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1/*
2**********************************************************************
729e4ab9 3* Copyright (C) 1999-2009, International Business Machines
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4* Corporation and others. All Rights Reserved.
5**********************************************************************
6*
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7* ucnv_cnv.h:
8* Definitions for converter implementations.
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9*
10* Modification History:
11*
12* Date Name Description
13* 05/09/00 helena Added implementation to handle fallback mappings.
14* 06/29/2000 helena Major rewrite of the callback APIs.
15*/
16
17#ifndef UCNV_CNV_H
18#define UCNV_CNV_H
19
20#include "unicode/utypes.h"
b75a7d8f 21
374ca955 22#if !UCONFIG_NO_CONVERSION
b75a7d8f 23
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24#include "unicode/ucnv.h"
25#include "unicode/ucnv_err.h"
26#include "unicode/uset.h"
27#include "uset_imp.h"
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28
29U_CDECL_BEGIN
30
31/* this is used in fromUnicode DBCS tables as an "unassigned" marker */
32#define missingCharMarker 0xFFFF
33
34/*
35 * #define missingUCharMarker 0xfffe
36 *
374ca955 37 * commented out because there are actually two values used in toUnicode tables:
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38 * U+fffe "unassigned"
39 * U+ffff "illegal"
40 */
41
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42/** Forward declaration, see ucnv_bld.h */
43struct UConverterSharedData;
44typedef struct UConverterSharedData UConverterSharedData;
45
46/* function types for UConverterImpl ---------------------------------------- */
b75a7d8f 47
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48/* struct with arguments for UConverterLoad and ucnv_load() */
49typedef struct {
50 int32_t size; /* sizeof(UConverterLoadArgs) */
51 int32_t nestedLoads; /* count nested ucnv_load() calls */
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52 UBool onlyTestIsLoadable; /* input: don't actually load */
53 UBool reserved0; /* reserved - for good alignment of the pointers */
54 int16_t reserved; /* reserved - for good alignment of the pointers */
374ca955 55 uint32_t options;
729e4ab9 56 const char *pkg, *name, *locale;
374ca955 57} UConverterLoadArgs;
b75a7d8f 58
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59typedef void (*UConverterLoad) (UConverterSharedData *sharedData,
60 UConverterLoadArgs *pArgs,
61 const uint8_t *raw, UErrorCode *pErrorCode);
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62typedef void (*UConverterUnload) (UConverterSharedData *sharedData);
63
729e4ab9 64typedef void (*UConverterOpen) (UConverter *cnv, UConverterLoadArgs *pArgs, UErrorCode *pErrorCode);
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65typedef void (*UConverterClose) (UConverter *cnv);
66
67typedef enum UConverterResetChoice {
68 UCNV_RESET_BOTH,
69 UCNV_RESET_TO_UNICODE,
70 UCNV_RESET_FROM_UNICODE
71} UConverterResetChoice;
72
73typedef void (*UConverterReset) (UConverter *cnv, UConverterResetChoice choice);
74
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75/*
76 * Converter implementation function(s) for ucnv_toUnicode().
77 * If the toUnicodeWithOffsets function pointer is NULL,
78 * then the toUnicode function will be used and the offsets will be set to -1.
79 *
80 * Must maintain state across buffers. Use toUBytes[toULength] for partial input
81 * sequences; it will be checked in ucnv.c at the end of the input stream
82 * to detect truncated input.
83 * Some converters may need additional detection and may then set U_TRUNCATED_CHAR_FOUND.
84 *
85 * The toUnicodeWithOffsets must write exactly as many offset values as target
86 * units. Write offset values of -1 for when the source index corresponding to
87 * the output unit is not known (e.g., the character started in an earlier buffer).
88 * The pArgs->offsets pointer need not be moved forward.
89 *
90 * At function return, either one of the following conditions must be true:
91 * - U_BUFFER_OVERFLOW_ERROR and the target is full: target==targetLimit
92 * - another error code with toUBytes[toULength] set to the offending input
93 * - no error, and the source is consumed: source==sourceLimit
94 *
95 * The ucnv.c code will handle the end of the input (reset)
96 * (reset, and truncation detection) and callbacks.
97 */
98typedef void (*UConverterToUnicode) (UConverterToUnicodeArgs *, UErrorCode *);
b75a7d8f 99
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100/*
101 * Same rules as for UConverterToUnicode.
102 * A lead surrogate is kept in fromUChar32 across buffers, and if an error
103 * occurs, then the offending input code point must be put into fromUChar32
104 * as well.
105 */
106typedef void (*UConverterFromUnicode) (UConverterFromUnicodeArgs *, UErrorCode *);
b75a7d8f 107
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108/*
109 * Converter implementation function for ucnv_convertEx(), for direct conversion
110 * between two charsets without pivoting through UTF-16.
111 * The rules are the same as for UConverterToUnicode and UConverterFromUnicode.
112 * In addition,
113 * - The toUnicode side must behave and keep state exactly like the
114 * UConverterToUnicode implementation for the same source charset.
115 * - A U_USING_DEFAULT_WARNING can be set to request to temporarily fall back
116 * to pivoting. When this function is called, the conversion framework makes
117 * sure that this warning is not set on input.
118 * - Continuing a partial match and flushing the toUnicode replay buffer
119 * are handled by pivoting, using the toUnicode and fromUnicode functions.
120 */
121typedef void (*UConverterConvert) (UConverterFromUnicodeArgs *pFromUArgs,
122 UConverterToUnicodeArgs *pToUArgs,
123 UErrorCode *pErrorCode);
124
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125/*
126 * Converter implementation function for ucnv_getNextUChar().
127 * If the function pointer is NULL, then the toUnicode function will be used.
128 *
129 * Will be called at a character boundary (toULength==0).
130 * May return with
131 * - U_INDEX_OUTOFBOUNDS_ERROR if there was no output for the input
132 * (the return value will be ignored)
133 * - U_TRUNCATED_CHAR_FOUND or another error code (never U_BUFFER_OVERFLOW_ERROR!)
134 * with toUBytes[toULength] set to the offending input
135 * (the return value will be ignored)
136 * - return UCNV_GET_NEXT_UCHAR_USE_TO_U, without moving the source pointer,
137 * to indicate that the ucnv.c code shall call the toUnicode function instead
138 * - return a real code point result
139 *
140 * Unless UCNV_GET_NEXT_UCHAR_USE_TO_U is returned, the source bytes must be consumed.
141 *
142 * The ucnv.c code will handle the end of the input (reset)
143 * (except for truncation detection!) and callbacks.
144 */
145typedef UChar32 (*UConverterGetNextUChar) (UConverterToUnicodeArgs *, UErrorCode *);
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146
147typedef void (*UConverterGetStarters)(const UConverter* converter,
148 UBool starters[256],
149 UErrorCode *pErrorCode);
150
151/* If this function pointer is null or if the function returns null
152 * the name field in static data struct should be returned by
153 * ucnv_getName() API function
154 */
155typedef const char * (*UConverterGetName) (const UConverter *cnv);
156
157/**
158 * Write the codepage substitution character.
159 * If this function is not set, then ucnv_cbFromUWriteSub() writes
160 * the substitution character from UConverter.
161 * For stateful converters, it is typically necessary to handle this
162 * specificially for the converter in order to properly maintain the state.
163 */
164typedef void (*UConverterWriteSub) (UConverterFromUnicodeArgs *pArgs, int32_t offsetIndex, UErrorCode *pErrorCode);
165
166/**
167 * For converter-specific safeClone processing
168 * If this function is not set, then ucnv_safeClone assumes that the converter has no private data that changes
169 * after the converter is done opening.
170 * If this function is set, then it is called just after a memcpy() of
171 * converter data to the new, empty converter, and is expected to set up
172 * the initial state of the converter. It is not expected to increment the
173 * reference counts of the standard data types such as the shared data.
174 */
175typedef UConverter * (*UConverterSafeClone) (const UConverter *cnv,
176 void *stackBuffer,
177 int32_t *pBufferSize,
178 UErrorCode *status);
179
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180/**
181 * Filters for some ucnv_getUnicodeSet() implementation code.
182 */
183typedef enum UConverterSetFilter {
184 UCNV_SET_FILTER_NONE,
185 UCNV_SET_FILTER_DBCS_ONLY,
186 UCNV_SET_FILTER_2022_CN,
187 UCNV_SET_FILTER_SJIS,
188 UCNV_SET_FILTER_GR94DBCS,
189 UCNV_SET_FILTER_HZ,
190 UCNV_SET_FILTER_COUNT
191} UConverterSetFilter;
192
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193/**
194 * Fills the set of Unicode code points that can be converted by an ICU converter.
195 * The API function ucnv_getUnicodeSet() clears the USet before calling
196 * the converter's getUnicodeSet() implementation; the converter should only
197 * add the appropriate code points to allow recursive use.
198 * For example, the ISO-2022-JP converter will call each subconverter's
199 * getUnicodeSet() implementation to consecutively add code points to
200 * the same USet, which will result in a union of the sets of all subconverters.
201 *
202 * For more documentation, see ucnv_getUnicodeSet() in ucnv.h.
203 */
204typedef void (*UConverterGetUnicodeSet) (const UConverter *cnv,
73c04bcf 205 const USetAdder *sa,
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206 UConverterUnicodeSet which,
207 UErrorCode *pErrorCode);
208
209UBool CONVERSION_U_SUCCESS (UErrorCode err);
210
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211/**
212 * UConverterImpl contains all the data and functions for a converter type.
213 * Its function pointers work much like a C++ vtable.
214 * Many converter types need to define only a subset of the functions;
215 * when a function pointer is NULL, then a default action will be performed.
216 *
217 * Every converter type must implement toUnicode, fromUnicode, and getNextUChar,
218 * otherwise the converter may crash.
219 * Every converter type that has variable-length codepage sequences should
220 * also implement toUnicodeWithOffsets and fromUnicodeWithOffsets for
221 * correct offset handling.
222 * All other functions may or may not be implemented - it depends only on
223 * whether the converter type needs them.
224 *
225 * When open() fails, then close() will be called, if present.
226 */
227struct UConverterImpl {
228 UConverterType type;
229
230 UConverterLoad load;
231 UConverterUnload unload;
232
233 UConverterOpen open;
234 UConverterClose close;
235 UConverterReset reset;
236
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237 UConverterToUnicode toUnicode;
238 UConverterToUnicode toUnicodeWithOffsets;
239 UConverterFromUnicode fromUnicode;
240 UConverterFromUnicode fromUnicodeWithOffsets;
241 UConverterGetNextUChar getNextUChar;
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242
243 UConverterGetStarters getStarters;
244 UConverterGetName getName;
245 UConverterWriteSub writeSub;
246 UConverterSafeClone safeClone;
247 UConverterGetUnicodeSet getUnicodeSet;
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248
249 UConverterConvert toUTF8;
250 UConverterConvert fromUTF8;
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251};
252
253extern const UConverterSharedData
254 _MBCSData, _Latin1Data,
255 _UTF8Data, _UTF16BEData, _UTF16LEData, _UTF32BEData, _UTF32LEData,
256 _ISO2022Data,
257 _LMBCSData1,_LMBCSData2, _LMBCSData3, _LMBCSData4, _LMBCSData5, _LMBCSData6,
258 _LMBCSData8,_LMBCSData11,_LMBCSData16,_LMBCSData17,_LMBCSData18,_LMBCSData19,
259 _HZData,_ISCIIData, _SCSUData, _ASCIIData,
260 _UTF7Data, _Bocu1Data, _UTF16Data, _UTF32Data, _CESU8Data, _IMAPData;
261
262U_CDECL_END
263
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264/** Always use fallbacks from codepage to Unicode */
265#define TO_U_USE_FALLBACK(useFallback) TRUE
266#define UCNV_TO_U_USE_FALLBACK(cnv) TRUE
267
268/** Use fallbacks from Unicode to codepage when cnv->useFallback or for private-use code points */
269#define IS_PRIVATE_USE(c) ((uint32_t)((c)-0xe000)<0x1900 || (uint32_t)((c)-0xf0000)<0x20000)
270#define FROM_U_USE_FALLBACK(useFallback, c) ((useFallback) || IS_PRIVATE_USE(c))
271#define UCNV_FROM_U_USE_FALLBACK(cnv, c) FROM_U_USE_FALLBACK((cnv)->useFallback, c)
272
273/**
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274 * Magic number for ucnv_getNextUChar(), returned by a
275 * getNextUChar() implementation to indicate to use the converter's toUnicode()
276 * instead of the native function.
277 * @internal
b75a7d8f 278 */
374ca955 279#define UCNV_GET_NEXT_UCHAR_USE_TO_U -9
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280
281U_CFUNC void
282ucnv_getCompleteUnicodeSet(const UConverter *cnv,
73c04bcf 283 const USetAdder *sa,
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284 UConverterUnicodeSet which,
285 UErrorCode *pErrorCode);
286
287U_CFUNC void
288ucnv_getNonSurrogateUnicodeSet(const UConverter *cnv,
73c04bcf 289 const USetAdder *sa,
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290 UConverterUnicodeSet which,
291 UErrorCode *pErrorCode);
292
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293U_CFUNC void
294ucnv_fromUWriteBytes(UConverter *cnv,
295 const char *bytes, int32_t length,
296 char **target, const char *targetLimit,
297 int32_t **offsets,
298 int32_t sourceIndex,
299 UErrorCode *pErrorCode);
300U_CFUNC void
301ucnv_toUWriteUChars(UConverter *cnv,
302 const UChar *uchars, int32_t length,
303 UChar **target, const UChar *targetLimit,
304 int32_t **offsets,
305 int32_t sourceIndex,
306 UErrorCode *pErrorCode);
307
308U_CFUNC void
309ucnv_toUWriteCodePoint(UConverter *cnv,
310 UChar32 c,
311 UChar **target, const UChar *targetLimit,
312 int32_t **offsets,
313 int32_t sourceIndex,
314 UErrorCode *pErrorCode);
315
316#endif
317
b75a7d8f 318#endif /* UCNV_CNV */