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vlm785435b2004-09-14 12:46:35 +00001/*-
2 * Copyright (c) 2004 Lev Walkin <vlm@lionet.info>. All rights reserved.
3 * Redistribution and modifications are permitted subject to BSD license.
4 */
vlm39ba4c42004-09-22 16:06:28 +00005#include <asn_internal.h>
vlm785435b2004-09-14 12:46:35 +00006#include <REAL.h>
vlm785435b2004-09-14 12:46:35 +00007#include <stdlib.h> /* for strtod(3) */
8#include <math.h>
9#include <errno.h>
10#include <assert.h>
11
12#undef INT_MAX
13#define INT_MAX ((int)(((unsigned int)-1) >> 1))
14
vlm84d551b2004-10-03 09:13:02 +000015static volatile double real_zero = 0.0;
vlm40056302004-09-27 22:18:34 +000016#ifndef NAN
vlmb1f8d612004-09-27 22:16:18 +000017#define NAN (real_zero/real_zero)
vlm1d3ed282004-09-14 13:40:42 +000018#endif
19
vlm785435b2004-09-14 12:46:35 +000020/*
21 * REAL basic type description.
22 */
vlmef6355b2004-09-29 13:26:15 +000023static ber_tlv_tag_t asn_DEF_REAL_tags[] = {
vlm785435b2004-09-14 12:46:35 +000024 (ASN_TAG_CLASS_UNIVERSAL | (9 << 2))
25};
vlmef6355b2004-09-29 13:26:15 +000026asn_TYPE_descriptor_t asn_DEF_REAL = {
vlm785435b2004-09-14 12:46:35 +000027 "REAL",
vlm9de248e2004-10-20 15:50:55 +000028 "REAL",
vlm6678cb12004-09-26 13:10:40 +000029 ASN__PRIMITIVE_TYPE_free,
vlm39ba4c42004-09-22 16:06:28 +000030 REAL_print,
vlm785435b2004-09-14 12:46:35 +000031 asn_generic_no_constraint,
vlm6678cb12004-09-26 13:10:40 +000032 ber_decode_primitive,
33 der_encode_primitive,
vlm39ba4c42004-09-22 16:06:28 +000034 0, /* Not implemented yet */
35 REAL_encode_xer,
vlm785435b2004-09-14 12:46:35 +000036 0, /* Use generic outmost tag fetcher */
vlmef6355b2004-09-29 13:26:15 +000037 asn_DEF_REAL_tags,
38 sizeof(asn_DEF_REAL_tags) / sizeof(asn_DEF_REAL_tags[0]),
39 asn_DEF_REAL_tags, /* Same as above */
40 sizeof(asn_DEF_REAL_tags) / sizeof(asn_DEF_REAL_tags[0]),
vlm785435b2004-09-14 12:46:35 +000041 0, 0, /* No members */
42 0 /* No specifics */
43};
44
vlm39ba4c42004-09-22 16:06:28 +000045ssize_t
46REAL__dump(double d, int canonical, asn_app_consume_bytes_f *cb, void *app_key) {
vlm0a1738c2004-09-27 20:52:18 +000047 char local_buf[64];
vlm39ba4c42004-09-22 16:06:28 +000048 char *buf = local_buf;
49 ssize_t buflen = sizeof(local_buf);
vlm0a1738c2004-09-27 20:52:18 +000050 const char *fmt = canonical?"%.15E":"%.15f";
vlm39ba4c42004-09-22 16:06:28 +000051 ssize_t ret;
52
vlm6678cb12004-09-26 13:10:40 +000053 /*
54 * Check whether it is a special value.
55 */
vlmb1f8d612004-09-27 22:16:18 +000056 /* fpclassify(3) is not portable yet */
57 if(isnan(d)) {
58 buf = "<NOT-A-NUMBER/>";
59 buflen = 15;
60 return (cb(buf, buflen, app_key) < 0) ? -1 : buflen;
vlm6534a8d2004-10-20 15:40:04 +000061 } else if(!finite(d)) {
vlmb1f8d612004-09-27 22:16:18 +000062 if(copysign(1.0, d) < 0.0) {
63 buf = "<MINUS-INFINITY/>";
64 buflen = 17;
65 } else {
66 buf = "<PLUS-INFINITY/>";
67 buflen = 16;
68 }
69 return (cb(buf, buflen, app_key) < 0) ? -1 : buflen;
70 } else if(ilogb(d) <= -INT_MAX) {
71 if(copysign(1.0, d) < 0.0) {
72 buf = "-0";
73 buflen = 2;
74 } else {
75 buf = "0";
76 buflen = 1;
vlm6678cb12004-09-26 13:10:40 +000077 }
78 return (cb(buf, buflen, app_key) < 0) ? -1 : buflen;
79 }
80
81 /*
82 * Use the libc's double printing, hopefully they got it right.
83 */
vlm39ba4c42004-09-22 16:06:28 +000084 do {
85 ret = snprintf(buf, buflen, fmt, d);
86 if(ret < 0) {
87 buflen <<= 1;
88 } else if(ret >= buflen) {
89 buflen = ret + 1;
90 } else {
91 buflen = ret;
92 break;
93 }
94 if(buf != local_buf) free(buf);
vlm6678cb12004-09-26 13:10:40 +000095 buf = (char *)MALLOC(buflen);
vlm39ba4c42004-09-22 16:06:28 +000096 if(!buf) return -1;
97 } while(1);
98
vlm39ba4c42004-09-22 16:06:28 +000099 if(canonical) {
vlm0a1738c2004-09-27 20:52:18 +0000100 /*
101 * Transform the "[-]d.dddE+-dd" output into "[-]d.dddE[-]d"
102 */
vlm39ba4c42004-09-22 16:06:28 +0000103 char *dot, *E;
104 char *end = buf + buflen;
vlm0a1738c2004-09-27 20:52:18 +0000105 char *last_zero;
vlm39ba4c42004-09-22 16:06:28 +0000106
107 dot = (buf[0] == '-') ? (buf + 2) : (buf + 1);
108 if(*dot >= 0x30) {
109 errno = EINVAL;
110 return -1; /* Not a dot, really */
111 }
vlm0a1738c2004-09-27 20:52:18 +0000112 *dot = 0x2e; /* Replace possible comma */
vlm39ba4c42004-09-22 16:06:28 +0000113
vlm0a1738c2004-09-27 20:52:18 +0000114 for(last_zero = dot + 2, E = dot; dot < end; E++) {
115 if(*E == 0x45) {
116 char *expptr = ++E;
117 char *s = expptr;
118 int sign;
119 if(*expptr == '+') {
120 /* Skip the "+" */
vlm39ba4c42004-09-22 16:06:28 +0000121 buflen -= 1;
vlm0a1738c2004-09-27 20:52:18 +0000122 sign = 0;
123 } else {
124 sign = 1;
vlm39ba4c42004-09-22 16:06:28 +0000125 s++;
126 }
vlm0a1738c2004-09-27 20:52:18 +0000127 expptr++;
128 if(expptr > end) {
vlm39ba4c42004-09-22 16:06:28 +0000129 errno = EINVAL;
130 return -1;
131 }
vlm0a1738c2004-09-27 20:52:18 +0000132 if(*expptr == 0x30) {
133 buflen--;
134 expptr++;
135 }
136 if(*last_zero == 0x30) {
137 *last_zero = 0x45; /* E */
138 s = last_zero + 1;
139 if(sign) *s++ = '-';
140 }
141 for(; expptr <= end; s++, expptr++)
142 *s = *expptr;
143 break;
144 } else if(*E == 0x30) {
145 if(*last_zero != 0x30)
146 last_zero = E;
vlm39ba4c42004-09-22 16:06:28 +0000147 }
148 }
149 if(E == end) {
150 errno = EINVAL;
151 return -1; /* No promised E */
152 }
vlm0a1738c2004-09-27 20:52:18 +0000153 } else {
154 /*
155 * Remove trailing zeros.
156 */
157 char *end = buf + buflen;
158 char *last_zero = end;
159 char *z;
160 for(z = end - 1; z > buf; z--) {
161 switch(*z) {
162 case 0x030:
163 last_zero = z;
164 case 0x31: case 0x32: case 0x33: case 0x34:
165 case 0x35: case 0x36: case 0x37: case 0x38: case 0x39:
166 continue;
167 default: /* Catch dot and other separators */
168 *z = 0x2e; /* Replace possible comma */
169 if(last_zero == z + 1) { /* leave x.0 */
170 last_zero++;
171 }
172 buflen = last_zero - buf;
173 *last_zero = '\0';
174 break;
175 }
176 break;
177 }
vlm39ba4c42004-09-22 16:06:28 +0000178 }
179
180 ret = cb(buf, buflen, app_key);
181 if(buf != local_buf) free(buf);
182 return (ret < 0) ? -1 : buflen;
183}
184
vlm785435b2004-09-14 12:46:35 +0000185int
vlmef6355b2004-09-29 13:26:15 +0000186REAL_print(asn_TYPE_descriptor_t *td, const void *sptr, int ilevel,
vlm785435b2004-09-14 12:46:35 +0000187 asn_app_consume_bytes_f *cb, void *app_key) {
188 const REAL_t *st = (const REAL_t *)sptr;
vlm6678cb12004-09-26 13:10:40 +0000189 ssize_t ret;
vlm785435b2004-09-14 12:46:35 +0000190 double d;
vlm785435b2004-09-14 12:46:35 +0000191
192 (void)td; /* Unused argument */
193 (void)ilevel; /* Unused argument */
194
vlm39ba4c42004-09-22 16:06:28 +0000195 if(!st || !st->buf)
vlm6678cb12004-09-26 13:10:40 +0000196 ret = cb("<absent>", 8, app_key);
vlmef6355b2004-09-29 13:26:15 +0000197 else if(asn_REAL2double(st, &d))
vlm6678cb12004-09-26 13:10:40 +0000198 ret = cb("<error>", 7, app_key);
199 else
200 ret = REAL__dump(d, 0, cb, app_key);
vlm785435b2004-09-14 12:46:35 +0000201
vlm6678cb12004-09-26 13:10:40 +0000202 return (ret < 0) ? -1 : 0;
vlm39ba4c42004-09-22 16:06:28 +0000203}
vlm785435b2004-09-14 12:46:35 +0000204
vlm39ba4c42004-09-22 16:06:28 +0000205asn_enc_rval_t
vlmef6355b2004-09-29 13:26:15 +0000206REAL_encode_xer(asn_TYPE_descriptor_t *td, void *sptr,
vlm39ba4c42004-09-22 16:06:28 +0000207 int ilevel, enum xer_encoder_flags_e flags,
208 asn_app_consume_bytes_f *cb, void *app_key) {
209 REAL_t *st = (REAL_t *)sptr;
210 asn_enc_rval_t er;
211 double d;
212
213 (void)ilevel;
214
vlmef6355b2004-09-29 13:26:15 +0000215 if(!st || !st->buf || asn_REAL2double(st, &d))
vlm39ba4c42004-09-22 16:06:28 +0000216 _ASN_ENCODE_FAILED;
217
218 er.encoded = REAL__dump(d, flags & XER_F_CANONICAL, cb, app_key);
219 if(er.encoded < 0) _ASN_ENCODE_FAILED;
220
221 return er;
vlm785435b2004-09-14 12:46:35 +0000222}
223
224int
vlmef6355b2004-09-29 13:26:15 +0000225asn_REAL2double(const REAL_t *st, double *dbl_value) {
vlm39ba4c42004-09-22 16:06:28 +0000226 unsigned int octv;
vlm785435b2004-09-14 12:46:35 +0000227
228 if(!st || !st->buf) {
229 errno = EINVAL;
230 return -1;
231 }
232
233 if(st->size == 0) {
234 *dbl_value = 0;
235 return 0;
236 }
237
238 octv = st->buf[0]; /* unsigned byte */
239
240 switch(octv & 0xC0) {
241 case 0x40: /* X.690: 8.5.8 */
242 /* "SpecialRealValue" */
243
244 /* Be liberal in what you accept...
245 if(st->size != 1) ...
246 */
247
248 switch(st->buf[0]) {
249 case 0x40: /* 01000000: PLUS-INFINITY */
vlmb1f8d612004-09-27 22:16:18 +0000250 *dbl_value = 1.0/real_zero;
vlm785435b2004-09-14 12:46:35 +0000251 return 0;
252 case 0x41: /* 01000001: MINUS-INFINITY */
vlmb1f8d612004-09-27 22:16:18 +0000253 *dbl_value = -1.0/real_zero;
vlm785435b2004-09-14 12:46:35 +0000254 return 0;
255 /*
256 * The following cases are defined by
257 * X.690 Amendment 1 (10/03)
258 */
259 case 0x42: /* 01000010: NOT-A-NUMBER */
260 *dbl_value = NAN;
261 return 0;
262 case 0x43: /* 01000011: minus zero */
vlm8f6ded02004-09-27 21:36:59 +0000263 *dbl_value = -0.0;
vlm785435b2004-09-14 12:46:35 +0000264 return 0;
265 }
266
267 errno = EINVAL;
268 return -1;
269 case 0x00: { /* X.690: 8.5.6 */
270 /*
271 * Decimal. NR{1,2,3} format.
272 */
273 double d;
274
275 assert(st->buf[st->size - 1] == 0); /* Security, vashu mat' */
276
277 d = strtod((char *)st->buf, 0);
278 if(finite(d)) {
279 *dbl_value = d;
280 return 0;
281 } else {
282 errno = ERANGE;
283 return 0;
284 }
285 }
286 }
287
288 /*
289 * Binary representation.
290 */
291 {
292 double m;
293 int expval; /* exponent value */
294 unsigned int elen; /* exponent value length, in octets */
295 unsigned int scaleF;
296 unsigned int baseF;
297 uint8_t *ptr;
298 uint8_t *end;
299 int sign;
300
301 switch((octv & 0x30) >> 4) {
302 case 0x00: baseF = 1; break; /* base 2 */
303 case 0x01: baseF = 3; break; /* base 8 */
304 case 0x02: baseF = 4; break; /* base 16 */
305 default:
306 /* Reserved field, can't parse now. */
307 errno = EINVAL;
308 return -1;
309 }
310
311 sign = (octv & 0x40); /* bit 7 */
312 scaleF = (octv & 0x0C) >> 2; /* bits 4 to 3 */
313
vlm39ba4c42004-09-22 16:06:28 +0000314 if(st->size <= (int)(1 + (octv & 0x03))) {
vlm785435b2004-09-14 12:46:35 +0000315 errno = EINVAL;
316 return -1;
317 }
318
319 if((octv & 0x03) == 0x11) {
320 /* 8.5.6.4, case d) */
321 elen = st->buf[1]; /* unsigned binary number */
vlm39ba4c42004-09-22 16:06:28 +0000322 if(elen == 0 || st->size <= (int)(2 + elen)) {
vlm785435b2004-09-14 12:46:35 +0000323 errno = EINVAL;
324 return -1;
325 }
326 ptr = &st->buf[2];
327 } else {
328 elen = (octv & 0x03);
329 ptr = &st->buf[1];
330 }
331
332 /* Fetch the multibyte exponent */
333 expval = (int)(*(int8_t *)ptr);
334 end = ptr + elen + 1;
335 for(ptr++; ptr < end; ptr++)
336 expval = (expval * 256) + *ptr;
337
338 m = 0.0; /* Initial mantissa value */
339
340 /* Okay, the exponent is here. Now, what about mantissa? */
341 end = st->buf + st->size;
342 if(ptr < end) {
343 for(; ptr < end; ptr++)
344 m = scalbn(m, 8) + *ptr;
345 }
346
347 ASN_DEBUG("m=%.10f, scF=%d, bF=%d, expval=%d, ldexp()=%f, scalbn()=%f",
348 m, scaleF, baseF, expval,
349 ldexp(m, expval * baseF + scaleF),
350 scalbn(m, scaleF) * pow(pow(2, baseF), expval)
351 );
352
353 /*
354 * (S * N * 2^F) * B^E
355 * Essentially:
356 m = scalbn(m, scaleF) * pow(pow(2, base), expval);
357 */
358 m = ldexp(m, expval * baseF + scaleF);
359 if(finite(m)) {
360 *dbl_value = sign ? -m : m;
361 } else {
362 errno = ERANGE;
363 return -1;
364 }
365
366 } /* if(binary_format) */
367
368 return 0;
369}
370
371/*
372 * Assume IEEE 754 floating point: standard 64 bit double.
373 * [1 bit sign] [11 bits exponent] [52 bits mantissa]
374 */
375int
vlmef6355b2004-09-29 13:26:15 +0000376asn_double2REAL(REAL_t *st, double dbl_value) {
vlm785435b2004-09-14 12:46:35 +0000377#ifdef WORDS_BIGENDIAN /* Known to be big-endian */
378 int littleEndian = 0;
379#else /* need to test: have no explicit information */
380 unsigned int LE = 1;
381 int littleEndian = *(unsigned char *)&LE;
382#endif
383 uint8_t buf[16]; /* More than enough for 8-byte dbl_value */
384 uint8_t dscr[sizeof(dbl_value)]; /* double value scratch pad */
385 /* Assertion guards: won't even compile, if unexpected double size */
386 char assertion_buffer1[9 - sizeof(dbl_value)] __attribute__((unused));
387 char assertion_buffer2[sizeof(dbl_value) - 7] __attribute__((unused));
388 uint8_t *ptr = buf;
389 uint8_t *mstop; /* Last byte of mantissa */
390 unsigned int mval; /* Value of the last byte of mantissa */
391 unsigned int bmsign; /* binary mask with sign */
392 unsigned int buflen;
393 unsigned int accum;
394 int expval;
395
396 if(!st) {
397 errno = EINVAL;
398 return -1;
399 }
400
vlm46361982004-09-14 13:58:10 +0000401 /*
402 * ilogb(+-0) returns -INT_MAX or INT_MIN (platform-dependent)
403 * ilogb(+-inf) returns INT_MAX
vlm8f6ded02004-09-27 21:36:59 +0000404 * ilogb(NaN) returns INT_MIN or INT_MAX (platform-dependent)
vlm46361982004-09-14 13:58:10 +0000405 */
vlm785435b2004-09-14 12:46:35 +0000406 expval = ilogb(dbl_value);
vlm8f6ded02004-09-27 21:36:59 +0000407 if(expval <= -INT_MAX /* Also catches +-0 and maybe isnan() */
408 || expval == INT_MAX /* catches isfin() and maybe isnan() */
vlm785435b2004-09-14 12:46:35 +0000409 ) {
410 if(!st->buf || st->size < 2) {
vlm6678cb12004-09-26 13:10:40 +0000411 ptr = (uint8_t *)MALLOC(2);
vlm785435b2004-09-14 12:46:35 +0000412 if(!ptr) return -1;
413 st->buf = ptr;
414 }
415 /* fpclassify(3) is not portable yet */
vlm8f6ded02004-09-27 21:36:59 +0000416 if(isnan(dbl_value)) {
417 st->buf[0] = 0x42; /* NaN */
418 st->buf[1] = 0;
419 st->size = 1;
vlm6534a8d2004-10-20 15:40:04 +0000420 } else if(!finite(dbl_value)) {
vlmb02ccb22004-09-14 13:50:21 +0000421 if(copysign(1.0, dbl_value) < 0.0) {
vlm785435b2004-09-14 12:46:35 +0000422 st->buf[0] = 0x41; /* MINUS-INFINITY */
423 } else {
424 st->buf[0] = 0x40; /* PLUS-INFINITY */
425 }
426 st->buf[1] = 0;
427 st->size = 1;
vlmb1f8d612004-09-27 22:16:18 +0000428 } else {
429 if(copysign(1.0, dbl_value) < 0.0) {
430 st->buf[0] = 0x80 | 0x40;
431 st->buf[1] = 0;
432 st->size = 2;
433 } else {
434 /* no content octets: positive zero */
435 st->buf[0] = 0; /* JIC */
436 st->size = 0;
437 }
vlm785435b2004-09-14 12:46:35 +0000438 }
439 return 0;
440 }
441
442 if(littleEndian) {
443 uint8_t *s = ((uint8_t *)&dbl_value) + sizeof(dbl_value) - 2;
vlm46361982004-09-14 13:58:10 +0000444 uint8_t *start = ((uint8_t *)&dbl_value);
vlm785435b2004-09-14 12:46:35 +0000445 uint8_t *d;
446
447 bmsign = 0x80 | ((s[1] >> 1) & 0x40); /* binary mask & - */
vlm46361982004-09-14 13:58:10 +0000448 for(mstop = d = dscr; s >= start; d++, s--) {
vlm785435b2004-09-14 12:46:35 +0000449 *d = *s;
450 if(*d) mstop = d;
451 }
452 } else {
453 uint8_t *s = ((uint8_t *)&dbl_value) + 1;
454 uint8_t *end = ((uint8_t *)&dbl_value) + sizeof(double);
455 uint8_t *d;
456
457 bmsign = 0x80 | ((s[-1] >> 1) & 0x40); /* binary mask & - */
458 for(mstop = d = dscr; s < end; d++, s++) {
459 *d = *s;
460 if(*d) mstop = d;
461 }
462 }
463
464 /* Remove parts of the exponent, leave mantissa and explicit 1. */
465 dscr[0] = 0x10 | (dscr[0] & 0x0f);
466
467 /* Adjust exponent in a very unobvious way */
468 expval -= 8 * ((mstop - dscr) + 1) - 4;
469
470 /* This loop ensures DER conformance by forcing mantissa odd: 11.3.1 */
471 mval = *mstop;
472 if(mval && !(mval & 1)) {
473 unsigned int shift_count = 1;
474 unsigned int ishift;
475 uint8_t *mptr;
476
477 /*
478 * Figure out what needs to be done to make mantissa odd.
479 */
480 if(!(mval & 0x0f)) /* Speed-up a little */
481 shift_count = 4;
482 while(((mval >> shift_count) & 1) == 0)
483 shift_count++;
484
485 ishift = 8 - shift_count;
486 accum = 0;
487
488 /* Go over the buffer, shifting it shift_count bits right. */
489 for(mptr = dscr; mptr <= mstop; mptr++) {
490 mval = *mptr;
491 *mptr = accum | (mval >> shift_count);
492 accum = mval << ishift;
493 }
494
495 /* Adjust mantissa appropriately. */
496 expval += shift_count;
497 }
498
499 if(expval < 0) {
500 if((expval >> 7) == -1) {
501 *ptr++ = bmsign | 0x00;
502 *ptr++ = expval;
503 } else if((expval >> 15) == -1) {
504 *ptr++ = bmsign | 0x01;
505 *ptr++ = expval >> 8;
506 *ptr++ = expval;
507 } else {
vlm785435b2004-09-14 12:46:35 +0000508 *ptr++ = bmsign | 0x02;
509 *ptr++ = expval >> 16;
510 *ptr++ = expval >> 8;
511 *ptr++ = expval;
512 }
513 } else if(expval <= 0x7f) {
514 *ptr++ = bmsign | 0x00;
515 *ptr++ = expval;
516 } else if(expval <= 0x7fff) {
517 *ptr++ = bmsign | 0x01;
518 *ptr++ = expval >> 8;
519 *ptr++ = expval;
520 } else {
521 assert(expval <= 0x7fffff);
522 *ptr++ = bmsign | 0x02;
523 *ptr++ = expval >> 16;
524 *ptr++ = expval >> 8;
525 *ptr++ = expval;
526 }
527
528 buflen = (mstop - dscr) + 1;
529 memcpy(ptr, dscr, buflen);
530 ptr += buflen;
531 buflen = ptr - buf;
532
533 (void *)ptr = MALLOC(buflen + 1);
534 if(!ptr) return -1;
535
536 memcpy(ptr, buf, buflen);
537 buf[buflen] = 0; /* JIC */
538
539 if(st->buf) FREEMEM(st->buf);
540 st->buf = ptr;
541 st->size = buflen;
542
543 return 0;
544}