END IF |
1028 | 1 | equemene | DO I=2,LiaisonsBis(n1,0) |
1029 | 1 | equemene | IAt=LiaisonsBis(n1,I) |
1030 | 1 | equemene | ! PFL 29.Aug.2008 -> |
1031 | 1 | equemene | ! We dissociate the test on 'DejaFait' that indicates that this atom |
1032 | 1 | equemene | ! has already been put in the Zmat |
1033 | 1 | equemene | ! from the test on FCaf that indicates that this atom has been put in the |
1034 | 1 | equemene | ! 'CAFaire' list that deals with identifying its connectivity. |
1035 | 1 | equemene | ! Those two test might differ for a frozen atom linked to non frozen atoms. |
1036 | 1 | equemene | IF (.NOT.DejaFait(Iat)) THEN |
1037 | 1 | equemene | izm=izm+1 |
1038 | 1 | equemene | if (debug) WRITE(*,*) ">1< Adding atom ",Iat,"position izm=",izm |
1039 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1040 | 1 | equemene | ! ind_zmat(izm,2)=n1 |
1041 | 1 | equemene | ! ind_zmat(izm,3)=n2 |
1042 | 1 | equemene | ! ind_zmat(izm,4)=n3 |
1043 | 1 | equemene | Call add2indzmat(na,izm,iat,n1,n2,n3,ind_zmat,x,y,z) |
1044 | 1 | equemene | idx_zmat(iat)=izm |
1045 | 1 | equemene | DejaFait(iat)=.TRUE. |
1046 | 1 | equemene | END IF |
1047 | 1 | equemene | IF (.NOT.FCaf(Iat)) THEN |
1048 | 1 | equemene | CaFaire(IdxCaFaire)=iat |
1049 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
1050 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1051 | 1 | equemene | FCaf(Iat)=.TRUE. |
1052 | 1 | equemene | END IF |
1053 | 1 | equemene | ! <- PFL 29.Aug.2008 |
1054 | 1 | equemene | END DO |
1055 | 1 | equemene | IaFaire=IaFaire+1 |
1056 | 1 | equemene | END Do ! DO WHILE CaFaire |
1057 | 1 | equemene | |
1058 | 1 | equemene | if (debug) THEN |
1059 | 1 | equemene | WRITE(*,*) 'ind_zmat 2, izm=',izm |
1060 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
1061 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
1062 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2), ind_zmat(3,3) |
1063 | 1 | equemene | DO I=4,izm |
1064 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(I,1), ind_zmat(I,2), & |
1065 | 1 | equemene | ind_zmat(I,3), ind_zmat(I,4) |
1066 | 1 | equemene | END DO |
1067 | 1 | equemene | END IF |
1068 | 1 | equemene | |
1069 | 1 | equemene | ! We have finished putting atoms linked to the first one |
1070 | 1 | equemene | ! we will add other frozen atoms of this fragment |
1071 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
1072 | 1 | equemene | Iat=FragAt(IFrag,I) |
1073 | 1 | equemene | if (debug) WRITE(*,*) "DBG: I,Iat,Frozat,dejafait,frozbloc",I,Iat,FrozAt(Iat), DejaFait(Iat),FrozBlock(Iat,0) |
1074 | 1 | equemene | IF (FrozAt(Iat).AND.(.NOT.DejaFait(Iat))) THEN |
1075 | 1 | equemene | ! in order to have the zmat as connected as possible, |
1076 | 1 | equemene | ! we look if this atom belongs to a frozblock |
1077 | 1 | equemene | if (debug) WRITE(*,*) 'Treating atom I,Iat, FrozBlock ',I,Iat, FrozBlock(Iat,0) |
1078 | 1 | equemene | IF (FrozBlock(Iat,0).EQ.1) THEN |
1079 | 1 | equemene | ! it is a lonely atom :-) |
1080 | 1 | equemene | d=1e9 |
1081 | 1 | equemene | DO J=1,izm |
1082 | 1 | equemene | Call vecteur(iat,ind_zmat(j,1),x,y,z,vx1,vy1,vz1,norm1) |
1083 | 1 | equemene | if (norm1.le.d) THEN |
1084 | 1 | equemene | Jat=j |
1085 | 1 | equemene | d=norm1 |
1086 | 1 | equemene | END IF |
1087 | 1 | equemene | END DO |
1088 | 1 | equemene | n2=ind_zmat(jat,1) |
1089 | 1 | equemene | SELECT CASE(jat) |
1090 | 1 | equemene | CASE (1) |
1091 | 1 | equemene | n3=ind_zmat(2,1) |
1092 | 1 | equemene | n4=ind_zmat(3,1) |
1093 | 1 | equemene | CASE (2) |
1094 | 1 | equemene | n3=ind_zmat(1,1) |
1095 | 1 | equemene | n4=ind_zmat(3,1) |
1096 | 1 | equemene | CASE DEFAULT |
1097 | 1 | equemene | n3=ind_zmat(jAt,2) |
1098 | 1 | equemene | n4=ind_zmat(jat,3) |
1099 | 1 | equemene | END SELECT |
1100 | 1 | equemene | izm=izm+1 |
1101 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1102 | 1 | equemene | ! ind_zmat(izm,2)=n2 |
1103 | 1 | equemene | ! ind_zmat(izm,3)=n3 |
1104 | 1 | equemene | ! ind_zmat(izm,4)=n4 |
1105 | 1 | equemene | Call add2indzmat(na,izm,iat,n2,n3,n4,ind_zmat,x,y,z) |
1106 | 1 | equemene | DejaFait(iat)=.TRUE. |
1107 | 1 | equemene | idx_zmat(iat)=iat |
1108 | 1 | equemene | ELSE !(FrozBlock(Iat,0).EQ.1) |
1109 | 1 | equemene | ! we have a group of atoms |
1110 | 1 | equemene | ! We search for the atom of the group with the most links |
1111 | 1 | equemene | ITmp=-1 |
1112 | 1 | equemene | DO J=1,FrozBlock(Iat,0) |
1113 | 1 | equemene | Jat=FrozBlock(Iat,J) |
1114 | 1 | equemene | IF ((.NOT.DejaFait(Jat)).AND. & |
1115 | 1 | equemene | (LiaisonsBis(Jat,0).GT.ITMP)) THEN |
1116 | 1 | equemene | JL=Jat |
1117 | 1 | equemene | ITmp=LiaisonsBis(Jat,0) |
1118 | 1 | equemene | END IF |
1119 | 1 | equemene | END DO |
1120 | 1 | equemene | if (debug) WRITE(*,*) 'JL,ITmp:',JL,ITmp |
1121 | 1 | equemene | Iat=JL |
1122 | 1 | equemene | d=1e9 |
1123 | 1 | equemene | DO J=1,izm |
1124 | 1 | equemene | Call vecteur(iat,ind_zmat(j,1),x,y,z, vx1,vy1,vz1,norm1) |
1125 | 1 | equemene | if (norm1.le.d) THEN |
1126 | 1 | equemene | Jat=j |
1127 | 1 | equemene | d=norm1 |
1128 | 1 | equemene | END IF |
1129 | 1 | equemene | END DO |
1130 | 1 | equemene | if (debug) WRITE(*,*) 'Jat,d:',Jat,d |
1131 | 1 | equemene | n2=ind_zmat(jat,1) |
1132 | 1 | equemene | SELECT CASE(jat) |
1133 | 1 | equemene | CASE (1) |
1134 | 1 | equemene | n3=ind_zmat(2,1) |
1135 | 1 | equemene | n4=ind_zmat(3,1) |
1136 | 1 | equemene | CASE (2) |
1137 | 1 | equemene | n3=ind_zmat(1,1) |
1138 | 1 | equemene | n4=ind_zmat(3,1) |
1139 | 1 | equemene | CASE DEFAULT |
1140 | 1 | equemene | n3=ind_zmat(jAt,2) |
1141 | 1 | equemene | n4=ind_zmat(jat,3) |
1142 | 1 | equemene | END SELECT |
1143 | 1 | equemene | izm=izm+1 |
1144 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1145 | 1 | equemene | ! ind_zmat(izm,2)=n2 |
1146 | 1 | equemene | ! ind_zmat(izm,3)=n3 |
1147 | 1 | equemene | ! ind_zmat(izm,4)=n4 |
1148 | 1 | equemene | Call add2indzmat(na,izm,iat,n2,n3,n4,ind_zmat,x,y,z) |
1149 | 1 | equemene | idx_zmat(iat)=izm |
1150 | 1 | equemene | DejaFait(iat)=.TRUE. |
1151 | 1 | equemene | IdxCaFaire=2 |
1152 | 1 | equemene | CaFaire(1)=iat |
1153 | 1 | equemene | CaFaire(2)=0 |
1154 | 1 | equemene | FCaf(Iat)=.TRUE. |
1155 | 1 | equemene | |
1156 | 1 | equemene | if (debug) WRITE(*,*) izm,iat,n2,n3,n4 |
1157 | 1 | equemene | |
1158 | 1 | equemene | IaFaire=1 |
1159 | 1 | equemene | DO WHILE (CaFaire(IaFaire).NE.0) |
1160 | 1 | equemene | n1=CaFaire(IaFaire) |
1161 | 1 | equemene | n2=ind_zmat(idx_zmat(N1),2) |
1162 | 1 | equemene | if (debug) WRITE(*,*) 'DBG Cafaire, Iafaire,n1,n2',Iafaire,n1,n2 |
1163 | 1 | equemene | if (idx_zmat(N1).EQ.2) THEN |
1164 | 1 | equemene | ! We have a (small) problem: we have to add atoms linked to the 2nd |
1165 | 1 | equemene | ! atom of the zmat. This is a pb because we do not know |
1166 | 1 | equemene | ! which atom to use to define the dihedral angle |
1167 | 1 | equemene | ! we take the third atom of the zmat |
1168 | 1 | equemene | n3=ind_zmat(3,1) |
1169 | 1 | equemene | ELSE |
1170 | 1 | equemene | n3=ind_zmat(idx_zmat(n1),3) |
1171 | 1 | equemene | END IF |
1172 | 1 | equemene | if (debug) WRITe(*,*) 'DBG :n3,liaisonBis',n3,LiaisonsBis(n1,0) |
1173 | 1 | equemene | DO I3=1,LiaisonsBis(n1,0) |
1174 | 1 | equemene | ! PFL 29.Aug.2008 -> |
1175 | 1 | equemene | ! We dissociate the test on 'DejaFait' that indicates that this atom |
1176 | 1 | equemene | ! has already been put in the Zmat |
1177 | 1 | equemene | ! from the test on FCaf that indicates that this atom has been put in the |
1178 | 1 | equemene | ! 'CAFaire' list that deals with identifying its connectivity. |
1179 | 1 | equemene | ! Those two test might differ for a frozen atom linked to non frozen atoms. |
1180 | 1 | equemene | IAt=LiaisonsBis(n1,I3) |
1181 | 1 | equemene | if (.NOT.DejaFait(Iat)) THEN |
1182 | 1 | equemene | izm=izm+1 |
1183 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1184 | 1 | equemene | ! ind_zmat(izm,2)=n1 |
1185 | 1 | equemene | ! ind_zmat(izm,3)=n2 |
1186 | 1 | equemene | ! ind_zmat(izm,4)=n3 |
1187 | 1 | equemene | Call add2indzmat(na,izm,iat,n1,n2,n3,ind_zmat,x,y,z) |
1188 | 1 | equemene | idx_zmat(iat)=izm |
1189 | 1 | equemene | if (I3.EQ.1) n3=ind_zmat(izm,1) |
1190 | 1 | equemene | DejaFait(Iat)=.TRUE. |
1191 | 1 | equemene | END IF |
1192 | 1 | equemene | If (.NOT.FCaf(Iat)) THEN |
1193 | 1 | equemene | CaFaire(IdxCaFaire)=iat |
1194 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
1195 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1196 | 1 | equemene | FCaf(Iat)=.TRUE. |
1197 | 1 | equemene | END IF |
1198 | 1 | equemene | ! <- PFL 29.Aug.2008 |
1199 | 1 | equemene | END DO |
1200 | 1 | equemene | IaFaire=IaFaire+1 |
1201 | 1 | equemene | END Do ! DO WHILE CaFaire |
1202 | 1 | equemene | END IF |
1203 | 1 | equemene | END IF |
1204 | 1 | equemene | if (debug) THEN |
1205 | 1 | equemene | WRITE(*,*) 'ind_zmat 3' |
1206 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
1207 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
1208 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2), ind_zmat(3,3) |
1209 | 1 | equemene | DO Ip=4,izm |
1210 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(Ip,1), ind_zmat(Ip,2), & |
1211 | 1 | equemene | ind_zmat(Ip,3), ind_zmat(Ip,4) |
1212 | 1 | equemene | END DO |
1213 | 1 | equemene | END IF |
1214 | 1 | equemene | |
1215 | 1 | equemene | END DO |
1216 | 1 | equemene | |
1217 | 1 | equemene | FrozFrag(IFrag,1)=-1 |
1218 | 1 | equemene | FrozFrag(IFrag,2)=-1 |
1219 | 1 | equemene | FrozFrag(IFrag,3)=-1 |
1220 | 1 | equemene | |
1221 | 1 | equemene | ! we start again with the rest of the molecule... |
1222 | 1 | equemene | ! v 1.01 We add the fragment in the order corresponding to FrozFrag |
1223 | 1 | equemene | KMax=0 |
1224 | 1 | equemene | DO I=1,NbFrag |
1225 | 1 | equemene | IF (FrozFrag(I,1).NE.0) KMax=KMax+1 |
1226 | 1 | equemene | END DO |
1227 | 1 | equemene | |
1228 | 1 | equemene | IF (DEBUG) WRITE(*,*) "Adding the",Kmax,"fragments with frozen atoms" |
1229 | 1 | equemene | DO K=1, KMax-1 |
1230 | 1 | equemene | IFrag=0 |
1231 | 1 | equemene | I0=0 |
1232 | 1 | equemene | I1=0 |
1233 | 1 | equemene | DO I=1,NbFrag |
1234 | 1 | equemene | SELECT CASE(FrozFrag(I,3)-I0) |
1235 | 1 | equemene | CASE (1:) |
1236 | 1 | equemene | IFrag=I |
1237 | 1 | equemene | I0=FrozFrag(I,3) |
1238 | 1 | equemene | I1=FrozFrag(I,2) |
1239 | 1 | equemene | CASE (0) |
1240 | 1 | equemene | if (FrozFrag(I,2).GT.I1) THEN |
1241 | 1 | equemene | IFrag=I |
1242 | 1 | equemene | I0=FrozFrag(I,3) |
1243 | 1 | equemene | I1=FrozFrag(I,2) |
1244 | 1 | equemene | END IF |
1245 | 1 | equemene | END SELECT |
1246 | 1 | equemene | END DO |
1247 | 1 | equemene | |
1248 | 1 | equemene | FrozFrag(IFrag,1)=-1 |
1249 | 1 | equemene | FrozFrag(IFrag,2)=-1 |
1250 | 1 | equemene | FrozFrag(IFrag,3)=-1 |
1251 | 1 | equemene | |
1252 | 1 | equemene | if (debug) WRITE(*,*) "Adding Fragment ",IFrag,K |
1253 | 1 | equemene | |
1254 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
1255 | 1 | equemene | Iat=FragAt(IFrag,I) |
1256 | 1 | equemene | IF (FrozAt(Iat).AND.(.NOT.DejaFait(Iat))) THEN |
1257 | 1 | equemene | ! in order to have the zmat as connected as possible, |
1258 | 1 | equemene | ! we look if this atom belongs to a frozblock |
1259 | 1 | equemene | IF (FrozBlock(Iat,0).EQ.1) THEN |
1260 | 1 | equemene | ! it is a lonely atom :-) |
1261 | 1 | equemene | if (debug) write(*,*) "DBG 4: Lonely atom",Iat |
1262 | 1 | equemene | d=1e9 |
1263 | 1 | equemene | DO J=1,izm |
1264 | 1 | equemene | Call vecteur(iat,ind_zmat(j,1),x,y,z,vx1,vy1,vz1,norm1) |
1265 | 1 | equemene | if (norm1.le.d) THEN |
1266 | 1 | equemene | Jat=j |
1267 | 1 | equemene | d=norm1 |
1268 | 1 | equemene | END IF |
1269 | 1 | equemene | END DO |
1270 | 1 | equemene | n2=ind_zmat(jat,1) |
1271 | 1 | equemene | SELECT CASE(jat) |
1272 | 1 | equemene | CASE (1) |
1273 | 1 | equemene | n3=ind_zmat(2,1) |
1274 | 1 | equemene | n4=ind_zmat(3,1) |
1275 | 1 | equemene | CASE (2) |
1276 | 1 | equemene | n3=ind_zmat(1,1) |
1277 | 1 | equemene | n4=ind_zmat(3,1) |
1278 | 1 | equemene | CASE DEFAULT |
1279 | 1 | equemene | n3=ind_zmat(jAt,2) |
1280 | 1 | equemene | n4=ind_zmat(jat,3) |
1281 | 1 | equemene | END SELECT |
1282 | 1 | equemene | izm=izm+1 |
1283 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1284 | 1 | equemene | ! ind_zmat(izm,2)=n2 |
1285 | 1 | equemene | ! ind_zmat(izm,3)=n3 |
1286 | 1 | equemene | ! ind_zmat(izm,4)=n4 |
1287 | 1 | equemene | Call add2indzmat(na,izm,iat,n2,n3,n4,ind_zmat,x,y,z) |
1288 | 1 | equemene | idx_zmat(iat)=izm |
1289 | 1 | equemene | DejaFait(iat)=.TRUE. |
1290 | 1 | equemene | ELSE |
1291 | 1 | equemene | ! we have a group of atoms |
1292 | 1 | equemene | ! We search for the atom of the group with the most links |
1293 | 1 | equemene | if (debug) write(*,*) "DBG 4b: ",Iat," belong to frozblock",FrozBlock(Iat,0) |
1294 | 1 | equemene | ITmp=-1 |
1295 | 1 | equemene | DO J=1,FrozBlock(Iat,0) |
1296 | 1 | equemene | Jat=FrozBlock(Iat,J) |
1297 | 1 | equemene | IF ((.NOT.DejaFait(Jat)).AND. & |
1298 | 1 | equemene | (LiaisonsBis(Jat,0).GT.ITMP)) THEN |
1299 | 1 | equemene | JL=Jat |
1300 | 1 | equemene | ITmp=LiaisonsBis(Jat,0) |
1301 | 1 | equemene | END IF |
1302 | 1 | equemene | END DO |
1303 | 1 | equemene | Iat=JL |
1304 | 1 | equemene | d=1e9 |
1305 | 1 | equemene | DO J=1,izm |
1306 | 1 | equemene | Call vecteur(iat,ind_zmat(j,1),x,y,z,vx1,vy1,vz1,norm1) |
1307 | 1 | equemene | if (norm1.le.d) THEN |
1308 | 1 | equemene | Jat=j |
1309 | 1 | equemene | d=norm1 |
1310 | 1 | equemene | END IF |
1311 | 1 | equemene | END DO |
1312 | 1 | equemene | n2=ind_zmat(jat,1) |
1313 | 1 | equemene | SELECT CASE(jat) |
1314 | 1 | equemene | CASE (1) |
1315 | 1 | equemene | n3=ind_zmat(2,1) |
1316 | 1 | equemene | n4=ind_zmat(3,1) |
1317 | 1 | equemene | CASE (2) |
1318 | 1 | equemene | n3=ind_zmat(1,1) |
1319 | 1 | equemene | n4=ind_zmat(3,1) |
1320 | 1 | equemene | CASE DEFAULT |
1321 | 1 | equemene | n3=ind_zmat(jAt,2) |
1322 | 1 | equemene | n4=ind_zmat(jat,3) |
1323 | 1 | equemene | END SELECT |
1324 | 1 | equemene | izm=izm+1 |
1325 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1326 | 1 | equemene | ! ind_zmat(izm,2)=n2 |
1327 | 1 | equemene | ! ind_zmat(izm,3)=n3 |
1328 | 1 | equemene | ! ind_zmat(izm,4)=n4 |
1329 | 1 | equemene | Call add2indzmat(na,izm,Iat,n2,n3,n4,ind_zmat,x,y,z) |
1330 | 1 | equemene | idx_zmat(iat)=izm |
1331 | 1 | equemene | DejaFait(iat)=.TRUE. |
1332 | 1 | equemene | IdxCaFaire=2 |
1333 | 1 | equemene | CaFaire(1)=iat |
1334 | 1 | equemene | CaFaire(2)=0 |
1335 | 1 | equemene | FCaf(Iat)=.TRUE. |
1336 | 1 | equemene | IaFaire=1 |
1337 | 1 | equemene | DO WHILE (CaFaire(IaFaire).NE.0) |
1338 | 1 | equemene | n1=CaFaire(IaFaire) |
1339 | 1 | equemene | n2=ind_zmat(idx_zmat(N1),2) |
1340 | 1 | equemene | if (idx_zmat(N1).EQ.2) THEN |
1341 | 1 | equemene | ! We have a (small) problem: we have to add atoms linked to the 2nd |
1342 | 1 | equemene | ! atom of the zmat. This is a pb because we do not know |
1343 | 1 | equemene | ! which atom to use to define the dihedral angle |
1344 | 1 | equemene | ! we take the third atom of the zmat |
1345 | 1 | equemene | n3=ind_zmat(3,1) |
1346 | 1 | equemene | ELSE |
1347 | 1 | equemene | n3=ind_zmat(idx_zmat(n1),3) |
1348 | 1 | equemene | END IF |
1349 | 1 | equemene | DO I3=1,LiaisonsBis(n1,0) |
1350 | 1 | equemene | IAt=LiaisonsBis(n1,I3) |
1351 | 1 | equemene | ! PFL 29.Aug.2008 -> |
1352 | 1 | equemene | ! We dissociate the test on 'DejaFait' that indicates that this atom |
1353 | 1 | equemene | ! has already been put in the Zmat |
1354 | 1 | equemene | ! from the test on FCaf that indicates that this atom has been put in the |
1355 | 1 | equemene | ! 'CAFaire' list that deals with identifying its connectivity. |
1356 | 1 | equemene | ! Those two test might differ for a frozen atom linked to non frozen atoms. |
1357 | 1 | equemene | IF (.NOT.DejaFait(Iat)) THEN |
1358 | 1 | equemene | izm=izm+1 |
1359 | 1 | equemene | Call add2indzmat(na,izm,Iat,n1,n2,n3,ind_zmat,x,y,z) |
1360 | 1 | equemene | idx_zmat(iat)=izm |
1361 | 1 | equemene | n3=iat |
1362 | 1 | equemene | DejaFait(Iat)=.TRUE. |
1363 | 1 | equemene | END IF |
1364 | 1 | equemene | IF (.NOT.FCaf(Iat)) THEN |
1365 | 1 | equemene | CaFaire(IdxCaFaire)=iat |
1366 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
1367 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1368 | 1 | equemene | FCaf(Iat)=.TRUE. |
1369 | 1 | equemene | END IF |
1370 | 1 | equemene | ! <- PFL 29.Aug.2008 |
1371 | 1 | equemene | END DO |
1372 | 1 | equemene | IaFaire=IaFaire+1 |
1373 | 1 | equemene | END Do ! DO WHILE CaFaire |
1374 | 1 | equemene | END IF |
1375 | 1 | equemene | END IF |
1376 | 1 | equemene | |
1377 | 1 | equemene | if (debug) THEN |
1378 | 1 | equemene | WRITE(*,*) 'ind_zmat 4' |
1379 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
1380 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
1381 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2), ind_zmat(3,3) |
1382 | 1 | equemene | DO Ip=4,izm |
1383 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(Ip,1), ind_zmat(Ip,2), & |
1384 | 1 | equemene | ind_zmat(Ip,3), ind_zmat(Ip,4) |
1385 | 1 | equemene | END DO |
1386 | 1 | equemene | END IF |
1387 | 1 | equemene | |
1388 | 1 | equemene | END DO ! loop on atoms of fragment IFrag |
1389 | 1 | equemene | END DO ! Loop on all fragments |
1390 | 1 | equemene | |
1391 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
1392 | 1 | equemene | ! |
1393 | 1 | equemene | ! General case |
1394 | 1 | equemene | ! |
1395 | 1 | equemene | ! 2 - we have all frozen atoms done... now comes the non frozen atoms |
1396 | 1 | equemene | ! and we should fragment the fragments ! |
1397 | 1 | equemene | ! |
1398 | 1 | equemene | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
1399 | 1 | equemene | |
1400 | 1 | equemene | ! First, we get rid of bonds between frozen atoms |
1401 | 1 | equemene | ! the trick is to do this on liaisons while keeping LiaisonsBis ok. |
1402 | 1 | equemene | |
1403 | 1 | equemene | if (debug) THEN |
1404 | 1 | equemene | WRITE(*,*) 'Frozen',NFroz |
1405 | 1 | equemene | WRITE(*,'(20(1X,I3))') (Frozen(I),I=1,NFroz) |
1406 | 1 | equemene | END IF |
1407 | 1 | equemene | |
1408 | 1 | equemene | DO I=1,na |
1409 | 1 | equemene | DO J=0,NMAxL |
1410 | 1 | equemene | LiaisonsIni(I,J)=LiaisonsBis(I,J) |
1411 | 1 | equemene | END DO |
1412 | 1 | equemene | ! PFL 29.Aug.2008 -> |
1413 | 1 | equemene | ! We re-initialize FCaf in order to add frozen atoms that are connected |
1414 | 1 | equemene | ! to non frozen atoms |
1415 | 1 | equemene | FCaf(I)=.FALSE. |
1416 | 1 | equemene | ! <- 29.Aug.2008 |
1417 | 1 | equemene | END DO |
1418 | 1 | equemene | |
1419 | 1 | equemene | DO I=1,Na |
1420 | 1 | equemene | IF (FrozAt(I)) THEN |
1421 | 1 | equemene | Iat=I |
1422 | 1 | equemene | if (debug) WRITE(*,'(20(1X,I3))') I,Iat, & |
1423 | 1 | equemene | (LiaisonsIni(Iat,Itmp),ITmp=0,LiaisonsIni(Iat,0)) |
1424 | 1 | equemene | DO J=1,LiaisonsIni(Iat,0) |
1425 | 1 | equemene | Jat=LiaisonsIni(Iat,J) |
1426 | 1 | equemene | Call Annul(Liaisons,Iat,Jat) |
1427 | 1 | equemene | Call Annul(Liaisons,Jat,Iat) |
1428 | 1 | equemene | Call Annul(LiaisonsIni,Jat,Iat) |
1429 | 1 | equemene | Liaisons(Iat,0)=Liaisons(Iat,0)-1 |
1430 | 1 | equemene | Liaisons(Jat,0)=Liaisons(Jat,0)-1 |
1431 | 1 | equemene | LiaisonsIni(Jat,0)=LiaisonsIni(Jat,0)-1 |
1432 | 1 | equemene | END DO |
1433 | 1 | equemene | END IF |
1434 | 1 | equemene | END DO |
1435 | 1 | equemene | |
1436 | 1 | equemene | if (debug) THEN |
1437 | 1 | equemene | WRITE(*,*) "Connections calculees" |
1438 | 1 | equemene | DO IL=1,na |
1439 | 1 | equemene | WRITE(IOOUT,1003) Il,(LIAISONS(IL,JL),JL=0,NMaxL) |
1440 | 1 | equemene | END DO |
1441 | 1 | equemene | END IF |
1442 | 1 | equemene | |
1443 | 1 | equemene | |
1444 | 1 | equemene | |
1445 | 1 | equemene | ! We re-decompose the system into fragments, but we omit on purpuse |
1446 | 1 | equemene | ! fragments consisting only of frozen atoms |
1447 | 1 | equemene | ! Now, frozblock will contain the frozen atom indices in a given fragment |
1448 | 1 | equemene | |
1449 | 1 | equemene | DO I=1,na |
1450 | 1 | equemene | Fragment(I)=0 |
1451 | 1 | equemene | NbAtFrag(I)=0 |
1452 | 1 | equemene | FrozBlock(I,0)=0 |
1453 | 1 | equemene | END DO |
1454 | 1 | equemene | IdxFrag=0 |
1455 | 1 | equemene | NbFrag=0 |
1456 | 1 | equemene | |
1457 | 1 | equemene | DO I=1,na |
1458 | 1 | equemene | IdxCAfaire=1 |
1459 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1460 | 1 | equemene | |
1461 | 1 | equemene | if (debug) WRITE(*,*) 'Treating atom I, fragment(I)',I,Fragment(I) |
1462 | 1 | equemene | IF (.NOT.FrozAt(I).OR.(Liaisons(I,0).NE.0)) THEN |
1463 | 1 | equemene | IF (Fragment(I).EQ.0) THEN |
1464 | 1 | equemene | IdxFrag=IdxFrag+1 |
1465 | 1 | equemene | NbFrag=NbFrag+1 |
1466 | 1 | equemene | IFrag=IdxFrag |
1467 | 1 | equemene | Fragment(I)=IFrag |
1468 | 1 | equemene | NbAtFrag(IFrag)=NbAtFrag(IFrag)+1 |
1469 | 1 | equemene | FragAt(IFrag,NbAtFrag(IFrag))=I |
1470 | 1 | equemene | ELSE ! fragment(I).EQ.0 |
1471 | 1 | equemene | IFrag=Fragment(I) |
1472 | 1 | equemene | END IF ! fragment(I).EQ.0 |
1473 | 1 | equemene | DO J=1,Liaisons(I,0) |
1474 | 1 | equemene | Iat=Liaisons(I,J) |
1475 | 1 | equemene | IF ((Fragment(Iat).NE.0).AND.(Fragment(Iat).NE.IFrag)) THEN |
1476 | 1 | equemene | WRITE(*,*) 'Error : Atoms ',I,' and ',Iat |
1477 | 1 | equemene | WRITE(*,*) 'are linked, but belongs to fragments ',IFrag,' and ',Fragment(Iat) |
1478 | 1 | equemene | STOP |
1479 | 1 | equemene | END IF |
1480 | 1 | equemene | IF (Fragment(Iat).EQ.0) THEN |
1481 | 1 | equemene | IF (.NOT.FCaf(IAt)) THEN |
1482 | 1 | equemene | CaFaire(IdxCaFaire)=Iat |
1483 | 1 | equemene | IdxCAfaire=IdxCAFaire+1 |
1484 | 1 | equemene | FCaf(IAt)=.TRUE. |
1485 | 1 | equemene | END IF |
1486 | 1 | equemene | Fragment(Iat)=IFrag |
1487 | 1 | equemene | NbAtFrag(IFrag)=NbAtFrag(IFrag)+1 |
1488 | 1 | equemene | FragAt(IFrag,NbAtFrag(IFrag))=Iat |
1489 | 1 | equemene | END IF |
1490 | 1 | equemene | END DO |
1491 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1492 | 1 | equemene | |
1493 | 1 | equemene | If (debug) WRITE(*,'(1X,A,1000I4)') 'Cafaire:',CaFaire(1:IdxCaFaire) |
1494 | 1 | equemene | If (debug) WRITE(*,*) 'IFrag=',IFrag |
1495 | 1 | equemene | |
1496 | 1 | equemene | IAfaire=1 |
1497 | 1 | equemene | DO WHILE (CaFaire(IAfaire).NE.0) |
1498 | 1 | equemene | Iat=CaFaire(IaFaire) |
1499 | 1 | equemene | IF (.NOT.FrozAt(Iat).OR.(Liaisons(Iat,0).NE.0)) THEN |
1500 | 1 | equemene | if (debug) WRITE(*,*) 'Cafaire treating ',Iat |
1501 | 1 | equemene | IF (Fragment(Iat).EQ.0) THEN |
1502 | 1 | equemene | WRITE(*,*) 'Error: Atom ',Iat,' does not belong to any fragment !' |
1503 | 1 | equemene | STOP |
1504 | 1 | equemene | END IF |
1505 | 1 | equemene | |
1506 | 1 | equemene | DO J=1,Liaisons(Iat,0) |
1507 | 1 | equemene | Jat=Liaisons(Iat,J) |
1508 | 1 | equemene | IF ((Fragment(Jat).NE.0).AND.(Fragment(Jat).NE.IFrag)) THEN |
1509 | 1 | equemene | WRITE(*,*) 'Error: Atoms ',Iat,' and ',Liaisons(Iat,J) |
1510 | 1 | equemene | WRITE(*,*) 'are linked, but belongs to fragments ',IFrag,' and ',Fragment(Liaisons(Iat,J)) |
1511 | 1 | equemene | STOP |
1512 | 1 | equemene | END IF |
1513 | 1 | equemene | IF (Fragment(Jat).EQ.0) THEN |
1514 | 1 | equemene | IF (.NOT.FCaf(Liaisons(Iat,J))) THEN |
1515 | 1 | equemene | CaFaire(IdxCaFaire)=Liaisons(Iat,J) |
1516 | 1 | equemene | IdxCAfaire=IdxCAFaire+1 |
1517 | 1 | equemene | FCaf(Liaisons(Iat,J))=.TRUE. |
1518 | 1 | equemene | END IF |
1519 | 1 | equemene | Fragment(Jat)=IFrag |
1520 | 1 | equemene | NbAtFrag(IFrag)=NbAtFrag(IFrag)+1 |
1521 | 1 | equemene | FragAt(IFrag,NbAtFrag(IFrag))=Jat |
1522 | 1 | equemene | END IF |
1523 | 1 | equemene | END DO |
1524 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1525 | 1 | equemene | If (debug) WRITE(*,*) 'IAfaire, IdxCaFaire,Cafaire :',IAfaire,IdxCafaire,' == ',CaFaire(IaFaire+1:IdxCaFaire) |
1526 | 1 | equemene | IAFaire=IAFaire+1 |
1527 | 1 | equemene | END IF |
1528 | 1 | equemene | END DO |
1529 | 1 | equemene | END IF |
1530 | 1 | equemene | END DO |
1531 | 1 | equemene | |
1532 | 1 | equemene | ! We compute FrozBlock now |
1533 | 1 | equemene | DO IFrag=1,NbFrag |
1534 | 1 | equemene | DO I=1,NbAtFrag(IFrag) |
1535 | 1 | equemene | Iat=FragAt(IFrag,I) |
1536 | 1 | equemene | IF (FrozAt(Iat)) THEN |
1537 | 1 | equemene | FrozBlock(IFrag,0)=FrozBlock(IFrag,0)+1 |
1538 | 1 | equemene | FrozBlock(IFrag,FrozBlock(IFrag,0))=IAt |
1539 | 1 | equemene | END IF |
1540 | 1 | equemene | END DO |
1541 | 1 | equemene | END DO |
1542 | 1 | equemene | |
1543 | 1 | equemene | |
1544 | 1 | equemene | if (debug) THEN |
1545 | 1 | equemene | WRITE(*,*) 'I found ',NbFrag, 'fragments with respectively ' |
1546 | 1 | equemene | WRITE(*,*) (NbAtFrag(I),I=1,NbFrag), 'atoms' |
1547 | 1 | equemene | WRITE(*,*) "Fragments atoms are now listed as F in the following" |
1548 | 1 | equemene | DO I=1,NbFrag |
1549 | 1 | equemene | WRITE(*,*) Na |
1550 | 1 | equemene | WRITE(*,*) 'Fragment ', i |
1551 | 1 | equemene | DO J=1,Na |
1552 | 1 | equemene | AtName=Nom(Atome(J)) |
1553 | 1 | equemene | IF (Fragment(J).EQ.I) AtName='F' |
1554 | 1 | equemene | WRITE(*,'(1X,A5,3(1X,F10.6))') AtName,X(J),Y(J),Z(J) |
1555 | 1 | equemene | END DO |
1556 | 1 | equemene | ! WRITE(*,*) "FragAt:",(FragAt(I,j),j=1,NbAtFrag(I)) |
1557 | 1 | equemene | END DO |
1558 | 1 | equemene | |
1559 | 1 | equemene | DO I=1,NbFrag |
1560 | 1 | equemene | WRITE(*,*) 'Fragment ', i |
1561 | 1 | equemene | WRITE(*,'(A,20(1X,I3))') "FragAt:",(FragAt(I,j),j=1,NbAtFrag(I)) |
1562 | 1 | equemene | WRITE(*,'(A,20(1X,I3))') "FrozBlock:",(FrozBlock(I,j),j=0,FrozBlock(I,0)) |
1563 | 1 | equemene | END DO |
1564 | 1 | equemene | END IF |
1565 | 1 | equemene | |
1566 | 1 | equemene | |
1567 | 1 | equemene | NFroz=0 |
1568 | 1 | equemene | DO IFrag=1,NbFrag |
1569 | 1 | equemene | If (FrozBlock(IFrag,0).NE.0) NFroz=NFroz+1 |
1570 | 1 | equemene | END DO |
1571 | 1 | equemene | |
1572 | 1 | equemene | IF (DEBUG) WRITE(*,'(1X,A,I4,A,I4,A)') "Found ",NFroz," fragmenst with frozen atoms, out of",NbFrag," fragments" |
1573 | 1 | equemene | |
1574 | 1 | equemene | ! We will now add the fragments containing non frozen atoms. |
1575 | 1 | equemene | ! I am not sure that there is a best strategy to add them... |
1576 | 1 | equemene | ! so we add them in the order they were created :-( |
1577 | 1 | equemene | ! First only block with frozen atoms are added |
1578 | 1 | equemene | izm0=-1 |
1579 | 1 | equemene | IFrag=1 |
1580 | 1 | equemene | FCaf=.FALSE. |
1581 | 1 | equemene | |
1582 | 1 | equemene | DO IFragFroz=1,NFroz |
1583 | 1 | equemene | DO WHILE (FrozBlock(IFrag,0).EQ.0) |
1584 | 1 | equemene | IFrag=IFrag+1 |
1585 | 1 | equemene | END DO |
1586 | 1 | equemene | ! each atom has at least one frozen atom that will serve as the seed |
1587 | 1 | equemene | ! of this fragment. |
1588 | 1 | equemene | if (debug) WRITE(*,*) 'Adding fragment :', ifrag,'with',FrozBlock(IFrag,0),' frozen atoms' |
1589 | 1 | equemene | IF (FrozBlock(IFrag,0).EQ.1) THEN |
1590 | 1 | equemene | ! There is only one frozen atom, easy case ... |
1591 | 1 | equemene | Iat=FrozBlock(IFrag,1) |
1592 | 1 | equemene | if (debug) WRITE(*,*) 'Only frozen atom of frag',iat |
1593 | 1 | equemene | DejaFait(iat)=.TRUE. |
1594 | 1 | equemene | IdxCaFaire=2 |
1595 | 1 | equemene | CaFaire(1)=iat |
1596 | 1 | equemene | CaFaire(2)=0 |
1597 | 1 | equemene | FCaf(Iat)=.TRUE. |
1598 | 1 | equemene | IaFaire=1 |
1599 | 1 | equemene | DO WHILE (CaFaire(IaFaire).NE.0) |
1600 | 1 | equemene | n1=CaFaire(IaFaire) |
1601 | 1 | equemene | SELECT CASE(idx_zmat(n1)) |
1602 | 1 | equemene | CASE (1) |
1603 | 1 | equemene | n2=ind_zmat(2,1) |
1604 | 1 | equemene | n3=ind_zmat(3,1) |
1605 | 1 | equemene | CASE (2) |
1606 | 1 | equemene | n2=ind_zmat(1,1) |
1607 | 1 | equemene | n3=ind_zmat(3,1) |
1608 | 1 | equemene | CASE (3:) |
1609 | 1 | equemene | n2=ind_zmat(idx_zmat(n1),2) |
1610 | 1 | equemene | n3=ind_zmat(idx_zmat(n1),3) |
1611 | 1 | equemene | END SELECT |
1612 | 1 | equemene | |
1613 | 1 | equemene | DO I3=1,Liaisons(n1,0) |
1614 | 1 | equemene | IAt=Liaisons(n1,I3) |
1615 | 1 | equemene | ! PFL 2007.Apr.16 -> |
1616 | 1 | equemene | ! We add ALL atoms linked to n1 to CaFaire |
1617 | 1 | equemene | ! But we delete their link to n1 |
1618 | 1 | equemene | IF (.NOT.FCaf(Iat)) THEN |
1619 | 1 | equemene | CaFaire(IdxCaFaire)=Iat |
1620 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
1621 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1622 | 1 | equemene | END IF |
1623 | 1 | equemene | Call Annul(Liaisons,Iat,n1) |
1624 | 1 | equemene | Liaisons(iat,0)=Liaisons(Iat,0)-1 |
1625 | 1 | equemene | ! <- PFL 2007.Apr.16 |
1626 | 1 | equemene | IF (.NOT.DejaFait(Iat)) THEN |
1627 | 1 | equemene | ! we add it to the Zmat |
1628 | 1 | equemene | izm=izm+1 |
1629 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1630 | 1 | equemene | ! ind_zmat(izm,2)=n1 |
1631 | 1 | equemene | ! ind_zmat(izm,3)=n2 |
1632 | 1 | equemene | ! ind_zmat(izm,4)=n3 |
1633 | 1 | equemene | Call add2indzmat(na,izm,Iat,n1,n2,n3,ind_zmat,x,y,z) |
1634 | 1 | equemene | idx_zmat(iat)=izm |
1635 | 1 | equemene | ! Call Annul(Liaisons,n1,iat) |
1636 | 1 | equemene | n3=iat |
1637 | 1 | equemene | DejaFait(Iat)=.TRUE. |
1638 | 1 | equemene | END IF |
1639 | 1 | equemene | END DO |
1640 | 1 | equemene | IaFaire=IaFaire+1 |
1641 | 1 | equemene | |
1642 | 1 | equemene | if (debug) THEN |
1643 | 1 | equemene | WRITE(*,*) 'ind_zmat 5' |
1644 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
1645 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
1646 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2), ind_zmat(3,3) |
1647 | 1 | equemene | DO Ip=4,izm |
1648 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(Ip,1), & |
1649 | 1 | equemene | ind_zmat(Ip,2),ind_zmat(Ip,3), ind_zmat(Ip,4) |
1650 | 1 | equemene | END DO |
1651 | 1 | equemene | END IF |
1652 | 1 | equemene | |
1653 | 1 | equemene | END Do ! DO WHILE CaFaire |
1654 | 1 | equemene | |
1655 | 1 | equemene | |
1656 | 1 | equemene | ELSE ! FrozBlock(I,0)==1 |
1657 | 1 | equemene | if (debug) WRITE(*,*) 'IFrag=',IFrag,'Frozblock(I,0)/=1',Frozblock(IFrag,0) |
1658 | 1 | equemene | ! We have many frozen atoms for one fragment. We will have to choose |
1659 | 1 | equemene | ! the first one, and then to decide when to swich... |
1660 | 1 | equemene | Iat=0 |
1661 | 1 | equemene | I0=-1 |
1662 | 1 | equemene | DO I=1,FrozBlock(IFrag,0) |
1663 | 1 | equemene | JAt=FrozBlock(IFrag,I) |
1664 | 1 | equemene | if (debug) WRITE(*,*) Jat, & |
1665 | 1 | equemene | (LiaisonsBis(Jat,Itmp),Itmp=0,LiaisonsBis(Jat,0)) |
1666 | 1 | equemene | IF (LiaisonsBis(Jat,0).GT.I0) THEN |
1667 | 1 | equemene | I0=LiaisonsBis(Jat,0) |
1668 | 1 | equemene | Iat=Jat |
1669 | 1 | equemene | END IF |
1670 | 1 | equemene | END DO |
1671 | 1 | equemene | ! Iat is the starting frozen atom |
1672 | 1 | equemene | IF (debug) WRITE(*,*) 'Choosing atom ',iat,'as a starting atom for frag',ifrag |
1673 | 1 | equemene | DejaFait(iat)=.TRUE. |
1674 | 1 | equemene | IdxCaFaire=2 |
1675 | 1 | equemene | CaFaire(1)=iat |
1676 | 1 | equemene | CaFaire(2)=0 |
1677 | 1 | equemene | IaFaire=1 |
1678 | 1 | equemene | FCaf(Iat)=.TRUE. |
1679 | 1 | equemene | DO WHILE (CaFaire(IaFaire).NE.0) |
1680 | 1 | equemene | n1=CaFaire(IaFaire) |
1681 | 1 | equemene | if (debug) WRITE(*,*) 'Iafaire,n1,dejafait,idx_zmat', & |
1682 | 1 | equemene | IaFaire,n1, DejaFait(n1),idx_zmat(n1) |
1683 | 1 | equemene | if (debug) WRITE(*,*) 'Cafaire', & |
1684 | 1 | equemene | (CaFaire(J),J=Iafaire,IdxCAfaire) |
1685 | 1 | equemene | SELECT CASE(idx_zmat(n1)) |
1686 | 1 | equemene | CASE (1) |
1687 | 1 | equemene | n2=ind_zmat(2,1) |
1688 | 1 | equemene | n3=ind_zmat(3,1) |
1689 | 1 | equemene | CASE (2) |
1690 | 1 | equemene | n2=ind_zmat(1,1) |
1691 | 1 | equemene | n3=ind_zmat(3,1) |
1692 | 1 | equemene | CASE (3:) |
1693 | 1 | equemene | n2=ind_zmat(idx_zmat(n1),2) |
1694 | 1 | equemene | n3=ind_zmat(idx_zmat(n1),3) |
1695 | 1 | equemene | END SELECT |
1696 | 1 | equemene | |
1697 | 1 | equemene | if (debug) WRITE(*,*) "DBG n1,Liaisons(n1,0)",n1,Liaisons(n1,0) |
1698 | 1 | equemene | DO I3=1,Liaisons(n1,0) |
1699 | 1 | equemene | IAt=Liaisons(n1,I3) |
1700 | 1 | equemene | if (debug) WRITE(*,*) "DBG I3,Iat",I3,Iat |
1701 | 1 | equemene | ! PFL 2007.Apr.16 -> |
1702 | 1 | equemene | ! We add ALL atoms linked to n1 to CaFaire |
1703 | 1 | equemene | ! But we delete their link to n1 |
1704 | 1 | equemene | !! PFL 2007.Aug.28 -> |
1705 | 1 | equemene | ! re-add the test on FCaf in order not to put the same atom more than once in |
1706 | 1 | equemene | ! CaFaire array. |
1707 | 1 | equemene | IF (.NOT.FCaf(Iat)) THEN |
1708 | 1 | equemene | CaFaire(IdxCaFaire)=Iat |
1709 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
1710 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1711 | 1 | equemene | FCaf(Iat)=.TRUE. |
1712 | 1 | equemene | if (debug) WRITE(*,*) 'Adding ',iat,' to CaFaire. I3=',I3,'IdxCafaire=',IdxCafaire |
1713 | 1 | equemene | if (debug) WRITE(*,*) 'Cafaire',(CaFaire(J),J=Iafaire,IdxCAfaire) |
1714 | 1 | equemene | |
1715 | 1 | equemene | END IF |
1716 | 1 | equemene | !! <-- PFL 2007.Aug.28 |
1717 | 1 | equemene | |
1718 | 1 | equemene | Call Annul(Liaisons,Iat,n1) |
1719 | 1 | equemene | Liaisons(iat,0)=Liaisons(Iat,0)-1 |
1720 | 1 | equemene | ! <- PFL 2007.Apr.16 |
1721 | 1 | equemene | IF (.NOT.DejaFait(Iat)) THEN |
1722 | 1 | equemene | izm=izm+1 |
1723 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1724 | 1 | equemene | ! ind_zmat(izm,2)=n1 |
1725 | 1 | equemene | ! ind_zmat(izm,3)=n2 |
1726 | 1 | equemene | ! ind_zmat(izm,4)=n3 |
1727 | 1 | equemene | Call add2indzmat(na,izm,Iat,n1,n2,n3,ind_zmat,x,y,z) |
1728 | 1 | equemene | idx_zmat(iat)=izm |
1729 | 1 | equemene | ! Call Annul(Liaisons,n1,iat) |
1730 | 1 | equemene | |
1731 | 1 | equemene | n3=iat |
1732 | 1 | equemene | DejaFait(Iat)=.TRUE. |
1733 | 1 | equemene | END IF |
1734 | 1 | equemene | END DO |
1735 | 1 | equemene | |
1736 | 1 | equemene | if (debug) WRITE(*,*) 'I3,n1,Liaisons(n1,:)', & |
1737 | 1 | equemene | I3,n1,(Liaisons(n1,J),J=0,Liaisons(n1,0)) |
1738 | 1 | equemene | |
1739 | 1 | equemene | |
1740 | 1 | equemene | if (debug.AND.(izm.GT.izm0)) THEN |
1741 | 1 | equemene | WRITE(*,*) 'ind_zmat 6, izm=',izm |
1742 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
1743 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
1744 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2), & |
1745 | 1 | equemene | ind_zmat(3,3) |
1746 | 1 | equemene | DO Ip=4,izm |
1747 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(Ip,1), & |
1748 | 1 | equemene | ind_zmat(Ip,2),ind_zmat(Ip,3), ind_zmat(Ip,4) |
1749 | 1 | equemene | END DO |
1750 | 1 | equemene | izm0=izm |
1751 | 1 | equemene | END IF |
1752 | 1 | equemene | |
1753 | 1 | equemene | IaFaire=IaFaire+1 |
1754 | 1 | equemene | |
1755 | 1 | equemene | |
1756 | 1 | equemene | END Do ! DO WHILE CaFaire |
1757 | 1 | equemene | |
1758 | 1 | equemene | END IF ! FrozBlock(I,0)==1 |
1759 | 1 | equemene | |
1760 | 1 | equemene | IFrag=IFrag+1 |
1761 | 1 | equemene | END DO ! Loop on all fragments |
1762 | 1 | equemene | |
1763 | 1 | equemene | |
1764 | 1 | equemene | DO IFrag=1,NbFrag |
1765 | 1 | equemene | IF (FrozBlock(IFrag,0).EQ.0) THEN |
1766 | 1 | equemene | if (debug) WRITE(*,*) 'Adding fragment :', ifrag,'with no frozen atoms' |
1767 | 1 | equemene | ! We have no frozen atoms for this fragment. We will have to choose |
1768 | 1 | equemene | ! the first atom to put. |
1769 | 1 | equemene | ! For now, we do not care of the 'central' atom (ie the one with |
1770 | 1 | equemene | ! no CP atoms...) |
1771 | 1 | equemene | ! We just take the atom that is the closest to the already placed |
1772 | 1 | equemene | ! atoms ! |
1773 | 1 | equemene | |
1774 | 1 | equemene | |
1775 | 1 | equemene | I0=0 |
1776 | 1 | equemene | I1=0 |
1777 | 1 | equemene | d=1e9 |
1778 | 1 | equemene | DO J=1,izm |
1779 | 1 | equemene | Jat=ind_zmat(J,1) |
1780 | 1 | equemene | DO I=1,NbAtfrag(IFrag) |
1781 | 1 | equemene | IAt=FragAt(IFrag,I) |
1782 | 1 | equemene | IF (.NOT.DejaFait(Iat)) THEN |
1783 | 1 | equemene | Call vecteur(Iat,Jat,x,y,z,vx1,vy1,vz1,norm1) |
1784 | 1 | equemene | IF (norm1.LT.d) THEN |
1785 | 1 | equemene | I1=Jat |
1786 | 1 | equemene | I0=Iat |
1787 | 1 | equemene | d=Norm1 |
1788 | 1 | equemene | END IF |
1789 | 1 | equemene | END IF |
1790 | 1 | equemene | END DO |
1791 | 1 | equemene | END DO |
1792 | 1 | equemene | |
1793 | 1 | equemene | Iat=I0 |
1794 | 1 | equemene | n1=I1 |
1795 | 1 | equemene | |
1796 | 1 | equemene | IF (debug) WRITE(*,*) Iat,' starting atom for frag',ifrag |
1797 | 1 | equemene | |
1798 | 1 | equemene | |
1799 | 1 | equemene | SELECT CASE(idx_zmat(n1)) |
1800 | 1 | equemene | CASE (1) |
1801 | 1 | equemene | n2=ind_zmat(2,1) |
1802 | 1 | equemene | n3=ind_zmat(3,1) |
1803 | 1 | equemene | CASE (2) |
1804 | 1 | equemene | n2=ind_zmat(1,1) |
1805 | 1 | equemene | n3=ind_zmat(3,1) |
1806 | 1 | equemene | CASE (3:) |
1807 | 1 | equemene | n2=ind_zmat(idx_zmat(n1),2) |
1808 | 1 | equemene | n3=ind_zmat(idx_zmat(n1),3) |
1809 | 1 | equemene | END SELECT |
1810 | 1 | equemene | |
1811 | 1 | equemene | izm=izm+1 |
1812 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1813 | 1 | equemene | ! ind_zmat(izm,2)=n1 |
1814 | 1 | equemene | ! ind_zmat(izm,3)=n2 |
1815 | 1 | equemene | ! ind_zmat(izm,4)=n3 |
1816 | 1 | equemene | Call add2indzmat(na,izm,Iat,n1,n2,n3,ind_zmat,x,y,z) |
1817 | 1 | equemene | idx_zmat(iat)=izm |
1818 | 1 | equemene | |
1819 | 1 | equemene | |
1820 | 1 | equemene | DejaFait(iat)=.TRUE. |
1821 | 1 | equemene | IdxCaFaire=2 |
1822 | 1 | equemene | CaFaire(1)=iat |
1823 | 1 | equemene | CaFaire(2)=0 |
1824 | 1 | equemene | IaFaire=1 |
1825 | 1 | equemene | FCaf(Iat)=.TRUE. |
1826 | 1 | equemene | DO WHILE (CaFaire(IaFaire).NE.0) |
1827 | 1 | equemene | n1=CaFaire(IaFaire) |
1828 | 1 | equemene | if (debug) WRITE(*,*) 'Iafaire,n1',IaFaire,n1, & |
1829 | 1 | equemene | DejaFait(n1),idx_zmat(n1) |
1830 | 1 | equemene | if (debug) WRITE(*,*) 'Cafaire', & |
1831 | 1 | equemene | (CaFaire(J),J=Iafaire,IdxCAfaire) |
1832 | 1 | equemene | SELECT CASE(idx_zmat(n1)) |
1833 | 1 | equemene | CASE (1) |
1834 | 1 | equemene | n2=ind_zmat(2,1) |
1835 | 1 | equemene | n3=ind_zmat(3,1) |
1836 | 1 | equemene | CASE (2) |
1837 | 1 | equemene | n2=ind_zmat(1,1) |
1838 | 1 | equemene | n3=ind_zmat(3,1) |
1839 | 1 | equemene | CASE (3:) |
1840 | 1 | equemene | n2=ind_zmat(idx_zmat(n1),2) |
1841 | 1 | equemene | n3=ind_zmat(idx_zmat(n1),3) |
1842 | 1 | equemene | END SELECT |
1843 | 1 | equemene | |
1844 | 1 | equemene | |
1845 | 1 | equemene | DO I3=1,Liaisons(n1,0) |
1846 | 1 | equemene | IAt=Liaisons(n1,I3) |
1847 | 1 | equemene | ! PFL 2007.Apr.16 -> |
1848 | 1 | equemene | ! We add ALL atoms linked to n1 to CaFaire |
1849 | 1 | equemene | ! But we delete their link to n1 |
1850 | 1 | equemene | !! PFL 2007.Aug.28 -> |
1851 | 1 | equemene | ! re-add the test on FCaf in order not to put the same atom more than once in |
1852 | 1 | equemene | ! CaFaire array. |
1853 | 1 | equemene | IF (.NOT.FCaf(Iat)) THEN |
1854 | 1 | equemene | CaFaire(IdxCaFaire)=Iat |
1855 | 1 | equemene | IdxCaFaire=IdxCaFaire+1 |
1856 | 1 | equemene | CaFaire(IdxCaFaire)=0 |
1857 | 1 | equemene | FCaf(Iat)=.TRUE. |
1858 | 1 | equemene | END IF |
1859 | 1 | equemene | !! <-- PFL 2007.Aug.28 |
1860 | 1 | equemene | |
1861 | 1 | equemene | Call Annul(Liaisons,Iat,n1) |
1862 | 1 | equemene | Liaisons(iat,0)=Liaisons(Iat,0)-1 |
1863 | 1 | equemene | if (debug) WRITE(*,*) 'Adding ',iat,' to CaFaire. I3=',I3 |
1864 | 1 | equemene | if (debug) WRITE(*,*) 'Cafaire',(CaFaire(J),J=Iafaire,IdxCAfaire) |
1865 | 1 | equemene | |
1866 | 1 | equemene | ! <- PFL 2007.Apr.16 |
1867 | 1 | equemene | IF (.NOT.DejaFait(Liaisons(n1,i3))) THEN |
1868 | 1 | equemene | IAt=Liaisons(n1,I3) |
1869 | 1 | equemene | izm=izm+1 |
1870 | 1 | equemene | ! ind_zmat(izm,1)=iat |
1871 | 1 | equemene | ! ind_zmat(izm,2)=n1 |
1872 | 1 | equemene | ! ind_zmat(izm,3)=n2 |
1873 | 1 | equemene | ! ind_zmat(izm,4)=n3 |
1874 | 1 | equemene | Call add2indzmat(na,izm,Iat,n1,n2,n3,ind_zmat,x,y,z) |
1875 | 1 | equemene | idx_zmat(iat)=izm |
1876 | 1 | equemene | |
1877 | 1 | equemene | n3=iat |
1878 | 1 | equemene | DejaFait(Iat)=.TRUE. |
1879 | 1 | equemene | END IF |
1880 | 1 | equemene | |
1881 | 1 | equemene | if (debug) WRITE(*,*) 'I3,n1,Liaisons(n1,:)', & |
1882 | 1 | equemene | I3,n1,(Liaisons(n1,J),J=0,Liaisons(n1,0)) |
1883 | 1 | equemene | END DO |
1884 | 1 | equemene | IaFaire=IaFaire+1 |
1885 | 1 | equemene | |
1886 | 1 | equemene | if (debug) THEN |
1887 | 1 | equemene | WRITE(*,*) 'ind_zmat 7', izm |
1888 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(1,1) |
1889 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(2,1), ind_zmat(2,2) |
1890 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(3,1), ind_zmat(3,2),ind_zmat(3,3) |
1891 | 1 | equemene | DO Ip=4,izm |
1892 | 1 | equemene | WRITE(*,'(1X,4(1X,I5))') ind_zmat(Ip,1), & |
1893 | 1 | equemene | ind_zmat(Ip,2), & |
1894 | 1 | equemene | ind_zmat(Ip,3), ind_zmat(Ip,4) |
1895 | 1 | equemene | END DO |
1896 | 1 | equemene | END IF |
1897 | 1 | equemene | |
1898 | 1 | equemene | END Do ! DO WHILE CaFaire |
1899 | 1 | equemene | END IF ! FrozBlock(IFrag,0).EQ.0 |
1900 | 1 | equemene | |
1901 | 1 | equemene | END DO ! Loop on all fragments without frozen atoms |
1902 | 1 | equemene | |
1903 | 1 | equemene | if (debug) THEN |
1904 | 1 | equemene | WRITE(*,*) Na+Izm |
1905 | 1 | equemene | WRITE(*,*) 'Done... ', izm |
1906 | 1 | equemene | DO J=1,Na |
1907 | 1 | equemene | WRITE(*,'(1X,A5,3(1X,F10.6))') Nom(Atome(J)),X(J),Y(J),Z(J) |
1908 | 1 | equemene | END DO |
1909 | 1 | equemene | DO I=1,Izm |
1910 | 1 | equemene | J=ind_zmat(I,1) |
1911 | 1 | equemene | WRITE(*,'(1X,A5,3(1X,F10.6))') 'X ',X(J),Y(J),Z(J) |
1912 | 1 | equemene | END DO |
1913 | 1 | equemene | IF (izm.NE.Na) THEN |
1914 | 1 | equemene | WRITE(*,*) "Atoms not done:" |
1915 | 1 | equemene | DO I=1,Na |
1916 | 1 | equemene | IF (.NOT.DejaFait(I)) WRITE(*,'(I5)',ADVANCE='NO') I |
1917 | 1 | equemene | END DO |
1918 | 1 | equemene | END IF |
1919 | 1 | equemene | END IF |
1920 | 1 | equemene | |
1921 | 1 | equemene | |
1922 | 1 | equemene | ! We have ind_zmat. We calculate val_zmat :-) |
1923 | 1 | equemene | if (debug) WRITE(*,*) "Calculating val_zmat" |
1924 | 1 | equemene | |
1925 | 1 | equemene | val_zmat(1,1)=0.d0 |
1926 | 1 | equemene | val_zmat(1,2)=0.d0 |
1927 | 1 | equemene | val_zmat(1,3)=0.d0 |
1928 | 1 | equemene | val_zmat(2,2)=0.d0 |
1929 | 1 | equemene | val_zmat(2,3)=0.d0 |
1930 | 1 | equemene | val_zmat(3,3)=0.d0 |
1931 | 1 | equemene | |
1932 | 1 | equemene | n1=ind_zmat(2,1) |
1933 | 1 | equemene | n2=ind_zmat(2,2) |
1934 | 1 | equemene | |
1935 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
1936 | 1 | equemene | |
1937 | 1 | equemene | val_zmat(2,1)=norm1 |
1938 | 1 | equemene | |
1939 | 1 | equemene | |
1940 | 1 | equemene | n1=ind_zmat(3,1) |
1941 | 1 | equemene | n2=ind_zmat(3,2) |
1942 | 1 | equemene | n3=ind_zmat(3,3) |
1943 | 1 | equemene | |
1944 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
1945 | 1 | equemene | |
1946 | 1 | equemene | val_zmat(3,1)=norm1 |
1947 | 1 | equemene | |
1948 | 1 | equemene | CALL vecteur(n2,n3,x,y,z,vx2,vy2,vz2,norm2) |
1949 | 1 | equemene | val=angle(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2) |
1950 | 1 | equemene | |
1951 | 1 | equemene | val_zmat(3,2)=val |
1952 | 1 | equemene | |
1953 | 1 | equemene | DO i=4,na |
1954 | 1 | equemene | |
1955 | 1 | equemene | n1=ind_zmat(i,1) |
1956 | 1 | equemene | n2=ind_zmat(i,2) |
1957 | 1 | equemene | n3=ind_zmat(i,3) |
1958 | 1 | equemene | n4=ind_zmat(i,4) |
1959 | 1 | equemene | |
1960 | 1 | equemene | if (debug) WRITE(*,*) "Doing i,n1,n2,n3,n4",i,n1,n2,n3,n4 |
1961 | 1 | equemene | CALL vecteur(n2,n1,x,y,z,vx1,vy1,vz1,norm1) |
1962 | 1 | equemene | |
1963 | 1 | equemene | CALL vecteur(n2,n3,x,y,z,vx2,vy2,vz2,norm2) |
1964 | 1 | equemene | val=angle(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2) |
1965 | 1 | equemene | |
1966 | 1 | equemene | CALL vecteur(n3,n4,x,y,z,vx3,vy3,vz3,norm3) |
1967 | 1 | equemene | CALL produit_vect(vx1,vy1,vz1,norm1,vx2,vy2,vz2,norm2, & |
1968 | 1 | equemene | vx4,vy4,vz4,norm4) |
1969 | 1 | equemene | CALL produit_vect(vx3,vy3,vz3,norm3,vx2,vy2,vz2,norm2, & |
1970 | 1 | equemene | vx5,vy5,vz5,norm5) |
1971 | 1 | equemene | |
1972 | 1 | equemene | val_d=angle_d(vx4,vy4,vz4,norm4, vx5,vy5,vz5,norm5, & |
1973 | 1 | equemene | vx2,vy2,vz2,norm2) |
1974 | 1 | equemene | |
1975 | 1 | equemene | ! write(*,11) n1,n2,norm1,n3,val,n4,val_d |
1976 | 1 | equemene | !11 format (2(1x,i3),1x,f8.4,2(1x,i3,1x,f8.3)) |
1977 | 1 | equemene | |
1978 | 1 | equemene | val_zmat(i,1)=norm1 |
1979 | 1 | equemene | val_zmat(i,2)=val |
1980 | 1 | equemene | val_zmat(i,3)=val_d |
1981 | 1 | equemene | |
1982 | 1 | equemene | END DO |
1983 | 1 | equemene | |
1984 | 1 | equemene | if (debug) THEN |
1985 | 1 | equemene | WRITE(*,*) 'DBG Cre_Zmat_Constr: ind_zmat' |
1986 | 1 | equemene | DO I=1,na |
1987 | 1 | equemene | WRITE(*,'(1X,5I5)') (ind_zmat(i,j),j=1,5) |
1988 | 1 | equemene | END DO |
1989 | 1 | equemene | |
1990 | 1 | equemene | WRITE(*,*) 'DBG Cre_Zmat_Constr: Full zmat' |
1991 | 1 | equemene | DO I=1,na |
1992 | 1 | equemene | WRITE(*,'(1X,I5,1X,I5,F8.4,2(1X,I5,1X,F7.2))') ind_zmat(i,1),(ind_zmat(i,j+1),val_zmat(i,j),j=1,3) |
1993 | 1 | equemene | END DO |
1994 | 1 | equemene | |
1995 | 1 | equemene | END IF |
1996 | 1 | equemene | |
1997 | 1 | equemene | if (debug) WRITE(*,*) "Deallocate (FrozDist,Fragment, NbAtFrag,FragAt)" |
1998 | 1 | equemene | DEALLOCATE(FrozDist,Fragment, NbAtFrag,FragAt) |
1999 | 1 | equemene | if (debug) WRITE(*,*) "Deallocate FrozFrag, IdxFragAt, FrozBlock" |
2000 | 1 | equemene | ! DEALLOCATE(FrozFrag, IdxFragAt, FrozBlock) |
2001 | 1 | equemene | DEALLOCATE(FrozFrag,FrozBlock) |
2002 | 1 | equemene | if (debug) WRITE(*,*) "Deallocate (DistFroz,Liaisons)" |
2003 | 1 | equemene | DEALLOCATE(DistFroz,Liaisons) |
2004 | 1 | equemene | if (debug) WRITE(*,*) "Deallocate (LiaisonsIni)" |
2005 | 1 | equemene | DEALLOCATE(LiaisonsIni) |
2006 | 1 | equemene | if (debug) WRITE(*,*) "Deallocate(CaFaire,DejaFait,FrozAt)" |
2007 | 1 | equemene | DEALLOCATE(CaFaire,DejaFait,FrozAt) |
2008 | 1 | equemene | if (debug) WRITE(*,*) "Deallocate (LiaisonsBis" |
2009 | 1 | equemene | DEALLOCATE(LiaisonsBis) |
2010 | 1 | equemene | |
2011 | 1 | equemene | |
2012 | 1 | equemene | if (debug) WRITE(*,*) "=============================== Exiting Calc_zmat_contr_frag ========================" |
2013 | 1 | equemene | |
2014 | 1 | equemene | END SUBROUTINE Calc_Zmat_const_frag |
2015 | 1 | equemene |