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Revision 1.43 by root, Sat Jun 23 23:49:29 2007 UTC vs.
Revision 1.85 by root, Wed Mar 19 02:55:23 2008 UTC

1=encoding utf-8
2
1=head1 NAME 3=head1 NAME
2 4
3JSON::XS - JSON serialising/deserialising, done correctly and fast 5JSON::XS - JSON serialising/deserialising, done correctly and fast
6
7JSON::XS - 正しくて高速な JSON シリアライザ/デシリアライザ
8 (http://fleur.hio.jp/perldoc/mix/lib/JSON/XS.html)
4 9
5=head1 SYNOPSIS 10=head1 SYNOPSIS
6 11
7 use JSON::XS; 12 use JSON::XS;
8 13
9 # exported functions, they croak on error 14 # exported functions, they croak on error
10 # and expect/generate UTF-8 15 # and expect/generate UTF-8
11 16
12 $utf8_encoded_json_text = to_json $perl_hash_or_arrayref; 17 $utf8_encoded_json_text = encode_json $perl_hash_or_arrayref;
13 $perl_hash_or_arrayref = from_json $utf8_encoded_json_text; 18 $perl_hash_or_arrayref = decode_json $utf8_encoded_json_text;
14
15 # objToJson and jsonToObj aliases to to_json and from_json
16 # are exported for compatibility to the JSON module,
17 # but should not be used in new code.
18 19
19 # OO-interface 20 # OO-interface
20 21
21 $coder = JSON::XS->new->ascii->pretty->allow_nonref; 22 $coder = JSON::XS->new->ascii->pretty->allow_nonref;
22 $pretty_printed_unencoded = $coder->encode ($perl_scalar); 23 $pretty_printed_unencoded = $coder->encode ($perl_scalar);
23 $perl_scalar = $coder->decode ($unicode_json_text); 24 $perl_scalar = $coder->decode ($unicode_json_text);
24 25
26 # Note that JSON version 2.0 and above will automatically use JSON::XS
27 # if available, at virtually no speed overhead either, so you should
28 # be able to just:
29
30 use JSON;
31
32 # and do the same things, except that you have a pure-perl fallback now.
33
25=head1 DESCRIPTION 34=head1 DESCRIPTION
26 35
27This module converts Perl data structures to JSON and vice versa. Its 36This module converts Perl data structures to JSON and vice versa. Its
28primary goal is to be I<correct> and its secondary goal is to be 37primary goal is to be I<correct> and its secondary goal is to be
29I<fast>. To reach the latter goal it was written in C. 38I<fast>. To reach the latter goal it was written in C.
39
40Beginning with version 2.0 of the JSON module, when both JSON and
41JSON::XS are installed, then JSON will fall back on JSON::XS (this can be
42overriden) with no overhead due to emulation (by inheritign constructor
43and methods). If JSON::XS is not available, it will fall back to the
44compatible JSON::PP module as backend, so using JSON instead of JSON::XS
45gives you a portable JSON API that can be fast when you need and doesn't
46require a C compiler when that is a problem.
30 47
31As this is the n-th-something JSON module on CPAN, what was the reason 48As this is the n-th-something JSON module on CPAN, what was the reason
32to write yet another JSON module? While it seems there are many JSON 49to write yet another JSON module? While it seems there are many JSON
33modules, none of them correctly handle all corner cases, and in most cases 50modules, none of them correctly handle all corner cases, and in most cases
34their maintainers are unresponsive, gone missing, or not listening to bug 51their maintainers are unresponsive, gone missing, or not listening to bug
41 58
42=head2 FEATURES 59=head2 FEATURES
43 60
44=over 4 61=over 4
45 62
46=item * correct unicode handling 63=item * correct Unicode handling
47 64
48This module knows how to handle Unicode, and even documents how and when 65This module knows how to handle Unicode, documents how and when it does
49it does so. 66so, and even documents what "correct" means.
50 67
51=item * round-trip integrity 68=item * round-trip integrity
52 69
53When you serialise a perl data structure using only datatypes supported 70When you serialise a perl data structure using only datatypes supported
54by JSON, the deserialised data structure is identical on the Perl level. 71by JSON, the deserialised data structure is identical on the Perl level.
55(e.g. the string "2.0" doesn't suddenly become "2" just because it looks 72(e.g. the string "2.0" doesn't suddenly become "2" just because it looks
56like a number). 73like a number). There minor I<are> exceptions to this, read the MAPPING
74section below to learn about those.
57 75
58=item * strict checking of JSON correctness 76=item * strict checking of JSON correctness
59 77
60There is no guessing, no generating of illegal JSON texts by default, 78There is no guessing, no generating of illegal JSON texts by default,
61and only JSON is accepted as input by default (the latter is a security 79and only JSON is accepted as input by default (the latter is a security
62feature). 80feature).
63 81
64=item * fast 82=item * fast
65 83
66Compared to other JSON modules, this module compares favourably in terms 84Compared to other JSON modules and other serialisers such as Storable,
67of speed, too. 85this module usually compares favourably in terms of speed, too.
68 86
69=item * simple to use 87=item * simple to use
70 88
71This module has both a simple functional interface as well as an OO 89This module has both a simple functional interface as well as an objetc
72interface. 90oriented interface interface.
73 91
74=item * reasonably versatile output formats 92=item * reasonably versatile output formats
75 93
76You can choose between the most compact guarenteed single-line format 94You can choose between the most compact guaranteed-single-line format
77possible (nice for simple line-based protocols), a pure-ascii format 95possible (nice for simple line-based protocols), a pure-ascii format
78(for when your transport is not 8-bit clean, still supports the whole 96(for when your transport is not 8-bit clean, still supports the whole
79unicode range), or a pretty-printed format (for when you want to read that 97Unicode range), or a pretty-printed format (for when you want to read that
80stuff). Or you can combine those features in whatever way you like. 98stuff). Or you can combine those features in whatever way you like.
81 99
82=back 100=back
83 101
84=cut 102=cut
85 103
86package JSON::XS; 104package JSON::XS;
87 105
88use strict; 106use strict;
89 107
90our $VERSION = '1.3'; 108our $VERSION = '2.01';
91our @ISA = qw(Exporter); 109our @ISA = qw(Exporter);
92 110
93our @EXPORT = qw(to_json from_json objToJson jsonToObj); 111our @EXPORT = qw(encode_json decode_json to_json from_json);
112
113sub to_json($) {
114 require Carp;
115 Carp::croak ("JSON::XS::to_json has been renamed to encode_json, either downgrade to pre-2.0 versions of JSON::XS or rename the call");
116}
117
118sub from_json($) {
119 require Carp;
120 Carp::croak ("JSON::XS::from_json has been renamed to decode_json, either downgrade to pre-2.0 versions of JSON::XS or rename the call");
121}
94 122
95use Exporter; 123use Exporter;
96use XSLoader; 124use XSLoader;
97 125
98=head1 FUNCTIONAL INTERFACE 126=head1 FUNCTIONAL INTERFACE
99 127
100The following convinience methods are provided by this module. They are 128The following convenience methods are provided by this module. They are
101exported by default: 129exported by default:
102 130
103=over 4 131=over 4
104 132
105=item $json_text = to_json $perl_scalar 133=item $json_text = encode_json $perl_scalar
106 134
107Converts the given Perl data structure (a simple scalar or a reference to 135Converts the given Perl data structure to a UTF-8 encoded, binary string
108a hash or array) to a UTF-8 encoded, binary string (that is, the string contains 136(that is, the string contains octets only). Croaks on error.
109octets only). Croaks on error.
110 137
111This function call is functionally identical to: 138This function call is functionally identical to:
112 139
113 $json_text = JSON::XS->new->utf8->encode ($perl_scalar) 140 $json_text = JSON::XS->new->utf8->encode ($perl_scalar)
114 141
115except being faster. 142except being faster.
116 143
117=item $perl_scalar = from_json $json_text 144=item $perl_scalar = decode_json $json_text
118 145
119The opposite of C<to_json>: expects an UTF-8 (binary) string and tries to 146The opposite of C<encode_json>: expects an UTF-8 (binary) string and tries
120parse that as an UTF-8 encoded JSON text, returning the resulting simple 147to parse that as an UTF-8 encoded JSON text, returning the resulting
121scalar or reference. Croaks on error. 148reference. Croaks on error.
122 149
123This function call is functionally identical to: 150This function call is functionally identical to:
124 151
125 $perl_scalar = JSON::XS->new->utf8->decode ($json_text) 152 $perl_scalar = JSON::XS->new->utf8->decode ($json_text)
126 153
136Perl. 163Perl.
137 164
138=back 165=back
139 166
140 167
168=head1 A FEW NOTES ON UNICODE AND PERL
169
170Since this often leads to confusion, here are a few very clear words on
171how Unicode works in Perl, modulo bugs.
172
173=over 4
174
175=item 1. Perl strings can store characters with ordinal values > 255.
176
177This enables you to store Unicode characters as single characters in a
178Perl string - very natural.
179
180=item 2. Perl does I<not> associate an encoding with your strings.
181
182... until you force it to, e.g. when matching it against a regex, or
183printing the scalar to a file, in which case Perl either interprets your
184string as locale-encoded text, octets/binary, or as Unicode, depending
185on various settings. In no case is an encoding stored together with your
186data, it is I<use> that decides encoding, not any magical meta data.
187
188=item 3. The internal utf-8 flag has no meaning with regards to the
189encoding of your string.
190
191Just ignore that flag unless you debug a Perl bug, a module written in
192XS or want to dive into the internals of perl. Otherwise it will only
193confuse you, as, despite the name, it says nothing about how your string
194is encoded. You can have Unicode strings with that flag set, with that
195flag clear, and you can have binary data with that flag set and that flag
196clear. Other possibilities exist, too.
197
198If you didn't know about that flag, just the better, pretend it doesn't
199exist.
200
201=item 4. A "Unicode String" is simply a string where each character can be
202validly interpreted as a Unicode codepoint.
203
204If you have UTF-8 encoded data, it is no longer a Unicode string, but a
205Unicode string encoded in UTF-8, giving you a binary string.
206
207=item 5. A string containing "high" (> 255) character values is I<not> a UTF-8 string.
208
209It's a fact. Learn to live with it.
210
211=back
212
213I hope this helps :)
214
215
141=head1 OBJECT-ORIENTED INTERFACE 216=head1 OBJECT-ORIENTED INTERFACE
142 217
143The object oriented interface lets you configure your own encoding or 218The object oriented interface lets you configure your own encoding or
144decoding style, within the limits of supported formats. 219decoding style, within the limits of supported formats.
145 220
156 my $json = JSON::XS->new->utf8->space_after->encode ({a => [1,2]}) 231 my $json = JSON::XS->new->utf8->space_after->encode ({a => [1,2]})
157 => {"a": [1, 2]} 232 => {"a": [1, 2]}
158 233
159=item $json = $json->ascii ([$enable]) 234=item $json = $json->ascii ([$enable])
160 235
236=item $enabled = $json->get_ascii
237
161If C<$enable> is true (or missing), then the C<encode> method will not 238If C<$enable> is true (or missing), then the C<encode> method will not
162generate characters outside the code range C<0..127> (which is ASCII). Any 239generate characters outside the code range C<0..127> (which is ASCII). Any
163unicode characters outside that range will be escaped using either a 240Unicode characters outside that range will be escaped using either a
164single \uXXXX (BMP characters) or a double \uHHHH\uLLLLL escape sequence, 241single \uXXXX (BMP characters) or a double \uHHHH\uLLLLL escape sequence,
165as per RFC4627. The resulting encoded JSON text can be treated as a native 242as per RFC4627. The resulting encoded JSON text can be treated as a native
166unicode string, an ascii-encoded, latin1-encoded or UTF-8 encoded string, 243Unicode string, an ascii-encoded, latin1-encoded or UTF-8 encoded string,
167or any other superset of ASCII. 244or any other superset of ASCII.
168 245
169If C<$enable> is false, then the C<encode> method will not escape Unicode 246If C<$enable> is false, then the C<encode> method will not escape Unicode
170characters unless required by the JSON syntax or other flags. This results 247characters unless required by the JSON syntax or other flags. This results
171in a faster and more compact format. 248in a faster and more compact format.
177 JSON::XS->new->ascii (1)->encode ([chr 0x10401]) 254 JSON::XS->new->ascii (1)->encode ([chr 0x10401])
178 => ["\ud801\udc01"] 255 => ["\ud801\udc01"]
179 256
180=item $json = $json->latin1 ([$enable]) 257=item $json = $json->latin1 ([$enable])
181 258
259=item $enabled = $json->get_latin1
260
182If C<$enable> is true (or missing), then the C<encode> method will encode 261If C<$enable> is true (or missing), then the C<encode> method will encode
183the resulting JSON text as latin1 (or iso-8859-1), escaping any characters 262the resulting JSON text as latin1 (or iso-8859-1), escaping any characters
184outside the code range C<0..255>. The resulting string can be treated as a 263outside the code range C<0..255>. The resulting string can be treated as a
185latin1-encoded JSON text or a native unicode string. The C<decode> method 264latin1-encoded JSON text or a native Unicode string. The C<decode> method
186will not be affected in any way by this flag, as C<decode> by default 265will not be affected in any way by this flag, as C<decode> by default
187expects unicode, which is a strict superset of latin1. 266expects Unicode, which is a strict superset of latin1.
188 267
189If C<$enable> is false, then the C<encode> method will not escape Unicode 268If C<$enable> is false, then the C<encode> method will not escape Unicode
190characters unless required by the JSON syntax or other flags. 269characters unless required by the JSON syntax or other flags.
191 270
192The main use for this flag is efficiently encoding binary data as JSON 271The main use for this flag is efficiently encoding binary data as JSON
193text, as most octets will not be escaped, resulting in a smaller encoded 272text, as most octets will not be escaped, resulting in a smaller encoded
194size. The disadvantage is that the resulting JSON text is encoded 273size. The disadvantage is that the resulting JSON text is encoded
195in latin1 (and must correctly be treated as such when storing and 274in latin1 (and must correctly be treated as such when storing and
196transfering), a rare encoding for JSON. It is therefore most useful when 275transferring), a rare encoding for JSON. It is therefore most useful when
197you want to store data structures known to contain binary data efficiently 276you want to store data structures known to contain binary data efficiently
198in files or databases, not when talking to other JSON encoders/decoders. 277in files or databases, not when talking to other JSON encoders/decoders.
199 278
200 JSON::XS->new->latin1->encode (["\x{89}\x{abc}"] 279 JSON::XS->new->latin1->encode (["\x{89}\x{abc}"]
201 => ["\x{89}\\u0abc"] # (perl syntax, U+abc escaped, U+89 not) 280 => ["\x{89}\\u0abc"] # (perl syntax, U+abc escaped, U+89 not)
202 281
203=item $json = $json->utf8 ([$enable]) 282=item $json = $json->utf8 ([$enable])
283
284=item $enabled = $json->get_utf8
204 285
205If C<$enable> is true (or missing), then the C<encode> method will encode 286If C<$enable> is true (or missing), then the C<encode> method will encode
206the JSON result into UTF-8, as required by many protocols, while the 287the JSON result into UTF-8, as required by many protocols, while the
207C<decode> method expects to be handled an UTF-8-encoded string. Please 288C<decode> method expects to be handled an UTF-8-encoded string. Please
208note that UTF-8-encoded strings do not contain any characters outside the 289note that UTF-8-encoded strings do not contain any characters outside the
209range C<0..255>, they are thus useful for bytewise/binary I/O. In future 290range C<0..255>, they are thus useful for bytewise/binary I/O. In future
210versions, enabling this option might enable autodetection of the UTF-16 291versions, enabling this option might enable autodetection of the UTF-16
211and UTF-32 encoding families, as described in RFC4627. 292and UTF-32 encoding families, as described in RFC4627.
212 293
213If C<$enable> is false, then the C<encode> method will return the JSON 294If C<$enable> is false, then the C<encode> method will return the JSON
214string as a (non-encoded) unicode string, while C<decode> expects thus a 295string as a (non-encoded) Unicode string, while C<decode> expects thus a
215unicode string. Any decoding or encoding (e.g. to UTF-8 or UTF-16) needs 296Unicode string. Any decoding or encoding (e.g. to UTF-8 or UTF-16) needs
216to be done yourself, e.g. using the Encode module. 297to be done yourself, e.g. using the Encode module.
217 298
218Example, output UTF-16BE-encoded JSON: 299Example, output UTF-16BE-encoded JSON:
219 300
220 use Encode; 301 use Encode;
242 ] 323 ]
243 } 324 }
244 325
245=item $json = $json->indent ([$enable]) 326=item $json = $json->indent ([$enable])
246 327
328=item $enabled = $json->get_indent
329
247If C<$enable> is true (or missing), then the C<encode> method will use a multiline 330If C<$enable> is true (or missing), then the C<encode> method will use a multiline
248format as output, putting every array member or object/hash key-value pair 331format as output, putting every array member or object/hash key-value pair
249into its own line, identing them properly. 332into its own line, indenting them properly.
250 333
251If C<$enable> is false, no newlines or indenting will be produced, and the 334If C<$enable> is false, no newlines or indenting will be produced, and the
252resulting JSON text is guarenteed not to contain any C<newlines>. 335resulting JSON text is guaranteed not to contain any C<newlines>.
253 336
254This setting has no effect when decoding JSON texts. 337This setting has no effect when decoding JSON texts.
255 338
256=item $json = $json->space_before ([$enable]) 339=item $json = $json->space_before ([$enable])
340
341=item $enabled = $json->get_space_before
257 342
258If C<$enable> is true (or missing), then the C<encode> method will add an extra 343If C<$enable> is true (or missing), then the C<encode> method will add an extra
259optional space before the C<:> separating keys from values in JSON objects. 344optional space before the C<:> separating keys from values in JSON objects.
260 345
261If C<$enable> is false, then the C<encode> method will not add any extra 346If C<$enable> is false, then the C<encode> method will not add any extra
267Example, space_before enabled, space_after and indent disabled: 352Example, space_before enabled, space_after and indent disabled:
268 353
269 {"key" :"value"} 354 {"key" :"value"}
270 355
271=item $json = $json->space_after ([$enable]) 356=item $json = $json->space_after ([$enable])
357
358=item $enabled = $json->get_space_after
272 359
273If C<$enable> is true (or missing), then the C<encode> method will add an extra 360If C<$enable> is true (or missing), then the C<encode> method will add an extra
274optional space after the C<:> separating keys from values in JSON objects 361optional space after the C<:> separating keys from values in JSON objects
275and extra whitespace after the C<,> separating key-value pairs and array 362and extra whitespace after the C<,> separating key-value pairs and array
276members. 363members.
282 369
283Example, space_before and indent disabled, space_after enabled: 370Example, space_before and indent disabled, space_after enabled:
284 371
285 {"key": "value"} 372 {"key": "value"}
286 373
374=item $json = $json->relaxed ([$enable])
375
376=item $enabled = $json->get_relaxed
377
378If C<$enable> is true (or missing), then C<decode> will accept some
379extensions to normal JSON syntax (see below). C<encode> will not be
380affected in anyway. I<Be aware that this option makes you accept invalid
381JSON texts as if they were valid!>. I suggest only to use this option to
382parse application-specific files written by humans (configuration files,
383resource files etc.)
384
385If C<$enable> is false (the default), then C<decode> will only accept
386valid JSON texts.
387
388Currently accepted extensions are:
389
390=over 4
391
392=item * list items can have an end-comma
393
394JSON I<separates> array elements and key-value pairs with commas. This
395can be annoying if you write JSON texts manually and want to be able to
396quickly append elements, so this extension accepts comma at the end of
397such items not just between them:
398
399 [
400 1,
401 2, <- this comma not normally allowed
402 ]
403 {
404 "k1": "v1",
405 "k2": "v2", <- this comma not normally allowed
406 }
407
408=item * shell-style '#'-comments
409
410Whenever JSON allows whitespace, shell-style comments are additionally
411allowed. They are terminated by the first carriage-return or line-feed
412character, after which more white-space and comments are allowed.
413
414 [
415 1, # this comment not allowed in JSON
416 # neither this one...
417 ]
418
419=back
420
287=item $json = $json->canonical ([$enable]) 421=item $json = $json->canonical ([$enable])
422
423=item $enabled = $json->get_canonical
288 424
289If C<$enable> is true (or missing), then the C<encode> method will output JSON objects 425If C<$enable> is true (or missing), then the C<encode> method will output JSON objects
290by sorting their keys. This is adding a comparatively high overhead. 426by sorting their keys. This is adding a comparatively high overhead.
291 427
292If C<$enable> is false, then the C<encode> method will output key-value 428If C<$enable> is false, then the C<encode> method will output key-value
293pairs in the order Perl stores them (which will likely change between runs 429pairs in the order Perl stores them (which will likely change between runs
294of the same script). 430of the same script).
295 431
296This option is useful if you want the same data structure to be encoded as 432This option is useful if you want the same data structure to be encoded as
297the same JSON text (given the same overall settings). If it is disabled, 433the same JSON text (given the same overall settings). If it is disabled,
298the same hash migh be encoded differently even if contains the same data, 434the same hash might be encoded differently even if contains the same data,
299as key-value pairs have no inherent ordering in Perl. 435as key-value pairs have no inherent ordering in Perl.
300 436
301This setting has no effect when decoding JSON texts. 437This setting has no effect when decoding JSON texts.
302 438
303=item $json = $json->allow_nonref ([$enable]) 439=item $json = $json->allow_nonref ([$enable])
440
441=item $enabled = $json->get_allow_nonref
304 442
305If C<$enable> is true (or missing), then the C<encode> method can convert a 443If C<$enable> is true (or missing), then the C<encode> method can convert a
306non-reference into its corresponding string, number or null JSON value, 444non-reference into its corresponding string, number or null JSON value,
307which is an extension to RFC4627. Likewise, C<decode> will accept those JSON 445which is an extension to RFC4627. Likewise, C<decode> will accept those JSON
308values instead of croaking. 446values instead of croaking.
316resulting in an invalid JSON text: 454resulting in an invalid JSON text:
317 455
318 JSON::XS->new->allow_nonref->encode ("Hello, World!") 456 JSON::XS->new->allow_nonref->encode ("Hello, World!")
319 => "Hello, World!" 457 => "Hello, World!"
320 458
459=item $json = $json->allow_blessed ([$enable])
460
461=item $enabled = $json->get_allow_blessed
462
463If C<$enable> is true (or missing), then the C<encode> method will not
464barf when it encounters a blessed reference. Instead, the value of the
465B<convert_blessed> option will decide whether C<null> (C<convert_blessed>
466disabled or no C<TO_JSON> method found) or a representation of the
467object (C<convert_blessed> enabled and C<TO_JSON> method found) is being
468encoded. Has no effect on C<decode>.
469
470If C<$enable> is false (the default), then C<encode> will throw an
471exception when it encounters a blessed object.
472
473=item $json = $json->convert_blessed ([$enable])
474
475=item $enabled = $json->get_convert_blessed
476
477If C<$enable> is true (or missing), then C<encode>, upon encountering a
478blessed object, will check for the availability of the C<TO_JSON> method
479on the object's class. If found, it will be called in scalar context
480and the resulting scalar will be encoded instead of the object. If no
481C<TO_JSON> method is found, the value of C<allow_blessed> will decide what
482to do.
483
484The C<TO_JSON> method may safely call die if it wants. If C<TO_JSON>
485returns other blessed objects, those will be handled in the same
486way. C<TO_JSON> must take care of not causing an endless recursion cycle
487(== crash) in this case. The name of C<TO_JSON> was chosen because other
488methods called by the Perl core (== not by the user of the object) are
489usually in upper case letters and to avoid collisions with any C<to_json>
490function or method.
491
492This setting does not yet influence C<decode> in any way, but in the
493future, global hooks might get installed that influence C<decode> and are
494enabled by this setting.
495
496If C<$enable> is false, then the C<allow_blessed> setting will decide what
497to do when a blessed object is found.
498
499=item $json = $json->filter_json_object ([$coderef->($hashref)])
500
501When C<$coderef> is specified, it will be called from C<decode> each
502time it decodes a JSON object. The only argument is a reference to the
503newly-created hash. If the code references returns a single scalar (which
504need not be a reference), this value (i.e. a copy of that scalar to avoid
505aliasing) is inserted into the deserialised data structure. If it returns
506an empty list (NOTE: I<not> C<undef>, which is a valid scalar), the
507original deserialised hash will be inserted. This setting can slow down
508decoding considerably.
509
510When C<$coderef> is omitted or undefined, any existing callback will
511be removed and C<decode> will not change the deserialised hash in any
512way.
513
514Example, convert all JSON objects into the integer 5:
515
516 my $js = JSON::XS->new->filter_json_object (sub { 5 });
517 # returns [5]
518 $js->decode ('[{}]')
519 # throw an exception because allow_nonref is not enabled
520 # so a lone 5 is not allowed.
521 $js->decode ('{"a":1, "b":2}');
522
523=item $json = $json->filter_json_single_key_object ($key [=> $coderef->($value)])
524
525Works remotely similar to C<filter_json_object>, but is only called for
526JSON objects having a single key named C<$key>.
527
528This C<$coderef> is called before the one specified via
529C<filter_json_object>, if any. It gets passed the single value in the JSON
530object. If it returns a single value, it will be inserted into the data
531structure. If it returns nothing (not even C<undef> but the empty list),
532the callback from C<filter_json_object> will be called next, as if no
533single-key callback were specified.
534
535If C<$coderef> is omitted or undefined, the corresponding callback will be
536disabled. There can only ever be one callback for a given key.
537
538As this callback gets called less often then the C<filter_json_object>
539one, decoding speed will not usually suffer as much. Therefore, single-key
540objects make excellent targets to serialise Perl objects into, especially
541as single-key JSON objects are as close to the type-tagged value concept
542as JSON gets (it's basically an ID/VALUE tuple). Of course, JSON does not
543support this in any way, so you need to make sure your data never looks
544like a serialised Perl hash.
545
546Typical names for the single object key are C<__class_whatever__>, or
547C<$__dollars_are_rarely_used__$> or C<}ugly_brace_placement>, or even
548things like C<__class_md5sum(classname)__>, to reduce the risk of clashing
549with real hashes.
550
551Example, decode JSON objects of the form C<< { "__widget__" => <id> } >>
552into the corresponding C<< $WIDGET{<id>} >> object:
553
554 # return whatever is in $WIDGET{5}:
555 JSON::XS
556 ->new
557 ->filter_json_single_key_object (__widget__ => sub {
558 $WIDGET{ $_[0] }
559 })
560 ->decode ('{"__widget__": 5')
561
562 # this can be used with a TO_JSON method in some "widget" class
563 # for serialisation to json:
564 sub WidgetBase::TO_JSON {
565 my ($self) = @_;
566
567 unless ($self->{id}) {
568 $self->{id} = ..get..some..id..;
569 $WIDGET{$self->{id}} = $self;
570 }
571
572 { __widget__ => $self->{id} }
573 }
574
321=item $json = $json->shrink ([$enable]) 575=item $json = $json->shrink ([$enable])
576
577=item $enabled = $json->get_shrink
322 578
323Perl usually over-allocates memory a bit when allocating space for 579Perl usually over-allocates memory a bit when allocating space for
324strings. This flag optionally resizes strings generated by either 580strings. This flag optionally resizes strings generated by either
325C<encode> or C<decode> to their minimum size possible. This can save 581C<encode> or C<decode> to their minimum size possible. This can save
326memory when your JSON texts are either very very long or you have many 582memory when your JSON texts are either very very long or you have many
344strings that look like integers or floats into integers or floats 600strings that look like integers or floats into integers or floats
345internally (there is no difference on the Perl level), saving space. 601internally (there is no difference on the Perl level), saving space.
346 602
347=item $json = $json->max_depth ([$maximum_nesting_depth]) 603=item $json = $json->max_depth ([$maximum_nesting_depth])
348 604
605=item $max_depth = $json->get_max_depth
606
349Sets the maximum nesting level (default C<512>) accepted while encoding 607Sets the maximum nesting level (default C<512>) accepted while encoding
350or decoding. If the JSON text or Perl data structure has an equal or 608or decoding. If the JSON text or Perl data structure has an equal or
351higher nesting level then this limit, then the encoder and decoder will 609higher nesting level then this limit, then the encoder and decoder will
352stop and croak at that point. 610stop and croak at that point.
353 611
357given character in a string. 615given character in a string.
358 616
359Setting the maximum depth to one disallows any nesting, so that ensures 617Setting the maximum depth to one disallows any nesting, so that ensures
360that the object is only a single hash/object or array. 618that the object is only a single hash/object or array.
361 619
362The argument to C<max_depth> will be rounded up to the next nearest power 620The argument to C<max_depth> will be rounded up to the next highest power
363of two. 621of two. If no argument is given, the highest possible setting will be
622used, which is rarely useful.
623
624See SECURITY CONSIDERATIONS, below, for more info on why this is useful.
625
626=item $json = $json->max_size ([$maximum_string_size])
627
628=item $max_size = $json->get_max_size
629
630Set the maximum length a JSON text may have (in bytes) where decoding is
631being attempted. The default is C<0>, meaning no limit. When C<decode>
632is called on a string longer then this number of characters it will not
633attempt to decode the string but throw an exception. This setting has no
634effect on C<encode> (yet).
635
636The argument to C<max_size> will be rounded up to the next B<highest>
637power of two (so may be more than requested). If no argument is given, the
638limit check will be deactivated (same as when C<0> is specified).
364 639
365See SECURITY CONSIDERATIONS, below, for more info on why this is useful. 640See SECURITY CONSIDERATIONS, below, for more info on why this is useful.
366 641
367=item $json_text = $json->encode ($perl_scalar) 642=item $json_text = $json->encode ($perl_scalar)
368 643
405vice versa. These mappings are designed to "do the right thing" in most 680vice versa. These mappings are designed to "do the right thing" in most
406circumstances automatically, preserving round-tripping characteristics 681circumstances automatically, preserving round-tripping characteristics
407(what you put in comes out as something equivalent). 682(what you put in comes out as something equivalent).
408 683
409For the more enlightened: note that in the following descriptions, 684For the more enlightened: note that in the following descriptions,
410lowercase I<perl> refers to the Perl interpreter, while uppcercase I<Perl> 685lowercase I<perl> refers to the Perl interpreter, while uppercase I<Perl>
411refers to the abstract Perl language itself. 686refers to the abstract Perl language itself.
412 687
413 688
414=head2 JSON -> PERL 689=head2 JSON -> PERL
415 690
416=over 4 691=over 4
417 692
418=item object 693=item object
419 694
420A JSON object becomes a reference to a hash in Perl. No ordering of object 695A JSON object becomes a reference to a hash in Perl. No ordering of object
421keys is preserved (JSON does not preserver object key ordering itself). 696keys is preserved (JSON does not preserve object key ordering itself).
422 697
423=item array 698=item array
424 699
425A JSON array becomes a reference to an array in Perl. 700A JSON array becomes a reference to an array in Perl.
426 701
430are represented by the same codepoints in the Perl string, so no manual 705are represented by the same codepoints in the Perl string, so no manual
431decoding is necessary. 706decoding is necessary.
432 707
433=item number 708=item number
434 709
435A JSON number becomes either an integer or numeric (floating point) 710A JSON number becomes either an integer, numeric (floating point) or
436scalar in perl, depending on its range and any fractional parts. On the 711string scalar in perl, depending on its range and any fractional parts. On
437Perl level, there is no difference between those as Perl handles all the 712the Perl level, there is no difference between those as Perl handles all
438conversion details, but an integer may take slightly less memory and might 713the conversion details, but an integer may take slightly less memory and
439represent more values exactly than (floating point) numbers. 714might represent more values exactly than floating point numbers.
715
716If the number consists of digits only, JSON::XS will try to represent
717it as an integer value. If that fails, it will try to represent it as
718a numeric (floating point) value if that is possible without loss of
719precision. Otherwise it will preserve the number as a string value (in
720which case you lose roundtripping ability, as the JSON number will be
721re-encoded toa JSON string).
722
723Numbers containing a fractional or exponential part will always be
724represented as numeric (floating point) values, possibly at a loss of
725precision (in which case you might lose perfect roundtripping ability, but
726the JSON number will still be re-encoded as a JSON number).
440 727
441=item true, false 728=item true, false
442 729
443These JSON atoms become C<JSON::XS::true> and C<JSON::XS::false>, 730These JSON atoms become C<JSON::XS::true> and C<JSON::XS::false>,
444respectively. They are overloaded to act almost exactly like the numbers 731respectively. They are overloaded to act almost exactly like the numbers
445C<1> and C<0>. You can check wether a scalar is a JSON boolean by using 732C<1> and C<0>. You can check whether a scalar is a JSON boolean by using
446the C<JSON::XS::is_bool> function. 733the C<JSON::XS::is_bool> function.
447 734
448=item null 735=item null
449 736
450A JSON null atom becomes C<undef> in Perl. 737A JSON null atom becomes C<undef> in Perl.
481Other unblessed references are generally not allowed and will cause an 768Other unblessed references are generally not allowed and will cause an
482exception to be thrown, except for references to the integers C<0> and 769exception to be thrown, except for references to the integers C<0> and
483C<1>, which get turned into C<false> and C<true> atoms in JSON. You can 770C<1>, which get turned into C<false> and C<true> atoms in JSON. You can
484also use C<JSON::XS::false> and C<JSON::XS::true> to improve readability. 771also use C<JSON::XS::false> and C<JSON::XS::true> to improve readability.
485 772
486 to_json [\0,JSON::XS::true] # yields [false,true] 773 encode_json [\0,JSON::XS::true] # yields [false,true]
487 774
488=item JSON::XS::true, JSON::XS::false 775=item JSON::XS::true, JSON::XS::false
489 776
490These special values become JSON true and JSON false values, 777These special values become JSON true and JSON false values,
491respectively. You cna alos use C<\1> and C<\0> directly if you want. 778respectively. You can also use C<\1> and C<\0> directly if you want.
492 779
493=item blessed objects 780=item blessed objects
494 781
495Blessed objects are not allowed. JSON::XS currently tries to encode their 782Blessed objects are not directly representable in JSON. See the
496underlying representation (hash- or arrayref), but this behaviour might 783C<allow_blessed> and C<convert_blessed> methods on various options on
497change in future versions. 784how to deal with this: basically, you can choose between throwing an
785exception, encoding the reference as if it weren't blessed, or provide
786your own serialiser method.
498 787
499=item simple scalars 788=item simple scalars
500 789
501Simple Perl scalars (any scalar that is not a reference) are the most 790Simple Perl scalars (any scalar that is not a reference) are the most
502difficult objects to encode: JSON::XS will encode undefined scalars as 791difficult objects to encode: JSON::XS will encode undefined scalars as
503JSON null value, scalars that have last been used in a string context 792JSON C<null> values, scalars that have last been used in a string context
504before encoding as JSON strings and anything else as number value: 793before encoding as JSON strings, and anything else as number value:
505 794
506 # dump as number 795 # dump as number
507 to_json [2] # yields [2] 796 encode_json [2] # yields [2]
508 to_json [-3.0e17] # yields [-3e+17] 797 encode_json [-3.0e17] # yields [-3e+17]
509 my $value = 5; to_json [$value] # yields [5] 798 my $value = 5; encode_json [$value] # yields [5]
510 799
511 # used as string, so dump as string 800 # used as string, so dump as string
512 print $value; 801 print $value;
513 to_json [$value] # yields ["5"] 802 encode_json [$value] # yields ["5"]
514 803
515 # undef becomes null 804 # undef becomes null
516 to_json [undef] # yields [null] 805 encode_json [undef] # yields [null]
517 806
518You can force the type to be a string by stringifying it: 807You can force the type to be a JSON string by stringifying it:
519 808
520 my $x = 3.1; # some variable containing a number 809 my $x = 3.1; # some variable containing a number
521 "$x"; # stringified 810 "$x"; # stringified
522 $x .= ""; # another, more awkward way to stringify 811 $x .= ""; # another, more awkward way to stringify
523 print $x; # perl does it for you, too, quite often 812 print $x; # perl does it for you, too, quite often
524 813
525You can force the type to be a number by numifying it: 814You can force the type to be a JSON number by numifying it:
526 815
527 my $x = "3"; # some variable containing a string 816 my $x = "3"; # some variable containing a string
528 $x += 0; # numify it, ensuring it will be dumped as a number 817 $x += 0; # numify it, ensuring it will be dumped as a number
529 $x *= 1; # same thing, the choise is yours. 818 $x *= 1; # same thing, the choice is yours.
530 819
531You can not currently output JSON booleans or force the type in other, 820You can not currently force the type in other, less obscure, ways. Tell me
532less obscure, ways. Tell me if you need this capability. 821if you need this capability (but don't forget to explain why its needed
822:).
823
824=back
825
826
827=head1 ENCODING/CODESET FLAG NOTES
828
829The interested reader might have seen a number of flags that signify
830encodings or codesets - C<utf8>, C<latin1> and C<ascii>. There seems to be
831some confusion on what these do, so here is a short comparison:
832
833C<utf8> controls wether the JSON text created by C<encode> (and expected
834by C<decode>) is UTF-8 encoded or not, while C<latin1> and C<ascii> only
835control wether C<encode> escapes character values outside their respective
836codeset range. Neither of these flags conflict with each other, although
837some combinations make less sense than others.
838
839Care has been taken to make all flags symmetrical with respect to
840C<encode> and C<decode>, that is, texts encoded with any combination of
841these flag values will be correctly decoded when the same flags are used
842- in general, if you use different flag settings while encoding vs. when
843decoding you likely have a bug somewhere.
844
845Below comes a verbose discussion of these flags. Note that a "codeset" is
846simply an abstract set of character-codepoint pairs, while an encoding
847takes those codepoint numbers and I<encodes> them, in our case into
848octets. Unicode is (among other things) a codeset, UTF-8 is an encoding,
849and ISO-8859-1 (= latin 1) and ASCII are both codesets I<and> encodings at
850the same time, which can be confusing.
851
852=over 4
853
854=item C<utf8> flag disabled
855
856When C<utf8> is disabled (the default), then C<encode>/C<decode> generate
857and expect Unicode strings, that is, characters with high ordinal Unicode
858values (> 255) will be encoded as such characters, and likewise such
859characters are decoded as-is, no canges to them will be done, except
860"(re-)interpreting" them as Unicode codepoints or Unicode characters,
861respectively (to Perl, these are the same thing in strings unless you do
862funny/weird/dumb stuff).
863
864This is useful when you want to do the encoding yourself (e.g. when you
865want to have UTF-16 encoded JSON texts) or when some other layer does
866the encoding for you (for example, when printing to a terminal using a
867filehandle that transparently encodes to UTF-8 you certainly do NOT want
868to UTF-8 encode your data first and have Perl encode it another time).
869
870=item C<utf8> flag enabled
871
872If the C<utf8>-flag is enabled, C<encode>/C<decode> will encode all
873characters using the corresponding UTF-8 multi-byte sequence, and will
874expect your input strings to be encoded as UTF-8, that is, no "character"
875of the input string must have any value > 255, as UTF-8 does not allow
876that.
877
878The C<utf8> flag therefore switches between two modes: disabled means you
879will get a Unicode string in Perl, enabled means you get an UTF-8 encoded
880octet/binary string in Perl.
881
882=item C<latin1> or C<ascii> flags enabled
883
884With C<latin1> (or C<ascii>) enabled, C<encode> will escape characters
885with ordinal values > 255 (> 127 with C<ascii>) and encode the remaining
886characters as specified by the C<utf8> flag.
887
888If C<utf8> is disabled, then the result is also correctly encoded in those
889character sets (as both are proper subsets of Unicode, meaning that a
890Unicode string with all character values < 256 is the same thing as a
891ISO-8859-1 string, and a Unicode string with all character values < 128 is
892the same thing as an ASCII string in Perl).
893
894If C<utf8> is enabled, you still get a correct UTF-8-encoded string,
895regardless of these flags, just some more characters will be escaped using
896C<\uXXXX> then before.
897
898Note that ISO-8859-1-I<encoded> strings are not compatible with UTF-8
899encoding, while ASCII-encoded strings are. That is because the ISO-8859-1
900encoding is NOT a subset of UTF-8 (despite the ISO-8859-1 I<codeset> being
901a subset of Unicode), while ASCII is.
902
903Surprisingly, C<decode> will ignore these flags and so treat all input
904values as governed by the C<utf8> flag. If it is disabled, this allows you
905to decode ISO-8859-1- and ASCII-encoded strings, as both strict subsets of
906Unicode. If it is enabled, you can correctly decode UTF-8 encoded strings.
907
908So neither C<latin1> nor C<ascii> are incompatible with the C<utf8> flag -
909they only govern when the JSON output engine escapes a character or not.
910
911The main use for C<latin1> is to relatively efficiently store binary data
912as JSON, at the expense of breaking compatibility with most JSON decoders.
913
914The main use for C<ascii> is to force the output to not contain characters
915with values > 127, which means you can interpret the resulting string
916as UTF-8, ISO-8859-1, ASCII, KOI8-R or most about any character set and
9178-bit-encoding, and still get the same data structure back. This is useful
918when your channel for JSON transfer is not 8-bit clean or the encoding
919might be mangled in between (e.g. in mail), and works because ASCII is a
920proper subset of most 8-bit and multibyte encodings in use in the world.
533 921
534=back 922=back
535 923
536 924
537=head1 COMPARISON 925=head1 COMPARISON
542followed by some benchmark values. JSON::XS was designed not to suffer 930followed by some benchmark values. JSON::XS was designed not to suffer
543from any of these problems or limitations. 931from any of these problems or limitations.
544 932
545=over 4 933=over 4
546 934
935=item JSON 2.xx
936
937A marvellous piece of engineering, this module either uses JSON::XS
938directly when available (so will be 100% compatible with it, including
939speed), or it uses JSON::PP, which is basically JSON::XS translated to
940Pure Perl, which should be 100% compatible with JSON::XS, just a bit
941slower.
942
943You cannot really lose by using this module, especially as it tries very
944hard to work even with ancient Perl versions, while JSON::XS does not.
945
547=item JSON 1.07 946=item JSON 1.07
548 947
549Slow (but very portable, as it is written in pure Perl). 948Slow (but very portable, as it is written in pure Perl).
550 949
551Undocumented/buggy Unicode handling (how JSON handles unicode values is 950Undocumented/buggy Unicode handling (how JSON handles Unicode values is
552undocumented. One can get far by feeding it unicode strings and doing 951undocumented. One can get far by feeding it Unicode strings and doing
553en-/decoding oneself, but unicode escapes are not working properly). 952en-/decoding oneself, but Unicode escapes are not working properly).
554 953
555No roundtripping (strings get clobbered if they look like numbers, e.g. 954No round-tripping (strings get clobbered if they look like numbers, e.g.
556the string C<2.0> will encode to C<2.0> instead of C<"2.0">, and that will 955the string C<2.0> will encode to C<2.0> instead of C<"2.0">, and that will
557decode into the number 2. 956decode into the number 2.
558 957
559=item JSON::PC 0.01 958=item JSON::PC 0.01
560 959
561Very fast. 960Very fast.
562 961
563Undocumented/buggy Unicode handling. 962Undocumented/buggy Unicode handling.
564 963
565No roundtripping. 964No round-tripping.
566 965
567Has problems handling many Perl values (e.g. regex results and other magic 966Has problems handling many Perl values (e.g. regex results and other magic
568values will make it croak). 967values will make it croak).
569 968
570Does not even generate valid JSON (C<{1,2}> gets converted to C<{1:2}> 969Does not even generate valid JSON (C<{1,2}> gets converted to C<{1:2}>
580Very inflexible (no human-readable format supported, format pretty much 979Very inflexible (no human-readable format supported, format pretty much
581undocumented. I need at least a format for easy reading by humans and a 980undocumented. I need at least a format for easy reading by humans and a
582single-line compact format for use in a protocol, and preferably a way to 981single-line compact format for use in a protocol, and preferably a way to
583generate ASCII-only JSON texts). 982generate ASCII-only JSON texts).
584 983
585Completely broken (and confusingly documented) Unicode handling (unicode 984Completely broken (and confusingly documented) Unicode handling (Unicode
586escapes are not working properly, you need to set ImplicitUnicode to 985escapes are not working properly, you need to set ImplicitUnicode to
587I<different> values on en- and decoding to get symmetric behaviour). 986I<different> values on en- and decoding to get symmetric behaviour).
588 987
589No roundtripping (simple cases work, but this depends on wether the scalar 988No round-tripping (simple cases work, but this depends on whether the scalar
590value was used in a numeric context or not). 989value was used in a numeric context or not).
591 990
592Dumping hashes may skip hash values depending on iterator state. 991Dumping hashes may skip hash values depending on iterator state.
593 992
594Unmaintained (maintainer unresponsive for many months, bugs are not 993Unmaintained (maintainer unresponsive for many months, bugs are not
595getting fixed). 994getting fixed).
596 995
597Does not check input for validity (i.e. will accept non-JSON input and 996Does not check input for validity (i.e. will accept non-JSON input and
598return "something" instead of raising an exception. This is a security 997return "something" instead of raising an exception. This is a security
599issue: imagine two banks transfering money between each other using 998issue: imagine two banks transferring money between each other using
600JSON. One bank might parse a given non-JSON request and deduct money, 999JSON. One bank might parse a given non-JSON request and deduct money,
601while the other might reject the transaction with a syntax error. While a 1000while the other might reject the transaction with a syntax error. While a
602good protocol will at least recover, that is extra unnecessary work and 1001good protocol will at least recover, that is extra unnecessary work and
603the transaction will still not succeed). 1002the transaction will still not succeed).
604 1003
605=item JSON::DWIW 0.04 1004=item JSON::DWIW 0.04
606 1005
607Very fast. Very natural. Very nice. 1006Very fast. Very natural. Very nice.
608 1007
609Undocumented unicode handling (but the best of the pack. Unicode escapes 1008Undocumented Unicode handling (but the best of the pack. Unicode escapes
610still don't get parsed properly). 1009still don't get parsed properly).
611 1010
612Very inflexible. 1011Very inflexible.
613 1012
614No roundtripping. 1013No round-tripping.
615 1014
616Does not generate valid JSON texts (key strings are often unquoted, empty keys 1015Does not generate valid JSON texts (key strings are often unquoted, empty keys
617result in nothing being output) 1016result in nothing being output)
618 1017
619Does not check input for validity. 1018Does not check input for validity.
621=back 1020=back
622 1021
623 1022
624=head2 JSON and YAML 1023=head2 JSON and YAML
625 1024
626You often hear that JSON is a subset (or a close subset) of YAML. This is, 1025You often hear that JSON is a subset of YAML. This is, however, a mass
627however, a mass hysteria and very far from the truth. In general, there is 1026hysteria(*) and very far from the truth. In general, there is no way to
628no way to configure JSON::XS to output a data structure as valid YAML. 1027configure JSON::XS to output a data structure as valid YAML that works for
1028all cases.
629 1029
630If you really must use JSON::XS to generate YAML, you should use this 1030If you really must use JSON::XS to generate YAML, you should use this
631algorithm (subject to change in future versions): 1031algorithm (subject to change in future versions):
632 1032
633 my $to_yaml = JSON::XS->new->utf8->space_after (1); 1033 my $to_yaml = JSON::XS->new->utf8->space_after (1);
634 my $yaml = $to_yaml->encode ($ref) . "\n"; 1034 my $yaml = $to_yaml->encode ($ref) . "\n";
635 1035
636This will usually generate JSON texts that also parse as valid 1036This will I<usually> generate JSON texts that also parse as valid
637YAML. Please note that YAML has hardcoded limits on (simple) object key 1037YAML. Please note that YAML has hardcoded limits on (simple) object key
638lengths that JSON doesn't have, so you should make sure that your hash 1038lengths that JSON doesn't have and also has different and incompatible
1039unicode handling, so you should make sure that your hash keys are
639keys are noticably shorter than the 1024 characters YAML allows. 1040noticeably shorter than the 1024 "stream characters" YAML allows and that
1041you do not have codepoints with values outside the Unicode BMP (basic
1042multilingual page). YAML also does not allow C<\/> sequences in strings
1043(which JSON::XS does not I<currently> generate).
640 1044
641There might be other incompatibilities that I am not aware of. In general 1045There might be other incompatibilities that I am not aware of (or the YAML
1046specification has been changed yet again - it does so quite often). In
642you should not try to generate YAML with a JSON generator or vice versa, 1047general you should not try to generate YAML with a JSON generator or vice
643or try to parse JSON with a YAML parser or vice versa: chances are high 1048versa, or try to parse JSON with a YAML parser or vice versa: chances are
644that you will run into severe interoperability problems. 1049high that you will run into severe interoperability problems when you
1050least expect it.
1051
1052=over 4
1053
1054=item (*)
1055
1056This is spread actively by the YAML team, however. For many years now they
1057claim YAML were a superset of JSON, even when proven otherwise.
1058
1059Even the author of this manpage was at some point accused of providing
1060"incorrect" information, despite the evidence presented (claims ranged
1061from "your documentation contains inaccurate and negative statements about
1062YAML" (the only negative comment is this footnote, and it didn't exist
1063back then; the question on which claims were inaccurate was never answered
1064etc.) to "the YAML spec is not up-to-date" (the *real* and supposedly
1065JSON-compatible spec is apparently not currently publicly available)
1066to actual requests to replace this section by *incorrect* information,
1067suppressing information about the real problem).
1068
1069So whenever you are told that YAML was a superset of JSON, first check
1070wether it is really true (it might be when you check it, but it certainly
1071was not true when this was written). I would much prefer if the YAML team
1072would spent their time on actually making JSON compatibility a truth
1073(JSON, after all, has a very small and simple specification) instead of
1074trying to lobby/force people into reporting untruths.
1075
1076=back
645 1077
646 1078
647=head2 SPEED 1079=head2 SPEED
648 1080
649It seems that JSON::XS is surprisingly fast, as shown in the following 1081It seems that JSON::XS is surprisingly fast, as shown in the following
662with pretty-printing and hashkey sorting enabled, JSON::XS/3 enables 1094with pretty-printing and hashkey sorting enabled, JSON::XS/3 enables
663shrink). Higher is better: 1095shrink). Higher is better:
664 1096
665 module | encode | decode | 1097 module | encode | decode |
666 -----------|------------|------------| 1098 -----------|------------|------------|
667 JSON | 7645.468 | 4208.613 | 1099 JSON 1.x | 4990.842 | 4088.813 |
668 JSON::DWIW | 40721.398 | 77101.176 | 1100 JSON::DWIW | 51653.990 | 71575.154 |
669 JSON::PC | 65948.176 | 78251.940 | 1101 JSON::PC | 65948.176 | 74631.744 |
670 JSON::Syck | 22844.793 | 26479.192 | 1102 JSON::PP | 8931.652 | 3817.168 |
1103 JSON::Syck | 24877.248 | 27776.848 |
671 JSON::XS | 388361.481 | 199728.762 | 1104 JSON::XS | 388361.481 | 227951.304 |
672 JSON::XS/2 | 218453.333 | 192399.266 | 1105 JSON::XS/2 | 227951.304 | 218453.333 |
673 JSON::XS/3 | 338250.323 | 192399.266 | 1106 JSON::XS/3 | 338250.323 | 218453.333 |
674 Storable | 15779.925 | 14169.946 | 1107 Storable | 16500.016 | 135300.129 |
675 -----------+------------+------------+ 1108 -----------+------------+------------+
676 1109
677That is, JSON::XS is about five times faster than JSON::DWIW on encoding, 1110That is, JSON::XS is about five times faster than JSON::DWIW on encoding,
678about three times faster on decoding, and over fourty times faster 1111about three times faster on decoding, and over forty times faster
679than JSON, even with pretty-printing and key sorting. It also compares 1112than JSON, even with pretty-printing and key sorting. It also compares
680favourably to Storable for small amounts of data. 1113favourably to Storable for small amounts of data.
681 1114
682Using a longer test string (roughly 18KB, generated from Yahoo! Locals 1115Using a longer test string (roughly 18KB, generated from Yahoo! Locals
683search API (http://nanoref.com/yahooapis/mgPdGg): 1116search API (http://nanoref.com/yahooapis/mgPdGg):
684 1117
685 module | encode | decode | 1118 module | encode | decode |
686 -----------|------------|------------| 1119 -----------|------------|------------|
687 JSON | 254.685 | 37.665 | 1120 JSON 1.x | 55.260 | 34.971 |
688 JSON::DWIW | 843.343 | 1049.731 | 1121 JSON::DWIW | 825.228 | 1082.513 |
689 JSON::PC | 3602.116 | 2307.352 | 1122 JSON::PC | 3571.444 | 2394.829 |
1123 JSON::PP | 210.987 | 32.574 |
690 JSON::Syck | 505.107 | 787.899 | 1124 JSON::Syck | 552.551 | 787.544 |
691 JSON::XS | 5747.196 | 3690.220 | 1125 JSON::XS | 5780.463 | 4854.519 |
692 JSON::XS/2 | 3968.121 | 3676.634 | 1126 JSON::XS/2 | 3869.998 | 4798.975 |
693 JSON::XS/3 | 6105.246 | 3662.508 | 1127 JSON::XS/3 | 5862.880 | 4798.975 |
694 Storable | 4417.337 | 5285.161 | 1128 Storable | 4445.002 | 5235.027 |
695 -----------+------------+------------+ 1129 -----------+------------+------------+
696 1130
697Again, JSON::XS leads by far (except for Storable which non-surprisingly 1131Again, JSON::XS leads by far (except for Storable which non-surprisingly
698decodes faster). 1132decodes faster).
699 1133
700On large strings containing lots of high unicode characters, some modules 1134On large strings containing lots of high Unicode characters, some modules
701(such as JSON::PC) seem to decode faster than JSON::XS, but the result 1135(such as JSON::PC) seem to decode faster than JSON::XS, but the result
702will be broken due to missing (or wrong) unicode handling. Others refuse 1136will be broken due to missing (or wrong) Unicode handling. Others refuse
703to decode or encode properly, so it was impossible to prepare a fair 1137to decode or encode properly, so it was impossible to prepare a fair
704comparison table for that case. 1138comparison table for that case.
705 1139
706 1140
707=head1 SECURITY CONSIDERATIONS 1141=head1 SECURITY CONSIDERATIONS
713any buffer overflows. Obviously, this module should ensure that and I am 1147any buffer overflows. Obviously, this module should ensure that and I am
714trying hard on making that true, but you never know. 1148trying hard on making that true, but you never know.
715 1149
716Second, you need to avoid resource-starving attacks. That means you should 1150Second, you need to avoid resource-starving attacks. That means you should
717limit the size of JSON texts you accept, or make sure then when your 1151limit the size of JSON texts you accept, or make sure then when your
718resources run out, thats just fine (e.g. by using a separate process that 1152resources run out, that's just fine (e.g. by using a separate process that
719can crash safely). The size of a JSON text in octets or characters is 1153can crash safely). The size of a JSON text in octets or characters is
720usually a good indication of the size of the resources required to decode 1154usually a good indication of the size of the resources required to decode
721it into a Perl structure. 1155it into a Perl structure. While JSON::XS can check the size of the JSON
1156text, it might be too late when you already have it in memory, so you
1157might want to check the size before you accept the string.
722 1158
723Third, JSON::XS recurses using the C stack when decoding objects and 1159Third, JSON::XS recurses using the C stack when decoding objects and
724arrays. The C stack is a limited resource: for instance, on my amd64 1160arrays. The C stack is a limited resource: for instance, on my amd64
725machine with 8MB of stack size I can decode around 180k nested arrays but 1161machine with 8MB of stack size I can decode around 180k nested arrays but
726only 14k nested JSON objects (due to perl itself recursing deeply on croak 1162only 14k nested JSON objects (due to perl itself recursing deeply on croak
727to free the temporary). If that is exceeded, the program crashes. to be 1163to free the temporary). If that is exceeded, the program crashes. To be
728conservative, the default nesting limit is set to 512. If your process 1164conservative, the default nesting limit is set to 512. If your process
729has a smaller stack, you should adjust this setting accordingly with the 1165has a smaller stack, you should adjust this setting accordingly with the
730C<max_depth> method. 1166C<max_depth> method.
731 1167
732And last but least, something else could bomb you that I forgot to think 1168And last but least, something else could bomb you that I forgot to think
733of. In that case, you get to keep the pieces. I am always open for hints, 1169of. In that case, you get to keep the pieces. I am always open for hints,
734though... 1170though...
735 1171
736If you are using JSON::XS to return packets to consumption 1172If you are using JSON::XS to return packets to consumption
737by javascript scripts in a browser you should have a look at 1173by JavaScript scripts in a browser you should have a look at
738L<http://jpsykes.com/47/practical-csrf-and-json-security> to see wether 1174L<http://jpsykes.com/47/practical-csrf-and-json-security> to see whether
739you are vulnerable to some common attack vectors (which really are browser 1175you are vulnerable to some common attack vectors (which really are browser
740design bugs, but it is still you who will have to deal with it, as major 1176design bugs, but it is still you who will have to deal with it, as major
741browser developers care only for features, not about doing security 1177browser developers care only for features, not about getting security
742right). 1178right).
1179
1180
1181=head1 THREADS
1182
1183This module is I<not> guaranteed to be thread safe and there are no
1184plans to change this until Perl gets thread support (as opposed to the
1185horribly slow so-called "threads" which are simply slow and bloated
1186process simulations - use fork, its I<much> faster, cheaper, better).
1187
1188(It might actually work, but you have been warned).
743 1189
744 1190
745=head1 BUGS 1191=head1 BUGS
746 1192
747While the goal of this module is to be correct, that unfortunately does 1193While the goal of this module is to be correct, that unfortunately does
748not mean its bug-free, only that I think its design is bug-free. It is 1194not mean its bug-free, only that I think its design is bug-free. It is
749still relatively early in its development. If you keep reporting bugs they 1195still relatively early in its development. If you keep reporting bugs they
750will be fixed swiftly, though. 1196will be fixed swiftly, though.
751 1197
1198Please refrain from using rt.cpan.org or any other bug reporting
1199service. I put the contact address into my modules for a reason.
1200
752=cut 1201=cut
753 1202
754our $true = do { bless \(my $dummy = 1), "JSON::XS::Boolean" }; 1203our $true = do { bless \(my $dummy = 1), "JSON::XS::Boolean" };
755our $false = do { bless \(my $dummy = 0), "JSON::XS::Boolean" }; 1204our $false = do { bless \(my $dummy = 0), "JSON::XS::Boolean" };
756 1205
757sub true() { $true } 1206sub true() { $true }
758sub false() { $false } 1207sub false() { $false }
759 1208
760sub is_bool($) { 1209sub is_bool($) {
761 UNIVERSAL::isa $_[0], "JSON::XS::Boolean" 1210 UNIVERSAL::isa $_[0], "JSON::XS::Boolean"
762 or UNIVERSAL::isa $_[0], "JSON::Literal" 1211# or UNIVERSAL::isa $_[0], "JSON::Literal"
763} 1212}
764 1213
765XSLoader::load "JSON::XS", $VERSION; 1214XSLoader::load "JSON::XS", $VERSION;
766 1215
767package JSON::XS::Boolean; 1216package JSON::XS::Boolean;

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