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Revision: 1.23
Committed: Sun Apr 21 01:51:12 2019 UTC (5 years, 1 month ago) by root
Branch: MAIN
Changes since 1.22: +8 -1 lines
Log Message:
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File Contents

# User Rev Content
1 root 1.1 #include "EXTERN.h"
2     #include "perl.h"
3     #include "XSUB.h"
4    
5 root 1.12 // C99 required!
6     // this is not just for comments, but also for
7     // integer constant semantics,
8     // sscanf format modifiers and more.
9 root 1.1
10     enum {
11     // ASN_TAG
12     ASN_BOOLEAN = 0x01,
13 root 1.15 ASN_INTEGER = 0x02,
14 root 1.1 ASN_BIT_STRING = 0x03,
15     ASN_OCTET_STRING = 0x04,
16     ASN_NULL = 0x05,
17     ASN_OBJECT_IDENTIFIER = 0x06,
18 root 1.8 ASN_OID = 0x06,
19     ASN_OBJECT_DESCRIPTOR = 0x07,
20     ASN_EXTERNAL = 0x08,
21     ASN_REAL = 0x09,
22     ASN_ENUMERATED = 0x0a,
23     ASN_EMBEDDED_PDV = 0x0b,
24     ASN_UTF8_STRING = 0x0c,
25     ASN_RELATIVE_OID = 0x0d,
26 root 1.1 ASN_SEQUENCE = 0x10,
27 root 1.8 ASN_SET = 0x11,
28     ASN_NUMERIC_STRING = 0x12,
29     ASN_PRINTABLE_STRING = 0x13,
30     ASN_TELETEX_STRING = 0x14,
31     ASN_T61_STRING = 0x14,
32     ASN_VIDEOTEX_STRING = 0x15,
33     ASN_IA5_STRING = 0x16,
34     ASN_ASCII_STRING = 0x16,
35     ASN_UTC_TIME = 0x17,
36     ASN_GENERALIZED_TIME = 0x18,
37     ASN_GRAPHIC_STRING = 0x19,
38     ASN_VISIBLE_STRING = 0x1a,
39     ASN_ISO646_STRING = 0x1a,
40     ASN_GENERAL_STRING = 0x1b,
41     ASN_UNIVERSAL_STRING = 0x1c,
42     ASN_CHARACTER_STRING = 0x1d,
43     ASN_BMP_STRING = 0x1e,
44 root 1.1
45     ASN_TAG_BER = 0x1f,
46     ASN_TAG_MASK = 0x1f,
47    
48     // primitive/constructed
49     ASN_CONSTRUCTED = 0x20,
50    
51     // ASN_CLASS
52     ASN_UNIVERSAL = 0x00,
53 root 1.5 ASN_APPLICATION = 0x01,
54     ASN_CONTEXT = 0x02,
55     ASN_PRIVATE = 0x03,
56 root 1.1
57     ASN_CLASS_MASK = 0xc0,
58     ASN_CLASS_SHIFT = 6,
59    
60 root 1.2 // ASN_APPLICATION SNMP
61 root 1.3 SNMP_IPADDRESS = 0x00,
62     SNMP_COUNTER32 = 0x01,
63 root 1.21 SNMP_GAUGE32 = 0x02,
64 root 1.3 SNMP_UNSIGNED32 = 0x02,
65     SNMP_TIMETICKS = 0x03,
66     SNMP_OPAQUE = 0x04,
67     SNMP_COUNTER64 = 0x06,
68 root 1.1 };
69    
70     enum {
71 root 1.5 BER_TYPE_BYTES,
72     BER_TYPE_UTF8,
73     BER_TYPE_UCS2,
74     BER_TYPE_UCS4,
75     BER_TYPE_INT,
76     BER_TYPE_OID,
77     BER_TYPE_RELOID,
78     BER_TYPE_NULL,
79     BER_TYPE_BOOL,
80     BER_TYPE_REAL,
81 root 1.6 BER_TYPE_IPADDRESS,
82 root 1.5 BER_TYPE_CROAK,
83     };
84    
85     enum {
86 root 1.16 BER_CLASS = 0,
87     BER_TAG = 1,
88     BER_FLAGS = 2,
89     BER_DATA = 3,
90 root 1.1 BER_ARRAYSIZE
91     };
92    
93     #define MAX_OID_STRLEN 4096
94    
95 root 1.5 typedef void profile_type;
96    
97     static profile_type *cur_profile, *default_profile;
98 root 1.3 static SV *buf_sv; // encoding buffer
99     static U8 *buf, *cur, *end; // buffer start, current, end
100    
101 root 1.9 #if PERL_VERSION < 18
102     # define utf8_to_uvchr_buf(s,e,l) utf8_to_uvchr (s, l)
103     #endif
104    
105 root 1.3 #if __GNUC__ >= 3
106     # define expect(expr,value) __builtin_expect ((expr), (value))
107     # define INLINE static inline
108     #else
109     # define expect(expr,value) (expr)
110     # define INLINE static
111     #endif
112    
113     #define expect_false(expr) expect ((expr) != 0, 0)
114     #define expect_true(expr) expect ((expr) != 0, 1)
115 root 1.1
116 root 1.5 /////////////////////////////////////////////////////////////////////////////
117    
118     static SV *sviv_cache[32];
119    
120 root 1.1 // for "small" integers, return a readonly sv, otherwise create a new one
121     static SV *newSVcacheint (int val)
122     {
123 root 1.5 if (expect_false (val < 0 || val >= sizeof (sviv_cache)))
124 root 1.1 return newSViv (val);
125    
126 root 1.5 if (expect_false (!sviv_cache [val]))
127 root 1.1 {
128 root 1.5 sviv_cache [val] = newSVuv (val);
129     SvREADONLY_on (sviv_cache [val]);
130 root 1.1 }
131    
132 root 1.5 return SvREFCNT_inc_NN (sviv_cache [val]);
133     }
134    
135     /////////////////////////////////////////////////////////////////////////////
136    
137     static HV *profile_stash;
138    
139     static profile_type *
140     SvPROFILE (SV *profile)
141     {
142     if (!SvOK (profile))
143 root 1.6 return default_profile;
144 root 1.5
145     if (!SvROK (profile))
146     croak ("invalid profile");
147    
148     profile = SvRV (profile);
149    
150     if (SvSTASH (profile) != profile_stash)
151     croak ("invalid profile object");
152    
153     return (void *)profile;
154     }
155    
156     static int
157     profile_lookup (profile_type *profile, int klass, int tag)
158     {
159     SV *sv = (SV *)profile;
160     U32 idx = (tag << 2) + klass;
161    
162     if (expect_false (idx >= SvCUR (sv)))
163     return BER_TYPE_BYTES;
164    
165     return SvPVX (sv)[idx];
166     }
167    
168 root 1.10 static void
169 root 1.5 profile_set (profile_type *profile, int klass, int tag, int type)
170     {
171     SV *sv = (SV *)profile;
172     U32 idx = (tag << 2) + klass;
173     STRLEN oldlen = SvCUR (sv);
174     STRLEN newlen = idx + 2;
175    
176     if (idx >= oldlen)
177     {
178     sv_grow (sv, newlen);
179     memset (SvPVX (sv) + oldlen, BER_TYPE_BYTES, newlen - oldlen);
180     SvCUR_set (sv, newlen);
181     }
182    
183     SvPVX (sv)[idx] = type;
184     }
185    
186     static SV *
187 root 1.14 profile_new (void)
188 root 1.5 {
189     SV *sv = newSVpvn ("", 0);
190    
191     static const struct {
192     int klass;
193     int tag;
194     int type;
195     } *celem, default_map[] = {
196     { ASN_UNIVERSAL, ASN_BOOLEAN , BER_TYPE_BOOL },
197 root 1.15 { ASN_UNIVERSAL, ASN_INTEGER , BER_TYPE_INT },
198 root 1.5 { ASN_UNIVERSAL, ASN_NULL , BER_TYPE_NULL },
199     { ASN_UNIVERSAL, ASN_OBJECT_IDENTIFIER, BER_TYPE_OID },
200     { ASN_UNIVERSAL, ASN_RELATIVE_OID , BER_TYPE_RELOID },
201     { ASN_UNIVERSAL, ASN_REAL , BER_TYPE_REAL },
202 root 1.13 { ASN_UNIVERSAL, ASN_ENUMERATED , BER_TYPE_INT },
203 root 1.5 { ASN_UNIVERSAL, ASN_UTF8_STRING , BER_TYPE_UTF8 },
204     { ASN_UNIVERSAL, ASN_BMP_STRING , BER_TYPE_UCS2 },
205     { ASN_UNIVERSAL, ASN_UNIVERSAL_STRING , BER_TYPE_UCS4 },
206     };
207    
208 root 1.11 for (celem = default_map + sizeof (default_map) / sizeof (default_map [0]); celem-- > default_map; )
209     profile_set ((profile_type *)sv, celem->klass, celem->tag, celem->type);
210 root 1.5
211     return sv_bless (newRV_noinc (sv), profile_stash);
212 root 1.1 }
213    
214     /////////////////////////////////////////////////////////////////////////////
215 root 1.3 // decoder
216 root 1.1
217     static void
218     error (const char *errmsg)
219     {
220     croak ("%s at offset 0x%04x", errmsg, cur - buf);
221     }
222    
223 root 1.3 static void
224     want (UV count)
225 root 1.1 {
226 root 1.3 if (expect_false ((uintptr_t)(end - cur) < count))
227     error ("unexpected end of message buffer");
228 root 1.1 }
229    
230 root 1.2 // get_* functions fetch something from the buffer
231     // decode_* functions use get_* fun ctions to decode ber values
232    
233 root 1.3 // get n octets
234 root 1.1 static U8 *
235 root 1.3 get_n (UV count)
236 root 1.1 {
237 root 1.3 want (count);
238 root 1.1 U8 *res = cur;
239     cur += count;
240     return res;
241     }
242    
243 root 1.3 // get single octet
244 root 1.1 static U8
245 root 1.2 get_u8 (void)
246 root 1.1 {
247 root 1.3 if (cur == end)
248     error ("unexpected end of message buffer");
249 root 1.1
250     return *cur++;
251     }
252    
253 root 1.3 // get ber-encoded integer (i.e. pack "w")
254 root 1.15 static UV
255 root 1.3 get_w (void)
256 root 1.1 {
257 root 1.15 UV res = 0;
258 root 1.20 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)");
262 root 1.1
263     for (;;)
264     {
265 root 1.23 if (expect_false (res >> UVSIZE * 8 - 7))
266     error ("BER variable integer overflow");
267    
268 root 1.1 res = (res << 7) | (c & 0x7f);
269    
270     if (!(c & 0x80))
271     return res;
272 root 1.20
273     c = get_u8 ();
274 root 1.1 }
275     }
276    
277 root 1.15 static UV
278 root 1.2 get_length (void)
279 root 1.1 {
280 root 1.15 UV res = get_u8 ();
281 root 1.1
282     if (res & 0x80)
283     {
284     int cnt = res & 0x7f;
285     res = 0;
286    
287     switch (cnt)
288     {
289     case 0:
290     error ("indefinite ASN.1 lengths not supported");
291    
292 root 1.20 case 0x7f:
293     error ("ASN.1 reserved value in length (X.690 8.1.3.5)");
294 root 1.18
295 root 1.1 default:
296 root 1.20 error ("ASN.1 length too long (only up to 2**64 octets supported)");
297 root 1.1
298 root 1.15 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 ();
302 root 1.2 case 4: res = (res << 8) | get_u8 ();
303     case 3: res = (res << 8) | get_u8 ();
304     case 2: res = (res << 8) | get_u8 ();
305     case 1: res = (res << 8) | get_u8 ();
306 root 1.1 }
307     }
308    
309     return res;
310     }
311    
312     static SV *
313 root 1.14 decode_int (void)
314 root 1.1 {
315 root 1.15 UV len = get_length ();
316 root 1.1
317 root 1.15 if (!len)
318 root 1.20 error ("invalid integer length equal to zero (X.690 8.3.1)");
319    
320     U8 *data = get_n (len);
321    
322     if (expect_false (len > 1))
323 root 1.1 {
324 root 1.20 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 root 1.1 }
329    
330 root 1.5 int negative = data [0] & 0x80;
331 root 1.1
332 root 1.5 UV val = negative ? -1 : 0; // copy signbit to all bits
333 root 1.1
334 root 1.23 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");
337    
338 root 1.5 do
339     val = (val << 8) | *data++;
340     while (--len);
341 root 1.1
342 root 1.6 // the cast to IV relies on implementation-defined behaviour (two's complement cast)
343 root 1.5 // but that's ok, as perl relies on it as well.
344     return negative ? newSViv ((IV)val) : newSVuv (val);
345 root 1.1 }
346    
347     static SV *
348 root 1.5 decode_data (void)
349 root 1.1 {
350 root 1.15 UV len = get_length ();
351     return newSVpvn ((char *)get_n (len), len);
352 root 1.1 }
353    
354 root 1.15 // helper for decode_object_identifier
355 root 1.1 static char *
356 root 1.15 write_uv (char *buf, UV u)
357 root 1.1 {
358     // the one-digit case is absolutely predominant, so this pays off (hopefully)
359 root 1.5 if (expect_true (u < 10))
360 root 1.1 *buf++ = u + '0';
361     else
362     {
363 root 1.15 // this *could* be done much faster using branchless fixed-point arithmetics
364 root 1.1 char *beg = buf;
365    
366     do
367     {
368     *buf++ = u % 10 + '0';
369     u /= 10;
370     }
371     while (u);
372    
373     // reverse digits
374 root 1.11 char *ptr = buf;
375 root 1.13 while (--ptr > beg)
376 root 1.1 {
377     char c = *ptr;
378     *ptr = *beg;
379     *beg = c;
380 root 1.11 ++beg;
381 root 1.1 }
382     }
383    
384     return buf;
385     }
386    
387     static SV *
388 root 1.5 decode_oid (int relative)
389 root 1.1 {
390 root 1.15 UV len = get_length ();
391 root 1.1
392 root 1.5 if (len <= 0)
393 root 1.1 {
394     error ("OBJECT IDENTIFIER length equal to zero");
395     return &PL_sv_undef;
396     }
397    
398 root 1.5 U8 *end = cur + len;
399 root 1.20 UV w = get_w ();
400 root 1.1
401 root 1.23 static char oid[MAX_OID_STRLEN]; // static, because too large for stack
402 root 1.1 char *app = oid;
403    
404 root 1.5 if (relative)
405     app = write_uv (app, w);
406 root 1.18 else if (w < 2 * 40)
407 root 1.5 {
408     app = write_uv (app, (U8)w / 40);
409     *app++ = '.';
410     app = write_uv (app, (U8)w % 40);
411     }
412 root 1.18 else
413     {
414     app = write_uv (app, 2);
415     *app++ = '.';
416     app = write_uv (app, w - 2 * 40);
417     }
418 root 1.1
419 root 1.13 while (cur < end)
420 root 1.1 {
421 root 1.13 // we assume an oid component is never > 64 digits
422     if (oid + sizeof (oid) - app < 64)
423     croak ("BER_TYPE_OID to long to decode");
424    
425 root 1.20 w = get_w ();
426 root 1.1 *app++ = '.';
427     app = write_uv (app, w);
428     }
429    
430     return newSVpvn (oid, app - oid);
431     }
432    
433 root 1.7 // TODO: this is unacceptably slow
434     static SV *
435     decode_ucs (int chrsize)
436     {
437     SV *res = NEWSV (0, 0);
438    
439 root 1.15 UV len = get_length ();
440 root 1.7
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    
469 root 1.1 static SV *
470 root 1.14 decode_ber (void)
471 root 1.1 {
472 root 1.2 int identifier = get_u8 ();
473 root 1.1
474     SV *res;
475    
476 root 1.5 int constructed = identifier & ASN_CONSTRUCTED;
477     int klass = (identifier & ASN_CLASS_MASK) >> ASN_CLASS_SHIFT;
478     int tag = identifier & ASN_TAG_MASK;
479 root 1.1
480     if (tag == ASN_TAG_BER)
481 root 1.3 tag = get_w ();
482 root 1.1
483     if (constructed)
484     {
485 root 1.15 UV len = get_length ();
486     UV seqend = (cur - buf) + len;
487 root 1.1 AV *av = (AV *)sv_2mortal ((SV *)newAV ());
488    
489     while (cur < buf + seqend)
490 root 1.2 av_push (av, decode_ber ());
491 root 1.1
492     if (cur > buf + seqend)
493 root 1.20 croak ("constructed type %02x length overflow (0x%x 0x%x)\n", identifier, (int)(cur - buf), (int)seqend);
494 root 1.1
495     res = newRV_inc ((SV *)av);
496     }
497     else
498 root 1.5 switch (profile_lookup (cur_profile, klass, tag))
499 root 1.1 {
500 root 1.5 case BER_TYPE_NULL:
501 root 1.13 {
502 root 1.15 UV len = get_length ();
503 root 1.13
504     if (len)
505 root 1.20 croak ("BER_TYPE_NULL value with non-zero length %d encountered (X.690 8.8.2)", len);
506 root 1.13
507     res = &PL_sv_undef;
508     }
509 root 1.1 break;
510    
511 root 1.5 case BER_TYPE_BOOL:
512     {
513 root 1.15 UV len = get_length ();
514 root 1.5
515     if (len != 1)
516 root 1.20 croak ("BER_TYPE_BOOLEAN value with invalid length %d encountered (X.690 8.2.1)", len);
517 root 1.5
518 root 1.13 res = newSVcacheint (!!get_u8 ());
519 root 1.5 }
520     break;
521    
522     case BER_TYPE_OID:
523     res = decode_oid (0);
524 root 1.1 break;
525    
526 root 1.5 case BER_TYPE_RELOID:
527     res = decode_oid (1);
528 root 1.1 break;
529    
530 root 1.5 case BER_TYPE_INT:
531     res = decode_int ();
532 root 1.1 break;
533    
534 root 1.5 case BER_TYPE_UTF8:
535     res = decode_data ();
536     SvUTF8_on (res);
537 root 1.1 break;
538    
539 root 1.5 case BER_TYPE_BYTES:
540     res = decode_data ();
541 root 1.1 break;
542    
543 root 1.6 case BER_TYPE_IPADDRESS:
544     {
545 root 1.15 UV len = get_length ();
546 root 1.6
547     if (len != 4)
548 root 1.20 croak ("BER_TYPE_IPADDRESS type with invalid length %d encountered (RFC 2578 7.1.5)", len);
549 root 1.6
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 root 1.5 case BER_TYPE_UCS2:
560 root 1.7 res = decode_ucs (2);
561     break;
562    
563 root 1.5 case BER_TYPE_UCS4:
564 root 1.7 res = decode_ucs (4);
565     break;
566    
567     case BER_TYPE_REAL:
568 root 1.5 case BER_TYPE_CROAK:
569 root 1.1 default:
570 root 1.5 croak ("unconfigured/unsupported class/tag %d/%d", klass, tag);
571 root 1.1 }
572    
573     AV *av = newAV ();
574     av_fill (av, BER_ARRAYSIZE - 1);
575 root 1.16 AvARRAY (av)[BER_CLASS] = newSVcacheint (klass);
576     AvARRAY (av)[BER_TAG ] = newSVcacheint (tag);
577     AvARRAY (av)[BER_FLAGS] = newSVcacheint (constructed ? 1 : 0);
578     AvARRAY (av)[BER_DATA ] = res;
579 root 1.1
580     return newRV_noinc ((SV *)av);
581     }
582    
583 root 1.3 /////////////////////////////////////////////////////////////////////////////
584     // encoder
585    
586     /* adds two STRLENs together, slow, and with paranoia */
587     static STRLEN
588     strlen_sum (STRLEN l1, STRLEN l2)
589     {
590     size_t sum = l1 + l2;
591    
592     if (sum < (size_t)l2 || sum != (size_t)(STRLEN)sum)
593 root 1.20 croak ("Convert::BER::XS: string size overflow");
594 root 1.3
595     return sum;
596     }
597    
598     static void
599     set_buf (SV *sv)
600     {
601     STRLEN len;
602     buf_sv = sv;
603 root 1.10 buf = (U8 *)SvPVbyte (buf_sv, len);
604 root 1.3 cur = buf;
605     end = buf + len;
606     }
607    
608     /* similar to SvGROW, but somewhat safer and guarantees exponential realloc strategy */
609     static char *
610     my_sv_grow (SV *sv, size_t len1, size_t len2)
611     {
612     len1 = strlen_sum (len1, len2);
613     len1 = strlen_sum (len1, len1 >> 1);
614    
615     if (len1 > 4096 - 24)
616     len1 = (len1 | 4095) - 24;
617    
618     return SvGROW (sv, len1);
619     }
620    
621     static void
622     need (STRLEN len)
623     {
624     if (expect_false ((uintptr_t)(end - cur) < len))
625     {
626     STRLEN pos = cur - buf;
627 root 1.10 buf = (U8 *)my_sv_grow (buf_sv, pos, len);
628 root 1.3 cur = buf + pos;
629     end = buf + SvLEN (buf_sv) - 1;
630     }
631     }
632    
633     static void
634     put_u8 (int val)
635     {
636     need (1);
637     *cur++ = val;
638     }
639    
640     static void
641 root 1.15 put_w_nocheck (UV val)
642 root 1.3 {
643 root 1.15 #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
650     *cur = (val >> 7 * 4) | 0x80; cur += val >= ((UV)1 << (7 * 4));
651     *cur = (val >> 7 * 3) | 0x80; cur += val >= ((UV)1 << (7 * 3));
652     *cur = (val >> 7 * 2) | 0x80; cur += val >= ((UV)1 << (7 * 2));
653     *cur = (val >> 7 * 1) | 0x80; cur += val >= ((UV)1 << (7 * 1));
654 root 1.3 *cur = val & 0x7f; cur += 1;
655     }
656    
657     static void
658 root 1.15 put_w (UV val)
659 root 1.3 {
660     need (5); // we only handle up to 5 bytes
661    
662     put_w_nocheck (val);
663     }
664    
665     static U8 *
666 root 1.15 put_length_at (UV val, U8 *cur)
667 root 1.3 {
668     if (val < 0x7fU)
669     *cur++ = val;
670     else
671     {
672     U8 *lenb = cur++;
673    
674 root 1.15 #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
680 root 1.3 *cur = val >> 24; cur += *cur > 0;
681     *cur = val >> 16; cur += *cur > 0;
682     *cur = val >> 8; cur += *cur > 0;
683     *cur = val ; cur += 1;
684    
685     *lenb = 0x80 + cur - lenb - 1;
686     }
687    
688     return cur;
689     }
690    
691     static void
692 root 1.15 put_length (UV val)
693 root 1.3 {
694 root 1.7 need (5 + val);
695 root 1.3 cur = put_length_at (val, cur);
696     }
697    
698     // return how many bytes the encoded length requires
699 root 1.15 static int length_length (UV val)
700 root 1.3 {
701     return val < 0x7fU
702     ? 1
703 root 1.15 : 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     ;
714 root 1.3 }
715    
716     static void
717 root 1.5 encode_data (const char *ptr, STRLEN len)
718 root 1.3 {
719     put_length (len);
720     memcpy (cur, ptr, len);
721     cur += len;
722     }
723    
724     static void
725 root 1.5 encode_uv (UV uv)
726     {
727     }
728    
729     static void
730     encode_int (SV *sv)
731 root 1.3 {
732 root 1.5 need (8 + 1 + 1); // 64 bit + length + extra 0
733    
734     if (expect_false (!SvIOK (sv)))
735     sv_2iv_flags (sv, 0);
736 root 1.3
737     U8 *lenb = cur++;
738    
739 root 1.5 if (SvIOK_notUV (sv))
740 root 1.3 {
741 root 1.5 IV iv = SvIVX (sv);
742    
743     if (expect_false (iv < 0))
744     {
745     // get two's complement bit pattern - works even on hypothetical non-2c machines
746     UV uv = iv;
747    
748     #if UVSIZE > 4
749     *cur = uv >> 56; cur += !!(~uv & 0xff80000000000000U);
750     *cur = uv >> 48; cur += !!(~uv & 0xffff800000000000U);
751     *cur = uv >> 40; cur += !!(~uv & 0xffffff8000000000U);
752     *cur = uv >> 32; cur += !!(~uv & 0xffffffff80000000U);
753     #endif
754     *cur = uv >> 24; cur += !!(~uv & 0xffffffffff800000U);
755     *cur = uv >> 16; cur += !!(~uv & 0xffffffffffff8000U);
756     *cur = uv >> 8; cur += !!(~uv & 0xffffffffffffff80U);
757     *cur = uv ; cur += 1;
758    
759     *lenb = cur - lenb - 1;
760 root 1.3
761 root 1.5 return;
762     }
763 root 1.3 }
764    
765 root 1.5 UV uv = SvUV (sv);
766 root 1.3
767 root 1.5 // prepend an extra 0 if the high bit is 1
768     *cur = 0; cur += !!(uv & ((UV)1 << (UVSIZE * 8 - 1)));
769 root 1.3
770 root 1.5 #if UVSIZE > 4
771     *cur = uv >> 56; cur += !!(uv & 0xff80000000000000U);
772     *cur = uv >> 48; cur += !!(uv & 0xffff800000000000U);
773     *cur = uv >> 40; cur += !!(uv & 0xffffff8000000000U);
774     *cur = uv >> 32; cur += !!(uv & 0xffffffff80000000U);
775     #endif
776     *cur = uv >> 24; cur += !!(uv & 0xffffffffff800000U);
777     *cur = uv >> 16; cur += !!(uv & 0xffffffffffff8000U);
778     *cur = uv >> 8; cur += !!(uv & 0xffffffffffffff80U);
779 root 1.3 *cur = uv ; cur += 1;
780    
781     *lenb = cur - lenb - 1;
782     }
783    
784     // we don't know the length yet, so we optimistically
785 root 1.15 // assume the length will need one octet later. If that
786     // turns out to be wrong, we memmove as needed.
787 root 1.3 // mark the beginning
788     static STRLEN
789 root 1.14 len_fixup_mark (void)
790 root 1.3 {
791     return cur++ - buf;
792     }
793    
794     // patch up the length
795     static void
796     len_fixup (STRLEN mark)
797     {
798     STRLEN reallen = (cur - buf) - mark - 1;
799     int lenlen = length_length (reallen);
800    
801     if (expect_false (lenlen > 1))
802     {
803     // bad luck, we have to shift the bytes to make room for the length
804     need (5);
805     memmove (buf + mark + lenlen, buf + mark + 1, reallen);
806     cur += lenlen - 1;
807     }
808    
809     put_length_at (reallen, buf + mark);
810     }
811    
812     static char *
813     read_uv (char *str, UV *uv)
814     {
815     UV r = 0;
816    
817     while (*str >= '0')
818     r = r * 10 + *str++ - '0';
819    
820     *uv = r;
821    
822     str += !!*str; // advance over any non-zero byte
823    
824     return str;
825     }
826    
827     static void
828 root 1.5 encode_oid (SV *oid, int relative)
829 root 1.3 {
830 root 1.5 STRLEN len;
831     char *ptr = SvPV (oid, len); // utf8 vs. bytes does not matter
832 root 1.3
833     // we need at most as many octets as the string form
834 root 1.5 need (len + 1);
835 root 1.3 STRLEN mark = len_fixup_mark ();
836    
837     UV w1, w2;
838    
839 root 1.5 if (!relative)
840     {
841     ptr = read_uv (ptr, &w1);
842     ptr = read_uv (ptr, &w2);
843 root 1.3
844 root 1.5 put_w_nocheck (w1 * 40 + w2);
845     }
846 root 1.3
847     while (*ptr)
848     {
849     ptr = read_uv (ptr, &w1);
850     put_w_nocheck (w1);
851     }
852    
853     len_fixup (mark);
854     }
855    
856 root 1.5 // check whether an SV is a BER tuple and returns its AV *
857 root 1.4 static AV *
858     ber_tuple (SV *tuple)
859 root 1.3 {
860 root 1.4 SV *rv;
861    
862     if (expect_false (!SvROK (tuple) || SvTYPE ((rv = SvRV (tuple))) != SVt_PVAV))
863 root 1.3 croak ("BER tuple must be array-reference");
864    
865 root 1.4 if (expect_false (SvRMAGICAL (rv)))
866     croak ("BER tuple must not be tied");
867 root 1.3
868 root 1.4 if (expect_false (AvFILL ((AV *)rv) != BER_ARRAYSIZE - 1))
869     croak ("BER tuple must contain exactly %d elements, not %d", BER_ARRAYSIZE, AvFILL ((AV *)rv) + 1);
870 root 1.3
871 root 1.4 return (AV *)rv;
872     }
873    
874     static void
875 root 1.7 encode_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 root 1.10 UV uchr = utf8_to_uvchr_buf ((U8 *)ptr, (U8 *)ptr + len, &uclen);
887 root 1.7
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     }
901     static void
902 root 1.4 encode_ber (SV *tuple)
903     {
904     AV *av = ber_tuple (tuple);
905 root 1.3
906     int klass = SvIV (AvARRAY (av)[BER_CLASS]);
907     int tag = SvIV (AvARRAY (av)[BER_TAG]);
908 root 1.16 int constructed = SvIV (AvARRAY (av)[BER_FLAGS]) & 1 ? ASN_CONSTRUCTED : 0;
909 root 1.3 SV *data = AvARRAY (av)[BER_DATA];
910    
911     int identifier = (klass << ASN_CLASS_SHIFT) | constructed;
912    
913     if (expect_false (tag >= ASN_TAG_BER))
914     {
915     put_u8 (identifier | ASN_TAG_BER);
916     put_w (tag);
917     }
918     else
919     put_u8 (identifier | tag);
920    
921     if (constructed)
922     {
923     // we optimistically assume that only one length byte is needed
924     // and adjust later
925     need (1);
926     STRLEN mark = len_fixup_mark ();
927    
928     if (expect_false (!SvROK (data) || SvTYPE (SvRV (data)) != SVt_PVAV))
929     croak ("BER constructed data must be array-reference");
930    
931     AV *av = (AV *)SvRV (data);
932     int fill = AvFILL (av);
933    
934     if (expect_false (SvRMAGICAL (av)))
935     croak ("BER constructed data must not be tied");
936    
937 root 1.11 int i;
938     for (i = 0; i <= fill; ++i)
939 root 1.3 encode_ber (AvARRAY (av)[i]);
940    
941     len_fixup (mark);
942     }
943     else
944 root 1.5 switch (profile_lookup (cur_profile, klass, tag))
945 root 1.3 {
946 root 1.5 case BER_TYPE_NULL:
947 root 1.3 put_length (0);
948     break;
949    
950 root 1.5 case BER_TYPE_BOOL:
951     put_length (1);
952 root 1.17 *cur++ = SvTRUE (data) ? 0xff : 0x00; // 0xff = DER/CER
953 root 1.3 break;
954    
955 root 1.5 case BER_TYPE_OID:
956     encode_oid (data, 0);
957 root 1.3 break;
958    
959 root 1.5 case BER_TYPE_RELOID:
960     encode_oid (data, 1);
961 root 1.3 break;
962    
963 root 1.5 case BER_TYPE_INT:
964     encode_int (data);
965     break;
966    
967     case BER_TYPE_BYTES:
968     {
969     STRLEN len;
970     const char *ptr = SvPVbyte (data, len);
971     encode_data (ptr, len);
972     }
973     break;
974    
975     case BER_TYPE_UTF8:
976     {
977     STRLEN len;
978     const char *ptr = SvPVutf8 (data, len);
979     encode_data (ptr, len);
980     }
981     break;
982    
983 root 1.6 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 root 1.5 case BER_TYPE_UCS2:
992 root 1.7 encode_ucs (data, 2);
993     break;
994    
995 root 1.5 case BER_TYPE_UCS4:
996 root 1.7 encode_ucs (data, 4);
997     break;
998    
999     case BER_TYPE_REAL:
1000 root 1.5 case BER_TYPE_CROAK:
1001 root 1.3 default:
1002 root 1.5 croak ("unconfigured/unsupported class/tag %d/%d", klass, tag);
1003 root 1.3 }
1004    
1005     }
1006    
1007     /////////////////////////////////////////////////////////////////////////////
1008    
1009 root 1.1 MODULE = Convert::BER::XS PACKAGE = Convert::BER::XS
1010    
1011     PROTOTYPES: ENABLE
1012    
1013     BOOT:
1014     {
1015     HV *stash = gv_stashpv ("Convert::BER::XS", 1);
1016    
1017 root 1.5 profile_stash = gv_stashpv ("Convert::BER::XS::Profile", 1);
1018    
1019 root 1.1 static const struct {
1020     const char *name;
1021     IV iv;
1022     } *civ, const_iv[] = {
1023 root 1.5 #define const_iv(name) { # name, name },
1024     const_iv (ASN_BOOLEAN)
1025 root 1.15 const_iv (ASN_INTEGER)
1026 root 1.5 const_iv (ASN_BIT_STRING)
1027     const_iv (ASN_OCTET_STRING)
1028     const_iv (ASN_NULL)
1029     const_iv (ASN_OBJECT_IDENTIFIER)
1030     const_iv (ASN_OBJECT_DESCRIPTOR)
1031     const_iv (ASN_OID)
1032     const_iv (ASN_EXTERNAL)
1033     const_iv (ASN_REAL)
1034     const_iv (ASN_SEQUENCE)
1035     const_iv (ASN_ENUMERATED)
1036     const_iv (ASN_EMBEDDED_PDV)
1037     const_iv (ASN_UTF8_STRING)
1038     const_iv (ASN_RELATIVE_OID)
1039     const_iv (ASN_SET)
1040     const_iv (ASN_NUMERIC_STRING)
1041     const_iv (ASN_PRINTABLE_STRING)
1042     const_iv (ASN_TELETEX_STRING)
1043     const_iv (ASN_T61_STRING)
1044     const_iv (ASN_VIDEOTEX_STRING)
1045     const_iv (ASN_IA5_STRING)
1046     const_iv (ASN_ASCII_STRING)
1047     const_iv (ASN_UTC_TIME)
1048     const_iv (ASN_GENERALIZED_TIME)
1049     const_iv (ASN_GRAPHIC_STRING)
1050     const_iv (ASN_VISIBLE_STRING)
1051     const_iv (ASN_ISO646_STRING)
1052     const_iv (ASN_GENERAL_STRING)
1053     const_iv (ASN_UNIVERSAL_STRING)
1054     const_iv (ASN_CHARACTER_STRING)
1055     const_iv (ASN_BMP_STRING)
1056    
1057     const_iv (ASN_UNIVERSAL)
1058     const_iv (ASN_APPLICATION)
1059     const_iv (ASN_CONTEXT)
1060     const_iv (ASN_PRIVATE)
1061    
1062     const_iv (BER_CLASS)
1063     const_iv (BER_TAG)
1064 root 1.16 const_iv (BER_FLAGS)
1065 root 1.5 const_iv (BER_DATA)
1066    
1067     const_iv (BER_TYPE_BYTES)
1068     const_iv (BER_TYPE_UTF8)
1069     const_iv (BER_TYPE_UCS2)
1070     const_iv (BER_TYPE_UCS4)
1071     const_iv (BER_TYPE_INT)
1072     const_iv (BER_TYPE_OID)
1073     const_iv (BER_TYPE_RELOID)
1074     const_iv (BER_TYPE_NULL)
1075     const_iv (BER_TYPE_BOOL)
1076     const_iv (BER_TYPE_REAL)
1077 root 1.6 const_iv (BER_TYPE_IPADDRESS)
1078 root 1.5 const_iv (BER_TYPE_CROAK)
1079    
1080     const_iv (SNMP_IPADDRESS)
1081     const_iv (SNMP_COUNTER32)
1082 root 1.21 const_iv (SNMP_GAUGE32)
1083 root 1.5 const_iv (SNMP_UNSIGNED32)
1084     const_iv (SNMP_TIMETICKS)
1085     const_iv (SNMP_OPAQUE)
1086     const_iv (SNMP_COUNTER64)
1087 root 1.1 };
1088    
1089     for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--)
1090     newCONSTSUB (stash, (char *)civ[-1].name, newSViv (civ[-1].iv));
1091     }
1092    
1093 root 1.22 void
1094 root 1.5 ber_decode (SV *ber, SV *profile = &PL_sv_undef)
1095 root 1.22 ALIAS:
1096     ber_decode_prefix = 1
1097     PPCODE:
1098 root 1.1 {
1099 root 1.5 cur_profile = SvPROFILE (profile);
1100 root 1.3 STRLEN len;
1101 root 1.10 buf = (U8 *)SvPVbyte (ber, len);
1102 root 1.1 cur = buf;
1103 root 1.3 end = buf + len;
1104 root 1.1
1105 root 1.22 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");
1114 root 1.1 }
1115    
1116     void
1117 root 1.16 ber_is (SV *tuple, SV *klass = &PL_sv_undef, SV *tag = &PL_sv_undef, SV *flags = &PL_sv_undef, SV *data = &PL_sv_undef)
1118 root 1.1 PPCODE:
1119     {
1120     if (!SvOK (tuple))
1121     XSRETURN_NO;
1122    
1123     if (!SvROK (tuple) || SvTYPE (SvRV (tuple)) != SVt_PVAV)
1124 root 1.4 croak ("ber_is: tuple must be BER tuple (array-ref)");
1125 root 1.1
1126     AV *av = (AV *)SvRV (tuple);
1127    
1128     XPUSHs (
1129 root 1.16 (!SvOK (klass) || SvIV (AvARRAY (av)[BER_CLASS]) == SvIV (klass))
1130     && (!SvOK (tag) || SvIV (AvARRAY (av)[BER_TAG ]) == SvIV (tag))
1131     && (!SvOK (flags) || !SvIV (AvARRAY (av)[BER_FLAGS]) == !SvIV (flags))
1132     && (!SvOK (data) || sv_eq (AvARRAY (av)[BER_DATA ], data))
1133 root 1.4 ? &PL_sv_yes : &PL_sv_undef);
1134 root 1.1 }
1135    
1136     void
1137     ber_is_seq (SV *tuple)
1138     PPCODE:
1139     {
1140     if (!SvOK (tuple))
1141     XSRETURN_UNDEF;
1142    
1143 root 1.4 AV *av = ber_tuple (tuple);
1144 root 1.1
1145     XPUSHs (
1146 root 1.16 SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL
1147     && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_SEQUENCE
1148     && SvIV (AvARRAY (av)[BER_FLAGS])
1149 root 1.1 ? AvARRAY (av)[BER_DATA] : &PL_sv_undef);
1150     }
1151    
1152     void
1153 root 1.15 ber_is_int (SV *tuple, SV *value = &PL_sv_undef)
1154 root 1.1 PPCODE:
1155     {
1156     if (!SvOK (tuple))
1157     XSRETURN_NO;
1158    
1159 root 1.4 AV *av = ber_tuple (tuple);
1160 root 1.1
1161 root 1.15 UV data = SvUV (AvARRAY (av)[BER_DATA]);
1162 root 1.1
1163     XPUSHs (
1164 root 1.16 SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL
1165     && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_INTEGER
1166     && !SvIV (AvARRAY (av)[BER_FLAGS])
1167 root 1.15 && (!SvOK (value) || data == SvUV (value))
1168     ? sv_2mortal (data ? newSVsv (AvARRAY (av)[BER_DATA]) : newSVpv ("0 but true", 0))
1169 root 1.4 : &PL_sv_undef);
1170 root 1.1 }
1171    
1172     void
1173 root 1.4 ber_is_oid (SV *tuple, SV *oid = &PL_sv_undef)
1174 root 1.1 PPCODE:
1175     {
1176     if (!SvOK (tuple))
1177     XSRETURN_NO;
1178    
1179 root 1.4 AV *av = ber_tuple (tuple);
1180 root 1.1
1181     XPUSHs (
1182 root 1.16 SvIV (AvARRAY (av)[BER_CLASS]) == ASN_UNIVERSAL
1183     && SvIV (AvARRAY (av)[BER_TAG ]) == ASN_OBJECT_IDENTIFIER
1184     && !SvIV (AvARRAY (av)[BER_FLAGS])
1185 root 1.4 && (!SvOK (oid) || sv_eq (AvARRAY (av)[BER_DATA], oid))
1186     ? newSVsv (AvARRAY (av)[BER_DATA]) : &PL_sv_undef);
1187 root 1.1 }
1188    
1189 root 1.3 #############################################################################
1190    
1191     void
1192 root 1.5 ber_encode (SV *tuple, SV *profile = &PL_sv_undef)
1193 root 1.3 PPCODE:
1194     {
1195 root 1.5 cur_profile = SvPROFILE (profile);
1196 root 1.3 buf_sv = sv_2mortal (NEWSV (0, 256));
1197     SvPOK_only (buf_sv);
1198     set_buf (buf_sv);
1199    
1200     encode_ber (tuple);
1201    
1202     SvCUR_set (buf_sv, cur - buf);
1203     XPUSHs (buf_sv);
1204     }
1205    
1206 root 1.4 SV *
1207 root 1.15 ber_int (SV *sv)
1208 root 1.4 CODE:
1209     {
1210     AV *av = newAV ();
1211     av_fill (av, BER_ARRAYSIZE - 1);
1212 root 1.16 AvARRAY (av)[BER_CLASS] = newSVcacheint (ASN_UNIVERSAL);
1213     AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_INTEGER);
1214     AvARRAY (av)[BER_FLAGS] = newSVcacheint (0);
1215     AvARRAY (av)[BER_DATA ] = newSVsv (sv);
1216 root 1.4 RETVAL = newRV_noinc ((SV *)av);
1217     }
1218     OUTPUT: RETVAL
1219    
1220     # TODO: not arrayref, but elements?
1221     SV *
1222     ber_seq (SV *arrayref)
1223     CODE:
1224     {
1225     AV *av = newAV ();
1226     av_fill (av, BER_ARRAYSIZE - 1);
1227 root 1.16 AvARRAY (av)[BER_CLASS] = newSVcacheint (ASN_UNIVERSAL);
1228     AvARRAY (av)[BER_TAG ] = newSVcacheint (ASN_SEQUENCE);
1229     AvARRAY (av)[BER_FLAGS] = newSVcacheint (1);
1230     AvARRAY (av)[BER_DATA ] = newSVsv (arrayref);
1231 root 1.4 RETVAL = newRV_noinc ((SV *)av);
1232     }
1233     OUTPUT: RETVAL
1234    
1235 root 1.5 MODULE = Convert::BER::XS PACKAGE = Convert::BER::XS::Profile
1236    
1237     SV *
1238     new (SV *klass)
1239     CODE:
1240     RETVAL = profile_new ();
1241     OUTPUT: RETVAL
1242    
1243 root 1.6 void
1244     set (SV *profile, int klass, int tag, int type)
1245     CODE:
1246     profile_set (SvPROFILE (profile), klass, tag, type);
1247    
1248     IV
1249     get (SV *profile, int klass, int tag)
1250     CODE:
1251     RETVAL = profile_lookup (SvPROFILE (profile), klass, tag);
1252     OUTPUT: RETVAL
1253    
1254     void
1255     _set_default (SV *profile)
1256     CODE:
1257     default_profile = SvPROFILE (profile);
1258    
1259