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Comparing Convert-BER-XS/XS.xs (file contents):
Revision 1.5 by root, Fri Apr 19 23:50:53 2019 UTC vs.
Revision 1.23 by root, Sun Apr 21 01:51:12 2019 UTC

1#include "EXTERN.h" 1#include "EXTERN.h"
2#include "perl.h" 2#include "perl.h"
3#include "XSUB.h" 3#include "XSUB.h"
4 4
5// C99 required 5// C99 required!
6// this is not just for comments, but also for
7// integer constant semantics,
8// sscanf format modifiers and more.
6 9
7enum { 10enum {
8 // ASN_TAG 11 // ASN_TAG
9 ASN_BOOLEAN = 0x01, 12 ASN_BOOLEAN = 0x01,
10 ASN_INTEGER32 = 0x02, 13 ASN_INTEGER = 0x02,
11 ASN_BIT_STRING = 0x03, 14 ASN_BIT_STRING = 0x03,
12 ASN_OCTET_STRING = 0x04, 15 ASN_OCTET_STRING = 0x04,
13 ASN_NULL = 0x05, 16 ASN_NULL = 0x05,
14 ASN_OBJECT_IDENTIFIER = 0x06, 17 ASN_OBJECT_IDENTIFIER = 0x06,
15 ASN_OID = 0x06, //X 18 ASN_OID = 0x06,
16 ASN_OBJECT_DESCRIPTOR = 0x07, //X 19 ASN_OBJECT_DESCRIPTOR = 0x07,
17 ASN_EXTERNAL = 0x08, //X 20 ASN_EXTERNAL = 0x08,
18 ASN_REAL = 0x09, //X 21 ASN_REAL = 0x09,
19 ASN_ENUMERATED = 0x0a, //X 22 ASN_ENUMERATED = 0x0a,
20 ASN_EMBEDDED_PDV = 0x0b, //X 23 ASN_EMBEDDED_PDV = 0x0b,
21 ASN_UTF8_STRING = 0x0c, //X 24 ASN_UTF8_STRING = 0x0c,
22 ASN_RELATIVE_OID = 0x0d, //X 25 ASN_RELATIVE_OID = 0x0d,
23 ASN_SEQUENCE = 0x10, 26 ASN_SEQUENCE = 0x10,
24 ASN_SET = 0x11, //X 27 ASN_SET = 0x11,
25 ASN_NUMERIC_STRING = 0x12, //X 28 ASN_NUMERIC_STRING = 0x12,
26 ASN_PRINTABLE_STRING = 0x13, //X 29 ASN_PRINTABLE_STRING = 0x13,
27 ASN_TELETEX_STRING = 0x14, //X 30 ASN_TELETEX_STRING = 0x14,
28 ASN_T61_STRING = 0x14, //X 31 ASN_T61_STRING = 0x14,
29 ASN_VIDEOTEX_STRING = 0x15, //X 32 ASN_VIDEOTEX_STRING = 0x15,
30 ASN_IA5_STRING = 0x16, //X 33 ASN_IA5_STRING = 0x16,
31 ASN_ASCII_STRING = 0x16, //X 34 ASN_ASCII_STRING = 0x16,
32 ASN_UTC_TIME = 0x17, //X 35 ASN_UTC_TIME = 0x17,
33 ASN_GENERALIZED_TIME = 0x18, //X 36 ASN_GENERALIZED_TIME = 0x18,
34 ASN_GRAPHIC_STRING = 0x19, //X 37 ASN_GRAPHIC_STRING = 0x19,
35 ASN_VISIBLE_STRING = 0x1a, //X 38 ASN_VISIBLE_STRING = 0x1a,
36 ASN_ISO646_STRING = 0x1a, //X 39 ASN_ISO646_STRING = 0x1a,
37 ASN_GENERAL_STRING = 0x1b, //X 40 ASN_GENERAL_STRING = 0x1b,
38 ASN_UNIVERSAL_STRING = 0x1c, //X 41 ASN_UNIVERSAL_STRING = 0x1c,
39 ASN_CHARACTER_STRING = 0x1d, //X 42 ASN_CHARACTER_STRING = 0x1d,
40 ASN_BMP_STRING = 0x1e, //X 43 ASN_BMP_STRING = 0x1e,
41 44
42 ASN_TAG_BER = 0x1f, 45 ASN_TAG_BER = 0x1f,
43 ASN_TAG_MASK = 0x1f, 46 ASN_TAG_MASK = 0x1f,
44 47
45 // primitive/constructed 48 // primitive/constructed
55 ASN_CLASS_SHIFT = 6, 58 ASN_CLASS_SHIFT = 6,
56 59
57 // ASN_APPLICATION SNMP 60 // ASN_APPLICATION SNMP
58 SNMP_IPADDRESS = 0x00, 61 SNMP_IPADDRESS = 0x00,
59 SNMP_COUNTER32 = 0x01, 62 SNMP_COUNTER32 = 0x01,
63 SNMP_GAUGE32 = 0x02,
60 SNMP_UNSIGNED32 = 0x02, 64 SNMP_UNSIGNED32 = 0x02,
61 SNMP_TIMETICKS = 0x03, 65 SNMP_TIMETICKS = 0x03,
62 SNMP_OPAQUE = 0x04, 66 SNMP_OPAQUE = 0x04,
63 SNMP_COUNTER64 = 0x06, 67 SNMP_COUNTER64 = 0x06,
64}; 68};
72 BER_TYPE_OID, 76 BER_TYPE_OID,
73 BER_TYPE_RELOID, 77 BER_TYPE_RELOID,
74 BER_TYPE_NULL, 78 BER_TYPE_NULL,
75 BER_TYPE_BOOL, 79 BER_TYPE_BOOL,
76 BER_TYPE_REAL, 80 BER_TYPE_REAL,
81 BER_TYPE_IPADDRESS,
77 BER_TYPE_CROAK, 82 BER_TYPE_CROAK,
78}; 83};
79 84
80enum { 85enum {
81 BER_CLASS = 0, 86 BER_CLASS = 0,
82 BER_TAG = 1, 87 BER_TAG = 1,
83 BER_CONSTRUCTED = 2, 88 BER_FLAGS = 2,
84 BER_DATA = 3, 89 BER_DATA = 3,
85 BER_ARRAYSIZE 90 BER_ARRAYSIZE
86}; 91};
87 92
88#define MAX_OID_STRLEN 4096 93#define MAX_OID_STRLEN 4096
89 94
90typedef void profile_type; 95typedef void profile_type;
91 96
92static profile_type *cur_profile, *default_profile; 97static profile_type *cur_profile, *default_profile;
93static SV *buf_sv; // encoding buffer 98static SV *buf_sv; // encoding buffer
94static U8 *buf, *cur, *end; // buffer start, current, end 99static U8 *buf, *cur, *end; // buffer start, current, end
100
101#if PERL_VERSION < 18
102# define utf8_to_uvchr_buf(s,e,l) utf8_to_uvchr (s, l)
103#endif
95 104
96#if __GNUC__ >= 3 105#if __GNUC__ >= 3
97# define expect(expr,value) __builtin_expect ((expr), (value)) 106# define expect(expr,value) __builtin_expect ((expr), (value))
98# define INLINE static inline 107# define INLINE static inline
99#else 108#else
129 138
130static profile_type * 139static profile_type *
131SvPROFILE (SV *profile) 140SvPROFILE (SV *profile)
132{ 141{
133 if (!SvOK (profile)) 142 if (!SvOK (profile))
134 profile = default_profile; 143 return default_profile;
135 144
136 if (!SvROK (profile)) 145 if (!SvROK (profile))
137 croak ("invalid profile"); 146 croak ("invalid profile");
138 147
139 profile = SvRV (profile); 148 profile = SvRV (profile);
154 return BER_TYPE_BYTES; 163 return BER_TYPE_BYTES;
155 164
156 return SvPVX (sv)[idx]; 165 return SvPVX (sv)[idx];
157} 166}
158 167
159static int 168static void
160profile_set (profile_type *profile, int klass, int tag, int type) 169profile_set (profile_type *profile, int klass, int tag, int type)
161{ 170{
162 SV *sv = (SV *)profile; 171 SV *sv = (SV *)profile;
163 U32 idx = (tag << 2) + klass; 172 U32 idx = (tag << 2) + klass;
164 STRLEN oldlen = SvCUR (sv); 173 STRLEN oldlen = SvCUR (sv);
173 182
174 SvPVX (sv)[idx] = type; 183 SvPVX (sv)[idx] = type;
175} 184}
176 185
177static SV * 186static SV *
178profile_new () 187profile_new (void)
179{ 188{
180 SV *sv = newSVpvn ("", 0); 189 SV *sv = newSVpvn ("", 0);
181 190
182 static const struct { 191 static const struct {
183 int klass; 192 int klass;
184 int tag; 193 int tag;
185 int type; 194 int type;
186 } *celem, default_map[] = { 195 } *celem, default_map[] = {
187 { ASN_UNIVERSAL, ASN_BOOLEAN , BER_TYPE_BOOL }, 196 { ASN_UNIVERSAL, ASN_BOOLEAN , BER_TYPE_BOOL },
188 { ASN_UNIVERSAL, ASN_INTEGER32 , BER_TYPE_INT }, 197 { ASN_UNIVERSAL, ASN_INTEGER , BER_TYPE_INT },
189 { ASN_UNIVERSAL, ASN_NULL , BER_TYPE_NULL }, 198 { ASN_UNIVERSAL, ASN_NULL , BER_TYPE_NULL },
190 { ASN_UNIVERSAL, ASN_OBJECT_IDENTIFIER, BER_TYPE_OID }, 199 { ASN_UNIVERSAL, ASN_OBJECT_IDENTIFIER, BER_TYPE_OID },
191 { ASN_UNIVERSAL, ASN_OBJECT_DESCRIPTOR, BER_TYPE_OID },
192 { ASN_UNIVERSAL, ASN_RELATIVE_OID , BER_TYPE_RELOID }, 200 { ASN_UNIVERSAL, ASN_RELATIVE_OID , BER_TYPE_RELOID },
193 { ASN_UNIVERSAL, ASN_REAL , BER_TYPE_REAL }, 201 { ASN_UNIVERSAL, ASN_REAL , BER_TYPE_REAL },
202 { ASN_UNIVERSAL, ASN_ENUMERATED , BER_TYPE_INT },
194 { ASN_UNIVERSAL, ASN_UTF8_STRING , BER_TYPE_UTF8 }, 203 { ASN_UNIVERSAL, ASN_UTF8_STRING , BER_TYPE_UTF8 },
195 { ASN_UNIVERSAL, ASN_BMP_STRING , BER_TYPE_UCS2 }, 204 { ASN_UNIVERSAL, ASN_BMP_STRING , BER_TYPE_UCS2 },
196 { ASN_UNIVERSAL, ASN_UNIVERSAL_STRING , BER_TYPE_UCS4 }, 205 { ASN_UNIVERSAL, ASN_UNIVERSAL_STRING , BER_TYPE_UCS4 },
197 }; 206 };
198 207
199 //const_iv (SNMP_IPADDRESS)
200 //const_iv (SNMP_COUNTER32)
201 //const_iv (SNMP_UNSIGNED32)
202 //const_iv (SNMP_TIMETICKS)
203 //const_iv (SNMP_OPAQUE)
204 //const_iv (SNMP_COUNTER64)
205
206 for (celem = default_map + sizeof (default_map) / sizeof (default_map [0]); celem > default_map; celem--) 208 for (celem = default_map + sizeof (default_map) / sizeof (default_map [0]); celem-- > default_map; )
207 profile_set ((void *)sv, celem->klass, celem->tag, celem->type); 209 profile_set ((profile_type *)sv, celem->klass, celem->tag, celem->type);
208 210
209 return sv_bless (newRV_noinc (sv), profile_stash); 211 return sv_bless (newRV_noinc (sv), profile_stash);
210} 212}
211 213
212///////////////////////////////////////////////////////////////////////////// 214/////////////////////////////////////////////////////////////////////////////
247 249
248 return *cur++; 250 return *cur++;
249} 251}
250 252
251// get ber-encoded integer (i.e. pack "w") 253// get ber-encoded integer (i.e. pack "w")
252static U32 254static UV
253get_w (void) 255get_w (void)
254{ 256{
255 U32 res = 0; 257 UV res = 0;
258 U8 c = get_u8 ();
259
260 if (expect_false (c == 0x80))
261 error ("illegal BER padding (X.690 8.1.2.4.2, 8.19.2)");
256 262
257 for (;;) 263 for (;;)
258 { 264 {
259 U8 c = get_u8 (); 265 if (expect_false (res >> UVSIZE * 8 - 7))
266 error ("BER variable integer overflow");
267
260 res = (res << 7) | (c & 0x7f); 268 res = (res << 7) | (c & 0x7f);
261 269
262 if (!(c & 0x80)) 270 if (!(c & 0x80))
263 return res; 271 return res;
264 }
265}
266 272
273 c = get_u8 ();
274 }
275}
276
267static U32 277static UV
268get_length (void) 278get_length (void)
269{ 279{
270 U32 res = get_u8 (); 280 UV res = get_u8 ();
271 281
272 if (res & 0x80) 282 if (res & 0x80)
273 { 283 {
274 int cnt = res & 0x7f; 284 int cnt = res & 0x7f;
275 res = 0; 285 res = 0;
276 286
277 switch (cnt) 287 switch (cnt)
278 { 288 {
279 case 0: 289 case 0:
280 error ("indefinite ASN.1 lengths not supported"); 290 error ("indefinite ASN.1 lengths not supported");
281 return 0; 291
292 case 0x7f:
293 error ("ASN.1 reserved value in length (X.690 8.1.3.5)");
282 294
283 default: 295 default:
284 error ("ASN.1 length too long"); 296 error ("ASN.1 length too long (only up to 2**64 octets supported)");
285 return 0;
286 297
298 case 8: res = (res << 8) | get_u8 ();
299 case 7: res = (res << 8) | get_u8 ();
300 case 6: res = (res << 8) | get_u8 ();
301 case 5: res = (res << 8) | get_u8 ();
287 case 4: res = (res << 8) | get_u8 (); 302 case 4: res = (res << 8) | get_u8 ();
288 case 3: res = (res << 8) | get_u8 (); 303 case 3: res = (res << 8) | get_u8 ();
289 case 2: res = (res << 8) | get_u8 (); 304 case 2: res = (res << 8) | get_u8 ();
290 case 1: res = (res << 8) | get_u8 (); 305 case 1: res = (res << 8) | get_u8 ();
291 } 306 }
293 308
294 return res; 309 return res;
295} 310}
296 311
297static SV * 312static SV *
298decode_int () 313decode_int (void)
299{ 314{
300 int len = get_length (); 315 UV len = get_length ();
301 316
302 if (len <= 0) 317 if (!len)
303 {
304 error ("integer length equal to zero"); 318 error ("invalid integer length equal to zero (X.690 8.3.1)");
305 return 0;
306 }
307 319
308 U8 *data = get_n (len); 320 U8 *data = get_n (len);
309 321
322 if (expect_false (len > 1))
323 {
324 U16 mask = (data [0] << 8) | data [1] & 0xff80;
325
326 if (expect_false (mask == 0xff80 || mask == 0x0000))
327 error ("illegal padding in integer (X.690 8.3.2)");
328 }
329
310 int negative = data [0] & 0x80; 330 int negative = data [0] & 0x80;
311 331
312 UV val = negative ? -1 : 0; // copy signbit to all bits 332 UV val = negative ? -1 : 0; // copy signbit to all bits
333
334 if (len > UVSIZE + (!negative && !*data))
335 //printf ("len %d > %d + (!%d && !%d) = %d\n", len, UVSIZE, negative, *data, UVSIZE + (!negative && !*data));//D
336 error ("INTEGER overflow");
313 337
314 do 338 do
315 val = (val << 8) | *data++; 339 val = (val << 8) | *data++;
316 while (--len); 340 while (--len);
317 341
318 // the cats to IV relies on implementation-defined behaviour (two's complement cast) 342 // the cast to IV relies on implementation-defined behaviour (two's complement cast)
319 // but that's ok, as perl relies on it as well. 343 // but that's ok, as perl relies on it as well.
320 return negative ? newSViv ((IV)val) : newSVuv (val); 344 return negative ? newSViv ((IV)val) : newSVuv (val);
321} 345}
322 346
323static SV * 347static SV *
324decode_data (void) 348decode_data (void)
325{ 349{
326 U32 len = get_length (); 350 UV len = get_length ();
327 U8 *data = get_n (len);
328 return newSVpvn ((char *)data, len); 351 return newSVpvn ((char *)get_n (len), len);
329} 352}
330 353
331// gelper for decode_object_identifier 354// helper for decode_object_identifier
332static char * 355static char *
333write_uv (char *buf, U32 u) 356write_uv (char *buf, UV u)
334{ 357{
335 // the one-digit case is absolutely predominant, so this pays off (hopefully) 358 // the one-digit case is absolutely predominant, so this pays off (hopefully)
336 if (expect_true (u < 10)) 359 if (expect_true (u < 10))
337 *buf++ = u + '0'; 360 *buf++ = u + '0';
338 else 361 else
339 { 362 {
363 // this *could* be done much faster using branchless fixed-point arithmetics
340 char *beg = buf; 364 char *beg = buf;
341 365
342 do 366 do
343 { 367 {
344 *buf++ = u % 10 + '0'; 368 *buf++ = u % 10 + '0';
345 u /= 10; 369 u /= 10;
346 } 370 }
347 while (u); 371 while (u);
348 372
349 // reverse digits 373 // reverse digits
350 for (char *ptr = buf; --ptr != beg; ++beg) 374 char *ptr = buf;
375 while (--ptr > beg)
351 { 376 {
352 char c = *ptr; 377 char c = *ptr;
353 *ptr = *beg; 378 *ptr = *beg;
354 *beg = c; 379 *beg = c;
380 ++beg;
355 } 381 }
356 } 382 }
357 383
358 return buf; 384 return buf;
359} 385}
360 386
361static SV * 387static SV *
362decode_oid (int relative) 388decode_oid (int relative)
363{ 389{
364 U32 len = get_length (); 390 UV len = get_length ();
365 391
366 if (len <= 0) 392 if (len <= 0)
367 { 393 {
368 error ("OBJECT IDENTIFIER length equal to zero"); 394 error ("OBJECT IDENTIFIER length equal to zero");
369 return &PL_sv_undef; 395 return &PL_sv_undef;
370 } 396 }
371 397
372 U8 *end = cur + len; 398 U8 *end = cur + len;
373 U32 w = get_w (); 399 UV w = get_w ();
374 400
375 static char oid[MAX_OID_STRLEN]; // must be static 401 static char oid[MAX_OID_STRLEN]; // static, because too large for stack
376 char *app = oid; 402 char *app = oid;
377 403
378 if (relative) 404 if (relative)
379 app = write_uv (app, w); 405 app = write_uv (app, w);
380 else 406 else if (w < 2 * 40)
381 { 407 {
382 app = write_uv (app, (U8)w / 40); 408 app = write_uv (app, (U8)w / 40);
383 *app++ = '.'; 409 *app++ = '.';
384 app = write_uv (app, (U8)w % 40); 410 app = write_uv (app, (U8)w % 40);
385 } 411 }
412 else
413 {
414 app = write_uv (app, 2);
415 *app++ = '.';
416 app = write_uv (app, w - 2 * 40);
417 }
386 418
419 while (cur < end)
420 {
387 // we assume an oid component is never > 64 bytes 421 // we assume an oid component is never > 64 digits
388 while (cur < end && oid + sizeof (oid) - app > 64) 422 if (oid + sizeof (oid) - app < 64)
389 { 423 croak ("BER_TYPE_OID to long to decode");
424
390 w = get_w (); 425 w = get_w ();
391 *app++ = '.'; 426 *app++ = '.';
392 app = write_uv (app, w); 427 app = write_uv (app, w);
393 } 428 }
394 429
395 return newSVpvn (oid, app - oid); 430 return newSVpvn (oid, app - oid);
396} 431}
397 432
433// TODO: this is unacceptably slow
398static SV * 434static SV *
435decode_ucs (int chrsize)
436{
437 SV *res = NEWSV (0, 0);
438
439 UV len = get_length ();
440
441 if (len & (chrsize - 1))
442 croak ("BER_TYPE_UCS has an invalid number of octets (%d)", len);
443
444 while (len)
445 {
446 U8 b1 = get_u8 ();
447 U8 b2 = get_u8 ();
448 U32 chr = (b1 << 8) | b2;
449
450 if (chrsize == 4)
451 {
452 U8 b3 = get_u8 ();
453 U8 b4 = get_u8 ();
454 chr = (chr << 16) | (b3 << 8) | b4;
455 }
456
457 U8 uchr [UTF8_MAXBYTES];
458 int uclen = uvuni_to_utf8 (uchr, chr) - uchr;
459
460 sv_catpvn (res, (const char *)uchr, uclen);
461 len -= chrsize;
462 }
463
464 SvUTF8_on (res);
465
466 return res;
467}
468
469static SV *
399decode_ber () 470decode_ber (void)
400{ 471{
401 int identifier = get_u8 (); 472 int identifier = get_u8 ();
402 473
403 SV *res; 474 SV *res;
404 475
407 int tag = identifier & ASN_TAG_MASK; 478 int tag = identifier & ASN_TAG_MASK;
408 479
409 if (tag == ASN_TAG_BER) 480 if (tag == ASN_TAG_BER)
410 tag = get_w (); 481 tag = get_w ();
411 482
412 if (tag == ASN_TAG_BER)
413 tag = get_w ();
414
415 if (constructed) 483 if (constructed)
416 { 484 {
417 U32 len = get_length (); 485 UV len = get_length ();
418 U32 seqend = (cur - buf) + len; 486 UV seqend = (cur - buf) + len;
419 AV *av = (AV *)sv_2mortal ((SV *)newAV ()); 487 AV *av = (AV *)sv_2mortal ((SV *)newAV ());
420 488
421 while (cur < buf + seqend) 489 while (cur < buf + seqend)
422 av_push (av, decode_ber ()); 490 av_push (av, decode_ber ());
423 491
424 if (cur > buf + seqend) 492 if (cur > buf + seqend)
425 croak ("constructed type %02x overflow (%x %x)\n", identifier, cur - buf, seqend); 493 croak ("constructed type %02x length overflow (0x%x 0x%x)\n", identifier, (int)(cur - buf), (int)seqend);
426 494
427 res = newRV_inc ((SV *)av); 495 res = newRV_inc ((SV *)av);
428 } 496 }
429 else 497 else
430 switch (profile_lookup (cur_profile, klass, tag)) 498 switch (profile_lookup (cur_profile, klass, tag))
431 { 499 {
432 case BER_TYPE_NULL: 500 case BER_TYPE_NULL:
501 {
502 UV len = get_length ();
503
504 if (len)
505 croak ("BER_TYPE_NULL value with non-zero length %d encountered (X.690 8.8.2)", len);
506
433 res = &PL_sv_undef; 507 res = &PL_sv_undef;
508 }
434 break; 509 break;
435 510
436 case BER_TYPE_BOOL: 511 case BER_TYPE_BOOL:
437 { 512 {
438 U32 len = get_length (); 513 UV len = get_length ();
439 514
440 if (len != 1) 515 if (len != 1)
441 croak ("BOOLEAN type with invalid length %d encountered", len); 516 croak ("BER_TYPE_BOOLEAN value with invalid length %d encountered (X.690 8.2.1)", len);
442 517
443 res = newSVcacheint (get_u8 () ? 0 : 1); 518 res = newSVcacheint (!!get_u8 ());
444 } 519 }
445 break; 520 break;
446 521
447 case BER_TYPE_OID: 522 case BER_TYPE_OID:
448 res = decode_oid (0); 523 res = decode_oid (0);
463 538
464 case BER_TYPE_BYTES: 539 case BER_TYPE_BYTES:
465 res = decode_data (); 540 res = decode_data ();
466 break; 541 break;
467 542
543 case BER_TYPE_IPADDRESS:
544 {
545 UV len = get_length ();
546
547 if (len != 4)
548 croak ("BER_TYPE_IPADDRESS type with invalid length %d encountered (RFC 2578 7.1.5)", len);
549
550 U8 c1 = get_u8 ();
551 U8 c2 = get_u8 ();
552 U8 c3 = get_u8 ();
553 U8 c4 = get_u8 ();
554
555 res = newSVpvf ("%d.%d.%d.%d", c1, c2, c3, c4);
556 }
557 break;
558
559 case BER_TYPE_UCS2:
560 res = decode_ucs (2);
561 break;
562
563 case BER_TYPE_UCS4:
564 res = decode_ucs (4);
565 break;
566
468 case BER_TYPE_REAL: 567 case BER_TYPE_REAL:
469 case BER_TYPE_UCS2:
470 case BER_TYPE_UCS4:
471 case BER_TYPE_CROAK: 568 case BER_TYPE_CROAK:
472 default: 569 default:
473 croak ("unconfigured/unsupported class/tag %d/%d", klass, tag); 570 croak ("unconfigured/unsupported class/tag %d/%d", klass, tag);
474 } 571 }
475 572
476 AV *av = newAV (); 573 AV *av = newAV ();
477 av_fill (av, BER_ARRAYSIZE - 1); 574 av_fill (av, BER_ARRAYSIZE - 1);
478 AvARRAY (av)[BER_CLASS ] = newSVcacheint (klass); 575 AvARRAY (av)[BER_CLASS] = newSVcacheint (klass);
479 AvARRAY (av)[BER_TAG ] = newSVcacheint (tag); 576 AvARRAY (av)[BER_TAG ] = newSVcacheint (tag);
480 AvARRAY (av)[BER_CONSTRUCTED] = newSVcacheint (constructed ? 1 : 0); 577 AvARRAY (av)[BER_FLAGS] = newSVcacheint (constructed ? 1 : 0);
481 AvARRAY (av)[BER_DATA ] = res; 578 AvARRAY (av)[BER_DATA ] = res;
482 579
483 return newRV_noinc ((SV *)av); 580 return newRV_noinc ((SV *)av);
484} 581}
485 582
486///////////////////////////////////////////////////////////////////////////// 583/////////////////////////////////////////////////////////////////////////////
491strlen_sum (STRLEN l1, STRLEN l2) 588strlen_sum (STRLEN l1, STRLEN l2)
492{ 589{
493 size_t sum = l1 + l2; 590 size_t sum = l1 + l2;
494 591
495 if (sum < (size_t)l2 || sum != (size_t)(STRLEN)sum) 592 if (sum < (size_t)l2 || sum != (size_t)(STRLEN)sum)
496 croak ("JSON::XS: string size overflow"); 593 croak ("Convert::BER::XS: string size overflow");
497 594
498 return sum; 595 return sum;
499} 596}
500 597
501static void 598static void
502set_buf (SV *sv) 599set_buf (SV *sv)
503{ 600{
504 STRLEN len; 601 STRLEN len;
505 buf_sv = sv; 602 buf_sv = sv;
506 buf = SvPVbyte (buf_sv, len); 603 buf = (U8 *)SvPVbyte (buf_sv, len);
507 cur = buf; 604 cur = buf;
508 end = buf + len; 605 end = buf + len;
509} 606}
510 607
511/* similar to SvGROW, but somewhat safer and guarantees exponential realloc strategy */ 608/* similar to SvGROW, but somewhat safer and guarantees exponential realloc strategy */
525need (STRLEN len) 622need (STRLEN len)
526{ 623{
527 if (expect_false ((uintptr_t)(end - cur) < len)) 624 if (expect_false ((uintptr_t)(end - cur) < len))
528 { 625 {
529 STRLEN pos = cur - buf; 626 STRLEN pos = cur - buf;
530 buf = my_sv_grow (buf_sv, pos, len); 627 buf = (U8 *)my_sv_grow (buf_sv, pos, len);
531 cur = buf + pos; 628 cur = buf + pos;
532 end = buf + SvLEN (buf_sv) - 1; 629 end = buf + SvLEN (buf_sv) - 1;
533 } 630 }
534} 631}
535 632
539 need (1); 636 need (1);
540 *cur++ = val; 637 *cur++ = val;
541} 638}
542 639
543static void 640static void
544put_w_nocheck (U32 val) 641put_w_nocheck (UV val)
545{ 642{
643#if UVSIZE > 4
644 *cur = (val >> 7 * 9) | 0x80; cur += val >= ((UV)1 << (7 * 9));
645 *cur = (val >> 7 * 8) | 0x80; cur += val >= ((UV)1 << (7 * 8));
646 *cur = (val >> 7 * 7) | 0x80; cur += val >= ((UV)1 << (7 * 7));
647 *cur = (val >> 7 * 6) | 0x80; cur += val >= ((UV)1 << (7 * 6));
648 *cur = (val >> 7 * 5) | 0x80; cur += val >= ((UV)1 << (7 * 5));
649#endif
546 *cur = (val >> 7 * 4) | 0x80; cur += val >= (1 << (7 * 4)); 650 *cur = (val >> 7 * 4) | 0x80; cur += val >= ((UV)1 << (7 * 4));
547 *cur = (val >> 7 * 3) | 0x80; cur += val >= (1 << (7 * 3)); 651 *cur = (val >> 7 * 3) | 0x80; cur += val >= ((UV)1 << (7 * 3));
548 *cur = (val >> 7 * 2) | 0x80; cur += val >= (1 << (7 * 2)); 652 *cur = (val >> 7 * 2) | 0x80; cur += val >= ((UV)1 << (7 * 2));
549 *cur = (val >> 7 * 1) | 0x80; cur += val >= (1 << (7 * 1)); 653 *cur = (val >> 7 * 1) | 0x80; cur += val >= ((UV)1 << (7 * 1));
550 *cur = val & 0x7f; cur += 1; 654 *cur = val & 0x7f; cur += 1;
551} 655}
552 656
553static void 657static void
554put_w (U32 val) 658put_w (UV val)
555{ 659{
556 need (5); // we only handle up to 5 bytes 660 need (5); // we only handle up to 5 bytes
557 661
558 put_w_nocheck (val); 662 put_w_nocheck (val);
559} 663}
560 664
561static U8 * 665static U8 *
562put_length_at (U32 val, U8 *cur) 666put_length_at (UV val, U8 *cur)
563{ 667{
564 if (val < 0x7fU) 668 if (val < 0x7fU)
565 *cur++ = val; 669 *cur++ = val;
566 else 670 else
567 { 671 {
568 U8 *lenb = cur++; 672 U8 *lenb = cur++;
569 673
674#if UVSIZE > 4
675 *cur = val >> 56; cur += *cur > 0;
676 *cur = val >> 48; cur += *cur > 0;
677 *cur = val >> 40; cur += *cur > 0;
678 *cur = val >> 32; cur += *cur > 0;
679#endif
570 *cur = val >> 24; cur += *cur > 0; 680 *cur = val >> 24; cur += *cur > 0;
571 *cur = val >> 16; cur += *cur > 0; 681 *cur = val >> 16; cur += *cur > 0;
572 *cur = val >> 8; cur += *cur > 0; 682 *cur = val >> 8; cur += *cur > 0;
573 *cur = val ; cur += 1; 683 *cur = val ; cur += 1;
574 684
577 687
578 return cur; 688 return cur;
579} 689}
580 690
581static void 691static void
582put_length (U32 val) 692put_length (UV val)
583{ 693{
584 need (5); 694 need (5 + val);
585 cur = put_length_at (val, cur); 695 cur = put_length_at (val, cur);
586} 696}
587 697
588// return how many bytes the encoded length requires 698// return how many bytes the encoded length requires
589static int length_length (U32 val) 699static int length_length (UV val)
590{ 700{
591 return val < 0x7fU 701 return val < 0x7fU
592 ? 1 702 ? 1
593 : 2 + (val > 0xffU) + (val > 0xffffU) + (val > 0xffffffU); 703 : 2
704 + (val > 0xffU)
705 + (val > 0xffffU)
706 + (val > 0xffffffU)
707#if UVSIZE > 4
708 + (val > 0xffffffffU)
709 + (val > 0xffffffffffU)
710 + (val > 0xffffffffffffU)
711 + (val > 0xffffffffffffffU)
712#endif
713 ;
594} 714}
595 715
596static void 716static void
597encode_data (const char *ptr, STRLEN len) 717encode_data (const char *ptr, STRLEN len)
598{ 718{
599 put_length (len); 719 put_length (len);
600 need (len);
601 memcpy (cur, ptr, len); 720 memcpy (cur, ptr, len);
602 cur += len; 721 cur += len;
603} 722}
604 723
605static void 724static void
661 780
662 *lenb = cur - lenb - 1; 781 *lenb = cur - lenb - 1;
663} 782}
664 783
665// we don't know the length yet, so we optimistically 784// we don't know the length yet, so we optimistically
666// assume the length will need one octet later. if that 785// assume the length will need one octet later. If that
667// turns out to be wrong, we memove as needed. 786// turns out to be wrong, we memmove as needed.
668// mark the beginning 787// mark the beginning
669static STRLEN 788static STRLEN
670len_fixup_mark () 789len_fixup_mark (void)
671{ 790{
672 return cur++ - buf; 791 return cur++ - buf;
673} 792}
674 793
675// patch up the length 794// patch up the length
751 870
752 return (AV *)rv; 871 return (AV *)rv;
753} 872}
754 873
755static void 874static void
875encode_ucs (SV *data, int chrsize)
876{
877 STRLEN uchars = sv_len_utf8 (data);
878 STRLEN len;;
879 char *ptr = SvPVutf8 (data, len);
880
881 put_length (uchars * chrsize);
882
883 while (uchars--)
884 {
885 STRLEN uclen;
886 UV uchr = utf8_to_uvchr_buf ((U8 *)ptr, (U8 *)ptr + len, &uclen);
887
888 ptr += uclen;
889 len -= uclen;
890
891 if (chrsize == 4)
892 {
893 *cur++ = uchr >> 24;
894 *cur++ = uchr >> 16;
895 }
896
897 *cur++ = uchr >> 8;
898 *cur++ = uchr;
899 }
900}
901static void
756encode_ber (SV *tuple) 902encode_ber (SV *tuple)
757{ 903{
758 AV *av = ber_tuple (tuple); 904 AV *av = ber_tuple (tuple);
759 905
760 int klass = SvIV (AvARRAY (av)[BER_CLASS]); 906 int klass = SvIV (AvARRAY (av)[BER_CLASS]);
761 int tag = SvIV (AvARRAY (av)[BER_TAG]); 907 int tag = SvIV (AvARRAY (av)[BER_TAG]);
762 int constructed = SvIV (AvARRAY (av)[BER_CONSTRUCTED]) ? ASN_CONSTRUCTED : 0; 908 int constructed = SvIV (AvARRAY (av)[BER_FLAGS]) & 1 ? ASN_CONSTRUCTED : 0;
763 SV *data = AvARRAY (av)[BER_DATA]; 909 SV *data = AvARRAY (av)[BER_DATA];
764 910
765 int identifier = (klass << ASN_CLASS_SHIFT) | constructed; 911 int identifier = (klass << ASN_CLASS_SHIFT) | constructed;
766 912
767 if (expect_false (tag >= ASN_TAG_BER)) 913 if (expect_false (tag >= ASN_TAG_BER))
786 int fill = AvFILL (av); 932 int fill = AvFILL (av);
787 933
788 if (expect_false (SvRMAGICAL (av))) 934 if (expect_false (SvRMAGICAL (av)))
789 croak ("BER constructed data must not be tied"); 935 croak ("BER constructed data must not be tied");
790 936
937 int i;
791 for (int i = 0; i <= fill; ++i) 938 for (i = 0; i <= fill; ++i)
792 encode_ber (AvARRAY (av)[i]); 939 encode_ber (AvARRAY (av)[i]);
793 940
794 len_fixup (mark); 941 len_fixup (mark);
795 } 942 }
796 else 943 else
800 put_length (0); 947 put_length (0);
801 break; 948 break;
802 949
803 case BER_TYPE_BOOL: 950 case BER_TYPE_BOOL:
804 put_length (1); 951 put_length (1);
805 put_u8 (SvTRUE (data) ? 0xff : 0x00); 952 *cur++ = SvTRUE (data) ? 0xff : 0x00; // 0xff = DER/CER
806 break; 953 break;
807 954
808 case BER_TYPE_OID: 955 case BER_TYPE_OID:
809 encode_oid (data, 0); 956 encode_oid (data, 0);
810 break; 957 break;
831 const char *ptr = SvPVutf8 (data, len); 978 const char *ptr = SvPVutf8 (data, len);
832 encode_data (ptr, len); 979 encode_data (ptr, len);
833 } 980 }
834 break; 981 break;
835 982
983 case BER_TYPE_IPADDRESS:
984 {
985 U8 ip[4];
986 sscanf (SvPV_nolen (data), "%hhu.%hhu.%hhu.%hhu", ip + 0, ip + 1, ip + 2, ip + 3);
987 encode_data ((const char *)ip, sizeof (ip));
988 }
989 break;
990
991 case BER_TYPE_UCS2:
992 encode_ucs (data, 2);
993 break;
994
995 case BER_TYPE_UCS4:
996 encode_ucs (data, 4);
997 break;
998
836 case BER_TYPE_REAL: 999 case BER_TYPE_REAL:
837 case BER_TYPE_UCS2:
838 case BER_TYPE_UCS4:
839 case BER_TYPE_CROAK: 1000 case BER_TYPE_CROAK:
840 default: 1001 default:
841 croak ("unconfigured/unsupported class/tag %d/%d", klass, tag); 1002 croak ("unconfigured/unsupported class/tag %d/%d", klass, tag);
842 } 1003 }
843 1004
859 const char *name; 1020 const char *name;
860 IV iv; 1021 IV iv;
861 } *civ, const_iv[] = { 1022 } *civ, const_iv[] = {
862#define const_iv(name) { # name, name }, 1023#define const_iv(name) { # name, name },
863 const_iv (ASN_BOOLEAN) 1024 const_iv (ASN_BOOLEAN)
864 const_iv (ASN_INTEGER32) 1025 const_iv (ASN_INTEGER)
865 const_iv (ASN_BIT_STRING) 1026 const_iv (ASN_BIT_STRING)
866 const_iv (ASN_OCTET_STRING) 1027 const_iv (ASN_OCTET_STRING)
867 const_iv (ASN_NULL) 1028 const_iv (ASN_NULL)
868 const_iv (ASN_OBJECT_IDENTIFIER) 1029 const_iv (ASN_OBJECT_IDENTIFIER)
869 const_iv (ASN_OBJECT_DESCRIPTOR) 1030 const_iv (ASN_OBJECT_DESCRIPTOR)
898 const_iv (ASN_CONTEXT) 1059 const_iv (ASN_CONTEXT)
899 const_iv (ASN_PRIVATE) 1060 const_iv (ASN_PRIVATE)
900 1061
901 const_iv (BER_CLASS) 1062 const_iv (BER_CLASS)
902 const_iv (BER_TAG) 1063 const_iv (BER_TAG)
903 const_iv (BER_CONSTRUCTED) 1064 const_iv (BER_FLAGS)
904 const_iv (BER_DATA) 1065 const_iv (BER_DATA)
905 1066
906 const_iv (BER_TYPE_BYTES) 1067 const_iv (BER_TYPE_BYTES)
907 const_iv (BER_TYPE_UTF8) 1068 const_iv (BER_TYPE_UTF8)
908 const_iv (BER_TYPE_UCS2) 1069 const_iv (BER_TYPE_UCS2)
911 const_iv (BER_TYPE_OID) 1072 const_iv (BER_TYPE_OID)
912 const_iv (BER_TYPE_RELOID) 1073 const_iv (BER_TYPE_RELOID)
913 const_iv (BER_TYPE_NULL) 1074 const_iv (BER_TYPE_NULL)
914 const_iv (BER_TYPE_BOOL) 1075 const_iv (BER_TYPE_BOOL)
915 const_iv (BER_TYPE_REAL) 1076 const_iv (BER_TYPE_REAL)
1077 const_iv (BER_TYPE_IPADDRESS)
916 const_iv (BER_TYPE_CROAK) 1078 const_iv (BER_TYPE_CROAK)
917 1079
918 const_iv (SNMP_IPADDRESS) 1080 const_iv (SNMP_IPADDRESS)
919 const_iv (SNMP_COUNTER32) 1081 const_iv (SNMP_COUNTER32)
1082 const_iv (SNMP_GAUGE32)
920 const_iv (SNMP_UNSIGNED32) 1083 const_iv (SNMP_UNSIGNED32)
921 const_iv (SNMP_TIMETICKS) 1084 const_iv (SNMP_TIMETICKS)
922 const_iv (SNMP_OPAQUE) 1085 const_iv (SNMP_OPAQUE)
923 const_iv (SNMP_COUNTER64) 1086 const_iv (SNMP_COUNTER64)
924
925 }; 1087 };
926 1088
927 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--) 1089 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--)
928 newCONSTSUB (stash, (char *)civ[-1].name, newSViv (civ[-1].iv)); 1090 newCONSTSUB (stash, (char *)civ[-1].name, newSViv (civ[-1].iv));
929
930 default_profile = profile_new ();
931} 1091}
932 1092
933SV * 1093void
934ber_decode (SV *ber, SV *profile = &PL_sv_undef) 1094ber_decode (SV *ber, SV *profile = &PL_sv_undef)
1095 ALIAS:
1096 ber_decode_prefix = 1
935 CODE: 1097 PPCODE:
936{ 1098{
937 cur_profile = SvPROFILE (profile); 1099 cur_profile = SvPROFILE (profile);
938 STRLEN len; 1100 STRLEN len;
939 buf = SvPVbyte (ber, len); 1101 buf = (U8 *)SvPVbyte (ber, len);
940 cur = buf; 1102 cur = buf;
941 end = buf + len; 1103 end = buf + len;
942 1104
943 RETVAL = decode_ber (); 1105 SV *tuple = decode_ber ();
1106
1107 EXTEND (SP, 2);
1108 PUSHs (sv_2mortal (tuple));
1109
1110 if (ix)
1111 PUSHs (sv_2mortal (newSViv (cur - buf)));
1112 else if (cur != end)
1113 error ("trailing garbage after BER data");
944} 1114}
945 OUTPUT: RETVAL
946 1115
947void 1116void
948ber_is (SV *tuple, SV *klass = &PL_sv_undef, SV *tag = &PL_sv_undef, SV *constructed = &PL_sv_undef, SV *data = &PL_sv_undef) 1117ber_is (SV *tuple, SV *klass = &PL_sv_undef, SV *tag = &PL_sv_undef, SV *flags = &PL_sv_undef, SV *data = &PL_sv_undef)
949 PPCODE: 1118 PPCODE:
950{ 1119{
951 if (!SvOK (tuple)) 1120 if (!SvOK (tuple))
952 XSRETURN_NO; 1121 XSRETURN_NO;
953 1122
955 croak ("ber_is: tuple must be BER tuple (array-ref)"); 1124 croak ("ber_is: tuple must be BER tuple (array-ref)");
956 1125
957 AV *av = (AV *)SvRV (tuple); 1126 AV *av = (AV *)SvRV (tuple);
958 1127
959 XPUSHs ( 1128 XPUSHs (
960 (!SvOK (klass) || SvIV (AvARRAY (av)[BER_CLASS ]) == SvIV (klass)) 1129 (!SvOK (klass) || SvIV (AvARRAY (av)[BER_CLASS]) == SvIV (klass))
961 && (!SvOK (tag) || SvIV (AvARRAY (av)[BER_TAG ]) == SvIV (tag)) 1130 && (!SvOK (tag) || SvIV (AvARRAY (av)[BER_TAG ]) == SvIV (tag))
962 && (!SvOK (constructed) || !SvIV (AvARRAY (av)[BER_CONSTRUCTED]) == !SvIV (constructed)) 1131 && (!SvOK (flags) || !SvIV (AvARRAY (av)[BER_FLAGS]) == !SvIV (flags))
963 && (!SvOK (data) || sv_eq (AvARRAY (av)[BER_DATA ], data)) 1132 && (!SvOK (data) || sv_eq (AvARRAY (av)[BER_DATA ], data))
964 ? &PL_sv_yes : &PL_sv_undef); 1133 ? &PL_sv_yes : &PL_sv_undef);
965} 1134}
966 1135
967void 1136void
968ber_is_seq (SV *tuple) 1137ber_is_seq (SV *tuple)
972 XSRETURN_UNDEF; 1141 XSRETURN_UNDEF;
973 1142
974 AV *av = ber_tuple (tuple); 1143 AV *av = ber_tuple (tuple);
975 1144
976 XPUSHs ( 1145 XPUSHs (
977 SvIV (AvARRAY (av)[BER_CLASS ]) == ASN_UNIVERSAL 1146 SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL
978 && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_SEQUENCE 1147 && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_SEQUENCE
979 && SvIV (AvARRAY (av)[BER_CONSTRUCTED]) 1148 && SvIV (AvARRAY (av)[BER_FLAGS])
980 ? AvARRAY (av)[BER_DATA] : &PL_sv_undef); 1149 ? AvARRAY (av)[BER_DATA] : &PL_sv_undef);
981} 1150}
982 1151
983void 1152void
984ber_is_i32 (SV *tuple, SV *value = &PL_sv_undef) 1153ber_is_int (SV *tuple, SV *value = &PL_sv_undef)
985 PPCODE: 1154 PPCODE:
986{ 1155{
987 if (!SvOK (tuple)) 1156 if (!SvOK (tuple))
988 XSRETURN_NO; 1157 XSRETURN_NO;
989 1158
990 AV *av = ber_tuple (tuple); 1159 AV *av = ber_tuple (tuple);
991 1160
992 IV data = SvIV (AvARRAY (av)[BER_DATA]); 1161 UV data = SvUV (AvARRAY (av)[BER_DATA]);
993 1162
994 XPUSHs ( 1163 XPUSHs (
995 SvIV (AvARRAY (av)[BER_CLASS ]) == ASN_UNIVERSAL 1164 SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL
996 && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_INTEGER32 1165 && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_INTEGER
997 && !SvIV (AvARRAY (av)[BER_CONSTRUCTED]) 1166 && !SvIV (AvARRAY (av)[BER_FLAGS])
998 && (!SvOK (value) || data == SvIV (value)) 1167 && (!SvOK (value) || data == SvUV (value))
999 ? sv_2mortal (data ? newSViv (data) : newSVpv ("0 but true", 0)) 1168 ? sv_2mortal (data ? newSVsv (AvARRAY (av)[BER_DATA]) : newSVpv ("0 but true", 0))
1000 : &PL_sv_undef); 1169 : &PL_sv_undef);
1001} 1170}
1002 1171
1003void 1172void
1004ber_is_oid (SV *tuple, SV *oid = &PL_sv_undef) 1173ber_is_oid (SV *tuple, SV *oid = &PL_sv_undef)
1008 XSRETURN_NO; 1177 XSRETURN_NO;
1009 1178
1010 AV *av = ber_tuple (tuple); 1179 AV *av = ber_tuple (tuple);
1011 1180
1012 XPUSHs ( 1181 XPUSHs (
1013 SvIV (AvARRAY (av)[BER_CLASS ]) == ASN_UNIVERSAL 1182 SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL
1014 && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_OBJECT_IDENTIFIER 1183 && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_OBJECT_IDENTIFIER
1015 && !SvIV (AvARRAY (av)[BER_CONSTRUCTED]) 1184 && !SvIV (AvARRAY (av)[BER_FLAGS])
1016 && (!SvOK (oid) || sv_eq (AvARRAY (av)[BER_DATA], oid)) 1185 && (!SvOK (oid) || sv_eq (AvARRAY (av)[BER_DATA], oid))
1017 ? newSVsv (AvARRAY (av)[BER_DATA]) : &PL_sv_undef); 1186 ? newSVsv (AvARRAY (av)[BER_DATA]) : &PL_sv_undef);
1018} 1187}
1019 1188
1020############################################################################# 1189#############################################################################
1033 SvCUR_set (buf_sv, cur - buf); 1202 SvCUR_set (buf_sv, cur - buf);
1034 XPUSHs (buf_sv); 1203 XPUSHs (buf_sv);
1035} 1204}
1036 1205
1037SV * 1206SV *
1038ber_i32 (IV iv) 1207ber_int (SV *sv)
1039 CODE: 1208 CODE:
1040{ 1209{
1041 AV *av = newAV (); 1210 AV *av = newAV ();
1042 av_fill (av, BER_ARRAYSIZE - 1); 1211 av_fill (av, BER_ARRAYSIZE - 1);
1043 AvARRAY (av)[BER_CLASS ] = newSVcacheint (ASN_UNIVERSAL); 1212 AvARRAY (av)[BER_CLASS] = newSVcacheint (ASN_UNIVERSAL);
1044 AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_INTEGER32); 1213 AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_INTEGER);
1045 AvARRAY (av)[BER_CONSTRUCTED] = newSVcacheint (0); 1214 AvARRAY (av)[BER_FLAGS] = newSVcacheint (0);
1046 AvARRAY (av)[BER_DATA ] = newSViv (iv); 1215 AvARRAY (av)[BER_DATA ] = newSVsv (sv);
1047 RETVAL = newRV_noinc ((SV *)av); 1216 RETVAL = newRV_noinc ((SV *)av);
1048} 1217}
1049 OUTPUT: RETVAL 1218 OUTPUT: RETVAL
1050 1219
1051# TODO: not arrayref, but elements? 1220# TODO: not arrayref, but elements?
1053ber_seq (SV *arrayref) 1222ber_seq (SV *arrayref)
1054 CODE: 1223 CODE:
1055{ 1224{
1056 AV *av = newAV (); 1225 AV *av = newAV ();
1057 av_fill (av, BER_ARRAYSIZE - 1); 1226 av_fill (av, BER_ARRAYSIZE - 1);
1058 AvARRAY (av)[BER_CLASS ] = newSVcacheint (ASN_UNIVERSAL); 1227 AvARRAY (av)[BER_CLASS] = newSVcacheint (ASN_UNIVERSAL);
1059 AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_SEQUENCE); 1228 AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_SEQUENCE);
1060 AvARRAY (av)[BER_CONSTRUCTED] = newSVcacheint (1); 1229 AvARRAY (av)[BER_FLAGS] = newSVcacheint (1);
1061 AvARRAY (av)[BER_DATA ] = newSVsv (arrayref); 1230 AvARRAY (av)[BER_DATA ] = newSVsv (arrayref);
1062 RETVAL = newRV_noinc ((SV *)av); 1231 RETVAL = newRV_noinc ((SV *)av);
1063} 1232}
1064 OUTPUT: RETVAL 1233 OUTPUT: RETVAL
1065 1234
1066MODULE = Convert::BER::XS PACKAGE = Convert::BER::XS::Profile 1235MODULE = Convert::BER::XS PACKAGE = Convert::BER::XS::Profile
1069new (SV *klass) 1238new (SV *klass)
1070 CODE: 1239 CODE:
1071 RETVAL = profile_new (); 1240 RETVAL = profile_new ();
1072 OUTPUT: RETVAL 1241 OUTPUT: RETVAL
1073 1242
1243void
1244set (SV *profile, int klass, int tag, int type)
1245 CODE:
1246 profile_set (SvPROFILE (profile), klass, tag, type);
1247
1248IV
1249get (SV *profile, int klass, int tag)
1250 CODE:
1251 RETVAL = profile_lookup (SvPROFILE (profile), klass, tag);
1252 OUTPUT: RETVAL
1253
1254void
1255_set_default (SV *profile)
1256 CODE:
1257 default_profile = SvPROFILE (profile);
1258
1259

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