211 lines
4.3 KiB
C
211 lines
4.3 KiB
C
/*************************************************************************
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* *
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* YAP Prolog *
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* Yap Prolog was developed at NCCUP - Universidade do Porto *
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* *
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* Copyright V.Santos Costa and Universidade do Porto 1985-- *
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* *
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**************************************************************************
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* *
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* File: blobs.c *
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* comments: support blobs in YAP definition *
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* *
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* Last rev: $Date: $,$Author: vsc $ *
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* *
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* *
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*************************************************************************/
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#include <Yap.h>
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#include <Yatom.h>
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#include <string.h>
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#include <SWI-Prolog.h>
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#include "swi.h"
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static PL_blob_t unregistered_blob_atom =
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{ PL_BLOB_MAGIC,
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PL_BLOB_NOCOPY|PL_BLOB_TEXT,
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"unregistered"
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};
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PL_EXPORT(int)
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PL_is_blob(term_t t, PL_blob_t **type)
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{
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CACHE_REGS
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Term yt = Yap_GetFromSlot(t PASS_REGS);
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Atom a;
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BlobPropEntry *b;
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if (IsVarTerm(yt))
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return FALSE;
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if (!IsAtomTerm(yt))
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return FALSE;
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a = AtomOfTerm(yt);
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if (!IsBlob(a))
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return FALSE;
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b = RepBlobProp(a->PropsOfAE);
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*type = b->blob_t;
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return TRUE;
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}
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/* void check_chain(void); */
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/* void check_chain(void) { */
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/* AtomEntry *ae, *old; */
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/* ae = SWI_Blobs; */
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/* old = NULL; */
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/* while (ae) { */
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/* old = ae; */
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/* ae = RepAtom(ae->NextOfAE); */
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/* } */
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/* } */
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static AtomEntry *
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lookupBlob(void *blob, size_t len, PL_blob_t *type)
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{
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BlobPropEntry *b;
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AtomEntry *ae;
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LOCK(SWI_Blobs_Lock);
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if (type->flags & PL_BLOB_UNIQUE) {
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/* just keep a linked chain for now */
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ae = SWI_Blobs;
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while (ae) {
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if (ae->PropsOfAE &&
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RepBlobProp(ae->PropsOfAE)->blob_t == type &&
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ae->rep.blob->length == len &&
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!memcmp(ae->rep.blob->data, blob, len)) {
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UNLOCK(SWI_Blobs_Lock);
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return ae;
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}
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ae = RepAtom(ae->NextOfAE);
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}
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}
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b = (BlobPropEntry *)Yap_AllocCodeSpace(sizeof(BlobPropEntry));
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if (!b) {
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UNLOCK(SWI_Blobs_Lock);
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return NULL;
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}
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b->NextOfPE = NIL;
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b->KindOfPE = BlobProperty;
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b->blob_t = type;
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ae = (AtomEntry *)Yap_AllocCodeSpace(sizeof(AtomEntry)+len+sizeof(size_t));
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if (!ae) {
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UNLOCK(SWI_Blobs_Lock);
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return NULL;
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}
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NOfBlobs++;
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INIT_RWLOCK(ae->ARWLock);
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ae->PropsOfAE = AbsBlobProp(b);
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ae->NextOfAE = AbsAtom(SWI_Blobs);
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ae->rep.blob->length = len;
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memcpy(ae->rep.blob->data, blob, len);
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SWI_Blobs = ae;
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UNLOCK(SWI_Blobs_Lock);
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if (NOfBlobs > NOfBlobsMax) {
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Yap_signal(YAP_CDOVF_SIGNAL);
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}
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return ae;
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}
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PL_EXPORT(int)
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PL_unify_blob(term_t t, void *blob, size_t len, PL_blob_t *type)
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{
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CACHE_REGS
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AtomEntry *ae;
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if (!blob)
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return FALSE;
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ae = lookupBlob(blob, len, type);
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if (!ae) {
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return FALSE;
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}
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if (type->acquire) {
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type->acquire(AtomToSWIAtom(AbsAtom(ae)));
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}
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return Yap_unify(Yap_GetFromSlot(t PASS_REGS), MkAtomTerm(AbsAtom(ae)));
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}
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PL_EXPORT(int)
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PL_put_blob(term_t t, void *blob, size_t len, PL_blob_t *type)
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{
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fprintf(stderr,"PL_put_blob not implemented yet\n");
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return FALSE;
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}
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PL_EXPORT(int)
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PL_get_blob(term_t t, void **blob, size_t *len, PL_blob_t **type)
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{
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fprintf(stderr,"PL_get_blob not implemented yet\n");
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return FALSE;
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}
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PL_EXPORT(void*)
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PL_blob_data(atom_t a, size_t *len, struct PL_blob_t **type)
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{
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Atom x = SWIAtomToAtom(a);
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if (!IsBlob(x)) {
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if (IsWideAtom(x)) {
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if ( len )
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*len = wcslen(x->WStrOfAE);
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if ( type )
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*type = &unregistered_blob_atom;
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return x->WStrOfAE;
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}
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if ( len )
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*len = strlen(x->StrOfAE);
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if ( type )
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*type = &unregistered_blob_atom;
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return x->StrOfAE;
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}
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if ( len )
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*len = x->rep.blob[0].length;
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if ( type )
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*type = RepBlobProp(x->PropsOfAE)->blob_t;
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return x->rep.blob[0].data;
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}
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PL_EXPORT(void)
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PL_register_blob_type(PL_blob_t *type)
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{
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type->next = SWI_BlobTypes;
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SWI_BlobTypes = type;
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}
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PL_EXPORT(PL_blob_t*)
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PL_find_blob_type(const char* name)
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{
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Atom at = Yap_LookupAtom((char *)name);
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return YAP_find_blob_type((YAP_Atom)at);
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}
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PL_EXPORT(PL_blob_t*)
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YAP_find_blob_type(YAP_Atom at)
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{
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AtomEntry *a = RepAtom((Atom)at);
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if (!IsBlob(a)) {
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return &unregistered_blob_atom;
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}
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return RepBlobProp(a->PropsOfAE)->blob_t;
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}
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PL_EXPORT(int)
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PL_unregister_blob_type(PL_blob_t *type)
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{
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fprintf(stderr,"PL_unregister_blob_type not implemented yet\n");
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return FALSE;
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}
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void
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Yap_install_blobs(void)
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{
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}
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