1 | /*******************************************************************************
|
---|
2 | * *
|
---|
3 | * mcf_Stdhep_xdr.c -- XDR Utility routines for the Block Stdhep filters *
|
---|
4 | * *
|
---|
5 | * Copyright (c) 1994 Universities Research Association, Inc. *
|
---|
6 | * All rights reserved. *
|
---|
7 | * *
|
---|
8 | * This material resulted from work developed under a Government Contract and *
|
---|
9 | * is subject to the following license: The Government retains a paid-up, *
|
---|
10 | * nonexclusive, irrevocable worldwide license to reproduce, prepare derivative *
|
---|
11 | * works, perform publicly and display publicly by or for the Government, *
|
---|
12 | * including the right to distribute to other Government contractors. Neither *
|
---|
13 | * the United States nor the United States Department of Energy, nor any of *
|
---|
14 | * their employees, makes any warranty, express or implied, or assumes any *
|
---|
15 | * legal liability or responsibility for the accuracy, completeness, or *
|
---|
16 | * usefulness of any information, apparatus, product, or process disclosed, or *
|
---|
17 | * represents that its use would not infringe privately owned rights. *
|
---|
18 | * *
|
---|
19 | * *
|
---|
20 | * Written by Paul Lebrun, Lynn Garren *
|
---|
21 | * *
|
---|
22 | * *
|
---|
23 | *******************************************************************************/
|
---|
24 | #include <stdio.h>
|
---|
25 | #include <string.h>
|
---|
26 | #include <sys/param.h>
|
---|
27 | #include <rpc/types.h>
|
---|
28 | #include <sys/types.h>
|
---|
29 | #include <rpc/xdr.h>
|
---|
30 | #include <limits.h>
|
---|
31 | #ifdef SUNOS
|
---|
32 | #include <floatingpoint.h>
|
---|
33 | #else /* SUNOS */
|
---|
34 | #include <float.h>
|
---|
35 | #endif /* SUNOS */
|
---|
36 | #include <stdlib.h>
|
---|
37 | #include <time.h>
|
---|
38 | #include "mcfio_Dict.h"
|
---|
39 | #include "mcf_xdr.h"
|
---|
40 | #include "stdhep.h"
|
---|
41 | #include "stdtmp.h"
|
---|
42 | #include "stdver.h"
|
---|
43 | #ifndef FALSE
|
---|
44 | #define FALSE 0
|
---|
45 | #endif
|
---|
46 | #ifndef TRUE
|
---|
47 | #define TRUE 1
|
---|
48 | #endif
|
---|
49 |
|
---|
50 | extern struct stdver stdver_;
|
---|
51 | extern struct hepevt myhepevt;
|
---|
52 | extern struct hepev2 hepev2_;
|
---|
53 | extern struct hepev3 hepev3_;
|
---|
54 | extern struct stdtmp stdtmp_;
|
---|
55 |
|
---|
56 | bool_t xdr_stdhep_(XDR *xdrs, int *blockid,
|
---|
57 | int *ntot, char** version)
|
---|
58 |
|
---|
59 | {
|
---|
60 | /* Translate the HEPEVT temporary COMMON block from the STDHEP package to/from
|
---|
61 | an XDR stream. Note that we do not allocate memory, because we fill
|
---|
62 | directly the COMMON. Also, mcfio will allocate the space for the
|
---|
63 | string version. */
|
---|
64 |
|
---|
65 | unsigned int nn, nn2, nn4, nn5, nnw, nnw2, nnw4, nnw5;
|
---|
66 | int *idat;
|
---|
67 | double *dat;
|
---|
68 |
|
---|
69 | if ((xdrs->x_op == XDR_ENCODE) || (xdrs->x_op == XDR_MCFIOCODE)) {
|
---|
70 | if (*blockid != MCFIO_STDHEP) {
|
---|
71 | fprintf (stderr, "mcf_Stdhep_xdr: Inconsistent Blockid %d \n ",
|
---|
72 | (*blockid));
|
---|
73 | return FALSE;
|
---|
74 | }
|
---|
75 |
|
---|
76 | nn = (unsigned int) stdtmp_.nhept; /* Number of elements in isthep or idhep */
|
---|
77 | nn2 = 2*(unsigned int) stdtmp_.nhept; /* Number of elements in jmohep or jdahep */
|
---|
78 | nn4 = 4*(unsigned int) stdtmp_.nhept; /* Number of elements in vhep */
|
---|
79 | nn5 = 5*(unsigned int) stdtmp_.nhept; /* Number of elements in phep */
|
---|
80 | nnw = (unsigned int) stdtmp_.nhept;
|
---|
81 | nnw2 = 2 * nnw;
|
---|
82 | nnw4 = 4 * nnw;
|
---|
83 | nnw5 = 5 * nnw;
|
---|
84 |
|
---|
85 | /* Total length in bytes include blockid, ntot, version, nevhept and nhept as well
|
---|
86 | as the arrays remembering doubles are longer than ints. */
|
---|
87 | *ntot = 5*sizeof(int) + sizeof(int)*(2*nn + 2*nn2) + sizeof(double)*(nn4 + nn5);
|
---|
88 |
|
---|
89 | if (xdrs->x_op == XDR_MCFIOCODE) return TRUE;
|
---|
90 | strncpy(version[0],stdver_.stdhep_ver, 4);
|
---|
91 | }
|
---|
92 |
|
---|
93 | if ( (xdr_int(xdrs, blockid) &&
|
---|
94 | xdr_int(xdrs, ntot) &&
|
---|
95 | xdr_string(xdrs, version, MCF_XDR_VERSION_LENGTH) &&
|
---|
96 | xdr_int(xdrs, &(stdtmp_.nevhept)) &&
|
---|
97 | xdr_int(xdrs, &(stdtmp_.nhept))) == FALSE) return FALSE;
|
---|
98 |
|
---|
99 | if ((xdrs->x_op == XDR_DECODE) && ( *blockid != MCFIO_STDHEP) ) {
|
---|
100 | fprintf (stderr, "mcf_Stdhep_xdr: Inconsistent Blockid %d \n ",
|
---|
101 | (*blockid));
|
---|
102 | return FALSE;
|
---|
103 | }
|
---|
104 | idat = stdtmp_.isthept;
|
---|
105 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
106 | &nnw, NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
107 | idat = stdtmp_.idhept;
|
---|
108 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
109 | &nnw, NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
110 | idat = (int *) stdtmp_.jmohept;
|
---|
111 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
112 | &nnw2, 2*NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
113 | idat = (int *) stdtmp_.jdahept;
|
---|
114 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
115 | &nnw2, 2*NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
116 | dat = (double *) stdtmp_.phept;
|
---|
117 | if ( xdr_array(xdrs, (char **) &dat,
|
---|
118 | &nnw5, 5*NMXHEP, sizeof(double), (void *) xdr_double) == FALSE) return FALSE;
|
---|
119 | dat = (double *) stdtmp_.vhept;
|
---|
120 | if ( xdr_array(xdrs, (char **) &dat,
|
---|
121 | &nnw4, 4*NMXHEP, sizeof(double), (void *) xdr_double) == FALSE) return FALSE;
|
---|
122 | return TRUE;
|
---|
123 | }
|
---|
124 |
|
---|
125 | bool_t xdr_stdhep_multi_(XDR *xdrs, int *blockid,
|
---|
126 | int *ntot, char** version)
|
---|
127 |
|
---|
128 | {
|
---|
129 | /* Translate the HEPEVT COMMON block from the STDHEP package to/from
|
---|
130 | an XDR stream. Note that we do not allocate memory, because we fill
|
---|
131 | directly the COMMON. Also, mcfio will allocate the space for the
|
---|
132 | string version.
|
---|
133 | Also translate the HEPEV2 COMMON block from the STDHEP package to/from
|
---|
134 | an XDR stream. HEPEV2 contains multiple interaction information */
|
---|
135 |
|
---|
136 | unsigned int nn, nn2, nn4, nn5, nnw, nnw2, nnw4, nnw5, nmlt, nnmlt;
|
---|
137 | int i;
|
---|
138 | int *idat;
|
---|
139 | char *vers;
|
---|
140 | double *dat;
|
---|
141 |
|
---|
142 | if ((xdrs->x_op == XDR_ENCODE) || (xdrs->x_op == XDR_MCFIOCODE)) {
|
---|
143 | if (*blockid != MCFIO_STDHEPM) {
|
---|
144 | fprintf (stderr, "mcf_Stdhep_xdr: Inconsistent Blockid %d \n ",
|
---|
145 | (*blockid));
|
---|
146 | return FALSE;
|
---|
147 | }
|
---|
148 | nn = sizeof(int) * myhepevt.nhep;
|
---|
149 | nn2 = 2 * sizeof(int) * myhepevt.nhep;
|
---|
150 | nn4 = 4 * sizeof(double) * myhepevt.nhep;
|
---|
151 | nn5 = 5 * sizeof(double) * myhepevt.nhep;
|
---|
152 | nmlt = sizeof(int) * hepev2_.nmulti;
|
---|
153 | nnw = (unsigned int) myhepevt.nhep;
|
---|
154 | nnw2 = 2 * nnw;
|
---|
155 | nnw4 = 4 * nnw;
|
---|
156 | nnw5 = 5 * nnw;
|
---|
157 | nnmlt = (unsigned int) hepev2_.nmulti;
|
---|
158 | *ntot = 6 * sizeof(int) + 3 * nn + 2 * nn2 + nn4 + nn5 + 3 * nmlt;
|
---|
159 | if (xdrs->x_op == XDR_MCFIOCODE) return TRUE;
|
---|
160 | strncpy(version[0],stdver_.stdhep_ver, 4);
|
---|
161 | }
|
---|
162 |
|
---|
163 | if ( (xdr_int(xdrs, blockid) &&
|
---|
164 | xdr_int(xdrs, ntot) &&
|
---|
165 | xdr_string(xdrs, version, MCF_XDR_VERSION_LENGTH) &&
|
---|
166 | xdr_int(xdrs, &(myhepevt.nevhep)) &&
|
---|
167 | xdr_int(xdrs, &(myhepevt.nhep))) == FALSE) return FALSE;
|
---|
168 |
|
---|
169 | if ((xdrs->x_op == XDR_DECODE) && ( *blockid != MCFIO_STDHEPM) ) {
|
---|
170 | fprintf (stderr, "mcf_Stdhep_xdr: Inconsistent Blockid %d \n ",
|
---|
171 | (*blockid));
|
---|
172 | return FALSE;
|
---|
173 | }
|
---|
174 | idat = myhepevt.isthep;
|
---|
175 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
176 | &nnw, NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
177 | idat = myhepevt.idhep;
|
---|
178 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
179 | &nnw, NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
180 | idat = (int *) myhepevt.jmohep;
|
---|
181 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
182 | &nnw2, 2*NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
183 | idat = (int *) myhepevt.jdahep;
|
---|
184 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
185 | &nnw2, 2*NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
186 | dat = (double *) myhepevt.phep;
|
---|
187 | if ( xdr_array(xdrs, (char **) &dat,
|
---|
188 | &nnw5, 5*NMXHEP, sizeof(double), (void *) xdr_double) == FALSE) return FALSE;
|
---|
189 | dat = (double *) myhepevt.vhep;
|
---|
190 | if ( xdr_array(xdrs, (char **) &dat,
|
---|
191 | &nnw4, 4*NMXHEP, sizeof(double), (void *) xdr_double) == FALSE) return FALSE;
|
---|
192 | /*
|
---|
193 | ** V2.02 Upgrade : adding Multiple interactions.
|
---|
194 | */
|
---|
195 | vers = *version;
|
---|
196 | if ((strcmp(vers,"1.05") == 0) && (xdrs->x_op == XDR_DECODE)) {
|
---|
197 | hepev2_.nmulti = -1;
|
---|
198 | return TRUE;
|
---|
199 | }
|
---|
200 | if ( xdr_int(xdrs, &(hepev2_.nmulti)) == FALSE) return FALSE;
|
---|
201 | idat = hepev2_.jmulti;
|
---|
202 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
203 | &nnw, NMXHEP, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
204 | /*
|
---|
205 | ** V4.04 Upgrade : adding more Multiple interaction information
|
---|
206 | */
|
---|
207 | if (((strcmp(vers,"2.") > 0) || (strcmp(vers,"3.") > 0))
|
---|
208 | && (xdrs->x_op == XDR_DECODE)) {
|
---|
209 | for (i = 0; i <= NMXMLT; i++) {
|
---|
210 | hepev3_.nevmulti[i] = 0;
|
---|
211 | hepev3_.itrkmulti[i] = 0;
|
---|
212 | hepev3_.mltstr[i] = 0;
|
---|
213 | }
|
---|
214 | return TRUE;
|
---|
215 | }
|
---|
216 | if (((strcmp(vers,"4.00") == 0) || (strcmp(vers,"4.01") == 0) ||
|
---|
217 | (strcmp(vers,"4.02") == 0) || (strcmp(vers,"4.03") == 0) )
|
---|
218 | && (xdrs->x_op == XDR_DECODE)) {
|
---|
219 | for (i = 0; i <= NMXMLT; i++) {
|
---|
220 | hepev3_.nevmulti[i] = 0;
|
---|
221 | hepev3_.itrkmulti[i] = 0;
|
---|
222 | hepev3_.mltstr[i] = 0;
|
---|
223 | }
|
---|
224 | return TRUE;
|
---|
225 | }
|
---|
226 | idat = hepev3_.nevmulti;
|
---|
227 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
228 | &nnmlt, NMXMLT, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
229 | idat = hepev3_.itrkmulti;
|
---|
230 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
231 | &nnmlt, NMXMLT, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
232 | idat = hepev3_.mltstr;
|
---|
233 | if ( xdr_array(xdrs, (char **) &idat,
|
---|
234 | &nnmlt, NMXMLT, sizeof(int), (void *) xdr_int) == FALSE) return FALSE;
|
---|
235 | return TRUE;
|
---|
236 | }
|
---|
237 |
|
---|
238 |
|
---|