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Comparing JSON-XS/XS.xs (file contents):
Revision 1.25 by root, Fri Apr 6 20:37:22 2007 UTC vs.
Revision 1.55 by root, Mon Jul 23 22:57:40 2007 UTC

3#include "XSUB.h" 3#include "XSUB.h"
4 4
5#include "assert.h" 5#include "assert.h"
6#include "string.h" 6#include "string.h"
7#include "stdlib.h" 7#include "stdlib.h"
8#include "stdio.h"
8 9
10#if defined(__BORLANDC__) || defined(_MSC_VER)
11# define snprintf _snprintf // C compilers have this in stdio.h
12#endif
13
14// some old perls do not have this, try to make it work, no
15// guarentees, though. if it breaks, you get to keep the pieces.
16#ifndef UTF8_MAXBYTES
17# define UTF8_MAXBYTES 13
18#endif
19
9#define F_ASCII 0x00000001UL 20#define F_ASCII 0x00000001UL
21#define F_LATIN1 0x00000002UL
10#define F_UTF8 0x00000002UL 22#define F_UTF8 0x00000004UL
11#define F_INDENT 0x00000004UL 23#define F_INDENT 0x00000008UL
12#define F_CANONICAL 0x00000008UL 24#define F_CANONICAL 0x00000010UL
13#define F_SPACE_BEFORE 0x00000010UL 25#define F_SPACE_BEFORE 0x00000020UL
14#define F_SPACE_AFTER 0x00000020UL 26#define F_SPACE_AFTER 0x00000040UL
15#define F_ALLOW_NONREF 0x00000080UL 27#define F_ALLOW_NONREF 0x00000100UL
16#define F_SHRINK 0x00000100UL 28#define F_SHRINK 0x00000200UL
29#define F_ALLOW_BLESSED 0x00000400UL
30#define F_CONV_BLESSED 0x00000800UL
17#define F_MAXDEPTH 0xf8000000UL 31#define F_MAXDEPTH 0xf8000000UL
18#define S_MAXDEPTH 27 32#define S_MAXDEPTH 27
33#define F_MAXSIZE 0x01f00000UL
34#define S_MAXSIZE 20
35#define F_HOOK 0x00080000UL // some hooks exist, so slow-path processing
19 36
20#define DEC_DEPTH(flags) (1UL << ((flags & F_MAXDEPTH) >> S_MAXDEPTH)) 37#define DEC_DEPTH(flags) (1UL << ((flags & F_MAXDEPTH) >> S_MAXDEPTH))
21 38#define DEC_SIZE(flags) (1UL << ((flags & F_MAXSIZE ) >> S_MAXSIZE ))
22// F_SELFCONVERT? <=> to_json/toJson
23// F_BLESSED? <=> { $__class__$ => }
24 39
25#define F_PRETTY F_INDENT | F_SPACE_BEFORE | F_SPACE_AFTER 40#define F_PRETTY F_INDENT | F_SPACE_BEFORE | F_SPACE_AFTER
26#define F_DEFAULT (9UL << S_MAXDEPTH) 41#define F_DEFAULT (9UL << S_MAXDEPTH)
27 42
28#define INIT_SIZE 32 // initial scalar size to be allocated 43#define INIT_SIZE 32 // initial scalar size to be allocated
29#define INDENT_STEP 3 // spaces per indentation level 44#define INDENT_STEP 3 // spaces per indentation level
30 45
31#define UTF8_MAX_LEN 11 // for perls UTF-X: max. number of octets per character
32#define SHORT_STRING_LEN 512 // special-case strings of up to this size 46#define SHORT_STRING_LEN 16384 // special-case strings of up to this size
33 47
34#define SB do { 48#define SB do {
35#define SE } while (0) 49#define SE } while (0)
36 50
51#if __GNUC__ >= 3
52# define expect(expr,value) __builtin_expect ((expr),(value))
53# define inline inline
54#else
55# define expect(expr,value) (expr)
56# define inline static
57#endif
58
59#define expect_false(expr) expect ((expr) != 0, 0)
60#define expect_true(expr) expect ((expr) != 0, 1)
61
37static HV *json_stash; // JSON::XS:: 62static HV *json_stash, *json_boolean_stash; // JSON::XS::
63static SV *json_true, *json_false;
64
65typedef struct {
66 U32 flags;
67 SV *cb_object;
68 HV *cb_sk_object;
69} JSON;
38 70
39///////////////////////////////////////////////////////////////////////////// 71/////////////////////////////////////////////////////////////////////////////
40// utility functions 72// utility functions
41 73
42static UV * 74inline void
43SvJSON (SV *sv)
44{
45 if (!(SvROK (sv) && SvOBJECT (SvRV (sv)) && SvSTASH (SvRV (sv)) == json_stash))
46 croak ("object is not of type JSON::XS");
47
48 return &SvUVX (SvRV (sv));
49}
50
51static void
52shrink (SV *sv) 75shrink (SV *sv)
53{ 76{
54 sv_utf8_downgrade (sv, 1); 77 sv_utf8_downgrade (sv, 1);
55 if (SvLEN (sv) > SvCUR (sv) + 1) 78 if (SvLEN (sv) > SvCUR (sv) + 1)
56 { 79 {
65// decode an utf-8 character and return it, or (UV)-1 in 88// decode an utf-8 character and return it, or (UV)-1 in
66// case of an error. 89// case of an error.
67// we special-case "safe" characters from U+80 .. U+7FF, 90// we special-case "safe" characters from U+80 .. U+7FF,
68// but use the very good perl function to parse anything else. 91// but use the very good perl function to parse anything else.
69// note that we never call this function for a ascii codepoints 92// note that we never call this function for a ascii codepoints
70static UV 93inline UV
71decode_utf8 (unsigned char *s, STRLEN len, STRLEN *clen) 94decode_utf8 (unsigned char *s, STRLEN len, STRLEN *clen)
72{ 95{
73 if (s[0] > 0xdf || s[0] < 0xc2) 96 if (expect_false (s[0] > 0xdf || s[0] < 0xc2))
74 return utf8n_to_uvuni (s, len, clen, UTF8_CHECK_ONLY); 97 return utf8n_to_uvuni (s, len, clen, UTF8_CHECK_ONLY);
75 else if (len > 1 && s[1] >= 0x80 && s[1] <= 0xbf) 98 else if (len > 1 && s[1] >= 0x80 && s[1] <= 0xbf)
76 { 99 {
77 *clen = 2; 100 *clen = 2;
78 return ((s[0] & 0x1f) << 6) | (s[1] & 0x3f); 101 return ((s[0] & 0x1f) << 6) | (s[1] & 0x3f);
91typedef struct 114typedef struct
92{ 115{
93 char *cur; // SvPVX (sv) + current output position 116 char *cur; // SvPVX (sv) + current output position
94 char *end; // SvEND (sv) 117 char *end; // SvEND (sv)
95 SV *sv; // result scalar 118 SV *sv; // result scalar
96 U32 flags; // F_* 119 JSON json;
97 U32 indent; // indentation level 120 U32 indent; // indentation level
98 U32 maxdepth; // max. indentation/recursion level 121 U32 maxdepth; // max. indentation/recursion level
99} enc_t; 122} enc_t;
100 123
101static void 124inline void
102need (enc_t *enc, STRLEN len) 125need (enc_t *enc, STRLEN len)
103{ 126{
104 if (enc->cur + len >= enc->end) 127 if (expect_false (enc->cur + len >= enc->end))
105 { 128 {
106 STRLEN cur = enc->cur - SvPVX (enc->sv); 129 STRLEN cur = enc->cur - SvPVX (enc->sv);
107 SvGROW (enc->sv, cur + len + 1); 130 SvGROW (enc->sv, cur + len + 1);
108 enc->cur = SvPVX (enc->sv) + cur; 131 enc->cur = SvPVX (enc->sv) + cur;
109 enc->end = SvPVX (enc->sv) + SvLEN (enc->sv); 132 enc->end = SvPVX (enc->sv) + SvLEN (enc->sv) - 1;
110 } 133 }
111} 134}
112 135
113static void 136inline void
114encode_ch (enc_t *enc, char ch) 137encode_ch (enc_t *enc, char ch)
115{ 138{
116 need (enc, 1); 139 need (enc, 1);
117 *enc->cur++ = ch; 140 *enc->cur++ = ch;
118} 141}
126 149
127 while (str < end) 150 while (str < end)
128 { 151 {
129 unsigned char ch = *(unsigned char *)str; 152 unsigned char ch = *(unsigned char *)str;
130 153
131 if (ch >= 0x20 && ch < 0x80) // most common case 154 if (expect_true (ch >= 0x20 && ch < 0x80)) // most common case
132 { 155 {
133 if (ch == '"') // but with slow exceptions 156 if (expect_false (ch == '"')) // but with slow exceptions
134 { 157 {
135 need (enc, len += 1); 158 need (enc, len += 1);
136 *enc->cur++ = '\\'; 159 *enc->cur++ = '\\';
137 *enc->cur++ = '"'; 160 *enc->cur++ = '"';
138 } 161 }
139 else if (ch == '\\') 162 else if (expect_false (ch == '\\'))
140 { 163 {
141 need (enc, len += 1); 164 need (enc, len += 1);
142 *enc->cur++ = '\\'; 165 *enc->cur++ = '\\';
143 *enc->cur++ = '\\'; 166 *enc->cur++ = '\\';
144 } 167 }
162 STRLEN clen; 185 STRLEN clen;
163 UV uch; 186 UV uch;
164 187
165 if (is_utf8) 188 if (is_utf8)
166 { 189 {
167 //uch = utf8n_to_uvuni (str, end - str, &clen, UTF8_CHECK_ONLY);
168 uch = decode_utf8 (str, end - str, &clen); 190 uch = decode_utf8 (str, end - str, &clen);
169 if (clen == (STRLEN)-1) 191 if (clen == (STRLEN)-1)
170 croak ("malformed or illegal unicode character in string [%.11s], cannot convert to JSON", str); 192 croak ("malformed or illegal unicode character in string [%.11s], cannot convert to JSON", str);
171 } 193 }
172 else 194 else
176 } 198 }
177 199
178 if (uch > 0x10FFFFUL) 200 if (uch > 0x10FFFFUL)
179 croak ("out of range codepoint (0x%lx) encountered, unrepresentable in JSON", (unsigned long)uch); 201 croak ("out of range codepoint (0x%lx) encountered, unrepresentable in JSON", (unsigned long)uch);
180 202
181 if (uch < 0x80 || enc->flags & F_ASCII) 203 if (uch < 0x80 || enc->json.flags & F_ASCII || (enc->json.flags & F_LATIN1 && uch > 0xFF))
182 { 204 {
183 if (uch > 0xFFFFUL) 205 if (uch > 0xFFFFUL)
184 { 206 {
185 need (enc, len += 11); 207 need (enc, len += 11);
186 sprintf (enc->cur, "\\u%04x\\u%04x", 208 sprintf (enc->cur, "\\u%04x\\u%04x",
200 *enc->cur++ = hexdigit [(uch >> 0) & 15]; 222 *enc->cur++ = hexdigit [(uch >> 0) & 15];
201 } 223 }
202 224
203 str += clen; 225 str += clen;
204 } 226 }
227 else if (enc->json.flags & F_LATIN1)
228 {
229 *enc->cur++ = uch;
230 str += clen;
231 }
205 else if (is_utf8) 232 else if (is_utf8)
206 { 233 {
207 need (enc, len += clen); 234 need (enc, len += clen);
208 do 235 do
209 { 236 {
211 } 238 }
212 while (--clen); 239 while (--clen);
213 } 240 }
214 else 241 else
215 { 242 {
216 need (enc, len += UTF8_MAX_LEN - 1); // never more than 11 bytes needed 243 need (enc, len += UTF8_MAXBYTES - 1); // never more than 11 bytes needed
217 enc->cur = uvuni_to_utf8_flags (enc->cur, uch, 0); 244 enc->cur = uvuni_to_utf8_flags (enc->cur, uch, 0);
218 ++str; 245 ++str;
219 } 246 }
220 } 247 }
221 } 248 }
223 250
224 --len; 251 --len;
225 } 252 }
226} 253}
227 254
228static void 255inline void
229encode_indent (enc_t *enc) 256encode_indent (enc_t *enc)
230{ 257{
231 if (enc->flags & F_INDENT) 258 if (enc->json.flags & F_INDENT)
232 { 259 {
233 int spaces = enc->indent * INDENT_STEP; 260 int spaces = enc->indent * INDENT_STEP;
234 261
235 need (enc, spaces); 262 need (enc, spaces);
236 memset (enc->cur, ' ', spaces); 263 memset (enc->cur, ' ', spaces);
237 enc->cur += spaces; 264 enc->cur += spaces;
238 } 265 }
239} 266}
240 267
241static void 268inline void
242encode_space (enc_t *enc) 269encode_space (enc_t *enc)
243{ 270{
244 need (enc, 1); 271 need (enc, 1);
245 encode_ch (enc, ' '); 272 encode_ch (enc, ' ');
246} 273}
247 274
248static void 275inline void
249encode_nl (enc_t *enc) 276encode_nl (enc_t *enc)
250{ 277{
251 if (enc->flags & F_INDENT) 278 if (enc->json.flags & F_INDENT)
252 { 279 {
253 need (enc, 1); 280 need (enc, 1);
254 encode_ch (enc, '\n'); 281 encode_ch (enc, '\n');
255 } 282 }
256} 283}
257 284
258static void 285inline void
259encode_comma (enc_t *enc) 286encode_comma (enc_t *enc)
260{ 287{
261 encode_ch (enc, ','); 288 encode_ch (enc, ',');
262 289
263 if (enc->flags & F_INDENT) 290 if (enc->json.flags & F_INDENT)
264 encode_nl (enc); 291 encode_nl (enc);
265 else if (enc->flags & F_SPACE_AFTER) 292 else if (enc->json.flags & F_SPACE_AFTER)
266 encode_space (enc); 293 encode_space (enc);
267} 294}
268 295
269static void encode_sv (enc_t *enc, SV *sv); 296static void encode_sv (enc_t *enc, SV *sv);
270 297
279 encode_ch (enc, '['); encode_nl (enc); 306 encode_ch (enc, '['); encode_nl (enc);
280 ++enc->indent; 307 ++enc->indent;
281 308
282 for (i = 0; i <= len; ++i) 309 for (i = 0; i <= len; ++i)
283 { 310 {
311 SV **svp = av_fetch (av, i, 0);
312
284 encode_indent (enc); 313 encode_indent (enc);
285 encode_sv (enc, *av_fetch (av, i, 0)); 314
315 if (svp)
316 encode_sv (enc, *svp);
317 else
318 encode_str (enc, "null", 4, 0);
286 319
287 if (i < len) 320 if (i < len)
288 encode_comma (enc); 321 encode_comma (enc);
289 } 322 }
290 323
313 else 346 else
314 encode_str (enc, HeKEY (he), HeKLEN (he), HeKUTF8 (he)); 347 encode_str (enc, HeKEY (he), HeKLEN (he), HeKUTF8 (he));
315 348
316 encode_ch (enc, '"'); 349 encode_ch (enc, '"');
317 350
318 if (enc->flags & F_SPACE_BEFORE) encode_space (enc); 351 if (enc->json.flags & F_SPACE_BEFORE) encode_space (enc);
319 encode_ch (enc, ':'); 352 encode_ch (enc, ':');
320 if (enc->flags & F_SPACE_AFTER ) encode_space (enc); 353 if (enc->json.flags & F_SPACE_AFTER ) encode_space (enc);
321 encode_sv (enc, HeVAL (he)); 354 encode_sv (enc, HeVAL (he));
322} 355}
323 356
324// compare hash entries, used when all keys are bytestrings 357// compare hash entries, used when all keys are bytestrings
325static int 358static int
360 { 393 {
361 // for canonical output we have to sort by keys first 394 // for canonical output we have to sort by keys first
362 // actually, this is mostly due to the stupid so-called 395 // actually, this is mostly due to the stupid so-called
363 // security workaround added somewhere in 5.8.x. 396 // security workaround added somewhere in 5.8.x.
364 // that randomises hash orderings 397 // that randomises hash orderings
365 if (enc->flags & F_CANONICAL) 398 if (enc->json.flags & F_CANONICAL)
366 { 399 {
367 HE *he, *hes [count]; // if your compiler dies here, you need to enable C99 mode
368 int fast = 1; 400 int fast = 1;
401 HE *he;
402#if defined(__BORLANDC__) || defined(_MSC_VER)
403 HE **hes = _alloca (count * sizeof (HE));
404#else
405 HE *hes [count]; // if your compiler dies here, you need to enable C99 mode
406#endif
369 407
370 i = 0; 408 i = 0;
371 while ((he = hv_iternext (hv))) 409 while ((he = hv_iternext (hv)))
372 { 410 {
373 hes [i++] = he; 411 hes [i++] = he;
437 svtype svt; 475 svtype svt;
438 476
439 SvGETMAGIC (sv); 477 SvGETMAGIC (sv);
440 svt = SvTYPE (sv); 478 svt = SvTYPE (sv);
441 479
480 if (expect_false (SvOBJECT (sv)))
481 {
482 if (SvSTASH (sv) == json_boolean_stash)
483 {
484 if (SvIV (sv))
485 encode_str (enc, "true", 4, 0);
486 else
487 encode_str (enc, "false", 5, 0);
488 }
489 else
490 {
491#if 0
492 if (0 && sv_derived_from (rv, "JSON::Literal"))
493 {
494 // not yet
495 }
496#endif
497 if (enc->json.flags & F_CONV_BLESSED)
498 {
499 // we re-bless the reference to get overload and other niceties right
500 GV *to_json = gv_fetchmethod_autoload (SvSTASH (sv), "TO_JSON", 0);
501
502 if (to_json)
503 {
504 int count;
505 dSP;
506
507 ENTER; SAVETMPS; PUSHMARK (SP);
508 XPUSHs (sv_bless (sv_2mortal (newRV_inc (sv)), SvSTASH (sv)));
509
510 // calling with G_SCALAR ensures that we always get a 1 return value
511 PUTBACK;
512 call_sv ((SV *)GvCV (to_json), G_SCALAR);
513 SPAGAIN;
514
515 // catch this surprisingly common error
516 if (SvROK (TOPs) && SvRV (TOPs) == sv)
517 croak ("%s::TO_JSON method returned same object as was passed instead of a new one", HvNAME (SvSTASH (sv)));
518
519 sv = POPs;
520 PUTBACK;
521
522 encode_sv (enc, sv);
523
524 FREETMPS; LEAVE;
525 }
526 else if (enc->json.flags & F_ALLOW_BLESSED)
527 encode_str (enc, "null", 4, 0);
528 else
529 croak ("encountered object '%s', but neither allow_blessed enabled nor TO_JSON method available on it",
530 SvPV_nolen (sv_2mortal (newRV_inc (sv))));
531 }
532 else if (enc->json.flags & F_ALLOW_BLESSED)
533 encode_str (enc, "null", 4, 0);
534 else
535 croak ("encountered object '%s', but neither allow_blessed nor convert_blessed settings are enabled",
536 SvPV_nolen (sv_2mortal (newRV_inc (sv))));
537 }
538 }
442 if (svt == SVt_PVHV) 539 else if (svt == SVt_PVHV)
443 encode_hv (enc, (HV *)sv); 540 encode_hv (enc, (HV *)sv);
444 else if (svt == SVt_PVAV) 541 else if (svt == SVt_PVAV)
445 encode_av (enc, (AV *)sv); 542 encode_av (enc, (AV *)sv);
446 else if (svt < SVt_PVAV) 543 else if (svt < SVt_PVAV)
447 { 544 {
448 if (SvNIOK (sv) && SvIV (sv) == 0) 545 STRLEN len = 0;
546 char *pv = svt ? SvPV (sv, len) : 0;
547
548 if (len == 1 && *pv == '1')
549 encode_str (enc, "true", 4, 0);
550 else if (len == 1 && *pv == '0')
449 encode_str (enc, "false", 5, 0); 551 encode_str (enc, "false", 5, 0);
450 else if (SvNIOK (sv) && SvIV (sv) == 1)
451 encode_str (enc, "true", 4, 0);
452 else 552 else
453 croak ("cannot encode reference to scalar '%s' unless the scalar is 0 or 1", 553 croak ("cannot encode reference to scalar '%s' unless the scalar is 0 or 1",
454 SvPV_nolen (sv_2mortal (newRV_inc (sv)))); 554 SvPV_nolen (sv_2mortal (newRV_inc (sv))));
455 } 555 }
456 else 556 else
471 encode_str (enc, str, len, SvUTF8 (sv)); 571 encode_str (enc, str, len, SvUTF8 (sv));
472 encode_ch (enc, '"'); 572 encode_ch (enc, '"');
473 } 573 }
474 else if (SvNOKp (sv)) 574 else if (SvNOKp (sv))
475 { 575 {
576 // trust that perl will do the right thing w.r.t. JSON syntax.
476 need (enc, NV_DIG + 32); 577 need (enc, NV_DIG + 32);
477 Gconvert (SvNVX (sv), NV_DIG, 0, enc->cur); 578 Gconvert (SvNVX (sv), NV_DIG, 0, enc->cur);
478 enc->cur += strlen (enc->cur); 579 enc->cur += strlen (enc->cur);
479 } 580 }
480 else if (SvIOKp (sv)) 581 else if (SvIOKp (sv))
481 { 582 {
482 need (enc, 64); 583 // we assume we can always read an IV as a UV
584 if (SvUV (sv) & ~(UV)0x7fff)
585 {
586 // large integer, use the (rather slow) snprintf way.
587 need (enc, sizeof (UV) * 3);
483 enc->cur += 588 enc->cur +=
484 SvIsUV(sv) 589 SvIsUV(sv)
485 ? snprintf (enc->cur, 64, "%"UVuf, (UV)SvUVX (sv)) 590 ? snprintf (enc->cur, sizeof (UV) * 3, "%"UVuf, (UV)SvUVX (sv))
486 : snprintf (enc->cur, 64, "%"IVdf, (IV)SvIVX (sv)); 591 : snprintf (enc->cur, sizeof (UV) * 3, "%"IVdf, (IV)SvIVX (sv));
592 }
593 else
594 {
595 // optimise the "small number case"
596 // code will likely be branchless and use only a single multiplication
597 I32 i = SvIV (sv);
598 U32 u;
599 char digit, nz = 0;
600
601 need (enc, 6);
602
603 *enc->cur = '-'; enc->cur += i < 0 ? 1 : 0;
604 u = i < 0 ? -i : i;
605
606 // convert to 4.28 fixed-point representation
607 u = u * ((0xfffffff + 10000) / 10000); // 10**5, 5 fractional digits
608
609 // now output digit by digit, each time masking out the integer part
610 // and multiplying by 5 while moving the decimal point one to the right,
611 // resulting in a net multiplication by 10.
612 // we always write the digit to memory but conditionally increment
613 // the pointer, to ease the usage of conditional move instructions.
614 digit = u >> 28; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0xfffffff) * 5;
615 digit = u >> 27; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0x7ffffff) * 5;
616 digit = u >> 26; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0x3ffffff) * 5;
617 digit = u >> 25; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0x1ffffff) * 5;
618 digit = u >> 24; *enc->cur = digit + '0'; enc->cur += 1; // correctly generate '0'
619 }
487 } 620 }
488 else if (SvROK (sv)) 621 else if (SvROK (sv))
489 encode_rv (enc, SvRV (sv)); 622 encode_rv (enc, SvRV (sv));
490 else if (!SvOK (sv)) 623 else if (!SvOK (sv))
491 encode_str (enc, "null", 4, 0); 624 encode_str (enc, "null", 4, 0);
493 croak ("encountered perl type (%s,0x%x) that JSON cannot handle, you might want to report this", 626 croak ("encountered perl type (%s,0x%x) that JSON cannot handle, you might want to report this",
494 SvPV_nolen (sv), SvFLAGS (sv)); 627 SvPV_nolen (sv), SvFLAGS (sv));
495} 628}
496 629
497static SV * 630static SV *
498encode_json (SV *scalar, U32 flags) 631encode_json (SV *scalar, JSON *json)
499{ 632{
500 enc_t enc; 633 enc_t enc;
501 634
502 if (!(flags & F_ALLOW_NONREF) && !SvROK (scalar)) 635 if (!(json->flags & F_ALLOW_NONREF) && !SvROK (scalar))
503 croak ("hash- or arrayref expected (not a simple scalar, use allow_nonref to allow this)"); 636 croak ("hash- or arrayref expected (not a simple scalar, use allow_nonref to allow this)");
504 637
505 enc.flags = flags; 638 enc.json = *json;
506 enc.sv = sv_2mortal (NEWSV (0, INIT_SIZE)); 639 enc.sv = sv_2mortal (NEWSV (0, INIT_SIZE));
507 enc.cur = SvPVX (enc.sv); 640 enc.cur = SvPVX (enc.sv);
508 enc.end = SvEND (enc.sv); 641 enc.end = SvEND (enc.sv);
509 enc.indent = 0; 642 enc.indent = 0;
510 enc.maxdepth = DEC_DEPTH (flags); 643 enc.maxdepth = DEC_DEPTH (enc.json.flags);
511 644
512 SvPOK_only (enc.sv); 645 SvPOK_only (enc.sv);
513 encode_sv (&enc, scalar); 646 encode_sv (&enc, scalar);
514 647
648 SvCUR_set (enc.sv, enc.cur - SvPVX (enc.sv));
649 *SvEND (enc.sv) = 0; // many xs functions expect a trailing 0 for text strings
650
515 if (!(flags & (F_ASCII | F_UTF8))) 651 if (!(enc.json.flags & (F_ASCII | F_LATIN1 | F_UTF8)))
516 SvUTF8_on (enc.sv); 652 SvUTF8_on (enc.sv);
517 653
518 SvCUR_set (enc.sv, enc.cur - SvPVX (enc.sv));
519
520 if (enc.flags & F_SHRINK) 654 if (enc.json.flags & F_SHRINK)
521 shrink (enc.sv); 655 shrink (enc.sv);
522 656
523 return enc.sv; 657 return enc.sv;
524} 658}
525 659
530typedef struct 664typedef struct
531{ 665{
532 char *cur; // current parser pointer 666 char *cur; // current parser pointer
533 char *end; // end of input string 667 char *end; // end of input string
534 const char *err; // parse error, if != 0 668 const char *err; // parse error, if != 0
535 U32 flags; // F_* 669 JSON json;
536 U32 depth; // recursion depth 670 U32 depth; // recursion depth
537 U32 maxdepth; // recursion depth limit 671 U32 maxdepth; // recursion depth limit
538} dec_t; 672} dec_t;
539 673
540static void 674inline void
541decode_ws (dec_t *dec) 675decode_ws (dec_t *dec)
542{ 676{
543 for (;;) 677 for (;;)
544 { 678 {
545 char ch = *dec->cur; 679 char ch = *dec->cur;
571decode_4hex (dec_t *dec) 705decode_4hex (dec_t *dec)
572{ 706{
573 signed char d1, d2, d3, d4; 707 signed char d1, d2, d3, d4;
574 unsigned char *cur = (unsigned char *)dec->cur; 708 unsigned char *cur = (unsigned char *)dec->cur;
575 709
576 d1 = decode_hexdigit [cur [0]]; if (d1 < 0) ERR ("four hexadecimal digits expected"); 710 d1 = decode_hexdigit [cur [0]]; if (expect_false (d1 < 0)) ERR ("exactly four hexadecimal digits expected");
577 d2 = decode_hexdigit [cur [1]]; if (d2 < 0) ERR ("four hexadecimal digits expected"); 711 d2 = decode_hexdigit [cur [1]]; if (expect_false (d2 < 0)) ERR ("exactly four hexadecimal digits expected");
578 d3 = decode_hexdigit [cur [2]]; if (d3 < 0) ERR ("four hexadecimal digits expected"); 712 d3 = decode_hexdigit [cur [2]]; if (expect_false (d3 < 0)) ERR ("exactly four hexadecimal digits expected");
579 d4 = decode_hexdigit [cur [3]]; if (d4 < 0) ERR ("four hexadecimal digits expected"); 713 d4 = decode_hexdigit [cur [3]]; if (expect_false (d4 < 0)) ERR ("exactly four hexadecimal digits expected");
580 714
581 dec->cur += 4; 715 dec->cur += 4;
582 716
583 return ((UV)d1) << 12 717 return ((UV)d1) << 12
584 | ((UV)d2) << 8 718 | ((UV)d2) << 8
592static SV * 726static SV *
593decode_str (dec_t *dec) 727decode_str (dec_t *dec)
594{ 728{
595 SV *sv = 0; 729 SV *sv = 0;
596 int utf8 = 0; 730 int utf8 = 0;
731 char *dec_cur = dec->cur;
597 732
598 do 733 do
599 { 734 {
600 char buf [SHORT_STRING_LEN + UTF8_MAX_LEN]; 735 char buf [SHORT_STRING_LEN + UTF8_MAXBYTES];
601 char *cur = buf; 736 char *cur = buf;
602 737
603 do 738 do
604 { 739 {
605 unsigned char ch = *(unsigned char *)dec->cur++; 740 unsigned char ch = *(unsigned char *)dec_cur++;
606 741
607 if (ch == '"') 742 if (expect_false (ch == '"'))
608 { 743 {
609 --dec->cur; 744 --dec_cur;
610 break; 745 break;
611 } 746 }
612 else if (ch == '\\') 747 else if (expect_false (ch == '\\'))
613 { 748 {
614 switch (*dec->cur) 749 switch (*dec_cur)
615 { 750 {
616 case '\\': 751 case '\\':
617 case '/': 752 case '/':
618 case '"': *cur++ = *dec->cur++; break; 753 case '"': *cur++ = *dec_cur++; break;
619 754
620 case 'b': ++dec->cur; *cur++ = '\010'; break; 755 case 'b': ++dec_cur; *cur++ = '\010'; break;
621 case 't': ++dec->cur; *cur++ = '\011'; break; 756 case 't': ++dec_cur; *cur++ = '\011'; break;
622 case 'n': ++dec->cur; *cur++ = '\012'; break; 757 case 'n': ++dec_cur; *cur++ = '\012'; break;
623 case 'f': ++dec->cur; *cur++ = '\014'; break; 758 case 'f': ++dec_cur; *cur++ = '\014'; break;
624 case 'r': ++dec->cur; *cur++ = '\015'; break; 759 case 'r': ++dec_cur; *cur++ = '\015'; break;
625 760
626 case 'u': 761 case 'u':
627 { 762 {
628 UV lo, hi; 763 UV lo, hi;
629 ++dec->cur; 764 ++dec_cur;
630 765
766 dec->cur = dec_cur;
631 hi = decode_4hex (dec); 767 hi = decode_4hex (dec);
768 dec_cur = dec->cur;
632 if (hi == (UV)-1) 769 if (hi == (UV)-1)
633 goto fail; 770 goto fail;
634 771
635 // possibly a surrogate pair 772 // possibly a surrogate pair
636 if (hi >= 0xd800) 773 if (hi >= 0xd800)
637 if (hi < 0xdc00) 774 if (hi < 0xdc00)
638 { 775 {
639 if (dec->cur [0] != '\\' || dec->cur [1] != 'u') 776 if (dec_cur [0] != '\\' || dec_cur [1] != 'u')
640 ERR ("missing low surrogate character in surrogate pair"); 777 ERR ("missing low surrogate character in surrogate pair");
641 778
642 dec->cur += 2; 779 dec_cur += 2;
643 780
781 dec->cur = dec_cur;
644 lo = decode_4hex (dec); 782 lo = decode_4hex (dec);
783 dec_cur = dec->cur;
645 if (lo == (UV)-1) 784 if (lo == (UV)-1)
646 goto fail; 785 goto fail;
647 786
648 if (lo < 0xdc00 || lo >= 0xe000) 787 if (lo < 0xdc00 || lo >= 0xe000)
649 ERR ("surrogate pair expected"); 788 ERR ("surrogate pair expected");
663 *cur++ = hi; 802 *cur++ = hi;
664 } 803 }
665 break; 804 break;
666 805
667 default: 806 default:
668 --dec->cur; 807 --dec_cur;
669 ERR ("illegal backslash escape sequence in string"); 808 ERR ("illegal backslash escape sequence in string");
670 } 809 }
671 } 810 }
672 else if (ch >= 0x20 && ch <= 0x7f) 811 else if (expect_true (ch >= 0x20 && ch <= 0x7f))
673 *cur++ = ch; 812 *cur++ = ch;
674 else if (ch >= 0x80) 813 else if (ch >= 0x80)
675 { 814 {
676 STRLEN clen; 815 STRLEN clen;
677 UV uch; 816 UV uch;
678 817
679 --dec->cur; 818 --dec_cur;
680 819
681 uch = decode_utf8 (dec->cur, dec->end - dec->cur, &clen); 820 uch = decode_utf8 (dec_cur, dec->end - dec_cur, &clen);
682 if (clen == (STRLEN)-1) 821 if (clen == (STRLEN)-1)
683 ERR ("malformed UTF-8 character in JSON string"); 822 ERR ("malformed UTF-8 character in JSON string");
684 823
685 do 824 do
686 *cur++ = *dec->cur++; 825 *cur++ = *dec_cur++;
687 while (--clen); 826 while (--clen);
688 827
689 utf8 = 1; 828 utf8 = 1;
690 } 829 }
691 else 830 else
692 { 831 {
693 --dec->cur; 832 --dec_cur;
694 833
695 if (!ch) 834 if (!ch)
696 ERR ("unexpected end of string while parsing JSON string"); 835 ERR ("unexpected end of string while parsing JSON string");
697 else 836 else
698 ERR ("invalid character encountered while parsing JSON string"); 837 ERR ("invalid character encountered while parsing JSON string");
711 } 850 }
712 else 851 else
713 sv = newSVpvn (buf, len); 852 sv = newSVpvn (buf, len);
714 } 853 }
715 } 854 }
716 while (*dec->cur != '"'); 855 while (*dec_cur != '"');
717 856
718 ++dec->cur; 857 ++dec_cur;
719 858
720 if (sv) 859 if (sv)
721 { 860 {
722 SvPOK_only (sv); 861 SvPOK_only (sv);
723 *SvEND (sv) = 0; 862 *SvEND (sv) = 0;
726 SvUTF8_on (sv); 865 SvUTF8_on (sv);
727 } 866 }
728 else 867 else
729 sv = newSVpvn ("", 0); 868 sv = newSVpvn ("", 0);
730 869
870 dec->cur = dec_cur;
731 return sv; 871 return sv;
732 872
733fail: 873fail:
874 dec->cur = dec_cur;
734 return 0; 875 return 0;
735} 876}
736 877
737static SV * 878static SV *
738decode_num (dec_t *dec) 879decode_num (dec_t *dec)
796 is_nv = 1; 937 is_nv = 1;
797 } 938 }
798 939
799 if (!is_nv) 940 if (!is_nv)
800 { 941 {
801 UV uv; 942 // special case the rather common 1..4-digit-int case, assumes 32 bit ints or so
802 int numtype = grok_number (start, dec->cur - start, &uv); 943 if (*start == '-')
803 if (numtype & IS_NUMBER_IN_UV) 944 switch (dec->cur - start)
804 if (numtype & IS_NUMBER_NEG)
805 { 945 {
806 if (uv < (UV)IV_MIN) 946 case 2: return newSViv (-( start [1] - '0' * 1));
807 return newSViv (-(IV)uv); 947 case 3: return newSViv (-( start [1] * 10 + start [2] - '0' * 11));
948 case 4: return newSViv (-( start [1] * 100 + start [2] * 10 + start [3] - '0' * 111));
949 case 5: return newSViv (-(start [1] * 1000 + start [2] * 100 + start [3] * 10 + start [4] - '0' * 1111));
808 } 950 }
951 else
952 switch (dec->cur - start)
953 {
954 case 1: return newSViv ( start [0] - '0' * 1);
955 case 2: return newSViv ( start [0] * 10 + start [1] - '0' * 11);
956 case 3: return newSViv ( start [0] * 100 + start [1] * 10 + start [2] - '0' * 111);
957 case 4: return newSViv ( start [0] * 1000 + start [1] * 100 + start [2] * 10 + start [3] - '0' * 1111);
958 }
959
960 {
961 UV uv;
962 int numtype = grok_number (start, dec->cur - start, &uv);
963 if (numtype & IS_NUMBER_IN_UV)
964 if (numtype & IS_NUMBER_NEG)
965 {
966 if (uv < (UV)IV_MIN)
967 return newSViv (-(IV)uv);
968 }
809 else 969 else
810 return newSVuv (uv); 970 return newSVuv (uv);
971
972 // here would likely be the place for bigint support
811 } 973 }
974 }
812 975
976 // if we ever support bigint or bigfloat, this is the place for bigfloat
813 return newSVnv (Atof (start)); 977 return newSVnv (Atof (start));
814 978
815fail: 979fail:
816 return 0; 980 return 0;
817} 981}
861} 1025}
862 1026
863static SV * 1027static SV *
864decode_hv (dec_t *dec) 1028decode_hv (dec_t *dec)
865{ 1029{
1030 SV *sv;
866 HV *hv = newHV (); 1031 HV *hv = newHV ();
867 1032
868 DEC_INC_DEPTH; 1033 DEC_INC_DEPTH;
869 decode_ws (dec); 1034 decode_ws (dec);
870 1035
871 if (*dec->cur == '}') 1036 if (*dec->cur == '}')
872 ++dec->cur; 1037 ++dec->cur;
873 else 1038 else
874 for (;;) 1039 for (;;)
875 { 1040 {
876 SV *key, *value;
877
878 decode_ws (dec); EXPECT_CH ('"'); 1041 decode_ws (dec); EXPECT_CH ('"');
879 1042
880 key = decode_str (dec); 1043 // heuristic: assume that
881 if (!key) 1044 // a) decode_str + hv_store_ent are abysmally slow.
882 goto fail; 1045 // b) most hash keys are short, simple ascii text.
1046 // => try to "fast-match" such strings to avoid
1047 // the overhead of decode_str + hv_store_ent.
1048 {
1049 SV *value;
1050 char *p = dec->cur;
1051 char *e = p + 24; // only try up to 24 bytes
883 1052
884 decode_ws (dec); EXPECT_CH (':'); 1053 for (;;)
885
886 value = decode_sv (dec);
887 if (!value)
888 { 1054 {
1055 // the >= 0x80 is true on most architectures
1056 if (p == e || *p < 0x20 || *p >= 0x80 || *p == '\\')
1057 {
1058 // slow path, back up and use decode_str
1059 SV *key = decode_str (dec);
1060 if (!key)
1061 goto fail;
1062
1063 decode_ws (dec); EXPECT_CH (':');
1064
1065 value = decode_sv (dec);
1066 if (!value)
1067 {
1068 SvREFCNT_dec (key);
1069 goto fail;
1070 }
1071
1072 hv_store_ent (hv, key, value, 0);
889 SvREFCNT_dec (key); 1073 SvREFCNT_dec (key);
1074
1075 break;
1076 }
1077 else if (*p == '"')
1078 {
1079 // fast path, got a simple key
1080 char *key = dec->cur;
1081 int len = p - key;
1082 dec->cur = p + 1;
1083
1084 decode_ws (dec); EXPECT_CH (':');
1085
1086 value = decode_sv (dec);
1087 if (!value)
890 goto fail; 1088 goto fail;
1089
1090 hv_store (hv, key, len, value, 0);
1091
1092 break;
1093 }
1094
1095 ++p;
891 } 1096 }
892 1097 }
893 hv_store_ent (hv, key, value, 0);
894 SvREFCNT_dec (key);
895 1098
896 decode_ws (dec); 1099 decode_ws (dec);
897 1100
898 if (*dec->cur == '}') 1101 if (*dec->cur == '}')
899 { 1102 {
906 1109
907 ++dec->cur; 1110 ++dec->cur;
908 } 1111 }
909 1112
910 DEC_DEC_DEPTH; 1113 DEC_DEC_DEPTH;
911 return newRV_noinc ((SV *)hv); 1114 sv = newRV_noinc ((SV *)hv);
1115
1116 // check filter callbacks
1117 if (dec->json.flags & F_HOOK)
1118 {
1119 if (dec->json.cb_sk_object && HvKEYS (hv) == 1)
1120 {
1121 HE *cb, *he;
1122
1123 hv_iterinit (hv);
1124 he = hv_iternext (hv);
1125 hv_iterinit (hv);
1126
1127 // the next line creates a mortal sv each time its called.
1128 // might want to optimise this for common cases.
1129 cb = hv_fetch_ent (dec->json.cb_sk_object, hv_iterkeysv (he), 0, 0);
1130
1131 if (cb)
1132 {
1133 dSP;
1134 int count;
1135
1136 ENTER; SAVETMPS; PUSHMARK (SP);
1137 XPUSHs (HeVAL (he));
1138
1139 PUTBACK; count = call_sv (HeVAL (cb), G_ARRAY); SPAGAIN;
1140
1141 if (count == 1)
1142 {
1143 sv = newSVsv (POPs);
1144 FREETMPS; LEAVE;
1145 return sv;
1146 }
1147
1148 FREETMPS; LEAVE;
1149 }
1150 }
1151
1152 if (dec->json.cb_object)
1153 {
1154 dSP;
1155 int count;
1156
1157 ENTER; SAVETMPS; PUSHMARK (SP);
1158 XPUSHs (sv_2mortal (sv));
1159
1160 PUTBACK; count = call_sv (dec->json.cb_object, G_ARRAY); SPAGAIN;
1161
1162 if (count == 1)
1163 {
1164 sv = newSVsv (POPs);
1165 FREETMPS; LEAVE;
1166 return sv;
1167 }
1168
1169 SvREFCNT_inc (sv);
1170 FREETMPS; LEAVE;
1171 }
1172 }
1173
1174 return sv;
912 1175
913fail: 1176fail:
914 SvREFCNT_dec (hv); 1177 SvREFCNT_dec (hv);
915 DEC_DEC_DEPTH; 1178 DEC_DEC_DEPTH;
916 return 0; 1179 return 0;
918 1181
919static SV * 1182static SV *
920decode_sv (dec_t *dec) 1183decode_sv (dec_t *dec)
921{ 1184{
922 decode_ws (dec); 1185 decode_ws (dec);
1186
1187 // the beauty of JSON: you need exactly one character lookahead
1188 // to parse anything.
923 switch (*dec->cur) 1189 switch (*dec->cur)
924 { 1190 {
925 case '"': ++dec->cur; return decode_str (dec); 1191 case '"': ++dec->cur; return decode_str (dec);
926 case '[': ++dec->cur; return decode_av (dec); 1192 case '[': ++dec->cur; return decode_av (dec);
927 case '{': ++dec->cur; return decode_hv (dec); 1193 case '{': ++dec->cur; return decode_hv (dec);
933 1199
934 case 't': 1200 case 't':
935 if (dec->end - dec->cur >= 4 && !memcmp (dec->cur, "true", 4)) 1201 if (dec->end - dec->cur >= 4 && !memcmp (dec->cur, "true", 4))
936 { 1202 {
937 dec->cur += 4; 1203 dec->cur += 4;
938 return newSViv (1); 1204 return SvREFCNT_inc (json_true);
939 } 1205 }
940 else 1206 else
941 ERR ("'true' expected"); 1207 ERR ("'true' expected");
942 1208
943 break; 1209 break;
944 1210
945 case 'f': 1211 case 'f':
946 if (dec->end - dec->cur >= 5 && !memcmp (dec->cur, "false", 5)) 1212 if (dec->end - dec->cur >= 5 && !memcmp (dec->cur, "false", 5))
947 { 1213 {
948 dec->cur += 5; 1214 dec->cur += 5;
949 return newSViv (0); 1215 return SvREFCNT_inc (json_false);
950 } 1216 }
951 else 1217 else
952 ERR ("'false' expected"); 1218 ERR ("'false' expected");
953 1219
954 break; 1220 break;
972fail: 1238fail:
973 return 0; 1239 return 0;
974} 1240}
975 1241
976static SV * 1242static SV *
977decode_json (SV *string, U32 flags) 1243decode_json (SV *string, JSON *json, UV *offset_return)
978{ 1244{
979 dec_t dec; 1245 dec_t dec;
1246 UV offset;
980 SV *sv; 1247 SV *sv;
981 1248
1249 SvGETMAGIC (string);
982 SvUPGRADE (string, SVt_PV); 1250 SvUPGRADE (string, SVt_PV);
983 1251
1252 if (json->flags & F_MAXSIZE && SvCUR (string) > DEC_SIZE (json->flags))
1253 croak ("attempted decode of JSON text of %lu bytes size, but max_size is set to %lu",
1254 (unsigned long)SvCUR (string), (unsigned long)DEC_SIZE (json->flags));
1255
984 if (flags & F_UTF8) 1256 if (json->flags & F_UTF8)
985 sv_utf8_downgrade (string, 0); 1257 sv_utf8_downgrade (string, 0);
986 else 1258 else
987 sv_utf8_upgrade (string); 1259 sv_utf8_upgrade (string);
988 1260
989 SvGROW (string, SvCUR (string) + 1); // should basically be a NOP 1261 SvGROW (string, SvCUR (string) + 1); // should basically be a NOP
990 1262
991 dec.flags = flags; 1263 dec.json = *json;
992 dec.cur = SvPVX (string); 1264 dec.cur = SvPVX (string);
993 dec.end = SvEND (string); 1265 dec.end = SvEND (string);
994 dec.err = 0; 1266 dec.err = 0;
995 dec.depth = 0; 1267 dec.depth = 0;
996 dec.maxdepth = DEC_DEPTH (dec.flags); 1268 dec.maxdepth = DEC_DEPTH (dec.json.flags);
997 1269
1270 if (dec.json.cb_object || dec.json.cb_sk_object)
1271 dec.json.flags |= F_HOOK;
1272
998 *dec.end = 0; // this should basically be a nop, too, but make sure its there 1273 *dec.end = 0; // this should basically be a nop, too, but make sure it's there
999 sv = decode_sv (&dec); 1274 sv = decode_sv (&dec);
1000 1275
1276 if (!(offset_return || !sv))
1277 {
1278 // check for trailing garbage
1279 decode_ws (&dec);
1280
1281 if (*dec.cur)
1282 {
1283 dec.err = "garbage after JSON object";
1284 SvREFCNT_dec (sv);
1285 sv = 0;
1286 }
1287 }
1288
1289 if (offset_return || !sv)
1290 {
1291 offset = dec.json.flags & F_UTF8
1292 ? dec.cur - SvPVX (string)
1293 : utf8_distance (dec.cur, SvPVX (string));
1294
1295 if (offset_return)
1296 *offset_return = offset;
1297 }
1298
1001 if (!sv) 1299 if (!sv)
1002 { 1300 {
1003 IV offset = dec.flags & F_UTF8
1004 ? dec.cur - SvPVX (string)
1005 : utf8_distance (dec.cur, SvPVX (string));
1006 SV *uni = sv_newmortal (); 1301 SV *uni = sv_newmortal ();
1007 1302
1008 // horrible hack to silence warning inside pv_uni_display 1303 // horrible hack to silence warning inside pv_uni_display
1009 COP cop = *PL_curcop; 1304 COP cop = *PL_curcop;
1010 cop.cop_warnings = pWARN_NONE; 1305 cop.cop_warnings = pWARN_NONE;
1020 dec.cur != dec.end ? SvPV_nolen (uni) : "(end of string)"); 1315 dec.cur != dec.end ? SvPV_nolen (uni) : "(end of string)");
1021 } 1316 }
1022 1317
1023 sv = sv_2mortal (sv); 1318 sv = sv_2mortal (sv);
1024 1319
1025 if (!(dec.flags & F_ALLOW_NONREF) && !SvROK (sv)) 1320 if (!(dec.json.flags & F_ALLOW_NONREF) && !SvROK (sv))
1026 croak ("JSON text must be an object or array (but found number, string, true, false or null, use allow_nonref to allow this)"); 1321 croak ("JSON text must be an object or array (but found number, string, true, false or null, use allow_nonref to allow this)");
1027 1322
1028 return sv; 1323 return sv;
1029} 1324}
1030 1325
1034MODULE = JSON::XS PACKAGE = JSON::XS 1329MODULE = JSON::XS PACKAGE = JSON::XS
1035 1330
1036BOOT: 1331BOOT:
1037{ 1332{
1038 int i; 1333 int i;
1039
1040 memset (decode_hexdigit, 0xff, 256);
1041 1334
1042 for (i = 0; i < 256; ++i) 1335 for (i = 0; i < 256; ++i)
1043 decode_hexdigit [i] = 1336 decode_hexdigit [i] =
1044 i >= '0' && i <= '9' ? i - '0' 1337 i >= '0' && i <= '9' ? i - '0'
1045 : i >= 'a' && i <= 'f' ? i - 'a' + 10 1338 : i >= 'a' && i <= 'f' ? i - 'a' + 10
1046 : i >= 'A' && i <= 'F' ? i - 'A' + 10 1339 : i >= 'A' && i <= 'F' ? i - 'A' + 10
1047 : -1; 1340 : -1;
1048 1341
1049 json_stash = gv_stashpv ("JSON::XS", 1); 1342 json_stash = gv_stashpv ("JSON::XS" , 1);
1343 json_boolean_stash = gv_stashpv ("JSON::XS::Boolean", 1);
1344
1345 json_true = get_sv ("JSON::XS::true" , 1); SvREADONLY_on (json_true );
1346 json_false = get_sv ("JSON::XS::false", 1); SvREADONLY_on (json_false);
1050} 1347}
1051 1348
1052PROTOTYPES: DISABLE 1349PROTOTYPES: DISABLE
1053 1350
1054SV *new (char *dummy) 1351void new (char *klass)
1055 CODE: 1352 PPCODE:
1056 RETVAL = sv_bless (newRV_noinc (newSVuv (F_DEFAULT)), json_stash); 1353{
1057 OUTPUT: 1354 SV *pv = NEWSV (0, sizeof (JSON));
1058 RETVAL 1355 SvPOK_only (pv);
1356 Zero (SvPVX (pv), 1, JSON);
1357 ((JSON *)SvPVX (pv))->flags = F_DEFAULT;
1358 XPUSHs (sv_2mortal (sv_bless (newRV_noinc (pv), json_stash)));
1359}
1059 1360
1060SV *ascii (SV *self, int enable = 1) 1361void ascii (JSON *self, int enable = 1)
1061 ALIAS: 1362 ALIAS:
1062 ascii = F_ASCII 1363 ascii = F_ASCII
1364 latin1 = F_LATIN1
1063 utf8 = F_UTF8 1365 utf8 = F_UTF8
1064 indent = F_INDENT 1366 indent = F_INDENT
1065 canonical = F_CANONICAL 1367 canonical = F_CANONICAL
1066 space_before = F_SPACE_BEFORE 1368 space_before = F_SPACE_BEFORE
1067 space_after = F_SPACE_AFTER 1369 space_after = F_SPACE_AFTER
1068 pretty = F_PRETTY 1370 pretty = F_PRETTY
1069 allow_nonref = F_ALLOW_NONREF 1371 allow_nonref = F_ALLOW_NONREF
1070 shrink = F_SHRINK 1372 shrink = F_SHRINK
1373 allow_blessed = F_ALLOW_BLESSED
1374 convert_blessed = F_CONV_BLESSED
1071 CODE: 1375 PPCODE:
1072{ 1376{
1073 UV *uv = SvJSON (self);
1074 if (enable) 1377 if (enable)
1075 *uv |= ix; 1378 self->flags |= ix;
1076 else 1379 else
1077 *uv &= ~ix; 1380 self->flags &= ~ix;
1078 1381
1079 RETVAL = newSVsv (self); 1382 XPUSHs (ST (0));
1080} 1383}
1081 OUTPUT:
1082 RETVAL
1083 1384
1084SV *max_depth (SV *self, UV max_depth = 0x80000000UL) 1385void max_depth (JSON *self, UV max_depth = 0x80000000UL)
1085 CODE: 1386 PPCODE:
1086{ 1387{
1087 UV *uv = SvJSON (self);
1088 UV log2 = 0; 1388 UV log2 = 0;
1089 1389
1090 if (max_depth > 0x80000000UL) max_depth = 0x80000000UL; 1390 if (max_depth > 0x80000000UL) max_depth = 0x80000000UL;
1091 1391
1092 while ((1UL << log2) < max_depth) 1392 while ((1UL << log2) < max_depth)
1093 ++log2; 1393 ++log2;
1094 1394
1095 *uv = *uv & ~F_MAXDEPTH | (log2 << S_MAXDEPTH); 1395 self->flags = self->flags & ~F_MAXDEPTH | (log2 << S_MAXDEPTH);
1096 1396
1097 RETVAL = newSVsv (self); 1397 XPUSHs (ST (0));
1098} 1398}
1099 OUTPUT:
1100 RETVAL
1101 1399
1102void encode (SV *self, SV *scalar) 1400void max_size (JSON *self, UV max_size = 0)
1103 PPCODE: 1401 PPCODE:
1104 XPUSHs (encode_json (scalar, *SvJSON (self))); 1402{
1403 UV log2 = 0;
1105 1404
1106void decode (SV *self, SV *jsonstr) 1405 if (max_size > 0x80000000UL) max_size = 0x80000000UL;
1406 if (max_size == 1) max_size = 2;
1407
1408 while ((1UL << log2) < max_size)
1409 ++log2;
1410
1411 self->flags = self->flags & ~F_MAXSIZE | (log2 << S_MAXSIZE);
1412
1413 XPUSHs (ST (0));
1414}
1415
1416void filter_json_object (JSON *self, SV *cb = &PL_sv_undef)
1107 PPCODE: 1417 PPCODE:
1418{
1419 SvREFCNT_dec (self->cb_object);
1420 self->cb_object = SvOK (cb) ? newSVsv (cb) : 0;
1421
1422 XPUSHs (ST (0));
1423}
1424
1425void filter_json_single_key_object (JSON *self, SV *key, SV *cb = &PL_sv_undef)
1426 PPCODE:
1427{
1428 if (!self->cb_sk_object)
1429 self->cb_sk_object = newHV ();
1430
1431 if (SvOK (cb))
1432 hv_store_ent (self->cb_sk_object, key, newSVsv (cb), 0);
1433 else
1434 {
1435 hv_delete_ent (self->cb_sk_object, key, G_DISCARD, 0);
1436
1437 if (!HvKEYS (self->cb_sk_object))
1438 {
1439 SvREFCNT_dec (self->cb_sk_object);
1440 self->cb_sk_object = 0;
1441 }
1442 }
1443
1444 XPUSHs (ST (0));
1445}
1446
1447void encode (JSON *self, SV *scalar)
1448 PPCODE:
1449 XPUSHs (encode_json (scalar, self));
1450
1451void decode (JSON *self, SV *jsonstr)
1452 PPCODE:
1108 XPUSHs (decode_json (jsonstr, *SvJSON (self))); 1453 XPUSHs (decode_json (jsonstr, self, 0));
1454
1455void decode_prefix (JSON *self, SV *jsonstr)
1456 PPCODE:
1457{
1458 UV offset;
1459 EXTEND (SP, 2);
1460 PUSHs (decode_json (jsonstr, self, &offset));
1461 PUSHs (sv_2mortal (newSVuv (offset)));
1462}
1463
1464void DESTROY (JSON *self)
1465 CODE:
1466 SvREFCNT_dec (self->cb_sk_object);
1467 SvREFCNT_dec (self->cb_object);
1109 1468
1110PROTOTYPES: ENABLE 1469PROTOTYPES: ENABLE
1111 1470
1112void to_json (SV *scalar) 1471void to_json (SV *scalar)
1113 ALIAS:
1114 objToJson = 0
1115 PPCODE: 1472 PPCODE:
1473{
1474 JSON json = { F_DEFAULT | F_UTF8 };
1116 XPUSHs (encode_json (scalar, F_DEFAULT | F_UTF8)); 1475 XPUSHs (encode_json (scalar, &json));
1476}
1117 1477
1118void from_json (SV *jsonstr) 1478void from_json (SV *jsonstr)
1119 ALIAS:
1120 jsonToObj = 0
1121 PPCODE: 1479 PPCODE:
1480{
1481 JSON json = { F_DEFAULT | F_UTF8 };
1122 XPUSHs (decode_json (jsonstr, F_DEFAULT | F_UTF8)); 1482 XPUSHs (decode_json (jsonstr, &json, 0));
1483}
1123 1484

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