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Revision: 1.84
Committed: Thu Mar 27 06:37:35 2008 UTC (16 years, 1 month ago) by root
Branch: MAIN
Changes since 1.83: +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 1.56 #include <assert.h>
6     #include <string.h>
7     #include <stdlib.h>
8     #include <stdio.h>
9 root 1.75 #include <limits.h>
10 root 1.56 #include <float.h>
11 root 1.26
12     #if defined(__BORLANDC__) || defined(_MSC_VER)
13     # define snprintf _snprintf // C compilers have this in stdio.h
14     #endif
15 root 1.1
16 root 1.41 // some old perls do not have this, try to make it work, no
17 root 1.42 // guarentees, though. if it breaks, you get to keep the pieces.
18 root 1.41 #ifndef UTF8_MAXBYTES
19     # define UTF8_MAXBYTES 13
20     #endif
21    
22 root 1.75 #define IVUV_MAXCHARS (sizeof (UV) * CHAR_BIT * 28 / 93 + 2)
23    
24 root 1.44 #define F_ASCII 0x00000001UL
25     #define F_LATIN1 0x00000002UL
26     #define F_UTF8 0x00000004UL
27     #define F_INDENT 0x00000008UL
28     #define F_CANONICAL 0x00000010UL
29     #define F_SPACE_BEFORE 0x00000020UL
30     #define F_SPACE_AFTER 0x00000040UL
31     #define F_ALLOW_NONREF 0x00000100UL
32     #define F_SHRINK 0x00000200UL
33     #define F_ALLOW_BLESSED 0x00000400UL
34 root 1.49 #define F_CONV_BLESSED 0x00000800UL
35 root 1.63 #define F_RELAXED 0x00001000UL
36 root 1.84 #define F_ALLOW_UNKNOWN 0x00002000UL
37 root 1.63
38 root 1.44 #define F_MAXDEPTH 0xf8000000UL
39     #define S_MAXDEPTH 27
40 root 1.45 #define F_MAXSIZE 0x01f00000UL
41     #define S_MAXSIZE 20
42 root 1.49 #define F_HOOK 0x00080000UL // some hooks exist, so slow-path processing
43 root 1.18
44     #define DEC_DEPTH(flags) (1UL << ((flags & F_MAXDEPTH) >> S_MAXDEPTH))
45 root 1.45 #define DEC_SIZE(flags) (1UL << ((flags & F_MAXSIZE ) >> S_MAXSIZE ))
46 root 1.18
47 root 1.2 #define F_PRETTY F_INDENT | F_SPACE_BEFORE | F_SPACE_AFTER
48 root 1.24 #define F_DEFAULT (9UL << S_MAXDEPTH)
49 root 1.1
50     #define INIT_SIZE 32 // initial scalar size to be allocated
51 root 1.12 #define INDENT_STEP 3 // spaces per indentation level
52    
53 root 1.38 #define SHORT_STRING_LEN 16384 // special-case strings of up to this size
54 root 1.1
55     #define SB do {
56     #define SE } while (0)
57    
58 root 1.35 #if __GNUC__ >= 3
59 root 1.71 # define expect(expr,value) __builtin_expect ((expr), (value))
60     # define INLINE static inline
61 root 1.35 #else
62     # define expect(expr,value) (expr)
63 root 1.71 # define INLINE static
64 root 1.35 #endif
65    
66     #define expect_false(expr) expect ((expr) != 0, 0)
67     #define expect_true(expr) expect ((expr) != 0, 1)
68    
69 root 1.72 #define IN_RANGE_INC(type,val,beg,end) \
70     ((unsigned type)((unsigned type)(val) - (unsigned type)(beg)) \
71     <= (unsigned type)((unsigned type)(end) - (unsigned type)(beg)))
72    
73 root 1.57 #ifdef USE_ITHREADS
74     # define JSON_SLOW 1
75 root 1.59 # define JSON_STASH (json_stash ? json_stash : gv_stashpv ("JSON::XS", 1))
76 root 1.57 #else
77 root 1.58 # define JSON_SLOW 0
78 root 1.59 # define JSON_STASH json_stash
79 root 1.57 #endif
80    
81 root 1.44 static HV *json_stash, *json_boolean_stash; // JSON::XS::
82 root 1.43 static SV *json_true, *json_false;
83 root 1.1
84 root 1.77 enum {
85     INCR_M_WS = 0, // initial whitespace skipping, must be 0
86     INCR_M_STR, // inside string
87     INCR_M_BS, // inside backslash
88     INCR_M_JSON // outside anything, count nesting
89     };
90    
91     #define INCR_DONE(json) (!(json)->incr_nest && (json)->incr_mode == INCR_M_JSON)
92    
93 root 1.48 typedef struct {
94 root 1.47 U32 flags;
95 root 1.52 SV *cb_object;
96     HV *cb_sk_object;
97 root 1.77
98     // for the incremental parser
99     SV *incr_text; // the source text so far
100     STRLEN incr_pos; // the current offset into the text
101     int incr_nest; // {[]}-nesting level
102     int incr_mode;
103 root 1.48 } JSON;
104 root 1.47
105 root 1.12 /////////////////////////////////////////////////////////////////////////////
106     // utility functions
107 root 1.1
108 root 1.83 INLINE SV *
109     get_bool (const char *name)
110     {
111     SV *sv = get_sv (name, 1);
112    
113     SvREADONLY_on (sv);
114     SvREADONLY_on (SvRV (sv));
115    
116     return sv;
117     }
118    
119 root 1.71 INLINE void
120 root 1.7 shrink (SV *sv)
121     {
122     sv_utf8_downgrade (sv, 1);
123 root 1.12 if (SvLEN (sv) > SvCUR (sv) + 1)
124     {
125 root 1.7 #ifdef SvPV_shrink_to_cur
126 root 1.12 SvPV_shrink_to_cur (sv);
127     #elif defined (SvPV_renew)
128     SvPV_renew (sv, SvCUR (sv) + 1);
129 root 1.7 #endif
130 root 1.12 }
131 root 1.7 }
132    
133 root 1.13 // decode an utf-8 character and return it, or (UV)-1 in
134     // case of an error.
135     // we special-case "safe" characters from U+80 .. U+7FF,
136     // but use the very good perl function to parse anything else.
137     // note that we never call this function for a ascii codepoints
138 root 1.71 INLINE UV
139 root 1.13 decode_utf8 (unsigned char *s, STRLEN len, STRLEN *clen)
140     {
141 root 1.72 if (expect_true (len >= 2
142     && IN_RANGE_INC (char, s[0], 0xc2, 0xdf)
143     && IN_RANGE_INC (char, s[1], 0x80, 0xbf)))
144 root 1.13 {
145     *clen = 2;
146     return ((s[0] & 0x1f) << 6) | (s[1] & 0x3f);
147     }
148     else
149 root 1.72 return utf8n_to_uvuni (s, len, clen, UTF8_CHECK_ONLY);
150     }
151    
152     // likewise for encoding, also never called for ascii codepoints
153     // this function takes advantage of this fact, although current gccs
154     // seem to optimise the check for >= 0x80 away anyways
155     INLINE unsigned char *
156     encode_utf8 (unsigned char *s, UV ch)
157     {
158 root 1.74 if (expect_false (ch < 0x000080))
159     *s++ = ch;
160     else if (expect_true (ch < 0x000800))
161     *s++ = 0xc0 | ( ch >> 6),
162     *s++ = 0x80 | ( ch & 0x3f);
163     else if ( ch < 0x010000)
164     *s++ = 0xe0 | ( ch >> 12),
165     *s++ = 0x80 | ((ch >> 6) & 0x3f),
166     *s++ = 0x80 | ( ch & 0x3f);
167     else if ( ch < 0x110000)
168     *s++ = 0xf0 | ( ch >> 18),
169     *s++ = 0x80 | ((ch >> 12) & 0x3f),
170     *s++ = 0x80 | ((ch >> 6) & 0x3f),
171     *s++ = 0x80 | ( ch & 0x3f);
172 root 1.72
173     return s;
174 root 1.13 }
175    
176 root 1.1 /////////////////////////////////////////////////////////////////////////////
177 root 1.12 // encoder
178    
179     // structure used for encoding JSON
180     typedef struct
181     {
182     char *cur; // SvPVX (sv) + current output position
183     char *end; // SvEND (sv)
184     SV *sv; // result scalar
185 root 1.48 JSON json;
186 root 1.18 U32 indent; // indentation level
187     U32 maxdepth; // max. indentation/recursion level
188 root 1.71 UV limit; // escape character values >= this value when encoding
189 root 1.12 } enc_t;
190 root 1.1
191 root 1.71 INLINE void
192 root 1.1 need (enc_t *enc, STRLEN len)
193     {
194 root 1.35 if (expect_false (enc->cur + len >= enc->end))
195 root 1.1 {
196     STRLEN cur = enc->cur - SvPVX (enc->sv);
197     SvGROW (enc->sv, cur + len + 1);
198     enc->cur = SvPVX (enc->sv) + cur;
199 root 1.27 enc->end = SvPVX (enc->sv) + SvLEN (enc->sv) - 1;
200 root 1.1 }
201     }
202    
203 root 1.71 INLINE void
204 root 1.1 encode_ch (enc_t *enc, char ch)
205     {
206     need (enc, 1);
207     *enc->cur++ = ch;
208     }
209    
210     static void
211     encode_str (enc_t *enc, char *str, STRLEN len, int is_utf8)
212     {
213     char *end = str + len;
214    
215 root 1.4 need (enc, len);
216    
217 root 1.1 while (str < end)
218     {
219     unsigned char ch = *(unsigned char *)str;
220 root 1.4
221 root 1.35 if (expect_true (ch >= 0x20 && ch < 0x80)) // most common case
222 root 1.4 {
223 root 1.35 if (expect_false (ch == '"')) // but with slow exceptions
224 root 1.6 {
225     need (enc, len += 1);
226     *enc->cur++ = '\\';
227     *enc->cur++ = '"';
228     }
229 root 1.35 else if (expect_false (ch == '\\'))
230 root 1.6 {
231     need (enc, len += 1);
232     *enc->cur++ = '\\';
233     *enc->cur++ = '\\';
234     }
235     else
236     *enc->cur++ = ch;
237    
238 root 1.4 ++str;
239 root 1.1 }
240     else
241     {
242 root 1.6 switch (ch)
243 root 1.1 {
244 root 1.6 case '\010': need (enc, len += 1); *enc->cur++ = '\\'; *enc->cur++ = 'b'; ++str; break;
245     case '\011': need (enc, len += 1); *enc->cur++ = '\\'; *enc->cur++ = 't'; ++str; break;
246     case '\012': need (enc, len += 1); *enc->cur++ = '\\'; *enc->cur++ = 'n'; ++str; break;
247     case '\014': need (enc, len += 1); *enc->cur++ = '\\'; *enc->cur++ = 'f'; ++str; break;
248     case '\015': need (enc, len += 1); *enc->cur++ = '\\'; *enc->cur++ = 'r'; ++str; break;
249 root 1.1
250 root 1.6 default:
251 root 1.1 {
252 root 1.6 STRLEN clen;
253     UV uch;
254    
255     if (is_utf8)
256     {
257 root 1.13 uch = decode_utf8 (str, end - str, &clen);
258 root 1.6 if (clen == (STRLEN)-1)
259 root 1.9 croak ("malformed or illegal unicode character in string [%.11s], cannot convert to JSON", str);
260 root 1.6 }
261     else
262     {
263     uch = ch;
264     clen = 1;
265     }
266    
267 root 1.72 if (uch < 0x80/*0x20*/ || uch >= enc->limit)
268 root 1.6 {
269 root 1.74 if (uch >= 0x10000UL)
270 root 1.6 {
271 root 1.74 if (uch >= 0x110000UL)
272 root 1.71 croak ("out of range codepoint (0x%lx) encountered, unrepresentable in JSON", (unsigned long)uch);
273    
274 root 1.6 need (enc, len += 11);
275     sprintf (enc->cur, "\\u%04x\\u%04x",
276 root 1.10 (int)((uch - 0x10000) / 0x400 + 0xD800),
277     (int)((uch - 0x10000) % 0x400 + 0xDC00));
278 root 1.6 enc->cur += 12;
279     }
280     else
281     {
282     static char hexdigit [16] = "0123456789abcdef";
283     need (enc, len += 5);
284     *enc->cur++ = '\\';
285     *enc->cur++ = 'u';
286     *enc->cur++ = hexdigit [ uch >> 12 ];
287     *enc->cur++ = hexdigit [(uch >> 8) & 15];
288     *enc->cur++ = hexdigit [(uch >> 4) & 15];
289     *enc->cur++ = hexdigit [(uch >> 0) & 15];
290     }
291 root 1.4
292 root 1.6 str += clen;
293     }
294 root 1.47 else if (enc->json.flags & F_LATIN1)
295 root 1.30 {
296     *enc->cur++ = uch;
297     str += clen;
298     }
299 root 1.6 else if (is_utf8)
300     {
301     need (enc, len += clen);
302     do
303     {
304     *enc->cur++ = *str++;
305     }
306     while (--clen);
307     }
308     else
309     {
310 root 1.28 need (enc, len += UTF8_MAXBYTES - 1); // never more than 11 bytes needed
311 root 1.72 enc->cur = encode_utf8 (enc->cur, uch);
312 root 1.6 ++str;
313     }
314 root 1.5 }
315 root 1.4 }
316 root 1.1 }
317    
318     --len;
319     }
320     }
321    
322 root 1.71 INLINE void
323 root 1.12 encode_indent (enc_t *enc)
324     {
325 root 1.47 if (enc->json.flags & F_INDENT)
326 root 1.12 {
327     int spaces = enc->indent * INDENT_STEP;
328    
329     need (enc, spaces);
330     memset (enc->cur, ' ', spaces);
331     enc->cur += spaces;
332     }
333     }
334    
335 root 1.71 INLINE void
336 root 1.12 encode_space (enc_t *enc)
337     {
338     need (enc, 1);
339     encode_ch (enc, ' ');
340     }
341    
342 root 1.71 INLINE void
343 root 1.12 encode_nl (enc_t *enc)
344     {
345 root 1.47 if (enc->json.flags & F_INDENT)
346 root 1.12 {
347     need (enc, 1);
348     encode_ch (enc, '\n');
349     }
350     }
351    
352 root 1.71 INLINE void
353 root 1.12 encode_comma (enc_t *enc)
354     {
355     encode_ch (enc, ',');
356 root 1.1
357 root 1.47 if (enc->json.flags & F_INDENT)
358 root 1.12 encode_nl (enc);
359 root 1.47 else if (enc->json.flags & F_SPACE_AFTER)
360 root 1.12 encode_space (enc);
361     }
362 root 1.1
363     static void encode_sv (enc_t *enc, SV *sv);
364    
365     static void
366     encode_av (enc_t *enc, AV *av)
367     {
368     int i, len = av_len (av);
369    
370 root 1.21 if (enc->indent >= enc->maxdepth)
371     croak ("data structure too deep (hit recursion limit)");
372    
373 root 1.65 encode_ch (enc, '[');
374    
375     if (len >= 0)
376 root 1.1 {
377 root 1.65 encode_nl (enc); ++enc->indent;
378 root 1.55
379 root 1.65 for (i = 0; i <= len; ++i)
380     {
381     SV **svp = av_fetch (av, i, 0);
382 root 1.55
383 root 1.65 encode_indent (enc);
384 root 1.1
385 root 1.65 if (svp)
386     encode_sv (enc, *svp);
387     else
388     encode_str (enc, "null", 4, 0);
389 root 1.1
390 root 1.65 if (i < len)
391     encode_comma (enc);
392     }
393 root 1.1
394 root 1.65 encode_nl (enc); --enc->indent; encode_indent (enc);
395     }
396    
397     encode_ch (enc, ']');
398 root 1.1 }
399    
400     static void
401 root 1.61 encode_hk (enc_t *enc, HE *he)
402 root 1.1 {
403     encode_ch (enc, '"');
404    
405     if (HeKLEN (he) == HEf_SVKEY)
406     {
407     SV *sv = HeSVKEY (he);
408     STRLEN len;
409 root 1.4 char *str;
410    
411     SvGETMAGIC (sv);
412     str = SvPV (sv, len);
413 root 1.1
414     encode_str (enc, str, len, SvUTF8 (sv));
415     }
416     else
417     encode_str (enc, HeKEY (he), HeKLEN (he), HeKUTF8 (he));
418    
419     encode_ch (enc, '"');
420    
421 root 1.47 if (enc->json.flags & F_SPACE_BEFORE) encode_space (enc);
422 root 1.1 encode_ch (enc, ':');
423 root 1.47 if (enc->json.flags & F_SPACE_AFTER ) encode_space (enc);
424 root 1.1 }
425    
426     // compare hash entries, used when all keys are bytestrings
427     static int
428     he_cmp_fast (const void *a_, const void *b_)
429     {
430     int cmp;
431    
432     HE *a = *(HE **)a_;
433     HE *b = *(HE **)b_;
434    
435     STRLEN la = HeKLEN (a);
436     STRLEN lb = HeKLEN (b);
437    
438 root 1.61 if (!(cmp = memcmp (HeKEY (b), HeKEY (a), lb < la ? lb : la)))
439     cmp = lb - la;
440 root 1.1
441     return cmp;
442     }
443    
444     // compare hash entries, used when some keys are sv's or utf-x
445     static int
446     he_cmp_slow (const void *a, const void *b)
447     {
448 root 1.61 return sv_cmp (HeSVKEY_force (*(HE **)b), HeSVKEY_force (*(HE **)a));
449 root 1.1 }
450    
451     static void
452     encode_hv (enc_t *enc, HV *hv)
453     {
454 root 1.61 HE *he;
455 root 1.1
456 root 1.21 if (enc->indent >= enc->maxdepth)
457     croak ("data structure too deep (hit recursion limit)");
458    
459 root 1.65 encode_ch (enc, '{');
460 root 1.1
461 root 1.61 // for canonical output we have to sort by keys first
462     // actually, this is mostly due to the stupid so-called
463     // security workaround added somewhere in 5.8.x.
464     // that randomises hash orderings
465     if (enc->json.flags & F_CANONICAL)
466 root 1.1 {
467 root 1.61 int count = hv_iterinit (hv);
468    
469     if (SvMAGICAL (hv))
470     {
471     // need to count by iterating. could improve by dynamically building the vector below
472     // but I don't care for the speed of this special case.
473     // note also that we will run into undefined behaviour when the two iterations
474     // do not result in the same count, something I might care for in some later release.
475    
476     count = 0;
477     while (hv_iternext (hv))
478     ++count;
479    
480     hv_iterinit (hv);
481     }
482    
483     if (count)
484 root 1.1 {
485 root 1.61 int i, fast = 1;
486 root 1.34 #if defined(__BORLANDC__) || defined(_MSC_VER)
487 root 1.33 HE **hes = _alloca (count * sizeof (HE));
488     #else
489     HE *hes [count]; // if your compiler dies here, you need to enable C99 mode
490     #endif
491 root 1.1
492     i = 0;
493     while ((he = hv_iternext (hv)))
494     {
495     hes [i++] = he;
496     if (HeKLEN (he) < 0 || HeKUTF8 (he))
497     fast = 0;
498     }
499    
500     assert (i == count);
501    
502     if (fast)
503     qsort (hes, count, sizeof (HE *), he_cmp_fast);
504     else
505     {
506 root 1.8 // hack to forcefully disable "use bytes"
507     COP cop = *PL_curcop;
508 root 1.1 cop.op_private = 0;
509 root 1.8
510     ENTER;
511     SAVETMPS;
512    
513     SAVEVPTR (PL_curcop);
514 root 1.1 PL_curcop = &cop;
515    
516     qsort (hes, count, sizeof (HE *), he_cmp_slow);
517 root 1.8
518 root 1.1 FREETMPS;
519 root 1.8 LEAVE;
520 root 1.1 }
521    
522 root 1.65 encode_nl (enc); ++enc->indent;
523    
524 root 1.61 while (count--)
525 root 1.1 {
526 root 1.12 encode_indent (enc);
527 root 1.61 he = hes [count];
528     encode_hk (enc, he);
529 root 1.62 encode_sv (enc, expect_false (SvMAGICAL (hv)) ? hv_iterval (hv, he) : HeVAL (he));
530 root 1.1
531 root 1.61 if (count)
532 root 1.12 encode_comma (enc);
533 root 1.1 }
534 root 1.65
535     encode_nl (enc); --enc->indent; encode_indent (enc);
536 root 1.1 }
537 root 1.61 }
538     else
539     {
540     if (hv_iterinit (hv) || SvMAGICAL (hv))
541     if ((he = hv_iternext (hv)))
542 root 1.65 {
543     encode_nl (enc); ++enc->indent;
544    
545     for (;;)
546     {
547     encode_indent (enc);
548     encode_hk (enc, he);
549     encode_sv (enc, expect_false (SvMAGICAL (hv)) ? hv_iterval (hv, he) : HeVAL (he));
550    
551     if (!(he = hv_iternext (hv)))
552     break;
553 root 1.1
554 root 1.65 encode_comma (enc);
555     }
556 root 1.1
557 root 1.65 encode_nl (enc); --enc->indent; encode_indent (enc);
558     }
559 root 1.61 }
560 root 1.1
561 root 1.65 encode_ch (enc, '}');
562 root 1.1 }
563    
564 root 1.21 // encode objects, arrays and special \0=false and \1=true values.
565     static void
566     encode_rv (enc_t *enc, SV *sv)
567     {
568 root 1.25 svtype svt;
569    
570 root 1.21 SvGETMAGIC (sv);
571 root 1.25 svt = SvTYPE (sv);
572 root 1.21
573 root 1.44 if (expect_false (SvOBJECT (sv)))
574     {
575 root 1.57 HV *stash = !JSON_SLOW || json_boolean_stash
576     ? json_boolean_stash
577     : gv_stashpv ("JSON::XS::Boolean", 1);
578    
579     if (SvSTASH (sv) == stash)
580 root 1.44 {
581 root 1.51 if (SvIV (sv))
582     encode_str (enc, "true", 4, 0);
583     else
584 root 1.44 encode_str (enc, "false", 5, 0);
585     }
586     else
587     {
588     #if 0
589     if (0 && sv_derived_from (rv, "JSON::Literal"))
590     {
591     // not yet
592     }
593     #endif
594 root 1.47 if (enc->json.flags & F_CONV_BLESSED)
595 root 1.44 {
596     // we re-bless the reference to get overload and other niceties right
597 root 1.53 GV *to_json = gv_fetchmethod_autoload (SvSTASH (sv), "TO_JSON", 0);
598 root 1.44
599     if (to_json)
600     {
601 root 1.53 dSP;
602    
603     ENTER; SAVETMPS; PUSHMARK (SP);
604 root 1.44 XPUSHs (sv_bless (sv_2mortal (newRV_inc (sv)), SvSTASH (sv)));
605    
606 root 1.53 // calling with G_SCALAR ensures that we always get a 1 return value
607 root 1.44 PUTBACK;
608 root 1.54 call_sv ((SV *)GvCV (to_json), G_SCALAR);
609 root 1.44 SPAGAIN;
610    
611 root 1.53 // catch this surprisingly common error
612     if (SvROK (TOPs) && SvRV (TOPs) == sv)
613     croak ("%s::TO_JSON method returned same object as was passed instead of a new one", HvNAME (SvSTASH (sv)));
614    
615     sv = POPs;
616     PUTBACK;
617    
618     encode_sv (enc, sv);
619 root 1.44
620 root 1.49 FREETMPS; LEAVE;
621 root 1.44 }
622 root 1.47 else if (enc->json.flags & F_ALLOW_BLESSED)
623 root 1.44 encode_str (enc, "null", 4, 0);
624     else
625     croak ("encountered object '%s', but neither allow_blessed enabled nor TO_JSON method available on it",
626     SvPV_nolen (sv_2mortal (newRV_inc (sv))));
627     }
628 root 1.47 else if (enc->json.flags & F_ALLOW_BLESSED)
629 root 1.44 encode_str (enc, "null", 4, 0);
630     else
631     croak ("encountered object '%s', but neither allow_blessed nor convert_blessed settings are enabled",
632     SvPV_nolen (sv_2mortal (newRV_inc (sv))));
633     }
634     }
635     else if (svt == SVt_PVHV)
636 root 1.21 encode_hv (enc, (HV *)sv);
637     else if (svt == SVt_PVAV)
638     encode_av (enc, (AV *)sv);
639     else if (svt < SVt_PVAV)
640     {
641 root 1.50 STRLEN len = 0;
642     char *pv = svt ? SvPV (sv, len) : 0;
643    
644 root 1.51 if (len == 1 && *pv == '1')
645     encode_str (enc, "true", 4, 0);
646     else if (len == 1 && *pv == '0')
647 root 1.21 encode_str (enc, "false", 5, 0);
648 root 1.84 else if (enc->json.flags & F_ALLOW_UNKNOWN)
649     encode_str (enc, "null", 4, 0);
650 root 1.21 else
651     croak ("cannot encode reference to scalar '%s' unless the scalar is 0 or 1",
652     SvPV_nolen (sv_2mortal (newRV_inc (sv))));
653     }
654 root 1.84 else if (enc->json.flags & F_ALLOW_UNKNOWN)
655     encode_str (enc, "null", 4, 0);
656 root 1.21 else
657     croak ("encountered %s, but JSON can only represent references to arrays or hashes",
658     SvPV_nolen (sv_2mortal (newRV_inc (sv))));
659     }
660    
661 root 1.1 static void
662     encode_sv (enc_t *enc, SV *sv)
663     {
664 root 1.4 SvGETMAGIC (sv);
665    
666 root 1.1 if (SvPOKp (sv))
667     {
668     STRLEN len;
669     char *str = SvPV (sv, len);
670     encode_ch (enc, '"');
671     encode_str (enc, str, len, SvUTF8 (sv));
672     encode_ch (enc, '"');
673     }
674     else if (SvNOKp (sv))
675     {
676 root 1.39 // trust that perl will do the right thing w.r.t. JSON syntax.
677 root 1.1 need (enc, NV_DIG + 32);
678     Gconvert (SvNVX (sv), NV_DIG, 0, enc->cur);
679     enc->cur += strlen (enc->cur);
680     }
681     else if (SvIOKp (sv))
682     {
683 root 1.74 // we assume we can always read an IV as a UV and vice versa
684     // we assume two's complement
685     // we assume no aliasing issues in the union
686 root 1.75 if (SvIsUV (sv) ? SvUVX (sv) <= 59000
687     : SvIVX (sv) <= 59000 && SvIVX (sv) >= -59000)
688 root 1.35 {
689     // optimise the "small number case"
690     // code will likely be branchless and use only a single multiplication
691 root 1.74 // works for numbers up to 59074
692     I32 i = SvIVX (sv);
693 root 1.35 U32 u;
694 root 1.39 char digit, nz = 0;
695 root 1.35
696     need (enc, 6);
697    
698     *enc->cur = '-'; enc->cur += i < 0 ? 1 : 0;
699     u = i < 0 ? -i : i;
700    
701     // convert to 4.28 fixed-point representation
702     u = u * ((0xfffffff + 10000) / 10000); // 10**5, 5 fractional digits
703    
704 root 1.39 // now output digit by digit, each time masking out the integer part
705     // and multiplying by 5 while moving the decimal point one to the right,
706     // resulting in a net multiplication by 10.
707     // we always write the digit to memory but conditionally increment
708 root 1.75 // the pointer, to enable the use of conditional move instructions.
709     digit = u >> 28; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0xfffffffUL) * 5;
710     digit = u >> 27; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0x7ffffffUL) * 5;
711     digit = u >> 26; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0x3ffffffUL) * 5;
712     digit = u >> 25; *enc->cur = digit + '0'; enc->cur += (nz = nz || digit); u = (u & 0x1ffffffUL) * 5;
713 root 1.39 digit = u >> 24; *enc->cur = digit + '0'; enc->cur += 1; // correctly generate '0'
714 root 1.35 }
715 root 1.75 else
716     {
717     // large integer, use the (rather slow) snprintf way.
718     need (enc, IVUV_MAXCHARS);
719     enc->cur +=
720     SvIsUV(sv)
721     ? snprintf (enc->cur, IVUV_MAXCHARS, "%"UVuf, (UV)SvUVX (sv))
722     : snprintf (enc->cur, IVUV_MAXCHARS, "%"IVdf, (IV)SvIVX (sv));
723     }
724 root 1.1 }
725     else if (SvROK (sv))
726 root 1.21 encode_rv (enc, SvRV (sv));
727 root 1.84 else if (!SvOK (sv) || enc->json.flags & F_ALLOW_UNKNOWN)
728 root 1.1 encode_str (enc, "null", 4, 0);
729     else
730 root 1.9 croak ("encountered perl type (%s,0x%x) that JSON cannot handle, you might want to report this",
731     SvPV_nolen (sv), SvFLAGS (sv));
732 root 1.1 }
733    
734     static SV *
735 root 1.48 encode_json (SV *scalar, JSON *json)
736 root 1.1 {
737 root 1.25 enc_t enc;
738    
739 root 1.47 if (!(json->flags & F_ALLOW_NONREF) && !SvROK (scalar))
740 root 1.9 croak ("hash- or arrayref expected (not a simple scalar, use allow_nonref to allow this)");
741 root 1.3
742 root 1.47 enc.json = *json;
743 root 1.12 enc.sv = sv_2mortal (NEWSV (0, INIT_SIZE));
744     enc.cur = SvPVX (enc.sv);
745     enc.end = SvEND (enc.sv);
746     enc.indent = 0;
747 root 1.47 enc.maxdepth = DEC_DEPTH (enc.json.flags);
748 root 1.71 enc.limit = enc.json.flags & F_ASCII ? 0x000080UL
749     : enc.json.flags & F_LATIN1 ? 0x000100UL
750 root 1.74 : 0x110000UL;
751 root 1.1
752     SvPOK_only (enc.sv);
753     encode_sv (&enc, scalar);
754    
755     SvCUR_set (enc.sv, enc.cur - SvPVX (enc.sv));
756 root 1.27 *SvEND (enc.sv) = 0; // many xs functions expect a trailing 0 for text strings
757 root 1.6
758 root 1.47 if (!(enc.json.flags & (F_ASCII | F_LATIN1 | F_UTF8)))
759 root 1.30 SvUTF8_on (enc.sv);
760    
761 root 1.47 if (enc.json.flags & F_SHRINK)
762 root 1.7 shrink (enc.sv);
763    
764 root 1.1 return enc.sv;
765     }
766    
767     /////////////////////////////////////////////////////////////////////////////
768 root 1.12 // decoder
769 root 1.1
770 root 1.12 // structure used for decoding JSON
771     typedef struct
772     {
773     char *cur; // current parser pointer
774     char *end; // end of input string
775     const char *err; // parse error, if != 0
776 root 1.48 JSON json;
777 root 1.18 U32 depth; // recursion depth
778     U32 maxdepth; // recursion depth limit
779 root 1.12 } dec_t;
780    
781 root 1.71 INLINE void
782 root 1.64 decode_comment (dec_t *dec)
783     {
784     // only '#'-style comments allowed a.t.m.
785    
786     while (*dec->cur && *dec->cur != 0x0a && *dec->cur != 0x0d)
787     ++dec->cur;
788     }
789    
790 root 1.71 INLINE void
791 root 1.12 decode_ws (dec_t *dec)
792     {
793     for (;;)
794     {
795     char ch = *dec->cur;
796    
797 root 1.64 if (ch > 0x20)
798     {
799     if (expect_false (ch == '#'))
800     {
801     if (dec->json.flags & F_RELAXED)
802     decode_comment (dec);
803     else
804     break;
805     }
806     else
807     break;
808     }
809     else if (ch != 0x20 && ch != 0x0a && ch != 0x0d && ch != 0x09)
810     break; // parse error, but let higher level handle it, gives better error messages
811 root 1.63
812 root 1.12 ++dec->cur;
813 root 1.1 }
814 root 1.12 }
815 root 1.1
816     #define ERR(reason) SB dec->err = reason; goto fail; SE
817 root 1.18
818 root 1.1 #define EXPECT_CH(ch) SB \
819     if (*dec->cur != ch) \
820     ERR (# ch " expected"); \
821     ++dec->cur; \
822     SE
823    
824 root 1.18 #define DEC_INC_DEPTH if (++dec->depth > dec->maxdepth) ERR ("json datastructure exceeds maximum nesting level (set a higher max_depth)")
825     #define DEC_DEC_DEPTH --dec->depth
826    
827 root 1.1 static SV *decode_sv (dec_t *dec);
828    
829     static signed char decode_hexdigit[256];
830    
831     static UV
832     decode_4hex (dec_t *dec)
833     {
834     signed char d1, d2, d3, d4;
835 root 1.12 unsigned char *cur = (unsigned char *)dec->cur;
836 root 1.1
837 root 1.40 d1 = decode_hexdigit [cur [0]]; if (expect_false (d1 < 0)) ERR ("exactly four hexadecimal digits expected");
838     d2 = decode_hexdigit [cur [1]]; if (expect_false (d2 < 0)) ERR ("exactly four hexadecimal digits expected");
839     d3 = decode_hexdigit [cur [2]]; if (expect_false (d3 < 0)) ERR ("exactly four hexadecimal digits expected");
840     d4 = decode_hexdigit [cur [3]]; if (expect_false (d4 < 0)) ERR ("exactly four hexadecimal digits expected");
841 root 1.1
842     dec->cur += 4;
843    
844     return ((UV)d1) << 12
845     | ((UV)d2) << 8
846     | ((UV)d3) << 4
847     | ((UV)d4);
848    
849     fail:
850     return (UV)-1;
851     }
852    
853     static SV *
854     decode_str (dec_t *dec)
855     {
856 root 1.12 SV *sv = 0;
857 root 1.1 int utf8 = 0;
858 root 1.38 char *dec_cur = dec->cur;
859 root 1.1
860 root 1.12 do
861 root 1.1 {
862 root 1.28 char buf [SHORT_STRING_LEN + UTF8_MAXBYTES];
863 root 1.12 char *cur = buf;
864 root 1.1
865 root 1.12 do
866 root 1.1 {
867 root 1.38 unsigned char ch = *(unsigned char *)dec_cur++;
868 root 1.12
869 root 1.35 if (expect_false (ch == '"'))
870 root 1.12 {
871 root 1.38 --dec_cur;
872 root 1.12 break;
873     }
874 root 1.35 else if (expect_false (ch == '\\'))
875 root 1.1 {
876 root 1.38 switch (*dec_cur)
877 root 1.1 {
878 root 1.12 case '\\':
879     case '/':
880 root 1.38 case '"': *cur++ = *dec_cur++; break;
881 root 1.12
882 root 1.38 case 'b': ++dec_cur; *cur++ = '\010'; break;
883     case 't': ++dec_cur; *cur++ = '\011'; break;
884     case 'n': ++dec_cur; *cur++ = '\012'; break;
885     case 'f': ++dec_cur; *cur++ = '\014'; break;
886     case 'r': ++dec_cur; *cur++ = '\015'; break;
887 root 1.1
888 root 1.12 case 'u':
889 root 1.1 {
890 root 1.12 UV lo, hi;
891 root 1.38 ++dec_cur;
892 root 1.1
893 root 1.38 dec->cur = dec_cur;
894 root 1.12 hi = decode_4hex (dec);
895 root 1.38 dec_cur = dec->cur;
896 root 1.12 if (hi == (UV)-1)
897     goto fail;
898 root 1.1
899 root 1.12 // possibly a surrogate pair
900     if (hi >= 0xd800)
901     if (hi < 0xdc00)
902     {
903 root 1.38 if (dec_cur [0] != '\\' || dec_cur [1] != 'u')
904 root 1.12 ERR ("missing low surrogate character in surrogate pair");
905    
906 root 1.38 dec_cur += 2;
907 root 1.12
908 root 1.38 dec->cur = dec_cur;
909 root 1.12 lo = decode_4hex (dec);
910 root 1.38 dec_cur = dec->cur;
911 root 1.12 if (lo == (UV)-1)
912     goto fail;
913    
914     if (lo < 0xdc00 || lo >= 0xe000)
915     ERR ("surrogate pair expected");
916    
917     hi = (hi - 0xD800) * 0x400 + (lo - 0xDC00) + 0x10000;
918     }
919     else if (hi < 0xe000)
920     ERR ("missing high surrogate character in surrogate pair");
921 root 1.1
922 root 1.12 if (hi >= 0x80)
923     {
924     utf8 = 1;
925 root 1.1
926 root 1.72 cur = encode_utf8 (cur, hi);
927 root 1.12 }
928     else
929     *cur++ = hi;
930 root 1.1 }
931 root 1.12 break;
932    
933     default:
934 root 1.38 --dec_cur;
935 root 1.12 ERR ("illegal backslash escape sequence in string");
936     }
937     }
938 root 1.74 else if (expect_true (ch >= 0x20 && ch < 0x80))
939 root 1.12 *cur++ = ch;
940     else if (ch >= 0x80)
941     {
942 root 1.25 STRLEN clen;
943     UV uch;
944    
945 root 1.38 --dec_cur;
946 root 1.1
947 root 1.38 uch = decode_utf8 (dec_cur, dec->end - dec_cur, &clen);
948 root 1.12 if (clen == (STRLEN)-1)
949     ERR ("malformed UTF-8 character in JSON string");
950 root 1.1
951 root 1.12 do
952 root 1.38 *cur++ = *dec_cur++;
953 root 1.12 while (--clen);
954 root 1.5
955 root 1.12 utf8 = 1;
956 root 1.1 }
957 root 1.12 else
958 root 1.23 {
959 root 1.38 --dec_cur;
960 root 1.12
961 root 1.23 if (!ch)
962 root 1.24 ERR ("unexpected end of string while parsing JSON string");
963 root 1.23 else
964 root 1.24 ERR ("invalid character encountered while parsing JSON string");
965 root 1.23 }
966 root 1.1 }
967 root 1.12 while (cur < buf + SHORT_STRING_LEN);
968 root 1.1
969 root 1.25 {
970     STRLEN len = cur - buf;
971 root 1.5
972 root 1.25 if (sv)
973     {
974     SvGROW (sv, SvCUR (sv) + len + 1);
975     memcpy (SvPVX (sv) + SvCUR (sv), buf, len);
976     SvCUR_set (sv, SvCUR (sv) + len);
977     }
978     else
979     sv = newSVpvn (buf, len);
980     }
981 root 1.1 }
982 root 1.38 while (*dec_cur != '"');
983 root 1.1
984 root 1.38 ++dec_cur;
985 root 1.1
986 root 1.12 if (sv)
987     {
988     SvPOK_only (sv);
989     *SvEND (sv) = 0;
990 root 1.4
991 root 1.12 if (utf8)
992     SvUTF8_on (sv);
993     }
994     else
995     sv = newSVpvn ("", 0);
996 root 1.6
997 root 1.38 dec->cur = dec_cur;
998 root 1.1 return sv;
999    
1000     fail:
1001 root 1.38 dec->cur = dec_cur;
1002 root 1.1 return 0;
1003     }
1004    
1005     static SV *
1006     decode_num (dec_t *dec)
1007     {
1008     int is_nv = 0;
1009     char *start = dec->cur;
1010    
1011     // [minus]
1012     if (*dec->cur == '-')
1013     ++dec->cur;
1014    
1015     if (*dec->cur == '0')
1016     {
1017     ++dec->cur;
1018     if (*dec->cur >= '0' && *dec->cur <= '9')
1019     ERR ("malformed number (leading zero must not be followed by another digit)");
1020     }
1021 root 1.5 else if (*dec->cur < '0' || *dec->cur > '9')
1022     ERR ("malformed number (no digits after initial minus)");
1023     else
1024     do
1025     {
1026     ++dec->cur;
1027     }
1028     while (*dec->cur >= '0' && *dec->cur <= '9');
1029 root 1.1
1030     // [frac]
1031     if (*dec->cur == '.')
1032     {
1033 root 1.5 ++dec->cur;
1034    
1035     if (*dec->cur < '0' || *dec->cur > '9')
1036     ERR ("malformed number (no digits after decimal point)");
1037 root 1.1
1038     do
1039     {
1040     ++dec->cur;
1041     }
1042     while (*dec->cur >= '0' && *dec->cur <= '9');
1043 root 1.5
1044     is_nv = 1;
1045 root 1.1 }
1046    
1047     // [exp]
1048     if (*dec->cur == 'e' || *dec->cur == 'E')
1049     {
1050 root 1.5 ++dec->cur;
1051 root 1.1
1052     if (*dec->cur == '-' || *dec->cur == '+')
1053     ++dec->cur;
1054    
1055 root 1.5 if (*dec->cur < '0' || *dec->cur > '9')
1056     ERR ("malformed number (no digits after exp sign)");
1057    
1058     do
1059     {
1060     ++dec->cur;
1061     }
1062     while (*dec->cur >= '0' && *dec->cur <= '9');
1063    
1064     is_nv = 1;
1065 root 1.1 }
1066    
1067     if (!is_nv)
1068     {
1069 root 1.56 int len = dec->cur - start;
1070    
1071 root 1.70 // special case the rather common 1..5-digit-int case
1072 root 1.35 if (*start == '-')
1073 root 1.56 switch (len)
1074 root 1.1 {
1075 root 1.70 case 2: return newSViv (-( start [1] - '0' * 1));
1076     case 3: return newSViv (-( start [1] * 10 + start [2] - '0' * 11));
1077     case 4: return newSViv (-( start [1] * 100 + start [2] * 10 + start [3] - '0' * 111));
1078     case 5: return newSViv (-( start [1] * 1000 + start [2] * 100 + start [3] * 10 + start [4] - '0' * 1111));
1079     case 6: return newSViv (-(start [1] * 10000 + start [2] * 1000 + start [3] * 100 + start [4] * 10 + start [5] - '0' * 11111));
1080 root 1.1 }
1081 root 1.35 else
1082 root 1.56 switch (len)
1083 root 1.35 {
1084 root 1.70 case 1: return newSViv ( start [0] - '0' * 1);
1085     case 2: return newSViv ( start [0] * 10 + start [1] - '0' * 11);
1086     case 3: return newSViv ( start [0] * 100 + start [1] * 10 + start [2] - '0' * 111);
1087     case 4: return newSViv ( start [0] * 1000 + start [1] * 100 + start [2] * 10 + start [3] - '0' * 1111);
1088     case 5: return newSViv ( start [0] * 10000 + start [1] * 1000 + start [2] * 100 + start [3] * 10 + start [4] - '0' * 11111);
1089 root 1.35 }
1090    
1091     {
1092     UV uv;
1093 root 1.56 int numtype = grok_number (start, len, &uv);
1094 root 1.35 if (numtype & IS_NUMBER_IN_UV)
1095     if (numtype & IS_NUMBER_NEG)
1096     {
1097     if (uv < (UV)IV_MIN)
1098     return newSViv (-(IV)uv);
1099     }
1100     else
1101     return newSVuv (uv);
1102 root 1.56 }
1103    
1104     len -= *start == '-' ? 1 : 0;
1105 root 1.40
1106 root 1.56 // does not fit into IV or UV, try NV
1107     if ((sizeof (NV) == sizeof (double) && DBL_DIG >= len)
1108     #if defined (LDBL_DIG)
1109     || (sizeof (NV) == sizeof (long double) && LDBL_DIG >= len)
1110     #endif
1111     )
1112     // fits into NV without loss of precision
1113     return newSVnv (Atof (start));
1114    
1115     // everything else fails, convert it to a string
1116     return newSVpvn (start, dec->cur - start);
1117 root 1.1 }
1118    
1119 root 1.56 // loss of precision here
1120 root 1.1 return newSVnv (Atof (start));
1121    
1122     fail:
1123     return 0;
1124     }
1125    
1126     static SV *
1127     decode_av (dec_t *dec)
1128     {
1129     AV *av = newAV ();
1130    
1131 root 1.18 DEC_INC_DEPTH;
1132 root 1.12 decode_ws (dec);
1133 root 1.18
1134 root 1.5 if (*dec->cur == ']')
1135     ++dec->cur;
1136     else
1137     for (;;)
1138     {
1139     SV *value;
1140 root 1.1
1141 root 1.5 value = decode_sv (dec);
1142     if (!value)
1143     goto fail;
1144 root 1.1
1145 root 1.5 av_push (av, value);
1146 root 1.1
1147 root 1.12 decode_ws (dec);
1148 root 1.1
1149 root 1.5 if (*dec->cur == ']')
1150     {
1151     ++dec->cur;
1152     break;
1153     }
1154    
1155     if (*dec->cur != ',')
1156     ERR (", or ] expected while parsing array");
1157 root 1.1
1158 root 1.5 ++dec->cur;
1159 root 1.63
1160     decode_ws (dec);
1161    
1162     if (*dec->cur == ']' && dec->json.flags & F_RELAXED)
1163     {
1164     ++dec->cur;
1165     break;
1166     }
1167 root 1.5 }
1168 root 1.1
1169 root 1.18 DEC_DEC_DEPTH;
1170 root 1.1 return newRV_noinc ((SV *)av);
1171    
1172     fail:
1173     SvREFCNT_dec (av);
1174 root 1.18 DEC_DEC_DEPTH;
1175 root 1.1 return 0;
1176     }
1177    
1178     static SV *
1179     decode_hv (dec_t *dec)
1180     {
1181 root 1.49 SV *sv;
1182 root 1.1 HV *hv = newHV ();
1183    
1184 root 1.18 DEC_INC_DEPTH;
1185 root 1.12 decode_ws (dec);
1186 root 1.18
1187 root 1.5 if (*dec->cur == '}')
1188     ++dec->cur;
1189     else
1190     for (;;)
1191     {
1192 root 1.63 EXPECT_CH ('"');
1193 root 1.1
1194 root 1.46 // heuristic: assume that
1195 root 1.47 // a) decode_str + hv_store_ent are abysmally slow.
1196     // b) most hash keys are short, simple ascii text.
1197     // => try to "fast-match" such strings to avoid
1198     // the overhead of decode_str + hv_store_ent.
1199 root 1.46 {
1200     SV *value;
1201     char *p = dec->cur;
1202     char *e = p + 24; // only try up to 24 bytes
1203    
1204     for (;;)
1205     {
1206 root 1.77 // the >= 0x80 is false on most architectures
1207 root 1.46 if (p == e || *p < 0x20 || *p >= 0x80 || *p == '\\')
1208     {
1209     // slow path, back up and use decode_str
1210     SV *key = decode_str (dec);
1211     if (!key)
1212     goto fail;
1213    
1214     decode_ws (dec); EXPECT_CH (':');
1215    
1216 root 1.63 decode_ws (dec);
1217 root 1.46 value = decode_sv (dec);
1218     if (!value)
1219     {
1220     SvREFCNT_dec (key);
1221     goto fail;
1222     }
1223    
1224     hv_store_ent (hv, key, value, 0);
1225     SvREFCNT_dec (key);
1226    
1227     break;
1228     }
1229     else if (*p == '"')
1230     {
1231     // fast path, got a simple key
1232     char *key = dec->cur;
1233     int len = p - key;
1234     dec->cur = p + 1;
1235    
1236     decode_ws (dec); EXPECT_CH (':');
1237    
1238 root 1.63 decode_ws (dec);
1239 root 1.46 value = decode_sv (dec);
1240     if (!value)
1241     goto fail;
1242 root 1.1
1243 root 1.46 hv_store (hv, key, len, value, 0);
1244 root 1.1
1245 root 1.46 break;
1246     }
1247 root 1.1
1248 root 1.46 ++p;
1249     }
1250     }
1251 root 1.1
1252 root 1.12 decode_ws (dec);
1253 root 1.1
1254 root 1.5 if (*dec->cur == '}')
1255     {
1256     ++dec->cur;
1257     break;
1258     }
1259 root 1.1
1260 root 1.5 if (*dec->cur != ',')
1261     ERR (", or } expected while parsing object/hash");
1262 root 1.1
1263 root 1.5 ++dec->cur;
1264 root 1.63
1265     decode_ws (dec);
1266    
1267     if (*dec->cur == '}' && dec->json.flags & F_RELAXED)
1268     {
1269     ++dec->cur;
1270     break;
1271     }
1272 root 1.5 }
1273 root 1.1
1274 root 1.18 DEC_DEC_DEPTH;
1275 root 1.49 sv = newRV_noinc ((SV *)hv);
1276    
1277     // check filter callbacks
1278     if (dec->json.flags & F_HOOK)
1279     {
1280 root 1.51 if (dec->json.cb_sk_object && HvKEYS (hv) == 1)
1281 root 1.49 {
1282 root 1.52 HE *cb, *he;
1283 root 1.49
1284 root 1.52 hv_iterinit (hv);
1285     he = hv_iternext (hv);
1286     hv_iterinit (hv);
1287 root 1.49
1288 root 1.52 // the next line creates a mortal sv each time its called.
1289     // might want to optimise this for common cases.
1290     cb = hv_fetch_ent (dec->json.cb_sk_object, hv_iterkeysv (he), 0, 0);
1291 root 1.49
1292 root 1.52 if (cb)
1293 root 1.51 {
1294 root 1.53 dSP;
1295 root 1.52 int count;
1296    
1297 root 1.53 ENTER; SAVETMPS; PUSHMARK (SP);
1298 root 1.52 XPUSHs (HeVAL (he));
1299    
1300     PUTBACK; count = call_sv (HeVAL (cb), G_ARRAY); SPAGAIN;
1301    
1302     if (count == 1)
1303     {
1304     sv = newSVsv (POPs);
1305     FREETMPS; LEAVE;
1306     return sv;
1307     }
1308    
1309     FREETMPS; LEAVE;
1310 root 1.51 }
1311 root 1.49 }
1312    
1313     if (dec->json.cb_object)
1314     {
1315 root 1.53 dSP;
1316 root 1.49 int count;
1317    
1318 root 1.53 ENTER; SAVETMPS; PUSHMARK (SP);
1319 root 1.49 XPUSHs (sv_2mortal (sv));
1320    
1321     PUTBACK; count = call_sv (dec->json.cb_object, G_ARRAY); SPAGAIN;
1322    
1323     if (count == 1)
1324 root 1.51 {
1325     sv = newSVsv (POPs);
1326 root 1.52 FREETMPS; LEAVE;
1327     return sv;
1328 root 1.51 }
1329    
1330     SvREFCNT_inc (sv);
1331 root 1.52 FREETMPS; LEAVE;
1332 root 1.49 }
1333     }
1334    
1335 root 1.51 return sv;
1336 root 1.1
1337     fail:
1338     SvREFCNT_dec (hv);
1339 root 1.18 DEC_DEC_DEPTH;
1340 root 1.1 return 0;
1341     }
1342    
1343     static SV *
1344     decode_sv (dec_t *dec)
1345     {
1346 root 1.40 // the beauty of JSON: you need exactly one character lookahead
1347 root 1.73 // to parse everything.
1348 root 1.1 switch (*dec->cur)
1349     {
1350     case '"': ++dec->cur; return decode_str (dec);
1351 root 1.73 case '[': ++dec->cur; return decode_av (dec);
1352     case '{': ++dec->cur; return decode_hv (dec);
1353 root 1.1
1354     case '-':
1355     case '0': case '1': case '2': case '3': case '4':
1356     case '5': case '6': case '7': case '8': case '9':
1357     return decode_num (dec);
1358    
1359     case 't':
1360     if (dec->end - dec->cur >= 4 && !memcmp (dec->cur, "true", 4))
1361     {
1362     dec->cur += 4;
1363 root 1.60 #if JSON_SLOW
1364 root 1.83 json_true = get_bool ("JSON::XS::true");
1365 root 1.60 #endif
1366 root 1.83 return newSVsv (json_true);
1367 root 1.1 }
1368     else
1369     ERR ("'true' expected");
1370    
1371     break;
1372    
1373     case 'f':
1374     if (dec->end - dec->cur >= 5 && !memcmp (dec->cur, "false", 5))
1375     {
1376     dec->cur += 5;
1377 root 1.60 #if JSON_SLOW
1378 root 1.83 json_false = get_bool ("JSON::XS::false");
1379 root 1.60 #endif
1380 root 1.83 return newSVsv (json_false);
1381 root 1.1 }
1382     else
1383     ERR ("'false' expected");
1384    
1385     break;
1386    
1387     case 'n':
1388     if (dec->end - dec->cur >= 4 && !memcmp (dec->cur, "null", 4))
1389     {
1390     dec->cur += 4;
1391 root 1.5 return newSVsv (&PL_sv_undef);
1392 root 1.1 }
1393     else
1394     ERR ("'null' expected");
1395    
1396     break;
1397    
1398     default:
1399 root 1.24 ERR ("malformed JSON string, neither array, object, number, string or atom");
1400 root 1.1 break;
1401     }
1402    
1403     fail:
1404     return 0;
1405     }
1406    
1407     static SV *
1408 root 1.77 decode_json (SV *string, JSON *json, STRLEN *offset_return)
1409 root 1.1 {
1410 root 1.25 dec_t dec;
1411 root 1.77 STRLEN offset;
1412 root 1.1 SV *sv;
1413    
1414 root 1.29 SvGETMAGIC (string);
1415 root 1.22 SvUPGRADE (string, SVt_PV);
1416    
1417 root 1.47 if (json->flags & F_MAXSIZE && SvCUR (string) > DEC_SIZE (json->flags))
1418 root 1.45 croak ("attempted decode of JSON text of %lu bytes size, but max_size is set to %lu",
1419 root 1.47 (unsigned long)SvCUR (string), (unsigned long)DEC_SIZE (json->flags));
1420 root 1.45
1421 root 1.47 if (json->flags & F_UTF8)
1422 root 1.5 sv_utf8_downgrade (string, 0);
1423     else
1424 root 1.1 sv_utf8_upgrade (string);
1425    
1426     SvGROW (string, SvCUR (string) + 1); // should basically be a NOP
1427    
1428 root 1.47 dec.json = *json;
1429 root 1.18 dec.cur = SvPVX (string);
1430     dec.end = SvEND (string);
1431     dec.err = 0;
1432     dec.depth = 0;
1433 root 1.47 dec.maxdepth = DEC_DEPTH (dec.json.flags);
1434 root 1.1
1435 root 1.49 if (dec.json.cb_object || dec.json.cb_sk_object)
1436     dec.json.flags |= F_HOOK;
1437    
1438 root 1.31 *dec.end = 0; // this should basically be a nop, too, but make sure it's there
1439 root 1.63
1440     decode_ws (&dec);
1441 root 1.1 sv = decode_sv (&dec);
1442    
1443 root 1.32 if (!(offset_return || !sv))
1444 root 1.31 {
1445     // check for trailing garbage
1446     decode_ws (&dec);
1447    
1448     if (*dec.cur)
1449     {
1450     dec.err = "garbage after JSON object";
1451     SvREFCNT_dec (sv);
1452     sv = 0;
1453     }
1454     }
1455    
1456 root 1.32 if (offset_return || !sv)
1457     {
1458 root 1.47 offset = dec.json.flags & F_UTF8
1459 root 1.32 ? dec.cur - SvPVX (string)
1460     : utf8_distance (dec.cur, SvPVX (string));
1461    
1462     if (offset_return)
1463     *offset_return = offset;
1464     }
1465    
1466 root 1.1 if (!sv)
1467     {
1468     SV *uni = sv_newmortal ();
1469 root 1.8
1470 root 1.5 // horrible hack to silence warning inside pv_uni_display
1471 root 1.8 COP cop = *PL_curcop;
1472 root 1.5 cop.cop_warnings = pWARN_NONE;
1473 root 1.8 ENTER;
1474 root 1.5 SAVEVPTR (PL_curcop);
1475     PL_curcop = &cop;
1476 root 1.8 pv_uni_display (uni, dec.cur, dec.end - dec.cur, 20, UNI_DISPLAY_QQ);
1477     LEAVE;
1478 root 1.1
1479 root 1.23 croak ("%s, at character offset %d [\"%s\"]",
1480 root 1.1 dec.err,
1481     (int)offset,
1482     dec.cur != dec.end ? SvPV_nolen (uni) : "(end of string)");
1483     }
1484    
1485 root 1.3 sv = sv_2mortal (sv);
1486    
1487 root 1.47 if (!(dec.json.flags & F_ALLOW_NONREF) && !SvROK (sv))
1488 root 1.9 croak ("JSON text must be an object or array (but found number, string, true, false or null, use allow_nonref to allow this)");
1489 root 1.3
1490     return sv;
1491 root 1.1 }
1492    
1493 root 1.12 /////////////////////////////////////////////////////////////////////////////
1494 root 1.77 // incremental parser
1495    
1496     static void
1497     incr_parse (JSON *self)
1498     {
1499     const char *p = SvPVX (self->incr_text) + self->incr_pos;
1500    
1501     for (;;)
1502     {
1503     //printf ("loop pod %d *p<%c><%s>, mode %d nest %d\n", p - SvPVX (self->incr_text), *p, p, self->incr_mode, self->incr_nest);//D
1504     switch (self->incr_mode)
1505     {
1506     // only used for intiial whitespace skipping
1507     case INCR_M_WS:
1508     for (;;)
1509     {
1510     if (*p > 0x20)
1511     {
1512     self->incr_mode = INCR_M_JSON;
1513     goto incr_m_json;
1514     }
1515     else if (!*p)
1516     goto interrupt;
1517    
1518     ++p;
1519     }
1520    
1521     // skip a single char inside a string (for \\-processing)
1522     case INCR_M_BS:
1523     if (!*p)
1524     goto interrupt;
1525    
1526     ++p;
1527     self->incr_mode = INCR_M_STR;
1528     goto incr_m_str;
1529    
1530     // inside a string
1531     case INCR_M_STR:
1532     incr_m_str:
1533     for (;;)
1534     {
1535     if (*p == '"')
1536     {
1537     ++p;
1538     self->incr_mode = INCR_M_JSON;
1539    
1540     if (!self->incr_nest)
1541     goto interrupt;
1542    
1543     goto incr_m_json;
1544     }
1545     else if (*p == '\\')
1546     {
1547     ++p; // "virtually" consumes character after \
1548    
1549     if (!*p) // if at end of string we have to switch modes
1550     {
1551     self->incr_mode = INCR_M_BS;
1552     goto interrupt;
1553     }
1554     }
1555     else if (!*p)
1556     goto interrupt;
1557    
1558     ++p;
1559     }
1560    
1561     // after initial ws, outside string
1562     case INCR_M_JSON:
1563     incr_m_json:
1564     for (;;)
1565     {
1566     switch (*p++)
1567     {
1568     case 0:
1569     --p;
1570     goto interrupt;
1571    
1572     case 0x09:
1573     case 0x0a:
1574     case 0x0d:
1575     case 0x20:
1576     if (!self->incr_nest)
1577     {
1578     --p; // do not eat the whitespace, let the next round do it
1579     goto interrupt;
1580     }
1581     break;
1582    
1583     case '"':
1584     self->incr_mode = INCR_M_STR;
1585     goto incr_m_str;
1586    
1587     case '[':
1588     case '{':
1589     ++self->incr_nest;
1590     break;
1591    
1592     case ']':
1593     case '}':
1594     if (!--self->incr_nest)
1595     goto interrupt;
1596     }
1597     }
1598     }
1599    
1600     modechange:
1601     ;
1602     }
1603    
1604     interrupt:
1605     self->incr_pos = p - SvPVX (self->incr_text);
1606     //printf ("return pos %d mode %d nest %d\n", self->incr_pos, self->incr_mode, self->incr_nest);//D
1607     }
1608    
1609     /////////////////////////////////////////////////////////////////////////////
1610 root 1.12 // XS interface functions
1611    
1612 root 1.1 MODULE = JSON::XS PACKAGE = JSON::XS
1613    
1614     BOOT:
1615     {
1616     int i;
1617    
1618 root 1.18 for (i = 0; i < 256; ++i)
1619     decode_hexdigit [i] =
1620     i >= '0' && i <= '9' ? i - '0'
1621     : i >= 'a' && i <= 'f' ? i - 'a' + 10
1622     : i >= 'A' && i <= 'F' ? i - 'A' + 10
1623     : -1;
1624 root 1.1
1625 root 1.44 json_stash = gv_stashpv ("JSON::XS" , 1);
1626     json_boolean_stash = gv_stashpv ("JSON::XS::Boolean", 1);
1627 root 1.43
1628 root 1.83 json_true = get_bool ("JSON::XS::true");
1629     json_false = get_bool ("JSON::XS::false");
1630 root 1.1 }
1631    
1632 root 1.4 PROTOTYPES: DISABLE
1633    
1634 root 1.57 void CLONE (...)
1635     CODE:
1636     json_stash = 0;
1637     json_boolean_stash = 0;
1638    
1639 root 1.48 void new (char *klass)
1640     PPCODE:
1641     {
1642     SV *pv = NEWSV (0, sizeof (JSON));
1643     SvPOK_only (pv);
1644 root 1.49 Zero (SvPVX (pv), 1, JSON);
1645 root 1.48 ((JSON *)SvPVX (pv))->flags = F_DEFAULT;
1646 root 1.68 XPUSHs (sv_2mortal (sv_bless (
1647     newRV_noinc (pv),
1648     strEQ (klass, "JSON::XS") ? JSON_STASH : gv_stashpv (klass, 1)
1649     )));
1650 root 1.48 }
1651 root 1.1
1652 root 1.48 void ascii (JSON *self, int enable = 1)
1653 root 1.1 ALIAS:
1654 root 1.44 ascii = F_ASCII
1655     latin1 = F_LATIN1
1656     utf8 = F_UTF8
1657     indent = F_INDENT
1658     canonical = F_CANONICAL
1659     space_before = F_SPACE_BEFORE
1660     space_after = F_SPACE_AFTER
1661     pretty = F_PRETTY
1662     allow_nonref = F_ALLOW_NONREF
1663     shrink = F_SHRINK
1664     allow_blessed = F_ALLOW_BLESSED
1665     convert_blessed = F_CONV_BLESSED
1666 root 1.63 relaxed = F_RELAXED
1667 root 1.84 allow_unknown = F_ALLOW_UNKNOWN
1668 root 1.48 PPCODE:
1669 root 1.1 {
1670     if (enable)
1671 root 1.48 self->flags |= ix;
1672 root 1.1 else
1673 root 1.48 self->flags &= ~ix;
1674 root 1.1
1675 root 1.48 XPUSHs (ST (0));
1676 root 1.1 }
1677    
1678 root 1.66 void get_ascii (JSON *self)
1679     ALIAS:
1680     get_ascii = F_ASCII
1681     get_latin1 = F_LATIN1
1682     get_utf8 = F_UTF8
1683     get_indent = F_INDENT
1684     get_canonical = F_CANONICAL
1685     get_space_before = F_SPACE_BEFORE
1686     get_space_after = F_SPACE_AFTER
1687     get_allow_nonref = F_ALLOW_NONREF
1688     get_shrink = F_SHRINK
1689     get_allow_blessed = F_ALLOW_BLESSED
1690     get_convert_blessed = F_CONV_BLESSED
1691     get_relaxed = F_RELAXED
1692 root 1.84 get_allow_unknown = F_ALLOW_UNKNOWN
1693 root 1.66 PPCODE:
1694     XPUSHs (boolSV (self->flags & ix));
1695    
1696 root 1.48 void max_depth (JSON *self, UV max_depth = 0x80000000UL)
1697     PPCODE:
1698 root 1.18 {
1699     UV log2 = 0;
1700    
1701     if (max_depth > 0x80000000UL) max_depth = 0x80000000UL;
1702    
1703     while ((1UL << log2) < max_depth)
1704     ++log2;
1705    
1706 root 1.48 self->flags = self->flags & ~F_MAXDEPTH | (log2 << S_MAXDEPTH);
1707 root 1.18
1708 root 1.48 XPUSHs (ST (0));
1709 root 1.18 }
1710    
1711 root 1.67 U32 get_max_depth (JSON *self)
1712 root 1.66 CODE:
1713     RETVAL = DEC_DEPTH (self->flags);
1714     OUTPUT:
1715     RETVAL
1716    
1717 root 1.48 void max_size (JSON *self, UV max_size = 0)
1718     PPCODE:
1719 root 1.45 {
1720     UV log2 = 0;
1721    
1722     if (max_size > 0x80000000UL) max_size = 0x80000000UL;
1723     if (max_size == 1) max_size = 2;
1724    
1725     while ((1UL << log2) < max_size)
1726     ++log2;
1727    
1728 root 1.48 self->flags = self->flags & ~F_MAXSIZE | (log2 << S_MAXSIZE);
1729 root 1.45
1730 root 1.48 XPUSHs (ST (0));
1731 root 1.45 }
1732    
1733 root 1.66 int get_max_size (JSON *self)
1734     CODE:
1735     RETVAL = DEC_SIZE (self->flags);
1736     OUTPUT:
1737     RETVAL
1738    
1739 root 1.51 void filter_json_object (JSON *self, SV *cb = &PL_sv_undef)
1740 root 1.49 PPCODE:
1741     {
1742 root 1.52 SvREFCNT_dec (self->cb_object);
1743     self->cb_object = SvOK (cb) ? newSVsv (cb) : 0;
1744    
1745     XPUSHs (ST (0));
1746     }
1747    
1748     void filter_json_single_key_object (JSON *self, SV *key, SV *cb = &PL_sv_undef)
1749     PPCODE:
1750     {
1751     if (!self->cb_sk_object)
1752     self->cb_sk_object = newHV ();
1753 root 1.51
1754 root 1.52 if (SvOK (cb))
1755     hv_store_ent (self->cb_sk_object, key, newSVsv (cb), 0);
1756 root 1.51 else
1757 root 1.52 {
1758     hv_delete_ent (self->cb_sk_object, key, G_DISCARD, 0);
1759 root 1.49
1760 root 1.52 if (!HvKEYS (self->cb_sk_object))
1761     {
1762     SvREFCNT_dec (self->cb_sk_object);
1763     self->cb_sk_object = 0;
1764     }
1765 root 1.49 }
1766    
1767     XPUSHs (ST (0));
1768     }
1769    
1770 root 1.48 void encode (JSON *self, SV *scalar)
1771 root 1.1 PPCODE:
1772 root 1.48 XPUSHs (encode_json (scalar, self));
1773 root 1.1
1774 root 1.48 void decode (JSON *self, SV *jsonstr)
1775 root 1.1 PPCODE:
1776 root 1.48 XPUSHs (decode_json (jsonstr, self, 0));
1777 root 1.31
1778 root 1.48 void decode_prefix (JSON *self, SV *jsonstr)
1779 root 1.31 PPCODE:
1780     {
1781 root 1.77 STRLEN offset;
1782 root 1.31 EXTEND (SP, 2);
1783 root 1.48 PUSHs (decode_json (jsonstr, self, &offset));
1784 root 1.31 PUSHs (sv_2mortal (newSVuv (offset)));
1785     }
1786 root 1.2
1787 root 1.77 void incr_parse (JSON *self, SV *jsonstr = 0)
1788     PPCODE:
1789     {
1790     if (!self->incr_text)
1791     self->incr_text = newSVpvn ("", 0);
1792    
1793     // append data, if any
1794     if (jsonstr)
1795     {
1796     if (SvUTF8 (jsonstr) && !SvUTF8 (self->incr_text))
1797     {
1798     /* utf-8-ness differs, need to upgrade */
1799     sv_utf8_upgrade (self->incr_text);
1800    
1801     if (self->incr_pos)
1802     self->incr_pos = utf8_hop ((U8 *)SvPVX (self->incr_text), self->incr_pos)
1803     - (U8 *)SvPVX (self->incr_text);
1804     }
1805    
1806     {
1807     STRLEN len;
1808     const char *str = SvPV (jsonstr, len);
1809     SvGROW (self->incr_text, SvCUR (self->incr_text) + len + 1);
1810     Move (str, SvEND (self->incr_text), len, char);
1811     SvCUR_set (self->incr_text, SvCUR (self->incr_text) + len);
1812     *SvEND (self->incr_text) = 0; // this should basically be a nop, too, but make sure it's there
1813     }
1814     }
1815    
1816     if (GIMME_V != G_VOID)
1817     do
1818     {
1819     STRLEN offset;
1820    
1821     if (!INCR_DONE (self))
1822 root 1.82 {
1823     incr_parse (self);
1824     if (!INCR_DONE (self))
1825     break;
1826     }
1827 root 1.77
1828     XPUSHs (decode_json (self->incr_text, self, &offset));
1829    
1830     sv_chop (self->incr_text, SvPV_nolen (self->incr_text) + offset);
1831     self->incr_pos -= offset;
1832     self->incr_nest = 0;
1833     self->incr_mode = 0;
1834     }
1835     while (GIMME_V == G_ARRAY);
1836     }
1837    
1838     SV *incr_text (JSON *self)
1839     ATTRS: lvalue
1840     CODE:
1841     {
1842     if (self->incr_pos)
1843 root 1.82 croak ("incr_text can not be called when the incremental parser already started parsing");
1844 root 1.77
1845     RETVAL = self->incr_text ? SvREFCNT_inc (self->incr_text) : &PL_sv_undef;
1846     }
1847     OUTPUT:
1848     RETVAL
1849    
1850 root 1.79 void incr_skip (JSON *self)
1851     CODE:
1852     {
1853 root 1.81 if (self->incr_pos)
1854     {
1855     sv_chop (self->incr_text, SvPV_nolen (self->incr_text) + self->incr_pos);
1856     self->incr_pos = 0;
1857     self->incr_nest = 0;
1858     self->incr_mode = 0;
1859     }
1860 root 1.79 }
1861    
1862 root 1.52 void DESTROY (JSON *self)
1863     CODE:
1864     SvREFCNT_dec (self->cb_sk_object);
1865     SvREFCNT_dec (self->cb_object);
1866 root 1.77 SvREFCNT_dec (self->incr_text);
1867 root 1.52
1868 root 1.4 PROTOTYPES: ENABLE
1869    
1870 root 1.69 void encode_json (SV *scalar)
1871 root 1.76 ALIAS:
1872     to_json_ = 0
1873     encode_json = F_UTF8
1874 root 1.2 PPCODE:
1875 root 1.47 {
1876 root 1.76 JSON json = { F_DEFAULT | ix };
1877 root 1.47 XPUSHs (encode_json (scalar, &json));
1878     }
1879 root 1.2
1880 root 1.69 void decode_json (SV *jsonstr)
1881 root 1.76 ALIAS:
1882     from_json_ = 0
1883     decode_json = F_UTF8
1884 root 1.2 PPCODE:
1885 root 1.47 {
1886 root 1.76 JSON json = { F_DEFAULT | ix };
1887 root 1.47 XPUSHs (decode_json (jsonstr, &json, 0));
1888     }
1889 root 1.1
1890 root 1.77