Added HANDLE to Explain request structure
[simpleserver-moved-to-github.git] / SimpleServer.xs
1 /*
2  * $Id: SimpleServer.xs,v 1.47 2006-06-05 18:01:25 quinn Exp $ 
3  * ----------------------------------------------------------------------
4  * 
5  * Copyright (c) 2000-2004, Index Data.
6  *
7  * Permission to use, copy, modify, distribute, and sell this software and
8  * its documentation, in whole or in part, for any purpose, is hereby granted,
9  * provided that:
10  *
11  * 1. This copyright and permission notice appear in all copies of the
12  * software and its documentation. Notices of copyright or attribution
13  * which appear at the beginning of any file must remain unchanged.
14  *
15  * 2. The name of Index Data or the individual authors may not be used to
16  * endorse or promote products derived from this software without specific
17  * prior written permission.
18  *
19  * THIS SOFTWARE IS PROVIDED "AS IS" AND WITHOUT WARRANTY OF ANY KIND,
20  * EXPRESS, IMPLIED, OR OTHERWISE, INCLUDING WITHOUT LIMITATION, ANY
21  * WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
22  * IN NO EVENT SHALL INDEX DATA BE LIABLE FOR ANY SPECIAL, INCIDENTAL,
23  * INDIRECT OR CONSEQUENTIAL DAMAGES OF ANY KIND, OR ANY DAMAGES
24  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER OR
25  * NOT ADVISED OF THE POSSIBILITY OF DAMAGE, AND ON ANY THEORY OF
26  * LIABILITY, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE
27  * OF THIS SOFTWARE.
28  */
29
30 #include "EXTERN.h"
31 #include "perl.h"
32 #include "proto.h"
33 #include "embed.h"
34 #include "XSUB.h"
35 #include <yaz/backend.h>
36 #include <yaz/log.h>
37 #include <yaz/wrbuf.h>
38 #include <stdio.h>
39 #ifdef WIN32
40 #else
41 #include <unistd.h>
42 #endif
43 #include <stdlib.h>
44 #include <ctype.h>
45 #define GRS_MAX_FIELDS 500 
46 #ifdef ASN_COMPILED
47 #include <yaz/ill.h>
48 #endif
49 #ifndef sv_undef                /* To fix the problem with Perl 5.6.0 */
50 #define sv_undef PL_sv_undef
51 #endif
52
53 NMEM_MUTEX simpleserver_mutex;
54
55 typedef struct {
56         SV *handle;
57
58         SV *init_ref;
59         SV *close_ref;
60         SV *sort_ref;
61         SV *search_ref;
62         SV *fetch_ref;
63         SV *present_ref;
64         SV *esrequest_ref;
65         SV *delete_ref;
66         SV *scan_ref;
67         SV *explain_ref;
68         NMEM nmem;
69         int stop_flag;  /* is used to stop server prematurely .. */
70 } Zfront_handle;
71
72 #define ENABLE_STOP_SERVER 0
73
74 SV *init_ref = NULL;
75 SV *close_ref = NULL;
76 SV *sort_ref = NULL;
77 SV *search_ref = NULL;
78 SV *fetch_ref = NULL;
79 SV *present_ref = NULL;
80 SV *esrequest_ref = NULL;
81 SV *delete_ref = NULL;
82 SV *scan_ref = NULL;
83 SV *explain_ref = NULL;
84 PerlInterpreter *root_perl_context;
85 int MAX_OID = 15;
86
87 #define GRS_BUF_SIZE 512
88
89 CV * simpleserver_sv2cv(SV *handler) {
90     STRLEN len;
91     char *buf;
92    
93     if (SvPOK(handler)) {
94         CV *ret;
95         buf = SvPV( handler, len);
96         if ( !( ret = perl_get_cv(buf, FALSE ) ) ) {
97             fprintf( stderr, "simpleserver_sv2cv: No such handler '%s'\n\n", buf );
98             exit(1);
99         }
100         
101         return ret;
102     } else {
103         return (CV *) handler;
104     }
105 }
106
107 /* debugging routine to check for destruction of Perl interpreters */
108 #ifdef USE_ITHREADS
109 void tst_clones(void)
110 {
111     int i; 
112     PerlInterpreter *parent = PERL_GET_CONTEXT;
113     for (i = 0; i<5000; i++)
114     {
115         PerlInterpreter *perl_interp;
116
117         PERL_SET_CONTEXT(parent);
118         PL_perl_destruct_level = 2;
119         perl_interp = perl_clone(parent, CLONEf_CLONE_HOST);
120         PL_perl_destruct_level = 2;
121         PERL_SET_CONTEXT(perl_interp);
122         perl_destruct(perl_interp);
123         perl_free(perl_interp);
124     }
125     exit (0);
126 }
127 #endif
128
129 int simpleserver_clone(void) {
130 #ifdef USE_ITHREADS
131      nmem_mutex_enter(simpleserver_mutex);
132      if (1)
133      {
134          PerlInterpreter *current = PERL_GET_CONTEXT;
135
136          /* if current is unset, then we're in a new thread with
137           * no Perl interpreter for it. So we must create one .
138           * This will only happen when threaded is used..
139           */
140          if (!current) {
141              PerlInterpreter *perl_interp;
142              PERL_SET_CONTEXT( root_perl_context );
143              perl_interp = perl_clone(root_perl_context, CLONEf_CLONE_HOST);
144              PERL_SET_CONTEXT( perl_interp );
145          }
146      }
147      nmem_mutex_leave(simpleserver_mutex);
148 #endif
149      return 0;
150 }
151
152
153 void simpleserver_free(void) {
154     nmem_mutex_enter(simpleserver_mutex);
155     if (1)
156     {
157         PerlInterpreter *current_interp = PERL_GET_CONTEXT;
158
159         /* If current Perl Interp is different from root interp, then
160          * we're in threaded mode and we must destroy.. 
161          */
162         if (current_interp != root_perl_context) {
163             PL_perl_destruct_level = 2;
164             PERL_SET_CONTEXT(current_interp);
165             perl_destruct(current_interp);
166             perl_free(current_interp);
167         }
168     }
169     nmem_mutex_leave(simpleserver_mutex);
170 }
171
172
173 Z_GenericRecord *read_grs1(char *str, ODR o)
174 {
175         int type, ivalue;
176         char line[GRS_BUF_SIZE+1], *buf, *ptr, *original;
177         char value[GRS_BUF_SIZE+1];
178         Z_GenericRecord *r = 0;
179
180         original = str;
181         r = (Z_GenericRecord *)odr_malloc(o, sizeof(*r));
182         r->elements = (Z_TaggedElement **) odr_malloc(o, sizeof(Z_TaggedElement*) * GRS_MAX_FIELDS);
183         r->num_elements = 0;
184         
185         for (;;)
186         {
187                 Z_TaggedElement *t;
188                 Z_ElementData *c;
189                 int len;
190         
191                 ptr = strchr(str, '\n');
192                 if (!ptr) {
193                         return r;
194                 }
195                 len = ptr - str;
196                 if (len > GRS_BUF_SIZE) {
197                     yaz_log(LOG_WARN, "GRS string too long - truncating (%d > %d)", len, GRS_BUF_SIZE);
198                     len = GRS_BUF_SIZE;
199                 }
200                 strncpy(line, str, len);
201                 line[len] = 0;
202                 buf = line;
203                 str = ptr + 1;
204                 while (*buf && isspace(*buf))
205                         buf++;
206                 if (*buf == '}') {
207                         memmove(original, str, strlen(str));
208                         return r;
209                 }
210                 if (sscanf(buf, "(%d,%[^)])", &type, value) != 2)
211                 {
212                         yaz_log(LOG_WARN, "Bad data in '%s'", buf);
213                         return r;
214                 }
215                 if (!type && *value == '0')
216                         return r;
217                 if (!(buf = strchr(buf, ')')))
218                         return r;
219                 buf++;
220                 while (*buf && isspace(*buf))
221                         buf++;
222                 if (r->num_elements >= GRS_MAX_FIELDS)
223                 {
224                         yaz_log(LOG_WARN, "Max number of GRS-1 elements exceeded [GRS_MAX_FIELDS=%d]", GRS_MAX_FIELDS);
225                         exit(0);
226                 }
227                 r->elements[r->num_elements] = t = (Z_TaggedElement *) odr_malloc(o, sizeof(Z_TaggedElement));
228                 t->tagType = (int *)odr_malloc(o, sizeof(int));
229                 *t->tagType = type;
230                 t->tagValue = (Z_StringOrNumeric *)
231                         odr_malloc(o, sizeof(Z_StringOrNumeric));
232                 if ((ivalue = atoi(value)))
233                 {
234                         t->tagValue->which = Z_StringOrNumeric_numeric;
235                         t->tagValue->u.numeric = (int *)odr_malloc(o, sizeof(int));
236                         *t->tagValue->u.numeric = ivalue;
237                 }
238                 else
239                 {
240                         t->tagValue->which = Z_StringOrNumeric_string;
241                         t->tagValue->u.string = (char *)odr_malloc(o, strlen(value)+1);
242                         strcpy(t->tagValue->u.string, value);
243                 }
244                 t->tagOccurrence = 0;
245                 t->metaData = 0;
246                 t->appliedVariant = 0;
247                 t->content = c = (Z_ElementData *)odr_malloc(o, sizeof(Z_ElementData));
248                 if (*buf == '{')
249                 {
250                         c->which = Z_ElementData_subtree;
251                         c->u.subtree = read_grs1(str, o);
252                 }
253                 else
254                 {
255                         c->which = Z_ElementData_string;
256                         c->u.string = odr_strdup(o, buf);
257                 }
258                 r->num_elements++;
259         }
260 }
261
262
263
264
265 static void oid2str(Odr_oid *o, WRBUF buf)
266 {
267     for (; *o >= 0; o++) {
268         char ibuf[16];
269         sprintf(ibuf, "%d", *o);
270         wrbuf_puts(buf, ibuf);
271         if (o[1] > 0)
272             wrbuf_putc(buf, '.');
273     }
274 }
275
276
277 WRBUF zquery2pquery(Z_Query *q)
278 {
279     WRBUF buf = wrbuf_alloc();
280
281     if (q->which != Z_Query_type_1 && q->which != Z_Query_type_101) 
282         return 0;
283     yaz_rpnquery_to_wrbuf(buf, q->u.type_1);
284     return buf;
285 }
286
287
288 /* Lifted verbatim from Net::Z3950 yazwrap/util.c */
289 #include <stdarg.h>
290 void fatal(char *fmt, ...)
291 {
292     va_list ap;
293
294     fprintf(stderr, "FATAL (SimpleServer): ");
295     va_start(ap, fmt);
296     vfprintf(stderr, fmt, ap);
297     va_end(ap);
298     fprintf(stderr, "\n");
299     abort();
300 }
301
302
303 /* Lifted verbatim from Net::Z3950 yazwrap/receive.c */
304 /*
305  * Creates a new Perl object of type `class'; the newly-created scalar
306  * that is a reference to the blessed thingy `referent' is returned.
307  */
308 static SV *newObject(char *class, SV *referent)
309 {
310     HV *stash;
311     SV *sv;
312
313     sv = newRV_noinc((SV*) referent);
314     stash = gv_stashpv(class, 0);
315     if (stash == 0)
316         fatal("attempt to create object of undefined class '%s'", class);
317     /*assert(stash != 0);*/
318     sv_bless(sv, stash);
319     return sv;
320 }
321
322
323 /* Lifted verbatim from Net::Z3950 yazwrap/receive.c */
324 static void setMember(HV *hv, char *name, SV *val)
325 {
326     /* We don't increment `val's reference count -- I think this is
327      * right because it's created with a refcount of 1, and in fact
328      * the reference via this hash is the only reference to it in
329      * general.
330      */
331     if (!hv_store(hv, name, (U32) strlen(name), val, (U32) 0))
332         fatal("couldn't store member in hash");
333 }
334
335
336 /* Lifted verbatim from Net::Z3950 yazwrap/receive.c */
337 static SV *translateOID(Odr_oid *x)
338 {
339     /* Yaz represents an OID by an int array terminated by a negative
340      * value, typically -1; we represent it as a reference to a
341      * blessed scalar string of "."-separated elements.
342      */
343     char buf[1000];
344     int i;
345
346     *buf = '\0';
347     for (i = 0; x[i] >= 0; i++) {
348         sprintf(buf + strlen(buf), "%d", (int) x[i]);
349         if (x[i+1] >- 0)
350             strcat(buf, ".");
351     }
352
353     /*
354      * ### We'd like to return a blessed scalar (string) here, but of
355      *  course you can't do that in Perl: only references can be
356      *  blessed, so we'd have to return a _reference_ to a string, and
357      *  bless _that_.  Better to do without the blessing, I think.
358      */
359     if (1) {
360         return newSVpv(buf, 0);
361     } else {
362         return newObject("Net::Z3950::APDU::OID", newSVpv(buf, 0));
363     }
364 }
365
366
367 static SV *rpn2perl(Z_RPNStructure *s)
368 {
369     SV *sv;
370     HV *hv;
371     AV *av;
372
373     switch (s->which) {
374     case Z_RPNStructure_simple: {
375         Z_Operand *o = s->u.simple;
376         Z_AttributesPlusTerm *at;
377         if (o->which == Z_Operand_resultSetId) {
378             SV *sv2;
379             /* This code causes a SIGBUS on my machine, and I have no
380                idea why.  It seems as clear as day to me */
381             char *rsid = (char*) o->u.resultSetId;
382             printf("Encoding resultSetId '%s'\n", rsid);
383             sv = newObject("Net::Z3950::RPN::RSID", (SV*) (hv = newHV()));
384             printf("Made sv=0x%lx, hv=0x%lx\n",
385                    (unsigned long) sv ,(unsigned long) hv);
386             sv2 = newSVpv(rsid, strlen(rsid));
387             setMember(hv, "id", sv2);
388             printf("Set hv{id} to 0x%lx\n", (unsigned long) sv2);
389             return sv;
390         }
391         if (o->which != Z_Operand_APT)
392             fatal("can't handle RPN simples other than APT and RSID");
393         at = o->u.attributesPlusTerm;
394         if (at->term->which != Z_Term_general)
395             fatal("can't handle RPN terms other than general");
396
397         sv = newObject("Net::Z3950::RPN::Term", (SV*) (hv = newHV()));
398         if (at->attributes) {
399             int i;
400             SV *attrs = newObject("Net::Z3950::RPN::Attributes",
401                                   (SV*) (av = newAV()));
402             for (i = 0; i < at->attributes->num_attributes; i++) {
403                 Z_AttributeElement *elem = at->attributes->attributes[i];
404                 HV *hv2;
405                 SV *tmp = newObject("Net::Z3950::RPN::Attribute",
406                                     (SV*) (hv2 = newHV()));
407                 if (elem->attributeSet)
408                     setMember(hv2, "attributeSet",
409                               translateOID(elem->attributeSet));
410                 setMember(hv2, "attributeType",
411                           newSViv(*elem->attributeType));
412                 assert(elem->which == Z_AttributeValue_numeric);
413                 setMember(hv2, "attributeValue",
414                           newSViv(*elem->value.numeric));
415                 av_push(av, tmp);
416             }
417             setMember(hv, "attributes", attrs);
418         }
419         setMember(hv, "term", newSVpv((char*) at->term->u.general->buf,
420                                       at->term->u.general->len));
421         return sv;
422     }
423     case Z_RPNStructure_complex: {
424         SV *tmp;
425         Z_Complex *c = s->u.complex;
426         char *type = 0;         /* vacuous assignment satisfies gcc -Wall */
427         switch (c->roperator->which) {
428         case Z_Operator_and:     type = "Net::Z3950::RPN::And"; break;
429         case Z_Operator_or:      type = "Net::Z3950::RPN::Or"; break;
430         case Z_Operator_and_not: type = "Net::Z3950::RPN::AndNot"; break;
431         case Z_Operator_prox:    fatal("proximity not yet supported");
432         default: fatal("unknown RPN operator %d", (int) c->roperator->which);
433         }
434         sv = newObject(type, (SV*) (av = newAV()));
435         if ((tmp = rpn2perl(c->s1)) == 0)
436             return 0;
437         av_push(av, tmp);
438         if ((tmp = rpn2perl(c->s2)) == 0)
439             return 0;
440         av_push(av, tmp);
441         return sv;
442     }
443     default: fatal("unknown RPN node type %d", (int) s->which);
444     }
445
446     return 0;
447 }
448
449
450 /* Decode the Z_SortAttributes struct and store the whole thing into the
451  * hash by reference
452  */
453 int simpleserver_ExpandSortAttributes (HV *sort_spec, Z_SortAttributes *sattr)
454 {
455     WRBUF attrset_wr = wrbuf_alloc();
456     AV *list = newAV();
457     Z_AttributeList *attr_list = sattr->list;
458     int i;
459
460     oid2str(sattr->id, attrset_wr);
461     hv_store(sort_spec, "ATTRSET", 7,
462              newSVpv(attrset_wr->buf, attrset_wr->pos), 0);
463     wrbuf_free(attrset_wr, 1);
464
465     hv_store(sort_spec, "SORT_ATTR", 9, newRV( sv_2mortal( (SV*) list ) ), 0);
466
467     for (i = 0; i < attr_list->num_attributes; i++) 
468     {
469         Z_AttributeElement *attr = *attr_list->attributes++; 
470         HV *attr_spec = newHV();
471                 
472         av_push(list, newRV( sv_2mortal( (SV*) attr_spec ) ));
473         hv_store(attr_spec, "ATTR_TYPE", 9, newSViv(*attr->attributeType), 0);
474
475         if (attr->which == Z_AttributeValue_numeric)
476         {
477             hv_store(attr_spec, "ATTR_VALUE", 10,
478                      newSViv(*attr->value.numeric), 0);
479         } else {
480             return 0;
481         }
482     }
483
484     return 1;
485 }
486
487
488 /* Decode the Z_SortKeySpec struct and store the whole thing in a perl hash */
489 int simpleserver_SortKeySpecToHash (HV *sort_spec, Z_SortKeySpec *spec)
490 {
491     Z_SortElement *element = spec->sortElement;
492
493     hv_store(sort_spec, "RELATION", 8, newSViv(*spec->sortRelation), 0);
494     hv_store(sort_spec, "CASE", 4, newSViv(*spec->caseSensitivity), 0);
495     hv_store(sort_spec, "MISSING", 7, newSViv(spec->which), 0);
496
497     if (element->which == Z_SortElement_generic)
498     {
499         Z_SortKey *key = element->u.generic;
500
501         if (key->which == Z_SortKey_sortField)
502         {
503             hv_store(sort_spec, "SORTFIELD", 9,
504                      newSVpv((char *) key->u.sortField, 0), 0);
505         }
506         else if (key->which == Z_SortKey_elementSpec)
507         {
508             Z_Specification *zspec = key->u.elementSpec;
509             
510             hv_store(sort_spec, "ELEMENTSPEC_TYPE", 16,
511                      newSViv(zspec->which), 0);
512
513             if (zspec->which == Z_Schema_oid)
514             {
515                 WRBUF elementSpec = wrbuf_alloc();
516
517                 oid2str(zspec->schema.oid, elementSpec);
518                 hv_store(sort_spec, "ELEMENTSPEC_VALUE", 17,
519                          newSVpv(elementSpec->buf, elementSpec->pos), 0);
520                 wrbuf_free(elementSpec, 1);
521             }
522             else if (zspec->which == Z_Schema_uri)
523             {
524                 hv_store(sort_spec, "ELEMENTSPEC_VALUE", 17,
525                          newSVpv((char *) zspec->schema.uri, 0), 0);
526             }
527         }
528         else if (key->which == Z_SortKey_sortAttributes)
529         {
530             return simpleserver_ExpandSortAttributes(sort_spec,
531                                                      key->u.sortAttributes);
532         }
533         else
534         {
535             return 0;
536         }
537     }
538     else
539     {
540         return 0;
541     }
542
543     return 1;
544 }
545
546
547 static SV *zquery2perl(Z_Query *q)
548 {
549     SV *sv;
550     HV *hv;
551
552     if (q->which != Z_Query_type_1 && q->which != Z_Query_type_101) 
553         return 0;
554     sv = newObject("Net::Z3950::APDU::Query", (SV*) (hv = newHV()));
555     if (q->u.type_1->attributeSetId)
556         setMember(hv, "attributeSet",
557                   translateOID(q->u.type_1->attributeSetId));
558     setMember(hv, "query", rpn2perl(q->u.type_1->RPNStructure));
559     return sv;
560 }
561
562
563 int bend_sort(void *handle, bend_sort_rr *rr)
564 {
565         HV *href;
566         AV *aref;
567         AV *sort_seq;
568         SV **temp;
569         SV *err_code;
570         SV *err_str;
571         SV *status;
572         SV *point;
573         STRLEN len;
574         char *ptr;
575         char *ODR_err_str;
576         char **input_setnames;
577         Zfront_handle *zhandle = (Zfront_handle *)handle;
578         Z_SortKeySpecList *sort_spec = rr->sort_sequence;
579         int i;
580         
581         dSP;
582         ENTER;
583         SAVETMPS;
584         
585         aref = newAV();
586         input_setnames = rr->input_setnames;
587         for (i = 0; i < rr->num_input_setnames; i++)
588         {
589             av_push(aref, newSVpv(*input_setnames++, 0));
590         }
591
592         sort_seq = newAV();
593         for (i = 0; i < sort_spec->num_specs; i++)
594         {
595             Z_SortKeySpec *spec = *sort_spec->specs++;
596             HV *sort_spec = newHV();
597
598             if ( simpleserver_SortKeySpecToHash(sort_spec, spec) )
599                 av_push(sort_seq, newRV( sv_2mortal( (SV*) sort_spec ) ));
600             else
601             {
602                 rr->errcode = 207;
603                 return 0;
604             }
605         }
606         
607         href = newHV();
608         hv_store(href, "INPUT", 5, newRV( (SV*) aref), 0);
609         hv_store(href, "OUTPUT", 6, newSVpv(rr->output_setname, 0), 0);
610         hv_store(href, "SEQUENCE", 8, newRV( (SV*) sort_seq), 0);
611         hv_store(href, "HANDLE", 6, zhandle->handle, 0);
612         hv_store(href, "STATUS", 6, newSViv(0), 0);
613         hv_store(href, "ERR_CODE", 8, newSViv(0), 0);
614         hv_store(href, "ERR_STR", 7, newSVpv("", 0), 0);
615
616         PUSHMARK(sp);
617
618         XPUSHs(sv_2mortal(newRV( (SV*) href)));
619
620         PUTBACK;
621
622         perl_call_sv(sort_ref, G_SCALAR | G_DISCARD);
623
624         SPAGAIN;
625
626         temp = hv_fetch(href, "ERR_CODE", 8, 1);
627         err_code = newSVsv(*temp);
628
629         temp = hv_fetch(href, "ERR_STR", 7, 1);
630         err_str = newSVsv(*temp);
631
632         temp = hv_fetch(href, "STATUS", 6, 1);
633         status = newSVsv(*temp);
634
635         temp = hv_fetch(href, "HANDLE", 6, 1);
636         point = newSVsv(*temp);
637
638         hv_undef(href);
639         av_undef(aref);
640         av_undef(sort_seq);
641        
642         sv_free( (SV*) aref);
643         sv_free( (SV*) href);
644         sv_free( (SV*) sort_seq);
645
646         rr->errcode = SvIV(err_code);
647         rr->sort_status = SvIV(status);
648         
649         ptr = SvPV(err_str, len);
650         ODR_err_str = (char *)odr_malloc(rr->stream, len + 1);
651         strcpy(ODR_err_str, ptr);
652         rr->errstring = ODR_err_str;
653         zhandle->handle = point;
654
655         sv_free(err_code);
656         sv_free(err_str);
657         sv_free(status);
658         
659         PUTBACK;
660         FREETMPS;
661         LEAVE;
662
663         return 0;
664 }
665
666
667 int bend_search(void *handle, bend_search_rr *rr)
668 {
669         HV *href;
670         AV *aref;
671         SV **temp;
672         char *ODR_errstr;
673         STRLEN len;
674         int i;
675         char **basenames;
676         WRBUF query;
677         char *ptr;
678         SV *point;
679         Zfront_handle *zhandle = (Zfront_handle *)handle;
680         CV* handler_cv = 0;
681         SV *rpnSV;
682
683         dSP;
684         ENTER;
685         SAVETMPS;
686
687         aref = newAV();
688         basenames = rr->basenames;
689         for (i = 0; i < rr->num_bases; i++)
690         {
691                 av_push(aref, newSVpv(*basenames++, 0));
692         }
693 #if ENABLE_STOP_SERVER
694         if (rr->num_bases == 1 && !strcmp(rr->basenames[0], "XXstop"))
695         {
696                 zhandle->stop_flag = 1;
697         }
698 #endif
699         href = newHV();         
700         hv_store(href, "SETNAME", 7, newSVpv(rr->setname, 0), 0);
701         hv_store(href, "REPL_SET", 8, newSViv(rr->replace_set), 0);
702         hv_store(href, "ERR_CODE", 8, newSViv(0), 0);
703         hv_store(href, "ERR_STR", 7, newSVpv("", 0), 0);
704         hv_store(href, "HITS", 4, newSViv(0), 0);
705         hv_store(href, "DATABASES", 9, newRV( (SV*) aref), 0);
706         hv_store(href, "HANDLE", 6, zhandle->handle, 0);
707         hv_store(href, "PID", 3, newSViv(getpid()), 0);
708         if ((rpnSV = zquery2perl(rr->query)) != 0) {
709             hv_store(href, "RPN", 3, rpnSV, 0);
710         }
711         query = zquery2pquery(rr->query);
712         if (query)
713         {
714                 hv_store(href, "QUERY", 5, newSVpv((char *)query->buf, query->pos), 0);
715         }
716         else if (rr->query->which == Z_Query_type_104 &&
717                  rr->query->u.type_104->which == Z_External_CQL) {
718             hv_store(href, "CQL", 3,
719                      newSVpv(rr->query->u.type_104->u.cql, 0), 0);
720         }
721         else
722         {       
723                 rr->errcode = 108;
724                 return 0;
725         }
726         PUSHMARK(sp);
727         
728         XPUSHs(sv_2mortal(newRV( (SV*) href)));
729         
730         PUTBACK;
731
732         handler_cv = simpleserver_sv2cv( search_ref );
733         perl_call_sv( (SV *) handler_cv, G_SCALAR | G_DISCARD);
734
735         SPAGAIN;
736
737         temp = hv_fetch(href, "HITS", 4, 1);
738         rr->hits = SvIV(*temp);
739
740         temp = hv_fetch(href, "ERR_CODE", 8, 1);
741         rr->errcode = SvIV(*temp);
742
743         temp = hv_fetch(href, "ERR_STR", 7, 1);
744         ptr = SvPV(*temp, len);
745         ODR_errstr = (char *)odr_malloc(rr->stream, len + 1);
746         strcpy(ODR_errstr, ptr);
747         rr->errstring = ODR_errstr;
748
749         temp = hv_fetch(href, "HANDLE", 6, 1);
750         point = newSVsv(*temp);
751
752         hv_undef(href);
753         av_undef(aref);
754
755         zhandle->handle = point;
756         sv_free( (SV*) aref);
757         sv_free( (SV*) href);
758         if (query)
759             wrbuf_free(query, 1);
760         PUTBACK;
761         FREETMPS;
762         LEAVE;
763         return 0;
764 }
765
766
767 /* ### this is worryingly similar to oid2str() */
768 WRBUF oid2dotted(int *oid)
769 {
770
771         WRBUF buf = wrbuf_alloc();
772         int dot = 0;
773
774         for (; *oid != -1 ; oid++)
775         {
776                 char ibuf[16];
777                 if (dot)
778                 {
779                         wrbuf_putc(buf, '.');
780                 }
781                 else
782                 {
783                         dot = 1;
784                 }
785                 sprintf(ibuf, "%d", *oid);
786                 wrbuf_puts(buf, ibuf);
787         }
788         return buf;
789 }
790                 
791
792 int dotted2oid(char *dotted, int *buffer)
793 {
794         int *oid;
795         char ibuf[16];
796         char *ptr;
797         int n = 0;
798
799         ptr = ibuf;
800         oid = buffer;
801         while (*dotted)
802         {
803                 if (*dotted == '.')
804                 {
805                         n++;
806                         if (n == MAX_OID)  /* Terminate if more than MAX_OID entries */
807                         {
808                                 *oid = -1;
809                                 return -1;
810                         }
811                         *ptr = 0;
812                         sscanf(ibuf, "%d", oid++);
813                         ptr = ibuf;
814                         dotted++;
815
816                 }
817                 else
818                 {
819                         *ptr++ = *dotted++;
820                 }
821         }
822         if (n < MAX_OID)
823         {
824                 *ptr = 0;
825                 sscanf(ibuf, "%d", oid++);
826         }
827         *oid = -1;
828         return 0;
829 }
830
831
832 int bend_fetch(void *handle, bend_fetch_rr *rr)
833 {
834         HV *href;
835         SV **temp;
836         SV *basename;
837         SV *record;
838         SV *last;
839         SV *err_code;
840         SV *err_string;
841         SV *sur_flag;
842         SV *point;
843         SV *rep_form;
844         char *ptr;
845         char *ODR_record;
846         char *ODR_basename;
847         char *ODR_errstr;
848         int *ODR_oid_buf;
849         oident *oid;
850         WRBUF oid_dotted;
851         Zfront_handle *zhandle = (Zfront_handle *)handle;
852         CV* handler_cv = 0;
853
854         Z_RecordComposition *composition;
855         Z_ElementSetNames *simple;
856         Z_CompSpec *complex;
857         STRLEN length;
858
859         dSP;
860         ENTER;
861         SAVETMPS;
862
863         rr->errcode = 0;
864         href = newHV();
865         hv_store(href, "SETNAME", 7, newSVpv(rr->setname, 0), 0);
866         temp = hv_store(href, "OFFSET", 6, newSViv(rr->number), 0);
867         if (rr->request_format_raw != 0) {
868             oid_dotted = oid2dotted(rr->request_format_raw);
869         } else {
870             /* Probably an SRU request: assume XML is required */
871             oid_dotted = wrbuf_alloc();
872             wrbuf_puts(oid_dotted, "1.2.840.10003.5.109.10");
873         }
874         hv_store(href, "REQ_FORM", 8, newSVpv((char *)oid_dotted->buf, oid_dotted->pos), 0);
875         hv_store(href, "REP_FORM", 8, newSVpv((char *)oid_dotted->buf, oid_dotted->pos), 0);
876         hv_store(href, "BASENAME", 8, newSVpv("", 0), 0);
877         hv_store(href, "RECORD", 6, newSVpv("", 0), 0);
878         hv_store(href, "LAST", 4, newSViv(0), 0);
879         hv_store(href, "ERR_CODE", 8, newSViv(0), 0);
880         hv_store(href, "ERR_STR", 7, newSVpv("", 0), 0);
881         hv_store(href, "SUR_FLAG", 8, newSViv(0), 0);
882         hv_store(href, "HANDLE", 6, zhandle->handle, 0);
883         hv_store(href, "PID", 3, newSViv(getpid()), 0);
884         if (rr->comp)
885         {
886                 composition = rr->comp;
887                 if (composition->which == Z_RecordComp_simple)
888                 {
889                         simple = composition->u.simple;
890                         if (simple->which == Z_ElementSetNames_generic)
891                         {
892                                 hv_store(href, "COMP", 4, newSVpv(simple->u.generic, 0), 0);
893                         } 
894                         else
895                         {
896                                 rr->errcode = 26;
897                         }
898                 }
899                 else if (composition->which == Z_RecordComp_complex)
900                 {
901                         if (composition->u.complex->generic &&
902
903                                         composition->u.complex->generic &&
904                                         composition->u.complex->generic->elementSpec &&
905                                         composition->u.complex->generic->elementSpec->which ==
906                                         Z_ElementSpec_elementSetName)
907                         {
908                                 complex = composition->u.complex;
909                                 hv_store(href, "COMP", 4,
910                                         newSVpv(complex->generic->elementSpec->u.elementSetName, 0), 0);
911                         }
912                         else
913                         {
914                                 rr->errcode = 26;
915                                 return 0;
916                         }
917                 }
918                 else
919                 {
920                         rr->errcode = 26;
921                         return;
922                 }
923         }
924
925         PUSHMARK(sp);
926
927         XPUSHs(sv_2mortal(newRV( (SV*) href)));
928
929         PUTBACK;
930         
931         handler_cv = simpleserver_sv2cv( fetch_ref );
932         perl_call_sv( (SV *) handler_cv, G_SCALAR | G_DISCARD);
933
934         SPAGAIN;
935
936         temp = hv_fetch(href, "BASENAME", 8, 1);
937         basename = newSVsv(*temp);
938
939         temp = hv_fetch(href, "RECORD", 6, 1);
940         record = newSVsv(*temp);
941
942         temp = hv_fetch(href, "LAST", 4, 1);
943         last = newSVsv(*temp);
944
945         temp = hv_fetch(href, "ERR_CODE", 8, 1);
946         err_code = newSVsv(*temp);
947
948         temp = hv_fetch(href, "ERR_STR", 7, 1),
949         err_string = newSVsv(*temp);
950
951         temp = hv_fetch(href, "SUR_FLAG", 8, 1);
952         sur_flag = newSVsv(*temp);
953
954         temp = hv_fetch(href, "REP_FORM", 8, 1);
955         rep_form = newSVsv(*temp);
956
957         temp = hv_fetch(href, "HANDLE", 6, 1);
958         point = newSVsv(*temp);
959
960
961         hv_undef(href);
962         
963         ptr = SvPV(basename, length);
964         ODR_basename = (char *)odr_malloc(rr->stream, length + 1);
965         strcpy(ODR_basename, ptr);
966         rr->basename = ODR_basename;
967
968         ptr = SvPV(rep_form, length);
969         ODR_oid_buf = (int *)odr_malloc(rr->stream, (MAX_OID + 1) * sizeof(int));
970         if (dotted2oid(ptr, ODR_oid_buf) == -1)         /* Maximum number of OID elements exceeded */
971         {
972                 printf("Net::Z3950::SimpleServer: WARNING: OID structure too long, max length is %d\n", MAX_OID);
973         }
974         rr->output_format_raw = ODR_oid_buf;    
975         
976         ptr = SvPV(record, length);
977         oid = oid_getentbyoid(ODR_oid_buf);
978         if (oid->value == VAL_GRS1)             /* Treat GRS-1 records separately */
979         {
980                 rr->record = (char *) read_grs1(ptr, rr->stream);
981                 rr->len = -1;
982         }
983         else
984         {
985                 ODR_record = (char *)odr_malloc(rr->stream, length + 1);
986                 strcpy(ODR_record, ptr);
987                 rr->record = ODR_record;
988                 rr->len = length;
989         }
990         zhandle->handle = point;
991         handle = zhandle;
992         rr->last_in_set = SvIV(last);
993         
994         if (!(rr->errcode))
995         {
996                 rr->errcode = SvIV(err_code);
997                 ptr = SvPV(err_string, length);
998                 ODR_errstr = (char *)odr_malloc(rr->stream, length + 1);
999                 strcpy(ODR_errstr, ptr);
1000                 rr->errstring = ODR_errstr;
1001         }
1002         rr->surrogate_flag = SvIV(sur_flag);
1003
1004         wrbuf_free(oid_dotted, 1);
1005         sv_free((SV*) href);
1006         sv_free(basename);
1007         sv_free(record);
1008         sv_free(last);
1009         sv_free(err_string);
1010         sv_free(err_code),
1011         sv_free(sur_flag);
1012         sv_free(rep_form);
1013
1014         PUTBACK;
1015         FREETMPS;
1016         LEAVE;
1017         
1018         return 0;
1019 }
1020
1021
1022 int bend_present(void *handle, bend_present_rr *rr)
1023 {
1024         HV *href;
1025         SV **temp;
1026         SV *err_code;
1027         SV *err_string;
1028         SV *hits;
1029         SV *point;
1030         STRLEN len;
1031         Z_RecordComposition *composition;
1032         Z_ElementSetNames *simple;
1033         Z_CompSpec *complex;
1034         char *ODR_errstr;
1035         char *ptr;
1036         Zfront_handle *zhandle = (Zfront_handle *)handle;
1037         CV* handler_cv = 0;
1038
1039 /*      WRBUF oid_dotted; */
1040
1041         dSP;
1042         ENTER;
1043         SAVETMPS;
1044
1045         href = newHV();
1046         hv_store(href, "HANDLE", 6, zhandle->handle, 0);
1047         hv_store(href, "ERR_CODE", 8, newSViv(0), 0);
1048         hv_store(href, "ERR_STR", 7, newSVpv("", 0), 0);
1049         hv_store(href, "START", 5, newSViv(rr->start), 0);
1050         hv_store(href, "SETNAME", 7, newSVpv(rr->setname, 0), 0);
1051         hv_store(href, "NUMBER", 6, newSViv(rr->number), 0);
1052         /*oid_dotted = oid2dotted(rr->request_format_raw);
1053         hv_store(href, "REQ_FORM", 8, newSVpv((char *)oid_dotted->buf, oid_dotted->pos), 0);*/
1054         hv_store(href, "HITS", 4, newSViv(0), 0);
1055         hv_store(href, "PID", 3, newSViv(getpid()), 0);
1056         if (rr->comp)
1057         {
1058                 composition = rr->comp;
1059                 if (composition->which == Z_RecordComp_simple)
1060                 {
1061                         simple = composition->u.simple;
1062                         if (simple->which == Z_ElementSetNames_generic)
1063                         {
1064                                 hv_store(href, "COMP", 4, newSVpv(simple->u.generic, 0), 0);
1065                         } 
1066                         else
1067                         {
1068                                 rr->errcode = 26;
1069                                 return 0;
1070                         }
1071                 }
1072                 else if (composition->which == Z_RecordComp_complex)
1073                 {
1074                         if (composition->u.complex->generic &&
1075
1076                                         composition->u.complex->generic &&
1077                                         composition->u.complex->generic->elementSpec &&
1078                                         composition->u.complex->generic->elementSpec->which ==
1079                                         Z_ElementSpec_elementSetName)
1080                         {
1081                                 complex = composition->u.complex;
1082                                 hv_store(href, "COMP", 4,
1083                                         newSVpv(complex->generic->elementSpec->u.elementSetName, 0), 0);
1084                         }
1085                         else
1086                         {
1087                                 rr->errcode = 26;
1088                                 return 0;
1089                         }
1090                 }
1091                 else
1092                 {
1093                         rr->errcode = 26;
1094                         return;
1095                 }
1096         }
1097
1098         PUSHMARK(sp);
1099         
1100         XPUSHs(sv_2mortal(newRV( (SV*) href)));
1101         
1102         PUTBACK;
1103         
1104         handler_cv = simpleserver_sv2cv( present_ref );
1105         perl_call_sv( (SV *) handler_cv, G_SCALAR | G_DISCARD);
1106         
1107         SPAGAIN;
1108
1109         temp = hv_fetch(href, "ERR_CODE", 8, 1);
1110         err_code = newSVsv(*temp);
1111
1112         temp = hv_fetch(href, "ERR_STR", 7, 1);
1113         err_string = newSVsv(*temp);
1114
1115         temp = hv_fetch(href, "HITS", 4, 1);
1116         hits = newSVsv(*temp);
1117
1118         temp = hv_fetch(href, "HANDLE", 6, 1);
1119         point = newSVsv(*temp);
1120
1121         PUTBACK;
1122         FREETMPS;
1123         LEAVE;
1124         
1125         hv_undef(href);
1126         rr->errcode = SvIV(err_code);
1127         rr->hits = SvIV(hits);
1128
1129         ptr = SvPV(err_string, len);
1130         ODR_errstr = (char *)odr_malloc(rr->stream, len + 1);
1131         strcpy(ODR_errstr, ptr);
1132         rr->errstring = ODR_errstr;
1133 /*      wrbuf_free(oid_dotted, 1);*/
1134         zhandle->handle = point;
1135         handle = zhandle;
1136         sv_free(err_code);
1137         sv_free(err_string);
1138         sv_free(hits);
1139         sv_free( (SV*) href);
1140
1141         return 0;
1142 }
1143
1144
1145 int bend_esrequest(void *handle, bend_esrequest_rr *rr)
1146 {
1147         perl_call_sv(esrequest_ref, G_VOID | G_DISCARD | G_NOARGS);
1148         return 0;
1149 }
1150
1151
1152 int bend_delete(void *handle, bend_delete_rr *rr)
1153 {
1154         perl_call_sv(delete_ref, G_VOID | G_DISCARD | G_NOARGS);
1155         return 0;
1156 }
1157
1158
1159 int bend_scan(void *handle, bend_scan_rr *rr)
1160 {
1161         HV *href;
1162         AV *aref;
1163         AV *list;
1164         AV *entries;
1165         HV *scan_item;
1166         struct scan_entry *scan_list;
1167         struct scan_entry *buffer;
1168         int *step_size = rr->step_size;
1169         int i;
1170         char **basenames;
1171         SV **temp;
1172         SV *err_code = sv_newmortal();
1173         SV *err_str = sv_newmortal();
1174         SV *point = sv_newmortal();
1175         SV *status = sv_newmortal();
1176         SV *number = sv_newmortal();
1177         char *ptr;
1178         char *ODR_errstr;
1179         STRLEN len;
1180         int term_len;
1181         SV *entries_ref;
1182         Zfront_handle *zhandle = (Zfront_handle *)handle;
1183         CV* handler_cv = 0;
1184
1185         dSP;
1186         ENTER;
1187         SAVETMPS;
1188         href = newHV();
1189         list = newAV();
1190         if (rr->term->term->which == Z_Term_general)
1191         {
1192                 term_len = rr->term->term->u.general->len;
1193                 hv_store(href, "TERM", 4, newSVpv(rr->term->term->u.general->buf, term_len), 0);
1194         } else {
1195                 rr->errcode = 229;      /* Unsupported term type */
1196                 return 0;
1197         }
1198         hv_store(href, "STEP", 4, newSViv(*step_size), 0);
1199         hv_store(href, "NUMBER", 6, newSViv(rr->num_entries), 0);
1200         hv_store(href, "POS", 3, newSViv(rr->term_position), 0);
1201         hv_store(href, "ERR_CODE", 8, newSViv(0), 0);
1202         hv_store(href, "ERR_STR", 7, newSVpv("", 0), 0);
1203         hv_store(href, "HANDLE", 6, zhandle->handle, 0);
1204         hv_store(href, "STATUS", 6, newSViv(BEND_SCAN_SUCCESS), 0);
1205         hv_store(href, "ENTRIES", 7, newRV((SV *) list), 0);
1206         aref = newAV();
1207         basenames = rr->basenames;
1208         for (i = 0; i < rr->num_bases; i++)
1209         {
1210                 av_push(aref, newSVpv(*basenames++, 0));
1211         }
1212         hv_store(href, "DATABASES", 9, newRV( (SV*) aref), 0);
1213
1214         PUSHMARK(sp);
1215
1216         XPUSHs(sv_2mortal(newRV( (SV*) href)));
1217
1218         PUTBACK;
1219
1220         handler_cv = simpleserver_sv2cv( scan_ref );
1221         perl_call_sv( (SV *) handler_cv, G_SCALAR | G_DISCARD);
1222
1223         SPAGAIN;
1224
1225         temp = hv_fetch(href, "ERR_CODE", 8, 1);
1226         err_code = newSVsv(*temp);
1227
1228         temp = hv_fetch(href, "ERR_STR", 7, 1);
1229         err_str = newSVsv(*temp);
1230
1231         temp = hv_fetch(href, "HANDLE", 6, 1);
1232         point = newSVsv(*temp);
1233
1234         temp = hv_fetch(href, "STATUS", 6, 1);
1235         status = newSVsv(*temp);
1236         
1237         temp = hv_fetch(href, "NUMBER", 6, 1);
1238         number = newSVsv(*temp);
1239
1240         temp = hv_fetch(href, "ENTRIES", 7, 1);
1241         entries_ref = newSVsv(*temp);
1242
1243         PUTBACK;
1244         FREETMPS;
1245         LEAVE;
1246
1247         ptr = SvPV(err_str, len);
1248         ODR_errstr = (char *)odr_malloc(rr->stream, len + 1);
1249         strcpy(ODR_errstr, ptr);
1250         rr->errstring = ODR_errstr;
1251         rr->errcode = SvIV(err_code);
1252         rr->num_entries = SvIV(number);
1253         rr->status = SvIV(status);
1254         scan_list = (struct scan_entry *) odr_malloc (rr->stream, rr->num_entries * sizeof(*scan_list));
1255         buffer = scan_list;
1256         entries = (AV *)SvRV(entries_ref);
1257         for (i = 0; i < rr->num_entries; i++)
1258         {
1259                 scan_item = (HV *)SvRV(sv_2mortal(av_shift(entries)));
1260                 temp = hv_fetch(scan_item, "TERM", 4, 1);
1261                 ptr = SvPV(*temp, len);
1262                 buffer->term = (char *) odr_malloc (rr->stream, len + 1); 
1263                 strcpy(buffer->term, ptr);
1264                 temp = hv_fetch(scan_item, "OCCURRENCE", 10, 1); 
1265                 buffer->occurrences = SvIV(*temp);
1266                 buffer++;
1267                 hv_undef(scan_item);
1268         }
1269         rr->entries = scan_list;
1270         zhandle->handle = point;
1271         handle = zhandle;
1272         sv_free(err_code);
1273         sv_free(err_str);
1274         sv_free(status);
1275         sv_free(number);
1276         hv_undef(href);
1277         sv_free((SV *)href);
1278         av_undef(aref);
1279         sv_free((SV *)aref);
1280         av_undef(list);
1281         sv_free((SV *)list);
1282         av_undef(entries);
1283         /*sv_free((SV *)entries);*/
1284         sv_free(entries_ref);
1285
1286         return 0;
1287 }
1288
1289 int bend_explain(void *handle, bend_explain_rr *q)
1290 {
1291         HV *href;
1292         CV *handler_cv = 0;
1293         SV **temp;
1294         char *explain;
1295         SV *explainsv;
1296         STRLEN len;
1297         Zfront_handle *zhandle = (Zfront_handle *)handle;
1298
1299         dSP;
1300         ENTER;
1301         SAVETMPS;
1302
1303         href = newHV();
1304         hv_store(href, "EXPLAIN", 7, newSVpv("", 0), 0);
1305         hv_store(href, "DATABASE", 8, newSVpv(q->database, 0), 0);
1306         hv_store(href, "HANDLE", 6, zhandle->handle, 0);
1307
1308         PUSHMARK(sp);
1309         XPUSHs(sv_2mortal(newRV((SV*) href)));
1310         PUTBACK;
1311
1312         handler_cv = simpleserver_sv2cv(explain_ref);
1313         perl_call_sv((SV*) handler_cv, G_SCALAR | G_DISCARD);
1314
1315         SPAGAIN;
1316
1317         temp = hv_fetch(href, "EXPLAIN", 7, 1);
1318         explainsv = newSVsv(*temp);
1319
1320         PUTBACK;
1321         FREETMPS;
1322         LEAVE;
1323
1324         explain = SvPV(explainsv, len);
1325         q->explain_buf = (char*) odr_malloc(q->stream, len + 1);
1326         strcpy(q->explain_buf, explain);
1327
1328         return 0;
1329 }
1330
1331 bend_initresult *bend_init(bend_initrequest *q)
1332 {
1333         int dummy = simpleserver_clone();
1334         bend_initresult *r = (bend_initresult *)
1335                 odr_malloc (q->stream, sizeof(*r));
1336         char *ptr;
1337         CV* handler_cv = 0;
1338         dSP;
1339         STRLEN len;
1340         NMEM nmem = nmem_create();
1341         Zfront_handle *zhandle =  (Zfront_handle *) nmem_malloc (nmem,
1342                         sizeof(*zhandle));
1343         SV *handle;
1344         HV *href;
1345         SV **temp;
1346
1347         ENTER;
1348         SAVETMPS;
1349
1350         zhandle->nmem = nmem;
1351         zhandle->stop_flag = 0;
1352
1353         if (sort_ref)
1354         {
1355             q->bend_sort = bend_sort;
1356         }
1357         if (search_ref)
1358         {
1359                 q->bend_search = bend_search;
1360         }
1361         if (present_ref)
1362         {
1363                 q->bend_present = bend_present;
1364         }
1365         /*q->bend_esrequest = bend_esrequest;*/
1366         /*q->bend_delete = bend_delete;*/
1367         if (fetch_ref)
1368         {
1369                 q->bend_fetch = bend_fetch;
1370         }
1371         if (scan_ref)
1372         {
1373                 q->bend_scan = bend_scan;
1374         }
1375         if (explain_ref)
1376         {
1377                 q->bend_explain = bend_explain;
1378         }
1379
1380         href = newHV(); 
1381         hv_store(href, "IMP_ID", 6, newSVpv("", 0), 0);
1382         hv_store(href, "IMP_NAME", 8, newSVpv("", 0), 0);
1383         hv_store(href, "IMP_VER", 7, newSVpv("", 0), 0);
1384         hv_store(href, "ERR_CODE", 8, newSViv(0), 0);
1385         hv_store(href, "ERR_STR", 7, newSViv(0), 0);
1386         hv_store(href, "PEER_NAME", 9, newSVpv(q->peer_name, 0), 0);
1387         hv_store(href, "HANDLE", 6, newSVsv(&sv_undef), 0);
1388         hv_store(href, "PID", 3, newSViv(getpid()), 0);
1389         if (q->auth) {
1390             char *user = NULL;
1391             char *passwd = NULL;
1392             if (q->auth->which == Z_IdAuthentication_open) {
1393                 char *cp;
1394                 user = nmem_strdup (odr_getmem (q->stream), q->auth->u.open);
1395                 cp = strchr (user, '/');
1396                 if (cp) {
1397                     /* password after / given */
1398                     *cp = '\0';
1399                     passwd = cp+1;
1400                 }
1401             } else if (q->auth->which == Z_IdAuthentication_idPass) {
1402                 user = q->auth->u.idPass->userId;
1403                 passwd = q->auth->u.idPass->password;
1404             }
1405             /* ### some code paths have user/password unassigned here */
1406             if (user)
1407                 hv_store(href, "USER", 4, newSVpv(user, 0), 0);
1408             if (passwd)
1409                 hv_store(href, "PASS", 4, newSVpv(passwd, 0), 0);
1410         }
1411
1412         PUSHMARK(sp);   
1413
1414         XPUSHs(sv_2mortal(newRV((SV*) href)));
1415
1416         PUTBACK;
1417
1418         if (init_ref != NULL)
1419         {
1420              handler_cv = simpleserver_sv2cv( init_ref );
1421              perl_call_sv( (SV *) handler_cv, G_SCALAR | G_DISCARD);
1422         }
1423
1424         SPAGAIN;
1425
1426         temp = hv_fetch(href, "IMP_ID", 6, 1);
1427         ptr = SvPV(*temp, len);
1428         q->implementation_id = nmem_strdup(nmem, ptr);
1429
1430         temp = hv_fetch(href, "IMP_NAME", 8, 1);
1431         ptr = SvPV(*temp, len);
1432         q->implementation_name = nmem_strdup(nmem, ptr);
1433
1434         temp = hv_fetch(href, "IMP_VER", 7, 1);
1435         ptr = SvPV(*temp, len);
1436         q->implementation_version = nmem_strdup(nmem, ptr);
1437
1438         temp = hv_fetch(href, "ERR_CODE", 8, 1);
1439         r->errcode = SvIV(*temp);
1440
1441         temp = hv_fetch(href, "ERR_STR", 7, 1);
1442         ptr = SvPV(*temp, len);
1443         r->errstring = (char *)odr_malloc(q->stream, len + 1);
1444         strcpy(r->errstring, ptr);
1445
1446         temp = hv_fetch(href, "HANDLE", 6, 1);
1447         handle= newSVsv(*temp);
1448         zhandle->handle = handle;
1449
1450         r->handle = zhandle;
1451
1452         hv_undef(href);
1453         sv_free((SV*) href);
1454
1455         PUTBACK;
1456         FREETMPS;
1457         LEAVE;
1458         
1459         return r;       
1460 }
1461
1462 void bend_close(void *handle)
1463 {
1464         HV *href;
1465         Zfront_handle *zhandle = (Zfront_handle *)handle;
1466         CV* handler_cv = 0;
1467         int stop_flag = 0;
1468         dSP;
1469         ENTER;
1470         SAVETMPS;
1471
1472         if (close_ref)
1473         {
1474                 href = newHV();
1475                 hv_store(href, "HANDLE", 6, zhandle->handle, 0);
1476
1477                 PUSHMARK(sp);
1478
1479                 XPUSHs(sv_2mortal(newRV((SV *)href)));
1480
1481                 PUTBACK;
1482         
1483                 handler_cv = simpleserver_sv2cv( close_ref );
1484                 perl_call_sv( (SV *) handler_cv, G_SCALAR | G_DISCARD);
1485         
1486                 SPAGAIN;
1487
1488                 sv_free((SV*) href);
1489         }
1490         else
1491                 sv_free(zhandle->handle);
1492         PUTBACK;
1493         FREETMPS;
1494         LEAVE;
1495         stop_flag = zhandle->stop_flag;
1496         nmem_destroy(zhandle->nmem);
1497         simpleserver_free();
1498
1499         if (stop_flag)
1500                 exit(0);
1501         return;
1502 }
1503
1504
1505 MODULE = Net::Z3950::SimpleServer       PACKAGE = Net::Z3950::SimpleServer
1506
1507 PROTOTYPES: DISABLE
1508
1509
1510 void
1511 set_init_handler(arg)
1512                 SV *arg
1513         CODE:
1514                 init_ref = newSVsv(arg);
1515                 
1516
1517 void
1518 set_close_handler(arg)
1519                 SV *arg
1520         CODE:
1521                 close_ref = newSVsv(arg);
1522
1523
1524 void
1525 set_sort_handler(arg)
1526                 SV *arg
1527         CODE:
1528                 sort_ref = newSVsv(arg);
1529
1530 void
1531 set_search_handler(arg)
1532                 SV *arg
1533         CODE:
1534                 search_ref = newSVsv(arg);
1535
1536
1537 void
1538 set_fetch_handler(arg)
1539                 SV *arg
1540         CODE:
1541                 fetch_ref = newSVsv(arg);
1542
1543
1544 void
1545 set_present_handler(arg)
1546                 SV *arg
1547         CODE:
1548                 present_ref = newSVsv(arg);
1549
1550
1551 void
1552 set_esrequest_handler(arg)
1553                 SV *arg
1554         CODE:
1555                 esrequest_ref = newSVsv(arg);
1556
1557
1558 void
1559 set_delete_handler(arg)
1560                 SV *arg
1561         CODE:
1562                 delete_ref = newSVsv(arg);
1563
1564
1565 void
1566 set_scan_handler(arg)
1567                 SV *arg
1568         CODE:
1569                 scan_ref = newSVsv(arg);
1570
1571 void
1572 set_explain_handler(arg)
1573                 SV *arg
1574         CODE:
1575                 explain_ref = newSVsv(arg);
1576
1577 int
1578 start_server(...)
1579         PREINIT:
1580                 char **argv;
1581                 char **argv_buf;
1582                 char *ptr;
1583                 int i;
1584                 STRLEN len;
1585         CODE:
1586                 argv_buf = (char **)xmalloc((items + 1) * sizeof(char *));
1587                 argv = argv_buf;
1588                 for (i = 0; i < items; i++)
1589                 {
1590                         ptr = SvPV(ST(i), len);
1591                         *argv_buf = (char *)xmalloc(len + 1);
1592                         strcpy(*argv_buf++, ptr); 
1593                 }
1594                 *argv_buf = NULL;
1595                 root_perl_context = PERL_GET_CONTEXT;
1596                 nmem_mutex_create(&simpleserver_mutex);
1597 #if 0
1598                 /* only for debugging perl_clone .. */
1599                 tst_clones();
1600 #endif
1601                 
1602                 RETVAL = statserv_main(items, argv, bend_init, bend_close);
1603         OUTPUT:
1604                 RETVAL
1605
1606
1607 int
1608 ScanSuccess()
1609         CODE:
1610                 RETVAL = BEND_SCAN_SUCCESS;
1611         OUTPUT:
1612                 RETVAL
1613
1614 int
1615 ScanPartial()
1616         CODE:
1617                 RETVAL = BEND_SCAN_PARTIAL;
1618         OUTPUT:
1619                 RETVAL
1620
1621  
1622 void
1623 yazlog(arg)
1624                 SV *arg
1625         CODE:
1626                 STRLEN len;
1627                 char *ptr;
1628                 ptr = SvPV(arg, len);
1629                 yaz_log(YLOG_LOG, "%.*s", len, ptr);