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Revision 1.51 by root, Mon Jul 2 01:12:27 2007 UTC vs.
Revision 1.94 by root, Tue Mar 25 07:46:15 2008 UTC

1=head1 NAME 1=head1 NAME
2 2
3=encoding utf-8
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 19
15 # OO-interface 20 # OO-interface
16 21
17 $coder = JSON::XS->new->ascii->pretty->allow_nonref; 22 $coder = JSON::XS->new->ascii->pretty->allow_nonref;
18 $pretty_printed_unencoded = $coder->encode ($perl_scalar); 23 $pretty_printed_unencoded = $coder->encode ($perl_scalar);
19 $perl_scalar = $coder->decode ($unicode_json_text); 24 $perl_scalar = $coder->decode ($unicode_json_text);
20 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
21=head1 DESCRIPTION 34=head1 DESCRIPTION
22 35
23This module converts Perl data structures to JSON and vice versa. Its 36This module converts Perl data structures to JSON and vice versa. Its
24primary 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
25I<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.
26 47
27As 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
28to 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
29modules, 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
30their maintainers are unresponsive, gone missing, or not listening to bug 51their maintainers are unresponsive, gone missing, or not listening to bug
37 58
38=head2 FEATURES 59=head2 FEATURES
39 60
40=over 4 61=over 4
41 62
42=item * correct unicode handling 63=item * correct Unicode handling
43 64
44This 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
45it does so. 66so, and even documents what "correct" means.
46 67
47=item * round-trip integrity 68=item * round-trip integrity
48 69
49When you serialise a perl data structure using only datatypes supported 70When you serialise a perl data structure using only datatypes supported
50by JSON, the deserialised data structure is identical on the Perl level. 71by JSON, the deserialised data structure is identical on the Perl level.
51(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
52like a number). 73like a number). There minor I<are> exceptions to this, read the MAPPING
74section below to learn about those.
53 75
54=item * strict checking of JSON correctness 76=item * strict checking of JSON correctness
55 77
56There is no guessing, no generating of illegal JSON texts by default, 78There is no guessing, no generating of illegal JSON texts by default,
57and 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
58feature). 80feature).
59 81
60=item * fast 82=item * fast
61 83
62Compared to other JSON modules, this module compares favourably in terms 84Compared to other JSON modules and other serialisers such as Storable,
63of speed, too. 85this module usually compares favourably in terms of speed, too.
64 86
65=item * simple to use 87=item * simple to use
66 88
67This 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
68interface. 90oriented interface interface.
69 91
70=item * reasonably versatile output formats 92=item * reasonably versatile output formats
71 93
72You can choose between the most compact guarenteed single-line format 94You can choose between the most compact guaranteed-single-line format
73possible (nice for simple line-based protocols), a pure-ascii format 95possible (nice for simple line-based protocols), a pure-ascii format
74(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
75unicode 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
76stuff). Or you can combine those features in whatever way you like. 98stuff). Or you can combine those features in whatever way you like.
77 99
78=back 100=back
79 101
80=cut 102=cut
81 103
82package JSON::XS; 104package JSON::XS;
83 105
84use strict; 106use strict;
85 107
86our $VERSION = '1.4'; 108our $VERSION = '2.1';
87our @ISA = qw(Exporter); 109our @ISA = qw(Exporter);
88 110
89our @EXPORT = qw(to_json from_json); 111our @EXPORT = qw(encode_json decode_json to_json from_json);
112
113sub to_json($) {
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}
90 122
91use Exporter; 123use Exporter;
92use XSLoader; 124use XSLoader;
93 125
94=head1 FUNCTIONAL INTERFACE 126=head1 FUNCTIONAL INTERFACE
95 127
96The following convinience methods are provided by this module. They are 128The following convenience methods are provided by this module. They are
97exported by default: 129exported by default:
98 130
99=over 4 131=over 4
100 132
101=item $json_text = to_json $perl_scalar 133=item $json_text = encode_json $perl_scalar
102 134
103Converts 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
104a 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.
105octets only). Croaks on error.
106 137
107This function call is functionally identical to: 138This function call is functionally identical to:
108 139
109 $json_text = JSON::XS->new->utf8->encode ($perl_scalar) 140 $json_text = JSON::XS->new->utf8->encode ($perl_scalar)
110 141
111except being faster. 142except being faster.
112 143
113=item $perl_scalar = from_json $json_text 144=item $perl_scalar = decode_json $json_text
114 145
115The 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
116parse 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
117scalar or reference. Croaks on error. 148reference. Croaks on error.
118 149
119This function call is functionally identical to: 150This function call is functionally identical to:
120 151
121 $perl_scalar = JSON::XS->new->utf8->decode ($json_text) 152 $perl_scalar = JSON::XS->new->utf8->decode ($json_text)
122 153
132Perl. 163Perl.
133 164
134=back 165=back
135 166
136 167
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
137=head1 OBJECT-ORIENTED INTERFACE 216=head1 OBJECT-ORIENTED INTERFACE
138 217
139The object oriented interface lets you configure your own encoding or 218The object oriented interface lets you configure your own encoding or
140decoding style, within the limits of supported formats. 219decoding style, within the limits of supported formats.
141 220
152 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]})
153 => {"a": [1, 2]} 232 => {"a": [1, 2]}
154 233
155=item $json = $json->ascii ([$enable]) 234=item $json = $json->ascii ([$enable])
156 235
236=item $enabled = $json->get_ascii
237
157If C<$enable> is true (or missing), then the C<encode> method will not 238If C<$enable> is true (or missing), then the C<encode> method will not
158generate characters outside the code range C<0..127> (which is ASCII). Any 239generate characters outside the code range C<0..127> (which is ASCII). Any
159unicode characters outside that range will be escaped using either a 240Unicode characters outside that range will be escaped using either a
160single \uXXXX (BMP characters) or a double \uHHHH\uLLLLL escape sequence, 241single \uXXXX (BMP characters) or a double \uHHHH\uLLLLL escape sequence,
161as per RFC4627. The resulting encoded JSON text can be treated as a native 242as per RFC4627. The resulting encoded JSON text can be treated as a native
162unicode string, an ascii-encoded, latin1-encoded or UTF-8 encoded string, 243Unicode string, an ascii-encoded, latin1-encoded or UTF-8 encoded string,
163or any other superset of ASCII. 244or any other superset of ASCII.
164 245
165If C<$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
166characters unless required by the JSON syntax or other flags. This results 247characters unless required by the JSON syntax or other flags. This results
167in a faster and more compact format. 248in a faster and more compact format.
168 249
250See also the section I<ENCODING/CODESET FLAG NOTES> later in this
251document.
252
169The main use for this flag is to produce JSON texts that can be 253The main use for this flag is to produce JSON texts that can be
170transmitted over a 7-bit channel, as the encoded JSON texts will not 254transmitted over a 7-bit channel, as the encoded JSON texts will not
171contain any 8 bit characters. 255contain any 8 bit characters.
172 256
173 JSON::XS->new->ascii (1)->encode ([chr 0x10401]) 257 JSON::XS->new->ascii (1)->encode ([chr 0x10401])
174 => ["\ud801\udc01"] 258 => ["\ud801\udc01"]
175 259
176=item $json = $json->latin1 ([$enable]) 260=item $json = $json->latin1 ([$enable])
177 261
262=item $enabled = $json->get_latin1
263
178If C<$enable> is true (or missing), then the C<encode> method will encode 264If C<$enable> is true (or missing), then the C<encode> method will encode
179the resulting JSON text as latin1 (or iso-8859-1), escaping any characters 265the resulting JSON text as latin1 (or iso-8859-1), escaping any characters
180outside the code range C<0..255>. The resulting string can be treated as a 266outside the code range C<0..255>. The resulting string can be treated as a
181latin1-encoded JSON text or a native unicode string. The C<decode> method 267latin1-encoded JSON text or a native Unicode string. The C<decode> method
182will not be affected in any way by this flag, as C<decode> by default 268will not be affected in any way by this flag, as C<decode> by default
183expects unicode, which is a strict superset of latin1. 269expects Unicode, which is a strict superset of latin1.
184 270
185If C<$enable> is false, then the C<encode> method will not escape Unicode 271If C<$enable> is false, then the C<encode> method will not escape Unicode
186characters unless required by the JSON syntax or other flags. 272characters unless required by the JSON syntax or other flags.
273
274See also the section I<ENCODING/CODESET FLAG NOTES> later in this
275document.
187 276
188The main use for this flag is efficiently encoding binary data as JSON 277The main use for this flag is efficiently encoding binary data as JSON
189text, as most octets will not be escaped, resulting in a smaller encoded 278text, as most octets will not be escaped, resulting in a smaller encoded
190size. The disadvantage is that the resulting JSON text is encoded 279size. The disadvantage is that the resulting JSON text is encoded
191in latin1 (and must correctly be treated as such when storing and 280in latin1 (and must correctly be treated as such when storing and
192transfering), a rare encoding for JSON. It is therefore most useful when 281transferring), a rare encoding for JSON. It is therefore most useful when
193you want to store data structures known to contain binary data efficiently 282you want to store data structures known to contain binary data efficiently
194in files or databases, not when talking to other JSON encoders/decoders. 283in files or databases, not when talking to other JSON encoders/decoders.
195 284
196 JSON::XS->new->latin1->encode (["\x{89}\x{abc}"] 285 JSON::XS->new->latin1->encode (["\x{89}\x{abc}"]
197 => ["\x{89}\\u0abc"] # (perl syntax, U+abc escaped, U+89 not) 286 => ["\x{89}\\u0abc"] # (perl syntax, U+abc escaped, U+89 not)
198 287
199=item $json = $json->utf8 ([$enable]) 288=item $json = $json->utf8 ([$enable])
289
290=item $enabled = $json->get_utf8
200 291
201If C<$enable> is true (or missing), then the C<encode> method will encode 292If C<$enable> is true (or missing), then the C<encode> method will encode
202the JSON result into UTF-8, as required by many protocols, while the 293the JSON result into UTF-8, as required by many protocols, while the
203C<decode> method expects to be handled an UTF-8-encoded string. Please 294C<decode> method expects to be handled an UTF-8-encoded string. Please
204note that UTF-8-encoded strings do not contain any characters outside the 295note that UTF-8-encoded strings do not contain any characters outside the
205range C<0..255>, they are thus useful for bytewise/binary I/O. In future 296range C<0..255>, they are thus useful for bytewise/binary I/O. In future
206versions, enabling this option might enable autodetection of the UTF-16 297versions, enabling this option might enable autodetection of the UTF-16
207and UTF-32 encoding families, as described in RFC4627. 298and UTF-32 encoding families, as described in RFC4627.
208 299
209If C<$enable> is false, then the C<encode> method will return the JSON 300If C<$enable> is false, then the C<encode> method will return the JSON
210string as a (non-encoded) unicode string, while C<decode> expects thus a 301string as a (non-encoded) Unicode string, while C<decode> expects thus a
211unicode string. Any decoding or encoding (e.g. to UTF-8 or UTF-16) needs 302Unicode string. Any decoding or encoding (e.g. to UTF-8 or UTF-16) needs
212to be done yourself, e.g. using the Encode module. 303to be done yourself, e.g. using the Encode module.
304
305See also the section I<ENCODING/CODESET FLAG NOTES> later in this
306document.
213 307
214Example, output UTF-16BE-encoded JSON: 308Example, output UTF-16BE-encoded JSON:
215 309
216 use Encode; 310 use Encode;
217 $jsontext = encode "UTF-16BE", JSON::XS->new->encode ($object); 311 $jsontext = encode "UTF-16BE", JSON::XS->new->encode ($object);
238 ] 332 ]
239 } 333 }
240 334
241=item $json = $json->indent ([$enable]) 335=item $json = $json->indent ([$enable])
242 336
337=item $enabled = $json->get_indent
338
243If C<$enable> is true (or missing), then the C<encode> method will use a multiline 339If C<$enable> is true (or missing), then the C<encode> method will use a multiline
244format as output, putting every array member or object/hash key-value pair 340format as output, putting every array member or object/hash key-value pair
245into its own line, identing them properly. 341into its own line, indenting them properly.
246 342
247If C<$enable> is false, no newlines or indenting will be produced, and the 343If C<$enable> is false, no newlines or indenting will be produced, and the
248resulting JSON text is guarenteed not to contain any C<newlines>. 344resulting JSON text is guaranteed not to contain any C<newlines>.
249 345
250This setting has no effect when decoding JSON texts. 346This setting has no effect when decoding JSON texts.
251 347
252=item $json = $json->space_before ([$enable]) 348=item $json = $json->space_before ([$enable])
349
350=item $enabled = $json->get_space_before
253 351
254If C<$enable> is true (or missing), then the C<encode> method will add an extra 352If C<$enable> is true (or missing), then the C<encode> method will add an extra
255optional space before the C<:> separating keys from values in JSON objects. 353optional space before the C<:> separating keys from values in JSON objects.
256 354
257If C<$enable> is false, then the C<encode> method will not add any extra 355If C<$enable> is false, then the C<encode> method will not add any extra
263Example, space_before enabled, space_after and indent disabled: 361Example, space_before enabled, space_after and indent disabled:
264 362
265 {"key" :"value"} 363 {"key" :"value"}
266 364
267=item $json = $json->space_after ([$enable]) 365=item $json = $json->space_after ([$enable])
366
367=item $enabled = $json->get_space_after
268 368
269If C<$enable> is true (or missing), then the C<encode> method will add an extra 369If C<$enable> is true (or missing), then the C<encode> method will add an extra
270optional space after the C<:> separating keys from values in JSON objects 370optional space after the C<:> separating keys from values in JSON objects
271and extra whitespace after the C<,> separating key-value pairs and array 371and extra whitespace after the C<,> separating key-value pairs and array
272members. 372members.
278 378
279Example, space_before and indent disabled, space_after enabled: 379Example, space_before and indent disabled, space_after enabled:
280 380
281 {"key": "value"} 381 {"key": "value"}
282 382
383=item $json = $json->relaxed ([$enable])
384
385=item $enabled = $json->get_relaxed
386
387If C<$enable> is true (or missing), then C<decode> will accept some
388extensions to normal JSON syntax (see below). C<encode> will not be
389affected in anyway. I<Be aware that this option makes you accept invalid
390JSON texts as if they were valid!>. I suggest only to use this option to
391parse application-specific files written by humans (configuration files,
392resource files etc.)
393
394If C<$enable> is false (the default), then C<decode> will only accept
395valid JSON texts.
396
397Currently accepted extensions are:
398
399=over 4
400
401=item * list items can have an end-comma
402
403JSON I<separates> array elements and key-value pairs with commas. This
404can be annoying if you write JSON texts manually and want to be able to
405quickly append elements, so this extension accepts comma at the end of
406such items not just between them:
407
408 [
409 1,
410 2, <- this comma not normally allowed
411 ]
412 {
413 "k1": "v1",
414 "k2": "v2", <- this comma not normally allowed
415 }
416
417=item * shell-style '#'-comments
418
419Whenever JSON allows whitespace, shell-style comments are additionally
420allowed. They are terminated by the first carriage-return or line-feed
421character, after which more white-space and comments are allowed.
422
423 [
424 1, # this comment not allowed in JSON
425 # neither this one...
426 ]
427
428=back
429
283=item $json = $json->canonical ([$enable]) 430=item $json = $json->canonical ([$enable])
431
432=item $enabled = $json->get_canonical
284 433
285If C<$enable> is true (or missing), then the C<encode> method will output JSON objects 434If C<$enable> is true (or missing), then the C<encode> method will output JSON objects
286by sorting their keys. This is adding a comparatively high overhead. 435by sorting their keys. This is adding a comparatively high overhead.
287 436
288If C<$enable> is false, then the C<encode> method will output key-value 437If C<$enable> is false, then the C<encode> method will output key-value
289pairs in the order Perl stores them (which will likely change between runs 438pairs in the order Perl stores them (which will likely change between runs
290of the same script). 439of the same script).
291 440
292This option is useful if you want the same data structure to be encoded as 441This option is useful if you want the same data structure to be encoded as
293the same JSON text (given the same overall settings). If it is disabled, 442the same JSON text (given the same overall settings). If it is disabled,
294the same hash migh be encoded differently even if contains the same data, 443the same hash might be encoded differently even if contains the same data,
295as key-value pairs have no inherent ordering in Perl. 444as key-value pairs have no inherent ordering in Perl.
296 445
297This setting has no effect when decoding JSON texts. 446This setting has no effect when decoding JSON texts.
298 447
299=item $json = $json->allow_nonref ([$enable]) 448=item $json = $json->allow_nonref ([$enable])
449
450=item $enabled = $json->get_allow_nonref
300 451
301If C<$enable> is true (or missing), then the C<encode> method can convert a 452If C<$enable> is true (or missing), then the C<encode> method can convert a
302non-reference into its corresponding string, number or null JSON value, 453non-reference into its corresponding string, number or null JSON value,
303which is an extension to RFC4627. Likewise, C<decode> will accept those JSON 454which is an extension to RFC4627. Likewise, C<decode> will accept those JSON
304values instead of croaking. 455values instead of croaking.
314 JSON::XS->new->allow_nonref->encode ("Hello, World!") 465 JSON::XS->new->allow_nonref->encode ("Hello, World!")
315 => "Hello, World!" 466 => "Hello, World!"
316 467
317=item $json = $json->allow_blessed ([$enable]) 468=item $json = $json->allow_blessed ([$enable])
318 469
470=item $enabled = $json->get_allow_blessed
471
319If C<$enable> is true (or missing), then the C<encode> method will not 472If C<$enable> is true (or missing), then the C<encode> method will not
320barf when it encounters a blessed reference. Instead, the value of the 473barf when it encounters a blessed reference. Instead, the value of the
321B<convert_blessed> option will decide wether C<null> (C<convert_blessed> 474B<convert_blessed> option will decide whether C<null> (C<convert_blessed>
322disabled or no C<to_json> method found) or a representation of the 475disabled or no C<TO_JSON> method found) or a representation of the
323object (C<convert_blessed> enabled and C<to_json> method found) is being 476object (C<convert_blessed> enabled and C<TO_JSON> method found) is being
324encoded. Has no effect on C<decode>. 477encoded. Has no effect on C<decode>.
325 478
326If C<$enable> is false (the default), then C<encode> will throw an 479If C<$enable> is false (the default), then C<encode> will throw an
327exception when it encounters a blessed object. 480exception when it encounters a blessed object.
328 481
329=item $json = $json->convert_blessed ([$enable]) 482=item $json = $json->convert_blessed ([$enable])
483
484=item $enabled = $json->get_convert_blessed
330 485
331If C<$enable> is true (or missing), then C<encode>, upon encountering a 486If C<$enable> is true (or missing), then C<encode>, upon encountering a
332blessed object, will check for the availability of the C<TO_JSON> method 487blessed object, will check for the availability of the C<TO_JSON> method
333on the object's class. If found, it will be called in scalar context 488on the object's class. If found, it will be called in scalar context
334and the resulting scalar will be encoded instead of the object. If no 489and the resulting scalar will be encoded instead of the object. If no
338The C<TO_JSON> method may safely call die if it wants. If C<TO_JSON> 493The C<TO_JSON> method may safely call die if it wants. If C<TO_JSON>
339returns other blessed objects, those will be handled in the same 494returns other blessed objects, those will be handled in the same
340way. C<TO_JSON> must take care of not causing an endless recursion cycle 495way. C<TO_JSON> must take care of not causing an endless recursion cycle
341(== crash) in this case. The name of C<TO_JSON> was chosen because other 496(== crash) in this case. The name of C<TO_JSON> was chosen because other
342methods called by the Perl core (== not by the user of the object) are 497methods called by the Perl core (== not by the user of the object) are
343usually in upper case letters and to avoid collisions with the C<to_json> 498usually in upper case letters and to avoid collisions with any C<to_json>
344function. 499function or method.
345 500
346This setting does not yet influence C<decode> in any way, but in the 501This setting does not yet influence C<decode> in any way, but in the
347future, global hooks might get installed that influence C<decode> and are 502future, global hooks might get installed that influence C<decode> and are
348enabled by this setting. 503enabled by this setting.
349 504
350If C<$enable> is false, then the C<allow_blessed> setting will decide what 505If C<$enable> is false, then the C<allow_blessed> setting will decide what
351to do when a blessed object is found. 506to do when a blessed object is found.
352 507
353=item $json = $json->filter_json_object ([$coderef]) 508=item $json = $json->filter_json_object ([$coderef->($hashref)])
354 509
355When C<$coderef> is specified, it will be called from C<decode> each 510When C<$coderef> is specified, it will be called from C<decode> each
356time it decodes a JSON object. The only argument is a reference to the 511time it decodes a JSON object. The only argument is a reference to the
357newly-created hash. If the code references returns a single scalar (which 512newly-created hash. If the code references returns a single scalar (which
358need not be a reference), this value (i.e. a copy of that scalar to avoid 513need not be a reference), this value (i.e. a copy of that scalar to avoid
359aliasing) is inserted into the deserialised data structure. If it returns 514aliasing) is inserted into the deserialised data structure. If it returns
360an empty list (NOTE: I<not> C<undef>, which is a valid scalar), the 515an empty list (NOTE: I<not> C<undef>, which is a valid scalar), the
361original deserialised hash will be inserted. This setting can slow down 516original deserialised hash will be inserted. This setting can slow down
362decoding considerably. 517decoding considerably.
363 518
364When C<$coderef> is omitted or undefined, C<decode> will not change the 519When C<$coderef> is omitted or undefined, any existing callback will
365deserialised hash in any way. This is maximally fast. 520be removed and C<decode> will not change the deserialised hash in any
521way.
366 522
367Example, convert all JSON objects into the integer 5: 523Example, convert all JSON objects into the integer 5:
368 524
369 my $js = JSON::XS->new->filter_json_object (sub { 5 }); 525 my $js = JSON::XS->new->filter_json_object (sub { 5 });
370 # returns [5] 526 # returns [5]
371 $js->decode ('[{}]') 527 $js->decode ('[{}]')
372 # throw an exception because allow_nonref is not enabled: 528 # throw an exception because allow_nonref is not enabled
529 # so a lone 5 is not allowed.
373 $js->decode ('{"a":1, "b":2}'); 530 $js->decode ('{"a":1, "b":2}');
374 531
375=item $json = $json->filter_json_single_key_object ([$coderef]) 532=item $json = $json->filter_json_single_key_object ($key [=> $coderef->($value)])
376 533
377Works like C<filter_json_object>, but is only called for JSON objects 534Works remotely similar to C<filter_json_object>, but is only called for
378having only a single key. 535JSON objects having a single key named C<$key>.
379 536
380This C<$coderef> is called before the one specified via 537This C<$coderef> is called before the one specified via
381C<filter_json_object>, if any. If it returns something, that will be 538C<filter_json_object>, if any. It gets passed the single value in the JSON
382inserted into the data structure. If it returns nothing, the callback 539object. If it returns a single value, it will be inserted into the data
383from C<filter_json_object> will be called next. If you want to force 540structure. If it returns nothing (not even C<undef> but the empty list),
384insertion of single-key objects even in the presence of a mutating 541the callback from C<filter_json_object> will be called next, as if no
385C<filter_json_object> callback, simply return the passed hash. 542single-key callback were specified.
543
544If C<$coderef> is omitted or undefined, the corresponding callback will be
545disabled. There can only ever be one callback for a given key.
386 546
387As this callback gets called less often then the C<filter_json_object> 547As this callback gets called less often then the C<filter_json_object>
388one, decoding speed will not usually suffer as much. Therefore, single-key 548one, decoding speed will not usually suffer as much. Therefore, single-key
389objects make excellent targets to serialise Perl objects into, especially 549objects make excellent targets to serialise Perl objects into, especially
390as single-key JSON objects are as close to the type-tagged value concept 550as single-key JSON objects are as close to the type-tagged value concept
391as JSON gets (its basically an ID/VALUE tuple). Of course, JSON does not 551as JSON gets (it's basically an ID/VALUE tuple). Of course, JSON does not
392support this in any way, so you need to make sure your data never looks 552support this in any way, so you need to make sure your data never looks
393like a serialised Perl hash. 553like a serialised Perl hash.
394 554
395Typical names for the single object key are C<__class_whatever__>, or 555Typical names for the single object key are C<__class_whatever__>, or
396C<$__dollars_are_rarely_used__$> or C<}ugly_brace_placement>, or even 556C<$__dollars_are_rarely_used__$> or C<}ugly_brace_placement>, or even
401into the corresponding C<< $WIDGET{<id>} >> object: 561into the corresponding C<< $WIDGET{<id>} >> object:
402 562
403 # return whatever is in $WIDGET{5}: 563 # return whatever is in $WIDGET{5}:
404 JSON::XS 564 JSON::XS
405 ->new 565 ->new
406 ->filter_json_single_key_object (sub { 566 ->filter_json_single_key_object (__widget__ => sub {
407 exists $_[0]{__widget__}
408 ? $WIDGET{ $_[0]{__widget__} } 567 $WIDGET{ $_[0] }
409 : ()
410 }) 568 })
411 ->decode ('{"__widget__": 5') 569 ->decode ('{"__widget__": 5')
412 570
413 # this can be used with a TO_JSON method in some "widget" class 571 # this can be used with a TO_JSON method in some "widget" class
414 # for serialisation to json: 572 # for serialisation to json:
422 580
423 { __widget__ => $self->{id} } 581 { __widget__ => $self->{id} }
424 } 582 }
425 583
426=item $json = $json->shrink ([$enable]) 584=item $json = $json->shrink ([$enable])
585
586=item $enabled = $json->get_shrink
427 587
428Perl usually over-allocates memory a bit when allocating space for 588Perl usually over-allocates memory a bit when allocating space for
429strings. This flag optionally resizes strings generated by either 589strings. This flag optionally resizes strings generated by either
430C<encode> or C<decode> to their minimum size possible. This can save 590C<encode> or C<decode> to their minimum size possible. This can save
431memory when your JSON texts are either very very long or you have many 591memory when your JSON texts are either very very long or you have many
449strings that look like integers or floats into integers or floats 609strings that look like integers or floats into integers or floats
450internally (there is no difference on the Perl level), saving space. 610internally (there is no difference on the Perl level), saving space.
451 611
452=item $json = $json->max_depth ([$maximum_nesting_depth]) 612=item $json = $json->max_depth ([$maximum_nesting_depth])
453 613
614=item $max_depth = $json->get_max_depth
615
454Sets the maximum nesting level (default C<512>) accepted while encoding 616Sets the maximum nesting level (default C<512>) accepted while encoding
455or decoding. If the JSON text or Perl data structure has an equal or 617or decoding. If the JSON text or Perl data structure has an equal or
456higher nesting level then this limit, then the encoder and decoder will 618higher nesting level then this limit, then the encoder and decoder will
457stop and croak at that point. 619stop and croak at that point.
458 620
469used, which is rarely useful. 631used, which is rarely useful.
470 632
471See SECURITY CONSIDERATIONS, below, for more info on why this is useful. 633See SECURITY CONSIDERATIONS, below, for more info on why this is useful.
472 634
473=item $json = $json->max_size ([$maximum_string_size]) 635=item $json = $json->max_size ([$maximum_string_size])
636
637=item $max_size = $json->get_max_size
474 638
475Set the maximum length a JSON text may have (in bytes) where decoding is 639Set the maximum length a JSON text may have (in bytes) where decoding is
476being attempted. The default is C<0>, meaning no limit. When C<decode> 640being attempted. The default is C<0>, meaning no limit. When C<decode>
477is called on a string longer then this number of characters it will not 641is called on a string longer then this number of characters it will not
478attempt to decode the string but throw an exception. This setting has no 642attempt to decode the string but throw an exception. This setting has no
517 => ([], 3) 681 => ([], 3)
518 682
519=back 683=back
520 684
521 685
686=head1 INCREMENTAL PARSING
687
688[This section is still EXPERIMENTAL]
689
690In some cases, there is the need for incremental parsing of JSON
691texts. While this module always has to keep both JSON text and resulting
692Perl data structure in memory at one time, it does allow you to parse a
693JSON stream incrementally. It does so by accumulating text until it has
694a full JSON object, which it then can decode. This process is similar to
695using C<decode_prefix> to see if a full JSON object is available, but is
696much more efficient (JSON::XS will only attempt to parse the JSON text
697once it is sure it has enough text to get a decisive result, using a very
698simple but truly incremental parser).
699
700The following two methods deal with this.
701
702=over 4
703
704=item [void, scalar or list context] = $json->incr_parse ([$string])
705
706This is the central parsing function. It can both append new text and
707extract objects from the stream accumulated so far (both of these
708functions are optional).
709
710If C<$string> is given, then this string is appended to the already
711existing JSON fragment stored in the C<$json> object.
712
713After that, if the function is called in void context, it will simply
714return without doing anything further. This can be used to add more text
715in as many chunks as you want.
716
717If the method is called in scalar context, then it will try to extract
718exactly I<one> JSON object. If that is successful, it will return this
719object, otherwise it will return C<undef>. This is the most common way of
720using the method.
721
722And finally, in list context, it will try to extract as many objects
723from the stream as it can find and return them, or the empty list
724otherwise. For this to work, there must be no separators between the JSON
725objects or arrays, instead they must be concatenated back-to-back.
726
727=item $lvalue_string = $json->incr_text
728
729This method returns the currently stored JSON fragment as an lvalue, that
730is, you can manipulate it. This I<only> works when a preceding call to
731C<incr_parse> in I<scalar context> successfully returned an object. Under
732all other circumstances you must not call this function (I mean it.
733although in simple tests it might actually work, it I<will> fail under
734real world conditions). As a special exception, you can also call this
735method before having parsed anything.
736
737This function is useful in two cases: a) finding the trailing text after a
738JSON object or b) parsing multiple JSON objects separated by non-JSON text
739(such as commas).
740
741=back
742
743=head2 LIMITATIONS
744
745All options that affect decoding are supported, except
746C<allow_nonref>. The reason for this is that it cannot be made to
747work sensibly: JSON objects and arrays are self-delimited, i.e. you can concatenate
748them back to back and still decode them perfectly. This does not hold true
749for JSON numbers, however.
750
751For example, is the string C<1> a single JSON number, or is it simply the
752start of C<12>? Or is C<12> a single JSON number, or the concatenation
753of C<1> and C<2>? In neither case you can tell, and this is why JSON::XS
754takes the conservative route and disallows this case.
755
756=head2 EXAMPLES
757
758Some examples will make all this clearer. First, a simple example that
759works similarly to C<decode_prefix>: We want to decode the JSON object at
760the start of a string and identify the portion after the JSON object:
761
762 my $text = "[1,2,3] hello";
763
764 my $json = new JSON::XS;
765
766 my $obj = $json->incr_parse ($text)
767 or die "expected JSON object or array at beginning of string";
768
769 my $tail = $json->incr_text;
770 # $tail now contains " hello"
771
772Easy, isn't it?
773
774Now for a more complicated example: Imagine a hypothetical protocol where
775you read some requests from a TCP stream, and each request is a JSON
776array, without any separation between them (in fact, it is often useful to
777use newlines as "separators", as these get interpreted as whitespace at
778the start of the JSON text, which makes it possible to test said protocol
779with C<telnet>...).
780
781Here is how you'd do it (it is trivial to write this in an event-based
782manner):
783
784 my $json = new JSON::XS;
785
786 # read some data from the socket
787 while (sysread $socket, my $buf, 4096) {
788
789 # split and decode as many requests as possible
790 for my $request ($json->incr_parse ($buf)) {
791 # act on the $request
792 }
793 }
794
795Another complicated example: Assume you have a string with JSON objects
796or arrays, all separated by (optional) comma characters (e.g. C<[1],[2],
797[3]>). To parse them, we have to skip the commas between the JSON texts,
798and here is where the lvalue-ness of C<incr_text> comes in useful:
799
800 my $text = "[1],[2], [3]";
801 my $json = new JSON::XS;
802
803 # void context, so no parsing done
804 $json->incr_parse ($text);
805
806 # now extract as many objects as possible. note the
807 # use of scalar context so incr_text can be called.
808 while (my $obj = $json->incr_parse) {
809 # do something with $obj
810
811 # now skip the optional comma
812 $json->incr_text =~ s/^ \s* , //x;
813 }
814
815Now lets go for a very complex example: Assume that you have a gigantic
816JSON array-of-objects, many gigabytes in size, and you want to parse it,
817but you cannot load it into memory fully (this has actually happened in
818the real world :).
819
820Well, you lost, you have to implement your own JSON parser. But JSON::XS
821can still help you: You implement a (very simple) array parser and let
822JSON decode the array elements, which are all full JSON objects on their
823own (this wouldn't work if the array elements could be JSON numbers, for
824example):
825
826 my $json = new JSON::XS;
827
828 # open the monster
829 open my $fh, "<bigfile.json"
830 or die "bigfile: $!";
831
832 # first parse the initial "["
833 for (;;) {
834 sysread $fh, my $buf, 65536
835 or die "read error: $!";
836 $json->incr_parse ($buf); # void context, so no parsing
837
838 # Exit the loop once we found and removed(!) the initial "[".
839 # In essence, we are (ab-)using the $json object as a simple scalar
840 # we append data to.
841 last if $json->incr_text =~ s/^ \s* \[ //x;
842 }
843
844 # now we have the skipped the initial "[", so continue
845 # parsing all the elements.
846 for (;;) {
847 # in this loop we read data until we got a single JSON object
848 for (;;) {
849 if (my $obj = $json->incr_parse) {
850 # do something with $obj
851 last;
852 }
853
854 # add more data
855 sysread $fh, my $buf, 65536
856 or die "read error: $!";
857 $json->incr_parse ($buf); # void context, so no parsing
858 }
859
860 # in this loop we read data until we either found and parsed the
861 # separating "," between elements, or the final "]"
862 for (;;) {
863 # first skip whitespace
864 $json->incr_text =~ s/^\s*//;
865
866 # if we find "]", we are done
867 if ($json->incr_text =~ s/^\]//) {
868 print "finished.\n";
869 exit;
870 }
871
872 # if we find ",", we can continue with the next element
873 if ($json->incr_text =~ s/^,//) {
874 last;
875 }
876
877 # if we find anything else, we have a parse error!
878 if (length $json->incr_text) {
879 die "parse error near ", $json->incr_text;
880 }
881
882 # else add more data
883 sysread $fh, my $buf, 65536
884 or die "read error: $!";
885 $json->incr_parse ($buf); # void context, so no parsing
886 }
887
888This is a complex example, but most of the complexity comes from the fact
889that we are trying to be correct (bear with me if I am wrong, I never ran
890the above example :).
891
892
893
522=head1 MAPPING 894=head1 MAPPING
523 895
524This section describes how JSON::XS maps Perl values to JSON values and 896This section describes how JSON::XS maps Perl values to JSON values and
525vice versa. These mappings are designed to "do the right thing" in most 897vice versa. These mappings are designed to "do the right thing" in most
526circumstances automatically, preserving round-tripping characteristics 898circumstances automatically, preserving round-tripping characteristics
527(what you put in comes out as something equivalent). 899(what you put in comes out as something equivalent).
528 900
529For the more enlightened: note that in the following descriptions, 901For the more enlightened: note that in the following descriptions,
530lowercase I<perl> refers to the Perl interpreter, while uppcercase I<Perl> 902lowercase I<perl> refers to the Perl interpreter, while uppercase I<Perl>
531refers to the abstract Perl language itself. 903refers to the abstract Perl language itself.
532 904
533 905
534=head2 JSON -> PERL 906=head2 JSON -> PERL
535 907
536=over 4 908=over 4
537 909
538=item object 910=item object
539 911
540A JSON object becomes a reference to a hash in Perl. No ordering of object 912A JSON object becomes a reference to a hash in Perl. No ordering of object
541keys is preserved (JSON does not preserver object key ordering itself). 913keys is preserved (JSON does not preserve object key ordering itself).
542 914
543=item array 915=item array
544 916
545A JSON array becomes a reference to an array in Perl. 917A JSON array becomes a reference to an array in Perl.
546 918
550are represented by the same codepoints in the Perl string, so no manual 922are represented by the same codepoints in the Perl string, so no manual
551decoding is necessary. 923decoding is necessary.
552 924
553=item number 925=item number
554 926
555A JSON number becomes either an integer or numeric (floating point) 927A JSON number becomes either an integer, numeric (floating point) or
556scalar in perl, depending on its range and any fractional parts. On the 928string scalar in perl, depending on its range and any fractional parts. On
557Perl level, there is no difference between those as Perl handles all the 929the Perl level, there is no difference between those as Perl handles all
558conversion details, but an integer may take slightly less memory and might 930the conversion details, but an integer may take slightly less memory and
559represent more values exactly than (floating point) numbers. 931might represent more values exactly than floating point numbers.
932
933If the number consists of digits only, JSON::XS will try to represent
934it as an integer value. If that fails, it will try to represent it as
935a numeric (floating point) value if that is possible without loss of
936precision. Otherwise it will preserve the number as a string value (in
937which case you lose roundtripping ability, as the JSON number will be
938re-encoded toa JSON string).
939
940Numbers containing a fractional or exponential part will always be
941represented as numeric (floating point) values, possibly at a loss of
942precision (in which case you might lose perfect roundtripping ability, but
943the JSON number will still be re-encoded as a JSON number).
560 944
561=item true, false 945=item true, false
562 946
563These JSON atoms become C<JSON::XS::true> and C<JSON::XS::false>, 947These JSON atoms become C<JSON::XS::true> and C<JSON::XS::false>,
564respectively. They are overloaded to act almost exactly like the numbers 948respectively. They are overloaded to act almost exactly like the numbers
565C<1> and C<0>. You can check wether a scalar is a JSON boolean by using 949C<1> and C<0>. You can check whether a scalar is a JSON boolean by using
566the C<JSON::XS::is_bool> function. 950the C<JSON::XS::is_bool> function.
567 951
568=item null 952=item null
569 953
570A JSON null atom becomes C<undef> in Perl. 954A JSON null atom becomes C<undef> in Perl.
601Other unblessed references are generally not allowed and will cause an 985Other unblessed references are generally not allowed and will cause an
602exception to be thrown, except for references to the integers C<0> and 986exception to be thrown, except for references to the integers C<0> and
603C<1>, which get turned into C<false> and C<true> atoms in JSON. You can 987C<1>, which get turned into C<false> and C<true> atoms in JSON. You can
604also use C<JSON::XS::false> and C<JSON::XS::true> to improve readability. 988also use C<JSON::XS::false> and C<JSON::XS::true> to improve readability.
605 989
606 to_json [\0,JSON::XS::true] # yields [false,true] 990 encode_json [\0,JSON::XS::true] # yields [false,true]
607 991
608=item JSON::XS::true, JSON::XS::false 992=item JSON::XS::true, JSON::XS::false
609 993
610These special values become JSON true and JSON false values, 994These special values become JSON true and JSON false values,
611respectively. You cna alos use C<\1> and C<\0> directly if you want. 995respectively. You can also use C<\1> and C<\0> directly if you want.
612 996
613=item blessed objects 997=item blessed objects
614 998
615Blessed objects are not allowed. JSON::XS currently tries to encode their 999Blessed objects are not directly representable in JSON. See the
616underlying representation (hash- or arrayref), but this behaviour might 1000C<allow_blessed> and C<convert_blessed> methods on various options on
617change in future versions. 1001how to deal with this: basically, you can choose between throwing an
1002exception, encoding the reference as if it weren't blessed, or provide
1003your own serialiser method.
618 1004
619=item simple scalars 1005=item simple scalars
620 1006
621Simple Perl scalars (any scalar that is not a reference) are the most 1007Simple Perl scalars (any scalar that is not a reference) are the most
622difficult objects to encode: JSON::XS will encode undefined scalars as 1008difficult objects to encode: JSON::XS will encode undefined scalars as
623JSON null value, scalars that have last been used in a string context 1009JSON C<null> values, scalars that have last been used in a string context
624before encoding as JSON strings and anything else as number value: 1010before encoding as JSON strings, and anything else as number value:
625 1011
626 # dump as number 1012 # dump as number
627 to_json [2] # yields [2] 1013 encode_json [2] # yields [2]
628 to_json [-3.0e17] # yields [-3e+17] 1014 encode_json [-3.0e17] # yields [-3e+17]
629 my $value = 5; to_json [$value] # yields [5] 1015 my $value = 5; encode_json [$value] # yields [5]
630 1016
631 # used as string, so dump as string 1017 # used as string, so dump as string
632 print $value; 1018 print $value;
633 to_json [$value] # yields ["5"] 1019 encode_json [$value] # yields ["5"]
634 1020
635 # undef becomes null 1021 # undef becomes null
636 to_json [undef] # yields [null] 1022 encode_json [undef] # yields [null]
637 1023
638You can force the type to be a string by stringifying it: 1024You can force the type to be a JSON string by stringifying it:
639 1025
640 my $x = 3.1; # some variable containing a number 1026 my $x = 3.1; # some variable containing a number
641 "$x"; # stringified 1027 "$x"; # stringified
642 $x .= ""; # another, more awkward way to stringify 1028 $x .= ""; # another, more awkward way to stringify
643 print $x; # perl does it for you, too, quite often 1029 print $x; # perl does it for you, too, quite often
644 1030
645You can force the type to be a number by numifying it: 1031You can force the type to be a JSON number by numifying it:
646 1032
647 my $x = "3"; # some variable containing a string 1033 my $x = "3"; # some variable containing a string
648 $x += 0; # numify it, ensuring it will be dumped as a number 1034 $x += 0; # numify it, ensuring it will be dumped as a number
649 $x *= 1; # same thing, the choise is yours. 1035 $x *= 1; # same thing, the choice is yours.
650 1036
651You can not currently output JSON booleans or force the type in other, 1037You can not currently force the type in other, less obscure, ways. Tell me
652less obscure, ways. Tell me if you need this capability. 1038if you need this capability (but don't forget to explain why it's needed
1039:).
1040
1041=back
1042
1043
1044=head1 ENCODING/CODESET FLAG NOTES
1045
1046The interested reader might have seen a number of flags that signify
1047encodings or codesets - C<utf8>, C<latin1> and C<ascii>. There seems to be
1048some confusion on what these do, so here is a short comparison:
1049
1050C<utf8> controls whether the JSON text created by C<encode> (and expected
1051by C<decode>) is UTF-8 encoded or not, while C<latin1> and C<ascii> only
1052control whether C<encode> escapes character values outside their respective
1053codeset range. Neither of these flags conflict with each other, although
1054some combinations make less sense than others.
1055
1056Care has been taken to make all flags symmetrical with respect to
1057C<encode> and C<decode>, that is, texts encoded with any combination of
1058these flag values will be correctly decoded when the same flags are used
1059- in general, if you use different flag settings while encoding vs. when
1060decoding you likely have a bug somewhere.
1061
1062Below comes a verbose discussion of these flags. Note that a "codeset" is
1063simply an abstract set of character-codepoint pairs, while an encoding
1064takes those codepoint numbers and I<encodes> them, in our case into
1065octets. Unicode is (among other things) a codeset, UTF-8 is an encoding,
1066and ISO-8859-1 (= latin 1) and ASCII are both codesets I<and> encodings at
1067the same time, which can be confusing.
1068
1069=over 4
1070
1071=item C<utf8> flag disabled
1072
1073When C<utf8> is disabled (the default), then C<encode>/C<decode> generate
1074and expect Unicode strings, that is, characters with high ordinal Unicode
1075values (> 255) will be encoded as such characters, and likewise such
1076characters are decoded as-is, no canges to them will be done, except
1077"(re-)interpreting" them as Unicode codepoints or Unicode characters,
1078respectively (to Perl, these are the same thing in strings unless you do
1079funny/weird/dumb stuff).
1080
1081This is useful when you want to do the encoding yourself (e.g. when you
1082want to have UTF-16 encoded JSON texts) or when some other layer does
1083the encoding for you (for example, when printing to a terminal using a
1084filehandle that transparently encodes to UTF-8 you certainly do NOT want
1085to UTF-8 encode your data first and have Perl encode it another time).
1086
1087=item C<utf8> flag enabled
1088
1089If the C<utf8>-flag is enabled, C<encode>/C<decode> will encode all
1090characters using the corresponding UTF-8 multi-byte sequence, and will
1091expect your input strings to be encoded as UTF-8, that is, no "character"
1092of the input string must have any value > 255, as UTF-8 does not allow
1093that.
1094
1095The C<utf8> flag therefore switches between two modes: disabled means you
1096will get a Unicode string in Perl, enabled means you get an UTF-8 encoded
1097octet/binary string in Perl.
1098
1099=item C<latin1> or C<ascii> flags enabled
1100
1101With C<latin1> (or C<ascii>) enabled, C<encode> will escape characters
1102with ordinal values > 255 (> 127 with C<ascii>) and encode the remaining
1103characters as specified by the C<utf8> flag.
1104
1105If C<utf8> is disabled, then the result is also correctly encoded in those
1106character sets (as both are proper subsets of Unicode, meaning that a
1107Unicode string with all character values < 256 is the same thing as a
1108ISO-8859-1 string, and a Unicode string with all character values < 128 is
1109the same thing as an ASCII string in Perl).
1110
1111If C<utf8> is enabled, you still get a correct UTF-8-encoded string,
1112regardless of these flags, just some more characters will be escaped using
1113C<\uXXXX> then before.
1114
1115Note that ISO-8859-1-I<encoded> strings are not compatible with UTF-8
1116encoding, while ASCII-encoded strings are. That is because the ISO-8859-1
1117encoding is NOT a subset of UTF-8 (despite the ISO-8859-1 I<codeset> being
1118a subset of Unicode), while ASCII is.
1119
1120Surprisingly, C<decode> will ignore these flags and so treat all input
1121values as governed by the C<utf8> flag. If it is disabled, this allows you
1122to decode ISO-8859-1- and ASCII-encoded strings, as both strict subsets of
1123Unicode. If it is enabled, you can correctly decode UTF-8 encoded strings.
1124
1125So neither C<latin1> nor C<ascii> are incompatible with the C<utf8> flag -
1126they only govern when the JSON output engine escapes a character or not.
1127
1128The main use for C<latin1> is to relatively efficiently store binary data
1129as JSON, at the expense of breaking compatibility with most JSON decoders.
1130
1131The main use for C<ascii> is to force the output to not contain characters
1132with values > 127, which means you can interpret the resulting string
1133as UTF-8, ISO-8859-1, ASCII, KOI8-R or most about any character set and
11348-bit-encoding, and still get the same data structure back. This is useful
1135when your channel for JSON transfer is not 8-bit clean or the encoding
1136might be mangled in between (e.g. in mail), and works because ASCII is a
1137proper subset of most 8-bit and multibyte encodings in use in the world.
653 1138
654=back 1139=back
655 1140
656 1141
657=head1 COMPARISON 1142=head1 COMPARISON
662followed by some benchmark values. JSON::XS was designed not to suffer 1147followed by some benchmark values. JSON::XS was designed not to suffer
663from any of these problems or limitations. 1148from any of these problems or limitations.
664 1149
665=over 4 1150=over 4
666 1151
1152=item JSON 2.xx
1153
1154A marvellous piece of engineering, this module either uses JSON::XS
1155directly when available (so will be 100% compatible with it, including
1156speed), or it uses JSON::PP, which is basically JSON::XS translated to
1157Pure Perl, which should be 100% compatible with JSON::XS, just a bit
1158slower.
1159
1160You cannot really lose by using this module, especially as it tries very
1161hard to work even with ancient Perl versions, while JSON::XS does not.
1162
667=item JSON 1.07 1163=item JSON 1.07
668 1164
669Slow (but very portable, as it is written in pure Perl). 1165Slow (but very portable, as it is written in pure Perl).
670 1166
671Undocumented/buggy Unicode handling (how JSON handles unicode values is 1167Undocumented/buggy Unicode handling (how JSON handles Unicode values is
672undocumented. One can get far by feeding it unicode strings and doing 1168undocumented. One can get far by feeding it Unicode strings and doing
673en-/decoding oneself, but unicode escapes are not working properly). 1169en-/decoding oneself, but Unicode escapes are not working properly).
674 1170
675No roundtripping (strings get clobbered if they look like numbers, e.g. 1171No round-tripping (strings get clobbered if they look like numbers, e.g.
676the string C<2.0> will encode to C<2.0> instead of C<"2.0">, and that will 1172the string C<2.0> will encode to C<2.0> instead of C<"2.0">, and that will
677decode into the number 2. 1173decode into the number 2.
678 1174
679=item JSON::PC 0.01 1175=item JSON::PC 0.01
680 1176
681Very fast. 1177Very fast.
682 1178
683Undocumented/buggy Unicode handling. 1179Undocumented/buggy Unicode handling.
684 1180
685No roundtripping. 1181No round-tripping.
686 1182
687Has problems handling many Perl values (e.g. regex results and other magic 1183Has problems handling many Perl values (e.g. regex results and other magic
688values will make it croak). 1184values will make it croak).
689 1185
690Does not even generate valid JSON (C<{1,2}> gets converted to C<{1:2}> 1186Does not even generate valid JSON (C<{1,2}> gets converted to C<{1:2}>
700Very inflexible (no human-readable format supported, format pretty much 1196Very inflexible (no human-readable format supported, format pretty much
701undocumented. I need at least a format for easy reading by humans and a 1197undocumented. I need at least a format for easy reading by humans and a
702single-line compact format for use in a protocol, and preferably a way to 1198single-line compact format for use in a protocol, and preferably a way to
703generate ASCII-only JSON texts). 1199generate ASCII-only JSON texts).
704 1200
705Completely broken (and confusingly documented) Unicode handling (unicode 1201Completely broken (and confusingly documented) Unicode handling (Unicode
706escapes are not working properly, you need to set ImplicitUnicode to 1202escapes are not working properly, you need to set ImplicitUnicode to
707I<different> values on en- and decoding to get symmetric behaviour). 1203I<different> values on en- and decoding to get symmetric behaviour).
708 1204
709No roundtripping (simple cases work, but this depends on wether the scalar 1205No round-tripping (simple cases work, but this depends on whether the scalar
710value was used in a numeric context or not). 1206value was used in a numeric context or not).
711 1207
712Dumping hashes may skip hash values depending on iterator state. 1208Dumping hashes may skip hash values depending on iterator state.
713 1209
714Unmaintained (maintainer unresponsive for many months, bugs are not 1210Unmaintained (maintainer unresponsive for many months, bugs are not
715getting fixed). 1211getting fixed).
716 1212
717Does not check input for validity (i.e. will accept non-JSON input and 1213Does not check input for validity (i.e. will accept non-JSON input and
718return "something" instead of raising an exception. This is a security 1214return "something" instead of raising an exception. This is a security
719issue: imagine two banks transfering money between each other using 1215issue: imagine two banks transferring money between each other using
720JSON. One bank might parse a given non-JSON request and deduct money, 1216JSON. One bank might parse a given non-JSON request and deduct money,
721while the other might reject the transaction with a syntax error. While a 1217while the other might reject the transaction with a syntax error. While a
722good protocol will at least recover, that is extra unnecessary work and 1218good protocol will at least recover, that is extra unnecessary work and
723the transaction will still not succeed). 1219the transaction will still not succeed).
724 1220
725=item JSON::DWIW 0.04 1221=item JSON::DWIW 0.04
726 1222
727Very fast. Very natural. Very nice. 1223Very fast. Very natural. Very nice.
728 1224
729Undocumented unicode handling (but the best of the pack. Unicode escapes 1225Undocumented Unicode handling (but the best of the pack. Unicode escapes
730still don't get parsed properly). 1226still don't get parsed properly).
731 1227
732Very inflexible. 1228Very inflexible.
733 1229
734No roundtripping. 1230No round-tripping.
735 1231
736Does not generate valid JSON texts (key strings are often unquoted, empty keys 1232Does not generate valid JSON texts (key strings are often unquoted, empty keys
737result in nothing being output) 1233result in nothing being output)
738 1234
739Does not check input for validity. 1235Does not check input for validity.
741=back 1237=back
742 1238
743 1239
744=head2 JSON and YAML 1240=head2 JSON and YAML
745 1241
746You often hear that JSON is a subset (or a close subset) of YAML. This is, 1242You often hear that JSON is a subset of YAML. This is, however, a mass
747however, a mass hysteria and very far from the truth. In general, there is 1243hysteria(*) and very far from the truth (as of the time of this writing),
748no way to configure JSON::XS to output a data structure as valid YAML. 1244so let me state it clearly: I<in general, there is no way to configure
1245JSON::XS to output a data structure as valid YAML> that works in all
1246cases.
749 1247
750If you really must use JSON::XS to generate YAML, you should use this 1248If you really must use JSON::XS to generate YAML, you should use this
751algorithm (subject to change in future versions): 1249algorithm (subject to change in future versions):
752 1250
753 my $to_yaml = JSON::XS->new->utf8->space_after (1); 1251 my $to_yaml = JSON::XS->new->utf8->space_after (1);
754 my $yaml = $to_yaml->encode ($ref) . "\n"; 1252 my $yaml = $to_yaml->encode ($ref) . "\n";
755 1253
756This will usually generate JSON texts that also parse as valid 1254This will I<usually> generate JSON texts that also parse as valid
757YAML. Please note that YAML has hardcoded limits on (simple) object key 1255YAML. Please note that YAML has hardcoded limits on (simple) object key
758lengths that JSON doesn't have, so you should make sure that your hash 1256lengths that JSON doesn't have and also has different and incompatible
1257unicode handling, so you should make sure that your hash keys are
759keys are noticably shorter than the 1024 characters YAML allows. 1258noticeably shorter than the 1024 "stream characters" YAML allows and that
1259you do not have characters with codepoint values outside the Unicode BMP
1260(basic multilingual page). YAML also does not allow C<\/> sequences in
1261strings (which JSON::XS does not I<currently> generate, but other JSON
1262generators might).
760 1263
761There might be other incompatibilities that I am not aware of. In general 1264There might be other incompatibilities that I am not aware of (or the YAML
1265specification has been changed yet again - it does so quite often). In
762you should not try to generate YAML with a JSON generator or vice versa, 1266general you should not try to generate YAML with a JSON generator or vice
763or try to parse JSON with a YAML parser or vice versa: chances are high 1267versa, or try to parse JSON with a YAML parser or vice versa: chances are
764that you will run into severe interoperability problems. 1268high that you will run into severe interoperability problems when you
1269least expect it.
1270
1271=over 4
1272
1273=item (*)
1274
1275I have been pressured multiple times by Brian Ingerson (one of the
1276authors of the YAML specification) to remove this paragraph, despite him
1277acknowledging that the actual incompatibilities exist. As I was personally
1278bitten by this "JSON is YAML" lie, I refused and said I will continue to
1279educate people about these issues, so others do not run into the same
1280problem again and again. After this, Brian called me a (quote)I<complete
1281and worthless idiot>(unquote).
1282
1283In my opinion, instead of pressuring and insulting people who actually
1284clarify issues with YAML and the wrong statements of some of its
1285proponents, I would kindly suggest reading the JSON spec (which is not
1286that difficult or long) and finally make YAML compatible to it, and
1287educating users about the changes, instead of spreading lies about the
1288real compatibility for many I<years> and trying to silence people who
1289point out that it isn't true.
1290
1291=back
765 1292
766 1293
767=head2 SPEED 1294=head2 SPEED
768 1295
769It seems that JSON::XS is surprisingly fast, as shown in the following 1296It seems that JSON::XS is surprisingly fast, as shown in the following
770tables. They have been generated with the help of the C<eg/bench> program 1297tables. They have been generated with the help of the C<eg/bench> program
771in the JSON::XS distribution, to make it easy to compare on your own 1298in the JSON::XS distribution, to make it easy to compare on your own
772system. 1299system.
773 1300
774First comes a comparison between various modules using a very short 1301First comes a comparison between various modules using
775single-line JSON string: 1302a very short single-line JSON string (also available at
1303L<http://dist.schmorp.de/misc/json/short.json>).
776 1304
777 {"method": "handleMessage", "params": ["user1", "we were just talking"], \ 1305 {"method": "handleMessage", "params": ["user1", "we were just talking"], \
778 "id": null, "array":[1,11,234,-5,1e5,1e7, true, false]} 1306 "id": null, "array":[1,11,234,-5,1e5,1e7, true, false]}
779 1307
780It shows the number of encodes/decodes per second (JSON::XS uses 1308It shows the number of encodes/decodes per second (JSON::XS uses
781the functional interface, while JSON::XS/2 uses the OO interface 1309the functional interface, while JSON::XS/2 uses the OO interface
782with pretty-printing and hashkey sorting enabled, JSON::XS/3 enables 1310with pretty-printing and hashkey sorting enabled, JSON::XS/3 enables
783shrink). Higher is better: 1311shrink). Higher is better:
784 1312
785 Storable | 15779.925 | 14169.946 |
786 -----------+------------+------------+
787 module | encode | decode | 1313 module | encode | decode |
788 -----------|------------|------------| 1314 -----------|------------|------------|
789 JSON | 4990.842 | 4088.813 | 1315 JSON 1.x | 4990.842 | 4088.813 |
790 JSON::DWIW | 51653.990 | 71575.154 | 1316 JSON::DWIW | 51653.990 | 71575.154 |
791 JSON::PC | 65948.176 | 74631.744 | 1317 JSON::PC | 65948.176 | 74631.744 |
792 JSON::PP | 8931.652 | 3817.168 | 1318 JSON::PP | 8931.652 | 3817.168 |
793 JSON::Syck | 24877.248 | 27776.848 | 1319 JSON::Syck | 24877.248 | 27776.848 |
794 JSON::XS | 388361.481 | 227951.304 | 1320 JSON::XS | 388361.481 | 227951.304 |
796 JSON::XS/3 | 338250.323 | 218453.333 | 1322 JSON::XS/3 | 338250.323 | 218453.333 |
797 Storable | 16500.016 | 135300.129 | 1323 Storable | 16500.016 | 135300.129 |
798 -----------+------------+------------+ 1324 -----------+------------+------------+
799 1325
800That is, JSON::XS is about five times faster than JSON::DWIW on encoding, 1326That is, JSON::XS is about five times faster than JSON::DWIW on encoding,
801about three times faster on decoding, and over fourty times faster 1327about three times faster on decoding, and over forty times faster
802than JSON, even with pretty-printing and key sorting. It also compares 1328than JSON, even with pretty-printing and key sorting. It also compares
803favourably to Storable for small amounts of data. 1329favourably to Storable for small amounts of data.
804 1330
805Using a longer test string (roughly 18KB, generated from Yahoo! Locals 1331Using a longer test string (roughly 18KB, generated from Yahoo! Locals
806search API (http://nanoref.com/yahooapis/mgPdGg): 1332search API (L<http://dist.schmorp.de/misc/json/long.json>).
807 1333
808 module | encode | decode | 1334 module | encode | decode |
809 -----------|------------|------------| 1335 -----------|------------|------------|
810 JSON | 55.260 | 34.971 | 1336 JSON 1.x | 55.260 | 34.971 |
811 JSON::DWIW | 825.228 | 1082.513 | 1337 JSON::DWIW | 825.228 | 1082.513 |
812 JSON::PC | 3571.444 | 2394.829 | 1338 JSON::PC | 3571.444 | 2394.829 |
813 JSON::PP | 210.987 | 32.574 | 1339 JSON::PP | 210.987 | 32.574 |
814 JSON::Syck | 552.551 | 787.544 | 1340 JSON::Syck | 552.551 | 787.544 |
815 JSON::XS | 5780.463 | 4854.519 | 1341 JSON::XS | 5780.463 | 4854.519 |
819 -----------+------------+------------+ 1345 -----------+------------+------------+
820 1346
821Again, JSON::XS leads by far (except for Storable which non-surprisingly 1347Again, JSON::XS leads by far (except for Storable which non-surprisingly
822decodes faster). 1348decodes faster).
823 1349
824On large strings containing lots of high unicode characters, some modules 1350On large strings containing lots of high Unicode characters, some modules
825(such as JSON::PC) seem to decode faster than JSON::XS, but the result 1351(such as JSON::PC) seem to decode faster than JSON::XS, but the result
826will be broken due to missing (or wrong) unicode handling. Others refuse 1352will be broken due to missing (or wrong) Unicode handling. Others refuse
827to decode or encode properly, so it was impossible to prepare a fair 1353to decode or encode properly, so it was impossible to prepare a fair
828comparison table for that case. 1354comparison table for that case.
829 1355
830 1356
831=head1 SECURITY CONSIDERATIONS 1357=head1 SECURITY CONSIDERATIONS
837any buffer overflows. Obviously, this module should ensure that and I am 1363any buffer overflows. Obviously, this module should ensure that and I am
838trying hard on making that true, but you never know. 1364trying hard on making that true, but you never know.
839 1365
840Second, you need to avoid resource-starving attacks. That means you should 1366Second, you need to avoid resource-starving attacks. That means you should
841limit the size of JSON texts you accept, or make sure then when your 1367limit the size of JSON texts you accept, or make sure then when your
842resources run out, thats just fine (e.g. by using a separate process that 1368resources run out, that's just fine (e.g. by using a separate process that
843can crash safely). The size of a JSON text in octets or characters is 1369can crash safely). The size of a JSON text in octets or characters is
844usually a good indication of the size of the resources required to decode 1370usually a good indication of the size of the resources required to decode
845it into a Perl structure. While JSON::XS can check the size of the JSON 1371it into a Perl structure. While JSON::XS can check the size of the JSON
846text, it might be too late when you already have it in memory, so you 1372text, it might be too late when you already have it in memory, so you
847might want to check the size before you accept the string. 1373might want to check the size before you accept the string.
848 1374
849Third, JSON::XS recurses using the C stack when decoding objects and 1375Third, JSON::XS recurses using the C stack when decoding objects and
850arrays. The C stack is a limited resource: for instance, on my amd64 1376arrays. The C stack is a limited resource: for instance, on my amd64
851machine with 8MB of stack size I can decode around 180k nested arrays but 1377machine with 8MB of stack size I can decode around 180k nested arrays but
852only 14k nested JSON objects (due to perl itself recursing deeply on croak 1378only 14k nested JSON objects (due to perl itself recursing deeply on croak
853to free the temporary). If that is exceeded, the program crashes. to be 1379to free the temporary). If that is exceeded, the program crashes. To be
854conservative, the default nesting limit is set to 512. If your process 1380conservative, the default nesting limit is set to 512. If your process
855has a smaller stack, you should adjust this setting accordingly with the 1381has a smaller stack, you should adjust this setting accordingly with the
856C<max_depth> method. 1382C<max_depth> method.
857 1383
858And last but least, something else could bomb you that I forgot to think 1384Something else could bomb you, too, that I forgot to think of. In that
859of. In that case, you get to keep the pieces. I am always open for hints, 1385case, you get to keep the pieces. I am always open for hints, though...
860though... 1386
1387Also keep in mind that JSON::XS might leak contents of your Perl data
1388structures in its error messages, so when you serialise sensitive
1389information you might want to make sure that exceptions thrown by JSON::XS
1390will not end up in front of untrusted eyes.
861 1391
862If you are using JSON::XS to return packets to consumption 1392If you are using JSON::XS to return packets to consumption
863by javascript scripts in a browser you should have a look at 1393by JavaScript scripts in a browser you should have a look at
864L<http://jpsykes.com/47/practical-csrf-and-json-security> to see wether 1394L<http://jpsykes.com/47/practical-csrf-and-json-security> to see whether
865you are vulnerable to some common attack vectors (which really are browser 1395you are vulnerable to some common attack vectors (which really are browser
866design bugs, but it is still you who will have to deal with it, as major 1396design bugs, but it is still you who will have to deal with it, as major
867browser developers care only for features, not about doing security 1397browser developers care only for features, not about getting security
868right). 1398right).
869 1399
870 1400
1401=head1 THREADS
1402
1403This module is I<not> guaranteed to be thread safe and there are no
1404plans to change this until Perl gets thread support (as opposed to the
1405horribly slow so-called "threads" which are simply slow and bloated
1406process simulations - use fork, it's I<much> faster, cheaper, better).
1407
1408(It might actually work, but you have been warned).
1409
1410
871=head1 BUGS 1411=head1 BUGS
872 1412
873While the goal of this module is to be correct, that unfortunately does 1413While the goal of this module is to be correct, that unfortunately does
874not mean its bug-free, only that I think its design is bug-free. It is 1414not mean it's bug-free, only that I think its design is bug-free. It is
875still relatively early in its development. If you keep reporting bugs they 1415still relatively early in its development. If you keep reporting bugs they
876will be fixed swiftly, though. 1416will be fixed swiftly, though.
877 1417
1418Please refrain from using rt.cpan.org or any other bug reporting
1419service. I put the contact address into my modules for a reason.
1420
878=cut 1421=cut
879 1422
880our $true = do { bless \(my $dummy = "1"), "JSON::XS::Boolean" }; 1423our $true = do { bless \(my $dummy = 1), "JSON::XS::Boolean" };
881our $false = do { bless \(my $dummy = "0"), "JSON::XS::Boolean" }; 1424our $false = do { bless \(my $dummy = 0), "JSON::XS::Boolean" };
882 1425
883sub true() { $true } 1426sub true() { $true }
884sub false() { $false } 1427sub false() { $false }
885 1428
886sub is_bool($) { 1429sub is_bool($) {
898 "--" => sub { $_[0] = ${$_[0]} - 1 }, 1441 "--" => sub { $_[0] = ${$_[0]} - 1 },
899 fallback => 1; 1442 fallback => 1;
900 1443
9011; 14441;
902 1445
1446=head1 SEE ALSO
1447
1448The F<json_xs> command line utility for quick experiments.
1449
903=head1 AUTHOR 1450=head1 AUTHOR
904 1451
905 Marc Lehmann <schmorp@schmorp.de> 1452 Marc Lehmann <schmorp@schmorp.de>
906 http://home.schmorp.de/ 1453 http://home.schmorp.de/
907 1454

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