1 /* -*- mode: c; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4; c-file-style: "stroustrup"; -*-
4 * This source code is part of
8 * GROningen MAchine for Chemical Simulations
11 * Written by David van der Spoel, Erik Lindahl, Berk Hess, and others.
12 * Copyright (c) 1991-2000, University of Groningen, The Netherlands.
13 * Copyright (c) 2001-2004, The GROMACS development team,
14 * check out http://www.gromacs.org for more information.
16 * This program is free software; you can redistribute it and/or
17 * modify it under the terms of the GNU General Public License
18 * as published by the Free Software Foundation; either version 2
19 * of the License, or (at your option) any later version.
21 * If you want to redistribute modifications, please consider that
22 * scientific software is very special. Version control is crucial -
23 * bugs must be traceable. We will be happy to consider code for
24 * inclusion in the official distribution, but derived work must not
25 * be called official GROMACS. Details are found in the README & COPYING
26 * files - if they are missing, get the official version at www.gromacs.org.
28 * To help us fund GROMACS development, we humbly ask that you cite
29 * the papers on the package - you can find them in the top README file.
31 * For more info, check our website at http://www.gromacs.org
34 * Gromacs Runs On Most of All Computer Systems
59 typedef struct gmx_ga2la
{
65 int start_space_search
;
68 /* Clear all the entries in the ga2la list */
69 static void ga2la_clear(gmx_ga2la_t ga2la
)
75 for(i
=0; i
<ga2la
->nalloc
; i
++)
77 ga2la
->laa
[i
].cell
= -1;
82 for(i
=0; i
<ga2la
->nalloc
; i
++)
84 ga2la
->lal
[i
].ga
= -1;
85 ga2la
->lal
[i
].next
= -1;
87 ga2la
->start_space_search
= ga2la
->mod
;
91 static gmx_ga2la_t
ga2la_init(int nat_tot
,int nat_loc
)
97 /* There are two methods implemented for finding the local atom number
98 * belonging to a global atom number:
99 * 1) a simple, direct array
100 * 2) a list of linked lists indexed with the global number modulo mod.
101 * Memory requirements:
103 * 2) nat_loc*(2+1-2(1-e^-1/2))*4 ints
104 * where nat_loc is the number of atoms in the home + communicated zones.
105 * Method 1 is faster for low parallelization, 2 for high parallelization.
106 * We switch to method 2 when it uses less than half the memory method 1.
108 ga2la
->bAll
= (nat_tot
< 1024 || 9*nat_loc
>= nat_tot
);
111 ga2la
->nalloc
= nat_tot
;
112 snew(ga2la
->laa
,ga2la
->nalloc
);
116 /* Make the direct list twice as long as the number of local atoms.
117 * The fraction of entries in the list with:
118 * 0 size lists: e^-1/f
119 * >=1 size lists: 1 - e^-1/f
120 * where f is: the direct list length / #local atoms
121 * The fraction of atoms not in the direct list is: 1-f(1-e^-1/f).
123 ga2la
->mod
= 2*nat_loc
;
124 ga2la
->nalloc
= over_alloc_dd(ga2la
->mod
);
125 snew(ga2la
->lal
,ga2la
->nalloc
);
133 /* Set the ga2la entry for global atom a_gl to local atom a_loc and cell. */
134 static void ga2la_set(gmx_ga2la_t ga2la
,int a_gl
,int a_loc
,int cell
)
140 ga2la
->laa
[a_gl
].la
= a_loc
;
141 ga2la
->laa
[a_gl
].cell
= cell
;
146 ind
= a_gl
% ga2la
->mod
;
148 if (ga2la
->lal
[ind
].ga
>= 0)
150 /* Search the last entry in the linked list for this index */
152 while(ga2la
->lal
[ind_prev
].next
>= 0)
154 ind_prev
= ga2la
->lal
[ind_prev
].next
;
156 /* Search for space in the array */
157 ind
= ga2la
->start_space_search
;
158 while (ind
< ga2la
->nalloc
&& ga2la
->lal
[ind
].ga
>= 0)
162 /* If we are at the end of the list we need to increase the size */
163 if (ind
== ga2la
->nalloc
)
165 ga2la
->nalloc
= over_alloc_dd(ind
+1);
166 srenew(ga2la
->lal
,ga2la
->nalloc
);
167 for(i
=ind
; i
<ga2la
->nalloc
; i
++)
169 ga2la
->lal
[i
].ga
= -1;
170 ga2la
->lal
[i
].next
= -1;
173 ga2la
->lal
[ind_prev
].next
= ind
;
175 ga2la
->start_space_search
= ind
+ 1;
177 ga2la
->lal
[ind
].ga
= a_gl
;
178 ga2la
->lal
[ind
].la
= a_loc
;
179 ga2la
->lal
[ind
].cell
= cell
;
182 /* Delete the ga2la entry for global atom a_gl */
183 static void ga2la_del(gmx_ga2la_t ga2la
,int a_gl
)
189 ga2la
->laa
[a_gl
].cell
= -1;
195 ind
= a_gl
% ga2la
->mod
;
198 if (ga2la
->lal
[ind
].ga
== a_gl
)
202 ga2la
->lal
[ind_prev
].next
= ga2la
->lal
[ind
].next
;
204 /* This index is a linked entry, so we free an entry.
205 * Check if we are creating the first empty space.
207 if (ind
< ga2la
->start_space_search
)
209 ga2la
->start_space_search
= ind
;
212 ga2la
->lal
[ind
].ga
= -1;
213 ga2la
->lal
[ind
].cell
= -1;
214 ga2la
->lal
[ind
].next
= -1;
219 ind
= ga2la
->lal
[ind
].next
;
226 /* Change the local atom for present ga2la entry for global atom a_gl */
227 static void ga2la_change_la(gmx_ga2la_t ga2la
,int a_gl
,int a_loc
)
233 ga2la
->laa
[a_gl
].la
= a_loc
;
238 ind
= a_gl
% ga2la
->mod
;
241 if (ga2la
->lal
[ind
].ga
== a_gl
)
243 ga2la
->lal
[ind
].la
= a_loc
;
247 ind
= ga2la
->lal
[ind
].next
;
254 /* Returns if the global atom a_gl available locally.
255 * Sets the local atom and cell,
256 * cell can be larger than the number of zones,
257 * in which case it indicates that it is more than one cell away
258 * in zone cell - #zones.
260 static bool ga2la_get(const gmx_ga2la_t ga2la
,int a_gl
,int *a_loc
,int *cell
)
266 *a_loc
= ga2la
->laa
[a_gl
].la
;
267 *cell
= ga2la
->laa
[a_gl
].cell
;
269 return (ga2la
->laa
[a_gl
].cell
>= 0);
272 ind
= a_gl
% ga2la
->mod
;
275 if (ga2la
->lal
[ind
].ga
== a_gl
)
277 *a_loc
= ga2la
->lal
[ind
].la
;
278 *cell
= ga2la
->lal
[ind
].cell
;
282 ind
= ga2la
->lal
[ind
].next
;
289 /* Returns if the global atom a_gl is a home atom.
290 * Sets the local atom.
292 static bool ga2la_get_home(const gmx_ga2la_t ga2la
,int a_gl
,int *a_loc
)
298 *a_loc
= ga2la
->laa
[a_gl
].la
;
300 return (ga2la
->laa
[a_gl
].cell
== 0);
303 ind
= a_gl
% ga2la
->mod
;
306 if (ga2la
->lal
[ind
].ga
== a_gl
)
308 if (ga2la
->lal
[ind
].cell
== 0)
310 *a_loc
= ga2la
->lal
[ind
].la
;
319 ind
= ga2la
->lal
[ind
].next
;
326 /* Returns if the global atom a_gl is a home atom.
328 static bool ga2la_is_home(const gmx_ga2la_t ga2la
,int a_gl
)
334 return (ga2la
->laa
[a_gl
].cell
== 0);
337 ind
= a_gl
% ga2la
->mod
;
340 if (ga2la
->lal
[ind
].ga
== a_gl
)
342 return (ga2la
->lal
[ind
].cell
== 0);
344 ind
= ga2la
->lal
[ind
].next
;
355 #endif /* _gmx_ga2la_h */