| 1 |
NAME |
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JSON::XS - JSON serialising/deserialising, done correctly and fast |
| 3 |
|
| 4 |
JSON::XS - 正しくて高速な JSON |
| 5 |
シリアライザ/デシリアライザ |
| 6 |
(http://fleur.hio.jp/perldoc/mix/lib/JSON/XS.html) |
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|
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SYNOPSIS |
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use JSON::XS; |
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|
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# exported functions, they croak on error |
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# and expect/generate UTF-8 |
| 13 |
|
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$utf8_encoded_json_text = encode_json $perl_hash_or_arrayref; |
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$perl_hash_or_arrayref = decode_json $utf8_encoded_json_text; |
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|
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# OO-interface |
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|
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$coder = JSON::XS->new->ascii->pretty->allow_nonref; |
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$pretty_printed_unencoded = $coder->encode ($perl_scalar); |
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$perl_scalar = $coder->decode ($unicode_json_text); |
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|
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# Note that JSON version 2.0 and above will automatically use JSON::XS |
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# if available, at virtually no speed overhead either, so you should |
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# be able to just: |
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|
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use JSON; |
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|
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# and do the same things, except that you have a pure-perl fallback now. |
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|
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DESCRIPTION |
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This module converts Perl data structures to JSON and vice versa. Its |
| 33 |
primary goal is to be *correct* and its secondary goal is to be *fast*. |
| 34 |
To reach the latter goal it was written in C. |
| 35 |
|
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Beginning with version 2.0 of the JSON module, when both JSON and |
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JSON::XS are installed, then JSON will fall back on JSON::XS (this can |
| 38 |
be overriden) with no overhead due to emulation (by inheritign |
| 39 |
constructor and methods). If JSON::XS is not available, it will fall |
| 40 |
back to the compatible JSON::PP module as backend, so using JSON instead |
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of JSON::XS gives you a portable JSON API that can be fast when you need |
| 42 |
and doesn't require a C compiler when that is a problem. |
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|
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As this is the n-th-something JSON module on CPAN, what was the reason |
| 45 |
to write yet another JSON module? While it seems there are many JSON |
| 46 |
modules, none of them correctly handle all corner cases, and in most |
| 47 |
cases their maintainers are unresponsive, gone missing, or not listening |
| 48 |
to bug reports for other reasons. |
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|
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See COMPARISON, below, for a comparison to some other JSON modules. |
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|
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See MAPPING, below, on how JSON::XS maps perl values to JSON values and |
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vice versa. |
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|
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FEATURES |
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* correct Unicode handling |
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This module knows how to handle Unicode, and even documents how and |
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when it does so. |
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|
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* round-trip integrity |
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When you serialise a perl data structure using only datatypes |
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supported by JSON, the deserialised data structure is identical on |
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the Perl level. (e.g. the string "2.0" doesn't suddenly become "2" |
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just because it looks like a number). |
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|
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* strict checking of JSON correctness |
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There is no guessing, no generating of illegal JSON texts by |
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default, and only JSON is accepted as input by default (the latter |
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is a security feature). |
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|
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* fast |
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Compared to other JSON modules, this module compares favourably in |
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terms of speed, too. |
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|
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* simple to use |
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This module has both a simple functional interface as well as an OO |
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interface. |
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|
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* reasonably versatile output formats |
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You can choose between the most compact guaranteed single-line |
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format possible (nice for simple line-based protocols), a pure-ascii |
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format (for when your transport is not 8-bit clean, still supports |
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the whole Unicode range), or a pretty-printed format (for when you |
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want to read that stuff). Or you can combine those features in |
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whatever way you like. |
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|
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FUNCTIONAL INTERFACE |
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The following convenience methods are provided by this module. They are |
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exported by default: |
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|
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$json_text = encode_json $perl_scalar |
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Converts the given Perl data structure to a UTF-8 encoded, binary |
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string (that is, the string contains octets only). Croaks on error. |
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|
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This function call is functionally identical to: |
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|
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$json_text = JSON::XS->new->utf8->encode ($perl_scalar) |
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|
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except being faster. |
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|
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$perl_scalar = decode_json $json_text |
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The opposite of "encode_json": expects an UTF-8 (binary) string and |
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tries to parse that as an UTF-8 encoded JSON text, returning the |
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resulting reference. Croaks on error. |
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|
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This function call is functionally identical to: |
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|
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$perl_scalar = JSON::XS->new->utf8->decode ($json_text) |
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|
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except being faster. |
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|
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$is_boolean = JSON::XS::is_bool $scalar |
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Returns true if the passed scalar represents either JSON::XS::true |
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or JSON::XS::false, two constants that act like 1 and 0, |
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respectively and are used to represent JSON "true" and "false" |
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values in Perl. |
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|
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See MAPPING, below, for more information on how JSON values are |
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mapped to Perl. |
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|
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A FEW NOTES ON UNICODE AND PERL |
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Since this often leads to confusion, here are a few very clear words on |
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how Unicode works in Perl, modulo bugs. |
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|
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1. Perl strings can store characters with ordinal values > 255. |
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This enables you to store Unicode characters as single characters in |
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a Perl string - very natural. |
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|
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2. Perl does *not* associate an encoding with your strings. |
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Unless you force it to, e.g. when matching it against a regex, or |
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printing the scalar to a file, in which case Perl either interprets |
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your string as locale-encoded text, octets/binary, or as Unicode, |
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depending on various settings. In no case is an encoding stored |
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together with your data, it is *use* that decides encoding, not any |
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magical metadata. |
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|
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3. The internal utf-8 flag has no meaning with regards to the encoding |
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of your string. |
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Just ignore that flag unless you debug a Perl bug, a module written |
| 140 |
in XS or want to dive into the internals of perl. Otherwise it will |
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only confuse you, as, despite the name, it says nothing about how |
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your string is encoded. You can have Unicode strings with that flag |
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set, with that flag clear, and you can have binary data with that |
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flag set and that flag clear. Other possibilities exist, too. |
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|
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If you didn't know about that flag, just the better, pretend it |
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doesn't exist. |
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|
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4. A "Unicode String" is simply a string where each character can be |
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validly interpreted as a Unicode codepoint. |
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If you have UTF-8 encoded data, it is no longer a Unicode string, |
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but a Unicode string encoded in UTF-8, giving you a binary string. |
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|
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5. A string containing "high" (> 255) character values is *not* a UTF-8 |
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string. |
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It's a fact. Learn to live with it. |
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|
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I hope this helps :) |
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|
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OBJECT-ORIENTED INTERFACE |
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The object oriented interface lets you configure your own encoding or |
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decoding style, within the limits of supported formats. |
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|
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$json = new JSON::XS |
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Creates a new JSON::XS object that can be used to de/encode JSON |
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strings. All boolean flags described below are by default |
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*disabled*. |
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|
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The mutators for flags all return the JSON object again and thus |
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calls can be chained: |
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|
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my $json = JSON::XS->new->utf8->space_after->encode ({a => [1,2]}) |
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=> {"a": [1, 2]} |
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|
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$json = $json->ascii ([$enable]) |
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$enabled = $json->get_ascii |
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If $enable is true (or missing), then the "encode" method will not |
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generate characters outside the code range 0..127 (which is ASCII). |
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Any Unicode characters outside that range will be escaped using |
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either a single \uXXXX (BMP characters) or a double \uHHHH\uLLLLL |
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escape sequence, as per RFC4627. The resulting encoded JSON text can |
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be treated as a native Unicode string, an ascii-encoded, |
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latin1-encoded or UTF-8 encoded string, or any other superset of |
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ASCII. |
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|
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If $enable is false, then the "encode" method will not escape |
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Unicode characters unless required by the JSON syntax or other |
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flags. This results in a faster and more compact format. |
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|
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The main use for this flag is to produce JSON texts that can be |
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transmitted over a 7-bit channel, as the encoded JSON texts will not |
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contain any 8 bit characters. |
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|
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JSON::XS->new->ascii (1)->encode ([chr 0x10401]) |
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=> ["\ud801\udc01"] |
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|
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$json = $json->latin1 ([$enable]) |
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$enabled = $json->get_latin1 |
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If $enable is true (or missing), then the "encode" method will |
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encode the resulting JSON text as latin1 (or iso-8859-1), escaping |
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any characters outside the code range 0..255. The resulting string |
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can be treated as a latin1-encoded JSON text or a native Unicode |
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string. The "decode" method will not be affected in any way by this |
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flag, as "decode" by default expects Unicode, which is a strict |
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superset of latin1. |
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|
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If $enable is false, then the "encode" method will not escape |
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Unicode characters unless required by the JSON syntax or other |
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flags. |
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|
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The main use for this flag is efficiently encoding binary data as |
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JSON text, as most octets will not be escaped, resulting in a |
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smaller encoded size. The disadvantage is that the resulting JSON |
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text is encoded in latin1 (and must correctly be treated as such |
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when storing and transferring), a rare encoding for JSON. It is |
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therefore most useful when you want to store data structures known |
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to contain binary data efficiently in files or databases, not when |
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talking to other JSON encoders/decoders. |
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|
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JSON::XS->new->latin1->encode (["\x{89}\x{abc}"] |
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=> ["\x{89}\\u0abc"] # (perl syntax, U+abc escaped, U+89 not) |
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|
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$json = $json->utf8 ([$enable]) |
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$enabled = $json->get_utf8 |
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If $enable is true (or missing), then the "encode" method will |
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encode the JSON result into UTF-8, as required by many protocols, |
| 227 |
while the "decode" method expects to be handled an UTF-8-encoded |
| 228 |
string. Please note that UTF-8-encoded strings do not contain any |
| 229 |
characters outside the range 0..255, they are thus useful for |
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bytewise/binary I/O. In future versions, enabling this option might |
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enable autodetection of the UTF-16 and UTF-32 encoding families, as |
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described in RFC4627. |
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|
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If $enable is false, then the "encode" method will return the JSON |
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string as a (non-encoded) Unicode string, while "decode" expects |
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thus a Unicode string. Any decoding or encoding (e.g. to UTF-8 or |
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UTF-16) needs to be done yourself, e.g. using the Encode module. |
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|
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Example, output UTF-16BE-encoded JSON: |
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|
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use Encode; |
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$jsontext = encode "UTF-16BE", JSON::XS->new->encode ($object); |
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|
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Example, decode UTF-32LE-encoded JSON: |
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|
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use Encode; |
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$object = JSON::XS->new->decode (decode "UTF-32LE", $jsontext); |
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|
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$json = $json->pretty ([$enable]) |
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This enables (or disables) all of the "indent", "space_before" and |
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"space_after" (and in the future possibly more) flags in one call to |
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generate the most readable (or most compact) form possible. |
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|
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Example, pretty-print some simple structure: |
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|
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my $json = JSON::XS->new->pretty(1)->encode ({a => [1,2]}) |
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=> |
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{ |
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"a" : [ |
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1, |
| 261 |
2 |
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] |
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} |
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|
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$json = $json->indent ([$enable]) |
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$enabled = $json->get_indent |
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If $enable is true (or missing), then the "encode" method will use a |
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multiline format as output, putting every array member or |
| 269 |
object/hash key-value pair into its own line, indenting them |
| 270 |
properly. |
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|
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If $enable is false, no newlines or indenting will be produced, and |
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the resulting JSON text is guaranteed not to contain any "newlines". |
| 274 |
|
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This setting has no effect when decoding JSON texts. |
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|
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$json = $json->space_before ([$enable]) |
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$enabled = $json->get_space_before |
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If $enable is true (or missing), then the "encode" method will add |
| 280 |
an extra optional space before the ":" separating keys from values |
| 281 |
in JSON objects. |
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|
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If $enable is false, then the "encode" method will not add any extra |
| 284 |
space at those places. |
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|
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This setting has no effect when decoding JSON texts. You will also |
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most likely combine this setting with "space_after". |
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|
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Example, space_before enabled, space_after and indent disabled: |
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|
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{"key" :"value"} |
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|
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$json = $json->space_after ([$enable]) |
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$enabled = $json->get_space_after |
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If $enable is true (or missing), then the "encode" method will add |
| 296 |
an extra optional space after the ":" separating keys from values in |
| 297 |
JSON objects and extra whitespace after the "," separating key-value |
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pairs and array members. |
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|
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If $enable is false, then the "encode" method will not add any extra |
| 301 |
space at those places. |
| 302 |
|
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This setting has no effect when decoding JSON texts. |
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|
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Example, space_before and indent disabled, space_after enabled: |
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|
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{"key": "value"} |
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|
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$json = $json->relaxed ([$enable]) |
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$enabled = $json->get_relaxed |
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If $enable is true (or missing), then "decode" will accept some |
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extensions to normal JSON syntax (see below). "encode" will not be |
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affected in anyway. *Be aware that this option makes you accept |
| 314 |
invalid JSON texts as if they were valid!*. I suggest only to use |
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this option to parse application-specific files written by humans |
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(configuration files, resource files etc.) |
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|
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If $enable is false (the default), then "decode" will only accept |
| 319 |
valid JSON texts. |
| 320 |
|
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Currently accepted extensions are: |
| 322 |
|
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* list items can have an end-comma |
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JSON *separates* array elements and key-value pairs with commas. |
| 325 |
This can be annoying if you write JSON texts manually and want |
| 326 |
to be able to quickly append elements, so this extension accepts |
| 327 |
comma at the end of such items not just between them: |
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|
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[ |
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1, |
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2, <- this comma not normally allowed |
| 332 |
] |
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{ |
| 334 |
"k1": "v1", |
| 335 |
"k2": "v2", <- this comma not normally allowed |
| 336 |
} |
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|
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* shell-style '#'-comments |
| 339 |
Whenever JSON allows whitespace, shell-style comments are |
| 340 |
additionally allowed. They are terminated by the first |
| 341 |
carriage-return or line-feed character, after which more |
| 342 |
white-space and comments are allowed. |
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|
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[ |
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1, # this comment not allowed in JSON |
| 346 |
# neither this one... |
| 347 |
] |
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|
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$json = $json->canonical ([$enable]) |
| 350 |
$enabled = $json->get_canonical |
| 351 |
If $enable is true (or missing), then the "encode" method will |
| 352 |
output JSON objects by sorting their keys. This is adding a |
| 353 |
comparatively high overhead. |
| 354 |
|
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If $enable is false, then the "encode" method will output key-value |
| 356 |
pairs in the order Perl stores them (which will likely change |
| 357 |
between runs of the same script). |
| 358 |
|
| 359 |
This option is useful if you want the same data structure to be |
| 360 |
encoded as the same JSON text (given the same overall settings). If |
| 361 |
it is disabled, the same hash might be encoded differently even if |
| 362 |
contains the same data, as key-value pairs have no inherent ordering |
| 363 |
in Perl. |
| 364 |
|
| 365 |
This setting has no effect when decoding JSON texts. |
| 366 |
|
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$json = $json->allow_nonref ([$enable]) |
| 368 |
$enabled = $json->get_allow_nonref |
| 369 |
If $enable is true (or missing), then the "encode" method can |
| 370 |
convert a non-reference into its corresponding string, number or |
| 371 |
null JSON value, which is an extension to RFC4627. Likewise, |
| 372 |
"decode" will accept those JSON values instead of croaking. |
| 373 |
|
| 374 |
If $enable is false, then the "encode" method will croak if it isn't |
| 375 |
passed an arrayref or hashref, as JSON texts must either be an |
| 376 |
object or array. Likewise, "decode" will croak if given something |
| 377 |
that is not a JSON object or array. |
| 378 |
|
| 379 |
Example, encode a Perl scalar as JSON value with enabled |
| 380 |
"allow_nonref", resulting in an invalid JSON text: |
| 381 |
|
| 382 |
JSON::XS->new->allow_nonref->encode ("Hello, World!") |
| 383 |
=> "Hello, World!" |
| 384 |
|
| 385 |
$json = $json->allow_blessed ([$enable]) |
| 386 |
$enabled = $json->get_allow_blessed |
| 387 |
If $enable is true (or missing), then the "encode" method will not |
| 388 |
barf when it encounters a blessed reference. Instead, the value of |
| 389 |
the convert_blessed option will decide whether "null" |
| 390 |
("convert_blessed" disabled or no "TO_JSON" method found) or a |
| 391 |
representation of the object ("convert_blessed" enabled and |
| 392 |
"TO_JSON" method found) is being encoded. Has no effect on "decode". |
| 393 |
|
| 394 |
If $enable is false (the default), then "encode" will throw an |
| 395 |
exception when it encounters a blessed object. |
| 396 |
|
| 397 |
$json = $json->convert_blessed ([$enable]) |
| 398 |
$enabled = $json->get_convert_blessed |
| 399 |
If $enable is true (or missing), then "encode", upon encountering a |
| 400 |
blessed object, will check for the availability of the "TO_JSON" |
| 401 |
method on the object's class. If found, it will be called in scalar |
| 402 |
context and the resulting scalar will be encoded instead of the |
| 403 |
object. If no "TO_JSON" method is found, the value of |
| 404 |
"allow_blessed" will decide what to do. |
| 405 |
|
| 406 |
The "TO_JSON" method may safely call die if it wants. If "TO_JSON" |
| 407 |
returns other blessed objects, those will be handled in the same |
| 408 |
way. "TO_JSON" must take care of not causing an endless recursion |
| 409 |
cycle (== crash) in this case. The name of "TO_JSON" was chosen |
| 410 |
because other methods called by the Perl core (== not by the user of |
| 411 |
the object) are usually in upper case letters and to avoid |
| 412 |
collisions with any "to_json" function or method. |
| 413 |
|
| 414 |
This setting does not yet influence "decode" in any way, but in the |
| 415 |
future, global hooks might get installed that influence "decode" and |
| 416 |
are enabled by this setting. |
| 417 |
|
| 418 |
If $enable is false, then the "allow_blessed" setting will decide |
| 419 |
what to do when a blessed object is found. |
| 420 |
|
| 421 |
$json = $json->filter_json_object ([$coderef->($hashref)]) |
| 422 |
When $coderef is specified, it will be called from "decode" each |
| 423 |
time it decodes a JSON object. The only argument is a reference to |
| 424 |
the newly-created hash. If the code references returns a single |
| 425 |
scalar (which need not be a reference), this value (i.e. a copy of |
| 426 |
that scalar to avoid aliasing) is inserted into the deserialised |
| 427 |
data structure. If it returns an empty list (NOTE: *not* "undef", |
| 428 |
which is a valid scalar), the original deserialised hash will be |
| 429 |
inserted. This setting can slow down decoding considerably. |
| 430 |
|
| 431 |
When $coderef is omitted or undefined, any existing callback will be |
| 432 |
removed and "decode" will not change the deserialised hash in any |
| 433 |
way. |
| 434 |
|
| 435 |
Example, convert all JSON objects into the integer 5: |
| 436 |
|
| 437 |
my $js = JSON::XS->new->filter_json_object (sub { 5 }); |
| 438 |
# returns [5] |
| 439 |
$js->decode ('[{}]') |
| 440 |
# throw an exception because allow_nonref is not enabled |
| 441 |
# so a lone 5 is not allowed. |
| 442 |
$js->decode ('{"a":1, "b":2}'); |
| 443 |
|
| 444 |
$json = $json->filter_json_single_key_object ($key [=> |
| 445 |
$coderef->($value)]) |
| 446 |
Works remotely similar to "filter_json_object", but is only called |
| 447 |
for JSON objects having a single key named $key. |
| 448 |
|
| 449 |
This $coderef is called before the one specified via |
| 450 |
"filter_json_object", if any. It gets passed the single value in the |
| 451 |
JSON object. If it returns a single value, it will be inserted into |
| 452 |
the data structure. If it returns nothing (not even "undef" but the |
| 453 |
empty list), the callback from "filter_json_object" will be called |
| 454 |
next, as if no single-key callback were specified. |
| 455 |
|
| 456 |
If $coderef is omitted or undefined, the corresponding callback will |
| 457 |
be disabled. There can only ever be one callback for a given key. |
| 458 |
|
| 459 |
As this callback gets called less often then the |
| 460 |
"filter_json_object" one, decoding speed will not usually suffer as |
| 461 |
much. Therefore, single-key objects make excellent targets to |
| 462 |
serialise Perl objects into, especially as single-key JSON objects |
| 463 |
are as close to the type-tagged value concept as JSON gets (it's |
| 464 |
basically an ID/VALUE tuple). Of course, JSON does not support this |
| 465 |
in any way, so you need to make sure your data never looks like a |
| 466 |
serialised Perl hash. |
| 467 |
|
| 468 |
Typical names for the single object key are "__class_whatever__", or |
| 469 |
"$__dollars_are_rarely_used__$" or "}ugly_brace_placement", or even |
| 470 |
things like "__class_md5sum(classname)__", to reduce the risk of |
| 471 |
clashing with real hashes. |
| 472 |
|
| 473 |
Example, decode JSON objects of the form "{ "__widget__" => <id> }" |
| 474 |
into the corresponding $WIDGET{<id>} object: |
| 475 |
|
| 476 |
# return whatever is in $WIDGET{5}: |
| 477 |
JSON::XS |
| 478 |
->new |
| 479 |
->filter_json_single_key_object (__widget__ => sub { |
| 480 |
$WIDGET{ $_[0] } |
| 481 |
}) |
| 482 |
->decode ('{"__widget__": 5') |
| 483 |
|
| 484 |
# this can be used with a TO_JSON method in some "widget" class |
| 485 |
# for serialisation to json: |
| 486 |
sub WidgetBase::TO_JSON { |
| 487 |
my ($self) = @_; |
| 488 |
|
| 489 |
unless ($self->{id}) { |
| 490 |
$self->{id} = ..get..some..id..; |
| 491 |
$WIDGET{$self->{id}} = $self; |
| 492 |
} |
| 493 |
|
| 494 |
{ __widget__ => $self->{id} } |
| 495 |
} |
| 496 |
|
| 497 |
$json = $json->shrink ([$enable]) |
| 498 |
$enabled = $json->get_shrink |
| 499 |
Perl usually over-allocates memory a bit when allocating space for |
| 500 |
strings. This flag optionally resizes strings generated by either |
| 501 |
"encode" or "decode" to their minimum size possible. This can save |
| 502 |
memory when your JSON texts are either very very long or you have |
| 503 |
many short strings. It will also try to downgrade any strings to |
| 504 |
octet-form if possible: perl stores strings internally either in an |
| 505 |
encoding called UTF-X or in octet-form. The latter cannot store |
| 506 |
everything but uses less space in general (and some buggy Perl or C |
| 507 |
code might even rely on that internal representation being used). |
| 508 |
|
| 509 |
The actual definition of what shrink does might change in future |
| 510 |
versions, but it will always try to save space at the expense of |
| 511 |
time. |
| 512 |
|
| 513 |
If $enable is true (or missing), the string returned by "encode" |
| 514 |
will be shrunk-to-fit, while all strings generated by "decode" will |
| 515 |
also be shrunk-to-fit. |
| 516 |
|
| 517 |
If $enable is false, then the normal perl allocation algorithms are |
| 518 |
used. If you work with your data, then this is likely to be faster. |
| 519 |
|
| 520 |
In the future, this setting might control other things, such as |
| 521 |
converting strings that look like integers or floats into integers |
| 522 |
or floats internally (there is no difference on the Perl level), |
| 523 |
saving space. |
| 524 |
|
| 525 |
$json = $json->max_depth ([$maximum_nesting_depth]) |
| 526 |
$max_depth = $json->get_max_depth |
| 527 |
Sets the maximum nesting level (default 512) accepted while encoding |
| 528 |
or decoding. If the JSON text or Perl data structure has an equal or |
| 529 |
higher nesting level then this limit, then the encoder and decoder |
| 530 |
will stop and croak at that point. |
| 531 |
|
| 532 |
Nesting level is defined by number of hash- or arrayrefs that the |
| 533 |
encoder needs to traverse to reach a given point or the number of |
| 534 |
"{" or "[" characters without their matching closing parenthesis |
| 535 |
crossed to reach a given character in a string. |
| 536 |
|
| 537 |
Setting the maximum depth to one disallows any nesting, so that |
| 538 |
ensures that the object is only a single hash/object or array. |
| 539 |
|
| 540 |
The argument to "max_depth" will be rounded up to the next highest |
| 541 |
power of two. If no argument is given, the highest possible setting |
| 542 |
will be used, which is rarely useful. |
| 543 |
|
| 544 |
See SECURITY CONSIDERATIONS, below, for more info on why this is |
| 545 |
useful. |
| 546 |
|
| 547 |
$json = $json->max_size ([$maximum_string_size]) |
| 548 |
$max_size = $json->get_max_size |
| 549 |
Set the maximum length a JSON text may have (in bytes) where |
| 550 |
decoding is being attempted. The default is 0, meaning no limit. |
| 551 |
When "decode" is called on a string longer then this number of |
| 552 |
characters it will not attempt to decode the string but throw an |
| 553 |
exception. This setting has no effect on "encode" (yet). |
| 554 |
|
| 555 |
The argument to "max_size" will be rounded up to the next highest |
| 556 |
power of two (so may be more than requested). If no argument is |
| 557 |
given, the limit check will be deactivated (same as when 0 is |
| 558 |
specified). |
| 559 |
|
| 560 |
See SECURITY CONSIDERATIONS, below, for more info on why this is |
| 561 |
useful. |
| 562 |
|
| 563 |
$json_text = $json->encode ($perl_scalar) |
| 564 |
Converts the given Perl data structure (a simple scalar or a |
| 565 |
reference to a hash or array) to its JSON representation. Simple |
| 566 |
scalars will be converted into JSON string or number sequences, |
| 567 |
while references to arrays become JSON arrays and references to |
| 568 |
hashes become JSON objects. Undefined Perl values (e.g. "undef") |
| 569 |
become JSON "null" values. Neither "true" nor "false" values will be |
| 570 |
generated. |
| 571 |
|
| 572 |
$perl_scalar = $json->decode ($json_text) |
| 573 |
The opposite of "encode": expects a JSON text and tries to parse it, |
| 574 |
returning the resulting simple scalar or reference. Croaks on error. |
| 575 |
|
| 576 |
JSON numbers and strings become simple Perl scalars. JSON arrays |
| 577 |
become Perl arrayrefs and JSON objects become Perl hashrefs. "true" |
| 578 |
becomes 1, "false" becomes 0 and "null" becomes "undef". |
| 579 |
|
| 580 |
($perl_scalar, $characters) = $json->decode_prefix ($json_text) |
| 581 |
This works like the "decode" method, but instead of raising an |
| 582 |
exception when there is trailing garbage after the first JSON |
| 583 |
object, it will silently stop parsing there and return the number of |
| 584 |
characters consumed so far. |
| 585 |
|
| 586 |
This is useful if your JSON texts are not delimited by an outer |
| 587 |
protocol (which is not the brightest thing to do in the first place) |
| 588 |
and you need to know where the JSON text ends. |
| 589 |
|
| 590 |
JSON::XS->new->decode_prefix ("[1] the tail") |
| 591 |
=> ([], 3) |
| 592 |
|
| 593 |
MAPPING |
| 594 |
This section describes how JSON::XS maps Perl values to JSON values and |
| 595 |
vice versa. These mappings are designed to "do the right thing" in most |
| 596 |
circumstances automatically, preserving round-tripping characteristics |
| 597 |
(what you put in comes out as something equivalent). |
| 598 |
|
| 599 |
For the more enlightened: note that in the following descriptions, |
| 600 |
lowercase *perl* refers to the Perl interpreter, while uppercase *Perl* |
| 601 |
refers to the abstract Perl language itself. |
| 602 |
|
| 603 |
JSON -> PERL |
| 604 |
object |
| 605 |
A JSON object becomes a reference to a hash in Perl. No ordering of |
| 606 |
object keys is preserved (JSON does not preserve object key ordering |
| 607 |
itself). |
| 608 |
|
| 609 |
array |
| 610 |
A JSON array becomes a reference to an array in Perl. |
| 611 |
|
| 612 |
string |
| 613 |
A JSON string becomes a string scalar in Perl - Unicode codepoints |
| 614 |
in JSON are represented by the same codepoints in the Perl string, |
| 615 |
so no manual decoding is necessary. |
| 616 |
|
| 617 |
number |
| 618 |
A JSON number becomes either an integer, numeric (floating point) or |
| 619 |
string scalar in perl, depending on its range and any fractional |
| 620 |
parts. On the Perl level, there is no difference between those as |
| 621 |
Perl handles all the conversion details, but an integer may take |
| 622 |
slightly less memory and might represent more values exactly than |
| 623 |
(floating point) numbers. |
| 624 |
|
| 625 |
If the number consists of digits only, JSON::XS will try to |
| 626 |
represent it as an integer value. If that fails, it will try to |
| 627 |
represent it as a numeric (floating point) value if that is possible |
| 628 |
without loss of precision. Otherwise it will preserve the number as |
| 629 |
a string value. |
| 630 |
|
| 631 |
Numbers containing a fractional or exponential part will always be |
| 632 |
represented as numeric (floating point) values, possibly at a loss |
| 633 |
of precision. |
| 634 |
|
| 635 |
This might create round-tripping problems as numbers might become |
| 636 |
strings, but as Perl is typeless there is no other way to do it. |
| 637 |
|
| 638 |
true, false |
| 639 |
These JSON atoms become "JSON::XS::true" and "JSON::XS::false", |
| 640 |
respectively. They are overloaded to act almost exactly like the |
| 641 |
numbers 1 and 0. You can check whether a scalar is a JSON boolean by |
| 642 |
using the "JSON::XS::is_bool" function. |
| 643 |
|
| 644 |
null |
| 645 |
A JSON null atom becomes "undef" in Perl. |
| 646 |
|
| 647 |
PERL -> JSON |
| 648 |
The mapping from Perl to JSON is slightly more difficult, as Perl is a |
| 649 |
truly typeless language, so we can only guess which JSON type is meant |
| 650 |
by a Perl value. |
| 651 |
|
| 652 |
hash references |
| 653 |
Perl hash references become JSON objects. As there is no inherent |
| 654 |
ordering in hash keys (or JSON objects), they will usually be |
| 655 |
encoded in a pseudo-random order that can change between runs of the |
| 656 |
same program but stays generally the same within a single run of a |
| 657 |
program. JSON::XS can optionally sort the hash keys (determined by |
| 658 |
the *canonical* flag), so the same datastructure will serialise to |
| 659 |
the same JSON text (given same settings and version of JSON::XS), |
| 660 |
but this incurs a runtime overhead and is only rarely useful, e.g. |
| 661 |
when you want to compare some JSON text against another for |
| 662 |
equality. |
| 663 |
|
| 664 |
array references |
| 665 |
Perl array references become JSON arrays. |
| 666 |
|
| 667 |
other references |
| 668 |
Other unblessed references are generally not allowed and will cause |
| 669 |
an exception to be thrown, except for references to the integers 0 |
| 670 |
and 1, which get turned into "false" and "true" atoms in JSON. You |
| 671 |
can also use "JSON::XS::false" and "JSON::XS::true" to improve |
| 672 |
readability. |
| 673 |
|
| 674 |
encode_json [\0,JSON::XS::true] # yields [false,true] |
| 675 |
|
| 676 |
JSON::XS::true, JSON::XS::false |
| 677 |
These special values become JSON true and JSON false values, |
| 678 |
respectively. You can also use "\1" and "\0" directly if you want. |
| 679 |
|
| 680 |
blessed objects |
| 681 |
Blessed objects are not allowed. JSON::XS currently tries to encode |
| 682 |
their underlying representation (hash- or arrayref), but this |
| 683 |
behaviour might change in future versions. |
| 684 |
|
| 685 |
simple scalars |
| 686 |
Simple Perl scalars (any scalar that is not a reference) are the |
| 687 |
most difficult objects to encode: JSON::XS will encode undefined |
| 688 |
scalars as JSON null value, scalars that have last been used in a |
| 689 |
string context before encoding as JSON strings and anything else as |
| 690 |
number value: |
| 691 |
|
| 692 |
# dump as number |
| 693 |
encode_json [2] # yields [2] |
| 694 |
encode_json [-3.0e17] # yields [-3e+17] |
| 695 |
my $value = 5; encode_json [$value] # yields [5] |
| 696 |
|
| 697 |
# used as string, so dump as string |
| 698 |
print $value; |
| 699 |
encode_json [$value] # yields ["5"] |
| 700 |
|
| 701 |
# undef becomes null |
| 702 |
encode_json [undef] # yields [null] |
| 703 |
|
| 704 |
You can force the type to be a JSON string by stringifying it: |
| 705 |
|
| 706 |
my $x = 3.1; # some variable containing a number |
| 707 |
"$x"; # stringified |
| 708 |
$x .= ""; # another, more awkward way to stringify |
| 709 |
print $x; # perl does it for you, too, quite often |
| 710 |
|
| 711 |
You can force the type to be a JSON number by numifying it: |
| 712 |
|
| 713 |
my $x = "3"; # some variable containing a string |
| 714 |
$x += 0; # numify it, ensuring it will be dumped as a number |
| 715 |
$x *= 1; # same thing, the choice is yours. |
| 716 |
|
| 717 |
You can not currently force the type in other, less obscure, ways. |
| 718 |
Tell me if you need this capability. |
| 719 |
|
| 720 |
COMPARISON |
| 721 |
As already mentioned, this module was created because none of the |
| 722 |
existing JSON modules could be made to work correctly. First I will |
| 723 |
describe the problems (or pleasures) I encountered with various existing |
| 724 |
JSON modules, followed by some benchmark values. JSON::XS was designed |
| 725 |
not to suffer from any of these problems or limitations. |
| 726 |
|
| 727 |
JSON 1.07 |
| 728 |
Slow (but very portable, as it is written in pure Perl). |
| 729 |
|
| 730 |
Undocumented/buggy Unicode handling (how JSON handles Unicode values |
| 731 |
is undocumented. One can get far by feeding it Unicode strings and |
| 732 |
doing en-/decoding oneself, but Unicode escapes are not working |
| 733 |
properly). |
| 734 |
|
| 735 |
No round-tripping (strings get clobbered if they look like numbers, |
| 736 |
e.g. the string 2.0 will encode to 2.0 instead of "2.0", and that |
| 737 |
will decode into the number 2. |
| 738 |
|
| 739 |
JSON::PC 0.01 |
| 740 |
Very fast. |
| 741 |
|
| 742 |
Undocumented/buggy Unicode handling. |
| 743 |
|
| 744 |
No round-tripping. |
| 745 |
|
| 746 |
Has problems handling many Perl values (e.g. regex results and other |
| 747 |
magic values will make it croak). |
| 748 |
|
| 749 |
Does not even generate valid JSON ("{1,2}" gets converted to "{1:2}" |
| 750 |
which is not a valid JSON text. |
| 751 |
|
| 752 |
Unmaintained (maintainer unresponsive for many months, bugs are not |
| 753 |
getting fixed). |
| 754 |
|
| 755 |
JSON::Syck 0.21 |
| 756 |
Very buggy (often crashes). |
| 757 |
|
| 758 |
Very inflexible (no human-readable format supported, format pretty |
| 759 |
much undocumented. I need at least a format for easy reading by |
| 760 |
humans and a single-line compact format for use in a protocol, and |
| 761 |
preferably a way to generate ASCII-only JSON texts). |
| 762 |
|
| 763 |
Completely broken (and confusingly documented) Unicode handling |
| 764 |
(Unicode escapes are not working properly, you need to set |
| 765 |
ImplicitUnicode to *different* values on en- and decoding to get |
| 766 |
symmetric behaviour). |
| 767 |
|
| 768 |
No round-tripping (simple cases work, but this depends on whether |
| 769 |
the scalar value was used in a numeric context or not). |
| 770 |
|
| 771 |
Dumping hashes may skip hash values depending on iterator state. |
| 772 |
|
| 773 |
Unmaintained (maintainer unresponsive for many months, bugs are not |
| 774 |
getting fixed). |
| 775 |
|
| 776 |
Does not check input for validity (i.e. will accept non-JSON input |
| 777 |
and return "something" instead of raising an exception. This is a |
| 778 |
security issue: imagine two banks transferring money between each |
| 779 |
other using JSON. One bank might parse a given non-JSON request and |
| 780 |
deduct money, while the other might reject the transaction with a |
| 781 |
syntax error. While a good protocol will at least recover, that is |
| 782 |
extra unnecessary work and the transaction will still not succeed). |
| 783 |
|
| 784 |
JSON::DWIW 0.04 |
| 785 |
Very fast. Very natural. Very nice. |
| 786 |
|
| 787 |
Undocumented Unicode handling (but the best of the pack. Unicode |
| 788 |
escapes still don't get parsed properly). |
| 789 |
|
| 790 |
Very inflexible. |
| 791 |
|
| 792 |
No round-tripping. |
| 793 |
|
| 794 |
Does not generate valid JSON texts (key strings are often unquoted, |
| 795 |
empty keys result in nothing being output) |
| 796 |
|
| 797 |
Does not check input for validity. |
| 798 |
|
| 799 |
JSON and YAML |
| 800 |
You often hear that JSON is a subset (or a close subset) of YAML. This |
| 801 |
is, however, a mass hysteria and very far from the truth. In general, |
| 802 |
there is no way to configure JSON::XS to output a data structure as |
| 803 |
valid YAML. |
| 804 |
|
| 805 |
If you really must use JSON::XS to generate YAML, you should use this |
| 806 |
algorithm (subject to change in future versions): |
| 807 |
|
| 808 |
my $to_yaml = JSON::XS->new->utf8->space_after (1); |
| 809 |
my $yaml = $to_yaml->encode ($ref) . "\n"; |
| 810 |
|
| 811 |
This will usually generate JSON texts that also parse as valid YAML. |
| 812 |
Please note that YAML has hardcoded limits on (simple) object key |
| 813 |
lengths that JSON doesn't have, so you should make sure that your hash |
| 814 |
keys are noticeably shorter than the 1024 characters YAML allows. |
| 815 |
|
| 816 |
There might be other incompatibilities that I am not aware of. In |
| 817 |
general you should not try to generate YAML with a JSON generator or |
| 818 |
vice versa, or try to parse JSON with a YAML parser or vice versa: |
| 819 |
chances are high that you will run into severe interoperability |
| 820 |
problems. |
| 821 |
|
| 822 |
SPEED |
| 823 |
It seems that JSON::XS is surprisingly fast, as shown in the following |
| 824 |
tables. They have been generated with the help of the "eg/bench" program |
| 825 |
in the JSON::XS distribution, to make it easy to compare on your own |
| 826 |
system. |
| 827 |
|
| 828 |
First comes a comparison between various modules using a very short |
| 829 |
single-line JSON string: |
| 830 |
|
| 831 |
{"method": "handleMessage", "params": ["user1", "we were just talking"], \ |
| 832 |
"id": null, "array":[1,11,234,-5,1e5,1e7, true, false]} |
| 833 |
|
| 834 |
It shows the number of encodes/decodes per second (JSON::XS uses the |
| 835 |
functional interface, while JSON::XS/2 uses the OO interface with |
| 836 |
pretty-printing and hashkey sorting enabled, JSON::XS/3 enables shrink). |
| 837 |
Higher is better: |
| 838 |
|
| 839 |
module | encode | decode | |
| 840 |
-----------|------------|------------| |
| 841 |
JSON 1.x | 4990.842 | 4088.813 | |
| 842 |
JSON::DWIW | 51653.990 | 71575.154 | |
| 843 |
JSON::PC | 65948.176 | 74631.744 | |
| 844 |
JSON::PP | 8931.652 | 3817.168 | |
| 845 |
JSON::Syck | 24877.248 | 27776.848 | |
| 846 |
JSON::XS | 388361.481 | 227951.304 | |
| 847 |
JSON::XS/2 | 227951.304 | 218453.333 | |
| 848 |
JSON::XS/3 | 338250.323 | 218453.333 | |
| 849 |
Storable | 16500.016 | 135300.129 | |
| 850 |
-----------+------------+------------+ |
| 851 |
|
| 852 |
That is, JSON::XS is about five times faster than JSON::DWIW on |
| 853 |
encoding, about three times faster on decoding, and over forty times |
| 854 |
faster than JSON, even with pretty-printing and key sorting. It also |
| 855 |
compares favourably to Storable for small amounts of data. |
| 856 |
|
| 857 |
Using a longer test string (roughly 18KB, generated from Yahoo! Locals |
| 858 |
search API (http://nanoref.com/yahooapis/mgPdGg): |
| 859 |
|
| 860 |
module | encode | decode | |
| 861 |
-----------|------------|------------| |
| 862 |
JSON 1.x | 55.260 | 34.971 | |
| 863 |
JSON::DWIW | 825.228 | 1082.513 | |
| 864 |
JSON::PC | 3571.444 | 2394.829 | |
| 865 |
JSON::PP | 210.987 | 32.574 | |
| 866 |
JSON::Syck | 552.551 | 787.544 | |
| 867 |
JSON::XS | 5780.463 | 4854.519 | |
| 868 |
JSON::XS/2 | 3869.998 | 4798.975 | |
| 869 |
JSON::XS/3 | 5862.880 | 4798.975 | |
| 870 |
Storable | 4445.002 | 5235.027 | |
| 871 |
-----------+------------+------------+ |
| 872 |
|
| 873 |
Again, JSON::XS leads by far (except for Storable which non-surprisingly |
| 874 |
decodes faster). |
| 875 |
|
| 876 |
On large strings containing lots of high Unicode characters, some |
| 877 |
modules (such as JSON::PC) seem to decode faster than JSON::XS, but the |
| 878 |
result will be broken due to missing (or wrong) Unicode handling. Others |
| 879 |
refuse to decode or encode properly, so it was impossible to prepare a |
| 880 |
fair comparison table for that case. |
| 881 |
|
| 882 |
SECURITY CONSIDERATIONS |
| 883 |
When you are using JSON in a protocol, talking to untrusted potentially |
| 884 |
hostile creatures requires relatively few measures. |
| 885 |
|
| 886 |
First of all, your JSON decoder should be secure, that is, should not |
| 887 |
have any buffer overflows. Obviously, this module should ensure that and |
| 888 |
I am trying hard on making that true, but you never know. |
| 889 |
|
| 890 |
Second, you need to avoid resource-starving attacks. That means you |
| 891 |
should limit the size of JSON texts you accept, or make sure then when |
| 892 |
your resources run out, that's just fine (e.g. by using a separate |
| 893 |
process that can crash safely). The size of a JSON text in octets or |
| 894 |
characters is usually a good indication of the size of the resources |
| 895 |
required to decode it into a Perl structure. While JSON::XS can check |
| 896 |
the size of the JSON text, it might be too late when you already have it |
| 897 |
in memory, so you might want to check the size before you accept the |
| 898 |
string. |
| 899 |
|
| 900 |
Third, JSON::XS recurses using the C stack when decoding objects and |
| 901 |
arrays. The C stack is a limited resource: for instance, on my amd64 |
| 902 |
machine with 8MB of stack size I can decode around 180k nested arrays |
| 903 |
but only 14k nested JSON objects (due to perl itself recursing deeply on |
| 904 |
croak to free the temporary). If that is exceeded, the program crashes. |
| 905 |
to be conservative, the default nesting limit is set to 512. If your |
| 906 |
process has a smaller stack, you should adjust this setting accordingly |
| 907 |
with the "max_depth" method. |
| 908 |
|
| 909 |
And last but least, something else could bomb you that I forgot to think |
| 910 |
of. In that case, you get to keep the pieces. I am always open for |
| 911 |
hints, though... |
| 912 |
|
| 913 |
If you are using JSON::XS to return packets to consumption by JavaScript |
| 914 |
scripts in a browser you should have a look at |
| 915 |
<http://jpsykes.com/47/practical-csrf-and-json-security> to see whether |
| 916 |
you are vulnerable to some common attack vectors (which really are |
| 917 |
browser design bugs, but it is still you who will have to deal with it, |
| 918 |
as major browser developers care only for features, not about doing |
| 919 |
security right). |
| 920 |
|
| 921 |
THREADS |
| 922 |
This module is *not* guaranteed to be thread safe and there are no plans |
| 923 |
to change this until Perl gets thread support (as opposed to the |
| 924 |
horribly slow so-called "threads" which are simply slow and bloated |
| 925 |
process simulations - use fork, its *much* faster, cheaper, better). |
| 926 |
|
| 927 |
(It might actually work, but you have been warned). |
| 928 |
|
| 929 |
BUGS |
| 930 |
While the goal of this module is to be correct, that unfortunately does |
| 931 |
not mean its bug-free, only that I think its design is bug-free. It is |
| 932 |
still relatively early in its development. If you keep reporting bugs |
| 933 |
they will be fixed swiftly, though. |
| 934 |
|
| 935 |
Please refrain from using rt.cpan.org or any other bug reporting |
| 936 |
service. I put the contact address into my modules for a reason. |
| 937 |
|
| 938 |
AUTHOR |
| 939 |
Marc Lehmann <schmorp@schmorp.de> |
| 940 |
http://home.schmorp.de/ |
| 941 |
|