#include "xdr_compat.h"
#include <cstdlib>
#include <cstring>
#ifdef __cplusplus
extern "C" {
#endif
static char xdr_zero[BYTES_PER_XDR_UNIT] = {0, 0, 0, 0};
static xdr_uint32_t xdr_swapbytes(xdr_uint32_t x)
{
xdr_uint32_t y;
int i;
char *px=(char *)&x;
char *py=(char *)&y;
for(i=0;i<4;i++)
py[i]=px[3-i];
return y;
}
static xdr_uint32_t xdr_htonl(xdr_uint32_t x)
{
short s=0x0F00;
if (*((char *)&s)==(char)0x0F) {
return x;
} else {
return xdr_swapbytes(x);
}
}
static xdr_uint32_t xdr_ntohl(xdr_uint32_t x)
{
short s=0x0F00;
if (*((char *)&s)==(char)0x0F) {
return x;
} else {
return xdr_swapbytes(x);
}
}
void
xdr_free (xdrproc_t proc, char *objp)
{
XDR x;
x.x_op = XDR_FREE;
(*proc) (&x, objp);
}
bool_t
xdr_void (void)
{
return TRUE;
}
bool_t
xdr_int (XDR *xdrs, int *ip)
{
xdr_int32_t l;
switch (xdrs->x_op)
{
case XDR_ENCODE:
l = (xdr_int32_t) (*ip);
return xdr_putint32 (xdrs, &l);
case XDR_DECODE:
if (!xdr_getint32 (xdrs, &l))
{
return FALSE;
}
*ip = (int) l;
case XDR_FREE:
return TRUE;
}
return FALSE;
}
bool_t
xdr_u_int (XDR *xdrs, unsigned int *up)
{
xdr_uint32_t l;
switch (xdrs->x_op)
{
case XDR_ENCODE:
l = (xdr_uint32_t) (*up);
return xdr_putuint32 (xdrs, &l);
case XDR_DECODE:
if (!xdr_getuint32 (xdrs, &l))
{
return FALSE;
}
*up = (unsigned int) l;
case XDR_FREE:
return TRUE;
}
return FALSE;
}
bool_t
xdr_short (XDR *xdrs, short *sp)
{
xdr_int32_t l;
switch (xdrs->x_op)
{
case XDR_ENCODE:
l = (xdr_int32_t) *sp;
return xdr_putint32 (xdrs, &l);
case XDR_DECODE:
if (!xdr_getint32 (xdrs, &l))
{
return FALSE;
}
*sp = (short) l;
return TRUE;
case XDR_FREE:
return TRUE;
}
return FALSE;
}
bool_t
xdr_u_short (XDR *xdrs, unsigned short *usp)
{
xdr_uint32_t l;
switch (xdrs->x_op)
{
case XDR_ENCODE:
l = (xdr_uint32_t) *usp;
return xdr_putuint32 (xdrs, &l);
case XDR_DECODE:
if (!xdr_getuint32 (xdrs, &l))
{
return FALSE;
}
*usp = (unsigned short) l;
return TRUE;
case XDR_FREE:
return TRUE;
}
return FALSE;
}
bool_t
xdr_char (XDR *xdrs, char *cp)
{
int i;
i = (*cp);
if (!xdr_int (xdrs, &i))
{
return FALSE;
}
*cp = i;
return TRUE;
}
bool_t
xdr_u_char (XDR *xdrs, unsigned char *cp)
{
unsigned int u;
u = (*cp);
if (!xdr_u_int (xdrs, &u))
{
return FALSE;
}
*cp = u;
return TRUE;
}
bool_t
xdr_bool (XDR *xdrs, int *bp)
{
#define XDR_FALSE ((xdr_int32_t) 0)
#define XDR_TRUE ((xdr_int32_t) 1)
xdr_int32_t lb;
switch (xdrs->x_op)
{
case XDR_ENCODE:
lb = *bp ? XDR_TRUE : XDR_FALSE;
return xdr_putint32 (xdrs, &lb);
case XDR_DECODE:
if (!xdr_getint32 (xdrs, &lb))
{
return FALSE;
}
*bp = (lb == XDR_FALSE) ? FALSE : TRUE;
return TRUE;
case XDR_FREE:
return TRUE;
}
return FALSE;
#undef XDR_FALSE
#undef XDR_TRUE
}
bool_t
xdr_opaque (XDR *xdrs, char *cp, unsigned int cnt)
{
unsigned int rndup;
static char crud[BYTES_PER_XDR_UNIT];
if (cnt == 0)
return TRUE;
rndup = cnt % BYTES_PER_XDR_UNIT;
if (rndup > 0)
rndup = BYTES_PER_XDR_UNIT - rndup;
switch (xdrs->x_op)
{
case XDR_DECODE:
if (!xdr_getbytes (xdrs, cp, cnt))
{
return FALSE;
}
if (rndup == 0)
return TRUE;
return xdr_getbytes (xdrs, (char *)crud, rndup);
case XDR_ENCODE:
if (!xdr_putbytes (xdrs, cp, cnt))
{
return FALSE;
}
if (rndup == 0)
return TRUE;
return xdr_putbytes (xdrs, xdr_zero, rndup);
case XDR_FREE:
return TRUE;
}
return FALSE;
}
bool_t
xdr_string (XDR *xdrs, char **cpp, unsigned int maxsize)
{
char *sp = *cpp;
unsigned int size = 0;
unsigned int nodesize = 0;
switch (xdrs->x_op)
{
case XDR_FREE:
if (sp == NULL)
{
return TRUE;
}
case XDR_ENCODE:
if (sp == NULL)
return FALSE;
size = strlen (sp);
break;
case XDR_DECODE:
break;
}
if (!xdr_u_int (xdrs, &size))
{
return FALSE;
}
if (size > maxsize)
{
return FALSE;
}
nodesize = size + 1;
switch (xdrs->x_op)
{
case XDR_DECODE:
if (nodesize == 0)
{
return TRUE;
}
if (sp == NULL)
*cpp = sp = (char *) malloc (nodesize);
if (sp == NULL)
{
(void) fputs ("xdr_string: out of memory\n", stderr);
return FALSE;
}
sp[size] = 0;
case XDR_ENCODE:
return xdr_opaque (xdrs, sp, size);
case XDR_FREE:
free (sp);
*cpp = NULL;
return TRUE;
}
return FALSE;
}
bool_t
xdr_float(XDR *xdrs, float *fp)
{
xdr_int32_t tmp;
switch (xdrs->x_op) {
case XDR_ENCODE:
tmp = *(xdr_int32_t *)fp;
return (xdr_putint32(xdrs, &tmp));
break;
case XDR_DECODE:
if (xdr_getint32(xdrs, &tmp)) {
*(xdr_int32_t *)fp = tmp;
return (TRUE);
}
break;
case XDR_FREE:
return (TRUE);
}
return (FALSE);
}
bool_t
xdr_double(XDR *xdrs, double *dp)
{
static int LSW=-1;
int *ip;
xdr_int32_t tmp[2];
if(LSW<0) {
double x=0.987654321;
unsigned char ix = *((char *)&x);
if(ix==0xdd || ix==0x3f)
LSW=1;
else if(ix==0xb8 || ix==0x3c)
LSW=0;
else {
printf("Error when detecting floating-point word order.\n"
"Do you have a non-IEEE system?\n"
"If possible, use the XDR libraries provided with your system,\n"
"instead of the Gromacs fallback XDR source.\n");
exit(0);
}
}
switch (xdrs->x_op) {
case XDR_ENCODE:
ip = (int *)dp;
tmp[0] = ip[!LSW];
tmp[1] = ip[LSW];
return (xdr_putint32(xdrs, tmp) &&
xdr_putint32(xdrs, tmp+1));
break;
case XDR_DECODE:
ip = (int *)dp;
if (xdr_getint32(xdrs, tmp+!LSW) &&
xdr_getint32(xdrs, tmp+LSW)) {
ip[0] = tmp[0];
ip[1] = tmp[1];
return (TRUE);
}
break;
case XDR_FREE:
return (TRUE);
}
return (FALSE);
}
bool_t
xdr_vector (XDR *xdrs, char *basep, unsigned int nelem,
unsigned int elemsize, xdrproc_t xdr_elem)
{
#define LASTUNSIGNED ((unsigned int)0-1)
unsigned int i;
char *elptr;
elptr = basep;
for (i = 0; i < nelem; i++)
{
if (!(*xdr_elem) (xdrs, elptr, LASTUNSIGNED))
{
return FALSE;
}
elptr += elemsize;
}
return TRUE;
#undef LASTUNSIGNED
}
static bool_t xdrstdio_getbytes (XDR *, char *, unsigned int);
static bool_t xdrstdio_putbytes (XDR *, char *, unsigned int);
static unsigned int xdrstdio_getpos (XDR *);
static bool_t xdrstdio_setpos (XDR *, unsigned int);
static xdr_int32_t *xdrstdio_inline (XDR *, int);
static void xdrstdio_destroy (XDR *);
static bool_t xdrstdio_getint32 (XDR *, xdr_int32_t *);
static bool_t xdrstdio_putint32 (XDR *, xdr_int32_t *);
static bool_t xdrstdio_getuint32 (XDR *, xdr_uint32_t *);
static bool_t xdrstdio_putuint32 (XDR *, xdr_uint32_t *);
static const struct xdr_ops xdrstdio_ops =
{
xdrstdio_getbytes,
xdrstdio_putbytes,
xdrstdio_getpos,
xdrstdio_setpos,
xdrstdio_inline,
xdrstdio_destroy,
xdrstdio_getint32,
xdrstdio_putint32,
xdrstdio_getuint32,
xdrstdio_putuint32
};
void
xdrstdio_create (XDR *xdrs, FILE *file, enum xdr_op op)
{
xdrs->x_op = op;
xdrs->x_ops = (struct xdr_ops *) &xdrstdio_ops;
xdrs->x_private = (char *) file;
xdrs->x_handy = 0;
xdrs->x_base = 0;
}
static void
xdrstdio_destroy (XDR *xdrs)
{
(void) fflush ((FILE *) xdrs->x_private);
}
static bool_t
xdrstdio_getbytes (XDR *xdrs, char *addr, unsigned int len)
{
if ((len != 0) && (fread (addr, (int) len, 1,
(FILE *) xdrs->x_private) != 1))
return FALSE;
return TRUE;
}
static bool_t
xdrstdio_putbytes (XDR *xdrs, char *addr, unsigned int len)
{
if ((len != 0) && (fwrite (addr, (int) len, 1,
(FILE *) xdrs->x_private) != 1))
return FALSE;
return TRUE;
}
static unsigned int
xdrstdio_getpos (XDR *xdrs)
{
return (unsigned int) ftell ((FILE *) xdrs->x_private);
}
static bool_t
xdrstdio_setpos (XDR *xdrs, unsigned int pos)
{
return fseek ((FILE *) xdrs->x_private, (xdr_int32_t) pos, 0) < 0 ? FALSE : TRUE;
}
static xdr_int32_t *
xdrstdio_inline (XDR * , int )
{
return NULL;
}
static bool_t
xdrstdio_getint32 (XDR *xdrs, xdr_int32_t *ip)
{
xdr_int32_t mycopy;
if (fread ((char *) &mycopy, 4, 1, (FILE *) xdrs->x_private) != 1)
return FALSE;
*ip = xdr_ntohl (mycopy);
return TRUE;
}
static bool_t
xdrstdio_putint32 (XDR *xdrs, xdr_int32_t *ip)
{
xdr_int32_t mycopy = xdr_htonl (*ip);
ip = &mycopy;
if (fwrite ((char *) ip, 4, 1, (FILE *) xdrs->x_private) != 1)
return FALSE;
return TRUE;
}
static bool_t
xdrstdio_getuint32 (XDR *xdrs, xdr_uint32_t *ip)
{
xdr_uint32_t mycopy;
if (fread ((char *) &mycopy, 4, 1, (FILE *) xdrs->x_private) != 1)
return FALSE;
*ip = xdr_ntohl (mycopy);
return TRUE;
}
static bool_t
xdrstdio_putuint32 (XDR *xdrs, xdr_uint32_t *ip)
{
xdr_uint32_t mycopy = xdr_htonl (*ip);
ip = &mycopy;
if (fwrite ((char *) ip, 4, 1, (FILE *) xdrs->x_private) != 1)
return FALSE;
return TRUE;
}
#ifdef __cplusplus
}
#endif