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      1 /**
      2 *******************************************************************************
      3 * Copyright (C) 2006-2016, International Business Machines Corporation and
      4 * others. All Rights Reserved.
      5 *******************************************************************************
      6 */
      7 
      8 package com.ibm.icu.charset;
      9 
     10 import java.lang.reflect.Constructor;
     11 import java.lang.reflect.InvocationTargetException;
     12 import java.nio.charset.Charset;
     13 import java.nio.charset.IllegalCharsetNameException;
     14 import java.nio.charset.UnsupportedCharsetException;
     15 import java.util.HashMap;
     16 
     17 import com.ibm.icu.text.UnicodeSet;
     18 
     19 /**
     20  * <p>A subclass of java.nio.Charset for providing implementation of ICU's charset converters.
     21  * This API is used to convert codepage or character encoded data to and
     22  * from UTF-16. You can open a converter with {@link Charset#forName} and {@link #forNameICU}. With that
     23  * converter, you can get its properties, set options, convert your data.
     24  *
     25  * <p>Since many software programs recognize different converter names for
     26  * different types of converters, there are other functions in this API to
     27  * iterate over the converter aliases.
     28  *
     29  * <p>Note that {@link #name()} cannot always return a unique charset name.
     30  * {@link Charset} documents that,
     31  * for charsets listed in the IANA Charset Registry,
     32  * the {@link #name()} must be listed there,
     33  * and it must be the MIME-preferred name if there are multiple names.
     34  *
     35  * <p>However, there are different implementations of many if not most charsets,
     36  * ICU provides multiple variants for some of them,
     37  * ICU provides variants of some java.nio-system-supported charsets,
     38  * and ICU users are free to add more variants.
     39  * This is so that applications can be compatible with multiple implementations at the same time.
     40  *
     41  * <p>This is in conflict with the {@link Charset#name()} requirements.
     42  * It is not possible to offer variants of an IANA charset and
     43  * always use the MIME-preferred name and also have those names be unique.
     44  *
     45  * <p>{@link #name()} returns the MIME-preferred name, or IANA name,
     46  * so that it can always be used for the charset field in internet protocols.
     47  *
     48  * <p>Same-name charsets are accessible via {@link Charset#forName} or {@link #forNameICU}
     49  * by using unique aliases (e.g., the ICU-canonical names).
     50  *
     51  * <p>{@link Charset} also documents that
     52  * Two charsets are equal if, and only if, they have the same canonical names.
     53  * This is not possible.
     54  *
     55  * <p>Unfortunately, {@link Charset#equals} is final, and
     56  * {@link Charset#availableCharsets} returns
     57  * a sorted map from canonical charset names to charset objects.
     58  * Since {@link #name()} cannot be unique,
     59  * {@link #equals} cannot work properly in such cases, and
     60  * {@link Charset#availableCharsets} can only include one variant for a name.
     61  *
     62  * @stable ICU 3.6
     63  */
     64 public abstract class CharsetICU extends Charset{
     65 
     66      String icuCanonicalName;
     67      int options;
     68 
     69      float  maxCharsPerByte;
     70 
     71      String name; /* +4: 60  internal name of the converter- invariant chars */
     72 
     73      int codepage;               /* +64: 4 codepage # (now IBM-$codepage) */
     74 
     75      byte platform;                /* +68: 1 platform of the converter (only IBM now) */
     76      byte conversionType;          /* +69: 1 conversion type */
     77 
     78      int minBytesPerChar;         /* +70: 1 Minimum # bytes per char in this codepage */
     79      int maxBytesPerChar;         /* +71: 1 Maximum # bytes output per UChar in this codepage */
     80 
     81      byte subChar[/*UCNV_MAX_SUBCHAR_LEN*/]; /* +72: 4  [note:  4 and 8 byte boundary] */
     82      byte subCharLen;              /* +76: 1 */
     83 
     84      byte hasToUnicodeFallback;   /* +77: 1 UBool needs to be changed to UBool to be consistent across platform */
     85      byte hasFromUnicodeFallback; /* +78: 1 */
     86      short unicodeMask;            /* +79: 1  bit 0: has supplementary  bit 1: has single surrogates */
     87      byte subChar1;               /* +80: 1  single-byte substitution character for IBM MBCS (0 if none) */
     88      //byte reserved[/*19*/];           /* +81: 19 to round out the structure */
     89 
     90 
     91     // typedef enum UConverterUnicodeSet {
     92      /**
     93       * Parameter that select the set of roundtrippable Unicode code points.
     94       * @stable ICU 4.0
     95       */
     96       public static final int ROUNDTRIP_SET=0;
     97       /**
     98        * Select the set of Unicode code points with roundtrip or fallback mappings.
     99        * Not supported at this point.
    100        * @internal
    101        * @deprecated This API is ICU internal only.
    102        */
    103       @Deprecated
    104       public static final int ROUNDTRIP_AND_FALLBACK_SET =1;
    105 
    106     //} UConverterUnicodeSet;
    107 
    108     /**
    109      *
    110      * @param icuCanonicalName
    111      * @param canonicalName
    112      * @param aliases
    113      * @stable ICU 3.6
    114      */
    115     protected CharsetICU(String icuCanonicalName, String canonicalName, String[] aliases) {
    116         super(canonicalName,aliases);
    117         if(canonicalName.length() == 0){
    118             throw new IllegalCharsetNameException(canonicalName);
    119         }
    120         this.icuCanonicalName  = icuCanonicalName;
    121     }
    122 
    123     /**
    124      * Ascertains if a charset is a sub set of this charset
    125      * Implements the abstract method of super class.
    126      * @param cs charset to test
    127      * @return true if the given charset is a subset of this charset
    128      * @stable ICU 3.6
    129      */
    130     public boolean contains(Charset cs){
    131         if (null == cs) {
    132             return false;
    133         } else if (this.equals(cs)) {
    134             return true;
    135         }
    136         return false;
    137     }
    138     private static final HashMap<String, String> algorithmicCharsets = new HashMap<String, String>();
    139     static{
    140         algorithmicCharsets.put("LMBCS-1",               "com.ibm.icu.charset.CharsetLMBCS");
    141         algorithmicCharsets.put("LMBCS-2",               "com.ibm.icu.charset.CharsetLMBCS");
    142         algorithmicCharsets.put("LMBCS-3",               "com.ibm.icu.charset.CharsetLMBCS");
    143         algorithmicCharsets.put("LMBCS-4",               "com.ibm.icu.charset.CharsetLMBCS");
    144         algorithmicCharsets.put("LMBCS-5",               "com.ibm.icu.charset.CharsetLMBCS");
    145         algorithmicCharsets.put("LMBCS-6",               "com.ibm.icu.charset.CharsetLMBCS");
    146         algorithmicCharsets.put("LMBCS-8",               "com.ibm.icu.charset.CharsetLMBCS");
    147         algorithmicCharsets.put("LMBCS-11",              "com.ibm.icu.charset.CharsetLMBCS");
    148         algorithmicCharsets.put("LMBCS-16",              "com.ibm.icu.charset.CharsetLMBCS");
    149         algorithmicCharsets.put("LMBCS-17",              "com.ibm.icu.charset.CharsetLMBCS");
    150         algorithmicCharsets.put("LMBCS-18",              "com.ibm.icu.charset.CharsetLMBCS");
    151         algorithmicCharsets.put("LMBCS-19",              "com.ibm.icu.charset.CharsetLMBCS");
    152         algorithmicCharsets.put("BOCU-1",                "com.ibm.icu.charset.CharsetBOCU1" );
    153         algorithmicCharsets.put("SCSU",                  "com.ibm.icu.charset.CharsetSCSU" );
    154         algorithmicCharsets.put("US-ASCII",              "com.ibm.icu.charset.CharsetASCII" );
    155         algorithmicCharsets.put("ISO-8859-1",            "com.ibm.icu.charset.Charset88591" );
    156         algorithmicCharsets.put("UTF-16",                "com.ibm.icu.charset.CharsetUTF16" );
    157         algorithmicCharsets.put("UTF-16BE",              "com.ibm.icu.charset.CharsetUTF16BE" );
    158         algorithmicCharsets.put("UTF-16BE,version=1",    "com.ibm.icu.charset.CharsetUTF16BE" );
    159         algorithmicCharsets.put("UTF-16LE",              "com.ibm.icu.charset.CharsetUTF16LE" );
    160         algorithmicCharsets.put("UTF-16LE,version=1",    "com.ibm.icu.charset.CharsetUTF16LE" );
    161         algorithmicCharsets.put("UTF16_OppositeEndian",  "com.ibm.icu.charset.CharsetUTF16LE" );
    162         algorithmicCharsets.put("UTF16_PlatformEndian",  "com.ibm.icu.charset.CharsetUTF16" );
    163         algorithmicCharsets.put("UTF-32",                "com.ibm.icu.charset.CharsetUTF32" );
    164         algorithmicCharsets.put("UTF-32BE",              "com.ibm.icu.charset.CharsetUTF32BE" );
    165         algorithmicCharsets.put("UTF-32LE",              "com.ibm.icu.charset.CharsetUTF32LE" );
    166         algorithmicCharsets.put("UTF32_OppositeEndian",  "com.ibm.icu.charset.CharsetUTF32LE" );
    167         algorithmicCharsets.put("UTF32_PlatformEndian",  "com.ibm.icu.charset.CharsetUTF32" );
    168         algorithmicCharsets.put("UTF-8",                 "com.ibm.icu.charset.CharsetUTF8" );
    169         algorithmicCharsets.put("CESU-8",                "com.ibm.icu.charset.CharsetCESU8" );
    170         algorithmicCharsets.put("UTF-7",                 "com.ibm.icu.charset.CharsetUTF7" );
    171         algorithmicCharsets.put("ISCII,version=0",       "com.ibm.icu.charset.CharsetISCII" );
    172         algorithmicCharsets.put("ISCII,version=1",       "com.ibm.icu.charset.CharsetISCII" );
    173         algorithmicCharsets.put("ISCII,version=2",       "com.ibm.icu.charset.CharsetISCII" );
    174         algorithmicCharsets.put("ISCII,version=3",       "com.ibm.icu.charset.CharsetISCII" );
    175         algorithmicCharsets.put("ISCII,version=4",       "com.ibm.icu.charset.CharsetISCII" );
    176         algorithmicCharsets.put("ISCII,version=5",       "com.ibm.icu.charset.CharsetISCII" );
    177         algorithmicCharsets.put("ISCII,version=6",       "com.ibm.icu.charset.CharsetISCII" );
    178         algorithmicCharsets.put("ISCII,version=7",       "com.ibm.icu.charset.CharsetISCII" );
    179         algorithmicCharsets.put("ISCII,version=8",       "com.ibm.icu.charset.CharsetISCII" );
    180         algorithmicCharsets.put("IMAP-mailbox-name",     "com.ibm.icu.charset.CharsetUTF7" );
    181         algorithmicCharsets.put("HZ",                    "com.ibm.icu.charset.CharsetHZ" );
    182         algorithmicCharsets.put("ISO_2022,locale=ja,version=0",               "com.ibm.icu.charset.CharsetISO2022" );
    183         algorithmicCharsets.put("ISO_2022,locale=ja,version=1",               "com.ibm.icu.charset.CharsetISO2022" );
    184         algorithmicCharsets.put("ISO_2022,locale=ja,version=2",               "com.ibm.icu.charset.CharsetISO2022" );
    185         algorithmicCharsets.put("ISO_2022,locale=ja,version=3",               "com.ibm.icu.charset.CharsetISO2022" );
    186         algorithmicCharsets.put("ISO_2022,locale=ja,version=4",               "com.ibm.icu.charset.CharsetISO2022" );
    187         algorithmicCharsets.put("ISO_2022,locale=zh,version=0",               "com.ibm.icu.charset.CharsetISO2022" );
    188         algorithmicCharsets.put("ISO_2022,locale=zh,version=1",               "com.ibm.icu.charset.CharsetISO2022" );
    189         algorithmicCharsets.put("ISO_2022,locale=zh,version=2",               "com.ibm.icu.charset.CharsetISO2022" );
    190         algorithmicCharsets.put("ISO_2022,locale=ko,version=0",               "com.ibm.icu.charset.CharsetISO2022" );
    191         algorithmicCharsets.put("ISO_2022,locale=ko,version=1",               "com.ibm.icu.charset.CharsetISO2022" );
    192         algorithmicCharsets.put("x11-compound-text",                          "com.ibm.icu.charset.CharsetCompoundText" );
    193         }
    194 
    195     /*public*/ static final Charset getCharset(String icuCanonicalName, String javaCanonicalName, String[] aliases){
    196        String className = algorithmicCharsets.get(icuCanonicalName);
    197        if(className==null){
    198            //all the cnv files are loaded as MBCS
    199            className = "com.ibm.icu.charset.CharsetMBCS";
    200        }
    201        try{
    202            CharsetICU conv = null;
    203            Class<? extends CharsetICU> cs = Class.forName(className).asSubclass(CharsetICU.class);
    204            Class<?>[] paramTypes = new Class<?>[]{ String.class, String.class,  String[].class};
    205            final Constructor<? extends CharsetICU> c = cs.getConstructor(paramTypes);
    206            Object[] params = new Object[]{ icuCanonicalName, javaCanonicalName, aliases};
    207 
    208            // Run constructor
    209            try {
    210                conv = c.newInstance(params);
    211                if (conv != null) {
    212                    return conv;
    213                }
    214            }catch (InvocationTargetException e) {
    215                Throwable cause = e.getCause();
    216                UnsupportedCharsetException e2 = new UnsupportedCharsetException(
    217                        icuCanonicalName + ": " + "Could not load " + className + ". Exception: " + cause);
    218                e2.initCause(cause);
    219                throw e2;
    220            }
    221        }catch(ClassNotFoundException ex){
    222        }catch(NoSuchMethodException ex){
    223        }catch (IllegalAccessException ex){
    224        }catch (InstantiationException ex){
    225        }
    226        throw new UnsupportedCharsetException( icuCanonicalName+": "+"Could not load " + className);
    227     }
    228 
    229     static final boolean isSurrogate(int c){
    230         return (((c)&0xfffff800)==0xd800);
    231     }
    232 
    233     /*
    234      * Returns the default charset name
    235      */
    236 //    static final String getDefaultCharsetName(){
    237 //        String defaultEncoding = new InputStreamReader(new ByteArrayInputStream(new byte[0])).getEncoding();
    238 //        return defaultEncoding;
    239 //    }
    240 
    241     /**
    242      * Returns a charset object for the named charset.
    243      * This method gurantee that ICU charset is returned when
    244      * available.  If the ICU charset provider does not support
    245      * the specified charset, then try other charset providers
    246      * including the standard Java charset provider.
    247      *
    248      * @param charsetName The name of the requested charset,
    249      * may be either a canonical name or an alias
    250      * @return A charset object for the named charset
    251      * @throws IllegalCharsetNameException If the given charset name
    252      * is illegal
    253      * @throws UnsupportedCharsetException If no support for the
    254      * named charset is available in this instance of th Java
    255      * virtual machine
    256      * @stable ICU 3.6
    257      */
    258     public static Charset forNameICU(String charsetName) throws IllegalCharsetNameException, UnsupportedCharsetException {
    259         CharsetProviderICU icuProvider = new CharsetProviderICU();
    260         CharsetICU cs = (CharsetICU) icuProvider.charsetForName(charsetName);
    261         if (cs != null) {
    262             return cs;
    263         }
    264         return Charset.forName(charsetName);
    265     }
    266 
    267 //    /**
    268 //     * @see java.lang.Comparable#compareTo(java.lang.Object)
    269 //     * @stable 3.8
    270 //     */
    271 //    public int compareTo(Object otherObj) {
    272 //        if (!(otherObj instanceof CharsetICU)) {
    273 //            return -1;
    274 //        }
    275 //        return icuCanonicalName.compareTo(((CharsetICU)otherObj).icuCanonicalName);
    276 //    }
    277 
    278     /**
    279      * This follows ucnv.c method ucnv_detectUnicodeSignature() to detect the
    280      * start of the stream for example U+FEFF (the Unicode BOM/signature
    281      * character) that can be ignored.
    282      *
    283      * Detects Unicode signature byte sequences at the start of the byte stream
    284      * and returns number of bytes of the BOM of the indicated Unicode charset.
    285      * 0 is returned when no Unicode signature is recognized.
    286      *
    287      */
    288     // TODO This should be proposed as CharsetDecoderICU API.
    289 //    static String detectUnicodeSignature(ByteBuffer source) {
    290 //        int signatureLength = 0; // number of bytes of the signature
    291 //        final int SIG_MAX_LEN = 5;
    292 //        String sigUniCharset = null; // states what unicode charset is the BOM
    293 //        int i = 0;
    294 //
    295 //        /*
    296 //         * initial 0xa5 bytes: make sure that if we read <SIG_MAX_LEN bytes we
    297 //         * don't misdetect something
    298 //         */
    299 //        byte start[] = { (byte) 0xa5, (byte) 0xa5, (byte) 0xa5, (byte) 0xa5,
    300 //                (byte) 0xa5 };
    301 //
    302 //        while (i < source.remaining() && i < SIG_MAX_LEN) {
    303 //            start[i] = source.get(i);
    304 //            i++;
    305 //        }
    306 //
    307 //        if (start[0] == (byte) 0xFE && start[1] == (byte) 0xFF) {
    308 //            signatureLength = 2;
    309 //            sigUniCharset = "UTF-16BE";
    310 //            source.position(signatureLength);
    311 //            return sigUniCharset;
    312 //        } else if (start[0] == (byte) 0xFF && start[1] == (byte) 0xFE) {
    313 //            if (start[2] == (byte) 0x00 && start[3] == (byte) 0x00) {
    314 //                signatureLength = 4;
    315 //                sigUniCharset = "UTF-32LE";
    316 //                source.position(signatureLength);
    317 //                return sigUniCharset;
    318 //            } else {
    319 //                signatureLength = 2;
    320 //                sigUniCharset = "UTF-16LE";
    321 //                source.position(signatureLength);
    322 //                return sigUniCharset;
    323 //            }
    324 //        } else if (start[0] == (byte) 0xEF && start[1] == (byte) 0xBB
    325 //                && start[2] == (byte) 0xBF) {
    326 //            signatureLength = 3;
    327 //            sigUniCharset = "UTF-8";
    328 //            source.position(signatureLength);
    329 //            return sigUniCharset;
    330 //        } else if (start[0] == (byte) 0x00 && start[1] == (byte) 0x00
    331 //                && start[2] == (byte) 0xFE && start[3] == (byte) 0xFF) {
    332 //            signatureLength = 4;
    333 //            sigUniCharset = "UTF-32BE";
    334 //            source.position(signatureLength);
    335 //            return sigUniCharset;
    336 //        } else if (start[0] == (byte) 0x0E && start[1] == (byte) 0xFE
    337 //                && start[2] == (byte) 0xFF) {
    338 //            signatureLength = 3;
    339 //            sigUniCharset = "SCSU";
    340 //            source.position(signatureLength);
    341 //            return sigUniCharset;
    342 //        } else if (start[0] == (byte) 0xFB && start[1] == (byte) 0xEE
    343 //                && start[2] == (byte) 0x28) {
    344 //            signatureLength = 3;
    345 //            sigUniCharset = "BOCU-1";
    346 //            source.position(signatureLength);
    347 //            return sigUniCharset;
    348 //        } else if (start[0] == (byte) 0x2B && start[1] == (byte) 0x2F
    349 //                && start[2] == (byte) 0x76) {
    350 //
    351 //            if (start[3] == (byte) 0x38 && start[4] == (byte) 0x2D) {
    352 //                signatureLength = 5;
    353 //                sigUniCharset = "UTF-7";
    354 //                source.position(signatureLength);
    355 //                return sigUniCharset;
    356 //            } else if (start[3] == (byte) 0x38 || start[3] == (byte) 0x39
    357 //                    || start[3] == (byte) 0x2B || start[3] == (byte) 0x2F) {
    358 //                signatureLength = 4;
    359 //                sigUniCharset = "UTF-7";
    360 //                source.position(signatureLength);
    361 //                return sigUniCharset;
    362 //            }
    363 //        } else if (start[0] == (byte) 0xDD && start[2] == (byte) 0x73
    364 //                && start[2] == (byte) 0x66 && start[3] == (byte) 0x73) {
    365 //            signatureLength = 4;
    366 //            sigUniCharset = "UTF-EBCDIC";
    367 //            source.position(signatureLength);
    368 //            return sigUniCharset;
    369 //        }
    370 //
    371 //        /* no known Unicode signature byte sequence recognized */
    372 //        return null;
    373 //    }
    374 
    375 
    376     abstract void getUnicodeSetImpl(UnicodeSet setFillIn, int which);
    377 
    378     /**
    379     * Returns the set of Unicode code points that can be converted by an ICU Converter.
    380     *
    381     * <p>The current implementation returns only one kind of set (UCNV_ROUNDTRIP_SET): The set of all Unicode code points that can be
    382     * roundtrip-converted (converted without any data loss) with the converter This set will not include code points that have fallback
    383     * mappings or are only the result of reverse fallback mappings.  See UTR #22 "Character Mapping Markup Language" at  <a href="http://www.unicode.org/reports/tr22/">http://www.unicode.org/reports/tr22/</a>
    384     *
    385     * <p>In the future, there may be more UConverterUnicodeSet choices to select sets with different properties.
    386     *
    387     * <p>This is useful for example for
    388     * <ul><li>checking that a string or document can be roundtrip-converted with a converter,
    389     *   without/before actually performing the conversion</li>
    390     * <li>testing if a converter can be used for text for typical text for a certain locale,
    391     *   by comparing its roundtrip set with the set of ExemplarCharacters from
    392     *   ICU's locale data or other sources</li></ul>
    393     *
    394     * @param setFillIn A valid UnicodeSet. It will be cleared by this function before
    395     *                   the converter's specific set is filled in.
    396     * @param which A selector; currently ROUNDTRIP_SET is the only supported value.
    397     * @throws IllegalArgumentException if the parameters does not match.
    398     * @stable ICU 4.0
    399     */
    400        public void getUnicodeSet(UnicodeSet setFillIn, int which){
    401            if( setFillIn == null || which != ROUNDTRIP_SET ){
    402                throw new IllegalArgumentException();
    403            }
    404            setFillIn.clear();
    405            getUnicodeSetImpl(setFillIn, which);
    406        }
    407 
    408        /**
    409         * Returns whether or not the charset of the converter has a fixed number of bytes
    410         * per charset character.
    411         * An example of this are converters that are of the type UCNV_SBCS or UCNV_DBCS.
    412         * Another example is UTF-32 which is always 4 bytes per character.  A UTF-32 code point
    413         * may represent more than one UTF-8 or UTF-16 code units but always have size of 4 bytes.
    414         * Note: This method is not intended to be used to determine whether the charset has a
    415         * fixed ratio of bytes to Unicode codes units for any particular Unicode encoding form.
    416         * @return true if the converter is fixed-width
    417         * @stable ICU 4.8
    418         */
    419        public boolean isFixedWidth() {
    420            if (this instanceof CharsetASCII || this instanceof CharsetUTF32) {
    421                return true;
    422            }
    423 
    424            if (this instanceof CharsetMBCS) {
    425                if (((CharsetMBCS)this).sharedData.staticData.maxBytesPerChar == ((CharsetMBCS)this).sharedData.staticData.minBytesPerChar) {
    426                    return true;
    427                }
    428            }
    429 
    430            return false;
    431        }
    432 
    433        static void getNonSurrogateUnicodeSet(UnicodeSet setFillIn){
    434            setFillIn.add(0, 0xd7ff);
    435            setFillIn.add(0xe000, 0x10ffff);
    436        }
    437 
    438        static void getCompleteUnicodeSet(UnicodeSet setFillIn){
    439            setFillIn.add(0, 0x10ffff);
    440        }
    441 }
    442