dtor
Ec = 360 / M_PI * ECCEN * sin(dtor(Msol)); /* sec 42 #5 */
Ev = 1.2739 * sin(dtor(2*(l - LambdaSol) - Mm)); /* sec 61 #7 */
Ac = 0.1858 * sin(dtor(Msol)); /* sec 61 #8 */
A3 = 0.37 * sin(dtor(Msol));
Ec = 6.2886 * sin(dtor(Mmprime)); /* sec 61 #10 */
A4 = 0.214 * sin(dtor(2 * Mmprime)); /* sec 61 #11 */
V = 0.6583 * sin(dtor(2 * (lprime - LambdaSol))); /* sec 61 #13 */
return(50 * (1 - cos(dtor(D)))); /* sec 63 #3 */
static double dtor (double);
{ .name = "essiv", .ctor = essiv_ivgen_ctor, .dtor = essiv_ivgen_dtor,
{ .name = "plain", .ctor = NULL, .dtor = NULL, .gen_iv = plain_ivgen },
{ .name = "plain64", .ctor = NULL, .dtor = NULL, .gen_iv = plain64_ivgen },
if ((priv->ivgen) && (priv->ivgen->dtor != NULL)) {
priv->ivgen->dtor(priv, priv->ivgen_priv);
ivgen_dtor_t *dtor;
void (*dtor)(struct _COMMAND *, void *);
void (*dtor)(struct _COMMAND *, void *);
objcache_dtor_fn *dtor;
objcache_ctor_fn *ctor, objcache_dtor_fn *dtor, void *privdata,
oc->dtor = dtor ? dtor : null_dtor;
objcache_ctor_fn *ctor, objcache_dtor_fn *dtor,
ctor, dtor, privdata,
oc->dtor(obj, oc->privdata);
oc->dtor(obj, oc->privdata);
oc->dtor(obj, oc->privdata); /* MAY BLOCK */
if (srclass->dtor)
srclass->dtor(data, privdata);
objcache_ctor_fn *ctor, objcache_dtor_fn *dtor,
objcache_ctor_fn *ctor, objcache_dtor_fn *dtor,
objcache_dtor_fn *dtor; /* objcache dtor chaining */
const char *dtor;
ctx->dtor = argv[2];
} else if (!strcmp(ev->stmt.val->ctor.name, ctx->dtor)) {